DocumentCode :
1758747
Title :
A Wideband Merged CMOS Active Mixer Exploiting Noise Cancellation and Linearity Enhancement
Author :
Benqing Guo ; Huifen Wang ; Guoning Yang
Author_Institution :
No. 38 Res. Inst., CETC, Hefei, China
Volume :
62
Issue :
9
fYear :
2014
fDate :
Sept. 2014
Firstpage :
2084
Lastpage :
2091
Abstract :
A wideband CMOS active mixer is proposed with improved noise and linearity, merging a resistive feedback noise-canceling low-noise amplifier as its transconductor. The noise-canceling characteristic enables the transconductor with low noise over a wide frequency range. An auxiliary pMOS transistor is employed to cancel the third-order nonlinear currents of a composite transistor in the transconductor, and impair the second-order nonlinear currents of that. To enhance input equivalent transconductance, a bulk cross-coupled feedback is applied to the transistor in the transconductor with large power consumption. Together with a current bleeding technique, comparable gain, noise, and improved linearity are achieved, but by reduced bias currents of the mixer. Fabricated in a 0.13- μm triple-well RF CMOS process, the proposed mixer demonstrates a voltage gain of 16.3-14.4 dB, average noise figure of 4.2 dB, and input-referred third-order intercept point of 7.3-2.5 dBm, operating between 500 MHz-5.8 GHz. It consumes 17 mA from a 1.5-V supply and occupies an area of 1.1×1.1 mm2.
Keywords :
CMOS integrated circuits; MMIC mixers; MOSFET circuits; UHF mixers; circuit feedback; field effect MMIC; interference suppression; low noise amplifiers; operational amplifiers; auxiliary pMOS transistor; bulk cross-coupled feedback; composite transistor; current 17 mA; current bleeding technique; frequency 500 MHz to 5.8 GHz; gain 16.3 dB to 14.4 dB; input equivalent transconductance; large power consumption; linearity enhancement; noise-canceling characteristic; reduced bias currents; resistive feedback noise-canceling low-noise amplifier; second-order nonlinear currents; size 0.13 mum; third-order nonlinear currents; transconductor; triple-well RF CMOS process; voltage 1.5 V; wideband merged CMOS active mixer; Impedance matching; Linearity; Mixers; Noise; Transconductance; Transistors; Wideband; Active mixer; bulk effect; linearity; noise canceling; noise figure; wideband;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2014.2334555
Filename :
6855372
Link To Document :
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