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Sever design and full model particle-in-cell simulation analysis for a 220 GHz ultra wideband TWTA

机译:220 GHz Ultra宽带TWTA的切割设计和全模模型粒子仿真分析

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We report a distributed tapered sever design for a 220 GHz sheet beam TWTA circuit, compatible with MEMS precision micro-fabrication process. The loss material (Si/SiC) is introduced gradually into the cavities of the double-vane half period staggered structure of the TWTA starting from a thickness of 10 μm and gradually increased in successive cavities to a maximum value (less than 270 μm which is the cavity depth) and then gradually decreased again. The conductivity and maximum thickness of the sever were optimized for a 12.14 mm long sever and a relatively short length 4.02 mm sever. The return loss of the circuit with the long sever was below −10 dB from 205 GHz–275 GHz except for a peak around 247 GHz, while an isolation of (S21) < −50 dB was achieved. The return loss for the short sever was < −10 dB from 205 GHz–275 GHz with an isolation of < −27.6 dB. Particle-In-Cell (PIC) simulations were conducted on a full 220 GHz TWTA model incorporating circuit, broadband couplers and sever. The PIC analysis without sever model showed an output power of ∼ 325 W with a gain of ∼ 38 dB for an input drive of 50 mW at 220 GHz. The reverse power at the input port was 2W. After the inclusions of the long sever and conductivity optimization, the initial results showed a clear stability in the output response of the device, with an output power of ∼ 25 W and gain ∼ 27 dB. The reflected power was reduced significantly to a value of ∼ 30 mW. The results are promising and work is in progress on PIC optimization of short sever and its realization by MEMS/DRIE technology.
机译:我们报告了一个用于220 GHz纸张梁TWTA电路的分布式锥形切换设计,与MEMS精密微制造工艺兼容。损耗材料(Si / SiC)逐渐引入到TWTA的双叶片半周期交错结构的空腔中,从10μm的厚度开始,并且在连续腔中逐渐增加至最大值(小于270μm腔深度)然后再次逐渐减少。切断的电导率和最大厚度为12.14mm长的断开和相对短的长度4.02 mm。除了247GHz大约247 GHz的峰外,电路的电路的回波损耗低于-10 dB,除了247GHz左右的峰,而达到(S 21 )<-50 dB的分离。短期断续的回报损耗是205GHz-275 GHz的<-10 dB,隔离为-27.6 dB。在整个220 GHz TWTA模型的结合电路,宽带耦合器和断开的完整220 GHz TWTA模型中进行了粒子内(PIC)模拟。没有服务器模型的PIC分析显示了〜325W的输出功率,增益为〜38 dB,对于220 GHz,输入驱动为50 mW。输入端口的反向电源为2W。在长期断开和电导率优化的夹杂物之后,初始结果显示了装置的输出响应中的明显稳定性,输出功率为约25W并增益〜27 dB。反射功率显着降低到〜30 mW的值。结果是有前途的,在短期后的优化和MEMS / Drie技术的实现过程中正在进行工作。

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