Presentation 1999/7/22
Monolithic L-band CMOS LNAs Performance With the Ground Patterned Spiral Inductors
Cheon Soo Kim, Min Park, Chung-Hwan Kim, Sung-Do Kim, Mun-Yang Park, Yong-Sik Youn, Hyun Kyu Yu, Hanjin Cho,
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Abstract(in English) We have explored the LNA performance, which is fabricated on a high resistive substrate, with the variation of several inductor parameters (resistance, biasing and ground shield pattern). A 50% reduction of inductor resistance improves the gain of 2dB and the NF of 1dB in the 1.9 GHz LNA. The LNA with the ground shield patterned inductor shows severe gain degradation, but the reverse isolation (S_<12>) performance is improved about 8 dB. So the intensive care and understanding must be taken for designing the ground pattern in spiral inductors on high resistivity silicon substrate.
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Paper # ED99-109
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Committee ED
Conference Date 1999/7/22(1days)
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Language ENG
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Title (in English) Monolithic L-band CMOS LNAs Performance With the Ground Patterned Spiral Inductors
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1st Author's Name Cheon Soo Kim
1st Author's Affiliation Micro Electronics Technology Lab., Electronics and Telecommunications Research Institute()
2nd Author's Name Min Park
2nd Author's Affiliation Micro Electronics Technology Lab., Electronics and Telecommunications Research Institute
3rd Author's Name Chung-Hwan Kim
3rd Author's Affiliation Micro Electronics Technology Lab., Electronics and Telecommunications Research Institute
4th Author's Name Sung-Do Kim
4th Author's Affiliation Micro Electronics Technology Lab., Electronics and Telecommunications Research Institute
5th Author's Name Mun-Yang Park
5th Author's Affiliation Micro Electronics Technology Lab., Electronics and Telecommunications Research Institute
6th Author's Name Yong-Sik Youn
6th Author's Affiliation Micro Electronics Technology Lab., Electronics and Telecommunications Research Institute
7th Author's Name Hyun Kyu Yu
7th Author's Affiliation Micro Electronics Technology Lab., Electronics and Telecommunications Research Institute
8th Author's Name Hanjin Cho
8th Author's Affiliation Micro Electronics Technology Lab., Electronics and Telecommunications Research Institute
Date 1999/7/22
Paper # ED99-109
Volume (vol) vol.99
Number (no) 229
Page pp.pp.-
#Pages 5
Date of Issue