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Design and Analysis of Low Power Intrinsic Safe Direct-Digital Ohmmeter for Pyrotechnic Resistance Measurement

机译:烟火电阻测量低功率内在安全直数字欧姆表的设计与分析

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The design of a low power, intrinsically safe digital ohmmeter is presented in this paper. The design is based on a modified version of dual-slope integrating analog to digital converter. The proposed scheme provides a digital output that is proportional to the measured resistance, and is independent of circuit elements like line resistances, switch resistances, variation of integrating resistor and capacitor value and variation in supply voltage. The proposed ohmmeter circuit provides the advantage of direct interface to microcontroller input-output ports and hence reduces the need for additional hardware. Simulation studies have been carried out for the proposed converter and the output is linear with worst case error within 0.008%. Hardware realization has been completed for the proposed circuit. Test results using resistors in order to emulate the behavior of resistive sensors provided a linear output with worst case error within 0.2%.
机译:本文提出了低功耗,本质安全的数字欧姆表的设计。该设计基于Dual-Slope的改进版本与数字转换器进行了模拟。所提出的方案提供了与测量电阻成比例的数字输出,并且独立于电路元件,如线电阻,开关电阻,集成电阻器和电容值的变化以及电源电压的变化。所提出的欧姆计电路提供了直接接口与微控制器输入输出端口的优势,因此降低了对额外硬件的需求。已经为所提出的转换器进行了模拟研究,输出是线性的,在0.008%内最坏情况。建议的电路已完成硬件实现。使用电阻的测试结果为了模拟电阻传感器的行为提供了线性输出,在0.2%内具有最坏情况误差的线性输出。

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