DocumentCode
1851496
Title
A mathematical technique for RF mixer linearization using second order Intermodulation injection
Author
Khosrowjerdi, Hojat ; Nabovati, Hooman ; Hedayati, Rahele
Author_Institution
Sadjad Inst. for Higher Educ., Mashhad, Iran
Volume
1
fYear
2010
fDate
1-3 Aug. 2010
Abstract
In this paper, an applied mathematical method is proposed in which the effect of second order Intermodulation injection in elimination of the third order Intermodulation is examined and circuit parameters will be achieved with calculation to obtain the best IIP3 response of the circuit. The suggested mathematical technique is applied to a down converter Gilbert cell mixer in 2.4 GHz. This mixer is designed in TSMC 0.18 μm CMOS technology and is simulated using ADS2006A. The operation conditions of the mixer are 1.8 v supply voltage and total current consumption of 2.7 mA. The proposed mixer provides 11 dB conversion gain and 11.1 dB SSB noise figure. This mathematical linearization method causes IM3 to reduce to 14.4 dB and increases IIP3 from 1 dBm to 8 dBm. This technique does not have a significant effect on conversion gain and noise level of the mixer and only requires a small amount of current about 0.05 mA. By performing this technique the best IIP3 will be achieved with 10% error which is remarkable and shows its high ability in linearization.
Keywords
CMOS integrated circuits; UHF mixers; intermodulation; linearisation techniques; ADS2006A; CMOS technology; IM3; RF Mixer; SSB noise figure; conversion gain; current 2.7 mA; down converter Gilbert cell mixer; frequency 2.4 GHz; gain 11 dB; mathematical linearization method; noise figure 11.1 dB; second order intermodulation injection; size 0.18 mum; voltage 1.8 V; CMOS integrated circuits; Gain; Integrated circuit modeling; Mathematical model; Mixers; Radio frequency; Receivers; IM2 injection; IM3 cancelation; WLAN; intermodulation; linearization; third-order intercept point (IP3);
fLanguage
English
Publisher
ieee
Conference_Titel
Electronics and Information Engineering (ICEIE), 2010 International Conference On
Conference_Location
Kyoto
Print_ISBN
978-1-4244-7679-4
Electronic_ISBN
978-1-4244-7681-7
Type
conf
DOI
10.1109/ICEIE.2010.5559698
Filename
5559698
Link To Document