首页> 外文期刊>International Journal of Infrared and Millimeter Waves >Modeling of Multilayer Suspended Microstrip Line and its Discontinuities on CMOS Grade Silicon Substrate for Millimeter Wave Integrated Circuit Applications
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Modeling of Multilayer Suspended Microstrip Line and its Discontinuities on CMOS Grade Silicon Substrate for Millimeter Wave Integrated Circuit Applications

机译:用于毫米波集成电路应用的CMOS级硅基板上的多层悬浮微带线建模及其间断性

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摘要

Transmission line parameters such as characteristic impedance Z(0), effective dielectric constant epsilon(eff), attenuation constant a of suspended microstrip line on multilayer low resistively silicon substrate are investigated using full wave FEM simulator HFSS. Effect of variation in the thickness of Si3N4, polyimide and metal layers on attenuation are studied. Due to suspended nature, significant reduction in transmission loss is observed in the simulation at 60 GHz frequency. Discontinuities such as open end, gap and step in width of strip conductor are analyzed to extract their lumped equivalent circuits which can be used in the design of integrated circuits.
机译:使用全波有限元仿真器HFSS研究了传输线参数,例如特性阻抗Z(0),有效介电常数ε(eff),多层低电阻硅基板上悬浮微带线的衰减常数α。研究了Si3N4,聚酰亚胺和金属层厚度变化对衰减的影响。由于悬挂特性,在60 GHz频率的仿真中观察到传输损耗的显着降低。分析带状导体的不连续性(例如开口端,间隙和宽度的台阶)以提取其集总等效电路,这些等效电路可用于集成电路设计。

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