穆让修, 宁子立, 毕博瑞, 侯风乾, 薛常佳. 基于光斑跟踪器的脉冲峰值保持电路的实现[J]. 应用光学, 2013, 34(6): 1047-1050.
引用本文: 穆让修, 宁子立, 毕博瑞, 侯风乾, 薛常佳. 基于光斑跟踪器的脉冲峰值保持电路的实现[J]. 应用光学, 2013, 34(6): 1047-1050.
MU Rang-xiu, NING Zi-li, BI Bo-rui, HOU Feng-qian, XUE Chang-jia. Implementation of pulse peak holding circuit based on laser spot tracker[J]. Journal of Applied Optics, 2013, 34(6): 1047-1050.
Citation: MU Rang-xiu, NING Zi-li, BI Bo-rui, HOU Feng-qian, XUE Chang-jia. Implementation of pulse peak holding circuit based on laser spot tracker[J]. Journal of Applied Optics, 2013, 34(6): 1047-1050.

基于光斑跟踪器的脉冲峰值保持电路的实现

Implementation of pulse peak holding circuit based on laser spot tracker

  • 摘要: 针对激光光斑跟踪器接收信号处理系统中常规A/D采样电路对脉冲电压峰值采集的技术要求,设计了一种脉冲峰值保持电路。通过对该峰值保持电路的各项指标进行理论分析,采用宽带宽跨导放大器MAX436设计该峰值保持电路,并对该电路进行了仿真分析与实验研究,得到满足参数指标设计要求的实验结果:对于脉宽50 ns的激光脉冲信号,在输入信号幅度大于100 mV时,峰值保持电路的响应速度2 ns,下垂速率6.0 mV/s,保持精度1.1%。

     

    Abstract: A kind of pulse peak holding circuit was designed to fulfill the technical demands of conventional A/D sampling circuit to capture peak voltage in the reception signal processing system of laser spot trackers. Firstly, several technical specifications of the holding circuit were analyzed theoretically and the MAX436, a high-speed and wideband trans-conductance amplifier, was effectively chosen to lay out the circuit. Following, the simulation analysis and experimental research were done to get experimental results that could meet the technical demands. For the laser pulse signal of 50ns pulse-width, the response speed of the peak holding circuit2 ns, the relative error1.1% and the droop speed rate6.0 mV/s, when the amplitude of input signal100 mV.

     

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