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Design of 15W X-Band GaN Based Transmit / Receive Module for Airborne Active Phased Array Radar Applications

机译:基于15W X波段GaN的空气传输/接收模块的设计

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Transmit / Receive module (TRM) is the core component that addresses key requirements of next generation Active Electronically Scanned Array Radars i.e. multifarious functionality, modularity and scalability. Furthermore, ostensible requirements of miniaturization, wideband performance, high-output power and apt electrical performance exacerbate design intricacies of TRM. Thus, the proposed paper aims to design TRM ranging from 8.5 GHz – 11 GHz, with 15W output power while meeting half-the-wavelength size constraint. Moreover, the proposed paper focuses to devise apt architecture, opt substrate optimally, propose PCB layer and MMIC stack-up, design high-frequency transmission lines, perform crosstalk analysis and propose test-setup for validation of TRM. The proposed architecture of TRM was validated through RF budget simulation in Visual System Simulator (AWR) followed by transmission lines design in ANSYS HFSS, Multi-layer PCB design in Cadence Allegro and Crosstalk simulations in ANSYS SIwave. In a nutshell, the achieved performance of TRM was up-to-the-mark in terms of returns loss and fractional bandwidth as return losses of all high-frequency transmission lines were below -20 dB and fractional bandwidth < 40% was attained over the entire X-Band from 8 GHz to 12 GHz. Furthermore, the near-end crosstalk (NEXT) and far-end crosstalk (FEXT) were achieved to be < 7%.
机译:传输/接收模块(TRM)是解决下一代有源电子扫描阵列雷达的关键要求的核心组件,即多种功能,模块化和可扩展性。此外,外致强化,宽带性能,高输出功率和APT电气性能的表面上的要求加剧了TRM的虚复杂。因此,所提出的纸张旨在设计从8.5 GHz - 11 GHz的TRM,在满足半波长大小约束的同时,输出功率为15W输出功率。此外,所提出的纸张专注于设计APT架构,OPT基板,提出PCB层和MMIC叠加,设计高频传输线,执行串扰分析并提出测试设置以进行TRM验证。通过Visual System Simulator(AWR)中的RF预算仿真验证了TRM的建议体系结构,然后在ANSYS HFSS中的传输线路设计,Cadence Allegro和Ansys SiWave中的串扰模拟中的多层PCB设计。简而言之,在返回损失和分数带宽方面,TRM的实现性能是返回损失和分数带宽,因为所有高频传输线的返回损耗低于-20 dB,而且达到分数带宽<40%从8 GHz到12 GHz的整个x波段。此外,近端串扰(下一个)和远端串扰(FEXT)达到<7%。

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