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Chapter 6

Analog Input

Table 6-1. Measurement Precision for Various Device Ranges and Limit Settings (12-Bit A/D Converter)

Device Voltage Range

Limit Settings

Precision1

 

 

 

 

0 to 10 V

0 to

10 V

2.44 mV

 

0 to

5 V

1.22 mV

 

0 to

2.5 V

610 µV

 

0 to

1.25 V

305 µV

 

0 to

1 V

244 µV

 

0 to

0.1 V

24.4 µV

 

0 to

20 mV

4.88 µV

 

 

 

 

–5 to 5 V

–5 to

5 V

2.44 mV

 

–2.5 to 2.5 V

1.22 mV

 

–1.25 to 1.25 V

610 µV

 

–0.625 to 0.625 V

305 µV

 

–0.5 to 0.5 V

244 µV

 

–50 to 50 mV

24.4 µV

 

–10 to 10 mV

4.88 µV

 

 

 

–10 to 10 V

–10 to 10 V

4.88 mV

 

–5 to

5 V

2.44 mV

 

–2.5 to 2.5 V

1.22 mV

 

–1.25 to 1.25 V

610 µV

 

–1 to

1 V

488 µV

 

–0.1 to 0.1 V

48.8 µV

 

–20 to 20 mV

9.76 µV

 

 

 

 

1 The value of 1 Least Significant Bit (LSB) of the 12-bit ADC. In other words, the voltage increment corresponding to a change of 1 count in the ADC 12-bit count.

Now that you know which kind of ADC to use and what settings to use for your signal, you can connect your signals to be measured. On most DAQ devices, there are three different ways to configure your device to read the signals: differential, referenced single-ended (RSE), and nonreferenced single-ended (NRSE).

Differential Measurement System

In a differential measurement system, you do not need to connect either input to a fixed reference, such as earth or a building ground. DAQ devices with instrumentation amplifiers can be configured as differential measurement systems. Figure 6-7 depicts the 8-channel differential measurement system used in the MIO series devices. Analog multiplexers increase the number of measurement channels while still using a single

LabVIEW Measurements Manual

6-8

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