USER GUIDE AND SPECIFICATIONS
NI WLS/ENET-9163
Wireless/Ethernet Carrier for NI WLS/ENET-9000 Series Devices
This user guide describes how to use the National Instruments
WLS/ENET-9163 carrier and lists specifications.
The NI WLS/ENET-9163 carrier provides a wireless or Ethernet data
acquisition interface for a select number of C Series I/O modules. Refer to
ni.com/daq for information about which C Series I/O modules are
supported by the NI WLS/ENET-9163 carrier.
The NI WLS/ENET-9163 carrier combines with an NI C Series I/O module
to form an NI WLS/ENET-9000 Series device, as shown in Figure 1.
Note Only the NI WLS-9163 carrier comes with an antenna for wireless deployment.
NI C Series I/O Module
+
NI WLS/ENET-9163 Carrier
I N S T R U M E N T S
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Figure 1. NI WLS/ENET-9163 Carrier Forming the NI WLS/ENET-9000 Series Device
Throughout this manual, the combined NI WLS/ENET-9163 carrier and
C Series I/O module is referred to as the NI WLS/ENET-9000 Series
device.
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Hot Surface This icon denotes that the component may be hot. Touching this component
may result in bodily injury.
Safety Guidelines for Hazardous Voltages
If hazardous voltages are connected to the module, take the following
precautions. A hazardous voltage is a voltage greater than 42.4 Vpk or
60 VDC to earth ground.
Caution Ensure that hazardous voltage wiring is performed only by qualified personnel
adhering to local electrical standards.
Caution Do not mix hazardous voltage circuits and human-accessible circuits on the same
module.
Caution Make sure that the NI WLS/ENET-9163 carrier and circuits connected to the
module are properly insulated from human contact.
Caution The NI WLS/ENET-9163 carriers provide no isolation, but some modules offer
isolation. Follow the safety guidelines for each module when using hazardous voltage.
Related Documentation
Each application software package and driver includes information about
writing applications for taking measurements and controlling measurement
devices. Check ni.com/manuals for the most recent hardware
documentation, and refer to Table 1 for a list of locations for driver and
application software documentation. The document location references in
this table assume you have NI-DAQmx 8.8 or later, and where applicable,
version 7.1 or later of the NI application software.
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Table 1. NI Driver and Application Software Documentation
Software
Document/Description
Location/Topic
NI-DAQmx for
Windows
DAQ Getting Started
Start»Programs»National
Instruments»NI-DAQ»
DAQ Getting Started Guide
Guide—describes how to install
and use the NI-DAQmx driver
software for Windows and your
data acquisition (DAQ) device,
how to confirm the device is
operating properly, and how to
take an NI-DAQmx
measurement.
NI-DAQ Readme—includes
information about NI-DAQmx.
Start»Programs»National
Instruments»NI-DAQ»
NI-DAQ Readme
NI-DAQmx Help—explains how Start»Programs»National
to get started in your OS and
ADE; provides an NI-DAQmx
overview; includes information
about programming the most
common measurement tasks with
references to examples in CVI/C,
C++, .NET.
Instruments»NI-DAQ»
NI-DAQmx Help
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Table 1. NI Driver and Application Software Documentation (Continued)
Software
LabVIEW
Document/Description
Location/Topic
Getting Started with
LabVIEW—describes the
LabVIEW graphical
Start»All Programs»National
Instruments»LabVIEW»
LabVIEW Manuals or navigate to
the labview\manuals directory
programming environment and
the basic LabVIEW features you and opening
use to build data acquisition and
instrument control application.
LV_Getting_Started.pdf
LabVIEW Help—provides
information about LabVIEW
programming concepts,
Help»Search the LabVIEW Help
step-by-step instructions for
using LabVIEW, and reference
information about LabVIEW
VIs, functions, palettes, menus,
and tools.
LabVIEW Help Topics Specific to NI-DAQmx
Includes overview information
From the Contents tab, Getting
and a tutorial to learn how to take Started»Getting Started with DAQ
an NI-DAQmx measurement in
LabVIEW using the DAQ
Assistant.
Describes the LabVIEW
NI-DAQmx VIs and properties.
From the Contents tab,
VI and Function Reference»
Measurement I/O VIs and
Functions
Contains the conceptual and
how-to information you need
to acquire and analyze
From the Contents tab, Taking
Measurements
measurement data in LabVIEW,
including common
measurements, measurement
fundamentals, NI-DAQmx key
concepts, and device
considerations.
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Table 1. NI Driver and Application Software Documentation (Continued)
Document/Description Location/Topic
Software
LabWindows™/CVI™ LabWindows/CVI Help
Data Acquisition
Help»Contents, then select Using
LabWindows/CVI»
book—contains NI-DAQmx
measurement concepts and
step-by-step instructions about
creating a measurement task
using the DAQ Assistant.
Data Acquisition»Taking an
NI-DAQmx Measurement in
LabWindows/CVI
LabWindows/CVI Help
NI-DAQmx Library
book—contains NI-DAQmx API
overviews and function
reference.
LibraryReference»
NI-DAQmx Library
Measurement
Studio/Microsoft
Visual Studio .NET
Microsoft Visual Studio .NET
Help/NI Measurement Studio
Help—contains NI-DAQmx
methods and properties.
Measurement Studio»
NI Measurement Studio Help and
select NI-DAQmx .NET Class
Library or NI-DAQmx Visual C++
Class Library
ANSI C without
NI Application
Software
NI-DAQmx Help
Start»All Programs»National
Instruments»NI-DAQ»
NI-DAQmx Help
NI-DAQmx C Reference
Start»All Programs»National
Help—describes the NI-DAQmx Instruments»NI-DAQ»
Library functions. NI-DAQmx C Reference Help
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Table 1. NI Driver and Application Software Documentation (Continued)
Software
Document/Description
Location/Topic
.NET Languages
without
NI Application
Software*
NI-DAQmx.NETHelp—contains Start»All Programs»National
conceptual topics for using
NI-DAQmx with Visual C# and
Visual Basic .NET.
Instruments»NI-DAQ»
NI-DAQmx .NET Reference Help.
Expand NI Measurement Studio
Help»NI Measurement Studio
.NET Class Library»Reference to
view the function reference. Expand
NI Measurement Studio Help»
NI Measurement Studio .NET
Class Library»Using the
Measurement Studio .NET Class
Libraries
Visual Studio .NET
Help»Contents. Select
Help—containsconceptualtopics Measurement Studio from the
for using NI-DAQmx with Visual Filtered By drop-down list and
C# and Visual Basic .NET.
follow the location instructions for
the NI-DAQmx .NET Help.
* With the Microsoft .NET Framework version 1.1 or later, you can use NI-DAQmx to create applications using Visual C#
and Visual Basic .NET without Measurement Studio. You need Microsoft Visual Studio .NET 2003 or Microsoft Visual
Studio 2005 for the API documentation to be installed.
Device Documentation and Specifications
Check ni.com/manuals for the most recent device and software
documentation. If you do not have Web access, NI-DAQmx includes a
Documentation CD that includes documentation available when
NI-DAQmx released.
Training Courses
If you need more help getting started developing an application with
NI products, NI offers training courses. To enroll in a course or obtain
a detailed course outline, refer to ni.com/training.
Technical Support on the Web
For additional support, refer to ni.com/support or zone.ni.com.
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Installing the Software
NI WLS/ENET-9000 Series device software support for Windows
Vista/XP/2000 is provided by NI-DAQmx.
The DAQ Getting Started Guide, which is accessible from Start»
Programs»National Instruments»NI-DAQ or at ni.com/manuals,
offers NI-DAQmx users step-by-step instructions for installing software
and hardware, configuring channels and tasks, and getting started
developing an application.
Installing Other Software
If you are using other software, refer to the installation instructions that
accompany your software.
Example Programs
The NI-DAQmx CD contains example programs that you can use to
get started programming with the NI WLS/ENET-9000 Series device.
Refer to the NI-DAQmx for WLS/ENET Devices Getting Started Guide that
shipped with your device, and is also accessible from Start»Programs»
National Instruments»NI-DAQ, for more information.
Using the NI WLS/ENET-9000 Series Device
Using the NI WLS/ENET-9000 Series Device on a Desktop
You can use the NI WLS/ENET-9000 Series device on a desktop. Figure 3
shows the stacking grooves for NI ENET-9000 Series devices, and where
to apply the rubber standoffs for the NI WLS/ENET-9000 devices. For
secure desktop use, you can adhere the supplied rubber standoffs to the
underside of the device.
Note NI ENET-9000 Series Only—the NI ENET-9000 Series device has underside
grooves that allow it to be stacked on top of other NI ENET-9000 Series devices.
Caution Do not stack an NI WLS-9000 Series device on top of an NI WLS-9000 Series
device.
Caution This transmitter must not be co-located or operated in conjunction with any other
antenna or transmitter.
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1
2
1
Stacking Grooves
(NI ENET-9000 Series Only)
2
Rubber Standoffs
Figure 3. Stacking Grooves and Rubber Standoffs for Desktop Use
Mounting the NI WLS/ENET-9000 Series Device
You can mount the NI WLS/ENET-9000 Series device using a 75 mm
DIN-Rail kit or a panel mount kit. For kit accessory ordering information,
refer to the accessory section of the NI WLS/ENET-9163 product page at
ni.com.
Caution Your installation must meet the following requirements:
•
Allows 25.4 mm (1 in.) of clearance above and below the NI WLS/ENET-9000 Series
device for air circulation.
•
Allows 50.8 mm (2 in.) of clearance in front of modules for common connector
cabling, such as the 10-terminal detachable screw terminal connector.
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Attaching the NI 9910 DIN-Rail
The NI 9910 DIN-Rail kit contains one clip for mounting the device on a
standard 35 mm DIN-Rail. To mount the device on a DIN-Rail, fasten the
DIN-Rail clip to the device using a number 2 Phillips screwdriver and
four M4 × 17 screws. The screws are included in the DIN-Rail kit. Make
sure the DIN-Rail kit is installed as illustrated in Figure 4, with the larger
lip of the DIN-RAIL positioned up. When the DIN-Rail kit is properly
installed, the NI WLS/ENET-9000 Series device is centered on the
DIN-Rail.
Caution Remove the C Series I/O module before mounting the carrier to the DIN-Rail.
IVE
WLS LINK
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Figure 4. NI WLS/ENET-9000 Series Device DIN-Rail Installation
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Mounting the NI WLS/ENET-9000 Series to a Panel
Thread inserts are located in the NI WLS/ENET-9000 Series device for
mounting it to a panel. Refer to Figure 5 for dimensions.
6.500 in.
(165.10 mm)
Figure 5. Device Panel Mounting Dimensions
Caution Remove the C Series I/O module from the NI WLS/ENET-9163 carrier before
you mount the carrier to the panel. After the NI WLS/ENET-9163 carrier is mounted, you
can reinsert the C Series module.
Configuring the Ethernet Connection
You must have an Ethernet network in order to use the
NI WLS/ENET-9000 Series device. For more information about
configuring your Ethernet connection with the NI WLS/ENET-9000 Series
device, refer to the NI-DAQmx for WLS/ENET Devices Getting Started
Guide that shipped with your device. This document is also accessible from
Start»Programs»National Instruments»NI-DAQ.
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Setting Up the NI WLS/ENET-9000 Series Device
Complete the following steps to prepare the NI WLS/ENET-9000 Series
device for use:
1. Before connecting the hardware, install NI-DAQmx software,
LabVIEW SignalExpress, and the NI-DAQ Device Documentation
Browser. Refer to the DAQ Getting Started Guide for more
information about software installation.
Note The NI-DAQmx software is included on the CD shipped with your kit and is
available for download at ni.com/support. After you install it, the NI-DAQ Device
Documentation Browser is available from Start»Programs»National Instruments»
NI-DAQ»Browse Device Documentation. The DAQ Getting Started Guide is available
Started Guide.
2. If you are not using any mounting accessories or stacking the devices,
attach the provided rubber standoffs to the bottom of the
NI WLS/ENET-9000 Series device, as described in the Using the
NI WLS/ENET-9000 Series Device on a Desktop section.
3. Make sure the NI WLS/ENET-9000 Series device power is
disconnected.
4. Attach a ring lug, as shown in Figure 6, to a 14 AWG (1.6 mm) wire.
Connect the ring lug to the ground terminal on the bottom of the device
using the ground screw. Attach the other end of the wire to the system
ground.
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Ring Lug Attached to the Ground Screw
Figure 6. Ring Lug Attached to the Ground Screw
Note Additionally, attach a wire with a ring lug to all other C Series I/O module cable
shields. You must connect this wire to the ground terminal of the device using the ground
screw. The ground terminal of the device should not be attached to the common terminal
on the C Series I/O module.
Connecting Power to the NI WLS/ENET-9000 Series Device
Power on the NI WLS/ENET-9000 Series device using the included power
adapter or other 9–30 VDC power source.
10/100BaseT(X) Ethernet Port Connection
Use the RJ45 port located on the NI WLS/ENET-9000 Series device
interface to connect the device to an Ethernet network. Use a standard
Category 5 (CAT-5) Ethernet cable (a shielded cable is recommended) to
connect the NI WLS/ENET-9000 Series device to an Ethernet hub, or use
an Ethernet crossover cable to connect the NI WLS/ENET-9000 Series
device directly to a computer.
Note Plug the standard Category 5 Ethernet cable into the RJ-45 Ethernet port on the
NI WLS-9000 Series device to configure the wireless network settings. After initial
configuration, you can remove the Ethernet cable from the NI WLS-9000 Series device
and use the device wireless capabilities.
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Device Interface
Figure 7 shows the NI WLS/ENET-9163 carrier interface.
1
2
WLS LINK
ACTIVE
STATUS
POWER
GND PFI1
V
C
3
RESET
PFI0
INPUT 9-30 V
4.5 W MAX
GND
NI WLS-9163
LINK/ACT
10/100
802.11g C Series Carrier
7
6
5
4
1
2
RJ-45 Ethernet Port
4
5
6
7
Trigger Connector
10/100 LED
LINK/ACT LED
Power Connector
LEDs: WLS LINK*, ACTIVE,
STATUS, and POWER
Reset Button
3
* NI WLS-9163 Carrier Only.
Figure 7. NI WLS/ENET-9163 Carrier Interface
Reset Button
The NI WLS/ENET-9000 Series devices are equipped with a reset button
as shown in Figure 7.
Pressing the reset button results in the following device responses:
•
When pressed for less than 5 seconds, the device reboots with the
current configuration.
•
When pressed for 5 seconds or longer, the STATUS LED turns on.
When released, the device reboots into Factory Default Mode, which
returns the device user configuration to the factory-set defaults.
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LED Indicators
The LED indicators for the NI WLS/ENET-9000 Series device are listed in
Table 2.
Table 2. LED State/Device Status
LED Description
Color
Green
LED State
Device Status
10/100
On
Connected at 100 Mbps
Off
No Ethernet connection or 10 Mbps
connection
LINK/ACT
Yellow
On
Ethernet link
Off
No Ethernet connection
Ethernet activity
Power on
Blinking
On
POWER
STATUS
Green
Off
Power off
Yellow
On
Device firmware booting or
resetting to factory default
Off
Normal operation
1 Blink
2 Blinks
No C Series module detected
Firmware/FPGA image corrupted,
update firmware through MAX
3 Blinks
On
Firmware error, reboot
ACTIVE
Green
Green
A DAQ task is running on the
device
Off
On
Off
Device available
WLS LINK*
Connected and authenticated
Not connected to access point
* NI WLS-9163 Only
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Pinouts
Trigger Connector
GND
GND
PFI 1
PFI 0
Figure 8. Trigger Connector Pinout
Cabling
Table 3 shows the standard Ethernet cable wiring connections for both
normal and crossover cables.
Table 3. Ethernet Cable Wiring Connections
Connector 2
(Normal)
Connector 2
(Crossover)
Pin
1
Connector 1
white/orange
orange
white/orange
orange
white/green
green
2
3
white/green
blue
white/green
blue
white/orange
blue
4
5
white/blue
green
white/blue
green
white/blue
orange
6
7
white/brown
brown
white/brown
brown
white/brown
brown
8
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Connector 1
Connector 2
Pin 1
Pin 8
Pin 1
Pin 8
Figure 9. Ethernet Connector Pinout
Using the NI WLS/ENET-9000 Series Device
C Series I/0 Modules
National Instruments C Series I/O modules provide built-in signal
conditioning and screw terminal, spring terminal, BNC, D-SUB, or
RJ-50 connectors. A wide variety of I/O types are available, allowing
you to customize the your system to meet your application needs.
You can swap C Series modules when the NI WLS/ENET-9163 carrier is
plugged in. After swapping modules, even if it is the same module type, you
must discover the device through MAX again.
Because the modules contain built-in signal conditioning for extended
voltage ranges or industrial signal types, you can make your
wiring connections directly from the C Series I/O modules to your
sensors/actuators. In most cases, the C Series I/O modules provide isolation
from channel-to-earth ground.
AI Sample Timing
The NI WLS/ENET-9000 Series device contains an advanced analog input
timing engine. Timing and synchronization signals are available through
the PFI lines. Refer to the Analog Input Timing Signal section for more
information about the configuration of these signals.
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Analog Input
To perform analog input measurements, insert a supported analog input
C Series I/O module into the NI WLS/ENET-9163 carrier. The
measurement specifications, such as number of channels, channel
configuration, sample rate, and gain, are determined by the type of C Series
I/O module used. For more information and wiring diagrams, refer to the
documentation included with your C Series I/O modules.
Analog Input Triggering
you want to produce the trigger and the action you want the trigger to cause.
The NI WLS/ENET-9000 Series device supports internal software
triggering and external digital triggering.
Three triggers are available: AI Start Trigger Signal, AI Reference Trigger
Signal, and AI Pause Trigger Signal.
AI Start Trigger Signal
Use the AI Start Trigger (ai/StartTrigger) signal to begin a measurement
acquisition. A measurement acquisition consists of one or more samples. If
you do not use triggers, begin a measurement with a software command.
Once the acquisition begins, configure the acquisition to stop in one of the
following ways:
•
•
When a certain number of points is sampled (in finite mode)
With a software command (in continuous mode)
An acquisition that uses a start trigger is sometimes referred to as a
posttriggered acquisition. That is, samples are measured only after the
trigger.
Using a Digital Source
To use ai/StartTrigger with a digital source, specify a source and an edge.
NI-DAQmx can provide an internal start trigger or PFI 0 may be used.
Refer to the Device Routing in MAX topic in the NI-DAQmx Help or the
LabVIEW Help in version 8.0 or later for more information.
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The NI-DAQmx Help is available after installation from Start» Programs»
National Instruments»NI-DAQ»NI-DAQmx Help. To view the
LabVIEW Help, in version 8.0 or later, select Help»Search the LabVIEW
Help in LabVIEW. Alternately, to download the LabVIEW Help, go to
ni.com/manuals.
You also can specify whether the measurement acquisition begins on the
rising edge or falling edge of ai/StartTrigger.
Routing AI Start Trigger to an Output Terminal
You can route ai/StartTrigger to the PFI 0 terminal. The output polarity is
selectable.
AI Reference Trigger Signal
Use a reference trigger (ai/ReferenceTrigger) signal to stop a measurement
acquisition. To use a reference trigger, specify a buffer of finite size and
a number of pretrigger samples (samples that occur before the reference
trigger). The number of posttrigger samples (samples that occur after the
reference trigger) desired is the buffer size minus the number of pretrigger
samples.
When the acquisition begins, the NI WLS/ENET-9000 Series device begins
to fill the buffer. After the specified number of pretrigger samples are
captured, the NI WLS/ENET-9000 Series device begins to look for the
reference trigger condition. If the reference trigger condition occurs before
the NI WLS/ENET-9000 Series device captures the specified number of
pretrigger samples, the NI WLS/ENET-9000 Series device ignores the
condition.
If the buffer becomes full, the NI WLS/ENET-9000 Series device
continuously discards the oldest samples in the buffer to make space for
the next sample. This data can be accessed with some limitations before
the NI WLS/ENET-9000 Series device discards it. Refer to the
KnowledgeBase document, Can a Pretriggered Acquisition be
Continuous?, for more information. To access this KnowledgeBase, go to
ni.com/info and enter the info code rdcanq.
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When the reference trigger occurs, the NI WLS/NET-9163 Series device
continues to write samples to the buffer until the buffer contains the number
of posttrigger samples desired. Figure 10 shows the final buffer.
Reference Trigger
Pretrigger Samples
Posttrigger Samples
Complete Buffer
Figure 10. Reference Trigger Final Buffer
Using a Digital Source
To use ai/ReferenceTrigger with a digital source, specify a source and an
edge. PFI 0 can provide the source. Refer to the Device Routing in MAX
topic in the NI-DAQmx Help or the LabVIEW Help in version 8.0 or later
for more information.
The NI-DAQmx Help is available after installation from Start»Programs»
National Instruments»NI-DAQ»NI-DAQmx Help. To view the
LabVIEW Help, in version 8.0 or later, select Help»Search the LabVIEW
Help in LabVIEW. Alternately, to download the LabVIEW Help, go to
ni.com/manuals.
You also can specify whether the measurement acquisition stops on the
rising edge or falling edge of ai/ReferenceTrigger.
AI Pause Trigger Signal
The Pause Trigger signal can be generated from external sources. Any time
the signal deasserts, you can use the Pause Trigger signal to pause the
acquisition.
You can use the AI Pause Trigger (ai/PauseTrigger) signal to pause and
resume a measurement acquisition. The internal sample clock pauses while
the external trigger signal is active and resumes when the signal is inactive.
You can program the active level of the pause trigger to be high or low.
Using a Digital Source
To use ai/PauseTrigger, specify a source and a polarity on PFI 0.
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Note Pause triggers are only sensitive to the level of the source, not the edge.
Analog Input Timing Signal
AI Sample Clock
A sample consists of one reading from each channel in the AI task.
ai/SampleClock signals the start of a sample of all analog input channels
in the task. ai/SampleClock can be generated from external or internal
sources.
Using A Digital Source
To use ai/SampleClock, specify a source and an edge on PFI 1. For more
information, refer to the Device Routing in MAX topic in the NI-DAQmx
Help.
PFI
ai/SampleClock
Sigma-Delta Module Internal Output
ai/SampleClock Timebase
20 MHz Timebase
Programmable
Clock
Divider
Figure 11. Sample Clock Timing Options
Routing AI Sample Clock to an Output Terminal
You can route ai/SampleClock to the PFI 1 terminal.
Convert Behavior For Analog Input Modules
Scanned
Scanned C Series analog input modules contain a single A/D converter and
a multiplexer to select between multiple input channels. When the C Series
Module Interface receives a Sample Clock pulse, it begins generating a
Convert Clock for each scanned module in the current task. Each Convert
Clock signals the acquisition of a single channel from that module. The
Convert Clock rate depends on the module being used, the number of
channels, and the Sample Clock rate.
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Simultaneous Sample-and-Hold
Simultaneous sample-and-hold (SSH) C Series analog input modules
contain multiple A/D converters or circuitry that allows all the input
channels to be sampled at the same time. These modules sample their
inputs on every AI Sample Clock pulse.
Sigma-Delta
Sigma-Delta C Series analog input modules function much like SSH
modules, but use A/D converters that require a high-frequency oversample
clock to produce accurate, synchronized data.
This clock is used as the AI Sample Clock Timebase. While most modules
supply a common oversample clock frequency (12.8 MHz), some modules,
such as the NI 9234, supply a different frequency. The sampling
is an integer divisor of the frequency of the AI Sample Clock Timebase.
Getting Started with AI Applications in Software
You can use the NI WLS/ENET-9000 Series device in the following analog
input applications:
•
•
•
Single-Point
Finite
Continuous
For more information about programming analog input applications and
triggers in software, Refer to the NI-DAQmx Help or the LabVIEW Help in
version 8.0 or later for more information.
The NI-DAQmx Help is available after installation from Start»Programs»
National Instruments»NI-DAQ»NI-DAQmx Help. To view the
LabVIEW Help, in version 8.0 or later, select Help»Search the LabVIEW
Help in LabVIEW. Alternately, to download the LabVIEW Help, go to
ni.com/manuals.
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Specifications
These specifications are typical at 25 °C unless otherwise noted.
For C Series I/O module specifications, refer to the documentation
included with the modules.
Note These specifications are for the NI WLS/ENET-9163 carrier only, unless otherwise
noted.
Analog Input
Input FIFO size ...................................... 4095 samples >16 bit
8191 samples ≤16 bit
Sample rate1
NI WLS/ENET-9163 carrier........... 5 MS/s (multi-channel,
aggregate), maximum
With NI WLS/ENET-9215 ............. 100 kS/s, maximum
Timing accuracy2 ................................... 50 ppm of sample rate
Timing resolution2 ................................. 50 ns
Number of channels supported .............. Determined by the C Series
I/O module
Digital Triggers
Static Characteristics
Number of terminals .............................. 2 bi-directional, individually
settable
Pull-down resistor .................................. 49.9 kΩ 0.5%
Input voltage protection3........................ 20 V on each pin
Power–on state ....................................... Input
Required minimum input pulse width.... 100 ns
1
Performance dependent on type of installed C Series I/O modules and number of channels in the task.
Does not include group delay. Refer to C Series I/O module documentation for more information.
Stresses beyond those listed under Input voltage protection may cause permanent damage to the device.
2
3
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PFI Functionality
PFI 1 .......................................................Sample Clock In,
Sample Clock Out1
PFI 0 .......................................................Start Trigger In, Start Trigger
Out, Pause In, Reference
Trigger In
Maximum Operation Conditions
Level
IOL output low current
IOH output high current
Min
—
Max
8 mA
–8 mA
—
Digital Input Characteristics
Level
Min
Max
VIL input low voltage
0 V
2 V
0.8 V
V
IH input high voltage
IIL input low current (Vin = 0 V)
IH input high current (Vin = 5 V)
5 V
—
—
–15 μA
120 μA
I
Digital Output Characteristics
Parameter
Voltage Level
0.5 V
4.0 V
Current Level
VOL
VOH
6 mA
–6 mA
Wireless (NI WLS-9163 Carrier Only)
Radio mode.............................................IEEE 802.11b, 802.11g
Wireless mode ........................................Ad-Hoc and Infrastructure
Frequency range .....................................2.412–2.462 GHz
Channel2..................................................1–14
1
2
Module-dependent.
Due to regulations, the valid channels depend upon in which country the device is operating.
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Security...................................................WEP-40, WEP-104, WPA,
WPA2
EAP Type.................................LEAP, PEAP1, TTLS2, TLS
Center frequency
11b...................................................2412–2484 MHz
11g...................................................2412–2472 MHz
Channel interval
11b...................................................5 MHz
11g...................................................5 MHz
Modulation type
11g...................................................OFDM-CCK (64QAM, 16QAM,
QPSK, BPSK)
11b...................................................DSSS (CCK, DQPSK, DBPSK)
TX power
Maximum Radio
Specification
11g
Channel
Output
1
12 dBm
16 dBm
2
3, 4
5–7
8–10
11–13
1–14
15.5 dBm
15 dBm
14.5 dBm
14 dBm
16 dBm
11b
Receiver Sensitivity
11b, FER<8%
11 Mbps...........................................–82 dB/min
5.5 Mbps..........................................–84 dB/min
2 Mbps.............................................–86 dB/min
1 Mbps.............................................–88 dB/min
1
2
Only PEAPv0/MS-CHAPv2 is supported.
Only CHAP and MS-CHAPv2 are supported.
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11g, PER<10%
54 Mbps...........................................–68 dB/min
48 Mbps...........................................–68 dB/min
36 Mbps...........................................–75 dB/min
24 Mbps...........................................–79 dB/min
18 Mbps...........................................–82 dB/min
12 Mbps...........................................–84 dB/min
9 Mbps.............................................–87 dB/min
6 Mbps.............................................–88 dB/min
Antenna (NI WLS-9163 Carrier Only)
Connector................................................Female RP-SMA connector
Electrical performance
Property
Performance
VSWR
Max. 2.0
(2.4–2.5 GHz)
50 Ω nominal
Omni
Impedance
Directivity
Max. gain
2.0 dBi
(2.4–2.5 GHz)
Ethernet
Network interface ...................................100 Base-TX, full-duplex;
100 Base-TX, half-duplex;
10 Base-T, full-duplex;
10 Base-T, half-duplex
Network protocols ..................................TCP/IP, UDP
Network ports used.................................HTTP:80 (configuration only),
HTTPS:43 (configuration only),
TCP:31415, UDP:44515
Network IP configuration .......................DHCP + Link–Local, DHCP,
Static, Link–Local
Communication rates..............................10/100 Mbps, auto-negotiated
Maximum cabling distance.....................100 m/segment
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Module I/O States
At power-on ........................................... Module-dependent. Refer to the
documentation included with the
C Series I/O module.
Power Requirements
Caution You must use a National Electric Code (NEC) UL Listed Class 2 power supply
with NI WLS/ENET-9000 Series devices.
Note Some C Series I/O modules have additional power requirements. For more
information about the C Series I/O module power requirements, refer to the documentation
included with the C Series I/O module.
Input voltage range................................. 9 V to 30 V
Maximum required input power ............ 4.5 W
Power input mating connector ............... 2 position combicon, Phoenix
Contact part number: 1714977
Physical Characteristics
Weight.................................................... Approx. 242 g (8.5 oz)
Weight with antenna
(NI WLS-9163 Only)............................. Approx. 256 g (9 oz)
Dimensions............................................. 182 mm × 95 mm × 37 mm
(7.18 in. × 3.75 in. × 1.50 in.)
With rubber feet attached....................... +3.56 mm (+0.140 in.)
Antenna
Antenna connector
(antenna not attached) ............................ +5.71 mm (+0.225 in.)
Attached, fully extended ........................ +108.7 mm (+4.28 in.)
Note Refer to the Dimensions section for device dimensions with the antenna attached.
© National Instruments Corporation
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Safety Standards
If you need to clean the carrier, wipe it with a dry towel.
The NI WLS/ENET-9163 carrier is designed to meet the requirements of
the following standards of safety for electrical equipment for measurement,
control, and laboratory use:
•
•
•
IEC 61010-1, EN 61010-1
UL 61010-1, CSA 61010-1
EN 503711
Note For UL and other safety certifications, refer to the product label, or go to ni.com/
certification, search by model number or product line, and click the appropriate link
in the Certification column.1
Safety Voltages
Connect only voltages that are within these limits.
V terminal to C terminal.........................30 V max, Measurement
Category I
Measurement Category I is for measurements performed on circuits not
directly connected to the electrical distribution system referred to as
MAINS voltage. MAINS is a hazardous live electrical supply system that
powers equipment. This category is for measurements of voltages from
specially protected secondary circuits. Such voltage measurements include
signal levels, special equipment, limited-energy parts of equipment,
circuits powered by regulated low-voltage sources, and electronics.
Caution Do not connect the system to signals or use for measurements within
Measurement Categories II, III, or IV.
RF Safety Warning (NI WLS-9163 Carrier Only)
This equipment complies with FCC radiation exposure limits set for
uncontrolled equipment and meets the FCC radio frequency (RF) Exposure
Guidelines in Supplement C to OET65. This product generates and radiates
radio frequency energy. To comply with the radio frequency radiation
exposure guidelines in an uncontrolled environment, this equipment should
be installed and operated with at least 20 cm and more between the radiator
and the person’s body (excluding extremities: hands, wrists, feet, and legs).
1
NI WLS-9163 carrier only.
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Environmental
The NI WLS/ENET-9163 carrier is intended for indoor use only. For
outdoor use, mount the system in a suitably rated enclosure.
Operating temperature
(IEC-60068-2-1 and IEC-60068-2-2) .... 0 to 55 °C
Storage temperature
(IEC-60068-2-1 and IEC-60068-2-2) .... –10 to 70 °C
Ingress protection................................... IP 30
Operating humidity
(IEC-60068-2-56)................................... 10 to 90% RH, noncondensing
Storage humidity (IEC-60068-2-56)...... 5 to 90% RH, noncondensing
Maximum altitude.................................. 2,000 m
Pollution Degree (IEC 60664) ............... 2
Shock and Vibration
To meet these specifications, you must panel mount the
NI WLS/ENET-9163 carrier and affix ferrules to the ends of the terminal
lines.
Operational shock .................................. 30 g peak, half-sine, 11 ms pulse
(Tested in accordance with
IEC-60068-2-27. Test profile
developed in accordance with
MIL-PRF-28800F.)
Random vibration
Operating ........................................ 5 to 500 Hz, 0.3 grms
Nonoperating .................................. 5 to 500 Hz, 2.4 grms
(Tested in accordance
with IEC-60068-2-64.
Nonoperating test profile
exceeds the requirements of
MIL-PRF-28800F, Class 3.)
© National Instruments Corporation
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Electromagnetic Compatibility
This product is designed to meet the requirements of the following
standards of EMC for electrical equipment for measurement, control,
and laboratory use:
•
•
•
•
•
EN 61326 EMC requirements; Minimum Immunity
EN 55011 Emissions; Group 1, Class A
CE, C-Tick, ICES, and FCC Part 15 Emissions; Class A
EN 301489-011, EN 301489-171
FCC 15-2471, IC RSS-2101, EN 3003281
Note For EMC compliance, operate this device according to product documentation. For
country-specific restrictions, go to ni.com/certification, search by model number or
product line, and click the appropriate link in the Certification column
Electronic Compatibility Information
This hardware has been tested and found to comply with the applicable
regulatory requirements and limits for electromagnetic compatibility
(EMC) as indicated in the hardware’s Declaration of Conformity (DoC).
These requirements and limits are designed to provide reasonable
protection against harmful interference when the hardware is operated in
the indicated electromagnetic environment. In special cases, for example
when either highly sensitive or noisy hardware is being used in close
proximity, additional mitigation measures may have to be employed to
minimize the potential for electromagnetic interference.
While this hardware is compliant with the applicable regulatory EMC
requirements, there is no guarantee that interference will not occur in a
particular installation. To minimize the potential for the hardware to cause
interference to radio and television reception or to experience unacceptable
performance degradation, install and use this hardware in strict accordance
with the instructions in the hardware documentation and the DoC.
If this hardware does cause interference with licensed radio
communications services or other nearby electronic hardware, which can
be determined by turning the hardware off and on, you are encouraged to
try to correct the interference by one or more of the following measures:
•
•
Reorient the antenna of the receiver (the device suffering interference).
Relocate the transmitter (the device generating interference) with
respect to the receiver.
1
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•
Plug the transmitter into a different outlet so that the transmitter and
the receiver are on different branch circuits.
This hardware may generate emissions that exceed regulatory requirements
or may become more sensitive to disturbances in the local electromagnetic
environment when test leads are attached or when connected to a test
object.
Operation of this hardware in a residential area is likely to cause harmful
interference. Users are required to correct the interference at their own
expense or cease operation of the hardware.
Changes or modifications not expressly approved by National Instruments
could void the user’s authority to operate the hardware under the local
regulatory rules.
CE Compliance
This product meets the essential requirements of applicable European
Directives, as amended for CE marking, as follows:
•
•
•
2006/95/EC; Low-Voltage Directive (safety)
2004/108/EC; Electromagnetic Compatibility (EMC) Directive
1999/5/EC1; Radio and Telecommunications Terminal Equipment
(R&TTE) Directive
EU Regulatory Statements
Česky
National Instruments tímto prohlašuje, _e tento NI WLS/ENET-9163 je ve shodě se
[Czech]
základními po_adavky a dalšími příslušnými ustanoveními směrnice 1999/5/ES.
Dansk
[Danish]
Undertegnede National Instruments erklćrer herved, at fřlgende udstyr
NI WLS/ENET-9163 overholder de vćsentlige krav og řvrige relevante krav i direktiv
1999/5/EF.
Deutsch
[German]
Hiermit erklärt National Instruments, dass sich das Gerät NI WLS/ENET-9163 in
Übereinstimmung mit den grundlegenden Anforderungen und den übrigen einschlägigen
Bestimmungen der Richtlinie 1999/5/EG befindet.
Eesti
[Estonian]
Käesolevaga kinnitabNational Instruments seadme NI WLS/ENET-9163 vastavust
direktiivi 1999/5/EÜ põhinõuetele ja nimetatud direktiivist tulenevatele teistele
asjakohastele sätetele.
English
Hereby, National Instruments, declares that this NI WLS/ENET-9163 is in compliance with
the essential requirements and other relevant provisions of Directive 1999/5/EC.
Español
[Spanish]
Por medio de la presente National Instruments declara que el NI WLS/ENET-9163 cumple
con los requisitos esenciales y cualesquiera otras disposiciones aplicables o exigibles de
la Directiva 1999/5/CE.
© National Instruments Corporation
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Ελληνική
[Greek]
ΜΕ ΤΗΝ ΠΑΡΟΥΣΑ National Instruments ΔΗΛΩΝΕΙ ΟΤΙ NI WLS/ENET-9163
ΣΥΜΜΟΡΦΩΝΕΤΑΙ ΠΡΟΣ ΤΙΣ ΟΥΣΙΩΔΕΙΣ ΑΠΑΙΤΗΣΕΙΣ ΚΑΙ ΤΙΣ ΛΟΙΠΕΣ ΣΧΕΤΙΚΕΣ
ΔΙΑΤΑΞΕΙΣ ΤΗΣ ΟΔΗΓΙΑΣ 1999/5/ΕΚ.
Français
[French]
Par la présente National Instruments déclare que l'appareil NI WLS/ENET-9163 est
conforme aux exigences essentielles et aux autres dispositions pertinentes de la directive
1999/5/CE.
Italiano
[Italian]
Con la presente National Instruments dichiara che questo NI WLS/ENET-9163 è conforme
ai requisiti essenziali ed alle altre disposizioni pertinenti stabilite dalla direttiva 1999/5/CE.
Latviski
Ar šo National Instruments deklarē, ka NI WLS/ENET-9163 atbilst Direktīvas 1999/5/EK
[Latvian]
būtiskajām prasībām un citiem ar to saistītajiem noteikumiem.
Lietuvių
Šiuo National Instruments deklaruoja, kad šis NI WLS/ENET-9163 atitinka esminius
[Lithuanian]
reikalavimus ir kitas 1999/5/EB Direktyvos nuostatas.
Nederlands
[Dutch]
Hierbij verklaart National Instruments dat het toestel NI WLS/ENET-9163 in
overeenstemming is met de essentiële eisen en de andere relevante bepalingen van
richtlijn 1999/5/EG.
Malti
[Maltese]
Hawnhekk, National Instruments, jiddikjara li dan NI WLS/ENET-9163 jikkonforma
mal-htigijiet essenzjali u ma provvedimenti ohrajn relevanti li hemm fid-Dirrettiva
1999/5/EC.
Magyar
Alulírott, National Instruments nyilatkozom, hogy a NI WLS/ENET-9163 megfelel a
[Hungarian]
vonatkozó alapvetõ követelményeknek és az 1999/5/EC irányelv egyéb elõírásainak.
Polski
[Polish]
Niniejszym National Instruments. oświadcza, że NI WLS/ENET-9163 jest zgodny z
zasadniczymi wymogami oraz pozostałymi stosownymi postanowieniami Dyrektywy
1999/5/EC.
Português
National Instruments declara que este NI WLS/ENET-9163 está conforme com os
[Portuguese]
requisitos essenciais e outras disposições da Directiva 1999/5/CE.
Slovensko
[Slovenian]
National Instruments izjavlja, da je ta NI WLS/ENET-9163 v skladu z bistvenimi zahtevami
in ostalimi relevantnimi določili direktive 1999/5/ES.
Slovensky
[Slovak]
National Instruments týmto vyhlasuje, _e NI WLS/ENET-9163 spĺňa základné po_iadavky
a všetky príslušné ustanovenia Smernice 1999/5/ES.
Suomi
National Instruments vakuuttaa täten että NI WLS/ENET-9163 tyyppinen laite on direktiivin
[Finnish]
1999/5/EY oleellisten vaatimusten ja sitä koskevien direktiivin muiden ehtojen mukainen.
Svenska
[Swedish]
Härmed intygar National Instruments att denna NI WLS/ENET-9163 står I
överensstämmelse med de väsentliga egenskapskrav och övriga relevanta bestämmelser
som framgår av direktiv 1999/5/EG.
Íslenska
Hér með lýsir National Instruments yfir því að NI WLS/ENET-9163 er í samræmi við
[Icelandic]
grunnkröfur og aðrar kröfur, sem gerðar eru í tilskipun 1999/5/EC.
Norsk
National Instruments erklærer herved at utstyret NI WLS/ENET-9163 er i samsvar med de
[Norwegian]
grunnleggende krav og øvrige relevante krav i direktiv 1999/5/EF.
Note Refer to the Declaration of Conformity (DoC) for this product for any additional
regulatory compliance information. To obtain the DoC for this product, visit ni.com/
certification, search by model number or product line, and click the appropriate link
in the Certification column.
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Environmental Management
National Instruments is committed to designing and manufacturing
products in an environmentally responsible manner. NI recognizes that
eliminating certain hazardous substances from our products is beneficial
not only to the environment but also to NI customers.
For additional environmental information, refer to the NI and the
Environment Web page at ni.com/environment. This page contains the
environmental regulations and directives with which NI complies, as well
as other environmental information not included in this document.
Waste Electrical and Electronic Equipment (WEEE)
EU Customers At the end of their life cycle, all products must be sent to a WEEE recycling
center. For more information about WEEE recycling centers and National Instruments
WEEE initiatives, visit ni.com/environment/weee.htm.
˅
RoHS
Ёᅶ᠋
݇Ѣ
DŽ
National Instruments
National Instruments
(RoHS)
Ё
ড়㾘ᗻֵᙃˈ䇋ⱏᔩ ni.com/environment/rohs_chinaDŽ
RoHS
ni.com/environment/rohs_china
(For information about China RoHS compliance, go to
.)
© National Instruments Corporation
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Regulatory Information1
United States
This product generates and radiates radio frequency energy. To comply
with the radio frequency radiation exposure guidelines in an uncontrolled
environment, this equipment must be installed and operated while
maintaining a minimum body-to-antenna distance of 20 cm.
This product complies with Part 15 of the FCC Rules. Operation is subject
to these 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.
This product does not contain any user serviceable components. Any
unauthorized product changes or modifications will invalidate the warranty
and all applicable regulatory certifications and approvals.
Canada
This product complies with Industry Canada RSS-210.
Cet appareil est conforme aux norme RSS210 d'Industrie Canada.
Europe—EU Declaration of Conformity
Marking by the above CE symbol on the label indicates compliance with
the Essential Requirements of the R&TTE Directive of the European Union
(1999/5/EC). This equipment meets the following conformance standards:
EN 300 893, EN300 328, EN301 489-17, EN60950.
1
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Europe – Restrictions for Use of 2.4 GHz Frequencies in European
Community Countries
België/
For private usage outside buildings across public grounds over less than 300m no special registration
with IBPT/BIPT is required. Registration to IBPT/BIPT is required for private usage outside buildings
across public grounds over more than 300m. For registration and license please contact IBPT/BIPT.
Belgique:
Voor privé-gebruik buiten gebouw over publieke groud over afstand kleiner dan 300m geen registratie
bij BIPT/IBPT nodig; voor gebruik over afstand groter dan 300m is wel registratie bij BIPT/IBPT
nodig. Voor registratie of licentie kunt u contact opnemen met BIPT.
Dans le cas d'une utilisation privée, à l'extérieur d'un bâtiment, au-dessus d'un espace public, aucun
enregistrement n'est nécessaire pour une distance de moins de 300m. Pour une distance supérieure à
300m un enregistrement auprès de I'IBPT est requise. Pour les enregistrements et licences, veuillez
contacter I'IBPT.
Deutschland:
France:
License required for outdoor installations. Check with reseller for procedure to follow.
Anmeldung im Outdoor-Bereich notwendig, aber nicht genehmigungspflichtig.Bitte mit Händler die
Vorgehensweise abstimmen.
Restricted frequency band: only channels 1 to 7 (2400 MHz and 2454 MHz respectively) may be used
outdoors in France.
Bande de fréquence restreinte : seuls les canaux 1- 7 (2400 et 2454 MHz respectivement) doivent être
utilisés endroits extérieur en France. Vous pouvez contacter I'Autorité de Régulation des
Italia:
License required for indoor use. Use with outdoor installations not allowed.
E'necessaria la concessione ministeriale anche per l'uso interno.
Verificare con i rivenditori la procedura da seguire.
Nederland:
License required for outdoor installations. Check with reseller for procedure to follow.
Licentie verplicht voor gebruik met buitenantennes. Neem contact op met verkoper voor juiste
procedure.
Japan
The certified radio equipment is embedded in this device.
本機器には認証済み無線設備が内蔵されています
© National Instruments Corporation
35
NI WLS/ENET-9163 Carrier User Guide and Specifications
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372488A-01
Aug08
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