High repetition frequency picosecond pulse generator

S. Zazoulin, A. Kardo-Sysoev, S.A. Moryakova
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引用次数: 2

Abstract

Picosecond power pulse generators based on silicon avalanche shapers (SAS) have such advantages as high reliability, compactness, low jitter, but their pulse repetition frequency (PRF) was usually limited at several thousand pulses per second (pps) because of the following reasons. SAS had long turn off time due to the minority carriers existence after the turn on process. Circuits, which were used to modulate SAS, with power modulator thyristors as primary switches, could not provide the efficient work at high PRF. We overcame these limitations by use on the next means. The specially doped series of SAS, which combine fast turn on time and low jitter with high reliable work at tens kpps repetition rates, has been developed, tested and produced. The new control circuit schematic, based on drift step recovery diodes (DSRD) and transistors (DSRT), has been designed. This circuit is able to generate stable driving signals to switch SAS up to hundreds kpps. As a result, the developed power pulse generator has the following parameters: output pulse amplitude (on 50 Ohms) 1 kV; rise time 80 ps; pulse width 220 ps; jitter <30 ps; maximal PRF 50 kpps; total power consumption at max. PRF <5W; lifetime 10/sup 11/ pulses and size (version with DC power supply) 110/spl times/50/spl times/40 mm. It should be mentioned that the high time stability of output pulses gives a possibility to combine total power of many generators into a load.
高重复频率皮秒脉冲发生器
基于硅雪崩成形器(SAS)的皮秒功率脉冲发生器具有高可靠性、紧凑性、低抖动等优点,但由于以下原因,其脉冲重复频率(PRF)通常限制在每秒几千个脉冲(pps)。由于开启过程后存在少数运营商,SAS的关闭时间较长。以功率调制器晶闸管作为一级开关的SAS调制电路在高PRF下无法提供有效的工作。我们通过使用下一种手段克服了这些限制。特殊掺杂的SAS系列,结合了快速的开启时间和低抖动,在几十kpps重复率下的高可靠工作,已经开发,测试和生产。设计了基于漂移阶跃恢复二极管(dsd)和晶体管(DSRT)的新型控制电路原理图。该电路能够产生稳定的驱动信号,以切换SAS高达数百kpps。因此,所研制的功率脉冲发生器具有以下参数:输出脉冲幅值(在50欧姆上)1 kV;上升时间80ps;脉冲宽度220 ps;抖动< 30ps;最大PRF 50 kpps;最大总功耗。脉冲重复频率< 5 w;寿命10/sup 11/脉冲和尺寸(带直流电源的版本)110/spl倍/50/spl倍/ 40mm。应该提到的是,输出脉冲的高时间稳定性使得将许多发电机的总功率组合成一个负载成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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