DocumentCode :
1755691
Title :
Design and Analysis of Harmonic Rejection Mixers With Programmable LO Frequency
Author :
Forbes, Travis ; Wei-Gi Ho ; Gharpurey, Ranjit
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Texas at Austin, Austin, TX, USA
Volume :
48
Issue :
10
fYear :
2013
fDate :
Oct. 2013
Firstpage :
2363
Lastpage :
2374
Abstract :
A harmonic rejection mixer (HRM) with a programmable local oscillator (LO) frequency is presented. The design allows for the generation of multiple effective LO frequencies within a single HRM that are derived from a single primary clock frequency, without any modifications to the analog signal path. A 16-phase HRM with the proposed frequency synthesis technique is implemented in a 130-nm CMOS process. A clocking approach within a two-stage HRM is presented, which reduces HRM sensitivity to both gain and phase mismatch. The HRM synthesizes eight effective LO frequencies and shows an 11.9-dB gain, 11.2-dB DSB NF, and +5.4-dBm in-band IIP3 in the fundamental mode. Greater than 72-dB HR3, 71-dB HR5, and 67-dB HR7 is achieved over ten IC samples in this mode without calibration or harmonic filtering. Harmonic rejection greater than 61 dB for LO factors 2-6 and 54 dB for LO factor 7 is observed, when modifying the effective LO frequency. The HRM achieves S11 better than -10 dB over 50-830 MHz and has a total power consumption of 67 mW from a 1.2-V supply.
Keywords :
CMOS integrated circuits; UHF integrated circuits; UHF mixers; UHF oscillators; VHF circuits; VHF oscillators; clocks; frequency synthesizers; harmonic oscillators (circuits); integrated circuit design; programmable circuits; 16-phase two-stage HRM; CMOS process; analog signal path modification; calibration; frequency 50 MHz to 830 MHz; frequency synthesis technique; gain 11.9 dB; gain mismatch; harmonic filtering; harmonic rejection mixer; multiple effective LO frequency generation; noise figure 11.2 dB; phase mismatch; power 67 mW; programmable local oscillator frequency; single primary clock frequency; size 130 nm; voltage 1.2 V; Clocks; Frequency synthesizers; Gain; Harmonic analysis; Mixers; Radio frequency; Time-frequency analysis; CMOS; LO synthesis; RF mixer; broadband mixer; direct-conversion; harmonic mixing; harmonic rejection; mismatch; mixer; noise cancellation; passive mixer; programmable frequency; receiver; software-defined radio; switching mixer; wideband;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2013.2275652
Filename :
6583261
Link To Document :
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