| Design sequence for a LC-tank voltage controlled oscillator in CMOS for RF |
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Proceedings of the 17th symposium on Integrated circuits and system design
table of contents
Pernambuco, Brazil
SESSION: RF design
table of contents
Pages: 76 - 81
Year of Publication: 2004
ISBN:1-58113-947-0
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Downloads (6 Weeks): 6, Downloads (12 Months): 33, Citation Count: 0
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ABSTRACT
A design sequence for a LC-tank Voltage Controlled Oscillator - VCO - in CMOS for Radio Frequency is presented this paper. Details about the design of the components are shown. Among these details, it is a method to reach the active components (transistors) based on simulations using models given by the foundry. A VCO with a frequency range from 2.4 GHz to 2.5 GHz has been designed to validate the method. Due to access facilities it had been chosen the AMS 0.35 μm CMOS as fabrication technology. The VCO had been fabricated and the measurements done are compatible with the simulations. The good agreement between the measurements and the simulations shows that the design sequence is correct.
REFERENCES
Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.
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A. Abidi. Low-power radio-frequency ic's for portable communications. Proceedings of the IEEE, 83(4):544--569, April 1995.
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T. Lee. The Design of CMOS Radio-Frequency Integrated Circuits. Cambridge University Press, Cambridge, 1998.
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J. Vale Neto and G. Ohara. The Design of a LC-Tank Voltage Controlled Oscillator using CMOS Technology for Radio Frequency. In X Iberchip Workshop, pages 100--110. X Iberchip Workshop, March 2004.
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G. Ohara. Projeto de um Oscilador LC-Tanque Controlável por Tensão em Tecnologia CMOS para Rádio Rreqüência. Master thesis, Escola Politécnica da USP, 2003.
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Agencia Nacional de Telecomunicaões. site anatel. http://www.anatel.org.br, 2001.
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D. Yee. A Design Methodology for Highly-Integrated Low-Power Receivers for Wireless Communications. PhD thesis, University of California, Berkeley, 2001.
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