DocumentCode
151963
Title
A 12.1 mW 50∼67 GHz up-conversion mixer with 6 dB conversion gain and 30.7 dB LO-RF isolation in 90 nm CMOS
Author
Yo-Sheng Lin ; Chien-Chin Wang ; Wei-Chen Wen ; Tzung-Min Tsai
Author_Institution
Dept. of Electr. Eng., Nat. Chi Nan Univ., Puli, Taiwan
fYear
2014
fDate
19-23 Jan. 2014
Firstpage
202
Lastpage
204
Abstract
A 50~67 GHz double-balanced mixer for direct up-conversion using standard 90 nm CMOS technology is reported. The up-conversion mixer comprises an enhanced double-balanced Gilbert cell with current injection for power consumption reduction, and negative resistance compensation for conversion gain (CG) enhancement, a parallel and differential IF transconductance stage for bandwidth and linearity enhancement, a Marchand balun for converting the single LO input signal to differential signal, and another Marchand balun for converting the differential RF output signal to single signal. The mixer consumes 12.1 mW and achieves IF-port input return loss of -12.8 dB at 0.1 GHz, LO-port input return loss of -9.5 ~ -11.4 dB and RF-port input return loss of -10.7 ~ -12.5 dB for frequencies 57~64 GHz. At IF of 0.1 GHz, the mixer achieves CG of 3.1~6 dB and LO-RF isolation of 26.4~30.7 dB for RF of 50~67 GHz. The corresponding 3-dB bandwidth of RF is larger than 17 GHz (the measurement range of 50~67 GHz). To the authors´ knowledge, the CG and power consumption are one of the best results ever reported for a 60 GHz CMOS/BiCMOS up-conversion mixer.
Keywords
CMOS integrated circuits; baluns; millimetre wave mixers; negative resistance; CMOS technology; CMOS/BiCMOS up-conversion mixer; LO input signal; LO-RF isolation; Marchand balun; RF output signal; conversion gain; current injection; differential IF transconductance; double-balanced Gilbert cell; double-balanced mixer; frequency 60 GHz; gain 6 dB; negative resistance compensation; power 12.1 mW; power consumption reduction; size 90 nm; Bandwidth; CMOS integrated circuits; Frequency measurement; Impedance matching; Mixers; Power demand; Radio frequency; 60 GHz; CMOS; Marchand balun; current injection; negative resistance compensation; up-conversion mixer;
fLanguage
English
Publisher
ieee
Conference_Titel
Radio and Wireless Symposium (RWS), 2014 IEEE
Conference_Location
Newport Beach, CA
Print_ISBN
978-1-4799-2298-7
Type
conf
DOI
10.1109/RWS.2014.6830070
Filename
6830070
Link To Document