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Structurally supportive RF power inverter for a CubeSat electrothermal plasma micro-thruster with PCB inductors

机译:具有PCB电感器的立方体电热等离子体微型推进器的结构支持性RF功率逆变器

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This paper presents a compact RF power inverter implemented with air core inductors for driving an electrothermal plasma micro-thruster, mini Pocket Rocket 3.0 (miniPR 3.0). This miniPR 3.0 and its driving electronics are low volume and are part of an investigation seeking to add propulsion to low cost CubeSats. The air core inductors used in the proposed RF power inverter are formed with PCB traces allowing for a planar and compact design [1], [2]. Advantages of air core inductors include not being subject to saturation or variations from changing material properties of a magnetic core. Moreover, the inductors' temperature limitations are not bounded by Curie temperature ratings. These make air core inductors suitable for operation in harsh environments like space. By incorporating the inductors within a rigid PCB, the power supply (PCB) itself can serve as a structural element for one or more of the side panels of CubeSats. This embedded multipurpose design approach minimizes the power processing unit (PPU) volumetric footprint increasing the available space for housekeeping, propellant, and/or instrument payload. In this document we propose a 13.8 MHz 14 V input 15 W RF power inverter prototype with PCB inductors and demonstrate its ability to power the miniPR 3.0. Further tests including in vacuum testing will be our future work.
机译:本文介绍了具有用于驱动电热等离子体微型推进器,迷你口袋火箭3.0(MiniPR 3.0)的空气核心电感器实现了紧凑的RF功率逆变器。该MiniPR 3.0及其驱动电子产品较低,是寻求向低成本立方体添加推进的调查的一部分。所提出的RF功率逆变器中使用的空气芯电感器形成有PCB迹线,允许平面和紧凑的设计[1],[2]。空气核心电感器的优点包括不受饱和度的饱和度或变化,从磁芯的材料特性改变。此外,电感器的温度限制不受居里升温的限制。这些使空气核心电感器适用于像空间一样恶劣环境的操作。通过在刚性PCB内结合电感器,电源(PCB)本身可以用作CubeSats的一个或多个侧板的结构元件。该嵌入式多功能设计方法可最大限度地减少电源处理单元(PPU)体积占用空间,增加家政服务,推进剂和/或仪表有效载荷。在本文档中,我们提出了13.8 MHz 14 V输入15 W RF功率逆变器原型,具有PCB电感器,并展示其为MiniPR 3.0提供电量的能力。在真空测试中的进一步测试将是我们未来的工作。

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