Campbell Scientific CR6 CR6 Measurement and Control System - Page 213

Two-Point Calibrations gain and offset, 9.12.4.3, Zero Basis Point Calibration

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Section 7. Installation 2. Set mode variable = 0 or 6 before starting. 3. Place the sensor into zeroing or offset condition. 4. Set KnownVar variable to the offset or zero value. 5. Set mode variable = 1 to start calibration. 7.9.12.4.2 Two-Point Calibrations (gain and offset) Use this two-point calibration procedure to adjust multipliers (slopes) and offsets (y intercepts). See FieldCal() Slope and Offset (Opt 2) Example (p. 218) and FieldCal() Slope (Opt 3) Example (p. 221) for demonstration programs: 1. Use a separate FieldCal() instruction and separate, related variables for each sensor to be calibrated. 2. Ensure mode variable = 0 or 6 before starting. a. If Mode > 0 and ≠ 6, calibration is in progress. b. If Mode < 0, calibration encountered an error. 3. Place sensor into first known point condition. 4. Set KnownVar variable to first known point. 5. Set Mode variable = 1 to start first part of calibration. a. Mode = 2 (automatic) during the first point calibration. b. Mode = 3 (automatic) when the first point is completed. 6. Place sensor into second known point condition. 7. Set KnownVar variable to second known point. 8. Set Mode = 4 to start second part of calibration. a. Mode = 5 (automatic) during second point calibration. b. Mode = 6 (automatic) when calibration is complete. 7.9.12.4.3 Zero Basis Point Calibration Zero-basis calibration (FieldCal() instruction Option 4) is designed for use with static vibrating-wire measurements. It loads values into zero-point variables to track conditions at the time of the zero calibration. See FieldCal() Zero Basis (Opt 4) Example (p. 223) for a demonstration program. 7.9.12.5 FieldCal() Examples FieldCal() has the following calibration options: • Zero • 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 213

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Section 7.
Installation
2.
Set mode variable = 0 or 6 before starting.
3.
Place the sensor into zeroing or offset condition.
4. Set
KnownVar
variable to the offset or zero value.
5. Set mode variable =
1
to start calibration.
7.9.12.4.2
Two-Point Calibrations (gain and offset)
Use this two-point calibration procedure to adjust multipliers (slopes) and offsets
(y intercepts).
See
FieldCal() Slope and Offset (Opt 2) Example
(p. 218)
and
FieldCal() Slope (Opt 3) Example
(p. 221)
for demonstration programs:
1. Use a separate
FieldCal()
instruction and separate, related variables for each
sensor to be calibrated.
2. Ensure mode variable =
0
or
6
before starting.
a.
If
Mode
>
0
and ≠
6
, calibration is in progress.
b.
If
Mode
<
0
, calibration encountered an error.
3.
Place sensor into first known point condition.
4. Set
KnownVar
variable to first known point.
5. Set
Mode
variable =
1
to start first part of calibration.
a.
Mode
=
2
(automatic) during the first point calibration.
b.
Mode
=
3
(automatic) when the first point is completed.
6.
Place sensor into second known point condition.
7. Set
KnownVar
variable to second known point.
8. Set
Mode
=
4
to start second part of calibration.
a.
Mode
=
5
(automatic) during second point calibration.
b.
Mode
=
6
(automatic) when calibration is complete.
7.9.12.4.3
Zero Basis Point Calibration
Zero-basis calibration (
FieldCal()
instruction
Option 4
) is designed for use with
static vibrating-wire measurements.
It loads values into zero-point variables
to track conditions at the time of the zero calibration.
See
FieldCal() Zero
Basis (Opt 4) Example
(p. 223)
for a demonstration program.
7.9.12.5 FieldCal() Examples
FieldCal()
has the following calibration options:
Zero
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
213