DocumentCode :
106573
Title :
W-Band CMOS 4-Bit Phase Shifter for High Power and Phase Compression Points
Author :
Hyo-Sung Lee ; Byung-Wook Min
Author_Institution :
Dept. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
Volume :
62
Issue :
1
fYear :
2015
fDate :
Jan. 2015
Firstpage :
1
Lastpage :
5
Abstract :
A CMOS 4-bit phase shifter is designed for W-band applications using a 65-nm CMOS process. Switched-delay-type 90°, 45°, and 22.5° 1-bit phase shifters are designed to have high power-handling capability using a signal line bias voltage. The power and phase compression of 90°, 45°, and 22.5° phase shifters are analyzed, and the phase shifters are optimally cascaded for high power and phase compression points. The measured insertion loss of the 4-bit phase shifter is -25 ± 2.1 dB, and the root mean square (RMS) gain error of the 16 different phase states is 1.1 dB at 77 GHz. An input and output return loss is less than -8 dB at 70-85 GHz. The phase shifter has the RMS phase error of 7.20 at 77 GHz and is less than 11.25° at 75-85 GHz. The measured minimum 1-dB power compression point of 16 different phase states is 15.0 dBm. The high input power also compresses the phase adjustment range and increases the phase error, which is limited to 11.25° up to the input power of 21 dBm. The phase shifter consumes no dc current and occupies a small chip area of 0.122 mm2, excluding pads.
Keywords :
CMOS analogue integrated circuits; MIMIC; millimetre wave phase shifters; CMOS process; RMS gain error; RMS phase error; W-band CMOS phase shifter; frequency 70 GHz to 85 GHz; input return loss; insertion loss; output return loss; phase adjustment range; phase compression point; phase states; power compression point; power-handling capability; root mean square gain error; signal line bias voltage; size 65 nm; switched delay-type phase shifters; word length 1 bit; word length 4 bit; CMOS integrated circuits; Insertion loss; Phase measurement; Phase shifters; Power measurement; Switches; Switching circuits; CMOS switch; Phase shifter; phase compression point; phase error; phase shifter; power compression point;
fLanguage :
English
Journal_Title :
Circuits and Systems II: Express Briefs, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-7747
Type :
jour
DOI :
10.1109/TCSII.2014.2362732
Filename :
6922518
Link To Document :
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