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AN4366 数据表(PDF) 5 Page - STMicroelectronics |
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AN4366 数据表(HTML) 5 Page - STMicroelectronics |
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5 / 14 page ![]() AN4366 Saturation problem DocID025330 Rev 1 5/14 2 Saturation problem If the TSC103 is used in single supply with a positive Vos (see Figure 2 in Section 1: "Definition of input offset voltage (Vos)") and zero current through the shunt, it becomes saturated and the output is clamped to the Vol. Unfortunately, this phenomenon also holds true with a positive Vos and low current. In such a case, a voltage drop through the shunt, lower than the Vos of the current sensing, gives an incorrect output value. Let us consider an automotive application where it is necessary to sense the current of the battery. The minimum current that must be measured is 1 A. To limit the power dissipation, a 0.5 mΩ shunt resistor is used. The current sensing, TSC103, powered in single supply and set with a gain of 100 is used to measure the current (see Figure 3). Figure 3: Current sensing single supply The native input offset of the TSC103 might be, in the worst case, +1.1 mV or -1.1 mV, and the maximum Vol might be 125 mV. The output voltage of the TSC103 is given by equation (2): To obtain a valuable measurement, the Vout must be higher than the output stage, low-state saturation voltage i.e. Vout > Vol. Ibattery Vcc 1A Rshunt Vos 0.5 m Ω Gnd + - TSC103 Gain x100 .Gain |
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