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Compact Flash X-ray Systems for Radiographic Applications

机译:放射照相应用紧凑型X射线系统

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Compact Marx generators based on the wave-erection principle are ideal drivers for flash x-ray systems. Traditional Marx generator design techniques lead to slow rising voltage pulses, marked by high impedances, large temporal jitter values and inefficient transfer of energy. As a result, larger pulse generators are fabricated to overcome these shortcomings, which results in excessive volumes and weights. Applied Physical Electronics, L.C. has been developing Marx generators for many years based on the wave-erection principle. As a result, generators with relatively low source impedances, high impulse voltages and compact geometries are making their way into use as portable flash x-ray drivers. More recently, APELC is extending their compact designs into complete flash x-ray systems, including the diode load. This paper discusses two generator systems that have been developed, basic diode geometries that will be incorporated, and a new novel system designed to generate up to an x-ray energy of 3.2 MeV.
机译:基于波立原理的紧凑型马克思发生器是闪光X射线系统的理想驱动器。传统的马克思发生器设计技术会导致电压脉冲缓慢上升,其特点是高阻抗,较大的时间抖动值和低效率的能量传输。结果,制造了较大的脉冲发生器以克服这些缺点,这导致过多的体积和重量。美国应用物理电子公司基于波浪竖立原理,多年来一直在开发马克思发电机。结果,具有相对低的源阻抗,高的脉冲电压和紧凑的几何形状的发生器被用作便携式闪光灯X射线驱动器。最近,APELC将其紧凑型设计扩展到完整的X射线闪光灯系统,包括二极管负载。本文讨论了已开发的两种发生器系统,将要结合的基本二极管几何形状以及设计用于产生高达3.2 MeV的X射线能量的新型系统。

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