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INA148UA/2K5 bảng dữ liệu(PDF) 10 Page - Texas Instruments |
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INA148UA/2K5 bảng dữ liệu(HTML) 10 Page - Texas Instruments |
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10 / 18 page ![]() 10 ® INA148 Preferably, the offset trim voltage applied to the Ref pin should be buffered with an amp such as an OPA237 (see Figure 3). In this case, the op amp output impedance is low enough that no external resistor is needed to maintain the INA148’s excellent CMR. INPUT IMPEDANCE The input resistor network determines the impedance of each of the INA148’s inputs. It is approximately 1M Ω. Unlike an instrumentation amplifier, signal source imped- ances at the two input terminals must be nearly equal to maintain good common-mode rejection. A mismatch between the two inputs’ source impedances will cause a differential amplifier’s common-mode rejection to be degraded. With a source impedance imbalance of only 500 Ω, CMR can fall to approximately 66dB. Figure 4 shows a common application—measuring power supply current through a shunt resistor (RS). A shunt resistor creates an unbalanced source resistance condition that can degrade a differential amplifier’s common mode rejection. Unless the shunt resistor is less than approximately 100 Ω, an additional equal compensating resistor (RC) is recommended to maintain input balance and high CMR. Source impedances (or shunts) greater than 5k Ω are not recommended, even if they are “perfectly” compensated. This is because the internal resistor network is laser-trimmed for accurate voltage divider ratios, but not necessarily to absolute values. Input resistors are shown as 1M Ω, however, this is only their nominal value. In practice, the input resistors’ absolute values may vary by as much as 30 percent. The two input resistors match to about 5 percent, so adding compensating resistors greater than 5k Ω can cause a serious mismatch in the resulting resistor network voltage divider ratios, thus degrading CMR. Attempts to extend the INA148 input voltage range by adding external resistors is not recommended for the reasons just described in the last paragraph. CMR will suffer a serious degradation unless the resistors are carefully trimmed for CMR and gain. This is an iterative adjustment and can be tedious and time consuming. FIGURE 4. Shunt-Resistor Current Measurement Circuit. FIGURE 5. AC-Coupled Difference Amplifier. 1M Ω 50k Ω 52.6316k Ω 50k Ω 2.7778k Ω 1M Ω R C R S I L V CM 7 3 200V 2 6 41 A1 INA148 –15V V O +15V LOAD V O = IL • RS Make R C = RS if RS ≥ 100Ω 1M Ω 50k Ω 52.6316k Ω 50k Ω 2.7778k Ω 1M Ω 7 3 2 6 41 A1 INA148 –15V V O +15V Typical CMR: 50Hz = 59dB 60Hz = 61dB 400Hz = 78dB NOTE: (1) Metallized polypropylene, ±5% tolerance. C 1 4.7 µF(1) 250V C 2 4.7 µF(1) 250V V IN + V IN – V CM = 200Vpk V O = (VIN – VIN) – + |
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