DocumentCode :
3291829
Title :
Packaging method for metamaterial based microwave devices
Author :
Ghezzo, Fabrizia ; Zhiya Zhao ; Ruopeng Liu
Author_Institution :
State Key State Lab. of Meta-RF Microwave Radio Frequencies, Kuang-Chi Inst. of Adv. Technol., Shenzhen, China
fYear :
2013
fDate :
14-18 April 2013
Firstpage :
1
Lastpage :
4
Abstract :
In this work we describe the fabrication method used for packaging a 15cm × 15cm × 3cm polymer based beam splitter, a metamaterial device designed for operating at 17GHz. An injection molding technique was used to allow a low viscosity resin, curing at room temperature, to package ten FR4 substrate layers with metamaterial patterns on them. The metamaterial elements present on each layer were designed and their distribution optimized in order to achieve the splitting in two parts of an electromagnetic wave impinging on the front face of the component. A low dielectric, low loss epoxy resin for casting and suitable for packaging was selected as the injection polymer. The design of the electromagnetic behavior of the component took into consideration the full integration of the metamaterial elements and substrates into the polymeric host material. The measurements performed to verify the performance of the as-fabricated device are finally discussed.
Keywords :
curing; injection moulding; microwave metamaterials; optical beam splitters; packaging; polymers; resins; FR4 substrate layers; curing; epoxy resin; frequency 17 GHz; injection molding; injection polymer; low viscosity resin; metamaterial based microwave devices; metamaterial patterns; packaging method; polymer based beam splitter; polymeric host material; size 15 cm; size 3 cm; temperature 293 K to 298 K; Fabrication; Indexes; Metamaterials; Microwave theory and techniques; Packaging; Polymers; injection molding; metamaterials; microwave devices; packaging beam splitter;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Symposium (IWS), 2013 IEEE International
Conference_Location :
Beijing
Type :
conf
DOI :
10.1109/IEEE-IWS.2013.6616746
Filename :
6616746
Link To Document :
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