DocumentCode :
1211135
Title :
Novel coupled-line conductor-backed coplanar and microstrip directional couplers for PCB and LTCC applications
Author :
Sawicki, Andrzej ; Sachse, Krzysztof
Author_Institution :
Ericsson AB, Stockholm, Sweden
Volume :
51
Issue :
6
fYear :
2003
fDate :
6/1/2003 12:00:00 AM
Firstpage :
1743
Lastpage :
1751
Abstract :
Novel coupled-line conductor-backed coplanar and microstrip directional couplers, convenient for manufacturing in standard printed circuit board (PCB) or low-temperature co-fired ceramic (LTCC) technology, are proposed. The coplanar coupler, consisting of a layered structure with four strips and covering a -10 to -2.6 dB coupling coefficient, is theoretically ideally impedance matched and perfectly isolated at all frequencies under the assumption of validity of quasi-static approximation and two-mode propagation. The microstrip coupler, a modification of the coplanar one, can be ideally compensated only in an area of strong coupling coefficients. The novel couplers are not sensitive to lateral misalignment of conductive layers, and not sensitive to thickness and dielectric permittivity tolerances of applied dielectric substrates. Preliminary experimental results for 2.7-, 3-, and 8.34-dB couplers, designed both in PCB, as well as LTCC technology are presented.
Keywords :
coplanar transmission lines; impedance matching; microstrip directional couplers; multiconductor transmission lines; printed circuit design; strip line couplers; LTCC; PCB; asymmetric coupled lines; coupled-line conductor-backed coplanar directional couplers; coupled-line conductor-backed microstrip directional couplers; coupling coefficient; dielectric permittivity tolerance insensitivity; dielectric substrates; ideal compensation; ideal impedance matching; lateral misalignment insensitivity; layered structure; low-temperature co-fired ceramic technology; multiconductor transmission lines; multilayer circuits; perfect isolation; printed circuit board technology; quasi-static approximation; thickness insensitivity; two-mode propagation; Ceramics; Coupling circuits; Dielectric substrates; Directional couplers; Impedance; Isolation technology; Manufacturing; Microstrip; Printed circuits; Strips;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2003.812580
Filename :
1201809
Link To Document :
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