DocumentCode :
854234
Title :
Novel subharmonically pumped mixer incorporating dual-band stub and in-line SCMRC
Author :
Yum, Tsz Yin ; Xue, Quan ; Chan, Chi Hou
Author_Institution :
Wireless Commun. Res. Center, City Univ. of Hong Kong, China
Volume :
51
Issue :
12
fYear :
2003
Firstpage :
2538
Lastpage :
2547
Abstract :
A subharmonically pumped (SHP) mixer with very low conversion loss is proposed. The mixer employed the newly developed spiral compact microstrip resonant cell (SCMRC) and compact dual-band stub (DBS). Incorporating the in-line SCMRC and DBS into a second SHP mixer, we can provide proper terminations for the IF, RF, and local-oscillator (LO) signal simultaneously in addition to all major unwanted mixing products, leading to a unique low conversion-loss design. Our SHP mixer with a measured 3.9-dB single-sideband (SSB) down-conversion loss at 11.6-GHz RF signal outperforms typical designs of 8-12 dB, and represents a state-of-the-art performance for a planar X-band harmonic mixer. With a broad-band operation, our mixer shows an SSB down-conversion loss of less than 8.2 dB from 9 to 12.8 GHz. Moreover, the measured LO-RF isolation is better than 45 dB for LO frequency ranges of 4-5.8 GHz. Large-signal two-tone measurements reveal an excellent linear response of the working prototype, showing 7.5 dBm and 52 dB for the 1- dB power compression point and spurious-free dynamic range, respectively.
Keywords :
S-parameters; broadband networks; intermodulation distortion; microstrip resonators; microwave mixers; microwave oscillators; millimetre wave mixers; millimetre wave oscillators; 1 dB; 3.9 dB; 4 to 5.8 GHz; 45 dB; 52 dB; 8 to 12 dB; 9 to 12.8 GHz; IF oscillator; RF oscillator; RF signal; SSB down-conversion loss; broad-band operation; conversion loss design; dual-band stub; large signal two-tone measurements; local oscillator-RF isolation; novel subharmonically pumped mixer; planar X-band harmonic mixer; power compression point; prototype linear response; single-sideband down conversion loss; spiral compact microstrip resonant cell; spurious-free dynamic range; Amplitude modulation; Dual band; Microstrip; Mixers; Radio frequency; Resonance; Satellite broadcasting; Signal design; Spirals; Termination of employment;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2003.820152
Filename :
1256787
Link To Document :
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