Title :
A Broadband Low-Power Millimeter-Wave CMOS Downconversion Mixer With Improved Linearity
Author :
Fang Zhu ; Wei Hong ; Ji-Xin Chen ; Xin Jiang ; Ke Wu ; Pin-Pin Yan ; Chun-Lin Han
Author_Institution :
Sch. of Inf. Sci. & Eng., Southeast Univ., Nanjing, China
Abstract :
This brief presents a broadband, low-local-oscillator (LO)-power, and low-dc-power millimeter-wave (MMW) downconversion mixer with improved linearity using TSMC 90-nm CMOS low-power (LP) process. By employing an active load in the bias network, the linearity of the mixer can be improved effectively. In addition, the conversion gain (CG) of the mixer at high LO power is also improved, whereas the CG at low LO power is not appreciable degraded. The operation principle of the added active load and the impacts on mixer´s linearity and CG are analyzed in detail. With a 1.2-V supply voltage and a 0-dBm LO drive power, the proposed mixer with the active load exhibits CG of 0 dB with flatness of ±2 dB from 20 to 50 GHz, input P1 dB (IP1 dB) of -1 dBm, and IIP3 of 9.5 dBm with RF at 43 GHz. The measured IIP3 is 5.6 dB higher than the conventional approach without the active load, and the dc power consumption of the proposed design is 6 mW, including the IF buffers, which is only 1.8 mW higher than the conventional approach.
Keywords :
CMOS integrated circuits; microwave mixers; millimetre wave mixers; CG; IF buffers; LO; LP; MMW; TSMC CMOS low power process; active load; bias network; broadband low dc power mixer; conversion gain; drive power; frequency 20 GHz to 50 GHz; gain 0 dB; low local oscillator power; millimeter wave CMOS downconversion mixer; mixer linearity; power 6 mW; size 90 nm; voltage 1.2 V; Broadband communication; CMOS integrated circuits; Linearity; Logic gates; Mixers; Radio frequency; Transistors; CMOS; linearity; millimeter wave (MMW); mixer;
Journal_Title :
Circuits and Systems II: Express Briefs, IEEE Transactions on
DOI :
10.1109/TCSII.2013.2296196