Teledyne Blood Glucose Meter 100E User Manual

ADDENDUM TO  
MODEL 100E  
OPERATORS MANUAL  
(P/N 04515)  
FOR  
MODEL 100EU  
TRACE LEVEL SULFUR DIOXIDE  
ANALYZER  
9480 CARROLL PARK DRIVE  
SAN DIEGO, CA 92121-5201  
USA  
Toll-free Phone: 800-324-5190  
Phone: 858-657-9800  
Fax: 858-657-9816  
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DCN 5379  
© 2007 T-API  
PRINT DATE: 08 April 2009  
08 April 2009  
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M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
TELEDYNE INSTRUMENTS  
TABLE OF CONTENTS  
TABLE OF CONTENTS  
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TELEDYNE INSTRUMENTS  
TABLE OF CONTENTS  
M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
LIST OF FIGURES  
LIST OF TABLES  
USER NOTES:  
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M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
TELEDYNE INSTRUMENTS  
PREFACE  
1. PREFACE  
NOTE  
The information contained in this addendum is pertinent to M100EU analyzers running software revision  
F.0. Some or all of the information may not be applicable to later revisions of software.  
The software revision your analyzer is running is displayed in the upper left-hand corner of the display  
any time the instrument is in SETUP mode.  
This addendum is based on the Model 100E Operators Manual (P/N 04145). In most ways the M100EU is  
identical to the M100E in design and operation, therefore most of the basic set up information, operating  
instructions as well as calibration, maintenance, troubleshooting and repair methods are found in that manual.  
This addendum documents only those areas where the M100EU is different in design or operating method from  
the M100E.  
Therefore this addendum includes instructions and information regarding:  
Additional Test Functions  
Adjusting the PMT HV for “Factory Calibrations”  
Differences in theory of operation  
1.1 REFERENCE NUMBERING CONVENTION  
Unless otherwise specified, chapter, section, figure and table reference numbers referred to within this text are  
relative to this document.  
EXAMPLE: “Figure 2-1” refers to the figure, within this document, labeled as 2-1.  
References to chapters, sections, figures and tables in the original document will be labeled as such.  
EXAMPLE: “Figure 6.1 of the M101E Operators Manual (P/N 04145, REV. A)”.  
USER NOTES  
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TELEDYNE INSTRUMENTS  
PREFACE  
M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
USER NOTES:  
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M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
TELEDYNE INSTRUMENTS  
SPECIFICATIONS, APPROVALS AND WARRANTY  
2. SPECIFICATIONS, APPROVALS AND  
WARRANTY  
2.1 SPECIFICATIONS  
Table 2-1:  
Model 100EU Basic Unit Specifications  
Min/Max Range  
In 1ppb increments from 50ppb to 20 000ppb, dual ranges or auto ranging  
(Physical Analog Output)  
Measurement Units  
Zero Noise2  
ppb, ppm, µg/m3, mg/m3 (user selectable)  
25 ppt RMS (50 ppt RMS with 360 nM filter installed)  
0.5% of reading RMS, above 5 ppb  
50 ppt RMS  
Span Noise2  
Lower Detectable Limit3  
Zero Drift (24 hours)  
Zero Drift (7 days)  
Span Drift (7 Days)  
Linearity  
<200 ppt (<400 ppt with 360 nM filter installed)  
<200 ppt (<400 ppt with 360 nM filter installed)  
<0.5% FS  
1% of full scale  
Precision  
0.5% of reading  
Temperature Coefficient  
Lag Time1  
< 0.1% per oC  
30 sec  
Rise/Fall Time1  
95% in <140 sec  
Sample Flow Rate  
Temperature Range  
Humidity Range  
Dimensions H x W x D  
650cc/min. ±10%  
5-40oC  
0 - 95% RH, non-condensing  
7" x 17" x 23.5" (178 mm x 432 mm x 597 mm)  
45 lbs (20.5 kg) w/internal pump  
Weight, Analyzer  
(Basic Configuration)  
AC Power Rating  
100 V, 50/60 Hz (3.25A);  
115 V, 60 Hz (3.0 A);  
220 – 240 V, 50/60 Hz (2.5 A)  
Environmental  
Installation category (over-voltage category) II; Pollution degree 2  
Three (3) Outputs  
Analog Outputs  
Analog Output Ranges  
100 mV, 1 V, 5 V, 10 V, 2-20 or 4-20 mA isolated current loop.  
All Ranges with 5% Under/Over Range  
Analog Output Resolution  
Status Outputs  
1 part in 4096 of selected full-scale voltage  
8 Status outputs from opto-isolators  
Control Inputs  
Serial I/O  
6 Control Inputs, 3 defined, 3 spare  
One (1) RS-232; One (1) RS-485 (2 connecters in parallel)  
Baud Rate : 300 – 115200: Optional Ethernet Interface  
Certifications  
EN61326 (1997 w/A1: 98) Class A, FCC Part 15 Subpart B Section 15.107 Class  
A, ICES-003 Class A (ANSI C63.4 1992) & AS/NZS 3548 (w/A1 & A2; 97)  
Class A.  
IEC 61010-1:90 + A1:92 + A2:95,  
1-As defined by the USEPA; 2 – 25 samples taken, 10 sec. interval; 3 – Twice zero noise  
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SPECIFICATIONS, APPROVALS AND WARRANTY  
M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
2.2 EPA EQUIVALENCY DESIGNATION  
At this time the M100EU has not been certified by the EPA as an equivalent method at the time of this writing  
however it is anticipated that the M100EU will qualify as Reference Method Number EQSA-0495-100 per 40  
CFR Part 53 in the near future. Please see section 2.2 of the M100E manual, P/N 04515 for details.  
2.3 CE MARK COMPLIANCE  
See Section 2.3 of the M100E Manual - P/N 04515  
2.4 WARRANTY  
See Section 2.4 of the M100E Manual - P/N 04515  
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M100EU – OPERATIONS MANUAL  
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TELEDYNE INSTRUMENTS  
GETTING STARTED  
3. GETTING STARTED  
3.1 UNPACKING THE M100EU  
Unpack the M100EU as per the directions in Section 3.1 of the M100E Manual - P/N 04515, with the following  
change. There are two redheaded shipping screws that hold down the PMT/Sensor assembly and must be  
removed prior to operation. They are located along the base of the PMT housing adjacent to the chassis.  
3.2 INTERNAL LAYOUTS  
Figures 3-1 replaces Figure 3-9 in the M100E manual. The primary difference between the M100EU and M100E  
layouts is the differences in the PMT Housing, the location of the PMT preamp PCA and the addition of a Sync  
Demodulator PCA.  
Figure 3-1:  
M100EU Internal Layout  
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M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
3.3 FUNCTIONAL CHECK OF THE M100EU  
To perform an initial functional check of the M100EU follow the steps contained in Section 3.2.4 of the M100E  
Manual - P/N 04145, but use the Test functions described in below.  
3.3.1  
TEST FUNCTIONS  
Table 3-1 supersedes the figure in Step 2 of Section 3.2.4 and Figure 6-2 of the M100E Manual - P/N 04145.  
Table 11-1 supersedes Table 6-2. The only differences between the M100E and M100EU’s test functions are  
the addition of STABIL2 and UV STAB.  
Table 3-1:  
UNITS  
Test Functions Defined  
DISPLAY  
PARAMETER  
DESCRIPTION  
The Full Scale limit at which the reporting range of the analyzer’s  
ANALOG OUTPUTS is currently set.  
RANGE  
- -  
PPB,  
PPM,  
UGM &  
MGM  
THIS IS NOT the Physical Range of the instrument. See Section  
6.7 of M100E manual for more information.  
RANGE  
RANGE1  
RANGE2  
If DUAL or AUTO Range modes have been selected, two  
RANGE functions will appear, one for each range.  
Standard deviation of SO2 Concentration readings. Data points  
are recorded every ten seconds. The calculation uses the last  
25 data points.  
STABIL  
STABILITY  
ppb  
Standard deviation of SO2 Concentration readings, per EPA.  
Data points are recorded every 120 seconds. The calculation  
uses the last 25 data points.  
STABIL2  
PRES  
STABILITY  
ppb  
The current pressure of the sample gas as it enters the sample  
chamber, measured between the SO2 and Auto-Zero valves.  
SAMPLE PRESSURE  
in-Hg-A  
The flow rate of the sample gas through the sample chamber.  
This value is not measured but calculated from the sample  
pressure.  
cm³/min  
(cc/m)  
SAMP FL  
SAMPLE FLOW  
PMT Signal  
PMT  
mV  
mV  
The raw output voltage of the PMT.  
NORMALIZED PMT  
Signal  
The output voltage of the PMT after normalization for offset and  
temperature/pressure compensation (if activated).  
NORM PMT  
Source UV Lamp  
Intensity  
UV LAMP  
UV STAB  
mV  
mV  
The output voltage of the UV reference detector.  
Standard deviation of UV reference detector output. Data points  
are recorded every ten seconds. The calculation uses the last  
25 data points.  
Stability of UV Lamp  
Intensity  
The current output of the UV reference detector divided by the  
reading stored in the CPU’s memory from the last time a UV  
Lamp calibration was performed.  
LAMP RATIO  
UV Source lamp ratio  
%
The offset due to stray light recorded by the CPU during the last  
zero-point calibration performed.  
STR. LGT  
DRK PMT  
DRK LMP  
Stray Light  
Dark PMT  
ppb  
mV  
mV  
The PMT output reading recorded the last time the UV source  
lamp shutter was closed.  
The UV reference detector output reading recorded the last time  
the UV source lamp shutter was closed.  
Dark UV Source Lamp  
The sensitivity of the instrument as calculated during the last  
calibration activity. The slope parameter is used to set the span  
calibration point of the analyzer.  
SLOPE  
SO2 measurement Slope  
-
(table continued)  
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TELEDYNE INSTRUMENTS  
GETTING STARTED  
Table 3-1:  
Test Functions Defined  
DISPLAY  
PARAMETER  
SO2 measurement Offset  
HVPS  
UNITS  
DESCRIPTION  
The overall offset of the instrument as calculated during the last  
calibration activity. The offset parameter is used to set the zero  
point of the analyzer response.  
OFFSET  
-
HVPS  
V
The PMT high voltage power supply.  
SAMPLE CHAMBER  
TEMP  
RCELL TEMP  
°C  
The current temperature of the sample chamber.  
BOX TEMP  
PMT TEMP  
BOX TEMPERATURE  
PMT TEMPERATURE  
°C  
°C  
The ambient temperature of the inside of the analyzer case.  
The current temperature of the PMT.  
The current temperature of the internal zero/span option. Only  
appears when IZS option is enabled  
IZS TEMP1  
TEST2  
IZS TEMPERATURE1  
TEST SIGNAL2  
°C  
mV  
Signal of a user-defined test function on output channel A4.  
hh:mm:s  
s
TIME  
CLOCK TIME  
The current day time for iDAS records and calibration events.  
To view the TEST Functions press the following Key sequence:  
SAMPLE  
RANGE = 500.0 PPB  
SO2 =XXX.X  
SETUP  
< TST TST > CAL  
RANGE  
STABIL  
STABIL2  
PRES  
SAMP FL  
PMT  
Toggle <TST TST> keys to  
scroll through list of functions  
NORM PMT  
UV LAMP  
UV STAB  
LAMP RATIO  
STR. LGT  
DARK PMT  
DARK LAMP  
SLOPE  
Refer to  
Section  
6.2.1 for  
definitions  
of these  
test  
OFFSET  
HVPS  
functions.  
1 Only appears if IZS option is  
installed.  
RCELL TEMP  
BOX TEMP  
PMT TEMP  
IZS TEMP1  
TEST2  
2 Only appears if analog output  
A3 is actively reporting a test  
function  
TIME  
Figure 3-2:  
M100EU Test Functions  
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GETTING STARTED  
M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
USER NOTES:  
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FREQENTLY ASKED QUESTIONS & GLOSSARY  
4. FREQENTLY ASKED QUESTIONS & GLOSSARY  
Please refer to Section 4 of the M100E manual, PN 04515 for information.  
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M100EU – OPERATIONS MANUAL  
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TELEDYNE INSTRUMENTS  
OPTIONAL HARDWARE AND SOFTWARE  
5. OPTIONAL HARDWARE AND SOFTWARE  
Please refer to Section 5 of the M100E manual, PN 04515 for information.  
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TELEDYNE INSTRUMENTS  
M100EU OPERATING INSTRUCTIONS  
6. M100EU OPERATING INSTRUCTIONS  
NOTE  
For the most part the operation instruction for the M100EU are the same as those described in Chapter 6  
of the M100E Manual - P/N 04515 with the exception that there are additional test parameters and setup  
procedures.  
6.1 ADDITIONAL TEST PARAMETERS  
Please see Section 3.3 above for details on the additional test parameters.  
6.2 STBL MENU: SETUP FOR THE THREE STABILITY  
FUNCTIONS  
There is an additional submenu on the Secondary Setup Menu in the M100EU’s software. The STBL menu, see  
Figure 6-1 allows the user to modify the settings for the three stability calculations that are displayed as Test  
Functions on the front panel and are available via the serial data port and that can be logged with the iDAS.  
Test Function STABIL, CONC1 in the menus below, is equivalent to the standard M100E STABIL function and is  
useful when conducting calibrations and other operations in which the operator has limited time to view the  
display. CONC2, which is the same as the STABIL2 test function has been configured so that it calculates  
stability in the same way as required by the EPA. STABIL2 is useful when comparing instruments against the  
EPA standard but is very slow and difficult to use for calibration or other activities where the operator must wait  
for analyzer to settle to the desired value. UVLAMP is the same as UV STAB on the front panel is a diagnostic  
that can be used to understand the stability of the UV lamp.  
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M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
SAMPLE  
RANGE = 500.000 PPB  
SO2 =XXX.X  
< TST TST > CAL  
SETUP  
SETUP X.X  
PRIMARY SETUP MENU  
EXIT returns  
to the main  
SAMPLE  
display  
CFG DAS RNGE PASS CLK MORE  
EXIT  
SETUP X.X  
SECONDARY SETUP MENU  
EXIT returns  
to the PRIMARY  
SETUP MENU  
COMM VARS DIAG STBL  
SETUP X.X  
NEXT  
CONC1, 10SEC, 25 SAMPLES  
EDIT PRNT EXIT  
SETUP X.X  
CONC2, 120SEC, 25 SAMPLES  
PREV NEXT  
EDIT PRNT EXIT  
CONC2 is  
setup for  
STABIL2 test  
function,  
UVLAMP for  
UV STAB test  
function  
SETUP X.X  
PREV  
UVLAMP, 10SEC, 25 SAMPLES  
EDIT PRNT EXIT  
Figure 6-1:  
Accessing the STBL Menu  
User Notes:  
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TELEDYNE INSTRUMENTS  
CALIBRATION PROCEDURES  
7. CALIBRATION PROCEDURES  
Calibration of the M100EU should be performed according to the procedures described in Chapters 7 & 8 of the  
M100E Manual - P/N 04145. However, delivering span and zero gases for the lower ranges that the M100EU is  
designed for can be difficult. For best results when calibrating the M100EU, wait one hour for the instrument to  
stabilize when delivering zero and span gases before pressing the zero and span buttons. Attention must be  
paid to the quality of the gasses, the level of contaminants in the gases as well as the history and conditioning of  
the gas delivery components. Only Teflon or glass should be used for any “wetted” surfaces that the calibration  
gasses contact. All delivery system components should be conditioned by running span gas for a minimum of  
four hours before conducting actual span calibrations.  
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EPA PROTOCOL CALIBRATION  
8. EPA PROTOCOL CALIBRATION  
The M100EU is designated as an equivalent method for measuring SO2 under certification EQSA-0495-100.  
Calibration of the M100EU is done so in a manner that is consistent with EPA requirements. For calibration in  
this manner please refer to section 8 of the M100E manual.  
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INSTRUMENT MAINTENANCE  
9. INSTRUMENT MAINTENANCE  
Instrument maintenance is almost identical to that in the M100E. The M100EU uses a 1 micron sample filter, instead of the 5  
micron sample filter used in the M100E. Replacement part numbers are shown below.  
Part Number  
009690200  
05920  
Description  
AKIT, TFE FLTR ELEMENT, 47MM, 1UM (100)  
UV Zinc LAMP, M100EU  
For all other maintenance questions, please refer to section 9 in the M100E manual.  
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THEORY OF OPERATION  
10.THEORY OF OPERATION  
The M100EU is a modified M100E. The primary differences are the way in which the PMT and UV reference  
signals are acquired and processed. The M100EU has no shutter but rather employs synchronous  
demodulation to capture the dark and light PMT and UV reference signals several times per second. A printed  
circuit board, the Sync Demodulator, attached to the end of the PMT housing, on the sensor assembly, includes  
circuitry that digitizes the PMT and UV reference signals and synchronizes the operation of the UV source with  
these measurements. This method of signal processing minimizes the error that changing offsets could make in  
an instrument that is designed to operate near its detection limit.  
10.1 ELECTRONIC OPERATION  
The following information is in addition to that contained in Section 10.2 of the M100E Manual - P/N 04145.  
10.1.1 SENSOR MODULE  
At the heart of the M100EU’s signal processing, illustrated in Figure 10-1 below, is the Synchronous  
Demodulator PCA. The PCA is attached to the end of the PMT housing and serves to seal the end of the PMT  
housing. The sync demodulator controls the operation of the UV Lamp driver, digitizes the analog output  
signals from the PMT UV reference detector and PMT temperature sensor, controls the PMT cooler (TEC),  
controls the PMT HV via a local I2C bus, and communicates with the analyzer’s CPU over the master I2C bus.  
Digitized and processed data from the UV reference and PMT are passed to the analyzer’s CPU over the master  
I2C bus and data for control of the PMT HV control DAC is passed from the CPU to the DAC on the PMT  
preamp via the microcontroller on the Sync Demod board.  
SYNC DEMOD PCA  
(End of PMT Housing)  
UV REF PCA  
(End of Sensor Module)  
UV LAMP DRIVER  
PCA  
(Side of Sensor Assy)  
UV REF  
Lamp Sync  
`
PMT PREAMP PCA  
(Inside PMT Housing)  
PMT Signal  
A/D  
Converter  
PMT HV  
Monitor  
PMT IN  
CPU  
MOTHERBOARD  
(Rear Panel)  
8 bit DAC  
Local I2C Bus  
Micro  
Controller  
PMT HV  
Control  
I2C  
Master  
I2C Bus  
PMT Temp Sensor  
(Inside PMT Housing)  
PMT Cooler  
(End of PMT Housing)  
Figure 10-1:  
Sensor Block Diagram  
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M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
Lamp Shutter Housing  
UV LAMP  
Reaction Cell  
Sample Gas Outlet  
PMT PREAMP PCA  
SAMPLE  
CHAMBER  
Sample Gas Inlet  
PMT HOUSING  
Reference Detector  
PMT Cooling System  
Figure 10-2:  
M100EU Sensor Module Assembly  
These components are divided into two significant subassemblies. The sample chamber and the PMT  
assembly.  
Figure 10-3 shows an exploded view of the sample chamber assembly  
Figure 11-3 shows an exploded view of the PMT Assembly  
10.1.1.1  
Sample Chamber  
The main electronic components of the sample chamber are the reference detector(see Section 10.2.2 of the  
M100E Manual - P/N 04145); the UV Lamp (see Section 10.2.1 of the M100E Manual - P/N 04145) and its  
electronically operated shutter (see Section 9.2.1 of this addendum); and the sample chamber heating circuit,  
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TELEDYNE INSTRUMENTS  
THEORY OF OPERATION  
UV Source  
Lamp  
Shutter Housing  
PMT Lens &  
Housing  
UV Source Lens &  
Housing  
Sample Air  
Outlet  
O-Ring  
Seal  
O-Ring  
Seal  
Sample Air  
Inlet  
Sample Chamber  
Heater 1  
Sample Chamber  
Sample Chamber  
Temperature Sensor  
& Heater 2  
Light Trap  
Heater Safety  
Shut-Off  
Reference  
Detector  
Figure 10-3:  
M100EU Sample Chamber Exploded View  
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M100EU – OPERATIONS MANUAL  
Addendum to M100E Manual - P/N 04515  
User Notes:  
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TELEDYNE INSTRUMENTS  
TROUBLESHOOTING & REPAIR  
11. TROUBLESHOOTING& REPAIR  
This section includes various troubleshooting and repair information that is either in addition to that included in  
Chapter 11 of the M100E Manual (P/N 04145)  
CAUTION  
THE OPERATIONS OUTLINED IN THIS CHAPTER MUST BE PERFORMED BY QUALIFIED  
MAINTENANCE PERSONNEL ONLY.  
PLEASE READ CHAPTER 11 OF THE M100E MANUAL (P/N 04145) BEFORE  
ATTEMPTING THE FOLLOWING TROUBLE SHOOTING OR REPAIR PROCEDURES  
CAUTION  
RISK OF ELECTRICAL SHOCK. SOME OPERATIONS NEED TO BE CARRIED OUT WITH  
THE ANALYZER OPEN AND RUNNING.  
EXERCISE CAUTION TO AVOID ELECTRICAL SHOCKS AND ELECTROSTATIC OR  
MECHANICAL DAMAGE TO THE ANALYZER.  
DO NOT DROP TOOLS INTO THE ANALYZER OR LEAVE THOSE AFTER YOUR  
PROCEDURES.  
DO NOT SHORTEN OR TOUCH ELECTRIC CONNECTIONS WITH METALLIC TOOLS  
WHILE OPERATING INSIDE THE ANALYZER.  
USE COMMON SENSE WHEN OPERATING INSIDE A RUNNING ANALYZER.  
11.1.1 FAULT DIAGNOSIS WITH WARNING MESSAGES  
The warning messages for the M100EU are identical to those included in Section 11.1.1 of the M100E Manual  
(P/N 04145)  
11.1.2 FAULT DIAGNOSIS WITH TEST FUNCTIONS  
The following table supersedes Table 11.2 of the M100E Manual - P/N 04145.  
Table 11-1:  
Test Functions - Possible Causes for Out-Of-Range Values  
TEST  
FUNCTION  
NOMINAL  
VALUE(S)  
POSSIBLE CAUSE(S)  
Faults that cause high stability values are: pneumatic leak; low or very unstable UV lamp  
output; light leak; faulty HVPS; defective preamp board; aging PMT; PMT recently exposed to  
room light; dirty/contaminated reaction cell.  
STABIL  
0.075 ppb with zero  
air  
(STANDARD)  
STABIL2  
0.075 ppb with zero  
Same as STABIL  
air  
(EPA DEF)  
650 cm3/min  
± 10%  
Faults can be caused by: clogged critical flow orifice; pneumatic leak; faulty flow sensor;  
sample line flow restriction.  
SAMPLE FL  
High or noisy readings could be due to: calibration error; pneumatic leak; light leak (improper  
assembly); aging UV filter; low UV reference output; PMT recently exposed to room light; light  
leak in reaction cell; reaction cell contaminated; HVPS problem.  
-20 TO 150 mV with  
zero air  
PMT  
It takes 24-48 hours for a PMT exposed to ambient light levels to return to normal functioning.  
(table continued)  
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Table 11-1:  
Test Functions - Possible Causes for Out-Of-Range Values  
TEST  
FUNCTION  
NOMINAL  
VALUE(S)  
POSSIBLE CAUSE(S)  
Noisy Norm PMT value (assuming unchanging SO2 concentration of sample gas):  
Calibration error; HVPS problem; PMT problem; UV reference problem; UV lamp problem.  
NORM PMT  
- -  
This is the instantaneous reading of the UV lamp intensity. Low UV lamp intensity could be  
due to: aging UV lamp; UV lamp position out of alignment; faulty lamp transformer; aging or  
faulty UV detector; dirty optical components.  
UV LAMP  
UV STAB  
2000 - 4000 mV  
0 to 100 mV  
Intensity lower than 600 mV will cause UV LAMP WARNING.  
Unstable lamp or failed UV lamp driver.  
The current output of the UV reference detector divided by the reading stored in the CPU’s  
memory from the last time a UV Lamp calibration was performed. Out of range lamp ratio  
could be due to: malfunctioning UV lamp; UV lamp position out of alignment; faulty lamp  
transformer; aging or faulty UV detector; dirty optical components; pin holes or scratches in the  
UV optical filters; light leaks.  
LAMP RATIO  
30 TO 120%  
High stray light could be caused by: aging UV filter; contaminated reaction cell; light leak;  
pneumatic leak.  
STR LGT  
DRK PMT  
<100 ppb  
High dark PMT reading could be due to: light leak; high pmt temperature; high electronic  
offset.  
200 - 325 mV  
DRK LMP  
HVPS  
-50 - +200 mV  
High dark UV detector could be caused by: light leak; high electronic offset.  
400 V to 900 V  
Incorrect HVPS reading could be caused by; HVPS broken; preamp board circuit problems.  
Incorrect temperature reading could be caused by: malfunctioning heater; relay board  
communication (I1C bus); relay burnt out  
RCELL TEMP  
BOX TEMP  
PMT TEMP  
50ºC ± 1ºC  
ambient  
+ ~ 5ºC  
Incorrect temperature reading could be caused by: Environment out of temperature  
operating range; broken thermistor; runaway heater  
Incorrect temperature reading could be caused by: TEC cooling circuit broken; High chassis  
temperature; 12V power supply  
7ºC ± 2ºC constant  
50ºC ± 1ºC  
Malfunctioning heater; relay board communication (I1C bus); relay burnt out  
IZS TEMP  
(OPTION)  
Incorrect SAMPLE pressure could be due to: pneumatic leak; malfunctioning valve;  
malfunctioning pump; clogged flow orifices; sample inlet overpressure; faulty pressure  
sensor  
ambient  
± 2 IN-HG-A  
PRESS  
Slope out of range could be due to: poor calibration quality ; span gas concentration incorrect;  
leaks; UV Lamp output decay.  
SLOPE  
OFFSET  
1.0 ± 0.3  
< 250 mV  
High offset could be due to: incorrect span gas concentration/contaminated zero air/leak; low-  
level calibration off; light leak; aging UV filter; contaminated reaction cell; pneumatic leak.  
Incorrect Time could be caused by: Internal clock drifting; move across time zones; daylight  
savings time?  
TIME OF DAY  
Current time  
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11.1.3 FAULT DIAGNOSIS WITH SYNC DEMOD PCA LEDS  
There are four green Light Emitting Diodes (LEDs) on the bottom left side of the Sync Demodulator PCA. They  
indicate various statuses and can be used to troubleshoot problems associated with the board.  
Table 11-2:  
Relay PCA Status LED Failure Indications  
Indicator  
Function  
Description  
Toggles on or off  
Action  
DS4  
Watchdog  
Steady on or off controller on PCA has crashed, PMT  
temp. control still operates but PMT, REF and PMT Temp  
voltages as shown in test functions will be XXXX. Press  
reset button on sync demod to restart, if problem  
continues check power supply voltages on PCA or PCA is  
failing and must be replaced  
every second  
DS3  
I2C Activity  
Flashes each time  
Steady on or off indicates I2C bus failure check wiring  
sync demod is polled harness taking I2C to motherboard, another I2C device is  
by instrument CPU  
once every 1 to 1.5  
seconds  
hanging bus, I2C transceiver on motherboard has failed,  
or CPU has problem  
DS2  
DS1  
A/D Status 1  
A/D Status 2  
Short frequent  
Lack of flash indicates internal failure of A/D or firmware.  
flashes tracks timing Press reset button on sync demod to restart, if problem  
of A/D converter  
continues check power supply voltages on PCA or PCA is  
failing and must be replaced  
11.2 OTHER PERFORMANCE PROBLEMS  
Please refer to Section 11.4 of the M100E manual, P/N 04515 for information.  
11.3 ADDITIONAL REPAIR PROCEDURES  
The following repair procedures are in addition to those listed in Section 11.6 of the M100E Manual - P/N 04145,  
11.3.1 UV LAMP ADJUSTMENT AND/OR REPLACEMENT  
There are two ways in which ambient conditions can affect the UV Lamp output and therefore the accuracy of the  
SO2 concentration measurement. These are:  
LAMP AGING  
Over a period of months, the UV energy will show a downward trend, usually 30% - 50% in the first 90 days, and  
then a slower rate, until the end of useful life of the lamp. Periodically running the UV lamp calibration routine  
(see Section 6.9.7 of the M100E Manual - P/N 04145) will compensate for this until the lamp output becomes too  
low to function at all, 2-3 years nominally.  
LAMP POSITIONING  
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The UV output level of the lamp is not even across the entire length of the lamp. Some portions of the lamp  
shine slightly more brightly than others. At the factory the position of the UV lamp is adjusted to optimize the  
amount of UV light shining through the UV filter/lens and into the reaction cell. Changes to the physical  
alignment of the lamp can affect the analyzer’s ability to accurately measure SO2. See Section 11.6.3.2 of the  
M100E Manual (P/N 04145) for instructions on adjusting the lamp position.  
11.3.1.1  
Adjusting the UV Lamp (Peaking the Lamp  
CAUTION:  
ALWAYS WEAR UV-PROTECTIVE, SAFETY GLASSES WHEN WORKING WITH THE UV  
LAMP ASSEMBLY  
1. Set the analyzer display to show the signal I/O function, UVLAMP_SIGNAL (see Section 11.1.3 of the  
M100E Manual - P/N 04145). UVLAMP_SIGNAL is function 35.  
2. Slightly loosen the large brass thumbscrew located on the shutter housing (see Figure 10-1) so that the  
lamp can be moved.  
3. While watching the UVLAMP_SIGNAL reading, slowly rotate the lamp or move it back and forth  
vertically until the UVLAMP_SIGNAL reading is at its maximum.  
Best peak intensity will occur when the dot (or arrow) on top of the lamp is pointing in the direction of the  
reaction cell.  
Ideally, the reading should be 4000mV±200mV.  
If UVLAMP_SIGNAL is lower than 600mV, replace the lamp.  
If UVLAMP_SIGNAL is greater than 4400 mV, adjust the pot on the UV reference board down until the  
output reads 4400 mV, and then continue to peak the lamp.  
NOTE:  
DO NOT grasp the UV lamp by its cap when changing its position (see Figure 11-2).  
Always grasp the main body of the lamp.  
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Figure 11-1:  
4. Finger tighten the thumbscrew  
UV Lamp Adjustment  
NOTE  
DO NOT over tighten the thumbscrew  
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11.3.1.2  
Replacing the UV Lamp  
1. Turn off the analyzer.  
2. Disconnect the UV lamp from its power supply.  
You can find the power supply connector by following the two, white UV Lamp power supply wires  
from the lamp to the power supply.  
3. Loosen, but do not remove the two UV lamp bracket screws, and the large brass thumbscrew located on  
the shutter housing (see Figure 11-2) so that the lamp can be moved.  
NOTE:  
DO NOT grasp the UV lamp by its cap when changing its position (see Figure 11-2).  
Always grasp the main body of the lamp.  
4. Remove the UV Lamp by pulling it straight up.  
5. Insert the new UV lamp into the bracket.  
6. Tighten the two UV lamp bracket screws, but leave the brass thumb screw un-tightened.  
7. Connect the new UV lamp to the power supply.  
8. Turn the instrument on and perform the UV adjustment procedure as defined in section 10.5.1.1 of this  
addendum  
9. Finger tighten the thumbscrew.  
NOTE:  
DO NOT over-tighten the thumbscrew.  
10. Perform a lamp calibration procedure (see Section 6.9.7 of the M100E Manual - P/N 04145) and a zero  
point and span point calibration (see Chapter 7 of the M100E Manual - P/N 04145).  
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11.3.2 REPLACING THE UV FILTER/LENS  
Note:  
Be careful not to leave thumbprints on the interior of the sample chamber. The various oils that make  
up fingerprints fluoresce brightly under UV light and will significantly affect the accuracy of the  
analyzer’s SO2 measurement)  
1. Turn off the instrument’s power and remove the power cord from the instrument.  
2. Unplug the J4 connector from the motherboard to allow tool access.  
3. Remove 4 screws from the lamp housing cover (see Figure 11-2) and remove the cover .  
4. Remove 4 screws from the UV filter retainer.  
Reaction  
Cell  
UV Filter Retainer  
Screws  
Lamp Housing  
UV Filter Retainer  
and Lens Housing  
Lamp Housing  
Cover Screws  
UV Filter  
UV Filter Retainer  
Screws  
Figure 11-2:  
Disassembling the Shutter Assembly  
5. Carefully remove the UV filter.  
6. Install the UV filter with arrow pointing towards reaction cell. Handle carefully and never touch the filter’s  
surface. The UV filter’s wider ( ring ) side should be facing out. Install the UV filter retainer and tighten  
screws.  
7. Install the lamp housing cover and mini-fit connector. Tighten 4 screws.  
8. Re-plug J4 connector into the motherboard.  
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11.3.3 REPLACING THE PMT, HVPS OR TEC  
The PMT should last for the lifetime of the analyzer. However, in some cases, the high voltage power supply  
(HVPS) or the thermo-electric cooler (TEC) may fail. To replace the PMT, the HVPS or the TEC:  
Sync/ Demod PCA  
Gasket  
Leak Check Fitting  
Pre Amp  
Shield  
Pre Amp  
PCA  
High Voltage Power Supply  
(HVPS)  
O-Test LED  
PMT Housing  
PMT  
Insulation Gasket  
PMT Cold Block  
Connector to PMT  
Pre Amp PCA  
PMT Temperature  
Sensor  
12V Power  
Connector  
Light from Reaction  
Chamber shines  
through hole in side  
of Cold Block  
FOV Mask  
Thermo-Electric  
Cooler (TEC)  
PMT Heat  
Exchange Fins  
TEC Driver  
PCA  
Cooling Fan  
Housing  
Figure 11-3:  
PMT Assembly - Exploded View  
1. Power down the analyzer, disconnect the power cord, remove the cover and disconnect all pneumatic  
and electrical connections from the sensor assembly.  
2. Remove the entire sensor module assembly from the analyzer.  
3. Remove the fluorescence cell assembly.  
4. Remove the two connectors on the Sync Demod board  
5. Remove the Sync Demod Board (6 screws with plastic washers). Disconnect the electrical connector  
that leads to the preamp board further inside the housing.  
6. Remove all of the desiccant bags inside the PMT housing.  
7. Along with the plate, slide out the OPTIC TEST LED and the thermistor that measures the PMT  
temperature.  
The thermistor will be coated with a white, thermal conducting paste. Do not contaminate the inside  
of the housing or the PMT tube with this grease.  
8. Unscrew the PMT assembly. It is held to the cold block by two plastic screws.  
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Because the threads of the plastic screws are easily damaged it is highly recommended to use new  
screws when reassembling the unit.  
9. Carefully take out the assembly consisting of the HVPS, the gasket, preamp assembly and the PMT.  
10. Change the PMT or the HVPS or both, clean the PMT glass tube with a clean, anti-static wipe and do  
not touch it after cleaning.  
11. If the cold block or TEC is to be changed disconnect the TEC driver board from the preamplifier board.  
a) Remove the cooler fan duct (4 screws on its side) including the driver board.  
b) Disconnect the driver board from the TEC and set the sub-assembly aside.  
c) Remove the end plate with the cooling fins (4 screws) and slide out the PMT cold block assembly,  
which contains the TEC.  
d) Unscrew the TEC from the cooling fins and the cold block and replace it with a new unit.  
12. Re-assemble the TEC subassembly in reverse order.  
NOTE  
The thermo-electric cooler needs to be mounted flat to the heat sink.  
If there is any significant gap, the TEC might burn out.  
Make sure to apply heat sink paste before mounting it and tighten the screws evenly and cross-wise.  
a) Make sure to use thermal grease between the TEC and the cooling fins as well as between the TEC  
and the cold block.  
b) Align the side opening in the cold block with the hole in the PMT housing where the sample Chamber  
attaches.  
c) Evenly tighten the long mounting screws for good thermal conductivity.  
13. Re-insert the TEC subassembly.  
Make sure that the O-ring is placed properly and the assembly is tightened evenly.  
14. Insert the LED and thermistor into the cold bloc.  
15. Re-insert the PMT/HVPS subassembly.  
Don’t forget the gasket between HVPS and PMT.  
Use new plastic screws to mount the PMT assembly on the PMT cold block.  
16. Insert the new desiccant bags.  
17. Reconnect the cable from the preamp board to the back of the Sync Demod board then carefully  
reattach the Sync Demod board to the housing  
Make sure that the gasket is between the back of the board and the front of the PMT housing.  
Be sure to tighten these screws evenly,  
18. Reconnect the cables and the reaction cell  
19. Replace the sensor assembly into the chassis and fasten with four screws and washers.  
20. Reconnect all electrical and pneumatic connections, leak check the system and power up the analyzer.  
Verify the basic operation of the analyzer using the ETEST and OTEST features (see Section 6.9.5 &  
6.9.6 of the M100E Manual - P/N 04145) or by measuring calibrated zero and span gases.  
21. Perform a PMT Hardware calibration (see Section 11.6.6 of the M100E Manual - P/N 04145)  
22. Perform a zero point and span calibration (See Chapter 7 of the M100E Manual - P/N 04145)  
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11.3.4 M100EU PMT HARDWARE CALIBRATION (FACTORY CAL)  
THIS PROCEDURE SUPERSEDES THE ONE CONTAINED IN SECTION 11.6.3 OF THE M100E MANUAL -  
P/N 04145.  
The sensor module hardware calibration adjusts the slope of the PMT output when the Instruments slope and  
offset values are outside of the acceptable range and all other more obvious causes for this problem have been  
eliminated. Because the PMT HV is remotely controlled and there is no PMT preamp gain adjust, this procedure  
is done automatically through the analyzer software.  
1. Set the instrument reporting range to SNGL & 500 ppb (see Section 6.7.4 of the M100E Manual - P/N  
04145)  
2. Perform a full zero–point calibration using zero air (see Chapter 7 of the M100E Manual - P/N 04145).  
3. Let the instrument stabilize by allowing it to run for one hour.  
4. Adjust the UV Lamp. (See Section 10.5.1.1 of this addendum)  
5. Perform a LAMP CALIBRATION procedure (see Section 6.9.7 of the M100E Manual - P/N 04145).  
6. Feed 400 ppb span gas into the analyzer.  
7. Wait approximately 30-60 minutes (or until the stability reads 0.1 ppb), then under the DIAG menu  
select PMT CALIBRATION.  
8. Either press ENTR if you are using 400 ppb or change the concentration value to what is appropriate  
and then press ENTR.  
9. Select the range that you wish to setup (low or high).  
10. Wait two to three minutes until you get a message that indicates the HV has been adjusted successfully.  
NOTE  
If a reporting range other than 500 ppb is used in this procedure:  
Use a span gas equal to 80% of the reporting range and adjust the PMT to a target NORM PMT value of  
twice the ppb value of the span gas.  
EXAMPLE  
If the reporting range is 800 ppb then set the target concentration to 640 ppb for this procedure.  
11. Wait until the STABIL value is 0.1 ppb.  
12. Scroll to the NORM PMT value and verify that it is approximately twice the ppb value of the span gas.  
13. Perform a zero / span calibration.  
14. Check the slope and offset values and compare them to the values in Table 7-5 of the M100E Manual -  
P/N 04145.  
15. Steps 7 - 14 may have to be performed more than once in order to compensate for any  
over/undershooting of the PMT reading based on the adjusted HVPS drive voltage. Best results occur  
after performing the PMT calibration (steps 7 - 14) at least two consecutive times  
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11.4 TECHNICAL ASSISTANCE  
If this addendum and its trouble-shooting / repair sections do not solve your problems, technical assistance may  
be obtained from:  
Teledyne Instruments  
Advanced Pollution Instrumentation Division  
(TAPI)  
Customer Service  
9480 Carroll Park Drive  
San Diego, California 92121-5201USA  
Toll-free Phone: 800-324-5190  
Phone: 858-657-9800  
Fax: 858-657-9816  
Before you contact Teledyne Instruments’ Customer service, fill out the problem report form in Appendix C,  
which is also available online for electronic submission at http://www.Teledyne-API.com/forms/p-fmapicom.asp.  
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USER NOTES:  
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APPENDIX A - Version Specific Software Documentation  
Model 100EU Instruction Manual  
APPENDIX A - Version Specific Software Documentation  
APPENDIX A-1: MODEL 100EU SOFTWARE MENU TREES  
APPENDIX A-2: MODEL 100EU SETUP VARIABLES AVAILABLE VIA SERIAL I/O  
APPENDIX A-3: MODEL 100EU WARNINGS AND TEST MEASUREMENTS VIA SERIAL I/O  
APPENDIX A-4: MODEL 100EU SIGNAL I/O DEFINITIONS  
APPENDIX A-5: MODEL 100EU IDAS FUNCTIONS  
APPENDIX A-6: MODEL 100EU TERMINAL COMMAND DESIGNATORS  
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Model 100EU Instruction Manual  
APPENDIX A-1: M100E Software Menu Trees, Revision F.0B  
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Model 100E Instruction Manual  
APPENDIX A-1: M100E Software Menu Trees, Revision F.0B  
SAMPLE  
TEST1  
CAL  
MSG1,2  
CLR1,3  
SETUP  
Only appear if  
reporting range  
is set for  
AUTO range  
mode.  
ENTER SETUP PASS: 818  
LOW  
HIGH  
<TST TST>  
(Primary Setup Menu)  
CFG  
DAS  
RANG  
PASS  
CLK  
MORE  
RANGE  
STABIL  
STABIL2  
PRES  
ZERO  
SPAN  
CONC  
(Secondary Setup Menu)  
SAMP FL  
PMT  
NORM PMT  
UV LAMP  
UV STB  
COMM VARS  
DIAG  
LAMP RATIO  
STR. LGT  
DARK PMT  
DARK LMP  
SLOPE  
OFFSET  
HVPS  
RCELL TEMP  
BOX TEMP  
PMT TEMP  
IZS TEMP4  
TEST5  
1 Only appears when warning messages are activated  
(see Section 6.2.2)  
TEST FUNCTIONS  
Viewable by user while  
instrument is in  
SAMPLE Mode  
(see Section 6.2.1)  
2 Press this key to cycle through list of active warning  
messages.  
3 Press this key to clear/erase the warning message  
currently displayed  
4 Only appears if the IZS valve option is installed.  
5 Only appears if the TEST analog output channel is  
activated.  
TIME  
Figure A-1: Basic Sample Display Menu  
05928 Rev F.0B  
DCN 5063  
PG: A-3  
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TELEDYNE INSTRUMENTS  
APPENDIX A-1: M100EU Software Menu Trees, Revision F.0B  
Model 100EU Instruction Manual  
SAMPLE  
TEST1  
CAL  
CALS  
MSG1,2  
CLR1,3  
SETUP  
CALZ  
Only appear if  
reporting range  
is set for  
<TST TST>  
LOW  
HIGH  
LOW  
HIGH  
LOW  
HIGH  
CONC  
AUTO range  
mode.  
RANGE  
STABIL  
STABIL2  
PRES  
ZERO  
SPAN  
CONC  
ZERO  
SPAN  
ENTER SETUP PASS: 818  
SAMP FL  
PMT  
NORM PMT  
UV LAMP  
LAMP RATIO  
STR. LGT  
DRK PMT  
DRK LAMP  
SLOPE  
(Primary Setup Menu)  
CFG  
DAS  
RANG  
PASS  
CLK  
MORE  
OFFSET  
HVPS  
(Secondary Setup Menu)  
RCELL TEMP  
BOX TEMP  
PMT TEMP  
IZS TEMP4  
1
Only appears when warning messages are activated  
(see Section 6.2.2)  
Press this key to cycle through list of active warning  
messages.  
2
3
TEST5  
TEST FUNCTIONS  
Viewable by user while  
COMM VARS  
DIAG  
Press this key to clear/erase the warning message  
instrument is in SAMPLE Mode  
(see Section 6.2.1)  
currently displayed  
4
5
Only appears if the IZS valve option is installed.  
Only appears if the TEST analog output channel is  
activated.  
Figure A-2: Sample Display Menu - Units with Z/S Valve or IZS Option installed  
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TELEDYNE INSTRUMENTS  
Model 100E Instruction Manual  
APPENDIX A-1: M100E Software Menu Trees, Revision F.0B  
SETUP  
ENTER SETUP PASS: 818  
ACAL1  
CFG  
DAS  
RNGE  
PASS  
CLK  
MORE  
ON  
PREV  
NEXT  
Go To iDAS  
MENU TREE  
(Fig. A-8)  
PREV  
NEXT  
MODE  
SET2  
OFF  
 MODEL NAME  
 SERIAL NUMBER  
TIME  
DATE  
SEQ 1)  
SEQ 2)  
SEQ 3)  
 SOFTWARE  
REVISION  
 LIBRARY REVISION  
iCHIP SOFTWARE  
MODE  
IND  
SET  
UNIT  
REVISION1  
HESSEN PROTOCOL  
REVISION1  
 ACTIVE SPECIAL  
SOFTWARE  
PREV  
NEXT  
OPTIONS1  
 CPU TYPE  
SNGL  
AUTO  
 DATE FACTORY  
CONFIGURATION  
SAVED  
DISABLED  
ZERO  
PPB  
PPM  
UGM  
MGM  
ZERO/SPAN  
SPAN  
ENTR  
ENTR  
TIMER ENABLE  
STARTING DATE  
STARTING TIME  
DELTA DAYS  
DELTA TIME  
Go To  
1
2
3
Only appears if a applicable  
option/feature is installed and  
activated.  
Only appears whenever the  
currently displayed sequence  
is not set for DISABLED.  
Only appears when reporting  
range is set to AUTO range  
mode.  
SECONDARY SETUP MENU  
<SET SET>  
LOW3 HIGH3  
EDIT  
(Fig. A-5)  
DURATION  
CALIBRATE  
RANGE TO CAL3  
Figure A-3: Primary Setup Menu (Except iDAS)  
05928 Rev F.0B  
DCN 5063  
PG: A-5  
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TELEDYNE INSTRUMENTS  
APPENDIX A-1: M100EU Software Menu Trees, Revision F.0B  
Model 100EU Instruction Manual  
SAMPLE  
ENTER SETUP PASS: 818  
ACAL1  
CFG  
DAS  
RNGE  
PASS  
CLK  
MORE  
VIEW  
PREV NEXT  
EDIT  
CONC  
PREV NEXT  
INS  
DEL  
EDIT  
PRNT  
PNUMTC  
CALDAT  
DETAIL  
FAST  
YES  
NO  
CONC  
PNUMTC  
CALDAT  
DETAIL  
FAST  
VIEW  
NEXT  
<SET  
SET>  
EDIT  
PRNT  
<PRM PRM> PV10  
PREV  
NX10  
Selects data point to view.  
Creates/changes name  
(see Section 6.11.2.2).  
Cycles through  
lists of  
parameters  
chosen for this  
iDAS channel  
NAME  
EVENT  
PARAMETERS  
REPORT PERIOD  
NUMBER OF RECORDS  
RS-232 REPORT  
CHANNEL ENABLE  
CAL. HOLD  
Sets the  
amount of time  
between each  
report.  
YES  
NO  
PREV NEXT  
PREV NEXT  
INS  
DEL  
EDIT  
PRNT  
Cycles through  
available trigger  
events  
(see Section 6.11.2.3).  
YES  
NO  
ON  
YES  
NO  
OFF  
<SET  
SET>  
EDIT  
PRNT  
Cycles through  
already active  
parameters  
(see Section 6.11.2.4).  
Selects max  
no. of records  
for this channel  
PARAMETER  
PREV NEXT  
SAMPLE MODE  
PRECISION  
INST  
AVG  
MIN  
MAX  
Cycles through available/active parameters  
(see Section 6.12.2.4).  
1
Only appears if Z/S valve or IZS option is installed.  
Figure A-4: Primary Setup Menu (iDAS)  
Pg: A-6  
05928 Rev F.0B  
DCN 5063  
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TELEDYNE INSTRUMENTS  
Model 100E Instruction Manual  
APPENDIX A-1: M100E Software Menu Trees, Revision F.0B  
SAMPLE  
ENTER SETUP PASS: 818  
ACAL1  
CFG  
DAS  
RNGE  
PASS  
VARS  
CLK  
MORE  
DIAG  
COMM  
INET2  
STBL  
Password required  
ID  
COM1 COM23  
PREV NEXT  
EDIT  
Go To INET MENU TREE  
(Fig A-6)  
CONC1  
CONC2  
UVLAMP  
PERIOD  
SAMPLES  
<SET  
SET>  
EDIT  
MODE  
BAUD RATE TEST PORT  
PREV NEXT JUMP  
EDIT PRINT  
PREV NEXT  
PREV NEXT  
TEST  
DAS_HOLD_OFF  
TPC_ENABLE  
RCELL_SET  
IZS_SET  
DYN_ZERO  
DYN_SPAN  
CONC_PRECISION  
CLOCK_ADJ  
QUIET  
COMPUTER  
SECURITY  
HESSEN PROTOCOL  
E, 7, 1  
300  
1200  
2400  
4800  
9600  
19200  
38400  
57600  
Go To  
DIAG MENU TREE  
(Fig A-8)  
RS-485  
MULTIDROP PROTOCOL  
ENABLE MODEM  
ERROR CHECKING  
XON/XOFF HANDSHAKE  
HARDWARE HANDSHAKE  
HARDWARE FIFO  
COMMAND PROMPT  
1
Only appears if Z/S valve or IZS option is installed.  
Only appears when the ENABLE INTERNET mode is  
enabled.  
115200  
2
ON  
3
OFF  
Disappears when INET option is enabled.  
Figure A-5: Secondary Setup Menu (COMM & VARS)  
05928 Rev F.0B  
DCN 5063  
PG: A-7  
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TELEDYNE INSTRUMENTS  
APPENDIX A-1: M100EU Software Menu Trees, Revision F.0B  
Model 100EU Instruction Manual  
SETUP  
ENTER SETUP PASS: 818  
ACAL1  
CFG  
DAS  
RNGE  
PASS  
CLK  
MORE  
DIAG  
COMM  
<SET  
VARS  
ID  
COM1  
PREV NEXT JUMP  
EDIT PRINT  
INET2  
COMM - VARS  
MENU TREE  
DAS_HOLD_OFF  
TPC_ENABLE  
RCELL_SET  
IZS_SET  
SET>  
EDIT  
(Fig A-5)  
DYN_ZERO  
DYN_SPAN  
CONC_PRECISION  
CLOCK_ADJ  
DHCP  
INSTRUMENT IP  
GATEWAY IP  
SUBNET MASK  
TCP PORT3  
HOSTNAME4  
Go To  
DIAG MENU TREE  
(Fig A-8)  
ON  
INSTRUMENT IP5  
GATEWAY IP5  
SUBNET MASK5  
TCP PORT3  
OFF  
EDIT  
1 Only appears if a valve option is installed.  
2 Only appears when the Ethernet card (option 63) is installed.  
3 Although TCP PORT is editable regardless of the DHCP state, do not change the setting for this property unless  
instructed to by Teledyne Instruments Customer Service personnel.  
4 HOST NAME is only editable when DHCP is ON.  
5 INSTRUMENT IP, GATEWAY IP & SUBNET MASK are only editable when DHCP is OFF.  
Figure A-6: Secondary Setup Menu (COMM Menu with Ethernet Card)  
Pg: A-8  
05928 Rev F.0B  
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TELEDYNE INSTRUMENTS  
Model 100E Instruction Manual  
APPENDIX A-1: M100E Software Menu Trees, Revision F.0B  
.
SETUP  
ENTER SETUP PASS: 818  
ACAL1  
CFG  
DAS  
RNGE  
PASS  
CLK  
MORE  
COMM  
VARS  
DIAG  
HESN2  
ID  
COM1 COM2  
See  
See  
Fig A-5  
Fig A-8  
<SET  
SET> EDIT  
See  
Fig A-5  
PMT DET WARNING  
UV LAMP WARNING  
DARK CAL WARNING  
IZS TEMP WARNING  
BOX TEMP WARNING  
PMT TEMP WARNING  
VARIATION RESPONSE MODE GAS LIST STATUS FLAGS  
TYPE 1  
TYPE 2  
RCELL TEMP WARNING  
SAMPLE FLOW WARNING  
SAMPLE PRESS WARNING  
HVPS WARNING  
SYSTEN RESET  
BCC  
TEXT  
CMD  
REAR BOARD NOT DET  
RELAY BOARD  
FRONT PANEL  
PREV NEXT  
INS  
DEL  
EDIT  
PRNT  
ANALOG CAL WARNING  
CANNOT DYN ZERO  
CANNOT DYN SPAN  
INVALID CONC  
ZERO CAL  
Select from list of  
available gases  
(see Section 6.12.4.6).  
YES  
NO  
SPAN CAL  
MANUAL MODE  
GAS TYPE  
GAS ID  
REPORTED  
Set Hessen ID number for  
PPB  
selected gas type  
PPM  
UGM  
MGM  
SO2, 110, REPORTED  
See Table 6-27 for  
Flag Assignments  
(see Section 6.12.4.6).  
1
2
Only appears if a valve is installed.  
ON  
OFF  
Only appears when the HESSEN mode is enabled for  
either COM1 or COM2.  
Figure A-7: Secondary Setup Menu - HESSEN Submenu  
05928 Rev F.0B  
DCN 5063  
PG: A-9  
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TELEDYNE INSTRUMENTS  
APPENDIX A-1: M100EU Software Menu Trees, Revision F.0B  
Model 100EU Instruction Manual  
SAMPLE  
ENTER SETUP PASS: 818  
ACAL1  
DAS  
RNGE  
PASS  
CLK  
MORE  
CFG  
DIAG  
COMM  
VARS  
PREV NEXT  
TEST  
CALIBRATION CALIBRATION CHANNEL  
OUTPUT  
SIGNAL  
I/O  
ANALOG  
OUTPUT CONFIGURATION  
ANALOG I/O  
OPTIC ELECTRICAL  
LAMP  
CALIBRATION  
PRESSURE  
FLOW  
TEST  
TEST  
ENTR  
ENTR  
ENTR  
ENTR  
ENTR  
ENTR  
PREV NEXT  
Start step Test  
Starts Test  
Starts Test  
Starts Test  
Starts Test  
Starts Test  
0) EXT ZERO CAL  
1) EXT SPAN CAL  
2) MAINT MODE  
3) LANG2 SELECT  
PMT  
CALIB’N  
NONE  
PMT READING  
UV READING  
<SET SET>  
4) SAMPLE LED  
5) CAL LED  
6) FAULT LED  
7) AUDIBLE BEEPER  
8) ELEC TEST  
SAMPLE PRESSURE  
SAMPLE FLOW  
RCELL TEMP  
AOUTS CALIBRATED  
CAL  
ENTR  
CHASSIS TEMP  
CONC OUT 1  
CONC OUT 2  
TEST OUTPUT  
9) OPTIC TEST  
IZS TEMP2  
10) PREAMP RANGE HIGH  
11) ST SYSTEM OK  
12) ST CONC VALID  
13) ST HIGH RANGE  
14) ST ZERO CAL  
PMT TEMP  
HVPS VOLTAGE  
15) ST SPAN CAL  
16) ST DIAG MODE  
17) ST LAMP ALARM  
18) ST DARK CAL ALARM  
19) ST FLOW ALARM  
20) ST PRESS ALARM  
21) SR TEMP ALARM  
22) ST HVPS ALARM  
24) ST SYSTEM ON2  
25) RELAY WATCHDOG  
26) RCELL HEATER  
28) IZS HEATER1  
EDIT  
LOW HIGH  
<SET SET>  
REC OFFSET  
Starts Test  
RANGE  
AUTO CAL  
ON  
CALIBRATED  
CAL  
ON  
27) CAL VALVE  
29) SPAN VALVE  
30) H2S VALVE  
31) DARK SHUTTER  
OFF  
30  
52  
INTERNAL ANALOG  
VOLTAGE SIGNALS  
(see Appendix A)  
OFF  
1
0.1V 1V  
5V 10V CURR  
Only relevant to analyzers with IZS options installed  
Figure A-8: Secondary Setup Menu (DIAG)  
Pg: A-10  
05928 Rev F.0B  
DCN 5063  
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TELEDYNE INSTRUMENTS  
APPENDIX A - Version Specific Software Documentation  
Model 100EU Instruction Manual  
APPENDIX A-2: Setup Variables For Serial I/O, Revision F.0B  
Table A-1: M100EU Setup Variables, Revision F.0B  
M100EU Setup Variables for Latest Revision  
Setup Variable  
Numeric  
Units  
Default  
Value  
Value  
Range  
Description  
DAS_HOLD_OFF  
Minutes  
15  
0.5–20  
Duration of DAS hold off period.  
TPC_ENABLE  
RCELL_SET  
— ON,  
OFF, ON  
30–70  
ON enables temperature and  
pressure compensation; OFF  
disables it.  
OFF 4  
ºC  
ºC  
50  
Reaction cell temperature set  
point and warning limits.  
Warnings:  
45–55  
50  
IZS_SET 1  
30–70  
IZS temperature set point and  
warning limits.  
Warnings:  
45–55  
DYN_ZERO  
— OFF  
— OFF  
— 1  
OFF, ON  
OFF, ON  
ON enables contact closure  
dynamic zero; OFF disables it.  
DYN_SPAN  
ON enables contact closure  
dynamic span; OFF disables it.  
CONC_PRECISION  
AUTO,  
Number of digits to display to the  
right of the decimal point for  
concentrations on the display.  
Enclose value in double quotes  
(“) when setting from the RS-232  
interface.  
0,  
1,  
2,  
3,  
4
STABIL_GAS 99  
— SO2  
SO2,  
O2 10  
Selects gas for stability test  
measurement.  
,
CO2 11  
CLOCK_ADJ  
Sec./Day 0  
— ENGL  
-60–60  
Time-of-day clock speed  
adjustment.  
LANGUAGE_SELECT  
ENGL,  
SECD,  
EXTN  
Selects the language to use for  
the user interface. Enclose value  
in double quotes (“) when setting  
from the RS-232 interface.  
MAINT_TIMEOUT  
CONV_TIME  
Hours 2  
0.1–100  
Time until automatically  
switching out of software-  
controlled maintenance mode.  
33 MS  
33 MS,  
66 MS,  
133 MS,  
266 MS,  
533 MS,  
1 SEC,  
2 SEC  
Conversion time for PMT and UV  
detector channels. Enclose value  
in double quotes (“) when setting  
from the RS-232 interface.  
DWELL_TIME  
Seconds 1,  
0.1–10  
Dwell time before taking each  
05928 Rev F.0B  
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TELEDYNE INSTRUMENTS  
Model 100EU Instruction Manual  
APPENDIX A - Version Specific Software Documentation  
0.2 4  
sample.  
FILT_SIZE  
Samples 240,  
1–480  
1–100  
Moving average filter size.  
30 3,  
5 4  
FILT_ASIZE  
FILT_DELTA  
FILT_PCT  
Samples 20,  
PPM 0.02,  
% 5,  
Moving average filter size in  
adaptive mode.  
6 3  
0.001–0.1,  
1–1003  
Absolute change to trigger  
adaptive filter.  
10 3  
10 2  
1–100  
Percent change to trigger  
adaptive filter.  
FILT_DELAY  
FILT_ADAPT  
Seconds 180  
— ON,  
0–300  
Delay before leaving adaptive  
filter mode.  
OFF, ON  
ON enables adaptive filter; OFF  
disables it.  
OFF 4  
NEG_CONC_SUPPRESS  
— OFF  
OFF, ON  
ON pegs negative concentrations  
at zero; OFF permits negative  
concentrations  
DIL_FACTOR  
— 1  
0.1–1000  
0.1–30  
Dilution factor if dilution enabled  
with FACTORY_OPT variable.  
CO2_DWELL 11  
Seconds 1  
— ON  
Dwell time before taking each  
sample.  
CO2_FILT_ADAPT 11  
CO2_FILT_SIZE 11  
CO2_FILT_ASIZE 11  
CO2_FILT_DELTA 11  
CO2_FILT_PCT 11  
CO2_FILT_DELAY 11  
CO2_DIL_FACTOR 11  
ON, OFF  
1–300  
ON enables CO2 adaptive filter;  
OFF disables it.  
Samples 48  
Samples 12  
% 2  
CO2 moving average filter size in  
normal mode.  
1–300  
CO2 moving average filter size in  
adaptive mode.  
0.1–10  
Absolute change in CO2  
concentration to shorten filter.  
% 10  
0.1–100  
0–300  
Relative change in CO2  
concentration to shorten filter.  
Seconds 90  
— 1  
Delay before leaving CO2  
adaptive filter mode.  
0.1–1000  
Dilution factor for CO2. Used only  
if is dilution enabled with  
FACTORY_OPT variable.  
CO2_STD_CELL_TEMP 11  
CO2_STD_CELL_PRESS 11  
O2_DWELL 10  
ºK 323  
1–500  
Standard CO2 cell temperature  
for temperature compensation.  
"Hg 28.50  
Seconds 1  
— ON  
1.00–50.00  
0.1–30  
Standard CO2 cell pressure for  
pressure compensation.  
Dwell time before taking each  
sample.  
O2_FILT_ADAPT 10  
O2_FILT_SIZE 10  
ON, OFF  
1–500  
ON enables O2 adaptive filter;  
OFF disables it.  
Samples 60  
Samples 10  
O2 moving average filter size in  
normal mode.  
O2_FILT_ASIZE 10  
1–500  
O2 moving average filter size in  
adaptive mode.  
A-12  
05928 Rev F.0B  
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APPENDIX A - Version Specific Software Documentation  
Model 100EU Instruction Manual  
O2_FILT_DELTA 10  
O2_FILT_PCT 10  
% 2  
0.1–100  
0.1–100  
0–300  
Absolute change in O2  
concentration to shorten filter.  
% 2  
Relative change in O2  
concentration to shorten filter.  
O2_FILT_DELAY 10  
O2_DIL_FACTOR 10  
Seconds 20  
— 1  
Delay before leaving O2 adaptive  
filter mode.  
0.1–1000  
Dilution factor for O2. Used only if  
is dilution enabled with  
FACTORY_OPT variable.  
O2_CELL_SET 10  
ºC  
50  
30–70  
O2 sensor cell temperature set  
point and warning limits.  
Warnings:  
45–55  
O2_STD_CELL_TEMP 10  
O2_STD_CELL_PRESS 10  
USER_UNITS  
ºK 323  
1–500  
Standard O2 cell temperature for  
temperature compensation.  
"Hg 28.50  
— PPB,  
1.00–50.00  
Standard O2 cell pressure for  
pressure compensation.  
PPB,  
PPM,  
UGM,  
MGM  
Concentration units for user  
interface. Enclose value in  
double quotes (“) when setting  
from the RS-232 interface.  
PPM 3  
PPM,  
MGM 3  
LAMP_DRIVE 6  
LAMP_CAL  
mV  
5000  
3500  
0–5000  
1000–5000  
0.5–1.5  
Lamp power setting.  
mV  
Last calibrated UV lamp reading.  
LAMP_GAIN  
— 0.9  
UV lamp compensation  
attenuation factor.  
BXTEMP_TPC_GAIN  
— 1,  
0–10  
Box temperature compensation  
attenuation factor.  
0 12  
SPRESS_TPC_GAIN  
— 1  
0–10  
Sample pressure compensation  
attenuation factor.  
PMT_TARG_CONC 12  
PMT_UPDATE_PERIOD 12  
PMT_CAL_TIMEOUT 12  
Conc 400  
Seconds 10  
Minutes 5  
0.01–9999.99  
1–100  
Target SO2 concentration during  
PMT calibration.  
Period between HVPS gain  
updates during PMT calibration.  
1–100  
Maximum time for PMT  
calibration to succeed.  
HVPS_ADJUST 12  
HVPS_INTEG 12  
0
0–200  
0–500  
HVPS gain adjustment.  
Gain 5  
Integral coefficient for adjusting  
HVPS gain during PMT  
calibration.  
HVPS_STABIL 12  
— 1  
0.1–10  
HVPS gain must stabilize to  
within this limit for PMT  
calibration to succeed.  
PMT_ADJUST 12  
SLOPE_CONST  
0
0–65535  
0.1–10  
PMT gain adjustment.  
— 8,  
Constant to make visible slope  
close to 1.  
6.25 3  
05928 Rev F.0B  
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APPENDIX A - Version Specific Software Documentation  
DARK_MODE 5  
— AUT  
O
OFF,  
Dark calibration mode. OFF  
disables it; AUTO does it  
periodically; CMND does it only  
when commanded. Enclose  
value in double quotes (“) when  
setting from the RS-232  
interface.  
AUTO,  
CMND  
DARK_ENABLE 1, 3, 4  
DARK_FREQ  
— ON,  
OFF, ON  
0.1–1440  
1–60  
ON enables PMT/UV dark  
calibration; OFF disables it.  
OFF 4  
720 3  
Minutes 30,  
Seconds 10  
Dark calibration period.  
DARK_PRE_DWELL  
Dwell time after closing dark  
shutter or turning off lamp or  
selecting preamp range.  
DARK_POST_DWELL  
Seconds 10,  
1–180  
Dwell time after opening dark  
shutter or turning on lamp.  
30 3  
DARK_SAMPLES  
DARK_FSIZE  
DARK_LIMIT  
Samples 5  
Samples 2  
mV 200,  
1–10  
Number of dark samples to  
average.  
1–100  
0–1000  
Dark offset moving average filter  
size.  
Maximum dark offset allowed.  
400 3  
SO2_TARG_ZERO1  
SO2_SPAN1  
Conc 0  
-100–999.99  
0.01–9999.99  
Target SO2 concentration during  
zero calibration of range 1.  
Conc 400,  
Target SO2 concentration during  
span calibration of range 1.  
4000 3  
SO2_SLOPE1  
PPB/mV,  
PPM/mV 3  
mV 0  
1 0.25–  
4
SO2 slope for range 1.  
SO2_OFFSET1  
-1500–1500  
-100–999.99  
SO2 offset for range 1.  
SO2_TARG_ZERO2  
Conc 0  
Target SO2 concentration during  
zero calibration of range 2.  
SO2_SPAN2  
Conc 400,  
0.01–9999.99  
4
Target SO2 concentration during  
span calibration of range 2.  
4000 3  
SO2_SLOPE2  
PPB/mV,  
PPM/mV 3  
mV 0  
1 0.25–  
SO2 slope for range 2.  
SO2_OFFSET2  
CO2_TARG_SPAN_CONC 11  
-1500–1500  
0.1–1000  
SO2 offset for range 2.  
% 12  
Target CO2 concentration during  
span calibration.  
CO2_SLOPE 11  
CO2_OFFSET 11  
O2_TARG_SPAN_CONC 10  
— 1  
0.5–5  
CO2 slope.  
CO2 offset.  
% 0  
-10–10  
0.1–100  
% 20.95  
Target O2 concentration during  
span calibration.  
O2_SLOPE 10  
O2_OFFSET 10  
RANGE_MODE  
— 1  
0.5–2  
O2 slope.  
O2 offset.  
% 0  
-10–10  
SNGL,  
DUAL,  
AUTO,  
— SNGL  
Range control mode. Enclose  
value in double quotes (“) when  
setting from the RS-232  
interface.  
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APPENDIX A - Version Specific Software Documentation  
Model 100EU Instruction Manual  
AUTO2  
PHYS_RANGE1  
PHYS_RANGE2  
CONC_RANGE1  
CONC_RANGE2  
PPM 2,  
0.1–2500,  
5–10000 3  
0.1–2500,  
5–10000 3  
0.1–50000  
Low pre-amp range.  
500 3  
PPM 22,  
Conc 500,  
Conc 500,  
High pre-amp range.  
5500 3  
5000 3  
5000 3  
D/A concentration range 1.  
D/A concentration range 2.  
0.1–50000  
CO2_RANGE 11  
O2_RANGE 10  
% 15  
% 100  
cc/m  
0.1–500  
0.1–500  
0–6000  
CO2 concentration range.  
O2 concentration range.  
SAMP_FLOW_SET  
700,  
250 1+9  
Sample flow set point for flow  
calculation and warning limits.  
Warnings:  
350–1200,  
175–325 1+9  
SAMP_FLOW_SLOPE  
VAC_SAMP_RATIO 3  
SAMP_PRESS_SET  
— 1  
0.5–1.5  
0.1–2  
Sample flow slope correction  
factor (adjusted flow = measured  
flow x slope).  
— 0.53  
"Hg  
Maximum vacuum pressure /  
sample pressure ratio for valid  
sample flow calculation.  
29.92  
Warnings:  
15–35  
6
0–100  
Sample pressure set point for  
pressure compensation and  
warning limits.  
VAC_PRESS_SET 3  
BOX_SET  
"Hg  
ºC  
0–100  
5–60  
0–40  
Vacuum pressure set point for  
pressure compensation and  
warning limits.  
Warnings:  
3–10  
30  
Box temperature warning limits.  
Set point is not used.  
Warnings:  
8–50  
PMT_SET  
ºC  
7,  
15 12  
PMT temperature set point and  
warning limits.  
Warnings:  
2–12,  
2–20 12  
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Model 100EU Instruction Manual  
APPENDIX A - Version Specific Software Documentation  
RS232_MODE  
BitFlag 0,  
0–65535  
RS-232 COM1 mode flags. Add  
values to combine flags.  
3 5  
1 = quiet mode  
2 = computer mode  
4 = enable security  
8 = enable hardware  
handshaking  
16 = enable Hessen protocol 8  
32 = enable multi-drop  
64 = enable modem  
128 = ignore RS-232 line errors  
256 = disable XON / XOFF  
support  
512 = disable hardware FIFOs  
1024 = enable RS-485 mode  
2048 = even parity, 7 data bits, 1  
stop bit  
4096 = enable command prompt  
8192 = even parity, 8 data bits, 1  
stop bit  
16384 = enable dedicated  
MODBUS ASCII protocol  
32678 = enable dedicated  
MODBUS RTU or TCP protocol  
BAUD_RATE  
— 192  
00  
300,  
RS-232 COM1 baud rate.  
Enclose value in double quotes  
(“) when setting from the RS-232  
interface.  
1200,  
2400,  
4800,  
9600,  
19200,  
38400,  
57600,  
115200  
MODEM_INIT  
“AT Y0 &D0  
Any character  
in the allowed  
character set.  
Up to 100  
characters  
long.  
RS-232 COM1 modem  
&H0 &I0 S0=2  
&B0 &N6 &M0  
E0 Q1 &W0”  
initialization string. Sent verbatim  
plus carriage return to modem on  
power up or manually. Enclose  
value in double quotes (“) when  
setting from the RS-232  
interface.  
RS232_MODE2  
BAUD_RATE2  
BitFlag  
— 192  
0
0–65535  
RS-232 COM2 mode flags.  
(Same settings as  
RS232_MODE.)  
00  
300,  
RS-232 COM2 baud rate.  
Enclose value in double quotes  
(“) when setting from the RS-232  
interface.  
1200,  
2400,  
4800,  
9600,  
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APPENDIX A - Version Specific Software Documentation  
Model 100EU Instruction Manual  
19200,  
38400,  
57600,  
115200  
MODEM_INIT2  
“AT Y0 &D0  
Any character  
in the allowed  
character set.  
Up to 100  
characters  
long.  
RS-232 COM2 modem  
&H0 &I0 S0=2  
&B0 &N6 &M0  
E0 Q1 &W0”  
initialization string. Sent verbatim  
plus carriage return to modem on  
power up or manually. Enclose  
value in double quotes (“) when  
setting from the RS-232  
interface.  
RS232_PASS  
Password  
ID  
940331  
0–999999  
0–9999  
RS-232 log on password.  
MACHINE_ID  
100  
Unique ID number for instrument.  
COMMAND_PROMPT  
— “Cmd>  
Any character  
in the allowed  
character set.  
Up to 100  
characters  
long.  
RS-232 interface command  
prompt. Displayed only if enabled  
with RS232_MODE variable.  
Enclose value in double quotes  
(“) when setting from the RS-232  
interface.  
TEST_CHAN_ID  
— NONE  
NONE,  
Diagnostic analog output ID.  
Enclose value in double quotes  
(“) when setting from the RS-232  
interface.  
PMT  
READING,  
UV READING,  
VACUUM  
PRESSURE3,  
SAMPLE  
PRESSURE,  
SAMPLE  
FLOW,  
RCELL TEMP,  
O2 CELL  
TEMP 10  
,
CHASSIS  
TEMP,  
IZS TEMP 1,  
PMT TEMP,  
HVPS  
VOLTAGE  
REMOTE_CAL_MODE  
— LOW  
LOW,  
HIGH,  
CO2 11  
O2 10  
Range to calibrate during  
contact-closure and Hessen  
calibration. Enclose value in  
double quotes (“) when setting  
from the RS-232 interface.  
,
PASS_ENABLE  
— OFF  
OFF, ON  
1–300  
2–40  
ON enables passwords; OFF  
disables them.  
STABIL_FREQ 99  
STABIL_SAMPLES 99  
RCELL_CYCLE  
Seconds 10  
Samples 25  
Seconds 2  
Stability measurement sampling  
period.  
Number of samples in  
concentration stability reading.  
0.5–30  
Reaction cell temperature control  
cycle period.  
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APPENDIX A - Version Specific Software Documentation  
RCELL_PROP  
RCELL_INTEG  
RCELL_DERIV  
O2_CELL_CYCLE 10  
O2_CELL_PROP 10  
O2_CELL_INTEG 10  
O2_CELL_DERIV 10  
IZS_CYCLE 1  
1/ºC  
0.3 (prop. band 0–10  
= 3.3 ºC)  
Reaction cell temperature PID  
proportional coefficient.  
— 0.005  
— 0.5  
Seconds 10  
— 1  
0–10  
Reaction cell temperature PID  
integral coefficient.  
0–10  
Reaction cell temperature PID  
derivative coefficient.  
0.5–30  
0–10  
O2 cell temperature control cycle  
period.  
O2 cell PID temperature control  
proportional coefficient.  
— 0.1  
— 0  
0–10  
O2 cell PID temperature control  
integral coefficient.  
(disabled)  
0–10  
O2 cell PID temperature control  
derivative coefficient.  
Seconds 2  
1/ºC  
0.5–30  
0–10  
IZS temperature control cycle  
period.  
IZS_PROP 1  
1 (prop. band  
= 1 ºC)  
IZS temperature PID proportional  
coefficient.  
IZS_INTEG 1  
— 0.03  
— 0  
0–10  
IZS temperature PID integral  
coefficient.  
IZS_DERIV 1  
0–10  
IZS temperature PID derivative  
coefficient.  
HVPS_SET  
Volts  
650,  
550 3  
0–2000  
High voltage power supply  
warning limits. Set point is not  
used.  
Warnings:  
400–900,  
400–700 3  
5
MAX_PMT_DETECTOR  
PHOTO_ABS_LIMITS 1  
mV 499  
mV  
0–5000  
0–5000  
PMT detector maximum warning  
limit.  
450  
Pre-amplified UV lamp  
minimum/maximum warning  
limits. Set point is not used.  
Warnings:  
125–625  
3500  
UV_LAMP_LIMITS  
mV  
0–5000  
UV lamp minimum/maximum  
warning limits. Set point is not  
used.  
Warnings:  
1000–4995  
0
ELEC_TEST_LEVEL 12  
OPTIC_TEST_LEVEL 12  
CONC_LIN_ENABLE 3  
0–65535  
0–65535  
OFF, ON  
Electrical test level setting.  
Optical test level setting.  
0
— ON  
ON enables concentration  
linearization; OFF disables it.  
SERIAL_NUMBER  
— “000  
00000 ”  
Any character  
in the allowed  
character set.  
Up to 100  
Unique serial number for  
instrument. Enclose value in  
double quotes (“) when setting  
from the RS-232 interface.  
characters  
long.  
DISP_INTENSITY  
— HIGH  
HIGH,  
MED,  
LOW,  
Front panel display intensity.  
Enclose value in double quotes  
(“) when setting from the RS-232  
interface.  
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APPENDIX A - Version Specific Software Documentation  
Model 100EU Instruction Manual  
DIM  
I2C_RESET_ENABLE  
CLOCK_FORMAT  
— ON  
OFF, ON  
I2C bus automatic reset enable.  
“TIME=%H:%  
M:%S”  
Any character  
in the allowed  
character set.  
Up to 100  
Time-of-day clock format flags.  
Enclose value in double quotes  
(“) when setting from the RS-232  
interface.  
characters  
long.  
“%a” = Abbreviated weekday  
name.  
“%b” = Abbreviated month name.  
“%d” = Day of month as decimal  
number (01 – 31).  
“%H” = Hour in 24-hour format  
(00 – 23).  
“%I” = Hour in 12-hour format (01  
– 12).  
“%j” = Day of year as decimal  
number (001 – 366).  
“%m” = Month as decimal  
number (01 – 12).  
“%M” = Minute as decimal  
number (00 – 59).  
“%p” = A.M./P.M. indicator for  
12-hour clock.  
“%S” = Second as decimal  
number (00 – 59).  
“%w” = Weekday as decimal  
number (0 – 6; Sunday is 0).  
“%y” = Year without century, as  
decimal number (00 – 99).  
“%Y” = Year with century, as  
decimal number.  
“%%” = Percent sign.  
FACTORY_OPT  
BitFlag 0  
0–65535  
Factory option flags. Add values  
to combine flags.  
1 = enable dilution factor  
2 = zero/span valves installed  
4 = IZS installed (implies  
zero/span valves installed)  
8 = low span valve installed  
16 = display units in  
concentration field  
32 = enable software-controlled  
maintenance mode  
64 = enable lamp power analog  
output  
128 = enable switch-controlled  
maintenance mode  
256 = compute only offset during  
zero calibration  
1024 = enable high flow rate  
sensor  
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APPENDIX A - Version Specific Software Documentation  
2048 = enable Internet option  
4096 = enable pre-amplified UV  
lamp monitoring  
1 M100E.  
2 M100ES.  
3 M100E H.  
4 M100EF  
.
5 RP84 00S.  
6
Engineering firmware only.  
7 iChi p option.  
8
Must power-cycle instrument for these options to fully take effect.  
9
Low span option.  
10  
O2 option.  
11 CO 2 option.  
12 M100E U.  
99 Obsolete.  
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APPENDIX A - Version Specific Software Documentation  
Model 100EU Instruction Manual  
APPENDIX A-3: Warnings and Test Functions, Revision F.0B  
Table A-2: M100EU Warning Messages, Revision F.0B  
Name 1  
Message Text  
Description  
WSYSRES SYST  
EM RESET  
Instrument was power-cycled or the CPU  
was reset.  
WDATAINIT  
DATA INITIALIZED  
INITIALIZED  
Data storage was erased.  
WCONFIGINIT CONFIG  
Configuration storage was reset to factory  
configuration or erased.  
WPMT  
PMT DET WARNING  
UV LAMP WARNING  
SAMPLE FLOW WARN  
SAMPLE PRESS WARN  
PMT detector outside of warning limits  
specified by DETECTOR_LIMIT variable.  
WUVLAMP  
WSAMPFLOW  
WSAMPPRESS  
UV lamp reading outside of warning limits  
specified by DETECTOR_LIMIT variable.  
Sample flow outside of warning limits  
specified by SAMP_FLOW_SET variable.  
Sample pressure outside of warning limits  
specified by SAMP_PRESS_SET  
variable.  
WVACPRESS 5  
VACUUM PRESS WARN  
TEMP WARNING  
Vacuum pressure outside of warning limits  
specified by VAC_PRESS_SET variable.  
WBOXTEMP BOX  
WRCELLTEMP RCEL  
Chassis temperature outside of warning  
limits specified by BOX_SET variable.  
L TEMP WARNING  
Reaction cell temperature outside of  
warning limits specified by RCELL_SET  
variable.  
WO2CELLTEMP 10  
O2 CELL TEMP WARN  
O2 sensor cell temperature outside of  
warning limits specified by O2_CELL_SET  
variable.  
WIZSTEMP IZS  
WPMTTEMP  
TEMP WARNING  
PMT TEMP WARNING  
DARK CAL WARNING  
WARNING  
IZS temperature outside of warning limits  
specified by IZS_SET variable.  
PMT temperature outside of warning limits  
specified by PMT_SET variable.  
WDARKCAL 5  
WHVPS HVPS  
Dark offset above limit specified by  
DARK_LIMIT variable.  
High voltage power supply output outside  
of warning limits specified by HVPS_SET  
variable.  
WDYNZERO  
CANNOT DYN ZERO  
CANNOT DYN SPAN  
REAR BOARD NOT DET  
RELAY BOARD WARN  
FRONT PANEL WARN  
ANALOG CAL WARNING  
Contact closure zero calibration failed  
while DYN_ZERO was set to ON.  
WDYNSPAN  
Contact closure span calibration failed  
while DYN_SPAN was set to ON.  
WREARBOARD  
WRELAYBOARD  
WFRONTPANEL  
WANALOGCAL  
Rear board was not detected during  
power up.  
Firmware is unable to communicate with  
the relay board.  
Firmware is unable to communicate with  
the front panel.  
The A/D or at least one D/A channel has  
not been calibrated.  
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Model 100EU Instruction Manual  
APPENDIX A - Version Specific Software Documentation  
Table A-3: M100EU Test Functions, Revision F.0B  
Name 1  
RANGE RANGE=  
Message Text  
500.0 PPB 3  
Description  
D/A range in single or auto-range modes.  
SO2 RNG=500.0 PPB 3, 10, 11  
RANGE1 RANGE1=50  
RANGE2 RANGE2=50  
0.0 PPB 3  
SO2 RN1=500.0 PPB 3, 10, 11  
0.0 PPB 3  
SO2 RN2=500.0 PPB 3, 10, 11  
CO2 RNG=100 PCT 11 CO  
RNG=100 WT% 10  
D/A #1 range in independent range mode.  
D/A #2 range in independent range mode.  
CO2RANGE  
2 range.  
O2RANGE O2  
STABILITY ST  
O2 range.  
ABIL=0.0 PPB 3  
Concentration stability #1. Configure with  
SO2 STB=0.0 PPB 3, 10  
O2 STB=0.0 WT% 10  
CO2 STB=0.0 PCT 11  
ABIL2=0.0 PPB 3  
SETUP-MORE-STBL.  
STABILITY2 6 ST  
Concentration stability #2. Configure with  
SO2 STB2=0.0 PPB 3, 10  
O2 STB2=0.0 WT% 10  
CO2 STB2=0.0 PCT 11  
1.11(0.00) SEC  
SETUP-MORE-STBL.  
RESPONSE 2 RSP=  
Instrument response. Length of each  
signal processing loop. Time in  
parenthesis is standard deviation.  
VACUUM 5 VAC=9.1  
SAMPPRESS  
SAMPFLOW  
IN-HG-A  
PRES=29.9 IN-HG-A  
SAMP FL=700 CC/M  
PMT=762.5 MV  
Vacuum pressure.  
Sample pressure.  
Sample flow rate.  
Raw PMT reading.  
PMTDET  
NORMPMTDET  
NORM PMT=742.9 MV  
PMT reading normalized for temperature,  
pressure, auto-zero offset, but not range.  
UVDET  
STABILITYUV 6  
UV LAMP=3457.6 MV  
UV STB=5.607 MV  
UV lamp reading.  
UV lamp stability reading.  
LAMPRATIO  
LAMP RATIO=100.0 %  
UV lamp ratio of current reading divided  
by calibrated reading.  
STRAYLIGHT  
DARKPMT  
STR. LGT=0.1 PPB  
DRK PMT=19.6 MV  
DRK LMP=42.4 MV  
Stray light offset.  
PMT dark offset.  
UV lamp dark offset.  
DARKLAMP  
SLOPE SLOPE=1.061  
Slope for current range, computed during  
zero/span calibration.  
OFFSET OF  
CO2SLOPE 11 CO2  
CO2OFFSET 11  
O2SLOPE 10 O2  
O2OFFSET 10  
A-22  
FSET=250.0 MV  
SLOPE=1.0000  
Offset for current range, computed during  
zero/span calibration.  
CO2 slope, computed during zero/span  
calibration.  
CO2 OFFSET=0.00 %  
SLOPE=0.980  
CO2 offset, computed during zero/span  
calibration.  
O2 slope, computed during zero/span  
calibration.  
O2 OFFSET=1.79 %  
O2 offset, computed during zero/span  
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APPENDIX A - Version Specific Software Documentation  
Model 100EU Instruction Manual  
calibration.  
HVPS  
HVPS=650 VOLTS  
High voltage power supply output.  
RCELLDUTY  
RCELL ON=0.00 SEC  
Reaction cell temperature control duty  
cycle.  
RCELLTEMP  
O2CELLTEMP 10  
BOXTEMP  
RCELL TEMP=52.1 C  
O2 CELL TEMP=50.2 C  
BOX TEMP=35.5 C  
PMT TEMP=7.0 C  
IZS ON=0.00 SEC  
IZS TEMP=52.2 C  
261.4 PPB  
Reaction cell temperature.  
O2 sensor cell temperature.  
Internal chassis temperature.  
PMT temperature.  
PMTTEMP  
IZSDUTY  
IZS temperature control duty cycle.  
IZS temperature.  
IZSTEMP  
SO2 SO2=  
SO2 concentration for current range.  
CO2 concentration.  
CO2 11 CO2=  
O2 10 O2=0.00  
TESTCHAN T  
0.00 PCT  
WT%  
O2 concentration.  
EST=3721.1 MV  
Value output to TEST_OUTPUT analog  
output, selected with TEST_CHAN_ID  
variable.  
CLOCKTIME T  
IME=10:38:27  
Current instrument time of day clock.  
1
The name is used to request a message via the RS-232 interface, as in “T BOXTEMP”.  
2 Engi neering software.  
3
Current instrument units.  
4 M100E.  
5 M100E H.  
6 M100E U.  
10  
O2 option.  
11 CO 2 option.  
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Model 100EU Instruction Manual  
APPENDIX A - Version Specific Software Documentation  
APPENDIX A-4: M100Eu Signal I/O Definitions, Revision F.0B  
Table A-4: M100EU Signal I/O Definitions, Revision F.0B  
Signal Name  
Bit or Channel  
Number  
Description  
Internal inputs, U7, J108, pins 9–16 = bits 0–7, default I/O address 322 hex  
0–7  
Spare  
AUX board digital outputs, default I2C address 30 hex  
ELEC_TEST 3  
OPTIC_TEST 3  
DARK_TEST 3  
PREAMP_RANGE_HI 3  
0
1
2
3
1 = electrical test on  
0 = off  
1 = optic test on  
0 = off  
1 = dark test on  
0 = off  
1 = select high preamp range  
0 = select low range  
Internal outputs, U8, J108, pins 18 = bits 07, default I/O address 322 hex  
ELEC_TEST  
0
1
2
1 = electrical test on  
0 = off  
OPTIC_TEST  
1 = optic test on  
0 = off  
PREAMP_RANGE_HI  
1 = select high preamp range  
0 = select low range  
Spare  
3–5  
I2C_RESET  
6
7
1 = reset I2C peripherals  
0 = normal  
I2C_DRV_RST  
0 = hardware reset 8584 chip  
1 = normal  
Control inputs, U11, J1004, pins 1–6 = bits 0–5, default I/O address 321 hex  
EXT_ZERO_CAL  
EXT_SPAN_CAL  
EXT_LOW_SPAN 2, 6  
0
1
2
0 = go into zero calibration  
1 = exit zero calibration  
0 = go into span calibration  
1 = exit span calibration  
0 = go into low span calibration  
1 = exit low span calibration  
Spare  
3–5  
6–7  
Always 1  
Control inputs, U14, J1006, pins 16 = bits 05, default I/O address 325 hex  
0–5  
6–7  
Spare  
Always 1  
Control outputs, U17, J1008, pins 18 = bits 07, default I/O address 321 hex  
0–7  
Spare  
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Model 100EU Instruction Manual  
Control outputs, U21, J1008, pins 912 = bits 03, default I/O address 325 hex  
Spare  
Alarm outputs, U21, J1009, pins 112 = bits 47, default I/O address 325 hex  
0–3  
ST_SYSTEM_OK2,  
MB_RELAY_36 9  
4
1 = system OK  
0 = any alarm condition or in diagnostics mode  
Controlled by MODBUS coil register  
Controlled by MODBUS coil register  
Controlled by MODBUS coil register  
Controlled by MODBUS coil register  
MB_RELAY_37 9  
MB_RELAY_38 9  
MB_RELAY_39 9  
5
6
7
A status outputs, U24, J1017, pins 18 = bits 07, default I/O address 323 hex  
ST_SYSTEM_OK  
ST_CONC_VALID  
0
0 = system OK  
1 = any alarm condition  
0 = conc. valid  
1
1 = warnings or other conditions that affect validity of  
concentration  
ST_HIGH_RANGE  
ST_ZERO_CAL  
ST_SPAN_CAL  
2
3
4
0 = high auto-range in use  
1 = low auto-range  
0 = in zero calibration  
1 = not in zero  
0 = in span calibration  
1 = not in span  
ST_DIAG_MODE 5  
0 = in diagnostic mode  
1 = not in diagnostic mode  
ST_LOW_SPAN_CAL 2, 6  
6
0 = in low span calibration  
1 = not in low span  
Spare  
7
B status outputs, U27, J1018, pins 18 = bits 07, default I/O address 324 hex  
ST_LAMP_ALARM  
ST_DARK_CAL_ALARM  
ST_FLOW_ALARM  
ST_PRESS_ALARM  
ST_TEMP_ALARM  
ST_HVPS_ALARM  
ST_CO2_CAL 11  
0
1
2
3
4
5
6
7
0 = lamp intensity low  
1 = lamp intensity OK  
0 = dark cal. warning  
1 = dark cal. OK  
0 = any flow alarm  
1 = all flows OK  
0 = any pressure alarm  
1 = all pressures OK  
0 = any temperature alarm  
1 = all temperatures OK  
0 = HVPS alarm  
1 = HVPS OK  
0 = in CO2 calibration  
1 = not in CO2 calibration  
0 = in O2 calibration  
1 = not in O2 calibration  
ST_O2_CAL 10  
Front panel I2C keyboard, default I2C address 4E hex  
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APPENDIX A - Version Specific Software Documentation  
MAINT_MODE  
LANG2_SELECT  
SAMPLE_LED  
CAL_LED  
5 (input)  
0 = maintenance mode  
1 = normal mode  
0 = select second language  
1 = select first language (English)  
0 = sample LED on  
1 = off  
6 (input)  
8 (output)  
9 (output)  
10 (output)  
14 (output)  
0 = cal. LED on  
1 = off  
FAULT_LED  
0 = fault LED on  
1 = off  
AUDIBLE_BEEPER  
0 = beeper on (for diagnostic testing only)  
1 = off  
Relay board digital output (PCF8575), default I2C address 44 hex  
RELAY_WATCHDOG 0  
RCELL_HEATER  
Alternate between 0 and 1 at least every 5 seconds to keep  
relay board active  
0 = reaction cell heater on  
1 = off  
1
2–3  
Spare  
IZS_HEATER  
4
0 = IZS heater on  
1 = off  
O2_CELL_HEATER 10  
CAL_VALVE  
5
0 = O2 sensor cell heater on  
1 = off  
6
0 = let cal. gas in  
1 = let sample gas in  
0 = let span gas in  
1 = let zero gas in  
0 = let low span gas in  
1 = let sample gas in  
0 = open pressurized span inlet valve  
1 = close valve  
SPAN_VALVE  
7
LOW_SPAN_VALVE 2, 6  
CYLINDER_VALVE 7  
ZERO_VALVE 2  
DARK_SHUTTER  
11–  
8
8
9
0 = let zero gas in  
1 = let sample gas in  
0 = close dark shutter  
1 = open  
10  
15  
Spare  
AUX board analog inputs, default I2C address 30 hex  
PMT_SIGNAL 3  
0 (register number)  
PMT detector  
UVLAMP_SIGNAL 3  
NORM_PMT_SIGNAL 3  
1
2
UV lamp intensity  
Normalized PMT detector  
PMT temperature  
PMT_TEMP 3  
3
HVPS_VOLTAGE 3  
PMT_DARK 3  
LAMP_DARK 3  
4
5
6
HV power supply output  
PMT reading during dark cycles  
Lamp reading during dark cycles  
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Model 100EU Instruction Manual  
AGND_DARK 3  
AGND_LIGHT 3  
VREF_DARK 3  
VREF_LIGHT 3  
7
AGND reading during dark cycles  
AGND reading during light cycles  
VREF4096 reading during dark cycles  
VREF4096 reading during light cycles  
8
9
10  
Rear board primary MUX analog inputs  
PMT detector  
1
HVPS_VOLTAGE  
PMT_TEMP 2  
UVLAMP_SIGNAL  
4
HV power supply output  
PMT temperature  
3
5
UV lamp intensity  
Temperature MUX  
PHOTO_ABS 8  
Pre-amplified UV lamp intensity  
O2 concentration sensor  
Sample pressure  
O2_SENSOR 10  
6
SAMPLE_PRESSURE 7  
TEST_INPUT_8  
8
Diagnostic test input  
4.096V reference from MAX6241  
Sample flow rate  
REF_4096_MV  
9
SAMPLE_FLOW  
10  
VACUUM_PRESSURE 2 10  
CO2_SENSOR 11 11  
Vacuum pressure  
CO2 concentration sensor  
Spare (thermocouple input?)  
DAC MUX  
12–13  
14  
REF_GND 15  
Ground reference  
Rear board temperature MUX analog inputs  
BOX_TEMP  
RCELL_TEMP  
IZS_TEMP 2  
3
0
1
Internal box temperature  
Reaction cell temperature  
IZS temperature  
Spare  
O2_CELL_TEMP 10  
TEMP_INPUT_5  
TEMP_INPUT_6  
7
4
O2 sensor cell temperature  
Diagnostic temperature input  
Diagnostic temperature input  
Spare  
5
6
Rear board DAC MUX analog inputs  
DAC_CHAN_1  
DAC_CHAN_2  
DAC_CHAN_3  
DAC_CHAN_4  
0
1
2
3
DAC channel 0 loopback  
DAC channel 1 loopback  
DAC channel 2 loopback  
DAC channel 3 loopback  
Rear board analog outputs  
CONC_OUT_1,  
DATA_OUT_1  
CONC_OUT_2,  
DATA_OUT_2  
CONC_OUT_3 10,  
DATA_OUT_3  
0
1
2
Concentration output #1 (SO2, range #1),  
Data output #1  
Concentration output #2 (SO2, range #2),  
Data output #2  
Concentration output #3 (CO2 or O2),  
Data output #3  
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APPENDIX A - Version Specific Software Documentation  
TEST_OUTPUT,  
DATA_OUT_4  
3
Test measurement output,  
Data output #4  
I2C analog output (AD5321), default I2C address 18 hex  
LAMP_POWER 5  
1 Optional.  
0
Lamp power (0–5V)  
2 M100E H.  
3 M100E U.  
4 M100EF  
.
5
Engineering firmware only.  
Low span option.  
6
7
Pressurized span option.  
8 M100E.  
9 MODBUS  
option.  
10  
O2 option.  
11 CO 2 option.  
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APPENDIX A - Version Specific Software Documentation  
Model 100EU Instruction Manual  
M100E MODBUS Register Map  
MODBUS  
Description  
Units  
Register Address  
(dec., 0-based)  
MODBUS Floating Point Input Registers  
(32-bit IEEE 754 format; read in high-word, low-word order; read-only)  
0
2 1  
PMT detector reading  
mV  
mV  
mV  
%
Pre-amplified UV lamp intensity reading  
UV lamp intensity reading  
UV lamp ratio of calibrated intensity  
electrical offset  
4
6
8 PMT  
10  
mV  
mV  
UV lamp electrical offset  
2 slope for range #1  
12 SO  
14 SO  
16 SO  
18 SO  
20  
2 slope for range #2  
2 offset for range #1  
mV  
mV  
PPB,  
PPM 2  
PPB  
2 offset for range #2  
SO2 concentration for range #1 during zero/span calibration, just  
before computing new slope and offset  
22  
SO2 concentration for range #2 during zero/span calibration, just  
before computing new slope and offset  
24 SO  
26 SO  
28 12 SO  
30 12 SO  
32 Conc  
34  
2 concentration for range #1  
2 concentration for range #2  
2 concentration for range #1, with O2 correction  
2 concentration for range #2, with O2 correction  
entration stability  
PPB  
PPB  
PPB  
PPB  
PPB  
PPB  
C  
Stray light reading  
36  
Reaction cell temperature  
S temperature  
38 1 IZ  
40 PMT  
42 1, 2 Sample  
44 Sampl  
46 2 Vacuum  
48  
C  
temperature  
C  
flow  
cc/m  
“Hg  
“Hg  
C  
e pressure  
pressure  
Internal box temperature  
High voltage power supply output  
Diagnostic test input (TEST_INPUT_8)  
Diagnostic temperature input (TEMP_INPUT_5)  
Diagnostic temperature input (TEMP_INPUT_6)  
Ground reference (REF_GND)  
4096 mV reference (REF_4096_MV)  
O2 concentration  
50  
Volts  
mV  
C  
52  
54  
56  
C  
58  
mV  
mV  
%
60  
100 10  
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102 10  
O2 concentration during zero/span calibration, just before computing  
%
new slope and offset  
104 10  
106 10  
108 10  
200 11 CO  
202 11  
O2 slope  
%
C  
%
O2 offset  
O2 sensor cell temperature  
2 concentration  
CO2 concentration during zero/span calibration, just before  
computing new slope and offset  
%
204 11 CO  
206 11 CO  
2 slope  
%
2 offset  
MODBUS Floating Point Holding Registers  
(32-bit IEEE 754 format; read/write in high-word, low-word order; read/write)  
0 Maps  
to SO2_SPAN1 variable; target conc. for range #1  
to SO2_SPAN2 variable; target conc. for range #2  
to O2_TARG_SPAN_CONC variable  
Conc. units  
2 Maps  
Conc. units  
100 10 Maps  
200 11 Maps  
%
%
to CO2_TARG_SPAN_CONC variable  
MODBUS Discrete Input Registers  
(single-bit; read-only)  
0
PMT detector warning  
1 UV  
2 Dark  
3 1 IZ  
4 Box  
5 PMT  
6
detector warning  
calibration warning  
S temperature warning  
temperature warning  
temperature warning  
Reaction cell temperature warning  
e flow warning  
7 Sampl  
8 Sampl  
9 2 Vacuum  
10 HVPS  
11  
e pressure warning  
pressure warning  
warning  
System reset warning  
12  
Rear board communication warning  
y board communication warning  
Front panel communication warning  
og calibration warning  
13 Rela  
14  
15 Anal  
16 D  
17 D  
18 Invali  
19  
ynamic zero warning  
ynamic span warning  
d concentration  
In zero calibration mode  
In low span calibration mode  
In span calibration mode  
In multi-point calibration mode  
In Hessen manual mode  
System is OK (same meaning as SYSTEM_OK I/O signal)  
20 2  
21  
22  
23  
24  
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Model 100EU Instruction Manual  
100 10 In  
101 10  
200 11 In  
O2 calibration mode  
O2 cell temperature warning  
CO2 calibration mode  
MODBUS Coil Registers  
(single-bit; read/write)  
0
Maps to relay output signal 36 (MB_RELAY_36 in signal I/O list)  
Maps to relay output signal 37 (MB_RELAY_37 in signal I/O list)  
Maps to relay output signal 38 (MB_RELAY_38 in signal I/O list)  
Maps to relay output signal 39 (MB_RELAY_39 in signal I/O list)  
Triggers zero calibration of range #1 (on enters cal.; off exits cal.)  
Triggers span calibration of range #1 (on enters cal.; off exits cal.)  
Triggers zero calibration of range #2 (on enters cal.; off exits cal.)  
Triggers span calibration of range #2 (on enters cal.; off exits cal.)  
1
2
3
20 13  
21 13  
22 13  
23 13  
1 M100E.  
2 M100E H.  
10  
O2 option.  
11 CO 2 option.  
12 SO 2 with O2 correction option.  
13 Set DYN_ZERO or DYN_SPAN variables to ON to enable calculating new slope or offset. Otherwise a calibration check  
is performed.  
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Model 100EU Instruction Manual  
APPENDIX A - Version Specific Software Documentation  
APPENDIX A-5: M100EU iDAS Functions, Revision F.0B  
Table A-5: M100EU DAS Trigger Events, Revision F.0B  
Name  
Description  
ATIMER  
Automatic timer expired  
EXITZR  
EXITLS 2, 3  
Exit zero calibration mode  
Exit low span calibration mode  
Exit high span calibration mode  
EXITHS  
EXITMP  
Exit multi-point calibration mode  
Exit O2 calibration mode  
EXITO2 10  
SLPCHG  
CO2SLC 11  
O2SLPC 10  
EXITDG  
Slope and offset recalculated  
CO2 slope and offset recalculated  
O2 slope and offset recalculated  
Exit diagnostic mode  
PMTDTW  
UVLMPW  
DRKCLW 1  
RCTMPW  
O2TMPW 10  
IZTMPW 1  
PTEMPW  
SFLOWW  
SPRESW  
VPRESW 2  
BTEMPW  
HVPSW  
PMT detector warning  
UV lamp warning  
Dark calibration warning  
Reaction cell temperature warning  
O2 sensor cell temperature warning  
IZS temperature warning  
PMT temperature warning  
Sample flow warning  
Sample pressure warning  
Vacuum pressure warning  
Box temperature warning  
High voltage power supply warning  
1 M100E.  
2 M100E H.  
3
Low span option.  
10  
O2 option.  
11 CO 2 option.  
Table A-6: M100EU iDAS Functions, Revision F.0B  
Name  
PMTDET  
PHABS 1  
UVDET  
Description  
PMT detector reading  
Units  
mV  
mV  
mV  
%
Pre-amplified UV lamp intensity reading  
UV lamp intensity reading  
LAMPR  
UV lamp ratio of calibrated intensity  
PMT electrical offset  
DRKPMT  
DARKUV  
SLOPE1  
mV  
mV  
UV lamp electrical offset  
SO2 slope for range #1  
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SLOPE2  
SO2 slope for range #2  
OFSET1  
SO2 offset for range #1  
SO2 offset for range #2  
CO2 slope  
mV  
mV  
OFSET2  
CO2SLP 11  
CO2OFS 11  
O2SLPE 10  
O2OFST 10  
ZSCNC1  
CO2 offset  
%
O2 slope  
O2 offset  
%
SO2 concentration for range #1 during zero/span calibration, just  
before computing new slope and offset  
PPB,  
PPM 2  
PPB  
ZSCNC2  
SO2 concentration for range #2 during zero/span calibration, just  
before computing new slope and offset  
CO2ZSC 11  
O2ZSCN 10  
CO2 concentration during zero/span calibration, just before  
computing new slope and offset  
%
%
O2 concentration during zero/span calibration, just before computing  
new slope and offset  
CONC1  
SO2 concentration for range #1  
SO2 concentration for range #2  
SO2 concentration for range #1, with O2 correction  
SO2 concentration for range #2, with O2 correction  
CO2 concentration  
PPB  
PPB  
PPB  
PPB  
%
CONC2  
SO2CR1 12  
SO2CR2 12  
CO2CNC 11  
O2CONC 10  
STABIL  
STABL2 3  
STABUV 3  
STRLGT  
RCTEMP  
O2TEMP 10  
IZSTMP 1  
PMTTMP  
SMPFLW 1, 2  
SMPPRS  
VACUUM 2  
BOXTMP  
HVPS  
O2 concentration  
%
Concentration stability #1  
PPB  
PPB  
mV  
PPB  
C  
Concentration stability #2  
UV lamp stability  
Stray light reading  
Reaction cell temperature  
O2 sensor cell temperature  
IZS temperature  
C  
C  
PMT temperature  
C  
Sample flow  
cc/m  
“Hg  
“Hg  
C  
Sample pressure  
Vacuum pressure  
Internal box temperature  
High voltage power supply output  
Diagnostic test input (TEST_INPUT_8)  
Diagnostic temperature input (TEMP_INPUT_5)  
Diagnostic temperature input (TEMP_INPUT_6)  
Ground reference (REF_GND)  
4096 mV reference (REF_4096_MV)  
AGND reading during dark cycles  
AGND reading during light cycles  
VREF4096 reading during dark cycles  
VREF4096 reading during light cycles  
Volts  
mV  
C  
TEST8  
TEMP5  
TEMP6  
C  
REFGND  
RF4096  
AGNDDK 3  
AGNDLT 3  
RF4VDK 3  
RF4VLT 3  
mV  
mV  
mV  
mV  
mV  
mV  
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APPENDIX A - Version Specific Software Documentation  
1 M100E.  
2 M100E H.  
3 M100E U.  
10  
O2 option.  
11 CO 2 option.  
12 SO 2 with O2 correction option.  
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APPENDIX A - Version Specific Software Documentation  
Model 100EU Instruction Manual  
APPENDIX A-6: Terminal Command Designators, Revision F.0B  
Table A-7: Terminal Command Designators, Revision F.0B  
COMMAND A  
? [ID]  
DDITIONAL COMMAND SYNTAX  
DESCRIPTION  
Display help screen and this list of commands  
Establish connection to instrument  
Terminate connection to instrument  
Display test(s)  
LOGON [ID]  
LOGOFF [ID]  
Password  
SET ALL|name|hexmask  
LIST [ALL|name|hexmask] [NAMES|HEX]  
Name  
Print test(s) to screen  
Print single test  
T [ID]  
CLEAR ALL|name|hexmask  
SET ALL|name|hexmask  
LIST [ALL|name|hexmask] [NAMES|HEX]  
name  
Disable test(s)  
Display warning(s)  
Print warning(s)  
W [ID]  
Clear single warning  
CLEAR ALL|name|hexmask  
ZERO|LOWSPAN|SPAN [1|2]  
ASEQ number  
Clear warning(s)  
Enter calibration mode  
Execute automatic sequence  
Compute new slope/offset  
Exit calibration mode  
C [ID]  
COMPUTE ZERO|SPAN  
EXIT  
ABORT  
Abort calibration sequence  
Print all I/O signals  
LIST  
name[=value]  
Examine or set I/O signal  
Print names of all diagnostic tests  
Execute diagnostic test  
Exit diagnostic test  
LIST NAMES  
ENTER name  
EXIT  
RESET [DATA] [CONFIG] [exitcode] Reset  
PRINT ["name"] [SCRIPT]  
RECORDS ["name"]  
instrument  
D [ID]  
Print iDAS configuration  
Print number of iDAS records  
REPORT ["name"] [RECORDS=number]  
[FROM=<start date>][TO=<end  
date>][VERBOSE|COMPACT|HEX] (Print DAS  
records)(date format: MM/DD/YYYY(or YY)  
[HH:MM:SS]  
Print iDAS records  
CANCEL  
Halt printing iDAS records  
Print setup variables  
LIST  
name[=value [warn_low [warn_high]]]  
Modify variable  
name="value"  
CONFIG  
Modify enumerated variable  
Print instrument configuration  
Enter/exit maintenance mode  
Print current instrument mode  
V [ID]  
MAINT ON|OFF  
MODE  
DASBEGIN [<data channel definitions>]  
DASEND  
Upload iDAS configuration  
CHANNELBEGIN propertylist CHANNELEND  
CHANNELDELETE ["name"]  
Upload single iDAS channel  
Delete iDAS channels  
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APPENDIX A - Version Specific Software Documentation  
The command syntax follows the command type, separated by a space character. Strings in [brackets] are  
optional designators. The following key assignments also apply.  
TERMINAL KEY ASSIGNMENTS  
ESC Abort  
CR (ENTER)  
Ctrl-C  
line  
Execute command  
Switch to computer mode  
COMPUTER MODE KEY ASSIGNMENTS  
LF (line feed)  
Ctrl-T  
Execute command  
Switch to terminal mode  
USER NOTES:  
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MODEL M100EU INSTRUCTION MANUAL  
Appendix B - Spare Parts Lists  
APPENDIX B - SPARE PARTS LISTS  
053600100 – M100EU Spare Parts List  
059460000 – M100EU Recommended Spares Stocking Levels  
05929 Rev A  
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Appendix B - Spare Parts Lists  
MODEL M100EU INSTRUCTION MANUAL  
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M100EU Spare Parts List  
Part Number  
000940100  
Description  
ORIFICE, 3 MIL, IZS  
000940800  
002690000  
002700000  
002720000  
003290000  
005960000  
009690200  
009690300  
013140000  
013210000  
013390000  
013400000  
013420000  
013570000  
014400100  
014750000  
016290000  
016300700  
037860000  
040010000  
040030100  
041710000  
042410200  
042580000  
042900100  
043570000  
043940000  
044670000  
045150100  
045230200  
046250000  
046260000  
048620200  
048830000  
049310100  
050610100  
050610200  
050610300  
050610400  
050630200  
051990000  
052660000  
054340000  
054650000  
055100200  
ORIFICE, 012 MIL, RXCELL  
LENS, UV  
LENS, PMT  
FILTER, PMT OPTICAL, 330 NM  
ASSY, THERMISTOR  
AKIT, EXPEND, 6LBS ACT CHARCOAL  
AKIT, TFE FLTR (FL19) ELEM, 47MM, (100)  
AKIT, TFE FLTR ELEMENT, 47MM, 1UM (30)  
ASSY, COOLER FAN (NOX/SOX)  
ASSY, VACUUM MANIFOLD, M100A/E  
ASSY, KICKER, M100A/E  
PMT, SO2, M100A/E  
ASSY, ROTARY SOLENOID, M100A/E/U/H  
ASSY, THERMISTOR (COOLER)  
OPTION, ZERO AIR SCRUBBER, M100E  
AKIT, EXP KIT, M100A/M100E, IZS  
WINDOW, SAMPLE FILTER, 47MM (KB)  
ASSY, SAMPLE FILTER, 47MM, ANG BKT (KB)  
ORING, TFE RETAINER, SAMPLE FILTER  
ASSY, FAN REAR PANEL, E SERIES  
PCA, FLOW/PRESSURE  
ASSY, CPU, CONFIGURATION, "E" SERIES *  
ASSY, PUMP, INT, E SERIES  
PCA, KEYBOARD, E-SERIES, W/V-DETECT  
PROGRAMMED FLASH, E SERIES  
AKIT, EXPENDABLES, M100E/M101E/M108E  
PCA, INTERFACE, ETHERNET, E-SERIES  
PCA, ANALOG OUTPUT ISOLATOR, E SERIES  
MANUAL, OPERATION, M100E  
PCA, RELAY CARD W/RELAYS, E SERIES, S/N'S >455  
ASSY, RXCELL HEATER/FUSE, M100E  
ASSY, THERMISTOR, RXCELL, M100E (KB)  
PCA, SERIAL INTERFACE, w/ MD, E SERIES  
AKIT, EXP KIT, EXHAUST CLNSR, SILCA GEL  
PCA, TEC CONTROL, E SERIES  
CONFIGURATION PLUGS, 115V/60Hz  
CONFIGURATION PLUGS, 115V/50Hz  
CONFIGURATION PLUGS, 220-240V/50Hz  
CONFIGURATION PLUGS, 220-240V/60Hz  
PCA, REF DET w/OP20, DUAL OUT, M100EU  
ASSY, SCRUBBER, INLINE EXHAUST, DISPOS  
ASSY, HEATER/THERMISTOR (IZS)  
PCA, PRECISION INT. PMT PREAMP, M100EU  
PCA, SYNC/DEMOD, M100EU  
OPTION, PUMP ASSY, 240V *  
0536001F - M100EU SPL (DCN5013)  
Page 1 of 2  
09/17/08  
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M100EU Spare Parts List  
Part Number  
055560000  
Description  
ASSY, VALVE, VA59 W/DIODE, 5" LEADS  
055920000  
055930100  
056080000  
058020100  
059200000  
061930200  
CN0000458  
CN0000520  
ASSY, SO2 SENSOR, M100EU (KB)  
DOC, W/SOFTWARE, M100EU  
ASSY, HVPS, M100EU PMT  
PCA, E-SERIES MOTHERBOARD, GEN 5  
ASSY, UV LAMP, M100EU  
PCA, 100EU, UV LAMP DRIVER, GEN-2  
CONNECTOR, REAR PANEL, 12 PIN  
CONNECTOR, REAR PANEL, 10 PIN  
DS0000025  
FL0000001  
FL0000003  
FM0000004  
HW0000005  
HW0000020  
HW0000036  
KIT000093  
KIT000095  
KIT000219  
KIT000253  
KIT000254  
OP0000031  
OR0000001  
OR0000004  
OR0000006  
OR0000007  
OR0000015  
OR0000016  
OR0000025  
OR0000027  
OR0000039  
OR0000046  
OR0000083  
OR0000084  
OR0000094  
PU0000022  
RL0000015  
SW0000051  
SW0000059  
WR0000008  
DISPLAY, E SERIES (KB)  
FILTER, SS  
FILTER, DFU  
FLOWMETER (KB)  
FOOT, CHASSIS  
SPRING  
TFE TAPE, 1/4" (48 FT/ROLL)  
REPLACEMENT KIT, 214NM FLTR (03187)  
AKIT, REPLACEMENT COOLER, A/E SERIES  
KIT, 4-20MA CURRENT OUTPUT (E SERIES)  
KIT, SPARE PS37, E SERIES  
KIT, SPARE PS38, E SERIES  
WINDOW, QUARTZ, REF DETECTOR  
ORING, FLOW CONTROL/IZS  
ORING, OPTIC/CELL, CELL/TRAP  
ORING, CELL/PMT  
ORING, PMT/BARREL/CELL  
ORING, PMT FILTER  
ORING, UV LENS  
ORING, ZERO AIR SCRUBBER  
ORING, COLD BLOCK/PMT HOUSING & HEATSINK  
ORING, QUARTZ WINDOW/REF DETECTOR  
ORING, PERMEATION OVEN  
ORING, PMT SIGNAL & OPTIC LED  
ORING, UV FILTER  
ORING, SAMPLE FILTER  
KIT, PUMP REBUILD  
RELAY, DPDT, (KB)  
SWITCH, POWER, CIRC BR  
PRESSURE SENSOR, 0-15 PSIA, ALL SEN  
POWER CORD, 10A  
0536001F - M100EU SPL (DCN5013)  
Page 2 of 2  
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Teledyne Advanced Pollution Instrumentation  
RECOMMENDED SPARE PARTS STOCKING LEVELS  
Model 100EU  
UNITS  
PART NO  
DESCRIPTION  
1
2-5 6-10 11-20 21-30  
000940800  
002720000  
013140000  
013400000  
014080100  
014610000  
040010000  
040030100  
041710000  
042410400  
042580000  
045230200  
050630200  
054340000  
054650000  
054710000  
055120200  
057020100  
DS0000025  
Orifice, 12 Mil  
Filter, 330 NM  
Cooler Fan  
PMT, SO2  
Assy, HVPS, NOX/SOX  
1
2
1
2
4
2
4
1
4
3
4
1
1
1
4
4
1
1
1
2
2
1
1
4
2
2
1
1
1
Kit, Replacement Cooler  
Assy, Fan, Rear Panel, E Series  
PCA, Press Sensors (1X), Flow, E Series  
CPU, Configuration E Series  
Assy, Pump, Internal, E Series, 115/240V  
PCA, Keyboard  
PCA, Relay Board w/Diode Protection  
PCA, M100EU UV Ref Det, Dual Out  
PCA, Prescision INT, PMT Preamp  
PCA, Sync/Demod  
1
1
1
2
2
4
4
1
1
1
1
1
1
4
2
1
1
1
Assy, UV Lamp, M100E  
1
1
2
1
PCA, Bursting UV Driver, M100EU  
PCA, Motherboard, E Series, GEN 4  
Display  
IZS/ZS Option  
055560000  
ASSY, VALVE, VA59 W/DIODE, E-SERIES  
1
2
2
4
05946A  
3/13/2007  
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THIS PAGE IS INTENTIONALLY LEFT BLANK  
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Model 100EU Instruction Manual Addendum  
Appendix C – Warranty Repair Questionnaire  
Appendix C – Warranty Repair Questionnaire  
CUSTOMER: _________________________________ PHONE: __________________________________________________  
CONTACT NAME: ____________________________ FAX NO. __________________________________________________  
SITE ADDRESS: _________________________________________________________________________________________  
MODEL 100EU SERIAL NO.: ___________________ FIRMWARE REVISION: _____________________________________  
1. ARE THERE ANY FAILURE MESSAGES? _______________________________________________________________  
________________________________________________________________________________________________________  
________________________________________________________________________________________________________  
2. PLEASE COMPLETE THE FOLLOWING TABLE: (NOTE: DEPENDING ON OPTIONS INSTALLED, NOT ALL TEST  
PARAMETERS BELOW WILL BE AVAILABLE IN YOUR INSTRUMENT)  
Parameter  
Recorded Value  
PPB/PPM  
Acceptable Value  
*IF OPTION IS INSTALLED  
RANGE  
STABIL  
STABIL2  
PPB  
PPB  
IN-HG-A  
cm3/MIN  
mV  
0.3 PPB WITH ZERO AIR  
<= 1 PPB WITH ZERO AIR  
AMBIENT (- 2) IN-HG-A  
650 ± 10%  
PRESS  
SAMPLE FLOW  
PMT SIGNAL WITH  
ZERO AIR  
-20 TO 150 mV  
PMT SIGNAL AT  
SPAN GAS CONC  
NORM PMT AT SPAN  
GAS CONC  
UV LAMP  
mV  
PPB/PPM  
mV  
0-5000 mV  
0-20000 PPB  
0-5000 mV  
PPB/PPM  
0-20000 PPB  
2000 TO 4000 mV  
< 15mV  
mV  
mV  
UV STAB  
LAMP RATIO  
STR. LGT  
DARK PMT  
DARK LAMP  
SLOPE  
mV  
PPB  
mV  
mV  
30 TO 120%  
100 PPB/ ZERO AIR  
200-325  
-50 TO 200 mV  
1.0 ± 0.5  
OFFSET  
mV  
< 250 mV  
HVPS  
V
400 – 800  
RCELL TEMP  
BOX TEMP  
PMT TEMP  
IZS TEMP*  
ETEST  
ºC  
ºC  
ºC  
ºC  
mV  
mV  
50ºC ± 1  
AMBIENT ± 5  
9.5ºC ± 2º CONSTANT  
50ºC ± 1  
2000 mV ± 500  
2000 mV ± 1000  
OTEST  
Values are in the Signal I/O  
REF_4096_MV  
REF_GND  
mV  
mV  
4096mv±2mv and Must be Stable  
0± 0.5 and Must be Stable  
05930 Rev A  
C-1  
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Model 100EU Instruction Manual Addendum  
Appendix C – Warranty Repair Questionnaire  
3. WHAT IS THE SAMPLE FLOW & SAMPLE PRESSURE W/SAMPLE INLET ON REAR OF MACHINE CAPPED?  
SAMPLE FLOW - CC SAMPLE PRESS - IN-HG-A  
4. WHAT ARE THE FAILURE SYMPTOMS? ______________________________________________________________  
_______________________________________________________________________________________________________  
5. IF POSSIBLE, PLEASE INCLUDE A PORTION OF A STRIP CHART PERTAINING TO THE PROBLEM. CIRCLE  
PERTINENT DATA.  
6. THANK YOU FOR PROVIDING THIS INFORMATION. YOUR ASSISTANCE ENABLES TELEDYNE API TO  
RESPOND FASTER TO THE PROBLEM THAT YOU ARE ENCOUNTERING.  
C-2  
05930 Rev. A  
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M100EU Manual Addendum  
Appendix D – Schematic List  
Appendix D – Schematic List  
Table D-1: List of Included Electronic Schematics  
DOCUMENT TITLE  
DOCUMENT #  
0506402  
05435  
M100EU UV Ref PCA  
M100EU Internal PMT Preamp PCA  
M100EU Sync/Demod PCA  
05466  
0591602  
M100EU Bursting UV Lamp Driver  
Other schematics can be found in the M100E Operators Manual (04145).  
05931 Rev A  
D-1  
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Appendix D – Schematic List  
M100EU Manual Addendum  
D-2  
05931 Rev. A  
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