Induction voltage adder architectures and electrical characteristics

I. Smith, P. Corcoran, V. Carboni, V. Bailey, H. Kishi, D.L. Johnson, J. Maenchenb, I. Molinab, R. Carlson, D. Fulton, K. Hahnc, J. Smith, D. Droemerd, K. Thomas, M. Phillips, S. Croxon, R. Forgan, I. Smith
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引用次数: 23

Abstract

In this paper we use three different designs for induction voltage adders to be used in radiographic X-ray sources to illustrate the differences between possible IVA architectures, and between their electrical characteristics as these affect the radiographic diodes that the IVAs drive. The architectures are chosen considering the spaces in which the FVAs must fit, and the electrical characteristics are determined by the approaches chosen for the IVA electrical subsystems. We describe the status of the various IVA technologies. The IVAs, (RITS, the AWE HRF and URSA) are large systems with similar output parameters in the 12-16 MV range.
感应电压加法器结构和电气特性
在本文中,我们使用三种不同设计的感应电压加法器用于x射线照相源,以说明可能的IVA架构之间的差异,以及它们的电气特性之间的差异,因为这些会影响IVA驱动的射线照相二极管。体系结构的选择考虑了fva必须适合的空间,电气特性由为IVA电气子系统选择的方法决定。我们描述了各种IVA技术的现状。IVAs (RITS, AWE HRF和URSA)是在12-16 MV范围内具有相似输出参数的大型系统。
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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