DocumentCode :
238206
Title :
Low flicker noise high linearity direct conversion mixer for K-band applications in a 90 nm CMOS technology
Author :
Ali, Mohammed K. ; Hamidian, Amin ; Malignaggi, Andrea ; Arnous, Mhd Tareq ; Boeck, Georg
Author_Institution :
Microwave Eng. Lab., Berlin Inst. of Technol., Berlin, Germany
fYear :
2014
fDate :
16-18 June 2014
Firstpage :
1
Lastpage :
4
Abstract :
A design of a Direct down-conversion mixer is presented. Noise performance and power consumption are the target design issues for this work. The mixer is fabricated in a 90 nm CMOS technology; it converts down a 2 GHz channel bandwidth at around 20 GHz to the neighborhood of zero frequency. New current bleeding network with resonating inductors is presented; it provides most of the DC current to the driver transistors, yet highest possible ohmic path for the ac current to ground. Buffer is designed to isolate the high impedance of the mixer output from the 50 Ω load. Noise figure of the mixer along with the buffer is shown to be 12 dB with a conversion gain of 4 dB and compression point of -12 dBm. The mixer core consumes 4.3 mW of power, while the differential buffer has a power consumption of 6 mW. The total chip size including pads is 0.44×0.72 mm2.
Keywords :
CMOS integrated circuits; buffer circuits; flicker noise; inductors; microwave mixers; microwave transistors; power consumption; CMOS technology; DC current; K-band applications; ac current; bandwidth 2 GHz; buffer; compression point; conversion gain; current bleeding network; driver transistors; frequency 20 GHz; gain 4 dB; high linearity direct conversion mixer; low flicker noise performance; mixer high impedance; noise figure; noise figure 12 dB; ohmic path; power 4.3 mW; power 6 mW; power consumption; resistance 50 ohm; resonating inductors; size 90 nm; 1f noise; Capacitance; Gain; Hemorrhaging; Inductors; Mixers; Transistors; Direct conversion mixer; Dynamic current bleeding network (DCN); K-band;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwaves, Radar, and Wireless Communication (MIKON), 2014 20th International Conference on
Conference_Location :
Gdansk
Print_ISBN :
978-617-607-553-0
Type :
conf
DOI :
10.1109/MIKON.2014.6899982
Filename :
6899982
Link To Document :
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