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A Novel Digitally-Controlled DC Offset Calibration Circuit for the Chopper Instrumentation Amplifier

机译:斩波器仪表放大器的新型数字控制直流失调校准电路

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This paper presents a novel digitally-controlled DC offset calibration (DCOC) circuit for the chopper instrumentation amplifiers that offers better robustness, faster calibration speed, and lower average input noise than traditional integrator-based structures. Different from the traditional analog method, the proposed structure adopts digital circuit to cancel most of the offset introduced by the input-electrode, and the residual offset is eliminated by the second-stage capacitive-coupling amplifier. The difference of two reference voltages is used as the loop-output calibration voltage, so that the system has good temperature characteristic and process characteristic. The noise introduced by the digital offset calibration loop is proportional to the magnitude of the input offset, and no noise is introduced when the input offset is 0V. The circuit is designed in 0.18μm standard CMOS process with the supply voltage of 1.2V. The total power consumption is 36μW and the instrumentation amplifier consumes 7μW. The simulation results demonstrate the effectiveness of the amplifier functionality under different offset voltages, which can eliminate the offset up to ±300mV. Under different offset voltages, the input integrated noise range is 0.67~ 1.49μVrms (0.1~150Hz).
机译:本文提出了一种适用于斩波器仪表放大器的新型数控直流失调校准(DCOC)电路,与传统的基于积分器的结构相比,该电路具有更好的鲁棒性,更快的校准速度和更低的平均输入噪声。与传统的模拟方法不同,该结构采用数字电路消除了输入电极引入的大部分失调,并且第二级电容耦合放大器消除了残余失调。两个参考电压之差用作环路输出校准电压,因此系统具有良好的温度特性和过程特性。数字失调校准环路引入的噪声与输入失调的幅度成正比,并且当输入失调为0V时不会引入噪声。该电路采用0.18μm标准CMOS工艺设计,电源电压为1.2V。总功耗为36μW,仪表放大器功耗为7μW。仿真结果证明了放大器功能在不同失调电压下的有效性,可以消除高达±300mV的失调。在不同的失调电压下,输入积分噪声范围为0.67〜1.49μVrms(0.1〜150Hz)。

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