™
SMART-MR10/15
User Manual
OM-20000130 Rev 5
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Table of Contents
21
1.1 Features................................................................................................................21
1.1.1 SMART-MR10 .............................................................................................21
1.1.2 SMART-MR15 .............................................................................................22
1.2 Box Contents ........................................................................................................22
1.2.1 SMART-MR10 .............................................................................................22
1.2.2 SMART-MR15 .............................................................................................22
1.3 Accessories...........................................................................................................23
1.4 Models ..................................................................................................................24
1.4.1 SMART-MR10 .............................................................................................24
1.4.2 SMART-MR15 .............................................................................................25
1.5 Installing the PC Utilities .......................................................................................25
2 Installation
26
2.1 Additional Equipment Required ............................................................................26
2.1.1 Mounting Kits...............................................................................................26
2.2 Mounting the SMART-MR10/15............................................................................31
2.3 Cabling the SMART-MR10/15 ..............................................................................31
2.3.1 Connecting the Power Supply .....................................................................36
2.3.2 Status Indicators..........................................................................................37
2.3.3 Debugging Guidelines: ................................................................................39
2.4 Additional Installation Information.........................................................................40
2.4.1 MKI and PPS Strobes..................................................................................40
2.4.2 Emulated Radar (ER) ..................................................................................40
2.4.3 Controller Area Network (CAN) ...................................................................41
46
3.1 Communications with the Receiver.......................................................................46
3.1.1 Serial Port Default Settings .........................................................................46
3.1.3 Communicating With a Computer................................................................47
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3.4 GL1DE®............................................................................................................... 54
3.5 ALIGN®................................................................................................................ 54
4 PC Utilities
57
4.2 Connect................................................................................................................ 58
4.3 Convert4............................................................................................................... 59
4.3.2 Convert4 Command Line Switches............................................................. 61
5.1 Enable Bluetooth wireless technology on the receiver......................................... 68
5.3 Locate a SMART-MR10 or SMART-MR15 with Bluetooth wireless technology in
range................................................................................................................................. 70
5.4 Communicate with the SMART-MR10 or SMART-MR15 Using Bluetooth wireless
technology......................................................................................................................... 71
5.5 Stop Communicating with SMART-MR10 or SMART-MR15 Using Bluetooth wireless
technology......................................................................................................................... 73
SMART-MR10/15 Receiver Performance ................................................................. 74
Syntax Conventions .................................................................................................. 89
COM Configure COM Port ........................................................................................ 93
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LOG Request Logs from the Receiver .......................................................................97
NTRIPCASTER Set NTRIP caster .............................................................................99
PDPFILTER Enable, disable or reset the PDP filter ................................................102
RADARCFG Configure the ER output .....................................................................104
RESET Performs a hardware reset .........................................................................106
SETCANNAME Sets the CAN name fields ..............................................................109
NMEA Logs ..............................................................................................................110
NovAtel Position Logs ..............................................................................................112
SMART-MR10/15 .....................................................................................................126
Accessories ..............................................................................................................126
Cellular Accessories ..........................................................................................126
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Figures
SMART-MR10/15 Connector ........................................................................................... 31
SMART-MR10 Streamlined Cabling ................................................................................ 32
SMART-MR15 Streamlined Cabling ................................................................................ 33
SIM Cover ........................................................................................................................ 44
SIM Being Installed .......................................................................................................... 44
SIM Correctly Installed ..................................................................................................... 44
Convert4 Screen Examples ............................................................................................. 59
WinLoad’s Open Dialog ................................................................................................... 64
Searching for Card ........................................................................................................... 65
Authorization Code Dialog ............................................................................................... 66
Upgrade Process Complete ............................................................................................. 66
Bluetooth Adapter for Computer/Laptop .......................................................................... 70
Bluetooth Error: Red ........................................................................................................ 70
COM21 Disconnect? ........................................................................................................ 73
SMART-MR10/15 Streamlined Cable .............................................................................. 85
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Tables
SMART-MR10 Connector Pin-Out............................................................................. 34
SMART-MR15 Connector Pin-Out............................................................................. 35
Evaluation Cable Pinouts........................................................................................... 84
Mating Connectors..................................................................................................... 87
Recommended Fuses................................................................................................ 87
Parity.......................................................................................................................... 94
Solution Status......................................................................................................... 121
VERSION Log: Field Formats.................................................................................. 125
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Notices
Notices
The SMART-MR10 and SMART-MR15 are designed for and intended to be used in fixed and mobile
applications. "Fixed" means that the device is physically secured at one location and is not able to be
easily moved to another location. "Mobile" means that the device is designed to be used in other than
fixed locations. These products are not designed to be used as “Portable” devices in applications
where they would be closer than 20 cm (8 inches) to the user or any other personnel.
In the case of the SMART-MR15, it is important to follow any special regulations regarding the use of
radio equipment due in particular to the possibility of radio frequency (RF) interference. Please follow
the safety advice given below carefully.
The following notices apply, as appropriate, to the SMART-MR10 and SMART-MR15.
Changes or modifications to this equipment not expressly approved by NovAtel Inc.
could result in violation of FCC, Industry Canada and CE Marking rules and void the
user’s authorization to operate this equipment.
Safety
Personnel must be at least 20 cm (8 inches) from the SMART-MR15 cellular antenna.
The SMART-MR15 cellular antenna must be mounted such that personnel are never
closer than 20 cm (8 inches) to it. For antenna installations on non-metallic vehicle cab
roofs, users should exercise extra care that the 20 cm separation distance between the
antenna and personnel inside the vehicle will be maintained on the basis of an
imaginary line passing through the roof between the antenna and the body of the
operator or any passengers.
Switch OFF your SMART-MR10/15 when around gasoline or diesel-fuel pumps and
before filling your vehicle with fuel. Respect restrictions on the use of radio equipment
in fuel depots, chemical plants or where blasting operations are in progress.
There may be a hazard associated with the operation of your SMART-MR10/15 close
to inadequately protected personal medical devices such as hearing aids and
pacemakers. Consult the manufacturers of the medical device to determine if it is
adequately protected.
Operation of your SMART-MR10/15 close to other electronic equipment may also
cause interference if the equipment is inadequately protected. Observe any warning
signs and manufacturers’ recommendations.
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Notice
To comply with FCC and Industry Canada regulations limiting both maximum RF
output power and human exposure to RF radiation, the maximum system gain (antenna
gain minus system loss) must not exceed 0.9 dBi in the U.S. Cellular band and 3.0 dBi
in the PCS band for the GSM/GPRS/HSDPA variant, and 6.0 dBi in the Cellular band
and 6.0 dBi in the PCS band for the CDMA variant. System loss is the total of external
cable and connector losses and SMART-MR15 internal losses. For reference and
system gain calculation purposes, the SMART-MR15 has internal losses of 0.6 dB for
the 800 MHz Cellular band and 1.8 dB for the 1900 MHz PCS band.
FCC
This device complies with part 15 of the FCC Rules. Operation is subject to the following two
conditions: (1) this device may not cause harmful interference, and (2) this device must accept any
interference received, including interference that may cause undesired operation.
SMART-MR10 and SMART-MR15 have been tested and found to comply with the emission limits for
a Class B digital device. The Class B limits are designed to provide reasonable protection against
harmful interference in a residential installation. SMART-MR10 and SMART-MR15 have been
certified by FCC for use in the 2400 MHz - 2483.5 MHz band (FCC ID # UTU01018518).
There are two versions of the SMART-MR15 - a CDMA version and a GSM/GPRS/HSDPA version.
The CDMA version (NovAtel part number 01018606) contains FCC ID # RI7CC864-DUAL and the
GSM/GPRS/HSDPA version (NovAtel part number 01018712) contains FCC ID # RI7UC864G.
This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used
in accordance with the instructions, may cause harmful interference to radio communications.
However, there is no guarantee that interference will not occur in a particular installation. If this
equipment does cause harmful interference to radio or television reception, which can be determined
by turning the equipment off and on, the user is encouraged to try to correct the interference by one or
more of the following measures:
•
•
•
Re-orient or relocate the SMART-MR10/15
Increase the separation between the equipment and the SMART-MR10/15
Connect the equipment to an outlet on a circuit different from that to which the
SMART-MR10/15 is connected
•
Consult the dealer or an experienced radio/TV technician for help
In order to maintain compliance as a Class “B” digital device, shielded cables must be
used for the RS-232 serial data ports (Belden 1036A or equivalent) and twisted pair
cable should be used for the CAN port (note: shielded twisted pair will also improve
CAN performance in electrically harsh environments). I/O signals should be referred to
one of the two signal grounds (connector pin 9 or connector pin 15) and not power
ground (connector pin 2). If I/O signals route to different areas of the vehicle, dedicated
signal grounds for I/O should be spliced into a common connection to one of the two
signal grounds (pin 9 or pin 15), at a point close to the SMART-MR10/15.
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Notice
Industry Canada
SMART-MR10 and SMART-MR15 Class B digital apparatuses comply with Canadian ICES-003.
SMART-MR10 et SMART-MR15 appareils numérique de la classe B est conforme à la norme NMB-
003 du Canada.
A-tick Marking
The SMART-MR15-HSPA carries the A-tick compliance mark.
CE Marking
SMART-MR10 and SMART-MR15 enclosures carry the CE mark.
“Hereby, NovAtel Inc. declares that the SMART-MR10 and SMART-MR15 comply with the essential
requirements and other relevant provisions of the R&TTE Directive 1999/5/EC and of the EMC
Directive 2004/108/EC.”
WEEE
If you purchased your OEMV® family product in Europe, please return it to your dealer or supplier at
the end of its life. The objectives of the European Community's environment policy are, in particular,
to preserve, protect and improve the quality of the environment, protect human health and utilise
natural resources prudently and rationally. Sustainable development advocates the reduction of
wasteful consumption of natural resources and the prevention of pollution. Waste electrical and
electronic equipment (WEEE) is regulated by the EU WEEE Directive 2002/96/EC and amendment
2003/108/EC. Where the generation of waste cannot be avoided, it should be reused or recovered for
1
its material or energy. WEEE products may be recognized by their wheeled bin label (
).
RoHS
The SMART-MR10 and SMART-MR15 comply with the European Union (EU) Restriction of
Hazardous Substances (RoHS) Directive 2002/95/EC.
®
Bluetooth
®
The SMART-MR10 and SMART-MR15 contain Bluetooth wireless technology. Bluetooth QD
(Qualified Design) ID B015463.
1. Please visit the NovAtel website at www.novatel.com/products/weee-and-rohs/ for more information.
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Terms and Conditions
Terms and Conditions
Standard Terms and Conditions of Sales
1. PRICES: All prices are Firm Fixed Price, FCA 1120 - 68th Avenue N.E., Calgary, Alberta. All
prices include standard commercial packing for domestic shipment. All transportation, insurance,
special packing costs and expenses, and all Federal, provincial and local excise, duties, sales, and
other similar taxes are the responsibility of the Purchaser.
2. PAYMENT: Terms are prepayment unless otherwise agreed in writing. Interest shall be charged
on overdue accounts at the rate of 18% per annum (1.5% per month) from due date. To expedite
payment by wire transfer to NovAtel Inc.: Bank - HSBC Bank of Canada
Bank: HSBC Bank of Canada
407 - 8 Avenue S.W.
US Account #
CDN Account #
EURO Account #
Transit #
788889-002
788889-001
788889-270
10029-016
Calgary, AB, Canada T2P 1E5
Swift
HKBCCATTCAL
3. DELIVERY: Purchaser shall supply shipping instructions with each order. (Ship to and bill to
address, NovAtel Quotation #, Preferred carrier and account #, Custom broker/freight forwarder
including name and contact #) In the absence of specific instructions, NovAtel may select a carrier
and insure Products in transit and charge Purchaser accordingly. NovAtel shall not be responsible for
any failure to perform due to unforeseen circumstances or causes beyond its ability to reasonably
control. Risk of loss, damage or destruction shall pass to Purchaser upon delivery to carrier. Goods are
provided solely for incorporation into the Purchaser’s end product and shall not be onward delivered
except as incorporated in the Purchaser’s end product.
4. COPYRIGHT AND CONFIDENTIALITY: Copyright in any specification, drawing, computer
software, technical description and other document supplied by NovAtel under or in connection with
the Order and all intellectual property rights in the design of any part of the Equipment or provision of
services, whether such design be registered or not, shall vest in NovAtel absolutely. The Buyer shall
keep confidential any information expressed or confirmed by NovAtel in writing to be confidential
and shall not disclose it without NovAtel's prior consent in writing to any third party or use it other
than for the operation and maintenance of any Equipment provided.
5. GENERAL PROVISIONS: All Purchase Orders are subject to approval and acceptance by
NovAtel. Any Purchase Order or other form from the Purchaser, which purports to expand, alter or
amend these terms and conditions, is expressly rejected and is and shall not become a part of any
agreement between NovAtel and the Purchaser. This agreement shall be interpreted under the laws of
the Province of Alberta.
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Terms and Conditions
6. LIMITED WARRANTY AND LIABILITY: Warranty Period: Products - 1 year; Accessories -
90 days (in each case from the date of invoice). NovAtel warrants that during the Warranty Period that
(a) the Product will be free from defects in material and workmanship and conform to NovAtel
specifications; (b) the software will be free from error which materially affect performance; and (c) if
applicable as defined in the User’s Manual, be eligible for access to post contract support and software
updates when available. THESE WARRANTIES ARE EXPRESSLY IN LIEU OF ALL OTHER
WARRANTIES, EXPRESS OR IMPLIED, INCLUDING, WITHOUT LIMITATION, ALL
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
PURPOSE. NOVATEL SHALL IN NO EVENT BE LIABLE FOR SPECIAL, INDIRECT,
INCIDENTAL, OR CONSEQUENTIAL DAMAGES OF ANY KIND OR NATURE DUE TO
ANY CAUSE.
Purchaser’s exclusive remedy for a claim under this warranty shall be limited to the repair or
replacement at NovAtel’s option and at NovAtel’s facility, of defective or nonconforming materials,
parts or components or in the case of software, provision of a software revision for implementation by
the Buyer. All material returned under warranty shall be returned to NovAtel prepaid by the Buyer
and returned to the Buyer, prepaid by NovAtel. The foregoing warranties do not extend to (i)
nonconformities, defects or errors in the Products due to accident, abuse, misuse or negligent use of
the Products or use in other than a normal and customary manner, environmental conditions not
conforming to NovAtel’s specifications, or failure to follow prescribed installation, operating and
maintenance procedures, (ii) defects, errors or nonconformities in the Products due to modifications,
alterations, additions or changes not made in accordance with NovAtel’s specifications or authorized
by NovAtel, (iii) normal wear and tear, (iv) damage caused by force of nature or act of any third
person, (v) shipping damage, (vi) service or repair of Product by the Purchaser without prior written
consent from NovAtel, (vii) Products designated by NovAtel as beta site test samples, experimental,
developmental, preproduction, sample, incomplete or out of specification Products, (viii) returned
Products if the original identification marks have been removed or altered or (ix) Services or research
activities.
7. EXCLUSION OF LIABILITY: If a Party would, but for this paragraph (7), have concurrent
claims in contract and tort (including negligence) such claims in tort (including negligence) shall to
the extent permitted by law be wholly barred, unenforceable and excluded.
NovAtel shall not be liable to the Buyer by way of indemnity or by reason of any breach of the Order
or of statutory duty or by reason of tort (including but not limited to negligence) for any loss of profit,
loss of use, loss of production, loss of contracts or for any financing costs or for any indirect or
consequential damage whatsoever that may be suffered by the Buyer.
In the event and to the extent that NovAtel shall have any liability to Buyer pursuant to the terms of
the Order, NovAtel shall be liable to Buyer only for those damages which have been foreseen or might
have reasonably been foreseen on the date of effectivity of the Order and which are solely an
immediate and direct result of any act or omission of NovAtel in performing the work or any portion
thereof under the Order and which are not in the aggregate in excess of ten (10%) percent of the total
Order price.
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Software License
Software License
BY INSTALLING, COPYING, OR OTHERWISE USING THE SOFTWARE PRODUCT, YOU
AGREE TO BE BOUND BY THE TERMS OF THIS AGREEMENT. IF YOU DO NOT
AGREE WITH THESE TERMS OF USE, DO NOT INSTALL, COPY OR USE THIS ELEC-
TRONIC PRODUCT (SOFTWARE, FIRMWARE, SCRIPT FILES, OR OTHER ELEC-
TRONIC PRODUCT WHETHER EMBEDDED IN THE HARDWARE, ON A CD OR
AVAILABLE ON THE COMPANY website) (hereinafter referred to as "Software").
1. License: NovAtel Inc. ("NovAtel") grants you a non-exclusive, non-transferable license (not a sale)
to, where the Software will be used on NovAtel supplied hardware or in conjunction with other
NovAtel supplied software, use the Software with the product(s) as supplied by NovAtel. You agree
not to use the Software for any purpose other than the due exercise of the rights and licences hereby
agreed to be granted to you.
2. Copyright: NovAtel owns, or has the right to sublicense, all copyright, trade secret, patent and
other proprietary rights in the Software and the Software is protected by national copyright laws,
international treaty provisions and all other applicable national laws. You must treat the Software like
any other copyrighted material except that you may make one copy of the Software solely for backup
or archival purposes (one copy may be made for each piece of NovAtel hardware on which it is
installed or where used in conjunction with other NovAtel supplied software), the media of said copy
shall bear labels showing all trademark and copyright notices that appear on the original copy. You
may not copy the product manual or written materials accompanying the Software. No right is con-
veyed by this Agreement for the use, directly, indirectly, by implication or otherwise by Licensee of
the name of NovAtel, or of any trade names or nomenclature used by NovAtel, or any other words or
combinations of words proprietary to NovAtel, in connection with this Agreement, without the prior
written consent of NovAtel.
3. Patent Infringement: NovAtel shall not be liable to indemnify the Licensee against any loss sus-
tained by it as the result of any claim made or action brought by any third party for infringement of
any letters patent, registered design or like instrument of privilege by reason of the use or application
of the Software by the Licensee or any other information supplied or to be supplied to the Licensee
pursuant to the terms of this Agreement. NovAtel shall not be bound to take legal proceedings against
any third party in respect of any infringement of letters patent, registered design or like instrument of
privilege which may now or at any future time be owned by it. However, should NovAtel elect to take
such legal proceedings, at NovAtel's request, Licensee shall co-operate reasonably with NovAtel in all
legal actions concerning this license of the Software under this Agreement taken against any third
party by NovAtel to protect its rights in the Software. NovAtel shall bear all reasonable costs and
expenses incurred by Licensee in the course of co-operating with NovAtel in such legal action.
4. Restrictions: You may not:
(a)
copy (other than as provided for in paragraph 2), distribute, transfer, rent, lease, lend, sell or
sublicense all or any portion of the Software except in the case of sale of the hardware to a
third party;
(b)
(c)
modify or prepare derivative works of the Software;
use the Software in connection with computer-based services business or publicly display
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Software License
visual output of the Software;
(d)
transmit the Software over a network, by telephone or electronically using any means (except
when downloading a purchased upgrade from the NovAtel website); or
reverse engineer, decompile or disassemble the Software.
(e)
You agree to keep confidential and use your best efforts to prevent and protect the contents of the Soft-
ware from unauthorized disclosure or use.
5. Term and Termination: This Agreement and the rights and licences hereby granted shall continue
in force in perpetuity unless terminated by NovAtel or Licensee in accordance herewith. In the event
that the Licensee shall at any time during the term of this Agreement: i) be in breach of its obligations
hereunder where such breach is irremediable or if capable of remedy is not remedied within 30 days
of notice from NovAtel requiring its remedy; then and in any event NovAtel may forthwith by notice
in writing terminate this Agreement together with the rights and licences hereby granted by NovAtel.
Licensee may terminate this Agreement by providing written notice to NovAtel. Upon termination,
for any reasons, the Licensee shall promptly, on NovAtel's request, return to NovAtel or at the election
of NovAtel destroy all copies of any documents and extracts comprising or containing the Software.
The Licensee shall also erase any copies of the Software residing on Licensee's computer equipment.
Termination shall be without prejudice to the accrued rights of either party, including payments due to
NovAtel. This provision shall survive termination of this Agreement howsoever arising.
6. Warranty: NovAtel does not warrant the contents of the Software or that it will be error free. The
Software is furnished "AS IS" and without warranty as to the performance or results you may obtain
by using the Software. The entire risk as to the results and performance of the Software is assumed by
you. See product enclosure, if any for any additional warranty.
7. Indemnification: NovAtel shall be under no obligation or liability of any kind (in contract, tort or
otherwise and whether directly or indirectly or by way of indemnity contribution or otherwise howso-
ever) to the Licensee and the Licensee will indemnify and hold NovAtel harmless against all or any
loss, damage, actions, costs, claims, demands and other liabilities or any kind whatsoever (direct, con-
sequential, special or otherwise) arising directly or indirectly out of or by reason of the use by the
Licensee of the Software whether the same shall arise in consequence of any such infringement, defi-
ciency, inaccuracy, error or other defect therein and whether or not involving negligence on the part of
any person.
8. Disclaimer and Limitation of Liability:
(a)
THE WARRANTIES IN THIS AGREEMENT REPLACE ALL OTHER WARRAN-
TIES, EXPRESS OR IMPLIED, INCLUDING ANY WARRANTIES OF MER-
CHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. NovAtel
DISCLAIMS AND EXCLUDES ALL OTHER WARRANTIES. IN NO EVENT WILL
NovAtel's LIABILITY OF ANY KIND INCLUDE ANY SPECIAL, INCIDENTAL OR
CONSEQUENTIAL DAMAGES, INCLUDING LOST PROFITS, EVEN IF NovAtel
HAS KNOWLEDGE OF THE POTENTIAL LOSS OR DAMAGE.
(b)
(c)
NovAtel will not be liable for any loss or damage caused by delay in furnishing the Software
or any other performance under this Agreement.
NovAtel's entire liability and your exclusive remedies for our liability of any kind (including
liability for negligence) for the Software covered by this Agreement and all other perfor-
mance or non-performance by NovAtel under or related to this Agreement are to the reme-
dies specified by this Agreement.
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Software License
9. Governing Law: This Agreement is governed by the laws of the Province of Alberta, Canada.
Each of the parties hereto irrevocably attorns to the jurisdiction of the courts of the Province of
Alberta.
10. Customer Support: For Software UPDATES and UPGRADES, and regular customer support,
contact the NovAtel GPS Hotline at 1-800-NOVATEL (U.S. or Canada only), or +1-403-295-4900,
Fax +1-403-295-4901, email to [email protected], website: http://www.novatel.com or write to:
NovAtel Inc.Customer Service Department
1120 - 68 Avenue NE
Calgary, Alberta, Canada T2E 8S5
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Warranty
Warranty
NovAtel Inc. warrants that its products are free from defects in materials and workmanship, subject to
the conditions set forth below, for the following periods of time, from the date of sale:
SMART-MR10 and SMART-MR15
Antenna
One (1) Year
One (1) Year
Cables and Accessories
Computer Discs
Ninety (90) Days
Ninety (90) Days
One (1) Year
Software Warranty
Date of sale shall mean the date of the invoice to the original customer for the product. NovAtel’s
responsibility respecting this warranty is solely to product replacement or product repair at an
authorized NovAtel location, or in the case of software, provision of a software revision for
implementation by the customer.
Determination of replacement or repair will be made by NovAtel personnel or by technical personnel
expressly authorized by NovAtel for this purpose.
THE FOREGOING WARRANTIES DO NOT EXTEND TO (I) NONCONFORMITIES, DEFECTS OR ERRORS
IN THE PRODUCTS DUE TO ACCIDENT, ABUSE, MISUSE OR NEGLIGENT USE OF THE PRODUCTS OR
USE IN OTHER THAN A NORMAL AND CUSTOMARY MANNER, ENVIRONMENTAL CONDITIONS NOT
CONFORMING TO NOVATEL’S SPECIFICATIONS, OR FAILURE TO FOLLOW PRESCRIBED INSTALLA-
TION, OPERATING AND MAINTENANCE PROCEDURES, (II) DEFECTS, ERRORS OR NONCONFORMI-
TIES IN THE PRODUCTS DUE TO MODIFICATIONS, ALTERATIONS, ADDITIONS OR CHANGES NOT
MADE IN ACCORDANCE WITH NOVATEL’S SPECIFICATIONS OR AUTHORIZED BY NOVATEL, (III) NOR-
MAL WEAR AND TEAR, (IV) DAMAGE CAUSED BY FORCE OF NATURE OR ACT OF ANY THIRD PER-
SON, (V) SHIPPING DAMAGE; OR (VI) SERVICE OR REPAIR OF PRODUCT BY THE DEALER WITHOUT
PRIOR WRITTEN CONSENT FROM NOVATEL. IN ADDITION, THE FOREGOING WARRANTIES SHALL
NOT APPLY TO PRODUCTS DESIGNATED BY NOVATEL AS BETA SITE TEST SAMPLES, EXPERIMENTAL,
DEVELOPMENTAL, PREPRODUCTION, SAMPLE, INCOMPLETE OR OUT OF SPECIFICATION PROD-
UCTS OR TO RETURNED PRODUCTS IF THE ORIGINAL IDENTIFICATION MARKS HAVE BEEN
REMOVED OR ALTERED. THE WARRANTIES AND REMEDIES ARE EXCLUSIVE AND ALL OTHER WAR-
RANTIES, EXPRESS OR IMPLIED, WRITTEN OR ORAL, INCLUDING THE IMPLIED WARRANTIES OF
MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE ARE EXCLUDED. NOVATEL SHALL
NOT BE LIABLE FOR ANY LOSS, DAMAGE, EXPENSE, OR INJURY ARISING DIRECTLY OR INDIRECTLY
OUT OF THE PURCHASE, INSTALLATION, OPERATION, USE OR LICENSING OR PRODUCTS OR SER-
VICES. IN NO EVENT SHALL NOVATEL BE LIABLE FOR SPECIAL, INDIRECT, INCIDENTAL OR CONSE-
QUENTIAL DAMAGES OF ANY KIND OR NATURE DUE TO ANY CAUSE.
There are no user serviceable parts in the NovAtel receiver and no maintenance is required. When the
status code indicates that a unit is faulty, replace with another unit and return the faulty unit to
NovAtel Inc.
Before shipping any material to NovAtel or Dealer, please contact Customer Support. You can
port | Helpdesk & Solutions | E-Service.
When Customer Support confirms the faulty equipment needs to be returned, you will be referred to
the repair group where you will be given an RMA number and be advised of proper shipping
procedures to return any defective product.
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Foreword
Foreword
Congratulations!
Congratulations on your purchase. Your smart antenna is capable of receiving GPS L1+L2,
GLONASS L1+L2, and L-band signals, with exceptional flexibility and performance. The
SMART-MR15 also includes an integrated cellular modem for access to wireless RTK corrections
with minimal effort.
NovAtel is an industry leader in state-of-the-art Global Navigation Satellite Systems (GNSS) receiver
design. We believe that our product will meet your high expectations, and are working hard to ensure
that future products and enhancements maintain this level of satisfaction.
This is your primary hardware and software reference.
Scope
This manual provides sufficient detail to allow you to effectively integrate and fully operate your
SMART-MR10/15. The information in this manual is a companion to the information in the OEMV
Firmware Reference Manual and the OEMV Installation and Operation User Manual.
After the addition of accessories and a power supply, your smart antenna is ready to go.
SMART-MR10/15 utilize a comprehensive user-interface command structure, which require
communication through communications (COM) ports. The manual describes commands and logs
Other supplementary manuals are available on the accompanying CD and on our website at
you in using the other commands and logs available in the OEMV family of receivers.
PC Utilities are also described, see Chapter 4 starting on page 57. Integrated with Connect software,
these utilities provide graphical user interfaces for logging to a PC/laptop, upgrading, and converting
data types.
Prerequisites
The installation chapters of this document provide information concerning installation requirements
and considerations for SMART-MR10/15. To run the PC software supplied, your personal computer
must meet or exceed this minimum configuration:
•
Windows-compatible mouse or pointing device and SVGA display
Although previous experience with Windows is not necessary to use Connect, familiarity with certain
actions that are customary in Windows will assist in the use of the program. This manual has been
written with the expectation that you already have a basic familiarity with Windows.
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Foreword
Conventions
The following conventions are used in this manual:
Note that provides information to supplement or clarify the
accompanying text.
Caution that a certain action, operation or configuration may result
in incorrect or improper use of the product.
Warning that a certain action, operation or configuration may result
in regulatory noncompliance, safety issues or equipment damage.
Log and command conventions include the following:
•
The letter H in the Offset columns of the commands and logs tables represents the
header length for that command or log. Refer to the OEMV Family Firmware
Reference Manual for ASCII and binary header details.
•
•
•
•
The number following 0x is a hexadecimal number.
Command descriptions’ brackets, [ ], represent the optionality of parameters.
In tables where values are missing, they are assumed to be reserved for future use.
Status words are output as hexadecimal numbers and must be converted to binary
format (and in some cases then also to decimal). For an example of this type of
conversion, please refer to the RANGE log in the OEMV Family Firmware
Reference Manual.
•
Conversions and their binary or decimal results are always read from right to left
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Customer Support
Customer Support
NovAtel Knowledge Database
If you have a technical issue, try the NovAtel knowledge database on the NovAtel website at
www.novatel.com through Support | Helpdesk & Solutions | Search Known Solutions. Through the
knowledge database, you can keyword search for general information about GNSS, information about
NovAtel hardware and software, installation and operation issues, and general technology.
Before Contacting Customer Support
Before contacting NovAtel Customer Support about a software problem perform the following steps:
1. Log the following data to a file on your PC for 15 minutes
RXSTATUSB once
RAWEPHEMB onchanged
RANGEB ontime 1
BESTPOSB ontime 1
RXCONFIGA once
VERSIONB once
CELLSTATUSA onchanged [SMART-MR15 only]
To run these logs you can connect to one of the COM ports, then use NovAtel Connect, described
e-mail address.
3. You can also issue a factory reset (FRESET) to the receiver to clear any unknown settings.
The FRESET command will erase all user settings. You should know your
configuration and be able to reconfigure the receiver before you send the FRESET
command.
If you are having a hardware problem, send a list of the troubleshooting steps taken results.
Contact Information
Phone: 1-800-NOVATEL (U.S. & Canada) or +1-403-295-4900 (international)
Fax: +1-403-295-4901
Write: NovAtel Inc.
Customer Support Department
E-mail: [email protected]
Website: www.novatel.com
1120 - 68 Avenue NE
Calgary, AB
Canada, T2E 8S5
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Firmware Updates and Model Upgrades
Firmware Updates and Model Upgrades
Firmware updates are firmware releases, which include fixes and enhancements to the receiver
functionality. Firmware updates are released on the website as they become available. Model
upgrades enable features, such as RTK and ALIGN, on the receiver and may be purchased through
NovAtel authorized dealers.
Contact your local NovAtel dealer first for more information. To locate a dealer in your area visit our
website at www.novatel.com/where-to-buy/dealers/ or contact NovAtel Customer Support directly.
Refer to PC Software and Firmware, Firmware Upgrades in the OEMV Family Installation and
Operation User Manual for instructions on using the WinLoad program to upgrade your OEMV
receiver.
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Chapter 1
Introduction
The SMART-MR10/15 are rugged dual-constellation, dual-frequency smart antennas designed for on-
machine applications in the agricultural, construction and industrial market segments. They both
consist of a high-performance GNSS receiver and antenna, capable of receiving and tracking different
combinations of GPS+GLONASS L1+L2 code and carrier signals, and L-band signals, on a
maximum of 72 channels. Once you connect the SMART-MR10 or SMART-MR15 to a vehicle, they
begin operating as a fully functional GNSS system.
The SMART-MR10/15 support the following position modes:
•
•
•
•
•
•
Autonomous
SBAS (Satellite Based Augmentation Systems), including WAAS, EGNOS, and MSAS.
DGPS
OmniSTAR VBS/HP/XP
CDGPS
NovAtel GL1DE®, RT-20®, RT-2™ and RT-2L
www.novatel.com.
1.1 Features
1.1.1
SMART-MR10
The main features of the SMART-MR10 are as follows:
•
Enhanced high performance GPS+GLONASS L1+L2 and L-band receiver (NovAtel
OEMV-3™)
•
•
•
•
High performance GPS+GLONASS L1+L2 and L-band antenna
Emulated Radar output
CAN port
Three (3) RS-232 COM ports, one of which can be configured with flow control, or user-
switched to RS-422
•
•
•
•
Rugged, water and dust tight enclosure, consisting of a cast aluminum base and plastic radome
Bluetooth version 2.0
Three (3) daylight viewable status LED indicators
Range of installation options, including a quick-release mounting plate and a 5m power/data
cable with tinned/tagged wires
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Chapter 1
Introduction
1.1.2
SMART-MR15
The main features of the SMART-MR15 are as follows:
•
•
Cellular communication connectivity options including Carrier Division Multiple Access
(CDMA) and Global System for Mobile Communications/General Packet Radio Service / High
Speed Downlink Packet Access (GSM/GPRS/HSDPA)
Enhanced high performance GPS+GLONASS L1+L2 and L-band receiver (NovAtel
OEMV-3™)
•
•
•
•
•
Embedded NTRIP v2.0 client
High performance GPS+GLONASS L1+L2 and L-band antenna
Emulated Radar output
CAN port
Two (2) RS-232 COM ports, one of which can be configured with flow control, or user-switched
to RS-422
•
•
•
•
Rugged, water and dust tight enclosure, consisting of a cast aluminum base and plastic radome
Bluetooth version 2.0
Three (3) daylight viewable status LED indicators
Range of installation options, including a quick-release mounting plate and a 5m power/data
cable with tinned/tagged wires
1.2 Box Contents
1.2.1
SMART-MR10
The following are provided with your SMART-MR10:
•
•
1 - SMART-MR10 Quick Start Guide
1 - CD containing:
-
-
An installation program for NovAtel’s Connect graphical user interface software
Product documentation
•
1 - User Manual postcard for requesting printed manuals
1.2.2
SMART-MR15
The following are provided with your SMART-MR15:
•
•
•
1 - SMART-MR15 Quick Start Guide
1 - SMART-MR15 Cellular Activation Quick Start Guide
1 - CD containing:
-
-
An installation program for NovAtel’s Connect graphical user interface software
Product documentation
•
1 - User Manual postcard for requesting printed manuals
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Introduction
Chapter1
1.3 Accessories
The following interface cables can be ordered as accessories:
•
Evaluation cable (NovAtel part number 01018515) with a 23-pin connector on one end and three
DB-9 connectors and exposed tinned wires for power, ER, ground, MKI, MODE, PPS and CAN,
on the other. This cable is designed to allow the rapid deployment and evaluation of your receiver
on a construction or agricultural vehicle. All signals are wired out in this cable. Refer to Appendix
•
Streamlined cable (NovAtel part number 01018526) with two DB-9 connectors, and exposed
tinned wires for power, ground and ER. This cable provides connection for power, two serial
ports, and emulated radar. It has been designed for permanent installation. The cable material is
capable of withstanding a wide temperature range and will not be damaged by exposure to
for details.
Four mounting plates are available for the SMART-MR10 and the SMART-MR15, and these can also
be ordered as accessories:
•
•
•
•
Universal mounting plate (70023085)
AG GPS 262 layout mounting plate (70023086)
Pole-mount (70023087)
Quick-release kit (01018578)
1.3.1
SMART-MR15-Specific Accessories
In addition to the above cable and mounting accessories, the following accessories are available for
the SMART-MR15:
•
•
•
CDMA Antenna, 2.2 / 4 dBi, 824-896 MHz / 1850-1990 MHz, NMO [NovAtel part number
12023296] (USE with 12023301 Mount)
CDMA Antenna Mount, NMO Magnetic Base, 30 cm cable [NovAtel part number 12023301]
(DO NOT USE with 12023303 Antenna)
GSM/GPRS/HSDPA Antenna, 3 / 4 dBi, 806-960 MHz / 1710-2500 MHz, NMO [NovAtel part
number 12023303]. (DO NOT USE with 12023301 Base. Use this antenna with the 12023300
mount only.)
•
•
GSM/GPRS/HSDPA Antenna Mount, NMO Magnetic Base, 3.65 m cable [NovAtel part number
12023300] (USE with 12023303 Antenna)
Antenna Ground Plane Kit, for use on non-metallic mounting surfaces [NovAtel part number
01018684]
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Chapter 1
Introduction
1.4 Models
1.4.1
SMART-MR10
Figure 1: SMART-MR10 Receiver
summarizes the available models. Contact your NovAtel dealer to get up-to-date information on
available models. For a list of dealers in your area, visit the NovAtel website at
www.novatel.com/where-to-buy/dealers/.
Table 1: SMART-MR10 Controller Models
Model Name
Firmware Feature
SMART-MR10-RT2-G
GPS plus GLONASS 1 cm real-time kinematic positions, RT-2
corrections and raw data, code positions and DGPS, OmniSTAR HP/
XP/VBS, CDGPS, SBAS, 20 Hz
SMART-MR10-HP-G
GPS plus GLONASS dual-frequency code positions, SBAS, DGPS,
OmniSTAR G2/HP/XP/VBS, CDGPS, 20 Hz
SMART-MR10-SBAS-PVT1-G GPS plus GLONASS single-frequency code positions, SBAS, DGPS,
20 Hz
SMART-MR10-G-Z
GPS plus GLONASS heading vector, including heading and
separation between master and remote; 10 Hz; must be paired with
another receiver, DGPS
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Introduction
Chapter1
1.4.2
SMART-MR15
Figure 2: SMART-MR15 Receiver (GSM/GPRS/HSDPA version)
summarizes the available models. Contact your NovAtel dealer to get up-to-date information on
available models. For a list of dealers in your area, visit the NovAtel website at www.novatel.com/
Table 2: SMART-MR15 Controller Models
Model Name
Firmware Feature
SMART-MR15-RT2-G
GPS plus GLONASS 1 cm real-time kinematic positions, RT-2
corrections and raw data, code positions and DGPS, OmniSTAR HP/
XP/VBS, CDGPS, SBAS, 20 Hz
1.5 Installing the PC Utilities
The first thing you need to do is install the PC utilities on the computer you will use to configure the
unit. The utilities include Connect, a graphical user interface program, and Convert4, for converting
data file formats.
1. Start up the PC/laptop.
2. Insert the accompanying CD in the CD-ROM drive of the computer.
You can obtain the latest Connect (and PC utilities) version from the NovAtel
3. Select Install NovAtel’s PC Utilities from the window that is automatically displayed.
If the window does not automatically open when the CD is inserted, select Run from
the Start menu and select the Browse button to locate Setup.exe on the CD drive.
4. Install the PC Utilities by advancing through the steps provided in the NovAtel PC Utilities setup
program.
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Chapter 2
Installation
This chapter contains instructions for mounting and cabling your SMART-MR10/15.
2.1 Additional Equipment Required
The following additional equipment is required:
•
available for the SMART-MR10/15)
•
for part numbers). Refer to Figure 8, SMART-MR10 Streamlined Cabling on page
32 for COM and power connections.
•
A fused power supply (user-supplied)
2.1.1
Mounting Kits
When you are using your own mounting plate, adhere to the following guidelines for
maximum and minimum mounting-screw length:
Thickness of
Mounting Plate (T)
Total Length
of Screw
To ensure proper installation of your mounting plate to the SMART-MR10 and
SMART-MR15 units, the total length of the mounting screws must be:
-
-
[T” + 0.45”] maximum and [T” + 0.25”] minimum for 1/4-20 screws or
[Tmm + 11.5mm] maximum and [Tmm + 7mm] minimum for M6x1 screws.
Several NovAtel mounting kits are available, all of which come with four 1/4-20 screws for mounting
the SMART-MR10/15 to the mounting plate:
•
•
The Mounting Kit, Quick Release Assembly (part number 01018578) includes a
Mounting Kit, Quick Release Plate (part number 01018625).
•
•
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Installation
Chapter2
Note: Dimensions shown
are in millimetres.
Figure 3: SMART-MR10/15 Mounting Kit, Quick Release Plate (01018625)
All measurements are in millimetres unless otherwise specified.
The 01018625 mounting kit can be used in several configurations:
-
-
-
Stand-alone plate that is hard-mounted onto the implement
Hard-mounted or quick-release mounted onto an intermediate plate
As part of Mounting Kit, Quick Release Assembly, NovAtel part number
01018578
The mounting holes in the SMART-MR10/15 will align with the dimple locations in the
mounting plate. The 1/4-20 holes form a rectangular pattern. The M6x1 holes form a
trapezoidal pattern. Refer to the mechanical drawings in Appendix A.2 SMART-MR10
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Chapter 2
Installation
10.20
2X
51.08
12.80
32.00
R5.10
TYP.
269.7
248.7
208.70
16.00
13.70
179.70
100.00
50.00
12.50
TYP.
40.00
THE DIMENSIONS SHOWN ARE FOR THE
INTERMEDIATE MOUNTING PLATE, NOT
FOR THE ENTIRE QUICK RELEASE KIT.
280.00
27.46
31.00
334.9
NOTE: THE 01018578 MOUNTING
KIT, QUICK RELEASE ASSEMBLY
INCLUDES FOUR 1/4-20
UNIVERSAL MOUNTING PLATE 70023085
MOUNTING SCREWS
INTERMEDIATE
MOUNTING PLATE 70023089
Note: Dimensions shown
are in millimetres.
Figure 4: SMART-MR10/15 Mounting Kit, Quick Release Assembly (01018578)
•
•
All measurements are in millimetres unless otherwise specified.
The Mounting Kit, Quick Release Assembly (part number 01018578) includes a
Mounting Plate, Universal (part number 70023085). If you order a Mounting
Kit, Quick Release Assembly, there is no need to order a Mounting Plate,
Universal.
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Installation
Chapter2
Figure 5: SMART-MR10/15 Mounting Kit, AG GPS 262 (01018623)
•
•
All measurements are in millimetres unless otherwise specified.
The 1/4-20 mounting holes in the SMART-MR10/15 will align with the dimple
locations in the Mounting Kit, AG GPS 262 mounting plate. Refer to the
further information.
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Chapter 2
Installation
INSERT
NOTE: THE 01018624 MOUNTING KIT, 5/8 INCH
ADAPTER INCLUDES FOUR 1/4-20 SCREWS
THREADED
INSERT
PLATE
Figure 6: SMART-MR10/15 Mounting Kit, 5/8 Inch Adapter (01018624)
•
•
All measurements are in millimetres unless otherwise specified.
The mounting holes in the SMART-MR10/15 will align with the dimple locations in
the Mounting Kit, 5/8 Inch Adapter. The 1/4-20 holes form a rectangular pattern,
and the M6x1 holes form a trapezoidal pattern. Refer to the mechanical drawings in
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Installation
Chapter2
2.2 Mounting the SMART-MR10/15
When installing the SMART-MR10 or SMART-MR15:
•
Choose a location that has a clear view of the sky so that each satellite above the
horizon can be tracked without obstruction.
•
Mount the SMART-MR10 or SMART-MR15 on a secure, stable structure capable
of safe operation in the specific environment. A typical installation is on the vehicle
roof.
2.3 Cabling the SMART-MR10/15
Route the cable to the other system components and secure it. If you are using the NovAtel
streamlined cable, the system is as illustrated in Figure 8, SMART-MR10 Streamlined Cabling on
Figure 7: SMART-MR10/15 Connector
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Chapter 2
Installation
Table 3: SMART-MR10 Connector Pin-Out
Pin
1
Use
Pin
13
14
15
16
17
18
19
Use
RESERVED
PWR+
PWR-
CAN1-
CAN1+
TXD2
2
CHASSIS GROUND
3
SIGGND1
MKI
4
5
PPS
6
RXD2
ER
a
a
7
TXD1/TXD1+
MODE
a
8
20
21
22
23
RESERVED
RTS1/AUXTX/TXD1-
SIGGND2
9
RESERVED
a
10
11
12
RESERVED
CTS1/AUXRX/RXD1-
a
RESERVED
RESERVED
RXD1/RXD1+
a. The SMART-MR10/15 is RS-232/RS-422-selectable through pin 19
Table 4: SMART-MR10 Use of MODE Pin
MODE Pin
Result
Pin-out
Open
Pins 8 and 22 provide RS-232 access to Pin 7: TXD1
the AUX port TX and RX lines. COM1 Pin 8: AUXTX
flow control and COM1 RS-422 TX- and Pin 22: AUXRX
RX- signals are not available in this
configuration.
Pin 23: RXD1
(2 COM ports, no flow control)
Tied Low (connected to Pins 8 and 22 provide TXD1- and
Pin 7: TXD1+
ground)
RXD1- for COM1 RS-422, and the AUX Pin 8: TXD1-
port (AUXRX, AUXTX) is not available. Pin 22: RXD1-
Pin 23: RXD1+
(RS-422 only)
Tied High (connected
to positive side of
Pins 8 and 22 provide RTS1 and CTS1 Pin 7: TXD1
for COM1 flow control, and the AUX
Pin 8: RTS1
battery through a fuse) port (AUXTX, AUXRX) is not available. Pin 22: CTS1
Pin 23: RXD1
(1 COM port with flow control)
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Installation
Chapter2
Table 5: SMART-MR15 Connector Pin-Out
Pin
1
Use
Pin
13
14
15
16
17
18
19
Use
RESERVED
PWR+
PWR-
2
CHASSIS GROUND
3
CAN1-
CAN1+
AUXTX
AUXRX
SIGGND1
MKI
4
5
PPS
6
ER
a
a
7
TXD1/TXD1+
MODE
a
8
20
21
22
23
RESERVED
RESERVED
RTS1/TXD1-
SIGGND2
9
a
10
11
12
RESERVED
CTS1/RXD1-
a
RESERVED
RESERVED
RXD1/RXD1+
a. The SMART-MR15 is RS-232/RS-422-selectable through pin 19
Table 6: SMART-MR15 Use of MODE Pin
MODE Pin
Open or tied High
Result
Pin-out
Pins 8 and 22 provide RTS1 and
Pin 7: TXD1
(connected to positive CTS1 for COM1 flow control, and the Pin 8: RTS1
side of battery through AUX port (AUXTX, AUXRX) is not
Pin 22: CTS1
Pin 23: RXD1
a fuse)
available.
(1 COM port with flow control)
Tied Low (connected
to ground)
Pins 8 and 22 provide TXD1- and
RXD1- for COM1 RS-422, and the
AUX port (AUXRX, AUXTX) is not
available.
Pin 7: TXD1+
Pin 8: TXD1-
Pin 22: RXD1-
Pin 23: RXD1+
(RS-422 only)
If the MODE pin is tied high, it must be tied high through a fuse. In this case, MODE can
be tied to the same fuse as the red power lead, as illustrated in Figure 8, SMART-MR10
Streamlined Cabling on page 32. It is never acceptable to connect wiring directly to the
positive side of the power source.
2. Turn on the power supply to the SMART-MR10/15. The power LED
receiver lights red when the SMART-MR10/15 is properly powered.
on the back of the
Minimum conductor size for all wiring is 0.5 mm / 20 AWG. While the AMPSEAL
connector can accommodate X mm / 20 AWG wire electrically, in order to ensure IP67
performance, the wire insulation diameter needs to be no less than 2.2 mm / 0.0826
inches.
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Chapter 2
Installation
2.3.1
Connecting the Power Supply
The SMART-MR10/15 requires +9 to +36 VDC for the input power to the receiver. See Appendix A.2
page 79 for SMART-MR15 power supply specifications.
The SMART-MR10/15 cable provides power in (with a BATT+ label) and power ground (with a
BATT- label) bare wires for connections from the SMART-MR10/15 to a vehicular power system
protected by a user-supplied fuse. NovAtel recommends an automotive blade-type fuse, rated for 5A
The SMART-MR10/15 power source must be protected by a 5A fuse or damage to
wiring may result (not covered by warranty). If the voltage supplied is above or
below the specified range, the receiver will suspend operation. If the voltage
supplied is above 48V, the receiver may be permanently damaged, voiding your
warranty.
Once you apply power, the SMART-MR10/15 status lights will light as described in Status Indicators
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Installation
Chapter2
2.3.2
Status Indicators
LED indicators on the SMART-MR10/15 provide receiver status information:
•
•
•
Power
Position Status
Position Type
applied.
Table 7: SMART-10 LED Status Indicators
Red
Yellow
Green
Condition
Off
Off
Off
Power is not available. (Red indicator may also not be lit if a boot
failure has occurred.)
On
On
On
On
On
Off
Flashing
On
Off
Off
Off
Power available but no satellites are being tracked
Tracking at least one satellite but not a valid position
Position valid in basic autonomous mode
On
Flashing SBAS tracking, but not enough data for enhanced solution.
a
On
On
Position valid in an enhanced accuracy mode
(WAAS/EGNOS/MSAS/DGPS, OmniSTAR VBS/XP/HP, or RTK)
a
On
Flashing
Flashing
Fixed position with bad integrity
a. When acting as a reference receiver, all lights on solid indicates a good fixed position.
Flashing means that the LED is turning on and off at a 1 Hz rate - 0.5 seconds on and 0.5 seconds off.
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Chapter 2
Installation
Table 8: SMART-MR15 LED Indicators
Green
Red
Yellow
Condition
Off
Flashing
On
Off
Any
Off
Off
Off
Off
Off
Power is not available (Red indicator may also not be lit if a boot
failure has occurred).
A SIM card error is present or the SIM may not be installed.
Applies only to GSM/GPRS/HSDPA version of SMART-MR15.
Off
Power available, but no satellites are being tracked.
No cellular network connection.
On
Flashing
On
Tracking at least one satellite, but not a valid position. No cellular
network connection.
On
Position valid in basic autonomous mode. No cellular network
connection.
On
On
Flashing Connected to cellular network, but not receiving RTK corrections
over NTRIP.
On
Flashing
Flashing Tracking at least one satellite, but not a valid position.
Connected to cellular network, but not receiving RTK corrections
over NTRIP.
On
On
On
The following conditions are true:
• A valid position is available
• The NTRIP client is in a STREAMING state
• An RTK solution is available over NTRIP
Flashing means that the LED is turning on and off at a 1 Hz rate - 0.5 seconds on and 0.5 seconds off.
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Installation
Chapter2
2.3.3
Debugging Guidelines:
•
If the power is on but the yellow LED does not flash within one minute, no satellites are being
tracked. There may be excessive blockage or the unit may be defective. Make sure the unit has an
unobstructed view of the sky. Try power cycling the unit.
•
If the yellow LED does not flash within one minute and power cycling the unit does not fix the
problem, once you have a computer or terminal connected, request a VERSION log to ensure that
the auth code is correct.
Example of a receiver loaded with an incorrect auth code:
<OK
[COM1]<VERSION COM1 0 94.5 UNKNOWN 0 156.357 004c0001 3681 5010
<3
< GPSCARD "invalid authcode" "DHC09401037" "MCAGTP-1.00-22B" "3.710" "3.002" "2009/Nov/30" "11:08:19"
< DB_USERAPPAUTO "SmartAg" "0" "" "1.100" "" "2009/Nov/27" "13:22:29"
< USERINFO "LMX9830" "0212" "002166000001" "" "" "" ""
[COM1]
•
•
Applies to MR10/15 – If the yellow LED is flashing but does not progress to solid yellow within
one minute, then insufficient satellites are being tracked or the signal quality is poor and
ephemeris data can’t be received. Normally, four satellites are sufficient for a valid position as
long as they are widely distributed in the sky. If it is stuck on blinking yellow, there may be
excessive blockage or the unit may be defective. Make sure the unit has an unobstructed view of
the sky. Try power cycling the unit.
Applies to MR10 – If the yellow LED is on and the green LED does not turn on within five
minutes, no SBAS or DGPS positions are available. If you are using SBAS, make sure SBAS is
available in your area and that the unit is configured to enable SBAS positions (SBASCONTROL
ENABLE). For DGPS, make sure the unit is configured with the correct serial port parameters
and to accept the DGPS protocol your area uses and that your data modem is connected and
working.
•
•
Applies to MR15 – The green LED blinks when the MR15 authenticates with a cellular network.
The LED stays off if a cellular network connection is impossible for any reason.
Applies to MR15 – If the green LED doesn’t go solid after mounting an NTRIP Caster, verify the
NTRIP Client configuration. The green LED only turns on if three conditions are met:
1. The NTRIP Client enters the STREAMING state
2. A valid position is available (the amber LED is on)
3. An RTK solution is available
For example, if the MR15 NTRIP Client is configured to receive RTCMV3 corrections but is
receiving RTCA corrections, only conditions 1) and 2) apply, so the green LED will remain
flashing.
Applies to MR15 (HSPA only). If the red LED is flashing, the SIM card is not inserted or
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Chapter 2
Installation
2.3.4
Connecting Data Communications Equipment
To communicate with the receiver so that you can send commands to and obtain logs from the
SMART-MR10/15, you will need to connect it to a terminal or computer. For further information
about the data communications connector and pin-out details for the evaluation and streamlined
on page 86 respectively. Once you are connected, you will be able to carry out the operations outlined
2.4 Additional Installation Information
This section provides additional installation and configuration information that relate to specific
applications of the SMART-MR10/15.
2.4.1
MKI and PPS Strobes
Input (MKI) and output (PPS) strobes provide status and synchronization signals. PPS is a 3.3V
CMOS output; MKI is a 5V-tolerant input. PPS and MKI are referenced to SGND. Pin-out
MKI can be used in conjunction with the MARKTIME and MARKPOS logs. For information about
these logs, refer to OEMV Family Firmware Reference Manual, available on the NovAtel website at
2.4.2
Emulated Radar (ER)
The SMART-MR10/15 output an emulated radar signal via the bare wires labeled SGND and
The ER outputs:
•
•
•
•
Logic high: Minimum of supply voltage minus 0.5V
Logic low: Maximum of 0.5V
Minimum load: 3k ohms
Rise and fall time: Less than 1 ms.
The ER output is referenced to signal GND and provides logic low output until its speed is greater
than 1 km/hr. ER can be configured to operate at one of three distinct frequencies (26.11, 28.12 or
36.11 Hz/km/hr, with 36.11 Hz/km/hr being the default value) and with an effective velocity range
from 1 km/hr to 55 km/hr for near-horizontal applications. See Appendix B.12 RADARCFG Configure
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Chapter2
2.4.3
Controller Area Network (CAN)
NMEA 2000 is a CAN standard created by the National Marine Electronics Association and designed
to support networking in marine applications. It functions over a longer physical distance, and
supports more physical nodes than ISO 11783. The relationship between NMEA 2000 and SAE J1939
is that J1939 is the standard, while the NMEA 2000 group has added new messages (called PGNs or
Parameter Group Numbers) and a new transport protocol called FastPacket. NMEA 2000 compliant,
for all intents and purposes, means J1939 compliant plus support for new NMEA 2000 messages. In
other word, one cannot have NMEA 2000 without J1939 support as well. J1939 is additionally
“harmonized” with ISO 11783, a standard for the agriculture industry.
The CAN module is activated when a SETCANNAME command is entered, and after a
SAVECONFIG, the CAN module is activated immediately on all subsequent start-ups. The module
supports the following NMEA 2000 Parameter Group Messages (PGN):
•
•
•
PGN 129029 GNSSPositionData (1 Hz)
PGN 129025 GNSSPositionRapidUpdate (10 Hz)
PGN 129026 COGandSOGRapidUpdate (4 Hz)
Table 9: Available CAN Signals on SMART-MR10/15 23-pin Tyco Connector
CAN
Pins
CAN1-
CAN1+
Pin 3
Pin 4
2.4.4
SMART-MR15 CELLULAR ANTENNA INSTALLATION
The SMART-MR15 has a cellular antenna port to facilitate the connection of an external cellular
antenna. An external antenna must be connected to this port in order to use the integrated cellular
modem.
To comply with FCC regulations limiting both maximum RF output power and
human exposure to RF radiation, the maximum system gain (antenna gain minus
system loss) must not exceed 1.4 dBi in the U.S. Cellular band and 3.0 dBi in the
PCS band for the GSM/GPRS/HSDPA variant, and 6.0 dBi in the Cellular band and
6.0 dBi in the PCS band for the CDMA variant. System loss is the total of external
cable and connector losses and SMART-MR15 internal losses. For reference and
system gain calculation purposes, the SMART-MR15 has internal losses of 0.6 dB
for the 800 MHz Cellular band and 1.8 dB for the 1900 MHz PCS band.
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Chapter 2
Installation
•
•
•
Do not connect a CDMA antenna to a GSM/GPRS/HSDPA version of the
SMART-MR15 as this creates a safety hazard.
Do not shorten the cable lengths provided with any particular antenna type as
this creates a safety hazard.
Do not connect a GSM/GPRS/HSDPA antenna type to a CDMA version of the
SMART-MR15 as cellular performance is degraded.
1. Connect an appropriate antenna type to the SMART-MR15: Specific antenna types are available
from NovAtel for the GSM/GPRS/HSDPA or CDMA versions of the SMART-MR15.
2. Ensure the cellular antenna is installed at least 30 cm away from the SMART-MR15, as shown in
Figure 10. GNSS positioning accuracy may be degraded if this is not observed, particularly for
operation in the EU “1800 MHz” band.
CELLULAR ANTENNA
NOTE: DIMENSIONS SHOWN
ARE IN MILLIMETRES (mm)
Figure 10: Cellular Antenna Placement
3. Ensure the cellular antenna is installed at least 20 cm away from the Bluetooth antenna area of the
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Chapter2
4. Antennas must be installed on a “ground plane”. A vehicle with a metal roof is inherently a
ground plane. For vehicles with a non-metallic roof a metal ground plane (available from NovA-
tel) must be used.
When installing the antenna on a metallic roof, it is recommended that the antenna be installed no
closer than 10 cm, (4 inches) from the edge of the rooftop, to avoid adversely affecting the
antenna performance due to distortion of the antenna pattern.
The NovAtel ground plane accessory for use on non-metallic vehicle cab roofs is designed to
provide a sufficient symmetrical ground plane around the antenna to guarantee optimal antenna
performance.
5. Secure the RF connector to the SMART-MR15 ensuring a “hand tight” connection.
•
•
Do not use pliers or other tool types to over-tighten the RF connector as damage
to the connector will occur.
Ensure the RF connectors (male and female) are clean and dry before mating.
Low pressure compressed air can be used to clean the connectors (that is,
compressed air available in aerosol can format). Do not use a high pressure
compressed air as moisture seals in the connector can be damaged. If the
SMART-MR15 is moved between multiple vehicles each with its own cellular
antenna, some means of sealing the unmated RF connectors should be used.
Cellular radio frequencies are much higher than older forms of radio
communications; the effects of moisture and/or dust will have a greater effect on
performance.
2.4.5
SMART-MR15 - Installation Details for Cellular Activation
GSM/GPRS/HSDPA
The GSM/GPRS/HSDPA modem is not “locked” to any particular carrier. To activate your
SMART-MR15 on a GSM/GPRS/HSDPA network, please follow these steps:
1. Contact your preferred GSM/GPRS/HSDPA cellular service provider.
2. Obtain an active account and SIM card providing GSM/GPRS/HSDPA data services (recom-
mended data plans for Network RTK are 5GB/Month Rate Plans). You may need to provide:
a. Product Name: SMART-MR15 GSM/GPRS/HSDPA [Part Number: 01018712]
b. Modem Serial Number (IMEI): Modem serial number from SMART-MR15 product label
Your cellular provider may provide an activation procedure with the SIM card.
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Installation
When you are replacing the SIM cover, make sure it is installed straight or you may
inadvertently cause the SIM card to eject.
4. Install the SIM following the orientation shown on the SIM cover (notch up and in, as shown in
Figure 12). The SIM connector is a push -in/push-out type. If the SIM is correctly installed, its
outside edge will be essentially flush with the surrounding enclosure metal surface, as shown in
To remove the SIM push it in slightly and it should then be partially ejected by the SIM
The modem will not work if the SIM is in the partially ejected “ready for removal”
position.Ensure the SIM door is properly aligned, then secure it in place.
Figure 11: SIM Cover
Figure 12: SIM Being Installed
Figure 13: SIM Correctly Installed
Figure 14: SIM Ready for Removal
Secure the SIM cover to the base using a flat-head screwdriver. Screws should be torqued
to 4-6 in-lb, to ensure the unit does not leak.
5. To register with the cellular network, issue the following commands with data provided by the
carrier:
cellset apn <apn_name> {always required}
cellset user <user_name> {if provided by carrier}
cellset password <password> {if provided by carrier}
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6. Your product is ready for use.
Chapter2
Cellular data consumption and service charges are dependent on the configuration of
your SMART-MR15 receiver and data logging rates.
CDMA
To activate your SMART-MR15 on the Verizon network:
1. Obtain a Verizon Wireless Account. You will need to provide:
a. Product Name: SMART-MR15 CDMA (Verizon) [Part Number: 01018606]
b. Modem Serial Number (MEID) from the SMART-MR15 product label
2. Activate the modem with Verizon:
a. Apply power and establish a serial connection with your product.
b. Send the following logs and commands:
NovAtel Command
Guidance
LOG CELLSTATUSA ONCHANGED
CELLACTIVATE verizon
Check the number of bars to confirm signal strength OK.
This will provision the module on the Verizon network
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Chapter 3
Operation
Before operating the SMART-MR10 or SMART-MR15 for the first time, ensure that you have
instructions are based on a COM port configuration such as that shown in Figure 15 on page 49. It is
assumed that a personal computer (PC), or laptop, is used during initial operation and testing for
greater ease and versatility.
3.1 Communications with the Receiver
Communication with the receiver typically consists of issuing commands through the communication
ports from an external serial communications device. This could be either a terminal or PC/laptop that
is directly connected to the receiver serial port using a DB-9 connector on the SMART-MR10 or
SMART-MR15 multi-cable. If you are using a radio, it connects to another DB-9 connector on the
same multi-cable by means of the radio serial cable supplied with the radio. It is recommended that
you become thoroughly familiar with the commands and logs detailed in the OEMV Family Firmware
Reference Manual to ensure maximum utilization of the receiver’s capabilities.
3.1.1
Serial Port Default Settings
The receiver communicates with your PC/laptop or terminal via an RS-232 serial port. For
communication to occur, both the receiver and the operator interface have to be configured properly.
The receiver’s COM1, COM2 and AUX default port settings are configured as follows:
•
9600 bps, no parity, 8 data bits, 1 stop bit, no handshaking, echo off
SMART-MR15 COM2 is restricted to internal use by the cellular radio. Do not
modify the settings for this port.
COM1 can be configured as RS-422. It can also be configured with flow control.
AUX is not available if COM1 flow control is enabled or if COM1 is configured as
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Chapter3
The data transfer rate you choose determines how fast information is transmitted. Take for example a
log whose message byte count is 96. The default port settings allows 10 bits/byte (8 data bits + 1 stop
bit + 1 framing bit). It therefore takes 960 bits per message. To get 10 messages per second then
requires 9600 bps. Also remember that even if you set the bps to 9600 the actual data transfer rate is
lower and depends on the number of satellites being tracked, data filters in use, and idle time. It is
suggested that you leave yourself a margin when choosing a data rate (115200 is recommended for
most applications).
Data rates below 9600 bps are not recommended.
3.1.2
Communicating Using a Remote Terminal
One method of communicating with the receiver is through a remote terminal. The receiver has been
pre-wired to allow proper RS-232 interface with your data terminal. To communicate with the
terminal, the receiver only requires the RX, TX, and GND lines to be used. Request to Send (RTS)/
Clear to Send (CTS) hardware handshaking is not available. Ensure the terminal’s communications
set-up matches the receiver’s RS-232 protocol.
3.1.3
Communicating With a Computer
A computer can be set up to emulate a remote terminal as well as provide the added flexibility of
creating multiple-command batch files and data logging storage files. Any standard communications
software package that emulates a terminal can be used to establish bidirectional communications with
the receiver, for example, HyperTerminal or our own graphic user interface (GUI) program, Connect.
All data is sent as raw 8-bit binary or ASCII characters.
3.2 Getting Started
Included with your receiver are NovAtel’s Connect and Convert4 programs. Connect is a Windows-
based GUI which allows you to access the receiver's many features without the need for
communications protocol or to write special software. To learn how to use Connect with a NovAtel
receiver, press F1 or click the NovAtel button and select Help.
The Convert4 utility is a Windows-based utility that allows you to convert receiver logs between
ASCII and binary formats, and strips unwanted records for data file compilation. If you have not
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Chapter 3
Operation
3.2.1
Starting the Receiver
When first powered, the SMART-MR10/15 undergoes a complete self-test. If an error condition is
detected during a self-test, the self-test status word changes. This self-test status word can be viewed
in the header of any data output log. Refer to the chapter on Messages in the OEMV Family Firmware
Reference Manual for header information. If a persistent error develops, please contact your local
NovAtel dealer first. If the problem is still unresolved, please contact NovAtel directly through any of
3.3 Transmitting and Receiving Corrections
RTK or DGPS corrections can be transmitted from a base station to a rover station to improve position
accuracy. The base station is the GNSS receiver, which is acting as the stationary reference. It has a
known position and transmits correction messages to the rover station. The rover station is a GNSS
receiver which can be sent correction messages from a base station to calculate differential GNSS
positions. The SMART-MR10/15 can be used as base receivers to transmit RTK or DGPS corrections,
or as rovers to receive the same corrections. An example of a differential setup is given in Figure 15
While the setup described in the following sections may work on a SMART-MR15,
the SMART-MR15 is designed to receive corrections over a cellular modem on
COM2 via NTRIP caster, in which case, the NTRIPCASTER and NTRIPCLIENT
commands will take care of all interface mode configuration and corrections. Users
should not change the COM2 interface settings manually or the receiver will no
longer be able to communicate with the cellular modem.
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Rover
1
Base
7
4
2
1
6
3
5
2
3
5
Figure 15: Basic Differential Setup
Description
Reference
1
2
3
4
5
6
7
Receiver
User-supplied 5A fuse
User-supplied power supply, for example a battery
User-supplied device to COM1
User-supplied radio device to COM2 (SMART-MR10 only)
User-supplied PC/laptop, for setting up and monitoring, to COM1
Cellular Antenna (SMART-MR15 only)
System biases can introduce errors. Refer to the Support page on the NovAtel website at
base station and rover station (two NovAtel receivers) in order to receive corrections. The application
of SBAS corrections to a single receiver are an exception to the base/rover concept. Generally, a link
capable of data throughput at a rate of 9600 bits per second, and less than 4.0 s latency, is
recommended.
Once your base and rover are set up, you can configure them as outlined in the configuration examples
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Chapter 3
Operation
3.3.1
Base Station Configuration
At the base station, enter the following commands:
interfacemode port rx_type tx_type [responses]
com com2 115200 N 8 1 N off
fix position latitude longitude height
log port message [trigger [period]]
Examples of these commands include the following:
RTCA
interfacemode com2 none rtca off
fix position 51.11358042 -114.04358013 1059.4105
(enter your own lat, lon, hgt)
log com2 rtcaobs ontime 1
log com2 rtcaref ontime 10
log com2 rtca1 ontime 5
(optional, enable code-dgps coverage)
log com2 rtcaephem ontime 10 1 (optional)
RTCAOBS2
interfacemode com2 none rtca off
(recommended) fix position 51.11358042 -114.04358013 1059.4105
(enter your own lat, lon, hgt)
log com2 rtcaobs2 ontime 1
log com2 rtcaref ontime 10
RTCM V2.3
interfacemode com2 none rtcm off
fix position 51.11358042 -114.04358013 1059.4105
(enter your own lat, lon, hgt)
log com2 rtcm3 ontime 10
log com2 rtcm22 ontime 10 1
log com2 rtcm1819 ontime 1
log com2 rtcm1 ontime 5
(optional)
RTCM V3
interfacemode com2 none rtcmv3 off
fix position 51.11358042 -114.04358013 1059.4105
(enter your own lat, lon, hgt)
(for L1 only models)
log com2 rtcm1002 ontime 1
log com2 rtcm1004 ontime 1
log com2 rtcm1006 ontime 10
log com2 rtcm1019 ontime 120
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RTCM V3 with GLONASS
(recommended) fix position 51.11358042 -114.04358013 1059.4105
(enter your own lat, lon, hgt)
(for L1 only models)
interfacemode com2 none rtcmv3 off
log com2 rtcm1002 ontime 1
log com2 rtcm1004 ontime 1
log com2 rtcm1010 ontime 1
log com2 rtcm1012 ontime 1
log com2 rtcm1006 ontime 10
log com2 rtcm1033 ontime 10
log com2 rtcm1019 ontime 120
log com2 rtcm1020 ontime 120
(for L1/L2 models)
(for L1 only models)
(for L1/L2 models)
CMRPLUS (CMR+)
fix position 51.11358042 -114.04358013 1059.4105
(enter your own lat, lon, hgt)
interfacemode com2 none cmr off
log com2 cmrobs ontime 1
log com2 cmrgloobs ontime 1
log com2 cmrplus ontime 1 (important to use ontime 1 with cmrplus)
CMR
interfacemode com2 none cmr off
fix position 51.11358042 -114.04358013 1059.4105
(enter your own lat, lon, hgt)
log com2 cmrobs ontime 1
log com2 cmrgloobs ontime 1
log com2 cmrref ontime 10
log com2 cmrdesc ontime 10 1
(optional)
3.3.2
Rover Station Configuration
At the rover station, enter:
interfacemode port rx_type tx_type (responses)
For example:
RTCA
interfacemode com2 rtca none off
interfacemode com2 rtca none off
interfacemode com2 rtcm none off
interfacemode com2 rtcmv3 none off
RTCAOBS2
RTCM V2.3
RTCM V3
RTCM V3 with GLONASS
interfacemode com2 rtcmv3 none off
CMR+
CMR
interfacemode com2 cmr none off
interfacemode com2 cmr none off
(same as CMR+)
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3.3.3
GPS + GLONASS Base and Rover Configuration
This section shows you how to set up your base and rover OEMV GPS + GLONASS-enabled
receivers for GPS + GLONASS RTK operation:
Base Station:
fix position lat lon hgt
com com2 115200 N 8 1 N off
interfacemode com2 none rtca off
log com2 rtcaref ontime 10
log com2 rtcaobs2 ontime 1
log com2 rtca1 ontime 5
saveconfig
(enter your own lat, lon, and hgt values)
(optional, enable code-DGPS coverage)
(optional, save configuration to non-volatile memory)
Rover Station:
com com2 115200 N 8 1 N off
interfacemode com2 rtca none off
log com1 bestposa ontime 1
saveconfig
(optional, view position information)
(optional, save configuration to non-volatile memory)
3.3.4
Configuration Notes
For compatibility with other GNSS receivers, and to minimize message size, it is recommended that
you use the standard form of RTCA, RTCM, RTCMV3 or CMR corrections as shown in the base and
rover examples above. This requires using the INTERFACEMODE command to dedicate one
direction of a serial port to only that message type. When the INTERFACEMODE command is used
to change the mode from the default, NOVATEL, you can no longer use NovAtel format messages.
If you want to mix NovAtel format messages and RTCA, RTCAOBS2, RTCM, RTCMV3, CMR+ or
CMR messages on the same port, you can leave the INTERFACEMODE set to NOVATEL and log out
variants of the standard correction messages with a NovAtel header. ASCII or binary variants can be
requested by simply appending an “A” or “B” to the standard message name. For example on the base
station:
interfacemode com2 novatel novatel
fix position 51.11358042 -114.04358013 1059.4105
log com2 rtcm1b ontime 2
Using the receiver in this mode consumes more CPU bandwidth than using the
At the rover station you can leave the INTERFACEMODE default settings (interfacemode com2
novatel novatel). The rover receiver recognizes the default and uses the corrections it receives with a
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NovAtel header.
Chapter3
The PSRDIFFSOURCE and RTKSOURCE commands set the station ID values which identify the
base stations from which to accept pseudorange or RTK corrections respectively. They are useful
commands when the rover station is receiving corrections from multiple base stations.
All PSRDIFFSOURCE entries fall back to SBAS (even NONE) for backwards
compatibility.
At the base station it is also possible to log out the contents of the standard corrections in a form that is
easier to read or process. These larger variants have the correction fields broken out into standard
types within the log, rather than compressed into bit fields. This can be useful if you wish to modify
the format of the corrections for a non-standard application, or if you wish to look at the corrections
for system debugging purposes. These variants have “DATA” as part of their names (for example,
RTCADATA1, RTCMDATA1, CMRDATAOBS, and more). Refer also to the OEMV Family
Firmware Reference Manual, which describes the various message formats in more detail.
Information on how to send multiple commands and log requests using DOS or
Desk & Solutions | Search Known Solutions.
3.3.5
SBAS (Satellite-Based Augmentation Systems)
A Satellite-Based Augmentation System (SBAS) is a type of geostationary satellite system that
improves the accuracy, integrity, and availability of the basic GNSS signals. Accuracy is enhanced
through the use of wide area corrections for GNSS orbits and ionospheric errors. Integrity is enhanced
by the SBAS network quickly detecting satellite signal errors and sending alerts to receivers to not use
the failed satellite. Availability is improved by providing an additional ranging signal to each SBAS
geostationary satellite.
OEMV family receivers, including the SMART-MR10/15, are capable of SBAS positioning. This
positioning mode is enabled using the SBASCONTROL command. The following command is used
to automatically track and use the SBAS service available in the area of operation, for example,
WAAS or EGNOS:
sbascontrol enable auto
For further information on SBASCONTROL, refer to the OEMV Family Installation and Operation
WAAS (Wide-Area Augmentation System)
The US Federal Aviation Administration (FAA) has developed a Wide Area Augmentation System
(WAAS) to provide accurate positioning to the aviation industry. As well as providing the industry
with this high quality service, it is available to all other civilian users and markets in North America,
free of charge. Future developments to this system will encompass the L5 signal.
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EGNOS (European Geostationary Navigation Overlay Service)
Operation
EGNOS has been developed to work with existing satellite navigation systems to improve the
accuracy of navigation signals. The EGNOS signal is transmitted by two geostationary satellites and
covers all of Europe. EGNOS transmits a signal containing information on the reliability and accuracy
of the positioning signals sent out by GPS.
At the time of this writing, the signal broadcast by the EGNOS satellites AOR-E (PRN120) and the
ESA ARTEMIS satellite (PRN 124) is used for EGNOS Operations. The EGNOS satellite IOR-W
(PRN 126) is currently used by Industry to perform various tests on the system.
3.4 GL1DE®
SMART-MR10/15 contain NovAtel’s GL1DE, a positioning algorithm for single frequency GPS and
GPS/GLONASS applications. GL1DE produces a smooth position output tuned for applications
where optimal time relative (pass-to-pass) accuracy is more important than absolute accuracy, making
it well suited for agricultural applications.
Multipath signals tend to induce time-varying biases and increase the measurement noise on the L1
pseudorange measurements. Carrier phase measurements are much less susceptible to the effects of
multipath. The GL1DE algorithm combines the information from the L1 code and the L1 phase
measurements into a Position-Time-Velocity (PVT) solution.
GL1DE includes settings for a dynamic mode, a static mode, and an “auto” mode, where the filtering
parameters are automatically adjusted as vehicle velocity varies between stationary and dynamic
states.
Refer to the NovAtel white papers on the NovAtel website at www.novatel.com/support/knowledge-
and-learning/published-papers-and-documents/white-papers/ for more information on GL1DE. Refer
also to the application note “APN-038 Pseudorange/Delta-Phase (PDP) and GL1DE Filters” on the
NovAtel website at www.novatel.com/support/knowledge-and-learning/published-papers-and-
3.5 ALIGN®
3.5.1
ALIGN Heading Master and Remote Configurations
For information about how to set up a master station with an ALIGN-capable remote receiver for
applications that require relative heading and pitch output, refer to APN-048. This Application Note is
available from the NovAtel website at www.novatel.com/support/knowledge-and-learning/published-
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Operation
Chapter3
3.6 Emulated Radar (ER)
A typical radar sensor emits radio beams that bounce off the ground, and computes ground speed
based on the speed at which objects are passing in front of the sensor. The output of the sensor is a
digital pulse, the frequency of which is proportional to the vehicle’s ground speed. This is often used
in agricultural applications such as planting and spraying. The SMART-MR10/15 eliminate the need
for separate ground-sensing radar equipment by converting the GPS-derived velocity to proportional
frequency output. The following emulated radar signal parameters can be configured by the customer:
•
•
Frequency Step: Specifies how the frequency output relates to the vehicle speed.
Signal Update Rate: Specifies how often the frequency output is updated to match the vehicle
speed.
•
Response Mode:Specifieshowquicklychangesinvelocityarereflectedinthefrequencyoutput.
Setting a slower response mode reduces spikes (noise) in the velocity but increases latency.
Setting a higher response mode reduces latency, but may result in noisier frequency output. Refer
information.
log (see page 119).
3.7 NTRIP Client
network RTK via NTRIP. To access NTRIP servers, the SMART-MR15 uses a built-in TCP/IP-
capable cellular modem and NTRIP client software.
Wireless
Network
NTRIP Requests
(typically GPGGA)
Wireless
Gateway
NTRIP
NTRIP
Source
NTRIP
Caster
Server
(example,
CORS)
NTRIP Corrections
over
NTRIP Corrections
over TCP/IP
TCP/IP
Figure 16: NTRIP Client Configuration
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Chapter 3
The following are examples of connecting to NTRIP clients:
Operation
Connecting to www.igs-ip.net (no GPGGA logs):
ntripcaster www.igs-ip.net 80
ntripclient mount prds0 userid password rtcmv3
Connecting to www.igs-ip.net
ntripcaster www.igs-ip.net 80
ntripclient mount prds0 userid password rtcmv3 10
(and send one GPGGA log to the NTRIP server every ten seconds)
3.8 Recommended Configuration
The following command is recommended to enable CAN:
setcanname 305
The following command is recommended to enable SBAS (WAAS/EGNOS/MSAS) corrections:
sbascontrol enable
sbascontrol enable EGNOS 0 zerototwo
The following commands are recommended to enable GL1DE:
pdpfilter enable
pdpmode relative auto
The cellular modem (SMART-MR15 only) is automatically enabled on start up. To set up the NTRIP
corrections, the following commands are recommended:
ntripcaster <address> <port>
ntripclient mount <mountpoint> <username> <password>
<correctiontype>
NovAtel has registered manufactured ID code 305 with J1939. When complete, your configuration
can be saved with the SAVECONFIG command. Refer to the OEMV Family Firmware Reference
Manual for further details on these commands.
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Chapter 4
PC Utilities
Visit NovAtel’s website at www.novatel.com/support/firmware-software-and-manuals/firmware-
software-updates/ for the most recent versions of the PC software and receiver firmware.
4.1 Connect/Convert4 Installation
The accompanying CD contains the Microsoft Windows applications Connect and Convert4. They are
installed via a standard Install Shield set-up application. Also included on the CD is sample source
code, to aid development of software for interfacing with the receiver, and product documentation.
These applications utilize a database in their operations so the necessary components of the Borland
Database Engine (BDE) are installed as well as the necessary database tables and an alias for the
database. The install set-up application does all this automatically so you have only to select where
you would like the applications installed on the computer. You must close all applications before
installing Connect and Convert4. You must close any applications that may be using the BDE before
installing. The install set-up modifies the BDE configuration so that it can recognize the new Connect
and Convert4.
The software operates from your computer’s hard drive:
1. Start Microsoft Windows.
2. Place the NovAtel CD in your CD-ROM drive. If the setup utility is not automatically accessible,
follow these steps:
a. Select Run from the Start menu.
b. Select the Browse button.
c. Locate Setup.exe on the CD drive and select Open.
d. Select OK to run the setup utility.
3. Advance through the steps provided by the setup utility.
When the installation is complete, click on a program icon to launch the application
The latest version of NovAtel Connect is available to download from our website at
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Chapter 4
PCUtilities
4.2 Connect
Connect is a 32-bit Windows application. The application provides a graphical user interface (GUI)
to allow you to set-up and monitor the operation of the NovAtel receiver by providing a series of
windows. A help file is included with Connect. To access the file, select Contents from the Help
menu.
Most windows have a popup menu accessible by right clicking on the window with the mouse. They
provide a way to customize the window by changing the font or to print the window contents. Some of
the windows have access to the Options dialog which contains further settings for certain windows.
Refer to the Connect utility’s online help for specific details.
Refer to the Quick Start Guide for instructions for using NovAtel Connect to open a connection.
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Chapter4
4.3 Convert4
formats and convert them to ASCII, Binary or RINEX format. The application also allows the user to
screen out particular logs by selecting the desired logs from the list of available logs. This feature is
useful for screening particular logs out of large data files in either ASCII or Binary formats.
Figure 17: Convert4 Screen Examples
4.3.1
RINEX Format
1
The Receiver-Independent Exchange (RINEX ) format is a broadly-accepted, receiver-independent
format for storing GPS data. It features a non-proprietary ASCII file format that can be used to
combine or process data generated by receivers made by different manufacturers.
The Convert4 utility can be used to produce RINEX files from NovAtel receiver data files.
Although RINEX is intended to be a receiver-independent format, there are many
optional records and fields. Keep this in mind when combining NovAtel and non-
NovAtel RINEX data.
1.
For further information on RINEX Version 2.10 file descriptions, you may wish to consult the
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Chapter 4
PCUtilities
When converting to RINEX, two files are produced - a RINEX observation file and a RINEX
navigation file. A third GLONASS file is produced if the data contains GLONASS observations. The
default names of these files conform to the RINEX Version 2.10 recommended naming convention of
ssssdddf.yyt, where:
ssss
4 character station name - Convert4 uses the first four characters of the <infile>
parameter as the station ID
ddd
day of year
f
t
file sequence number within the day - Convert4 sets this to zero
file type: o for the observation and n for the navigation file
section causes the:
1. Destination File: field to be replaced by the Observation File: and Ephemeris File: fields. Note
that Observation File refers to the RINEX OBS file while Ephemeris File refers to the RINEX
NAV file.
2. RINEX Headers buttons to appear allowing you to supply additional information that appears in
the header records of the RINEX output files (for example, Company Name, Marker Name and
Marker Number).
For best results, the NovAtel receiver input data file should contain the logs as in Table 10, NovAtel
Table 10: NovAtel Logs for RINEX Conversion
NovAtel OEMV Family Log
Recommended Trigger
ontime 1
RANGEA/B, or
RANGECMPA/B
BESTPOSA/B, or
PSRPOSA/B, or
RTKPOSA/B, or
MARKPOSA/B
once
IONUTCA/B
onchanged
onchanged
onchanged
once
RAWEPHEMA/B
GLORAWEPHEMA/B
a
VERSIONA/B
a. Information from this log overrides data entered into the Receiver
Number, Type and Version fields using the OBS file button of the
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Chapter4
4.3.2
Convert4 Command Line Switches
Convert4 supports several command-line switches to facilitate batch processing. To access its
Command Line Arguments window, open a command prompt window (select Accessories |
Command Prompt from the Start menu). Change directory (cd) to the directory on the hard drive on
which Convert4 is stored. Type the following: convert4 -h
Figure 18: Convert4 Command Line Arguments
The name of the output file is the same as the input file when converting to ASCII or binary formats.
The file extension, however, is altered to indicate the format of the data:
*.asc
*.bin
for ASCII
for binary
When converting to RINEX, the output files are named according to the RINEX Version 2.10 naming
The -batch arguments suppress the window display and convert the specified file automatically.
When converting to RINEX in batch mode, the navigation and observation file
header information from the most recent interactive Convert4 session is used.
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Chapter 4
PCUtilities
4.4 Firmware Updates and Model Upgrades
Firmware updates are firmware releases that include fixes and enhancements to the receiver
functionality. Firmware updates are released occasionally on the NovAtel website as they become
available. New firmware must be loaded into the receiver through one of the COM ports. After this is
done, the receiver will reboot and start operating with the new firmware.
Model upgrades enable purchased receiver features. The receiver stores its firmware in non-volatile
memory, which allows you to perform model upgrades without having to return the receiver to the
dealer.
The first step in upgrading the model of your receiver is to contact your local NovAtel dealer. Your
dealer will assist you in selecting the upgrade option that best suits your GNSS needs. If your needs
cannot be resolved with your dealer then contact NovAtel Customer Support directly as outlined on
When you call, be sure to have your receiver model number, serial number, and firmware version.
This information can be determined by entering the LOG VERSION command.
Customers must purchase the model through their sales channel. Once the order is approved,
Customer Support will generate and provide you with the auth-code. The auth-code is required to
unlock the features on your new model type.
To upgrade to a new model with the same firmware version, you can use the AUTH command with
To upgrade to a new model with a higher firmware version, you will need to load the new firmware
into the SMART-MR10 or SMART-MR15 using the WinLoad utility program. As WinLoad and the
update file are generally provided in a compressed file format, you may also be given a
decompression password. WinLoad and the update files can be found on NovAtel's website at
Your local NovAtel dealer can provide you with all the information that you require to upgrade or
update your receiver.
4.4.1
Updating or Upgrading Using the WinLoad Utility
WinLoad is required when updating previously released firmware with a newer version of firmware.
You can also upgrade to a new model in the same WinLoad session, as long as you have the required
auth-code.
WinLoad is a Windows utility program designed to facilitate firmware updates and model upgrades.
Once WinLoad is installed and running, it will allow you to select a host PC serial port, bit rate,
directory path, and file name of the new firmware to be transferred to the OEMV family receiver via
one of its COM ports. The port chosen must have an RS-232 interface to the PC.
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Transferring Firmware Files
Chapter4
To proceed with the update, you must first acquire the latest version of firmware from the NovAtel
Support website. The firmware update file will be one of two types:
•
Update (UPDT) version - The update version includes the authorization codes for
all OEMV receivers and receiver model upgrades purchased before the cut-off date.
The update version will be named UPDTXXXX.EXE, where XXXX is the
firmware version, for example, updt3701.exe. If you purchased your receiver or
model upgrade after the cut-off date, the authorization code will not appear in the
UPDT file, and you will have to use the OEM version instead.
•
upgrade after the cut-off date. When you use the OEM version, NovAtel Customer
Authorization codes are also available from the NovAtel website at
www.novatel.com through Support | Access Online Services.
The OEM version will be named OEMXXXX.EXE, where XXXX is the firmware
version, for example, oem3701.exe.
These update files are available from NovAtel's website at www.novatel.com/support/firmware-
transfer is not possible, the file can be mailed to you on a CD. For more information on how to contact
For convenience, you may wish to copy the update file to a GNSS sub-directory (for example,
C:\GNSS\LOADER).
If the firmware update file is password protected, Customer Support will provide you with the
required password. After copying the file to your computer, its contents must be extracted, as follows:
Syntax:
[filename] [password]
where filename is the name of the compressed file (but not including the .EXE extension) and
password is the password required to allow extraction.
Example:
oem3701 12345678
A Windows-based dialog box prompts you to enter the password.
The self-extracting archive will then extract the following files:
winload.exe
howto.txt
WinLoad utility program
Instructions on how to use the WinLoad utility
Information on the changes made in the firmware since the last revision
whatsnew.rtf
xxxx.hex
Firmware version upgrade file, where xxxx = version level (for example,
3701.hex)
The files are extracted to unzip/program files/NovAtel Inc/x.xxx Full Update Disk, where x.xxx is the
firmware version.
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Chapter 4
Using the WinLoad Utility
PCUtilities
WinLoad is a Windows-based program used to download firmware to OEMV family cards. The main
screen is shown in Figure 19.
Figure 19: Main Screen of WinLoad
If you are running WinLoad for the first time you will need to make sure the file and communications
settings are correct.
Open a File to Download
Figure 20: WinLoad’s Open Dialog
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Chapter4
Once you have selected your file and clicked Open, the name of the file appears in the main WinLoad
display area and in the title bar, see Figure 21.
Figure 21: Open File in WinLoad
Communications Settings
To set the communications port and baud rate, select COM Settings from the Settings menu. Choose
the port on your PC from the Com Port drop-down list and the baud rate from the Download Baudrate
drop-down list. The baud rate should be as high as possible (the default of 115200 is preferred).
Figure 22: COM Port Setup
Downloading firmware
To download firmware follow these steps:
3. Make sure the file path and file name are displayed in main display area, see Figure 21, Open File
4. Click Write Flash to download the firmware.
5. Power down and then power up the receiver when “Searching for card” appears in the main dis-
Figure 23: Searching for Card
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Chapter 4
PCUtilities
Figure 24: Authorization Code Dialog
7. The receiver should finish downloading and reset. The process is complete when “Done.” is dis-
Figure 25: Upgrade Process Complete
8. Close WinLoad.
This completes the update/upgrade procedure.
4.4.2
Upgrading Using the AUTH Command
The AUTH command authorizes the enabling (unlocking) of model features. Use this command when
upgrading to a new OEMV family model that is available with the same firmware version as your
current model. This command only functions in conjunction with a valid auth-code assigned by
Customer Support.
The upgrade can be performed directly through the Connect command line, or from any other
communications program. The procedure is as follows:
1) Power-up the OEMV family receiver and establish communications over a serial port (see
2) Issue the LOG VERSION command to verify the current model, firmware version, and serial
number.
3) Issue the AUTH command, followed by the auth-code and model type. The syntax is as follows:
Syntax:
auth auth-code
where auth is a command that enables model upgrades, and auth-code is the upgrade authorization
code, expressed as hhhh,hhhh,hhhh,hhhh,hhhh,model#
where the h characters are in ASCII hexadecimal code, and the model# is in ASCII text.
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Example:
Chapter4
auth 17CB,29AF,3D74,01EC,FD34,L12LRV
Once the AUTH command has been executed, the OEMV family receiver will reboot. Issuing the
LOG VERSION command will confirm the new upgrade model type and firmware version number.
If communicating using Connect, the communication path needs to be closed and re-opened using the
Device menu.
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®
Chapter 5
Bluetooth Configuration
Bluetooth is a wireless radio communication standard designed for use over short ranges (within
10 m). SMART-MR10/15 support Bluetooth 2.0. This chapter describes how to:
•
•
•
•
Enable Bluetooth wireless technology on the receiver
Set up a computer/laptop with a Bluetooth adaptor
Locate a SMART-MR10 or SMART-MR15 with Bluetooth wireless technology in range
Communicate with the SMART-MR10 or SMART-MR15 using Bluetooth wireless
technology
•
Stop communicating with the SMART-MR10 or SMART-MR15 using Bluetooth
wireless technology
5.1 Enable Bluetooth wireless technology on the receiver
SMART-MR10 Enclosure
COM1
COM2
AUX
DB9 Labeled COM1
DB9 Labeled COM2
DB9 Labeled AUX
SMART-MR10
CPU
Bluetooth
Module
COM3
Figure 26: Bluetooth Configuration (SMART-MR10)
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Bluetooth® Configuration
Chapter5
SMART-MR15 Enclosure
COM1
AUX
DB9 Labeled COM1
DB9 Labeled AUX
Cellular
Module
COM2
Bluetooth
Module
COM3
SMART-MR15
CPU
Figure 27: Bluetooth Configuration (SMART-MR15)
Bluetooth wireless technology is configured on the SMART-MR10 or SMART-MR15 COM3 port
and, by default, is enabled.
If the SMART-MR10 or SMART-MR15 is turned off (or power is removed) then
turned back on, the Bluetooth mode is returned to the state it was in before power-
down, as long as the SAVECONFIG command was issued before the unit was
powered off. When you issue a FRESET command, COM3 defaults to Bluetooth
mode.
If Bluetooth wireless technology has been disabled, you will need to enable it before you can use it.
From a computer/laptop, connect to a SMART-MR10 or SMART-MR15 serial port. Open
communication with the receiver using HyperTerminal or Connect. See Appendix B.2, BTCONTROL
computer/laptop is configured for Bluetooth operation, you will be able to communicate with the
SMART-MR10 or SMART-MR15 through Bluetooth wireless technology.
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Chapter 5
Bluetooth®Configuration
5.2 Set Up a Computer/Laptop with a Bluetooth Adaptor
If your computer/laptop is already equipped with Bluetooth wireless technology and ready, proceed to
1. With the computer/laptop powered on, install the driver(s) from the disc that came with your
Bluetooth adapter.
Figure 28: Bluetooth Adapter for Computer/Laptop
Within two minutes of connecting the USB adapter, the Bluetooth icon appears in the Windows
Figure 29: Bluetooth Standby: White
Continue on to the next section when you see the white Bluetooth icon. If the Bluetooth icon is
you should return to step #1.
Figure 30: Bluetooth Error: Red
5.3 Locate a SMART-MR10 or SMART-MR15 with Bluetooth
wireless technology in range
Ensure your computer/laptop is equipped with a built in, or external-plug-in,
1. Power on the SMART-MR10 or SMART-MR15.
Bluetooth adapter and is already configured with the appropriate Bluetooth driver.
Bluetooth Places from the Start menu in Windows. The My Bluetooth Places window opens.
3. Click the Search for devices in range option from the Bluetooth Tasks side bar on the left of the
My Bluetooth Places window. Devices with Bluetooth wireless technology enabled within range
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Bluetooth® Configuration
Chapter5
Figure 31: My Bluetooth Places Window
5.4 Communicate with the SMART-MR10 or SMART-MR15
Using Bluetooth wireless technology
1. Double-click the SMART-MR10 or SMART-MR15 device icon in the Entire Bluetooth
Bluetooth is working properly, a COM port service appears.
2. Double-click the COM3 icon. To use the serial COM port, the SMART-MR10 or SMART-MR15
must be “paired” with the computer/laptop to use the COM3 port. The Bluetooth PIN Code
Request dialog appears.
3. Enter the SMART-MR10 or SMART-MR15 default pin number of four zeroes (0000), as shown
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Chapter 5
Bluetooth®Configuration
Figure 32: Bluetooth PIN Code Request
If the code is correct, a new COM dialog opens, showing the computer/laptop COM port that has
COM21.
Figure 33: Computer/Laptop COM3 Port Assignment
4. Open a terminal program (HyperTerminal, for example) and configure it to the serial port
specified in the Bluetooth configuration utility. In the above example, the terminal program must
be configured to connect through COM21.
5. Configure the port settings as follows:
9600 bps, no parity, 8 data bits, 1 stop bit, no handshaking, echo off
6. Through the terminal program, connect to the Bluetooth serial port, and verify the connection.
7. Type the following VERSION log request into the command prompt to ensure that the connection
works:
LOG VERSION
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Bluetooth® Configuration
Chapter5
Figure 34: Bluetooth Connected: Green
5.5 Stop Communicating with SMART-MR10 or SMART-MR15
Using Bluetooth wireless technology
Programs | My Bluetooth Places from the Start menu in Windows. The My Bluetooth Places
window opens.
2. Click the Search for devices in range option from the Bluetooth Tasks side bar on the left of the
My Bluetooth Places window. Devices with Bluetooth wireless technology enabled within range
3. Double-click the SMART-MR10 or SMART-MR15 device icon in the Entire Bluetooth
Neighborhood window. The computer/laptop searches for available services. If Bluetooth
wireless technology is working properly, COM port service appears.
4. Right-click the COM21 icon then select the Disconnect Serial COM Port option. A COM21
Figure 35: COM21 Disconnect?
5. Click Yes in the COM21 dialog. The SMART-MR10 or SMART-MR15 Bluetooth wireless
technology is unpaired from your computer/laptop. When the SMART-MR10 or SMART-MR15
and computer/laptop Bluetooth wireless technology are unpaired, the Bluetooth icon in the task
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Appendix A Technical Specifications
A.1 SMART-MR10/15 Receiver Performance
PERFORMANCE
14 GPS L1, 14 GPS L2
12 GLONASS L1, 12 GLONASS L2 (optional)
Channel Configuration
a
2 SBAS
1 L-band
Autonomous (L1)
1.5 m
1.2 m
Autonomous (L1/L2)
SBAS
0.6 m
0.6 m
0.4 m
CDGPS
DGPS
OmniSTAR
VBS
b
Horizontal Position Accuracy (RMS)
0.6 m
0.15 m
0.1 m
XP
HP
c
RT-20™ (optional)
0.2 m
RT-2™ (optional)
1 cm+1 ppm
GPS
GLONASS
15 cm RMS
1.5 mm RMS
8 cm RMS
L1 C/A Code
L1 Carrier Phase
L2 P(Y) Code
4 cm RMS
0.5 mm RMS
8 cm RMS
1.0 mm RMS
Measurement Precision
L2 Carrier Phase
1.5 mm RMS
Measurements
Position
20 Hz
20 Hz
d
Maximum Data Rate
e
Cold Start
65 s
35 s
Time to First Fix
f
Hot Start
L1
L2
0.5 s (typical)
1.0 s (typical)
Signal Reacquisition
Time Accuracy
20 ns RMS
0.03 m/s RMS
Velocity Accuracy
515 m/s RMS
Velocity
a. Satellite Based Augmentation Systems (SBAS) include WAAS (North America), EGNOS (Europe)
and MSAS (Japan).
b. Typical values. Performance specifications subject to GPS and GLONASS system characteristics,
US DOD operational degradation, ionospheric and tropospheric conditions, satellite geometry,
baseline length, multipath effects and the presence of intentional or unintentional interference
sources. Export licensing restricts operation to a maximum velocity of 515 metres per second.
c. Expected accuracy after convergence. RT-20 is independent of GL1DE.
d. Model specific. Contact NovAtel customer support prior to using 20 Hz data rates.
e. Typical value. No almanac or ephemerides and no approximate position or time.
f. Typical value. Almanac and recent ephemerides saved and approximate time entered. For more
information, Please refer to the “SETAPPROXTIME” command in the OEMV Family Firmware
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A.2 SMART-MR10 Specifications
INPUT/OUTPUT CONNECTORS
+9 to +36 V DC at 2.5 W (typical while logging)
For the cable pinouts and drawings, see Connector Cables starting on
a
SMART-MR10 Power
Serial Com Ports
be configured with 2 or 3 serial ports.
COM1 is available in RS-232 with and without flow control or as RS-
422. COM2 is available with no flow control. AUX is available only
when COM1 is used as RS-232 with no flow control.
All ports are configurable to a maximum of 230,400 bps.
CAN
SAE J1939/ ISO 11783/ ISO 11898 Compliant (at 250 kbps)
Emulated Radar Output
ER operates on distinct frequencies (26.11, 28.12 or 36.11 Hz/km/hr,
with 36.11 Hz/km/hr being the default value), with an effective range
from 1 km/hr to 55 km/hr for near-horizontal applications.
3.3 V CMOS Logic Compatible
3.3 V CMOS Logic/ 5 V Tolerant
EMI/EMC
PPS Output
MKI Input
Emissions
Immunity
FCC, CE, Industry Canada
CE, ISO 7637, ISO 15003
LED INDICATORS
PHYSICAL
Size
233 mm x 223 mm x 90 mm height
1.9 kg maximum
Weight
ENVIRONMENTAL
Operating Temperature
Storage Temperature
Humidity
-40C to +70C
-55C to +90C
Not to exceed 95% non-condensing
MIL-STD-810G Method 512.5, IEC 60529 IPX7
Immersion
Continued on the following page
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ENVIRONMENTAL (continued)
UV Protection
Salt Fog
IEC 60950-22 Section 5.8.2 Test Method IEC 68-2-5
IEC 60950-22 Section 8.3
Sand and Dust
MIL-STD-810G Method 510.5, IEC 60950-22 Section 9.3
Random
Sinusoidal
MIL-STD-202G Method 214A Condition A
ASAE EP455 Section 5.15.2 Level 1
b
Vibration
Shock
Shock
MIL-STD-810G Method 516.6
Chemical Resistance
Water Jets
Blowing Rain
Altitude
ASAE EP455 Section 5.8.2 (Brush Exposure)
IEC 60529 IPX6
MIL-STD-810G Method 506.5 Procedure 1
ASEA EP455 Section 5.2
a. When tracking GPS satellites.
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DIMENSIONS
75.5
Label
Antenna Phase Centre
Label
Notes:
1. All dimensions are in millimetres
2. Mounting holes are labelled
according to their size and thread.
Antenna Phase Centre
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124.3
Antenna
Phase Centre
75.5
Note: All dimensions are in millimetres.
Antenna Phase Centre
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A.3 SMART-MR15 Specifications
INPUT/OUTPUT CONNECTORS
a
SMART-MR15 Power
Serial Com Ports
+9 to +36 V DC at 4.5 W (typical)
For the cable pinouts and drawings, see Connector Cables starting on
be configured with two serial ports. COM1 is available as RS-232 with
flow control or as RS-422. AUX is available as RS-232 with no flow
control.
All ports are configurable to a maximum of 230,400 bps.
Cellular modules
CAN
CDMA and GSM/GPRS/HSDPA
SAE J1939/ ISO 11783/ ISO 11898 Compliant (at 250 kbps)
Emulated Radar Output
ER operates on distinct frequencies (26.11, 28.12 or 36.11 Hz/km/hr,
with 36.11 Hz/km/hr being the default value), with an effective range
from 1 km/hr to 55 km/hr for near-horizontal applications.
3.3 V CMOS Logic Compatible
3.3 V CMOS Logic/ 5 V Tolerant
EMI/EMC
PPS Output
MKI Input
Emissions
Immunity
FCC, CE, Industry Canada
CE, ISO 7637, ISO 15003
LED INDICATORS
PHYSICAL
Size
233 mm x 223 mm x 90 mm height
2.1 kg maximum
Weight
ENVIRONMENTAL
-40C to +65C (CDMA)
-40C to +65C (GSM/GPRS/HSDPA)
Operating Temperature
Storage Temperature
Humidity
-40C to +85C
Not to exceed 95% non-condensing
MIL-STD-810G Method 512.5, IEC 60529 IPX7
IEC 60950-22 Section 5.8.2 Test Method IEC 68-2-5
IEC 60950-22 Section 8.3
Immersion
UV Protection
Salt Fog
Continued on the following page
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ENVIRONMENTAL (continued)
Sand and Dust
MIL-STD-810G Method 510.5, IEC 60950-22 Section 9.3
Random
Sinusoidal
MIL-STD-202G Method 214A Condition A
ASAE EP455 Section 5.15.2 Level 1
b
Vibration
Shock
Shock
MIL-STD-810G Method 516.6
Chemical Resistance
Water Jets
Blowing Rain
Altitude
ASAE EP455 Section 5.8.2 (Brush Exposure)
IEC 60529 IPX6
MIL-STD-810G Method 506.5 Procedure 1
ASEA EP455 Section 5.2
a. When tracking GPS satellites.
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DIMENSIONS
Label
Label
Notes:
1. All dimensions are in millimetres.
2. Mounting holes are labelled
according to their size and thread.
Antenna Phase Centre
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232.7
124.3
Antenna
Phase Centre
75.5
Note: All dimensions are in millimetres
Antenna Phase Centre
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A.4 Connector Cables
A.4.1 Evaluation Cable (Part Number 01018515)
The SMART-MR10/15 evaluation cable provided with Development Kit, is illustrated in Figure 36
and equipped as follows:
•
•
•
•
Exposed power wires (red for positive and black for negative) are connected to a 12 or 24V
vehicular power circuit (or equivalent), which must be protected by a user-supplied 5A fuse
(NovAtel recommends an automotive blade-type fuse rated for 5A with an operating voltage of
more than 36 V).
Three DB-9 connectors. One of these is normally connected to a PC/laptop serial (RS-232)
communication port and another to a modem or radio transmitter, to propagate differential
corrections (refer to your user-supplied modem or radio transmitter user guide for more
information).
Four pairs of bare wires, where the outer insulation is cut away but the wires beneath are intact.
Some COM port pin-out differences exist between the SMART-MR10 and the SMART-MR15.
Note cable labels.
This cable is RoHS compliant.
Tyco 23-pin
connector
COM1
User supplied
5A fast blow fuse
SMART-MR10: COM2
SMART-MR15: AUX
SMART-MR10: AUX
SMART-MR15: Not used
ER
PPS MKI CAN
Figure 36: SMART-MR10/15 Evaluation Cable
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Table 11: Evaluation Cable Pinouts
TYCO
23-PIN
COM1
D-SUB
COM2
D-SUB
AUX
D-SUB
TINNED
LEAD
SIGNAL
NAME
1
2
3
4
5
PWR+ (red)
PWR- (black)
CAN- (green)
CAN+ (yellow)
PWR+
PWR-
CAN-
CAN+
2
3
TXD2 (SMART-MR10)
AUXTX (SMART-MR15
6
RXD2 (SMART-MR10)
AUXRX (SMART-MR15
7
8
2
TXD1/TXD1+
2
RTS1/AUXTX/TXD1-
(SMART-MR10)
RTS1 (SMART-MR15)
9
SIGGND2
(white/black)
SIGGND2
10
11
12
13
14
RESERVED
RESERVED
RESERVED
RESERVED
a
CHASSIS GROUND
15
5
5
5
SIGGND1
(white/black)
SIGGND1
16
17
18
19
20
21
22
MKI (white)
PPS (orange)
ER (blue)
MKI
PPS
ER
MODE (violet)
RESERVED
RESERVED
MODE
3
CTS1/AUXRX/RXD1-
(SMART-MR10)
CTS1 (SMART-MR15)
23
3
RXD1/RXD1+
a. Pin 14 is connected to cable shields.
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A.4.2 Streamlined Cable (Part Number 01018526)
The SMART-MR10/15 streamlined cable, chemical resistant, designed for reduced size and weight,
and increased flexibility, provides:
•
•
•
Connection to a battery while operating in the field. The exposed wires (red for positive and black
for negative) can be connected to a 12 or 24V vehicular power circuit (or equivalent), which must
be protected by a user-supplied 5A fuse (NovAtel recommends an automotive blade-type fuse
rated for 5A with an operating voltage of more than 36 V).
Two DB-9 connectors. One of these is normally connected to a PC/laptop serial (RS-232)
communication port and the other to a modem or radio transmitter to propagate differential
corrections (refer to your user-supplied modem or radio transmitter user guide for more
information on its connectors).
One pair of bare wires, where the outer insulation is cut away but the wires beneath are intact, are
This cable is RoHS compliant.
Tyco 23-pin
connector
COM1
User supplied
5A fast blow fuse
SMART-MR10: COM2
SMART-MR15: AUX
ER
Figure 37: SMART-MR10/15 Streamlined Cable
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Table 12: Streamlined Cable Pinouts
TYCO
23-PIN
COM1
D-SUB
COM2
D-SUB
TINNED
LEAD
SIGNAL
NAME
1
2
3
4
5
PWR+ (red)
PWR- (black)
RESERVED
RESERVED
PWR+
PWR-
2
3
TXD2 (SMART-MR10)
AUXTX (SMART-MR15)
6
RXD2 (SMART-MR10)
AUXRX (SMART-MR15)
7
8
9
2
TXD1
RESERVED
SIGGND2
(white/black)
SIGGND2
10
11
12
13
14
RESERVED
RESERVED
RESERVED
RESERVED
a
CHASSIS GROUND
15
5
5
SIGGND1
(white/black)
SIGGND1
16
17
18
19
20
21
22
23
RESERVED
RESERVED
ER (blue)
ER
RESERVED
RESERVED
RESERVED
RESERVED
3
RXD1
a. Pin 14 is connected to cable shields.
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A.4.3 Custom Connector and Cable Requirements
Custom cables for installing your SMART-MR10 or SMART-MR15 can be created using the
following guidelines:
•
Conductor size must be 20 AWG (0.032 inches, 0.81 mm in diameter) to 16 AWG (0.051 inches,
1.29 mm in diameter)
•
Wire outside diameter, including insulation, must be between 0.086 in. (2.2 mm) and 0.098 in.
(2.5 mm) in diameter
•
•
Insulator material must have a smooth finish
Batt + connection must be protected by a user-supplied fuse. NovAtel recommends an automotive
blade-type fuse, rated for 5A with an operating voltage of more than 36V.
Serial data signals (TxD, RxD, signal ground) must be run in shielded cable.
Connect shields to ground at the SMART-MR end only
•
•
•
CAN signal conductors must be twisted (40 twists/m, 12 twists/ft)
Use only the recommended mating connectors listed below. Use only gold plated pins
Failure to observe the given cable construction requirements in this section
will result in damage to the wiring (not covered by warranty).
The connector used in the SMART-MR10/15 is an “AMPSEAL” dust and water sealed type produced
by Tyco. The following part numbers pertain to the mating connector required to make connections to
the SMART-MR10/15. These numbers are provided for information only and are not available from
NovAtel as separate parts.
Table 13: Mating Connectors
Product
Part Description
Company
Part Number
SMART-MR10 mating connector (see Figure 36,
23-pin sealed
Tyco/
AMP
770680-1
housing black
Gold plated pins for SMART-MR10/15 connector/
loose
Pins, loose
piece
Tyco/
AMP
770854-3
770520-3
Gold plated pins for SMART-MR10/15 connector/strip Pins, strip (reel)
Tyco/
AMP
information only and are not available from NovAtel as separate parts.
Table 14: Recommended Fuses
Fuse Type
Blade Fuse 58V 5A
Recommended
142.6185.450
0997005
Littelfuse
Littelfuse
Mini Blade Fuse 58V 5A
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Appendix B Commands
The SMART-MR10/15 firmware implements the OEMV family command set, documented in OEMV
Family Firmware Reference Manual. For convenience, commonly used SMART-MR10/15 commands
are summarized in Table 15 and documented in this appendix.
Table 15: Commonly Used SMART-MR10/15 Commands in Alphabetical Order
ASCII Command
Message ID
8205
Description
BTCONTROL
Enable/disable Bluetooth wireless technology.
Activate the CDMA cellular mode for a specified carrier
8215
CELLACTIVATE
a
8212
4
Set the APN name and pin, and whether roaming is enabled
CELLSET
COM
Configure the receiver’s asynchronous serial ports
communications drivers.
FRESET
LOG
20
Clear data stored in non-volatile memory and reset.
Request logs from the receiver.
1
a
8230
Set the NTRIP caster that the receiver will mount to.
(SMART-MR15 only)
NTRIPCASTER
a
8231
424
Configure the NTRIP client to receive (or stop receiving)
corrections from the caster.
NTRIPCLIENT
b
Enable, disable or reset the PDP (Pseudorange Delta-
Phase) filter.
PDPFILTER
b
970
Select the PDP filter mode and dynamics.
PDPMODE
RADARCFG
RESET
8192
18
Configure the ER signal output.
Perform a hardware reset.
Set SBAS test mode and PRN.
Set the CAN name fields.
SBASCONTROL
SETCANNAME
652
1091
a. Only available in the SMART-MR15.
b. For use with GL1DE.
The arguments for each of these commands are described in the following sections.
For a complete listing and description of the other commands that the SMART-MR10 or
SMART-MR15, OEMV-3G based receivers, are capable of processing, refer to the OEMV Family
Firmware Reference Manual.
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B.1 SYNTAX CONVENTIONS
The following rules apply when entering commands, at the command prompt, from a keyboard.
1. Courier font is used to illustrate program output or user input.
2. References to other commands, logs or any of their fields are shown in italics.
3. The commands are not case sensitive. For example, you could type either RESET or reset.
4. Except where noted, either a space or a comma can separate commands and their required entries.
For example, you could type either fix position 51.11358042 -114.04358013
1059.4105or fix position 51.11358042, -114.04358013, 1059.4105.
5. At the end of a command, a carriage return is required. For example, press <Enter> or <Return>
on your keyboard.
6. Responses are provided to indicate whether or not an entered command was accepted. The format
of the response depends on the format of the command. Refer to the OEMV Family Firmware
Reference Manual for more information.
7. Optional parameters are indicated by square brackets ([]). For commands that contain optional
parameters, the value used if the optional parameter is not specified is given in the syntax table
for the command.
8. Data format definitions, as specified in the “Format” field, are detailed in the OEMV Family
Firmware Reference Manual. Note that all binary data is little-endian byte-ordered.
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B.2 BTCONTROL Enable/Disable Bluetooth wireless
technology
The BTCONTROL command enables or disables the Bluetooth module. To ensure no possibility of
interference, when the module is disabled it is completely powered down.
Abbreviated ASCII Syntax:
BTCONTROL switch
Message ID: 8205
Factory Default:
The Bluetooth module is enabled by default.
Example 1 to disable Bluetooth wireless technology:
btcontrol disable
Example 2 to enable Bluetooth wireless technology:
btcontrol enable
Binary
Bytes
Binary
Format
Binary
Offset
Field
Data
Description
1
BT
CONTROL
header
This field contains the command name or
the message header depending on
whether the command is abbreviated
ASCII, ASCII or binary, respectively.
-
-
0
2
switch
Enable or disable Bluetooth wireless
technology
4
Enum
H
0 = ENABLE
1 = DISABLE
(default = ENABLE)
1. If users want the current state of the Bluetooth module to persist across receiver
resets and power-ups, they should issue a saveconfig command.
2. Changing the Bluetooth wireless technology from disabled to enabled takes sev-
eral seconds to execute. This means that, even though the user will get an imme-
diate “OK>” response followed by the COM prompt, the Bluetooth module may
not be ready for communication.
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B.3 CELLACTIVATE Activate CDMA modem for specific carrier
This command allows the user to activate the CDMA cellular modem for a specified carrier. Since the
GSM/GPRS/HSDPA SIM cards are pre-activated, this command is only used with SMART-MR15s
with CDMA modems.
Abbreviated ASCII Syntax:
Message ID: 8215
CELLACTIVATE carrier [mdn] [meid] [username] [password]
Binary
Bytes
Binary
Binary
Offset
Field
Data
CELL
ACTIVATE
header
Description
Format
1
This field contains the command name or
the message header depending on
whether the command is abbreviated
ASCII, ASCII or binary, respectively.
-
-
0
2
carrier
Name of wireless carrier (for example,
verizon) [mandatory]
12
Char
H
3
4
5
6
MDN
Modem Directory Number (phone number)
Mobile Equipment Identifier
User name, if required
12
12
12
12
Char
Char
Char
Char
H+12
H+24
H+36
H+48
MEID
username
password
Password, if required
ASCII Example:
Activate on Verizon:
cellactivate verizon
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B.4 CELLSET Set the APN name
This command allows the user to set the APN name (SMART-MR15 GSM/GPRS/HSDPA only). The
APN (Access Point Name) identifies the IP packet data network (PDN) with which the mobile data
user wants to communicate. Once a context and IP address are acquired, changing the APN through
the CELLSET command won't force that context to be dropped. The modem needs to be reset through
a receiver RESET command for the new APN to take effect.
Abbreviated ASCII Syntax:
Message ID: 8212
CELLSET [parameter] [value]
Binary
Bytes
Binary
Format
Binary
Offset
Field
Data
Description
1
CELLSET This field contains the command name or the
-
-
0
header
message header depending on whether the
command is abbreviated ASCII, ASCII or
binary, respectively.
2
3
parameter Parameter name (APN name, User name or
Password) [mandatory]
12
Char
Char
H
value
Parameter value (APN name, User name or
Password)
100
H+12
ASCII Examples:
Set the APN name. The factory default APN name is blank.
cellset apn internet.com
Set the user name, if provided by the carrier. The factory default user name is blank.
cellset user <user_name>
Set the password, if provided by the carrier. The factory default password is blank.
cellset password <password>
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B.5 COM Configure COM Port
This command permits you to configure the receiver’s asynchronous serial port communications
drivers.
The current COM port configuration can be reset to its default state at any time by sending it two
hardware break signals of 250 milliseconds each, spaced by fifteen hundred milliseconds
(1.5 seconds) with a pause of at least 250 milliseconds following the second break. This will:
•
Stop the logging of data on the current port (see UNLOGALL command in the
OEMV Family Firmware Reference Manual).
•
•
Clear the transmit and receive buffers on the current port.
Return the current port to its default settings (see Factory Defaults section in
Chapter 2 Commands of the OEMV Family Firmware Reference Manual).
•
Set the interface mode to NovAtel for both input and output (see
INTERFACEMODE command in the OEMV Family Firmware Reference Manual).
Baud rates higher than 115,200 bps are not supported by standard PC hardware. Special
PC hardware may be required for higher rates, including 230400 bps, 460800 bps and
921600 bps. Also, some PC's have trouble with baud rates beyond 57600 bps.
Abbreviated ASCII Syntax:
Message ID: 4
COM [port] bps [parity[databits[stopbits[handshake[echo[break]]]]]]
Factory Default:
com com1 9600 n 8 1 n off on
com com2 9600 n 8 1 n off on
com aux 9600 n 8 1 n off on
•
•
Do not alter the COM3 port configuration, since COM3 is reserved for Bluetooth
wireless technology.
On the SMART-MR15, do not alter the COM2 port configuration, since COM2 is
reserved for the cellular modem.
ASCII Example:
com com1,57600,n,8,1,n,off,on
Watch for situations where the COM ports of two receivers are connected together and
the baud rates do not match. Data transmitted through a port operating at a slower baud
rate may be misinterpreted as break signals by the receiving port if it is operating at a
higher baud rate. This is because data transmitted at the lower baud rate is stretched
relative to the higher baud rate. In this case, configure the receiving port to have break
detection disabled using the COM command.
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Use the COM command before using the INTERFACEMODE command on each
port. Turn break detection off using the COM command to stop the port from
resetting because it is interpreting incoming bits as a break command.
Altering the serial communication settings of the COM2 and COM3 ports may
adversely affect Bluetooth wireless technology and/or cellular radio link
functionality.
Table 16: COM Serial Port Identifiers
a
ASCII
Description
Binary
1
COM1
COM2
COM port 1
2
COM port 2 (SMART-MR15 cellular radio link)
COM port 3 (available over Bluetooth wireless technology)
Current COM port
3
COM3
6
THISPORT
AUX
16
AUX port
a. This table lists the commonly used SMART-MR10/15 COM ports. For a complete list
of COM ports, refer to the COM Serial Port Identifiers table in the COM command
section of the OEMV Family Firmware Reference Manual.
Table 17: Parity
Binary
ASCII
Description
No parity (default)
Even parity
0
N
1
2
E
O
Odd parity
Table 18: Handshaking
ASCII Description
Binary
0
1
2
N
No handshaking (default)
XON
CTS
XON/XOFF software handshaking
CTS/RTS hardware handshaking
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Field
Type
ASCII
Value
Binary
Value
Binary Binary Binary
Format Bytes Offset
Field
Description
1
COM header
-
-
This field contains the command
name or the message header
depending on whether the
-
H
0
command is abbreviated ASCII,
ASCII or binary, respectively.
2
3
port
See Table 16,
COM Serial Port
Port to configure.
(default = THISPORT)
Enum
4
4
H
bps/baud
300, 600, 900,
1200, 2400, 4800,
9600, 19200,
38400, 57600,
115200, or 230400
Communication baud rate (bps). ULong
Bauds of 460800 and 921600
are also available on COM1 of
OEMV-2-based products.
H+4
4
5
6
7
parity
See Table 17,
Parity
Enum
ULong
ULong
Enum
4
4
4
4
H+8
databits
stopbits
handshake
7 or 8
Number of data bits
(default = 8)
H+12
H+16
H+20
1 or 2
Number of stop bits
(default = 1)
See Table 18,
Handshaking
8
9
echo
OFF
0
No echo
(default)
Enum
Enum
4
4
H+24
H+28
ON
1
Transmit any input characters as
they are received
break
OFF
ON
0
1
Disable break detection
Enable break detection (default)
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B.6 FRESET Clear Selected Data from NVM and Reset
This command is extended to include SMART-MR10/15 features. An additional target field, userdata
(value = 10), resets only the SMART-MR10 (or SMART-MR15) user data NVM, thereby resetting all
parameters indicated in this document as “Stored in NVM” to factory defaults. Issuing the FRESET
command with the “target” field set to standard, resets the userdata NVM as well as OEMV
parameters as indicated in the OEMV Family Firmware Reference Manual.
If you issue the FRESET command without any parameters, it is the same as issuing
a FRESET STANDARD command.
Field
Type
ASCII
Value
Binary
Value
Binary
Format
Binary
Bytes
Binary
Offset
Field
Description
1
FRESET
header
-
-
This field contains the
command name or the
message header
-
H
0
depending on whether the
command is abbreviated
ASCII, ASCII or binary,
respectively.
2
target
See Table 19
Data to be reset by the
receiver
Enum
4
H
Table 19: FRESET Target
Binary
ASCII
Description
0
STANDARD
Resets commands, ephemeris, and almanac (default). Also resets all
L-band related data except for subscription information.
1
COMMAND
Resets the stored commands (saved configuration)
Resets the stored GPS almanac
2
GPSALMANAC
GPSEPHEM
3
Resets the stored GPS ephemeris
4
GLOEPHEM
Resets the stored GLONASS ephemeris
Resets the currently selected model
5
MODEL
10
11
20
21
31
USERDATA
Reset SMART-MR10-only commands
CLKCALIBRATION
SBASALMANAC
LAST_POSITION
GLOALMANAC
Resets the parameters entered using the CLOCKCALIBRATE command
Resets the stored SBAS almanac
Resets the position using the last stored position
Resets the stored GLONASS almanac
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B.7 LOG Request Logs from the Receiver
Many different types of data can be logged using several different methods of triggering the log
events. Every log element can be directed to any combination of available ports. Refer to Appendix
trigger option requires the addition of the period parameter. See the OEMV Family Firmware
Reference Manual for further information and a complete list of data log structures. The LOG
command tables in this section show the ASCII command format.
The optional parameter [hold] prevents a log from being removed when the UNLOGALL command,
with its defaults, is issued. To remove a log which was invoked using the [hold] parameter requires the
specific use of the UNLOG command. To remove all logs that have the [hold] parameter, use the
UNLOGALL command with the held field set to 1.
The [port] parameter is optional. If [port] is not specified, [port] is defaulted to the port that the com-
mand was received on.
1. The OEMV family of receivers can handle 30 logs at a time. If you attempt to
log more than 30 logs at a time, the receiver responds with an Insufficient
Resources error. Each COM port already has RXSTATUSEVENT log associated
with it. This means that with 3 serial ports, 7 logs are already accounted for, as
shown below:
•
•
RXSTATUSEVENT on COM1, COM2, and COM3
TRACKSTAT, BESTVEL, and PSRXYZ on XCOM1
See the example on the next page.
2. Maximum flexibility for logging data is provided to the user by these logs. The
user is cautioned, however, to recognize that each log requested requires addi-
tional CPU time and memory buffer space. Too many logs may result in lost
data and degraded CPU performance. Receiver overload can be monitored using
the idle-time field and buffer overload bits of the Receiver Status in any log
header.
3. Polled log types do not allow fractional offsets or ONTIME rates faster than
1Hz.
4. Use the ONNEW trigger with the MARKTIME, MARK2TIME, MARKPOS or
MARK2POS logs.
5. Only the MARKPOS, MARK2POS, MARKTIME or MARK2TIME logs, and
‘polled’ log types are generated ‘on the fly’ at the exact time of the mark. Syn-
chronous and asynchronous logs output the most recently available data.
6. If you do use the ONTIME trigger with asynchronous logs, the time stamp in
the log does not necessarily represent the time the data was generated, but rather
the time when the log is being transmitted.
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Abbreviated ASCII Syntax:
Message ID: 1
LOG [port] message [trigger [period [offset [hold]]]]
Factory Default:
log com1 rxstatuseventa onnew 0 0 hold
log com2 rxstatuseventa onnew 0 0 hold
log com3 rxstatuseventa onnew 0 0 hold
log aux rxstatuseventa onnew 0 0 hold
log usb1 rxstatuseventa onnew 0 0 hold
log usb2 rxstatuseventa onnew 0 0 hold
log usb3 rxstatuseventa onnew 0 0 hold
Abbreviated ASCII Example 1:
log com1 bestpos ontime 7 0.5 hold
The above example shows BESTPOS logging to COM port 1 at 7 second intervals and offset by 0.5
seconds (output at 0.5, 7.5, 14.5 seconds and so on). The [hold] parameter is set so that logging is not
disrupted by the UNLOGALL command.
To send a log only one time, the trigger option can be ignored.
Abbreviated ASCII Example 2:
log com1 bestpos once 0.000000 0.000000 nohold
Refer to the Command Formats section of the OEMV Family Firmware Reference Manual for
additional examples.
1. In Connect there are two ways to initiate data logging to the receiver's serial
ports. You can either enter the LOG command in the Console window, or use
the interface provided in the Logging Control window. Ensure the Power
Settings on your PC are not set to go into Hibernate or Standby modes. Data is
lost if one of these modes occurs during a logging session.
2. Only the ASCII/Abbreviated ASCII log table is included in this manual. Please
refer to the LOG command in the OEMV Family Firmware Reference Manual
for binary log details.
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B.8 NTRIPCASTER Set NTRIP caster
This command sets the NTRIP caster that will provide corrections to the receiver (SMART-MR15
only).
Abbreviated ASCII Syntax:
Message ID: 8230
ntripcaster <address> <port>
Binary
Bytes
Binary
Format
Binary
Offset
Field
Data
Description
1
NTRIP
CASTER
header
This field contains the command name or
the message header depending on whether
the command is abbreviated ASCII, ASCII or
binary, respectively.
-
-
0
2
3
address
port
IP address or domain name of caster
[mandatory]
32
4
Char
H
Caster port (default 2101)
Ulong
H+32
ASCII Example:
ntripcaster www.igs-ip.net 80
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B.9 NTRIPCLIENT Mount or unmount NTRIP client
This command configures the NTRIP client to receive (or stop receiving) corrections from the caster
(SMART-MR15 only). This command also initiates or terminates the transmission of GPGGA
messages to the caster.
The caster must have been previously set using the NTRIPCASTER command.
Abbreviated ASCII Syntax:
Message ID: 8231
ntripclient <switch> <mountpoint> <user> <password> <corr_type> <nmea_period> <auth_type>
Binary
Bytes
Binary
Format
Binary
Offset
Field Data
Description
1
NTRIP
CLIENT
header
This field contains the command name or
the message header depending on
whether the command is abbreviated
ASCII, ASCII or binary, respectively.
-
-
0
2
switch
Mount switch:
8
Char
H
- MOUNT to enable NTRIP corrections
- UNMOUNT to disable NTRIP corrections
[mandatory]
3
4
5
6
mountpoint Caster mount point (case-sensitive)
100
32
32
4
Char
Char
Char
Enum
H+8
user
Username (case-sensitive)
Password (case-sensitive)
H+108
H+140
H+172
password
corr_type
Type of corrections to expect from caster:
- RTCM
- RTCA (default)
- CMR
- RTCMV3
- FKP
- OMNISTAR
7
9
nmea_
period
Period for transmitting NMEA position logs
(GPGGA) to caster. If the period is 0
(default), GPGGA logs are not sent to
caster.
4
8
Float
Char
H+176
H+180
Note: This information would be sent to
support network RTK positioning systems.
auth_type
HTTP authentication type
- BASIC
Note: Currently, “BASIC” is the only
authentication method supported.
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The parameters mountpoint, user, password, corr_type, nmea_period and auth_type
are all ignored if switch is set to UNMOUNT.
ASCII Examples:
Request NTRIP corrections from caster without transmitting nmea location to the caster:
ntripclient mount example_mount_point ntrip secret
Request NTRIP corrections from caster and transmit GPGGA position messages to the caster ev-
ery 10 seconds:
ntripclient mount example_mount_point ntrip secret rtcmv3 10
Stop receiving NTRIP corrections:
ntripclient unmount
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B.10 PDPFILTER Enable, disable or reset the PDP filter
This command enables, disables or resets the Pseudorange/Delta-Phase (PDP) filter. The main
advantages of the Pseudorange/Delta-Phase (PDP) implementation are:
•
•
Smooths a jumpy position
Bridges outages in satellite coverage (the solution is degraded from normal but
there is at least a reasonable solution without gaps)
•
Enable the PDP filter to output the PDP solution in BESTPOS, BESTVEL and
NMEA logs.
•
Refer to the Operation chapter of the OEMV Installation and Operation Manual
for a section on configuring your receiver for PDP or GL1DE operation.
GL1DE Position Filter
1
GL1DE is a mode of the PDP filter which optimizes the position for consistency over time rather
than absolute accuracy. GL1DE uses the GPS L1 and does not use GLONASS.This is ideally in clear
sky conditions where the user needs a tight, smooth, and consistent output. The GL1DE filter
functions autonomously, and with CDGPS or WAAS. The PDP filter is smoother than a least squares
fit but is still noisy in places. The GL1DE filter produces a very smooth solution with consistent rather
than absolute position accuracy. There should be less than 1 cm difference typically from epoch to
epoch. GL1DE also works in single point, DGPS and OmniSTAR VBS modes. See also the
Abbreviated ASCII Syntax:
Message ID: 424
PDPFILTER switch
Field
Type
ASCII
Value
Binary
Value
-
Binary Binary Binary
Format Bytes Offset
Field
Description
1
PDPFILTER
header
-
This field contains the command
name or the message header
depending on whether the
-
H
0
command is abbreviated ASCII,
ASCII or binary, respectively.
2
switch
DISABLE
ENABLE
RESET
0
1
2
Enable/disable/reset the PDP filter. Enum
A reset clears the filter memory so
that the pdp filter can start over.
4
H
Factory Default:
pdpfilter disable
ASCII Example:
pdpfilter enable
1.
Refer also to our application note on Pseudorange/Delta-Phase (PDP) and GL1DEE Filters
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B.11 PDPMODE Select the PDP mode and dynamics
This command allows you to select the mode and dynamics of the PDP filter.
1. You must issue a PDPFILTER enable command before the PDPMODE
2. If you choose RELATIVE mode (GL1DE) while in WAAS or CDGPS mode:
•
With an L1-only receiver model, you must force the iono type to GRID in the
SETIONOTYPE command.
•
With an L1/L2 receiver model, you must force the iono type to AUTO in the
SETIONOTYPE command.
Abbreviated ASCII Syntax:
pdpmode mode dynamics
Message ID: 970
Field
Type
ASCII
Value
Binary
Value
Binary Binary Binary
Format Bytes Offset
Field
Description
1
PDPMODE
header
-
-
This field contains the command
name or the message header
depending on whether the
-
H
0
command is abbreviated ASCII,
ASCII or binary, respectively.
2
mode
NORMAL
0
1
In relative mode, GL1DE,
performance is optimized to
obtain a consistent error in
latitude and longitude over time
periods of 15 minutes or less
rather than to obtain the smallest
absolute position error. See also
102.
Enum
4
H
RELATIVE
Auto detect dynamics mode
Static mode
3
dynamics
AUTO
0
1
2
Enum
4
H+4
STATIC
DYNAMIC
Dynamic mode
Factory Default:
pdpmode normal auto
ASCII Example:
pdpmode relative
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B.12 RADARCFG Configure the ER output
Use this command to configure the Emulated Radar (ER) output. ER is available through the
Syntax
Message ID = 8192
radarcfg switch freq_step update_rate resp_mode threshold
Field
Data
Description
Bytes
Format
Units
Offset
1
Header
This field contains the command
name or the message header
depending on whether the command
is abbreviated ASCII, ASCII or
binary, respectively.
-
-
0
2
3
4
switch
Enable or disable radar emulation
0 = ENABLE
4
8
4
Enum
none
H
1 = DISABLE
(default = enable)
freq_step
update_rate
Frequency step per kilometre per
hour.
Range: 26.11, 28.12 or 36.11
(default = 36.11)
Double
Integer
Hz/
kph
H+4
H+12
Specify how often to update radar
output
Hz
Range: 1, 2, 5, 10, 20
a
(default = 10)
5
6
resp_mode
threshold
Specify the time, response mode,
over which to average velocity
samples, see Table 20.
4
8
Integer
Double
none
kph
H+16
H+20
a
(Default = 500)
The threshold is only applicable
when the response mode is set to 2.
The response time is 1000 ms when
the velocity is greater than this value,
otherwise, it is 500 ms.
Range: 2-50 kph (default = 5 kph)
a. The number of samples used for smoothing depends on both the update_rate and resp_mode
parameters. For instance, if the update_rate is 5 Hz and the resp_mode is 2000ms, the number of
samples used will be 10.
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Table 20: Response Modes
Description
Mode
2000
1000
500
2
2000 ms
The time period over which to smooth
velocity samples
1000 ms
500 ms (default)
Automatically switches between 1000 and 500 ms
Performs no smoothing
1
Example 1 to disable radar emulation:
radarcfg disable 26.11 1 1 2
radarcfg enable 36.11 1 1 2
Example 2 to set the frequency step to 36.11 Hz/kph,
update rate to 1 Hz and no smoothing:
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B.13 RESET Performs a hardware reset
This command performs a hardware reset. Following a RESET command, the receiver initiates a cold-
start boot up. Therefore, the receiver configuration reverts either to the factory default, if no user
configuration was saved, or the last SAVECONFIG settings.
The optional delay field is used to set the number of seconds the receiver is to wait before resetting.
Abbreviated ASCII Syntax:
Message ID: 18
reset [delay]
The RESET command can be used to erase any unsaved changes to the receiver
configuration.
Field
Type
ASCII Binary
Value Value
Binary Binary Binary
Format Bytes Offset
Field
Description
1
RESET header
-
-
This field contains the command
name or the message header
depending on whether the
-
H
0
command is abbreviated ASCII,
ASCII or binary, respectively.
2
delay
Seconds to wait before resetting. Ulong
(default = 0)
4
H
Example
reset 120
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B.14 SBASCONTROL Set SBAS test mode and PRN
This command allows you to dictate how the receiver handles Satellite Based Augmentation System
(SBAS) corrections.
To enable the SBAS position solution corrections, you must issue the SBASCONTROL ENABLE
command. The GNSS receiver does not attempt to track any SBAS satellites until you use the
SBASCONTROL command to tell it to use either WAAS, EGNOS, or MSAS corrections.
When the system parameter is set to AUTO mode, if the receiver is outside the defined satellite
system’s corrections grid, it reverts to ANY mode and chooses a system based on other criteria.
Once tracking satellites from one system in ANY or AUTO mode, it does not track satellites from
other systems. This is because systems such as WAAS, EGNOS and MSAS do not share broadcast
information and send corrections relevant to their specific geographic region.
The “testmode” parameter in the example is to allow SBAS operation while SBAS systems are in test
mode. At the time of printing, the testmode parameter of NONE is recommended for all SBAS
systems.
When you use the SBASCONTROL command to direct the GNSS receiver to use a specific SBAS
system, the GNSS receiver begins to search for and track the relevant SBAS PRNs for that correction
type only.
You can force the GNSS receiver to track a specific PRN using the ASSIGN command. You can force
the GNSS receiver to use the corrections from a specific SBAS PRN using the SBASCONTROL
command.
Disable stops the corrections from being used.
Abbreviated ASCII Syntax:
sbascontrol keyword [system] [prn] [testmode]
Message ID: 652
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Factory Default:
sbascontrol disable auto 0 none
Abbreviated ASCII Example 1:
sbascontrol enable waas 0 zerototwo
NovAtel's OEMV receivers work with SBAS systems including EGNOS (Europe),
MSAS (Japan) and WAAS (North America).
System Types
ASCII
NONE
AUTO
Binary
Description
0
1
Don’t use any SBAS satellites
Automatically determine satellite
system to use (default)
ANY
2
3
4
5
Use any and all SBAS satellites found
Use only WAAS satellites
WAAS
EGNOS
MSAS
Use only EGNOS satellites
Use only MSAS satellites
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B.15 SETCANNAME Sets the CAN name fields
This commands sets the CAN device name fields.
Abbreviated ASCII Syntax:
Message ID: 1091
setcanname
Field
Type
ASCII Binary
Value Value
Binary Binary Binary
Format Bytes Offset
Field
Description
1
SETCANNAME
header
-
-
This field contains the
command name or the
message header
-
H
0
depending on whether the
command is abbreviated
ASCII, ASCII or binary,
respectively.
2
ManufacturerCode
IndustryGroup
DeviceClass
CAN module's
Manufacturer Code
ULong
ULong
ULong
ULong
ULong
4
4
4
4
4
4
4
4
4
H
3
Industry group number
(default = 2)
H+4
H+8
H+12
H16
4
11783-5 Device class
(default = 0)
5
DeviceClassInstance
Function
11783-5 Device class
instance (default = 0)
6
11783-5 Function (default
= 23)
7
FunctionInstance
ECUInstance
11783-5 Function instance ULong
(default = 0)
H+20
H+24
H+28
H+32
8
11783-5 ECU Instance
(default = 0)
ULong
9
PreferredAddress
Reserved
Device default address on ULong
start up (default=28)
10
ULong
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Appendix C Logs
addition to those of the OEMV Family log set. Refer to the OEMV Family Firmware Reference
Manual, which also contains procedures and explanations related to data logging and is available from
our website at:
SMART-MR10 and SMART-MR15 are capable of logging at 1 Hz, 5 Hz, 10 Hz,
and 20 Hz. NovAtel recommends logging at the lowest data rate suitable for your
application. Should your application require 20 Hz data rates, please contact
NovAtel customer support for guidance.
Table 21: Commonly Used SMART-MR10/-MR15 Logs in Alphabetical Order
Message ID
ASCII Log
Description
a
8214
Radio information, including modem type
CELLINFO
a
8213
8209
8232
8233
Display radio call status information
Display radio status information
CELLSOCKETSTATUS
a
CELLSTATUS
ab
Display source table records from current caster
Display status of NTRIP connection
Radar signal and position information
NTRIPSOURCETABLE
a
NTRIPSTATUS
8193
37
RADARSIGNAL
VERSION
Hardware versions, software versions, and serial
numbers
a. SMART-MR15 only.
b. SMART-MR15 GSM/GPRS/HSDPA version only.
C.1 NMEA Logs
The NMEA logs (receiver outputs) supported by the SMART-MR10/15 are summarized in Chapter 3
of the OEMV Family Firmware Reference Manual in section "NMEA Standard Logs". The available
logs include:
•
GPGGA, which outputs a log of position system fix data and undulation. There are variants of
GPGGA, specifically:
-
GPGGARTK, which has greater precision than GPGGA but with the loss of the
undulation field
-
GPGGALONG, which has both greater precision and the undulation field
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•
GPVTG, which outputs track made good and ground speed
Each of the available NMEA standard logs is described in more detail in its own section of Chapter 3
of the OEMV Family Firmware Reference Manual.
The steps for configuring the receiver output, through the command line are:
Bit Rate
Parity
9600
none
8
Data Bits
Stop Bits
Handshaking
Echo
1
None
Off
Break
On
enter the following string:
com aux 9600 n 8 1 n off on
2. Select and configure the NMEA string that you want to output. The information is described in
Chapter 3 Data Logs of the OEMV Family Firmware Reference Manual, in the section for the
particular log. For example, to log gpgga (position system fix data and undulation) at 2 Hz, enter
the following string:
log gpgga ontime 0.5
The above command line operations can also be carried out through the Connect. Information about
configuring the communication port can be found in the Connect online help in Contents > Getting
Started > Connecting to the receiver. Information about logging data can be found in Getting Started >
Logging Data. The procedure for adding a NMEA log through the Connect is summarized as follows:
1. In the Logging control window, click Logging to one or more of the receiver's serial ports. The
Add Log window displays.
2. Beside Select list, select Complete List or NMEA List.
3. Beside Log to file, select the NMEA log you want to add.
4. Select the port.
5. Configure the remaining fields then click Add.
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C.2 NovAtel Position Logs
In addition to NMEA logs, NovAtel supports a range of non-NMEA position logs, described in the
OEMV Family Firmware Reference Manual, including:
•
•
BESTPOS: This log contains the best available position (GPS and GLONASS if available),
computed by the receiver, for example:
log bestposa ontime 0.5
BESTXYZ: This log contains the receiver’s best available position and velocity in ECEF
coordinates, for example:
log bestxyza ontime 1
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C.3 CELLINFO Cellular Modem and Network Information
This log displays general information about the cellular modem and network settings.
Message ID:
Log Type:
8214
Polled
Recommended Input:
log cellinfoa once
Binary
Bytes
Binary
Offset
Field #
Field Type
Data Description
Log header
Format
1
CELLINFO
header
H
0
2
3
4
make
Modem make
Char
20
20
20
H
manufacturer
serial
Modem manufacturer
Char
Char
H+20
H+40
For GSM/GPRS/HSDPA,
International Mobile Equipment
Identifier (IMEI).
For CDMA, Mobile Equipment
Identifier (MEID)
5
6
version
mdn
Modem SW version
Char
Char
20
20
H+60
H+80
Mobile Director Number (MDN),
the modem phone number.
7
msid
For GSM/GPRS/HSDPA, Mobile Char
Subscriber Identifier (MSID)
20
36
36
36
20
H+100
H+120
H+156
H+192
H+228
8
apn
For GSM/GPRS/HSDPA, Access Char
Point Name (APN)
9
user name
password
reserved
For GSM/GPRS/HSDPA, APN
user name
Char
Char
Char
10
11
For GSM/GPRS/HSDPA, APN
password
Reserved
ASCII Example:
#CELLINFOA,AUX,0,50.5,FINESTEERING,1625,430661.552,00000000,
ba12,6371;"UC864-G","Telit","356265020679881","08.01.127","+0000000000","",
"internet.com","","",""*917eb090
If necessary, the cellinfo fields may be truncated with a ~ symbol appearing in place
of any content beyond the maximum size.
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C.4 CELLSOCKETSTATUS Modem Call Status Information
This log displays the current status of connected and disconnected sockets. The statistics for the
previous call are maintained in the DISCONNECTED state until a new call is made using this socket.
Only one active socket is currently supported.
Message ID:
Log Type:
8213
Asynch
Recommended Input:
log cellsocketstatusa onchanged
Binary
Bytes
Binary
Offset
Field #
Field Type
Data Description
Format
1
CELLSOCKET Log header
STATUS
header
H
0
2
3
4
socket count
socket id
status
Number of active sockets
Uint
4
H
Socket identifier
Uint
4
H+4
H+8
CLOSED / OPEN /
CONNECTING /
Char
20
DISCONNECTING /
CONNECTED / LISTENING
5
ip address/port IP address and port of remote end Char
(for example, “some-caster:80”)
32
H+28
6
rx bytes
tx bytes
up time
Total number of bytes received
Total number of bytes transmitted Uint
Total connection time (seconds) Uint
Uint
4
4
4
H+60
H+64
H+68
7
8
9-39
Fields 3-8 repeated per active socket.
ASCII Example:
#CELLSOCKETSTATUSA,AUX,0,44.5,FINESTEERING,1652,254238.759,0000000
0,c369,6981;1,1,"CONNECTED","hera.novatel.ca:2101",8582,181,21,2,"CLOSED","",
0,0,0,3,"CLOSED","",0,0,0,4,"CLOSED","",0,0,0,5,"CLOSED","",0,0,0,6,"CLOSED",
"",0,0,0*5a6029e7
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C.5 CELLSTATUS Cellular Modem and Network Status
Information
This log displays the current status of the cellular modem and the network connection.
Message ID:
Log Type:
8209
Asynch
Recommended Input:
log cellstatusa onchanged
Binary
Bytes
Binary
Offset
Field #
Field Type
CELLSTATUS
Data Description
Log header
Current modem status
Format
1
H
0
header
2
3
status
Char
16
16
H
net status
Registration status of the modem on Char
the network.
H+16
H+32
H+48
4
5
ip address
signal
Network-assigned IP address (for
example, 10.0.0.1)
Char
16
4
Signal strength as number of bars
(1-4)
Uint
6
7
rssi
RSSI (dBm)
Int
4
H+52
H+56
network
Network identification string or NID
(example “Verizon”, “125”)
Char
20
8
cellid
Base station cell identifier
Uint
4
H+76
9
Reserved
disconnects
10
Number of socket disconnects since Uint
startup
4
H+96
11
12
temperature
Modem temperature, if available,
otherwise 0
Int
4
H+100
H+104
a
Last recorded modem error
Char
40
last error
a. The last error field is cleared when the cellular modem:
- enters the ENABLED state,
- enters the PROVISIONING state or
- changes from the BOOTING state to the CONFIGURING state.
The last error message persists until one of these state changes occurs.
For CME error explanations, refer to:
Guide rev. 4) or
Guide rev. 8)
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ASCII Example:
#CELLSTATUSA,AUX,0,45.0,FINESTEER-
ING,1652,254341.980,00000000,c87c,6981;"ENABLED","HOME","75.254.88.54",4,-
74,"12/3",8823,"",3,0,""*ffa4c4a5
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C.6 NTRIPSOURCETABLE Source Table Records from Current
Caster
This log provides information about the NTRIP sources available from the caster. Each record from
the caster's sourcetable appears in a separate NTRIPSOURCETABLE log. The log containing the last
record of the sourcetable will contain "ENDSOURCETABLE".
This log is only supported by the GSM/GPRS/HSDPA version of the
SMART-MR15.
Issuing the NTRIPCASTER command while this log is requested causes the NTRIP
client to establish a connection to the caster and request the source table.
Issuing the NTRIPCLIENT MOUNT command while the source table is being
downloaded interrupts the output of the NTRIPSOURCETABLE log while NTRIP
corrections are being streamed to the receiver. After a subsequent NTRIPCLIENT
UNMOUNT command, the output of the NTRIPSOURCETABLE logs resumes.
Message ID:
Log Type:
8232
Asynch
Recommended Input:
log ntripsourcetablea onnew
Binary
Bytes
Binary
Offset
Field #
Name
Description
Format
1
NTRIPSOURCE Log header
TABLE header
H
0
2
record
A record from the caster’s sourcetable. Char
If the record transmitted by the caster
is longer than 256 bytes, it will be
truncated.
256
H
3
sequence
Record sequence number
Uint
4
H+256
ASCII Example:
NTRIPSOURCETABLE logs containing 143 sourcetable records from www.igs-ip.net:
#NTRIPSOURCETABLEA,AUX,0,47.0,FINESTEER-
ING,1625,427566.855,00000000,2dad,6371;
"STR;WSRT0;Westerbork;RTCM 3.0;1004(1),1006(10),1008(10);2;GPS;IGS;NLD;
52.91;6.60;0;0;AOA SNR-12 ACT;none;B;N;1300;NRCan",93*293d7ff0
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C.7 NTRIPSTATUS Status of NTRIP Connection
This log provides information about the NTRIP client.
Message ID:
Log Type:
8233
Asynch
Recommended Input:
log ntripstatusa onchanged
Name
Field
Description
Type
Binary Bytes
1
Header
Mode
Log header
H
2
NTRIP operation mode
Operating status
Char
Char
Char
UNIT
Char
Enum
Float
UNIT
UNIT
UNIT
Char
8
3
Status
24
32
4
4
Caster Address IP address or domain name of caster
5
Caster Port
Mountpoint
Caster port
6
Caster Mountpoint
32
4
7
Correction Type Type of correction expected from caster
8
NMEA Period
Rx Bytes
Tx Bytes
Up Time
Info
Period for transmitting GPGGA logs to caster
Bytes received from caster
4
9
4
10
11
12
Bytes sent to caster
4
Connection duration
4
Extra information about current status
32
If necessary, the mountpoint and info fields may be truncated with a ~ symbol appearing in
place of any content beyond the maximum size.
ASCII Example:
NTRIPSTATUS logs while connecting to a caster:
#NTRIPSTATUSA,AUX,0,45.5,FINESTEERING,1652,254702.229,00000000,a9c3,69
81;"Client","STREAMING","hera.nova-
tel.ca",2101,"novatel_rtcmv3",RTCMV3,0.00,0,0,0,""*5f915546
118
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C.8 RADARSIGNAL ER Signal and Position Information
This log contains position and Emulated Radar (ER) signal information.
Message ID:
Log Type:
8193
Asynch
Recommended Input:
log radarsignala onchanged
Binary Binary
Bytes Offset
Field # Field type
Data Description
Format
1
RADAR-
SIGNAL
header
Log header
H
0
2
3
sol status
Enum
4
4
H
vel type
H+4
4
4
5
speed
Speed over ground (m/s)
Double
Double
Double
8
8
8
H+8
varf freq
radar freq
External VARF output frequency (Hz)
H+16
H+24
Radar signal frequency (Hz) as output by the
Emulated Radar Out signal. See SMART-
6
7
xxxx
32-bit CRC (ASCII and Binary only)
Sentence terminator (ASCII only)
Hex
-
4
-
H+32
-
[CR][LF]
ASCII Example 1 (stationary SMART-MR10):
#RADARSIGNALA,AUX,0,56.5,FINESTEER-
ING,1625,430959.616,00000000,dc8e,6371;
SOL_COMPUTED,DOPPLER_VELOCITY,0.0177,0.00,0.00*a08c8d41
ASCII Example 2 (moving SMART-MR10):
#RADARSIGNALA,COM1,0,34.5,FINESTEERING,1556,345809.700,00000000,3dbe
,4903;SOL_COMPUTED,WAAS,3.0104,4527.491387,282.968212*6a90388e
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Table 22: Position or Velocity Type
Type (ASCII) Description
Type (binary)
0
1
2
NONE
No solution
FIXEDPOS
FIXEDHEIGHT
Position has been fixed by the FIX POSITION command
Position has been fixed by the FIX HEIGHT/AUTO
command
8
DOPPLER_VELOCITY
SINGLE
Velocity computed using instantaneous Doppler
Single point position
16
17
18
19
32
33
34
48
49
50
PSRDIFF
Pseudorange differential solution
WAAS
Solution calculated using corrections from an SBAS
Propagated by a Kalman filter without new observations
Floating L1 ambiguity solution
PROPAGATED
L1_FLOAT
IONOFREE_FLOAT
NARROW_FLOAT
L1_INT
Floating ionospheric-free ambiguity solution
Floating narrow-lane ambiguity solution
Integer L1 ambiguity solution
WIDE_INT
Integer wide-lane ambiguity solution
Integer narrow-lane ambiguity solution
NARROW_INT
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Table 23: Solution Status
Solution Status
(ASCII)
Description
(Binary)
SOL_COMPUTED
INSUFFICIENT_OBS
NO_CONVERGENCE
SINGULARITY
Solution computed
0
1
2
3
4
5
Insufficient observations
No convergence
Singularity at parameters matrix
Covariance trace exceeds maximum (trace > 1000 m)
COV_TRACE
TEST_DIST
Test distance exceeded (maximum of 3 rejections if
distance > 10 km)
COLD_START
V_H_LIMIT
Not yet converged from cold start
6
7
Height or velocity limits exceeded (in accordance with
export licensing restrictions)
VARIANCE
Variance exceeds limits
Residuals are too large
Delta position is too large
Negative variance
8
9
RESIDUALS
DELTA_POS
10
NEGATIVE_VAR
Reserved
11
12
INTEGRITY_WARNING
Large residuals make position unreliable
13
Reserved for SPAN-capable receivers
14-17
18
PENDING
When a FIX POSITION command is entered, the
receiver computes its own position and determines if the
a
fixed position is valid
INVALID_FIX
The fixed position, entered using the FIX POSITION
command, is not valid
19
20
UNAUTHORIZED
Position type is unauthorized - HP or XP on a receiver
not authorized for it
a. PENDING implies there are not enough satellites being tracked to verify if the FIX POSITION
entered into the receiver is valid. The receiver needs to be tracking two or more GPS satellites
to perform this check. Under normal conditions you should only see PENDING for a few
seconds on power up before the GNSS receiver has locked onto its first few satellites. If your
antenna is obstructed (or not plugged in) and you have entered a FIX POSITION command,
then you may see PENDING indefinitely.
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C.9 VERSION HW & SW Versions and Serial Numbers
The Component Type of the VERSION log, described in the OEMV Family Firmware Reference
Table 24: Component Type
a
ASCII Value
UNKNOWN
Description
Unknown component
Binary Value
0
1
3
8
GPSCARD
OEMV GPSCard component
ENCLOSURE
USERINFO
SMART-MR10 /15 receiver
User-application information component
Auto-starting user-application firmware
981073925
DB_USERAPPAUTO
(0x3A7A0005)
a. Unused numbers are reserved for future use.
ASCII Example (SMART-MR15):
[COM1]<VERSION COM1 0 72.0 COARSESTEERING 1618 322692.103 00480000 3681 6371
<
<
3
GPSCARD "L12RVA" "DAB10400051" "OEMV3G-5.01-X2T" "3.804A1"
"3.000" "2010/DEC/ 1" "11:02:24"
<
<
DB_USERAPPAUTO "SmartAg" "0" "" "1.300" "" "2011/JAN/06"
"16:31:14"
USERINFO "LMX9830" "0212" "SMART-MR15" "1.000" "" "" ""
In the above example, the firmware is shown as 3.804A1 and the SMART-MR15 application is shown
as 1.300.
122
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Binary Binary
Bytes Offset
Field #
Field type
Data Description
Format
1
VERSION
header
Log header
H
0
2
3
# comp
type
Number of components (cards, and so on)
Long
4
4
H
H+4
4
model
A base model name plus designators where Char[16] 16
there are 4 possible base names:
H+8
L12:
20 Hz positions and measurements,
RT2/20 base, 14 GPS L1/L2 and 2
SBAS channels
L1:
20 Hz positions and measurements,
RT20 base, 14 GPS L1 and 2 SBAS
channels
N12: 20 Hz positions, no measurements,
14 GPS L1/L2 and 2 SBAS channels
N1:
20 Hz positions, no measurements,
14 GPS L1 and 2 SBAS channels
The model designators are shown in Table
5
6
psn
Product serial number
Char[16] 16
H+24
H+40
hw version
7
sw version
H+56
8
9
H+72
H+88
comp date
Char[12] 12
10
comp time
Char[12] 12
H+100
11...
Next component offset = H + 4 + (#comp x 108)
variable xxxx
32-bit CRC (ASCII and Binary only)
Sentence terminator (ASCII only)
Hex
-
4
-
H+4+
(#comp
x 108)
variable [CR][LF]
-
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Table 25: Model Designators
Designator
Description
G
R
I
12 L1 or 12 L1/L2 GLONASS channels, frequencies to match GPSconfiguration
Receive RT2 and/or RT20 corrections
Synchronized Position Attitude Navigation (SPAN)
J
SPAN supporting 200 Hz IMUs and IGI higher rate IMU (256.144 Hz)
S
Reduces positions and measurement rates to 5 Hz, disables VARF and EVENT
signals
A
Application Program Interface (API)
B
1 L-band channel with CDGPS and OmniSTAR VBS capability
1 L-band channel with CDGPS and OmniSTAR HP/XP capability
L
NL
1 L-band channel with OmniSTAR enabled and no position, velocity, time (PVT) or
raw data output
F
Z
50 Hz output
ALIGN: This heading feature generates separation and bearing data between a
base and one or multiple rovers.
K
Receiver RT2 L1TE: The L1 GG RTK feature is a fixed integer GPS+GLONASS L1-
only RTK solution that works with RTCAOBS and RTCAOBS2 correction types.
Centimetre-level (RT2 L1TE) accuracy is possible with fix times in the order of 60 s,
depending on visibility, number of satellites, and so on. Since it is an L1-only
solution, the operational baseline is limited to 3 km to minimize ionospheric errors.
Outside of the baseline threshold (3 km), the receiver outputs RT20 instead.
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Table 26: VERSION Log: Field Formats
Field Format (ASCII) Description
Field Type
hw version
P-RS-CCC
P
R
= hardware platform (for example, OEMV)
= hardware revision (for example, 3.00)
a
S
= processor revision (for example, A)
b
CCC = COM port configuration (for example, 22T)
sw version,
boot version
VV.RRR[Xxxx]
VV
= major revision number
RRR = minor revision number
X
= Special (S), Beta (B), Internal Development
(D, A)
= number
xxx
comp date
comp time
YYYY/MM/DD
HH:MM:SS
YYYY = year
MM
DD
= month
= day (1 - 31)
HH
MM
SS
= hour
= minutes
= seconds
a. This field may be empty if the revision is not stamped onto the processor.
b. One character for each of the COM ports 1, 2, and 3. Characters are: 2 for RS-232, 4 for RS-
422, T for LV-TTL, and X for user-selectable (valid for COM1 of the OEMV-2 only). Therefore,
the example is for a receiver that uses RS-232 for COM 1 and COM 2 and LV-TTL for COM 3.
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Appendix D Replacement Parts
The following replacement parts are available for your NovAtel SMART-MR10 or SMART-MR15
receiver. If need assistance or additional components, contact your local NovAtel dealer or Customer
Support representative.
D.1 SMART-MR10/15
Part Description
NovAtel Part
01018518
SMART-MR10
SMART-MR15 CDMA (Verizon)
01018606
01018712
SMART-MR15 GSM/GPRS/HSDPA
D.2 Accessories
Part Description
NovAtel Part
01018235
OEMV Family Compact Disc with PC utilities including Connect
OEMV Family Installation and Operation User Manual
OEMV Family Firmware Reference Manual
OM-20000093
OM-20000094
Full connectivity cable [23-pin socket to 3 DB-9 connectors, twisted CAN I/O pair, and 01018515
Streamlined cable
01018526
01018578
01018625
01018623
01018624
70023085
70023086
70023087
Mounting Kit, Quick Release Assembly
Mounting Kit, Quick Release Plate
Mounting Kit, AG GPS 262
Mounting Kit, 5/8 Inch Adapter
Mounting Plate, Universal
Mounting Plate, AG GPS 262 Layout
Mounting Plate, 5/8 Inch Adapter
The above accessories are also available through the NovAtel website at www.novatel.com
D.2.1 Cellular Accessories
Part Description
NovAtel Part
CDMA Antenna, 2.2 / 4 dBi, 824-896 MHz / 1850-1990 MHz, NMO
(USE with 12023301 Mount)
12023296
CDMA Antenna Mount, NMO Magnetic Base, 30 cm cable
(DO NOT USE with 12023303 Antenna)
12023301
12023303
12023300
01018684
GSM/GPRS/HSDPA Antenna, 3 / 4 dBi, 806-960 MHz / 2500-1990 MHz, NMO
(DO NOT USE with 12023301 Mount)
GSM/GPRS/HSDPA Antenna Mount, NMO Magnetic Base, 3.65 m cable
(USE with 12023303 Antenna)
Antenna Ground Plane Kit
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Index
E
connector
F
CPU
factory default
D
data
G
GLONASS
GPRS
GSM
default
H
hardware
differential
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Index
I
input
O
output
interface
P
L
LED
port
M
position
models
N
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Index
specifications
R
reset
T
U
V
S
SBAS
W
serial
WAAS (Wide Area Augmentation Sys-
Warning
sleep
SMART-MR10
SMART-MR15
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Index
SMART-MR10/15 User Manual Rev 5
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OM-20000130
Rev 5
March 2012
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