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Nanosecond Miniature Transmitters for Pulsed Optical Radars

机译:用于脉冲光学雷达的纳秒级微型变送器

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The-state-of-the-art in long-distance near-infrared optical radars is utilization the laser-diode-based miniature pulsed transmitters producing optical pulses of 3-10 ns in duration and peak power typically below 40 W. The bandwidth of the receiving channel nowadays exceeds 300 MHz, and thus the duration of the optical pulses exceeding 3 ns is a botdeneck in the task of high practical importance, namely increase in the radar ranging precision. Nowadays the speed of the high-current drivers is limited by the speed of a semiconductor switch that is typically field-effect transistor or an avalanche switch. The last one provides faster switching, and development of new avalanche switches is very challenging and important task, but this is not the only factor limiting the transmitter speed. Here we show that not only the switch, but also parasitic inductance in the miniature assembly and type of the capacitor play very important role in solving the problem of long-distance decimeter-precision radar.
机译:长距离近红外光学雷达的最新技术是利用基于激光二极管的微型脉冲发射机,该发射机产生持续时间为3-10 ns的光脉冲,峰值功率通常低于40W。如今,接收信道已超过300 MHz,因此,光脉冲的持续时间超过3 ns成为具有高度实际意义的任务(即提高雷达测距精度)中的瓶颈。如今,高电流驱动器的速度受到半导体开关(通常是场效应晶体管或雪崩开关)的速度的限制。最后一个提供了更快的切换速度,开发新的雪崩开关是非常具有挑战性和重要的任务,但这并不是限制发射器速度的唯一因素。在这里我们表明,不仅开关,而且微型组件和电容器类型中的寄生电感在解决长距离分米精度雷达问题中也起着非常重要的作用。

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