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AD8295BCPZ-R7 Fiches technique(PDF) 22 Page - Analog Devices |
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AD8295BCPZ-R7 Fiches technique(HTML) 22 Page - Analog Devices |
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22 / 28 page ![]() AD8295 Rev. 0 | Page 22 of 2 8 R R AD8295 IN-AMP +VS +IN –IN 0.1µF 10µF 10µF 0.1µF REF VOUT –VS CD CC CC 10nF 1nF 1nF 4.02kΩ 4.02kΩ RG Figure 57. RFI Suppression Lower cutoff frequencies improve RFI robustness. Accuracy of the CC capacitors is important, because any mismatch between the R × CC at the positive input and the R × CC at the negative input degrades the CMRR of the AD8295. Keeping CD at least 10 times larger than CC is recommended. DIFFERENTIAL OUTPUT The AD8295 can be pin-strapped to provide a differential output; the simplified schematic is shown in Figure 58 and the full pin connection is shown in Figure 59. This configuration uses the instrumentation amplifier to maintain the differential voltage, while the op amp maintains the common-mode voltage. Because the in-amp precisely controls the output relative to its reference pin, this circuit has the same excellent dc performance as the single-ended output configuration. The transfer function for the differential and common-mode outputs are as follows: VDIFF_OUT = VOUT+ − VOUT− = G × (VIN+ − VIN−) VCM_OUT = (VOUT+ + VOUT−)/2 = VREF where: G R G kΩ 4 . 49 1 + = This configuration is fully specified (see Table 2, Figure 49, and Figure 50). DC performance is the same as for the single-ended configuration; ac performance is slightly different. +IN –IN REF IN-AMP VREF INPUT 20kΩ + – A1 +OUT –OUT 20kΩ + – Figure 58. Differential Output Using an Op Amp A1 OUT A1 R2 A2 +IN A2 –IN –IN –INPUT +INPUT RG +VS +VS 0.1µF –VS –VS OUT REF RG +IN 1 2 3 4 8 7 6 5 13 14 15 16 A1 IA A2 R1 20kΩ R2 20kΩ A2 OUT AD8295 A1 +IN VREF INPUT +OUT –OUT A1 R1 A1 –IN 12 11 10 9 0.1µF NOTES 1. CONNECT AS SHOWN IF A2 IS NOT BEING USED. Figure 59. Minimum Component Connections for Differential Output An alternative differential output configuration, which also requires no external components, is shown in Figure 60. Unlike the previous circuit, this configuration uses an inverting op amp configuration to double the gain from the instrumentation amplifier. Because this configuration requires less gain from the instrumentation amplifier, it can have a wider frequency response and a wider input common-mode range vs. output voltage. However, because it does not take advantage of feed- back at the reference pin of the instrumentation amplifier, dc performance includes the errors from the op amp and the resistor network. When using the internal precision components of the AD8295, these errors have a minimal effect on overall accuracy. This configuration is not specified in this data sheet. REF VREF INPUT A1 +IN –IN R2 20kΩ +OUT –OUT – + IN-AMP + – RG R1 20kΩ Figure 60. Alternative Differential Output Configuration |
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