DocumentCode :
808871
Title :
RF and IF ports matching circuit synthesis for a simultaneous conjugate-matched mixer using quasi-linear analysis
Author :
Liew, Yew Hui ; Joe, Jurianto
Author_Institution :
Singapore Design Center, Motorola PCS, Singapore, Singapore
Volume :
50
Issue :
9
fYear :
2002
fDate :
9/1/2002 12:00:00 AM
Firstpage :
2056
Lastpage :
2062
Abstract :
A quasi-linear two-port approach between RF and IF ports to design a simultaneous conjugate-matched mixer is presented in this paper. Conventionally, mixer design is treated as a nonlinear three-port device problem. Nonetheless, with the exception of the large-signal local oscillator (LO) that exists at the LO port, the input RF and output IF signals that exist at the RF and IF ports, respectively, are small signals. Consequently, mixers can be approximated as bilateral quasi-linear two-port circuits with a time-variant transfer function between the RF and IF ports, in which the LO port of the mixer is treated as part of the two-port network. With this approximation, it can be shown mathematically that the optimum source and load matching networks required for attaining simultaneous conjugate match at the RF and IF ports are actually time invariant, thus implying that it is possible to synthesize these optimum impedance values. This proposed mixer design technique, together with the equations derived, are verified with block-diagram simulation and experimental measurements of two 2.4-GHz RF/420-MHz IF double-balanced diode mixers
Keywords :
UHF circuits; UHF mixers; impedance matching; time-varying networks; transfer functions; two-port networks; 2.4 GHz; 420 MHz; IF ports; RF ports; bilateral quasi-linear two-port circuits; conjugate match; double-balanced diode mixers; large-signal local oscillator; load matching networks; matching circuit synthesis; nonlinear three-port device problem; optimum impedance values; quasi-linear approach; simultaneous conjugate-matched mixer; time-variant transfer function; Circuit synthesis; Frequency conversion; Impedance; Local oscillators; Mixers; Network synthesis; Nonlinear equations; RF signals; Radio frequency; Transfer functions;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2002.802316
Filename :
1028940
Link To Document :
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