System Design And Operation Of A 100 Kilovolt, 2 Kilohertz Pulse Modulator For Plasma Source Ion Implantation

W. Reass
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Abstract

This paper describes the electrical design and operation of a high power modulator system implemented for the Los Alamos Plasma Source Ion Implantation (PSII) facility. To test the viability of the PSII process for various automotive components, the modulator must accept wide variations of load impedance. Components have varying area and composition which must be processed with different plasmas. Additionally, the load impedance may change by large factors during the typical 20 uS pulse, due to plasma displacement currents and sheath growth. As a preliminary design to test the system viability for automotive component implantation, suitable for a manufacturing environment, circuit topology must be able to directly scale to high power versions, for increased component through-put. We have chosen an evolutionary design approach with component families of characterized performance, which should Ion result in a reliable modulator system with component lifetimes. The modulator utilizes a pair of Litton L-3408 hollow beam amplifier tubes as switching elements in a ``hot-deck`` configuration. Internal to the main of planar triode hot deck, an additional pair decks, configured in a totem pole circuit, provide input drive to the L-3408 mod-anodes. The modulator can output over 2 amps average current (at 100 kV) with 1more » kW of modanode drive. Diagnostic electronics monitor the load and stops pulses for 100 mS when a load arcs occur. This paper, in addition to providing detailed engineering design information, will provide operational characteristics and reliability data that direct the design to the higher power, mass production line capable modulators.« less
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用于等离子体源离子注入的100千伏2千赫兹脉冲调制器的系统设计与运行
本文介绍了用于洛斯阿拉莫斯等离子体源离子注入(PSII)设施的高功率调制器系统的电气设计和运行。为了测试各种汽车部件的PSII工艺的可行性,调制器必须接受负载阻抗的广泛变化。组件具有不同的面积和组成,必须用不同的等离子体处理。此外,在典型的20 uS脉冲期间,由于等离子体位移电流和鞘层生长,负载阻抗可能会发生很大的变化。作为测试汽车组件植入系统可行性的初步设计,适用于制造环境,电路拓扑必须能够直接扩展到高功率版本,以增加组件吞吐量。我们选择了一种具有特征性能的组件族的进化设计方法,这将导致具有组件寿命的可靠调制器系统。该调制器采用一对利顿L-3408空心波束放大管作为“热甲板”配置中的开关元件。平面三极管热甲板内部,在图腾柱电路中配置了一对额外甲板,为L-3408模式阳极提供输入驱动。调制器可以输出超过2安培的平均电流(在100千伏)与1more»kW的阳极驱动。诊断电子设备监测负载,并在负载电弧发生时停止脉冲100毫秒。本文除了提供详细的工程设计信息外,还将提供操作特性和可靠性数据,指导设计更高功率、大规模生产线能力的调制器。«少
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