Section 7. Installation
284
•
Offset
•
Two-point slope and offset
•
Two-point slope only
•
Zero basis (designed for use with static vibrating wire measurements)
These demonstration programs are provided as an aid in becoming familiar with
the
FieldCal()
features at a test bench without actual sensors. For the purpose of
the demonstration, sensor signals are simulated by CR6 terminals configured for
excitation. To reset tests, use the support software
File Control
(p. 583)
menu
commands to delete .cal files, and then send the demonstration program again to
the CR6. Term equivalents are as follows:
"offset" = "y
-
intercept" = "zero"
"multiplier" = "slope" = "gain"
7.7.12.5.1 FieldCal() Zero or Tare (Opt 0) Example
Most CRBasic measurement instructions have a
multiplier
and
offset
parameter.
FieldCal()
Option 0
adjusts the
offset
argument such that the output of the sensor
being calibrated is set to the value of the
FieldCal()
KnownVar
parameter, which
is set to
0
. Subsequent measurements have the same offset subtracted.
Option 0
does not affect the
multiplier
argument.
Example Case: A sensor measures the relative humidity (RH) of air. Multiplier
is known to be stable, but sensor offset drifts and requires regular zeroing in a
desiccated chamber. The following procedure zeros the RH sensor to obtain the
calibration report shown. To step through the example, use the CR1000KD
Keyboard/Display or software
numeric monitor
(p. 592)
to change variable values as
directed.
Calibration Report for Relative Humidity Sensor
CRBasic Variable
At Deployment
At 30-Day Service
SimulatedRHSignal
output
100
mV
105
mV
KnownRH
(desiccated
chamber)
0
%
0
%
RHMultiplier
0.05
% / mV
0.05
% / mV
RHOffset
-5
%
-5.25
%
RH
0
%
0
%
1. Send CRBasic example
FieldCal() Zero
(p. 285)
to the CR6. A terminal
configured for excitation has been programmed to simulate a sensor output.
2. To place the simulated RH sensor in a simulated-calibration condition (in the
field it would be placed in a desiccated chamber), place a jumper wire between
Содержание CR6 Series
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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 ...
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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 ...
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Страница 549: ...Section 9 Maintenance Details 549 FIGURE 133 Separate Back Shell from Module FIGURE 134 Disconnect Battery Connector ...
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Страница 610: ...Section 11 Glossary 610 FIGURE 137 Relationships of Accuracy Precision and Resolution ...
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