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RF structure design for W-Band folded waveguide TWT

机译:用于W波段的RF结构设计折叠波导TWT

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The Terahertz gap in EM spectrum has found potential applications in high data rate communication, electronic materials, spectroscopy, medicines, biosciences, space research and remote sensing of public and strategic areas. For the generation of THz radiation with medium power many compact vacuum microelectronics/ MEMS technology based devices such as TWTs, Klystrons etc are being tried out. CEERI jointly with Technical University Berlin has been pursuing design and development of W-Band folded Waveguide TWT. Folded Waveguide structure has been chosen because of its robust construction, high power handling capability, simpler coupling and reasonable wide bandwidth. Design of W-band Folded Wave Guide RF structure has been completed using CST-MWS1and GdfidL2 simulation codes. As well in house developed SUNRAY 1-D3Large Signal Code. Simple Waveguide Coupler with reference to its construction through micro-EDM as well as LIGA techniques has been designed with the excellent cold test performance. Initially a moderate circuit length (55mm) has been taken with reasonable gain.
机译:EM谱中的太赫兹差距已经发现了高数据速率通信,电子材料,光谱,药物,生物科学,空间研究和遥感的公共和战略区域的潜在应用。对于使用中等功率的THz辐射,许多紧凑的真空微电子/ MEMS技术的基于TWT,Klystrons等的设备正在尝试。 CEERI与技术大学柏林联合,一直在追求设计和开发W波段折叠波导TWT。已选择折叠波导结构,因为其强大的结构,高功率处理能力,更简单的耦合以及合理的宽带宽。使用CST-MWS 1 和GDFIDL 2 模拟代码完成了W波段折叠波导RF结构的设计。在房屋中也开发出Sunray 1-D3large信号代码。简单的波导耦合器参考其通过微EDM构建以及LIGA技术,具有优异的冷测试性能。最初采用适当的电路长度(55mm),具有合理的增益。

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