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Timing compensation for an excimer laser solid-state pulsed power module (SSPPM)

机译:准分子激光固态脉冲功率模块(SSPPM)的时序补偿

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摘要

For certain applications, it is critical to minimize variations in the (throughput) timing between trigger and the output pulse of a magnetic modulator. A circuit is described that maintains a relatively constant delay over a large operating voltage range (600-1150 V) and temperature range (25 /spl deg/C-65 /spl deg/C) range, The circuit operates by sampling the charging voltage and magnetic switch temperature just prior to the start switch trigger. Those parameters are then used to calculate the appropriate amount of delay to add into the low-level trigger chain to ensure that the delay stays constant over the voltage and temperature operating range. Although other approaches can be conceived and implemented, this particular design is relatively simple and inexpensive and meets the desired performance goals. Data presented show that the ideal correction function is nonlinear in nature and, as a result, simple linear approximations are limited in their ability to minimize the timing variations. Improvements to the original circuit use a multiple, piece-wise, linear approach in order to obtain better performance. The results are that an initial timing variation of almost 3 /spl mu/s has been reduced to a total variation of less than 100 ns.
机译:对于某些应用,至关重要的是使磁调制器的触发和输出脉冲之间的(吞吐量)时序变化最小。描述了一种在较大的工作电压范围(600-1150 V)和温度范围(25 / spl deg / C-65 / spl deg / C)范围内保持相对恒定的延迟的电路。该电路通过采样充电电压进行操作和磁性开关温度恰好在启动开关触发之前。然后,这些参数用于计算适当的延迟量,以添加到低电平触发链中,以确保该延迟在电压和温度工作范围内保持恒定。尽管可以构想和实现其他方法,但是此特定设计相对简单且便宜,并且可以满足所需的性能目标。所提供的数据表明,理想的校正函数本质上是非线性的,因此,简单的线性近似在使时序变化最小化的能力方面受到限制。为了获得更好的性能,对原始电路的改进使用了多个分段线性方法。结果是,几乎3 / spl mu / s的初始时序变化已减小到小于100 ns的总变化。

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