DocumentCode :
980593
Title :
Substrate integrated image guide (SIIG)-a planar dielectric waveguide technology for millimeter-wave applications
Author :
Patrovsky, Andreas ; Wu, Ke
Author_Institution :
Departement de Genie Electrique, Ecole Polytech. de Montreal, Que.
Volume :
54
Issue :
6
fYear :
2006
fDate :
6/1/2006 12:00:00 AM
Firstpage :
2872
Lastpage :
2879
Abstract :
A synthesized version of the standard dielectric image guide, called the substrate integrated image guide (SIIG), is proposed and presented. It provides numerous advantages related to fabrication precision, design flexibility, and assembly cost, whereas it still retains the low-loss properties of its conventional counterpart in the millimeter-wave range. This is achieved by artificially lowering the effective dielectric permittivity around a guiding channel through cutting a periodic pattern of air holes in a single high-permittivity substrate. In this way, entire circuits including millimeter-wave components can be fabricated and assembled subsequently by a lamination process. Details on the propagation properties of the SIIG and design rules are presented. Two different simulation approaches, which have proven useful for analysis are described, and theoretical results are validated by measurements of fabricated prototypes. It is shown that guide attenuation values as low as 35 dB/m or 0.07 dB/lambdag at 94 GHz can be obtained in practice with high-resistivity silicon as a substrate material
Keywords :
MMIC; dielectric waveguides; elemental semiconductors; periodic structures; permittivity; silicon; 94 GHz; Si; air holes; dielectric permittivity; guide attenuation values; guiding channel; high-permittivity substrate; high-resistivity silicon; lamination process; millimeter-wave applications; millimeter-wave components; planar dielectric waveguide technology; substrate integrated image guide; substrate material; Assembly; Costs; Dielectric substrates; Fabrication; Millimeter wave circuits; Millimeter wave integrated circuits; Millimeter wave propagation; Millimeter wave technology; Permittivity; Planar waveguides; Dielectric waveguides; millimeter-wave integrated circuits; periodic structures; substrate integrated image guide (SIIG);
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2006.875461
Filename :
1643628
Link To Document :
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