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CR1000 Manual - Campbell Scientific

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Section 8. Operation<br />

Other sensors, e.g., LVDTs (linear variable differential transformers), require an<br />

ac excitation because they rely on inductive coupling to provide a signal. dc<br />

excitation will provide no output.<br />

<strong>CR1000</strong> bridge measurements can reverse excitation polarity to provide ac<br />

excitation and avoid ion polarization.<br />

Note Sensors requiring ac excitation require techniques to minimize or eliminate<br />

ground loops. See Ground Looping in Ionic Measurements (p. 91).<br />

8.1.3.2 Accuracy of Ratiometric-Resistance Measurements<br />

The ratiometric-accuracy specification for resistance measurements is:<br />

±(0.04% * V1 + Offset), ‐25° to 50° C,<br />

where V1 is the voltage measurement and Offset is equal to one of the<br />

following, where the Basic Resolution is the resolution of a single A/D (p.<br />

447) conversion. Note that excitation reversal reduces offsets by a factor<br />

of two:<br />

• Offset = 1.5 x Basic Resolution + 1.0 µV if the measurement is made on a<br />

differential input channel with input reversal<br />

• Offset = 3 x Basic Resolution + 2.0 µV if the measurement is made on a<br />

differential input channel without input reversal<br />

• Offset = 3 x Basic Resolution + 3.0 µV if the measurement is of a singleended<br />

input channel<br />

•<br />

The following table lists basic resolution values.<br />

Table 62. Analog Input-Voltage Range and Basic<br />

Resolution<br />

Range (mV)<br />

±5000<br />

±2500<br />

±250<br />

±25<br />

±7.5<br />

±2.5<br />

Basic Resolution (µV)<br />

1333<br />

667<br />

66.7<br />

6.7<br />

2.0<br />

0.67<br />

Assumptions that support the ratiometric-accuracy specification include:<br />

• Excitation voltages less than 1000 mV are reversed during the excitation<br />

phase of the measurement.<br />

298

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