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Optimization and Design of a Suspended 215-235-GHz Subharmonically Pumped Mixer for Space-borne Radiometers

机译:用于空间辐射尺寸截止磁煤的悬浮215-235-GHz亚麻泵浦混合器的优化与设计

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This paper presents the optimization and design of a low-loss fixed-tuned 215-235-GHz sub-harmonic mixer, pumped by planar GaAs Schottky diodes fabricated by European company for space-borne radiometers. The circuits are fully integrated with the RF/IF filter and flip-chipped onto a suspended quartz-based substrate. The GaAs Gunn oscillator is used as the local-oscillator (LO) and this paper also found an innovative nonlinear circuit model for GaAs Gunn diode in oscillator based on the physical mechanism. Its equivalent nonlinear circuit can assist the design of the Gunn LO. A best double-sideband-mixer loss of 6.4dB was achieved with 7mW of LO power at 224GHz. Over an RF band of 215-235GHz, the double-sideband loss is below 12dB. This state-of-the-art optimization is attributed to lower parasitic devices and a low-loss wave-guide circuit.
机译:本文介绍了低损耗固定调整215-235-GHz副谐波搅拌机的优化和设计,由欧洲公司制造的平面Gaas肖特基二极管进行空间辐射辐射仪。电路与RF / IF滤波器完全集成并将折叠到悬浮的基于石英基底上。 GaAs Gunn振荡器用作本地振荡器(LO),本文还在基于物理机制的振荡器中找到了一种用于GaAs Gunn二极管的创新非线性电路模型。其等效的非线性电路可以帮助设计Gunn Lo。在224GHz的7MW功率下实现了最佳双侧带式损耗6.4dB。在215-235GHz的RF频带上,双边带损耗低于12dB。这种最先进的优化归因于下寄生装置和低损耗波导电路。

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