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LMV710M5 数据表(PDF) 13 Page - National Semiconductor (TI) |
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LMV710M5 数据表(HTML) 13 Page - National Semiconductor (TI) |
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13 / 19 page ![]() Application Note (Continued) The capacitor C 1 is first discharged by applying a positive pulse to the reset transistor. When a positive voltage V IN is applied to the input, the input voltage is higher than the voltage across C 1. The output of the op amp goes high and forward biases the diode D 1. The capacitor C1 is charged to V IN. When the input becomes less than the current capacitor voltage, the output of the op amp A1 goes low and the diode D 1 is reverse biased. This isolates the C1 and leaves it with the charge equivalent to the peak of the input voltage. The follower prevents unintentional discharging of C 1 by loading from the following circuit. R 5 and C1 are properly selected so that the capacitor is charged rapidly to V IN. During the holding period, the capaci- tor slowly discharge through C 1, via leakage of the capacitor and the reverse-biased diode, or op amp bias currents. In any cases the discharging time constant is much larger than the charge time constant. And the capacitor can hold its voltage long enough to minimize the output ripple. Resistors R 2 and R3 limit the current into the inverting input of A1 and the non-inverting input of A2 when power is disconnected from the circuit. The discharging current from C 1 during power off may damage the input circuitry of the op amps. The peak detector can be reset by applying a positive pulse to the reset transistor. The charge on the capacitor is dumped into ground, and the detector is ready for another cycle. The maximum input voltage to this detector should be less than (V + -V D), where VD is the forward voltage drop of the diode. Otherwise, the input voltage should be scaled down before applying to the circuit. HIGH SIDE CURRENT SENSING The high side current sensing circuit (Figure 8) is commonly used in a battery charger to monitor charging current to prevent over-charging. A sense resistor R sense is connected to the battery directly. This system requires an op amp with rail-to-rail input. The LMV710/711/715 are ideal for this ap- plication because its common mode input range can go beyond the positive rail. 10132523 FIGURE 7. Peak Detector 10132513 FIGURE 8. High Side Current Sensing www.national.com 13 |
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