Q and frequency tunable second order LC bandpass filter for Long Term Evolution (LTE) receiver

This paper presents a design of Q and center frequency tunable LC bandpass filter at 5.2GHz using 130nm CMOS technology. Centre frequency tuneability was achieved by implementing NMOS transistors biased as varactor. Q-factor enhancement and tuneability was achieved using the negative transconductanc...

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Main Authors: Thangasamy, Veeraiyah, Kamsani, Noor Ain, Hamidon, Mohd Nizar, Sulaiman, Nasri, Bukhori, Muhammad Faiz
Format: Article
Published: Hoehere Bundeslehranstalt und Bundesamt fuer Wein- und Obstbau 2014
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author Thangasamy, Veeraiyah
Kamsani, Noor Ain
Hamidon, Mohd Nizar
Sulaiman, Nasri
Bukhori, Muhammad Faiz
author_facet Thangasamy, Veeraiyah
Kamsani, Noor Ain
Hamidon, Mohd Nizar
Sulaiman, Nasri
Bukhori, Muhammad Faiz
author_sort Thangasamy, Veeraiyah
collection UPM
description This paper presents a design of Q and center frequency tunable LC bandpass filter at 5.2GHz using 130nm CMOS technology. Centre frequency tuneability was achieved by implementing NMOS transistors biased as varactor. Q-factor enhancement and tuneability was achieved using the negative transconductance effect of the cross coupled differential pair. Simulation results achieved shows that the center frequency of the filter is tunable through 5.2GHz to 5.337GHz and the Q-factor of filter tunable through 100 to 577 under 1.2V supply. Furthermore, the achieved 1-dB compression point, IIP3 and noise figure are -2.3dBm, 8.5dBm and 10.65dB respectively.
first_indexed 2024-03-06T08:31:21Z
format Article
id upm.eprints-35123
institution Universiti Putra Malaysia
last_indexed 2024-03-06T08:31:21Z
publishDate 2014
publisher Hoehere Bundeslehranstalt und Bundesamt fuer Wein- und Obstbau
record_format dspace
spelling upm.eprints-351232015-12-30T11:01:23Z http://psasir.upm.edu.my/id/eprint/35123/ Q and frequency tunable second order LC bandpass filter for Long Term Evolution (LTE) receiver Thangasamy, Veeraiyah Kamsani, Noor Ain Hamidon, Mohd Nizar Sulaiman, Nasri Bukhori, Muhammad Faiz This paper presents a design of Q and center frequency tunable LC bandpass filter at 5.2GHz using 130nm CMOS technology. Centre frequency tuneability was achieved by implementing NMOS transistors biased as varactor. Q-factor enhancement and tuneability was achieved using the negative transconductance effect of the cross coupled differential pair. Simulation results achieved shows that the center frequency of the filter is tunable through 5.2GHz to 5.337GHz and the Q-factor of filter tunable through 100 to 577 under 1.2V supply. Furthermore, the achieved 1-dB compression point, IIP3 and noise figure are -2.3dBm, 8.5dBm and 10.65dB respectively. Hoehere Bundeslehranstalt und Bundesamt fuer Wein- und Obstbau 2014-03 Article PeerReviewed Thangasamy, Veeraiyah and Kamsani, Noor Ain and Hamidon, Mohd Nizar and Sulaiman, Nasri and Bukhori, Muhammad Faiz (2014) Q and frequency tunable second order LC bandpass filter for Long Term Evolution (LTE) receiver. Mitteilungen Klosterneuburg, 64 (3). pp. 234-245. ISSN 0007-5922 http://mitt-klosterneuburg.com/show.php?v=64&i=3
spellingShingle Thangasamy, Veeraiyah
Kamsani, Noor Ain
Hamidon, Mohd Nizar
Sulaiman, Nasri
Bukhori, Muhammad Faiz
Q and frequency tunable second order LC bandpass filter for Long Term Evolution (LTE) receiver
title Q and frequency tunable second order LC bandpass filter for Long Term Evolution (LTE) receiver
title_full Q and frequency tunable second order LC bandpass filter for Long Term Evolution (LTE) receiver
title_fullStr Q and frequency tunable second order LC bandpass filter for Long Term Evolution (LTE) receiver
title_full_unstemmed Q and frequency tunable second order LC bandpass filter for Long Term Evolution (LTE) receiver
title_short Q and frequency tunable second order LC bandpass filter for Long Term Evolution (LTE) receiver
title_sort q and frequency tunable second order lc bandpass filter for long term evolution lte receiver
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