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首页> 外文期刊>Nuclear Science, IEEE Transactions on >Design and Simulation of a MGy Radiation Tolerant Signal Conditioning Circuit for Resistive Sensors in 0.7 m CMOS
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Design and Simulation of a MGy Radiation Tolerant Signal Conditioning Circuit for Resistive Sensors in 0.7 m CMOS

机译:0.7 m CMOS中用于电阻传感器的MGy耐辐射信号调理电路的设计和仿真

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摘要

This paper presents the design and simulation results of a radiation tolerant configurable discrete time CMOS signal conditioning circuit for use with resistive sensors like strain gauge pressure sensors. The circuit is intended to be used for remote handling in harsh environments in the International Thermonuclear Experimental fusion Reactor (ITER) (experimental validation still needs to be performed). The design features a 5 V differential preamplifier using a Correlated Double Sampling (CDS) architecture at a sample rate of 20 kHz and a 24 V discrete time post amplifier. The gain is digitally controllable between 27 and 400 in the preamplifier and between 1 and 8 in the post amplifier. The nominal input referred noise voltage is only 8.5 $mu {rm V}_{rm rms}$ while consuming only 1 mW. The circuit has a simulated radiation tolerance of more than 1 MGy.
机译:本文介绍了可辐射的可配置离散时间CMOS信号调理电路的设计和仿真结果,该电路与电阻传感器(如应变片压力传感器)一起使用。该电路旨在用于国际热核实验聚变反应堆(ITER)中恶劣环境中的远程处理(仍需要进行实验验证)。该设计采用一个采用相关双采样(CDS)架构,采样率为20 kHz的5 V差分前置放大器和一个24 V离散时间后置放大器。在前置放大器中,增益可数字控制在27至400之间;在后置放大器中,增益可在1至8之间控制。标称输入参考噪声电压仅为8.5 $ mu {rm V} _ {rm rms} $,而仅消耗1 mW。该电路的模拟辐射容忍度超过1 MGy。

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