半导体激光测距仪发射系统关键技术研究

Yongjie Cheng, Desheng Xin, Jian-jia Zhang
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引用次数: 3

摘要

激光发射电路是激光测距系统的重要组成部分,其特性直接影响到激光测距仪的性能。为了提高激光测距系统的测量距离、测距精度和大气输运性能,在对隧道结多有源半导体激光器的寄生参数进行分析和测量的基础上,考虑了驱动电路对寄生参数分布的影响。采用PSPICE仿真软件分析了激光器和外电路的电分布参数对激光脉冲上升沿和脉冲宽度的影响。在此基础上,实现了半导体激光器窄脉冲驱动源的优化设计,并研究了激光器不同排列封装方式的优缺点。本文实现了激光脉冲上升时间为4ns,峰值功率为210W的目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on the key technology of the emission system for semiconductor laser range finder
The laser emitting circuit is an important part of laser range finders system, which of the characteristic directly affects the performance of laser range finders. To improve the measure distance, the ranging accuracy and atmospheric transport performance of laser ranging system, based on the analysis and measurement of the parasitic parameters about the tunnel junction multi-active region semiconductor lasers, and considering the distribution parameters by the influence of the drive circuit. By adopting PSPICE simulation software to analysis the electrical distributed parameters of the lasers and the external circuit, which how to affect the laser pulse rising edge and pulse width. On this basis, the optimized design of a narrow pulse drive source can be realized for semiconductor laser, and research the advantage and disadvantage on different arrangement packing of lasers. This paper achieves the goal which the rise time is 4ns and the peak power is 210W of the laser pulse.
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