用于太赫兹时域光谱系统的锁定放大电路
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1.中国工程物理研究院流体物理研究所 绵阳 621900; 2. 青岛青源峰达太赫兹科技有限公司 青岛 266100

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TN710

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国家重点研发计划 (2020YFA0714001)资助


Lock-in amplifier for THz-TDS system
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1. Institute of Fluid Physics,China Academy of Engineering Physics,Mianyang 621900,China; 2. Qingdao Quenda Terahertz Technology Co., Ltd,Qingdao 266100,China

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    摘要:

    针对目前商用锁定放大器在太赫兹光谱测量中存在的功能冗余、体积庞大、价格昂贵等问题,设计了一种精简的锁定放大电路。该电路采用基于ARM Cortex-M3内核的STM32微控制器产生相对相位可编程控制的斩波信号和参考信号,结合平衡调制/解调器AD630实现锁定放大功能。基于诺顿等效定理提出了一种电流输入型锁定放大器测试系统,实现电流输入型锁定放大器的性能评估。经测试,设计的锁定放大电路最大相对误差仅0.56%,动态范围达到84.2dB。测试结果表明,该锁定放大电路满足太赫兹时域光谱系统中的应用需求。该锁定放大电路尺寸仅85×85 mm2,可通过串口指令编程控制参考信号相位、锁定放大增益和积分时间,并完成数据采集,便于系统集成应用。

    Abstract:

    In present terahertz spectrum measurement, the commercial lock-in amplifier for signal detection has disadvantages such as function redundancy, bulky size and high price. A simplified lock-in amplifier circuit was designed in view of these disadvantages. The circuit uses a STM32 controller based on ARM Cortex-M3 generating chopper signal and reference signal with programmable relative phase, driving a balanced modulator/demodulator to realize lock-in amplification. A test system for current mode lock-in amplifiers was proposed based on the Norton’s theorem to evaluate the performance of the designed lock-in amplifier. Test results show that the maximum relative error of designed lock-in amplifier is only 0.56%, and the dynamic range reaches up to 84.2dB, which means that the designed circuit meets the requirement in THz-TDS system. The size of the designed lock-in amplifier circuit is only 85×85 mm2. Through a RS232 port, the reference signal phase, system gain and time constant can be programmed and the data acquisition can also be completed, which is convenient for integration and application for THz-TDS system .

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何 徽,钟森城,李江,温伟峰,张朝惠,初文怡,管玉超.用于太赫兹时域光谱系统的锁定放大电路[J].电子测量技术,2021,44(8):28-32

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  • 在线发布日期: 2024-10-11
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