Programming the VT1422A for Data Acquisition and Control 153
Chapter 4
Compensating for System Offsets
System Wiring Offsets
The VT1422A can compensate for offsets in the system’s field wiring.
Apply shorts to channels at the Unit-Under-Test (UUT) end of the field
wiring and then execute the CAL:TARE (@<
ch_list
>) command.
The instrument will measure the voltage at each channel in <
ch_list
> and
save those values in RAM as channel tare constants.
Important Note for
Thermocouples
•
CAL:TARE must not used on field wiring that is made up of
thermocouple wire. The voltage that a thermocouple wire pair
generates cannot be removed by introducing a short anywhere
between its junction and its connection to an isothermal panel (either
the VT1422A’s Terminal Module or a remote isothermal reference
block). Thermal voltage is generated along the entire length of a
thermocouple pair where there is any temperature gradient along that
length. To CAL:TARE thermocouple wire this way would introduce
an unwanted offset in the voltage/temperature relationship for that
thermocouple. If a thermocouple wire pair is CAL:TARE’d
inadvertently, see “Resetting CAL:TARE” on page 154.
•
CAL:TARE should be used to compensate wiring offsets (copper wire,
not thermocouple wire) between the VT1422A and a remote
thermocouple reference block. Disconnect the thermocouples and
introduce copper shorting wires between each channel’s HI and LO,
then execute CAL:TARE for these channels.
Residual Sensor Offsets
To remove offsets like those in an unstrained strain gage bridge, execute the
CAL:TARE command on those channels. The module will then measure the
offsets and as in the wiring case above, remove these offsets from future
measurements. In the strain gage case, this "balances the bridge" so all
measurements have the initial unstrained offset removed to allow the most
accurate high-speed measurements possible.
Operation
After CAL:TARE <
ch_list
> measures and stores the offset voltages, it then
performs the equivalent of a *CAL? operation. This operation uses the tare
constants to set a DAC which will remove each channel offset as "seen" by
the module’s A/D converter.
The absolute voltage level that CAL:TARE can remove is dependent on the
A/D range. CAL:TARE will choose the lowest range that can handle the
existing offset voltage. The range that CAL:TARE chooses will become the
lowest usable range (range floor) for that channel. For any channel that has
been "CAL:TARE’d" Autorange will not go below that range floor and
selecting a manual range below the range floor will return an Overload value
(see the table “Maximum CAL:TARE Offsets” on page 154).
Содержание VT1422A
Страница 2: ...This page is blank...
Страница 8: ...8 Notes...
Страница 22: ...22 Support...
Страница 57: ...Field Wiring 57 Chapter 2...
Страница 58: ...58 Field Wiring Chapter 2...
Страница 96: ...94 Programming the VT1422A VT1529A B for Remote Strain Measurement Chapter 3...
Страница 162: ...160 Programming the VT1422A for Data Acquisition and Control Chapter 4...
Страница 224: ...222 Creating and Running Algorithms Chapter 6...
Страница 419: ...VT1422A Command Reference 417 Chapter 7 Notes...
Страница 420: ...418 VT1422A Command Reference Chapter 7 Notes...
Страница 425: ...Specifications 423 Appendix A Thermocouple Type E 200 800 C SCPs VT1501 02 03A...
Страница 426: ...424 Specifications Appendix A Thermocouple Type E 200 800 C SCPs VT1508 09A...
Страница 427: ...Specifications 425 Appendix A Thermocouple Type E 0 800 C SCPs VT1501A 02A 03A...
Страница 428: ...426 Specifications Appendix A Thermocouple Type E 0 800 C SCPs VT1508A 09A...
Страница 429: ...Specifications 427 Appendix A Thermocouple Type E Extended SCPs VT1501A 02A 03A...
Страница 430: ...428 Specifications Appendix A Thermocouple Type E Extended SCPs VT1508A 09A...
Страница 431: ...Specifications 429 Appendix A Thermocouple Type J SCPs VT1501A 02A 03A...
Страница 432: ...430 Specifications Appendix A Thermocouple Type J SCPs VT1508A 09A...
Страница 433: ...Specifications 431 Appendix A Thermocouple Type K SCPs VT1501A 02A 03A...
Страница 434: ...432 Specifications Appendix A Thermocouple Type R SCPs VT1501A 02A 03A...
Страница 435: ...Specifications 433 Appendix A Thermocouple Type R SCPs VT1508A 09A...
Страница 436: ...434 Specifications Appendix A Thermocouple Type S SCPs VT1501A 02A 03A...
Страница 437: ...Specifications 435 Appendix A Thermocouple Type S SCPs VT1508A 09A...
Страница 438: ...436 Specifications Appendix A Thermocouple Type T SCPs VT1501A 02A 03A...
Страница 439: ...Specifications 437 Appendix A Thermocouple Type T SCPs VT1508A 09A...
Страница 440: ...438 Specifications Appendix A 5k Thermistor Reference SCPs VT1501A 02A 03A...
Страница 441: ...Specifications 439 Appendix A 5k Thermistor Reference SCPs VT1508A 09A...
Страница 442: ...440 Specifications Appendix A RTD Reference SCPs VT1501A 02A 03A...
Страница 443: ...Specifications 441 Appendix A RTD SCPs VT1501A 02A 03A...
Страница 444: ...442 Specifications Appendix A RTD SCPs VT1508A 09A...
Страница 445: ...Specifications 443 Appendix A 2250 Thermistor SCPs VT1501A 02A 03A...
Страница 446: ...444 Specifications Appendix A 2250 Thermistor SCPs VT1508A 09A...
Страница 447: ...Specifications 445 Appendix A 5k Thermistor SCPs VT1501A 02A 03A...
Страница 448: ...446 Specifications Appendix A 5k Thermistor SCPs VT1508A 09A...
Страница 449: ...Specifications 447 Appendix A 10k Thermistor SCPs VT1501A 02A 03A...
Страница 450: ...448 Specifications Appendix A 10k Thermistor SCPs VT1508A 09A...
Страница 454: ...452 Specifications Appendix A...
Страница 480: ...478 VT1529A B Verification Calibration Appendix C...
Страница 484: ...482 Glossary Appendix D Notes...