Controller / User Interface | 4-47
Manual Zero/Span
The Manual Zero and Manual Span do not activate the solenoid valves.
The gases must be introduced manually into the analyzer and allowed to
flow through the sample system until a stable reading is displayed. The
time required for Calibration gas to reach the analyzer and for a stable
reading to be achieved and displayed is dependent upon the volume of
the sample system and Calibration gas flow rate. The gas flow rate, tem-
perature, and pressure should be as close as possible to the normal operat-
ing conditions.
The Calibration gas mixture component concentrations must be en-
tered before performing the Manual Span.
Manual Zero
See “Manually Zeroing the Analyzer” and “Setting the Zero Gas Flow
Rate” in Chapter 3 for information about how to perform a Manual Zero
on the analyzer.
Manual Span
Although it is unnecessary from an analytical perspective to calibrate the
span of the analyzer on a regular basis, since the response factors to the
various gases do not change, calibration may be necessary to demonstrate
the response of the analyzer to Calibration gas. There may also be occa-
sions where the SO
2
cross-talk needs to be checked after changes to the
optical system have been made. For these purposes, a Calibration gas port
has been provided.
The calibration gas follows the same path that the Zero gas is introduced.
The flow rate of these gases can be adjusted using the flow controlling
rotameter.
To achieve a good result, the following factors are important when run-
ning calibration gases:
• A “good zero” has been performed prior to introducing calibration
gas.
• The calibration gas must reach the Measuring Cell without contamina-
tion or residual sulfur in the system.
• The gas introduced must be at approximately the same temperature as
the sample gas.
NOTE
Содержание 920
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Страница 60: ...2 32 Model 920 Multi Gas Analyzer ATEX and IECEx certified Model 920 Analyzers are marked with this label ...
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Страница 173: ...Controller User Interface 4 65 Figure 4 8 Customer signal connections ...
Страница 187: ...Maintenance and Troubleshooting 5 11 Figure 5 1 Measuring Cell assembly ...
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Страница 226: ...5 50 Model 920 Multi Gas Analyzer Figure 5 8 Flameproof Heater Seal Assembly layout WX 14324 1A ...
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Страница 262: ...A 2 Model 920 Multi Gas Analyzer Ribbon Cable Interconnect WX 102836 ...
Страница 263: ...Appendix A Drawings A 3 GP Lower Enclosure to Electronics Wiring CE Analyzers WX 102810 ...
Страница 264: ...A 4 Model 920 Multi Gas Analyzer Heater and Sensor Wiring GP Div 2 Analyzers WX 102851 ...
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Страница 266: ...A 6 Model 920 Multi Gas Analyzer Lower Cabinet Wiring CE GP Analyzers 120V 100 1341 3 ...
Страница 267: ...Appendix A Drawings A 7 Lower Cabinet Wiring CE GP Analyzers 240V 100 1342 3 ...
Страница 268: ...A 8 Model 920 Multi Gas Analyzer Signal Wiring PD GP Div 2 CE Zone 1 Analyzers WX 102815 ...
Страница 270: ...A 10 Model 920 Multi Gas Analyzer 15V and 5V Power Supply DC Wiring GP Div 2 CE Zone 1 Analyzers WX 102811 ...
Страница 271: ...Appendix A Drawings A 11 24V Power Supply DC Wiring CE Zone 1 Analyzers WX 102812 ...
Страница 272: ...A 12 Model 920 Multi Gas Analyzer RS 232 Communications Cable Wiring 300 9480 ...
Страница 273: ...Appendix A Drawings A 13 RS 232 RS 485 Module Wiring CE Zone 1 GP Div 2 Analyzers 100 2185 ...
Страница 274: ...A 14 Model 920 Multi Gas Analyzer Microcontroller Board 100 0117 ...
Страница 275: ...Appendix A Drawings A 15 Host Controller Board Display Interface 100 0138 ...
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