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Holistic design strategy for high-selectivity low-loss integrated millimetre-wave image-reject filters

机译:高选择性低损耗集成毫米波图像拒绝滤波器的整体设计策略

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摘要

To alleviate practical limitations in the design of millimetre-wave on-chip image-reject filters, systematic design methodologies are presented. Three low-order filters with high-selectivity and low-loss characteristics are designed and compared. Transmission zeroes are created by means of a quarter-wave transmission line (filter 1) and a series LC resonator (filters 2 and 3). Implemented on silicon germanium, the filters occupy 0.125, 0.064 and 0.079 mm chip area including pads. The measured transmission losses across 81-86 GHz E-band frequency range are 3.6-5.2 dB for filter 1, 3.1-4.7 dB for filter 2 and 3.6-5 dB for filter 3 where rejection levels at the image band are >30 dB.
机译:为了减轻毫米波片上图像抑制滤波器设计中的实际限制,提出了系统的设计方法。设计并比较了三个具有高选择性和低损耗特性的低阶滤波器。传输零点是通过四分之一波传输线(滤波器1)和串联LC谐振器(滤波器2和3)创建的。滤波器在硅锗上实现,包括焊盘在内,占据了0.125、0.064和0.079 mm的芯片面积。在81-86 GHz E频带范围内,滤波器1的测量损耗为3.6-5.2 dB,滤波器2的测量损耗为3.1-4.7 dB,滤波器3的测量损耗为3.6-5 dB,其中镜像频带的抑制水平大于30 dB。

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