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A multi-mode 30 GHz 2 degree RMS power efficient phase-locked loop frequency synthesizer
Conference proceeding

A multi-mode 30 GHz 2 degree RMS power efficient phase-locked loop frequency synthesizer

Nagarajan Mahalingam, Yisheng Wang, Bharatha Kumar Thangarasu, Kaixue Ma, Kiat Seng Yeo and Yung Sern Tan
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) Conference Proceedings, p.1
01/01/2016

Abstract

Conference Title: 2016 IEEE/MTT-S International Microwave Symposium - MTT 2016 Conference Start Date: 2016, May 22 Conference End Date: 2016, May 27 Conference Location: San Francisco, CA, USA This paper presents a multi-mode power efficient PLL synthesizer with low power consumption and low phase noise using coupled-tank voltage controlled oscillator and local oscillator chain for 60 GHz transceiver supporting IEEE 802.11 ad standards. Fabricated in commercial 0.18 µm SiGe BiCMOS process with a single 1.8 V supply, the PLL synthesizer covers frequency from 29.5 GHz to 33.5 GHz with a RMS noise of 2 degrees integrated over phase noise from 10 kHz to 10 MHz. The fully integrated PLL synthesizer consumes low power of only 63 mW and occupies an area of 1.1 mm × 1.6 mm excluding the loop filter.

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