Superharmonic Injection Locked Quadrature LC VCO Using Current Recycling Architecture

Quadrature LO signal is a key element in many of the RF transceivers which tend to dominate today’s wireless communication technology. The design of a quadrature LC VCO with better phase noise and lower power consumption forms the core of this work. This thesis investigates a coupling mechanism to i...

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Bibliographic Details
Main Author: Kalusalingam, Shriram
Other Authors: Karsilayan, Aydin I.
Format: Others
Language:en_US
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/1969.1/ETD-TAMU-2010-12-8602
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spelling ndltd-tamu.edu-oai-repository.tamu.edu-1969.1-ETD-TAMU-2010-12-86022013-01-08T10:41:56ZSuperharmonic Injection Locked Quadrature LC VCO Using Current Recycling ArchitectureKalusalingam, ShriramQuadrature VCOLC VCOOscillatorInjection lockingQVCOPhase noiseQuadrature LO signal is a key element in many of the RF transceivers which tend to dominate today’s wireless communication technology. The design of a quadrature LC VCO with better phase noise and lower power consumption forms the core of this work. This thesis investigates a coupling mechanism to implement a quadrature voltage controlled oscillator using indirect injection method. The coupling network in this QVCO couples the two LC cores with their super-harmonic and it recycles its bias current back into the LC tank such that the power consumed by the coupling network is insignificant. This recycled current enables the oscillator to achieve higher amplitude of oscillation for the same power consumption compared to conventional design, hence assuring better phase noise. Mathematical analysis has been done to study the mechanism of quadrature operation and mismatch effects of devices on the quadrature phase error of the proposed QVCO. The proposed quadrature LC VCO is designed in TSMC 0.18 μm technology. It is tunable from 2.61 GHz - 2.85 GHz with sensitivity of 240 MHz/V. Its worst case phase noise is -120 dBc/Hz at 1 MHz offset. The total layout area is 1.41 mm^2 and the QVCO core totally draws 3 mA current from 1.8 V supply.Karsilayan, Aydin I.2011-02-22T22:24:27Z2011-02-22T23:49:16Z2011-02-22T22:24:27Z2011-02-22T23:49:16Z2010-122011-02-22December 2010BookThesisElectronic Thesistextapplication/pdfhttp://hdl.handle.net/1969.1/ETD-TAMU-2010-12-8602en_US
collection NDLTD
language en_US
format Others
sources NDLTD
topic Quadrature VCO
LC VCO
Oscillator
Injection locking
QVCO
Phase noise
spellingShingle Quadrature VCO
LC VCO
Oscillator
Injection locking
QVCO
Phase noise
Kalusalingam, Shriram
Superharmonic Injection Locked Quadrature LC VCO Using Current Recycling Architecture
description Quadrature LO signal is a key element in many of the RF transceivers which tend to dominate today’s wireless communication technology. The design of a quadrature LC VCO with better phase noise and lower power consumption forms the core of this work. This thesis investigates a coupling mechanism to implement a quadrature voltage controlled oscillator using indirect injection method. The coupling network in this QVCO couples the two LC cores with their super-harmonic and it recycles its bias current back into the LC tank such that the power consumed by the coupling network is insignificant. This recycled current enables the oscillator to achieve higher amplitude of oscillation for the same power consumption compared to conventional design, hence assuring better phase noise. Mathematical analysis has been done to study the mechanism of quadrature operation and mismatch effects of devices on the quadrature phase error of the proposed QVCO. The proposed quadrature LC VCO is designed in TSMC 0.18 μm technology. It is tunable from 2.61 GHz - 2.85 GHz with sensitivity of 240 MHz/V. Its worst case phase noise is -120 dBc/Hz at 1 MHz offset. The total layout area is 1.41 mm^2 and the QVCO core totally draws 3 mA current from 1.8 V supply.
author2 Karsilayan, Aydin I.
author_facet Karsilayan, Aydin I.
Kalusalingam, Shriram
author Kalusalingam, Shriram
author_sort Kalusalingam, Shriram
title Superharmonic Injection Locked Quadrature LC VCO Using Current Recycling Architecture
title_short Superharmonic Injection Locked Quadrature LC VCO Using Current Recycling Architecture
title_full Superharmonic Injection Locked Quadrature LC VCO Using Current Recycling Architecture
title_fullStr Superharmonic Injection Locked Quadrature LC VCO Using Current Recycling Architecture
title_full_unstemmed Superharmonic Injection Locked Quadrature LC VCO Using Current Recycling Architecture
title_sort superharmonic injection locked quadrature lc vco using current recycling architecture
publishDate 2011
url http://hdl.handle.net/1969.1/ETD-TAMU-2010-12-8602
work_keys_str_mv AT kalusalingamshriram superharmonicinjectionlockedquadraturelcvcousingcurrentrecyclingarchitecture
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