Performance analysis of a wideband LNA utilizing 0.18um technology with HBM ESD Protection / Nor Aida Nordin

The following report presents the performance analysis of wideband low noise amplifier (LNA) design circuits utilizing 0.18]uin CMOS technology. The objective of this performed analysis of a LNA design that need achieve sufficiently large gain and low noise figure, compare the design with other desi...

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Main Author: Nordin, Nor Aida
Format: Thesis
Language:English
Published: 2010
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Online Access:https://ir.uitm.edu.my/id/eprint/102745/2/102745.pdf
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spelling my-uitm-ir.1027452024-10-21T03:01:20Z Performance analysis of a wideband LNA utilizing 0.18um technology with HBM ESD Protection / Nor Aida Nordin 2010 Nordin, Nor Aida Electric discharge Electronics The following report presents the performance analysis of wideband low noise amplifier (LNA) design circuits utilizing 0.18]uin CMOS technology. The objective of this performed analysis of a LNA design that need achieve sufficiently large gain and low noise figure, compare the design with other design, and to verify the effect of parameter Rr and Ls to S-parameter. This LNA design was expected to achieve a peak power gain of 13.8 dB. Within the 3 dB bandwidth from 2.6 GHz to 6.6 GHz, the noise figure (NF) is in a range of 4.0 dB to 6.5 dB and the input reflection coefficient, Sn is below -13.0dB.The standard specification for LNA with bandwidth from 2.6GHz is ISDB. This usually used for digital audio and video broadcasting application. By using Cadence Virtuoso as an EDA tool as a simulation tool, the result are obtained. The simulation result had almost achieved the target and this analysis had performed successfully simulation. 2010 Thesis https://ir.uitm.edu.my/id/eprint/102745/ https://ir.uitm.edu.my/id/eprint/102745/2/102745.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
topic Electric discharge
Electronics
spellingShingle Electric discharge
Electronics
Nordin, Nor Aida
Performance analysis of a wideband LNA utilizing 0.18um technology with HBM ESD Protection / Nor Aida Nordin
description The following report presents the performance analysis of wideband low noise amplifier (LNA) design circuits utilizing 0.18]uin CMOS technology. The objective of this performed analysis of a LNA design that need achieve sufficiently large gain and low noise figure, compare the design with other design, and to verify the effect of parameter Rr and Ls to S-parameter. This LNA design was expected to achieve a peak power gain of 13.8 dB. Within the 3 dB bandwidth from 2.6 GHz to 6.6 GHz, the noise figure (NF) is in a range of 4.0 dB to 6.5 dB and the input reflection coefficient, Sn is below -13.0dB.The standard specification for LNA with bandwidth from 2.6GHz is ISDB. This usually used for digital audio and video broadcasting application. By using Cadence Virtuoso as an EDA tool as a simulation tool, the result are obtained. The simulation result had almost achieved the target and this analysis had performed successfully simulation.
format Thesis
qualification_level Bachelor degree
author Nordin, Nor Aida
author_facet Nordin, Nor Aida
author_sort Nordin, Nor Aida
title Performance analysis of a wideband LNA utilizing 0.18um technology with HBM ESD Protection / Nor Aida Nordin
title_short Performance analysis of a wideband LNA utilizing 0.18um technology with HBM ESD Protection / Nor Aida Nordin
title_full Performance analysis of a wideband LNA utilizing 0.18um technology with HBM ESD Protection / Nor Aida Nordin
title_fullStr Performance analysis of a wideband LNA utilizing 0.18um technology with HBM ESD Protection / Nor Aida Nordin
title_full_unstemmed Performance analysis of a wideband LNA utilizing 0.18um technology with HBM ESD Protection / Nor Aida Nordin
title_sort performance analysis of a wideband lna utilizing 0.18um technology with hbm esd protection / nor aida nordin
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2010
url https://ir.uitm.edu.my/id/eprint/102745/2/102745.pdf
_version_ 1818588047447425024