Section 7. Installation
234
3. To start the 'calibration', set variable CalMode
=
1. When CalMode
increments to 6, zero calibration is complete. Calibrated RHOffset will equal -
5% at this stage of this example.
4. To continue this example and simulate a zero-drift condition, set variable
SimulatedRHSignal
=
105.
5. To simulate conditions for a 30-day-service calibration, again with desiccated
chamber conditions, keep variable KnownRH
=
0.0. Set variable CalMode
=
1 to start calibration. When CalMode increments to 6, simulated 30-day-
service zero calibration is complete. Calibrated RHOffset will equal -5.2 %.
FieldCal() Zero
'This program example demonstrates the use of FieldCal() in calculating and applying a zero
'calibration. A zero calibration measures the signal magnitude of a sensor in a known zero
'condition and calculates the negative magnitude to use as an offset in subsequent
'measurements. It does not affect the multiplier.
'
'This program demonstrates the zero calibration with the following procedure:
' -- Simulate a signal from a relative-humidity sensor.
' -- Measure the 'sensor' signal.
' -- Calculate and apply a zero calibration.
'You can set up the simulation by loading this program into the CR3000 and interconnecting
'the following terminals with a jumper wire to simulate the relative-humidity sensor signal
'as follows:
'
Vx1
---
SE
1
'For the simulation, the initial 'sensor' signal is set automatically. Start the zero routine
'by setting variable CalMode = 1. When CalMode = 6 (will occur automatically after 10
'measurements), the routine is complete. Note the new value in variable RHOffset. Now
'enter the following millivolt value as the simulated sensor signal and note how the new
'offset is added to the measurement:
' SimulatedRHSignal = 1000
'NOTE: This program places a .cal file on the CPU: drive of the CR3000. The .cal file must
'be erased to reset the demonstration.
'DECLARE SIMULATED SIGNAL VARIABLE AND SET INITIAL MILLIVOLT SIGNAL MAGNITUDE
Public
SimulatedRHSignal =
100
'DECLARE CALIBRATION STANDARD VARIABLE AND SET PERCENT RH MAGNITUDE
Public
KnownRH = 0
'DECLARE MEASUREMENT RESULT VARIABLE.
Public
RH
'DECLARE OFFSET RESULT VARIABLE
Public
RHOffset
Содержание CR3000 Micrologger
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Страница 200: ...Section 7 Installation 200 FIGURE 42 Running Average Frequency Response FIGURE 43 Running Average Signal Attenuation ...
Страница 485: ...Section 8 Operation 485 8 11 2 Data Display FIGURE 110 Keyboard and Display Displaying Data ...
Страница 487: ...Section 8 Operation 487 FIGURE 112 CR1000KD Real Time Custom ...
Страница 488: ...Section 8 Operation 488 8 11 2 3 Final Storage Data FIGURE 113 Keyboard and Display Final Storage Data ...
Страница 489: ...Section 8 Operation 489 8 11 3 Run Stop Program FIGURE 114 Keyboard and Display Run Stop Program ...
Страница 491: ...Section 8 Operation 491 FIGURE 116 Keyboard and Display File Edit ...
Страница 495: ...Section 8 Operation 495 Low power standby whenever possible Low power bus sets bus and modules to low power ...
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Страница 564: ...Section 11 Glossary 564 FIGURE 126 Relationships of Accuracy Precision and Resolution ...
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