Recent Trends in LC Voltage Controlled Oscillator to Achieve Low Phase Noise: A Literature Survey (original) (raw)

Design of LC Oscillator and VCO for ISM and WI-FI Band Applications

IJIREM JOURNAL

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Design and performance analysis of low phase noise LC-voltage controlled oscillator

TELKOMNIKA JOURNAL

TELKOMNIKA, 2023

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Low Phase Noise Wide Tuning Range LC Oscillator for RF Application Using Varactor Bank

R. S. Gamad

Journal of Telecommunication, Electronic and Computer Engineering, 2019

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Design of a 2.2-4.0 GHz Low Phase Noise and Low Power LC VCO

Dr. Chandrabhan Singh Kushwah, R. S. Gamad

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A Low Power Low Phase Noise LC Voltage-Controlled Oscillator

Ray Cheung

Progress In Electromagnetics Research Letters, 2013

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DESIGN OF CMOS LC VOLTAGE CONTROLLED OSCILLATORS ACKNOWLEDGMENTS

Suryaanshu Bhardwaj

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Wideband Voltage Controlled Oscillator (VCO) For RF Applications

Antonio Junior Souza

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Study of Voltage Controlled Oscillator for the Applications in K-band and the Proposal of a Tunable VCO

GARIMA KAPUR

WSEAS TRANSACTIONS ON ELECTRONICS

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Tuning Methods and Tuning Figures of Merit for LC Oscillators

Arthur van Roermund

2000

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Power Efficient Implementation of Low Noise CMOS LC VCO using 32nm Technology for RF Applications

parag parandkar

International Journal of Emerging Research in Management and Technology

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Design of VCO for Microwave Frequency Band

Ashish Mishra

Ijca Proceedings on Recent Advances in Wireless Communication and Artificial Intelligence, 2014

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Design LC oscillator for MF, HF& VHF using both ideal and practical operation amplifier

hayder khaleel al-qaysi

Periodicals of Engineering and Natural Sciences (PEN), 2021

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Design of Low Phase Noise and Wide Tuning Range Voltage Controlled Oscillator for Modern Communication System

Rajat Dixit

International Journal of Engineering Research and Applications, 2017

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Design and Simulation of an X Band LC VCO

mahmoud mohammad-taheri

Journal of Communication Engineering, 2018

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Design and Simulation of Low Phase Noise Voltage-Controlled Oscillator

najmeh shirazi

International Journal of Machine Learning and Computing, 2011

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ISSN: 2277-3754 ISO 9001:2008 Certified A 2.45 GHz Voltage Controlled Oscillator using 0.18µm CMOS for PLL

gobinath p

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High-Frequency Low-Noise Voltage-Controlled LC-Tank Oscillators Using a Tunable Inductor Technique

Ching-Yuan YANG

IEICE Transactions on Electronics, 2006

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An extremely low power 2 GHz CMOS LC VCO for wireless communication applications

saeed mohammadi

… Technology, 2005. The …, 2005

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A CMOS 3.3-8.4 GHz wide tuning range, low phase noise LC VCO

Jaehyup Kim

2009

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Design of low power 3.3–4 GHz LC VCO using CMODE

prakash rout

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Realization of Direct Linear Relation Between Control Voltage and Resonance Frequency of the LC Voltage Controlled Oscillator

Azad Bader

Engineering and Technology Journal

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A Study on Active Inductor based VCO to Implement PLL Frequency Synthesizer for Zigbee Standard

Pratik Ghosh

Indian Journal of Science and Technology, 2016

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Optimum VCO's for radiofrequency applications

kachouri abdennaceur

2006

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A 1.8-GHz monolithic LC voltage-controlled oscillator

Nhật Thanh 10L Nguyễn

IEEE Journal of Solid-State Circuits, 1992

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A Completely Integrated 2.7GHz Voltage Controlled Oscillator with Low Phase Noise

Francesco Dantoni

2001

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A new resonant circuit for 2.45 GHz LC VCO with linear frequency tuning

Yasar Gurbuz

… (EuMIC), 2011 European, 2011

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Design of 800 MHz to 1.5 GHz Voltage Controlled Oscillator for Data Communication

Mutari Hajara Ali

2015

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Analysis and design of a 1.8-GHz CMOS LC quadrature VCO

Carlo Samori

IEEE Journal of Solid-State Circuits, 2002

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A wideband voltage-biased LC oscillator with reduced flicker noise up-conversion

Andrea Bonfanti

2013 IEEE Radio Frequency Integrated Circuits Symposium (RFIC), 2013

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Design of low power 3.3–4 GHz LC VCO using CMODE

Sarat Patra

2013 IEEE International Conference ON Emerging Trends in Computing, Communication and Nanotechnology (ICECCN), 2013

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A 2.4 GHZ FULLY INTEGRATED LC VCO DESIGN USING 130 NM CMOS TECHNOLOGY

International Journal of Microelectronics Engineering (IJME)

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