Sobol Wlad T
University of Alabama Health System, University of Alabama at Birmingham, 35233, USA.
Med Phys. 2002 Feb;29(2):132-44. doi: 10.1118/1.1445415.
The purpose of this paper is to present basic functional principles of high frequency x-ray generators. The emphasis is put on physical concepts that determine the engineering solutions to the problem of efficient generation and control of high voltage power required to drive the x-ray tube. The physics of magnetically coupled circuits is discussed first, as a background for the discussion of engineering issues related to high-frequency power transformer design. Attention is paid to physical processes that influence such factors as size, efficiency, and reliability of a high voltage power transformer. The basic electrical circuit of a high frequency generator is analyzed next, with focus on functional principles. This section investigates the role and function of basic components, such as power supply, inverter, and voltage doubler. Essential electronic circuits of generator control are then examined, including regulation of voltage, current and timing of electrical power delivery to the x-ray tube. Finally, issues related to efficient feedback control, including basic design of the AEC circuitry are reviewed.
本文旨在介绍高频X射线发生器的基本功能原理。重点在于那些决定了驱动X射线管所需的高效高压电源生成及控制问题的工程解决方案的物理概念。首先讨论磁耦合电路的物理原理,作为讨论与高频电源变压器设计相关工程问题的背景。关注影响高压电源变压器尺寸、效率和可靠性等因素的物理过程。接下来分析高频发生器的基本电路,重点是功能原理。本节研究电源、逆变器和倍压器等基本组件的作用和功能。然后考察发生器控制的基本电子电路,包括电压调节、电流调节以及向X射线管输送电力的定时。最后,回顾与高效反馈控制相关的问题,包括自动曝光控制电路的基本设计。