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Shielded Cold Cathode Magnetron (SCCM)

机译:屏蔽冷阴极磁控管(SCCM)

摘要

A magnetron is a vacuum device that uses the interaction of electrons and an electric field to generate microwaves. Magnetrons are often used for radar systems. Current magnetrons create electrons by heating a tungsten wire to the point that it emits electrons. These systems waste large amounts of energy and are difficult to control. A shielded cold cathode magnetron is a new magnetron design that has the potential to greatly improve the magnetron’s efficiency. These new magnetrons utilize arrays of gated field emitters to inject the electrons into the electric field. These field emitters must be protected from electron bombardment inside of the cavity, so a ceramic structure is incorporated into the design. The field emitter structure consists of emitter tips paired with gates; the electron motion is controlled by a pusher electrode. These emitter gate pair arrays can be individually addressed, thereby allowing control of electron injection. The ceramic structure is fabricated using a Low Temperature Co-Fired Ceramic and thick film metal electrodes. This structure is designed to shield the emitters from back bombardment by electrons and ions. Performance can be measured using segmented collectors and energy analyzers. The results from the design, fabrication, and testing of a shielded cold cathode test structure will be presented.
机译:磁控管是一种利用电子和电场的相互作用产生微波的真空装置。磁控管通常用于雷达系统。当前的磁控管通过将钨丝加热到发射电子的点来产生电子。这些系统浪费大量能量并且难以控制。屏蔽冷阴极磁控管是一种新型的磁控管设计,有可能极大地提高磁控管的效率。这些新型磁控管利用门控场发射器阵列将电子注入电场。必须保护这些场发射器免受腔体内电子轰击,因此在设计中采用了陶瓷结构。场发射器结构由与栅极配对的发射器尖端组成。电子运动由推动电极控制。这些发射极对阵列可以单独寻址,从而可以控制电子注入。陶瓷结构是使用低温共烧陶瓷和厚膜金属电极制造的。这种结构旨在保护发射器免受电子和离子的反向轰击。可以使用分段式收集器和能量分析仪来测量性能。将介绍屏蔽冷阴极测试结构的设计,制造和测试结果。

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