Section 8. Operation
399
•
positive excitation polarity with positive differential input polarity
•
negative excitation polarity with positive differential input polarity
•
positive excitation polarity with negative differential input polarity
•
positive excitation polarity then negative excitation differential input
polarity
For ratiometric single-ended measurements, such as a
BrHalf()
, setting
RevEx
=
True
results in two measurements of opposite excitation polarity that are
subtracted and divided by 2 for offset voltage reduction. For
RevEx
=
False
for
ratiometric single-ended measurements, an offset-voltage measurement is made
during the self-calibration.
When analog voltage signals are measured in series by a single measurement
instruction, such as occurs when
VoltSE()
is programmed with
Reps
=
2
or more,
measurements on subsequent terminals may be affected by an offset, the
magnitude of which is a function of the voltage from the previous measurement.
While this offset is usually small and negligible when measuring large signals,
significant error, or
NAN
, can occur when measuring very small signals. This
effect is caused by dielectric absorption of the integrator capacitor and cannot be
overcome by circuit design. Remedies include the following:
•
Program longer settling times
•
Use an individual instruction for each input terminal, the effect of which
is to reset the integrator circuit prior to filtering.
•
Avoid preceding a very small voltage input with a very large voltage
input in a measurement sequence if a single measurement instruction
must be used.
TABLE: Offset Voltage Compensation Options
(p. 399)
lists some of the tools
available to minimize the effects of offset voltages.
Содержание CR6 Series
Страница 2: ......
Страница 4: ......
Страница 6: ......
Страница 32: ......
Страница 36: ......
Страница 38: ......
Страница 76: ...Section 5 Overview 76 FIGURE 20 Half Bridge Wiring Example Wind Vane Potentiometer ...
Страница 80: ...Section 5 Overview 80 FIGURE 23 Pulse Input Wiring Example Anemometer ...
Страница 136: ......
Страница 251: ...Section 7 Installation 251 FIGURE 46 Running Average Frequency Response FIGURE 47 Running Average Signal Attenuation ...
Страница 454: ...Section 8 Operation 454 FIGURE 104 Narrow Sweep High Noise ...
Страница 459: ...Section 8 Operation 459 FIGURE 106 Vibrating Wire Sensor Calibration Report ...
Страница 535: ...Section 8 Operation 535 8 11 2 Data Display FIGURE 121 CR1000KD Displaying Data ...
Страница 537: ...Section 8 Operation 537 FIGURE 123 CR1000KD Real Time Custom ...
Страница 538: ...Section 8 Operation 538 8 11 2 3 Final Storage Data FIGURE 124 CR1000KD Final Storage Data ...
Страница 539: ...Section 8 Operation 539 8 11 3 Run Stop Program FIGURE 125 CR1000KD Run Stop Program ...
Страница 541: ...Section 8 Operation 541 FIGURE 127 CR1000KD File Edit ...
Страница 542: ...Section 8 Operation 542 8 11 5 PCCard Memory Card Management FIGURE 128 CR1000KD PCCard Memory Card Management ...
Страница 546: ......
Страница 549: ...Section 9 Maintenance Details 549 FIGURE 133 Separate Back Shell from Module FIGURE 134 Disconnect Battery Connector ...
Страница 552: ......
Страница 610: ...Section 11 Glossary 610 FIGURE 137 Relationships of Accuracy Precision and Resolution ...
Страница 612: ......
Страница 648: ......
Страница 650: ......
Страница 688: ......
Страница 689: ......