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TM Page 9
3.1.2
TX31D/1/IFM Calculation of Shunt Calibration Resistor "Rcal"
Two solder pins P5 and P6 are provided for the incorporation of a user fitted shunt calibration resistor (Rcal). When the
transmitter power supply is momentarily interrupted (and when the transmitter is first powered up), the micro-controller in
the transmitter switches the resistor between "0VEX" and "-SIG" pins for 10 seconds. This feature is mainly suitable for
inductively powered transmitters, since the inductive power may be interrupted whilst the shaft is rotating, providing a
"Remote Calibration" facility. Required value for the calibration resistor Rcal, may be calculated from:
Transmitters with 4.096VEx
For example;
Transmitters with 5VEx
For example;
3.1.3
TX31D/1/IFM Mounting and Cover Plate
The TX31D/1/IFM can be mounted on a plate surface by using M3 bolts through the 4 corner holes or it may be fixed
onto a shaft using the strapping attachment plate included in the CAK kit.
If the transmitter is inductively powered a mu metal cover plate may be required. This is necessary when the transmitter
is close to the pickup head IH2 or loop IL2. Failure to do this may result in a zero shift once per revolution, due to
inductive power magnetic field pickup.
To minimise noise levels and stray signal pickup;
1.
Use screened cable for the strain gauge leads
2.
Fit the supplied mu metal cover to screen the transmitter circuitry
3.
Connect the signal cable screen to transmitter housing
4.
Ground the transmitter to the shaft
1024 x Gauge Resistance
Required Signal in mV
Calibration Resistor in Ohms =
- (0.5 x Gauge Resistance)
1024 x 350
2 mV
- (0.5 x 350)
Calibration Resistor in Ohms =
= 179,025 ohms
Figure 2 – TX31D with Strapping Plate and Mu Metal Cover
1250 x Gauge Resistance
Required Signal in mV
Calibration Resistor in Ohms =
- (0.5 x Gauge Resistance)
1250 x 350
2 mV
- (0.5 x 350)
Calibration Resistor in Ohms =
= 218,575 ohms
Содержание TX31D/1/IFM
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