DocumentCode :
1829186
Title :
An all 50 ohm divider/combiner structure
Author :
Turan, E. ; Demir, S.
Author_Institution :
Army Acad., Ankara, Turkey
Volume :
1
fYear :
2002
fDate :
2-7 June 2002
Firstpage :
105
Abstract :
A novel microwave power divider/combiner structure is presented in this paper. The analysis of the structure is based on the exact matching conditions at input/output ports and a perfect isolation condition between the dividing/combining arms (ports). To analyze the structure, the necessary set of nonlinear equations is derived first, and then solved. For a special case, an all-50 /spl Omega/ structure is obtained (the characteristic impedances of the transmission line sections and the value of the isolation resistance are all 50 /spl Omega/). The presented divider/combiner structure is simulated, and simulation results are seen in perfect agreement with the calculation. As a final step, a planar 3-dB power divider is fabricated on GML 1000 substrate (/spl epsiv//sub r/=3.05, h/spl cong/0.508 mm) and a good agreement between the theoretical and experimental results is obtained.
Keywords :
high-frequency transmission lines; impedance matching; nonlinear equations; power combiners; power dividers; GML 1000 substrate; characteristic impedances; divider/combiner structure; dividing/combining arms; dividing/combining ports; input/output ports; isolation resistance; matching conditions; microwave power divider/combiner structure; nonlinear equations; perfect isolation condition; planar power divider; simulation; transmission line sections; Antenna feeds; Arm; Impedance matching; Microwave antennas; Nonlinear equations; Planar transmission lines; Power dividers; Power transmission lines; Signal design; Transmission line theory;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Symposium Digest, 2002 IEEE MTT-S International
Conference_Location :
Seattle, WA, USA
ISSN :
0149-645X
Print_ISBN :
0-7803-7239-5
Type :
conf
DOI :
10.1109/MWSYM.2002.1011570
Filename :
1011570
Link To Document :
بازگشت