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A Digital Lock-In Amplifier for Use at Temperatures of up to 200 °C

机译:数字锁相放大器,可在高达200°C的温度下使用

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Weak voltage signals cannot be reliably measured using currently available logging tools when these tools are subject to high-temperature (up to 200 °C) environments for prolonged periods. In this paper, we present a digital lock-in amplifier (DLIA) capable of operating at temperatures of up to 200 °C. The DLIA contains a low-noise instrument amplifier and signal acquisition and the corresponding signal processing electronics. The high-temperature stability of the DLIA is achieved by designing system-in-package (SiP) and multi-chip module (MCM) components with low thermal resistances. An effective look-up-table (LUT) method was developed for the lock-in amplifier algorithm, to decrease the complexity of the calculations and generate less heat than the traditional way. The performance of the design was tested by determining the linearity, gain, Q value, and frequency characteristic of the DLIA between 25 and 200 °C. The maximal nonlinear error in the linearity of the DLIA working at 200 °C was about 1.736% when the equivalent input was a sine wave signal with an amplitude of between 94.8 and 1896.0 nV and a frequency of 800 kHz. The tests showed that the DLIA proposed could work effectively in high-temperature environments up to 200 °C.
机译:当这些工具长期处于高温(最高200°C)的环境中时,无法使用当前可用的测井工具可靠地测量弱电压信号。在本文中,我们介绍了一种数字锁定放大器(DLIA),它能够在高达200°C的温度下工作。 DLIA包含一个低噪声仪表放大器和信号采集以及相应的信号处理电子设备。通过设计具有低热阻的系统级封装(SiP)和多芯片模块(MCM)组件,可以实现DLIA的高温稳定性。针对锁定放大器算法,开发了一种有效的查找表(LUT)方法,以减少计算的复杂性并产生比传统方法更少的热量。通过确定DLIA在25至200°C之间的线性,增益,Q值和频率特性来测试设计的性能。当等效输入是振幅在94.8至1896.0 nV之间且频率为800 kHz的正弦波信号时,在200°C下工作的DLIA线性中的最大非线性误差约为1.736%。测试表明,DLIA建议可以在高达200°C的高温环境下有效工作。

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