Design of a 60-GHz voltage-controlled oscillator in 65nm CMOS

A novel circuit topology for 60GHz Voltage-Controlled Oscillator is developed in this project. It covers the full unlicensed 57~66GHz frequency band and supports multi-band operation. The circuit employs a novel Tunable Differential Inductor, which is constructed by a differential stack transformer...

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Bibliographic Details
Main Author: Wang, Haitao
Other Authors: Yeo Kiat Seng
Format: Final Year Project (FYP)
Language:English
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/10356/45297
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author Wang, Haitao
author2 Yeo Kiat Seng
author_facet Yeo Kiat Seng
Wang, Haitao
author_sort Wang, Haitao
collection NTU
description A novel circuit topology for 60GHz Voltage-Controlled Oscillator is developed in this project. It covers the full unlicensed 57~66GHz frequency band and supports multi-band operation. The circuit employs a novel Tunable Differential Inductor, which is constructed by a differential stack transformer and varactors, along with the Switched-Capacitor Tuning technique to enlarge the tuning range. The Tunable Differential Inductor technique helps to increase the tuning range by isolating the varactor from the parasitic capacitances of the transistors and interconnects. It also reduces the phase noise due to varactor AM-FM conversion by isolating the varactor’s bias voltage from low-frequency noise related to the bias current. Simulated in UMC 1P9M 65nm CMOS technology, a tuning range of 14% has been achieved with a low power consumption of 15.5mW under a 1V supply while maintaining a low phase noise performance of -107dBc/Hz at10MHz offset. The VCO core only occupies an area of 60×80μm2, which is the smallest for 60-GHz applications published ever.
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spelling ntu-10356/452972023-07-07T17:07:54Z Design of a 60-GHz voltage-controlled oscillator in 65nm CMOS Wang, Haitao Yeo Kiat Seng School of Electrical and Electronic Engineering A*STAR Institute of Microelectronics DRNTU::Engineering::Electrical and electronic engineering::Electronic circuits A novel circuit topology for 60GHz Voltage-Controlled Oscillator is developed in this project. It covers the full unlicensed 57~66GHz frequency band and supports multi-band operation. The circuit employs a novel Tunable Differential Inductor, which is constructed by a differential stack transformer and varactors, along with the Switched-Capacitor Tuning technique to enlarge the tuning range. The Tunable Differential Inductor technique helps to increase the tuning range by isolating the varactor from the parasitic capacitances of the transistors and interconnects. It also reduces the phase noise due to varactor AM-FM conversion by isolating the varactor’s bias voltage from low-frequency noise related to the bias current. Simulated in UMC 1P9M 65nm CMOS technology, a tuning range of 14% has been achieved with a low power consumption of 15.5mW under a 1V supply while maintaining a low phase noise performance of -107dBc/Hz at10MHz offset. The VCO core only occupies an area of 60×80μm2, which is the smallest for 60-GHz applications published ever. Bachelor of Engineering 2011-06-10T07:57:05Z 2011-06-10T07:57:05Z 2011 2011 Final Year Project (FYP) http://hdl.handle.net/10356/45297 en Nanyang Technological University 54 p. application/pdf
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Electronic circuits
Wang, Haitao
Design of a 60-GHz voltage-controlled oscillator in 65nm CMOS
title Design of a 60-GHz voltage-controlled oscillator in 65nm CMOS
title_full Design of a 60-GHz voltage-controlled oscillator in 65nm CMOS
title_fullStr Design of a 60-GHz voltage-controlled oscillator in 65nm CMOS
title_full_unstemmed Design of a 60-GHz voltage-controlled oscillator in 65nm CMOS
title_short Design of a 60-GHz voltage-controlled oscillator in 65nm CMOS
title_sort design of a 60 ghz voltage controlled oscillator in 65nm cmos
topic DRNTU::Engineering::Electrical and electronic engineering::Electronic circuits
url http://hdl.handle.net/10356/45297
work_keys_str_mv AT wanghaitao designofa60ghzvoltagecontrolledoscillatorin65nmcmos