RF-MEMS switches for a full control of the propagating modes in uniplanar microwave circuits and their application to reconfigurable multimodal microwave filters

被引:0
|
作者
A. Contreras
J. Casals-Terré
L. Pradell
M. Ribó
J. Heredia
F. Giacomozzi
B. Margesin
机构
[1] Technical University of Catalonia (UPC),Department of Signal Theory and Communications
[2] Technical University of Catalonia (UPC),Mechanical Engineering Department
[3] La Salle – Ramon Llull University (URL),Electronics and Telecommunications Department
[4] Fondazione Bruno Kessler (FBK),undefined
来源
Microsystem Technologies | 2017年 / 23卷
关键词
Residual Stress; Actuation Voltage; Microstrip Transmission Line; Reconfiguration Capability; Multimodal Model;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, new RF-MEMS switch configurations are proposed to enable control of the propagating (even and odd) modes in multimodal CPW transmission structures. Specifically, a switchable air bridge (a switchable short-circuit for the CPW odd mode) and switchable asymmetric shunt impedances (for transferring energy between modes) are studied and implemented using bridge-type and cantilever-type ohmic-contact switches, respectively. The switchable air bridge is based in a novel double ohmic-contact bridge-type structure. Optimized-shape suspension configurations, namely folded-beam or diagonal-beam for bridge-type switches, and straight-shaped or semicircular-shaped for cantilever-type switches, are used to obtain robust structures against fabrication-stress gradients. The switches are modelled using a coupled-field 3D finite-element mechanical analysis showing a low to moderate pull-in voltage. The fabricated switches are experimentally characterized using S-parameter and DC measurements. The measured pull-in voltages agree well with the simulated values. From S-parameter measurements, an electrical model with a very good agreement for both switch states (ON and OFF) has been obtained. The model is used in the design of reconfigurable CPW multimodal microwave filters.
引用
收藏
页码:5959 / 5975
页数:16
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