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Miniature High-Power Nanosecond Laser Diode Transmitters Using the Simplest Possible Avalanche Drivers

机译:使用最简单的雪崩驱动器的微型高功率纳秒激光二极管发射器

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The state-of-the-art long-distance near-infrared optical radars use laser-diode-based miniature pulsed transmitters producing optical pulses of 3-10 ns in duration and peak power typically below 40 W. The duration of the transmitted optical pulses becomes a bottleneck in the task of improving the radar ranging precision, particularly due to the progress made in developing single photon avalanche detectors. The speed of miniature high-current drivers is limited by the speed of the semiconductor switch, either a gallium nitride field-effect transistor, the most popular alternative nowadays, or a silicon avalanche bipolar junction transistor (ABJT), which was traditional in the past. Recent progress in the physical understanding of peculiar 3-D transients promises further enhancement in speed and efficiency of properly modified ABJTs, but that is not the only factor limiting the transmitter speed. We show here that a low-inductance miniature transmitter assembly containing only a specially developed capacitor, a more advanced transistor chip than that used in commercial ABJTs and a laser diode, has allowed peak power from 40 to 180 W to be reached in optical pulses of 1-2 ns in duration without after-pulsing relaxation oscillations. This finding is of interest for compact low-cost, long-distance decimeter-precision lidars, particularly for automotive applications.
机译:最新的长距离近红外光学雷达使用基于激光二极管的微型脉冲发射器,它们产生的持续时间为3-10 ns的光脉冲,峰值功率通常低于40W。所发射的光脉冲的持续时间成为提高雷达测距精度任务的瓶颈,特别是由于在开发单光子雪崩探测器方面取得了进展。微型大电流驱动器的速度受到半导体开关速度的限制,半导体开关是氮化镓场效应晶体管(当今最流行的替代品)或硅雪崩双极结晶体管(ABJT)(过去是传统晶体管)的速度。物理上对特殊3D瞬变的理解的最新进展有望进一步改进适当修改的ABJT的速度和效率,但这不是限制发射机速度的唯一因素。我们在这里展示了一个仅包含专门开发的电容器,比商用ABJT中使用的晶体管芯片和激光二极管更先进的晶体管芯片的低电感微型发射机组件,其光脉冲的峰值功率可达到40至180W。持续时间为1-2 ns,无后脉冲弛豫振荡。对于紧凑型低成本,长距离分米精度的激光雷达,尤其是在汽车应用中,此发现很有意义。

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