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Solid-State Pulse-Forming Modules by Utilizing the 2-D Electrode Manufacturing Technology

机译:利用二维电极制造技术的固态脉冲形成模块

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Nowadays, most of solid-state circuits are fabricated through the application of the 2-D electrode manufacturing technology (printed circuit). In this paper, solid-state pulse-forming modules using 2-D electrode manufacturing technology are presented to produce long pulse duration while less space volume is being occupied. First, on a glass–ceramic (dielectric constant 225) substrate with the dimension of mm, as meander line is the usual delay-line circuit in printed circuit boards, the meander pulse-forming line is used to deliver a high-voltage pulse with pulse duration longer than 120 ns by simulation and test validation. Furthermore, we also discuss the double parallel meander-line and the “V” shaped meander-line in this section. Second, with the same substrate, the LC pulse-forming module is used to generate the high-power pulse with good square pulse quality. By changing the inductance L, this module can be adjusted to deliver pulses with different durations. Third, planar concentric ring PFL is proposed with simulation analysis. In simulation, the planar concentric ring PFL is designed using an attractive storage medium—Barium Titanate (BaTiO base- ceramics (dielectric constant ~1000). At last, a compact PFL based on the structure of multilayer ceramic capacitor is introduced, and can generate a quasi-square pulse in simulation. These various types of solid-state pulse-forming modules may be the potential component in the compact pulsed power systems to generate high-voltage, long-duration pulses.
机译:如今,大多数固态电路是通过应用二维电极制造技术(印刷电路)制造的。在本文中,提出了使用二维电极制造技术的固态脉冲形成模块,以产生较长的脉冲持续时间,同时占用更少的空间。首先,在尺寸为mm的玻璃-陶瓷(介电常数225)基板上,由于曲折线是印刷电路板中常见的延迟线电路,因此曲折脉冲形成线用于传送高电压脉冲,通过仿真和测试验证,脉冲持续时间长于120 ns。此外,在本节中,我们还将讨论双平行曲折线和“ V”形曲折线。其次,在相同的基板上,LC脉冲形成模块用于产生具有良好方波质量的高功率脉冲。通过改变电感L,可以调节该模块以传递具有不同持续时间的脉冲。第三,通过仿真分析提出了平面同心环PFL。在仿真中,平面同心环PFL是使用有吸引力的存储介质钛酸钡(BaTiO基陶瓷(介电常数〜1000)设计的,最后,基于多层陶瓷电容器的结构引入了紧凑的PFL,并可以产生这些各种类型的固态脉冲形成模块可能是紧凑型脉冲电源系统中产生高压长时脉冲的潜在组件。

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