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LMP8602MM Arkusz danych(PDF) 14 Page - National Semiconductor (TI) |
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LMP8602MM Arkusz danych(HTML) 14 Page - National Semiconductor (TI) |
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14 / 24 page ![]() Application Information GENERAL The LMP8602 and LMP8603 are fixed gain differential volt- age precision amplifiers with a gain of 50x for the LMP8602, and 100x for the LMP8603. The input common mode voltage range is -22V to +60V when operating from a single 5V supply or -4V to +27V input common mode voltage range when op- erating from a single 3.3V supply. The LMP8602 and LMP8603 are members of the LMP family and are ideal parts for unidirectional and bidirectional current sensing applica- tions. Because of the proprietary chopping level-shift input stage the LMP8602 and LMP8603 achieve very low offset, very low thermal offset drift, and very high CMRR. The LMP8602 and LMP8603 will amplify and filter small differen- tial signals in the presence of high common mode voltages. The LMP8602/LMP8602Q/LMP8603/LMP8603Q use level shift resistors at the inputs. Because of these resistors, the LMP8602/LMP8602Q/LMP8603/LMP8603Q can easily with- stand very large differential input voltages that may exist in fault conditions where some other less protected high-perfor- mance current sense amplifiers might sustain permanent damage. PERFORMANCE GUARANTIES To guaranty the high performance of the LMP8602/LM- P8602Q/LMP8603/LMP8603Q, all minimum and maximum values shown in the parameter tables of this data sheet are 100% tested where all bold limits are also 100% tested over temperature. THEORY OF OPERATION The schematic shown in Figure 1 gives a schematic repre- sentation of the internal operation of the LMP8602/ LMP8603. The signal on the input pins is typically a small differential voltage across a current sensing shunt resistor. The input signal may appear at a high common mode voltage. The input signals are accessed through two input resistors. The propri- etary chopping level-shift current circuit pulls or pushes cur- rent through the input resistors to bring the common mode voltage behind these resistors within the supply rails. Subse- quently, the signal is gained up by a factor of 10 (K1) and brought out on the A1 pin through a trimmed 100 k Ω resistor. In the application, additional gain adjustment or filtering com- ponents can be added between the A1 and A2 pins as will be explained in subsequent sections. The signal on the A2 pin is further amplified by a factor (K2) which equals a factor of 5 for the LMP8602 and a factor of 10 for the LMP8603. The output signal of the final gain stage is provided on the OUT pin. The OFFSET pin allows the output signal to be level-shifted to enable bidirectional current sensing as will be explained be- low. 30083405 K2 = 5 for LMP8602, K2 = 10 for LMP8603 FIGURE 1. Theory of Operation www.national.com 14 |
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