Title :
A Waveguide to Microstrip Inline Transition With Very Simple Modular Assembly
Author :
Zhang, Yunchi ; Ruiz-Cruz, Jorge A. ; Zaki, Kawthar A. ; Piloto, Andrew J.
Author_Institution :
RFS (Radio Freq. Syst.), Meriden, CT, USA
Abstract :
A microstrip to empty rectangular waveguide transition is presented for systems requiring a simple modular assembly with good electrical performance. The structure is based on three building blocks, involving a microstrip line to dielectric-loaded rectangular waveguide, a transition between dielectric-loaded and empty rectangular waveguides with reduced height, and a final transformer to standard waveguide. These three building blocks (segmentation based on the design point of view) are combined in three simple parts which are assembled in a straightforward modular way, without soldering. These features are very important for signal feeders requiring a large number of transitions, as the X-band phased array antenna where the proposed structure has been integrated. The concepts involved in the design and manufacturing are illustrated with a prototype showing measured return loss of 10 dB and insertion loss of 1.1 dB in the band 8.5-9.5 GHz.
Keywords :
antenna feeds; antenna phased arrays; dielectric-loaded waveguides; microstrip transitions; microwave antenna arrays; rectangular waveguides; transformers; X-band phased array antenna; dielectric-loaded rectangular waveguide; empty rectangular waveguide transition; frequency 8.5 GHz to 9.5 GHz; insertion loss; loss 1.1 dB; loss 10 dB; microstrip inline transition; modular assembly; return loss; signal feeders; soldering; transformer; waveguide inline transition; Antenna arrays; Antenna feeds; Arrays; Assembly; Assembly systems; Dielectric losses; Dielectrics; Microstrip; Phased arrays; Rectangular waveguides; Soldering; Waveguide components; Waveguide transitions; Wireless communication; Interconnection; microstrip transition; no soldering; rectangular waveguide; transformer;
Journal_Title :
Microwave and Wireless Components Letters, IEEE
DOI :
10.1109/LMWC.2010.2056358