Active feedback supported CMOS LNA blended with coplanar waveguide‐fed antenna for Wi‐Fi networks
Abstract This study presents integration of complementary CMOS active feedback low noise amplifier with coplanar waveguide fed patch antenna for Wi‐Fi networks. The LNA design‐I, involves a cascode amplifier followed by active feedback common source amplifier offering wideband impedance matching wit...
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Series: | IET Microwaves, Antennas & Propagation |
Online Access: | https://doi.org/10.1049/mia2.12062 |
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doaj-50bd61e8bb8046199dcb3934ee3f74032021-07-14T13:25:57ZengWileyIET Microwaves, Antennas & Propagation1751-87251751-87332021-05-0115653754610.1049/mia2.12062Active feedback supported CMOS LNA blended with coplanar waveguide‐fed antenna for Wi‐Fi networksGunjan Mittal Roy0Santanu Dwari1Binod Kumar Kanaujia2Sandeep Kumar3Hanjung Song4JIMS Engineering Management Technical Campus Greater Noida Uttar Pradesh IndiaDepartment of Electronics Engineering Indian Institute of Technology IIT(ISM) Dhanbad Jharkhand IndiaSchool of Computational and Integrative Sciences New Delhi JNU IndiaDepartment of Electronics and Communication Engineering National Institute of Technology Karnataka Surathkal Mangaluru IndiaDepartment of Nanoscience and Engineering, Centre for Nanomanufacturing Inje University Gimhae KoreaAbstract This study presents integration of complementary CMOS active feedback low noise amplifier with coplanar waveguide fed patch antenna for Wi‐Fi networks. The LNA design‐I, involves a cascode amplifier followed by active feedback common source amplifier offering wideband impedance matching with lowered parasitic losses. The inductor‐less feedback mechanism is used to nullify noise effect with extended bandwidth in the range of 2.2 to 5.8 GHz and a peak forward gain of 22.5 dB. It is implemented on agilent's advance design system using 45 nm CMOS process. The noise figure (NF) is approximately 2 dB while the stability factors µ and µ prime are well above 1 dB with IIP3 of about 15 dBm. The chip area is 0.57 x 0.57 mm2 under dc power supply of 1V while power consumption of 0.8 mW. A CPW fed antenna design‐II, achieves a wide band response similar to the bandwidth of LNA. The size of the fabricated antenna is calculated as 40 x 40 mm2. The peak gain is approximately 4.1 dBi at 3.9 GHz. The codesign‐III, proposes a receiver achieving a much wider band of 1.6 to 6 GHz with a gain of 16.5 dB and NF of 2.59 dB at 2.06 GHz. The codesign improves the system integration by reducing overall chip area and offers saving in the effective cost.https://doi.org/10.1049/mia2.12062 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gunjan Mittal Roy Santanu Dwari Binod Kumar Kanaujia Sandeep Kumar Hanjung Song |
spellingShingle |
Gunjan Mittal Roy Santanu Dwari Binod Kumar Kanaujia Sandeep Kumar Hanjung Song Active feedback supported CMOS LNA blended with coplanar waveguide‐fed antenna for Wi‐Fi networks IET Microwaves, Antennas & Propagation |
author_facet |
Gunjan Mittal Roy Santanu Dwari Binod Kumar Kanaujia Sandeep Kumar Hanjung Song |
author_sort |
Gunjan Mittal Roy |
title |
Active feedback supported CMOS LNA blended with coplanar waveguide‐fed antenna for Wi‐Fi networks |
title_short |
Active feedback supported CMOS LNA blended with coplanar waveguide‐fed antenna for Wi‐Fi networks |
title_full |
Active feedback supported CMOS LNA blended with coplanar waveguide‐fed antenna for Wi‐Fi networks |
title_fullStr |
Active feedback supported CMOS LNA blended with coplanar waveguide‐fed antenna for Wi‐Fi networks |
title_full_unstemmed |
Active feedback supported CMOS LNA blended with coplanar waveguide‐fed antenna for Wi‐Fi networks |
title_sort |
active feedback supported cmos lna blended with coplanar waveguide‐fed antenna for wi‐fi networks |
publisher |
Wiley |
series |
IET Microwaves, Antennas & Propagation |
issn |
1751-8725 1751-8733 |
publishDate |
2021-05-01 |
description |
Abstract This study presents integration of complementary CMOS active feedback low noise amplifier with coplanar waveguide fed patch antenna for Wi‐Fi networks. The LNA design‐I, involves a cascode amplifier followed by active feedback common source amplifier offering wideband impedance matching with lowered parasitic losses. The inductor‐less feedback mechanism is used to nullify noise effect with extended bandwidth in the range of 2.2 to 5.8 GHz and a peak forward gain of 22.5 dB. It is implemented on agilent's advance design system using 45 nm CMOS process. The noise figure (NF) is approximately 2 dB while the stability factors µ and µ prime are well above 1 dB with IIP3 of about 15 dBm. The chip area is 0.57 x 0.57 mm2 under dc power supply of 1V while power consumption of 0.8 mW. A CPW fed antenna design‐II, achieves a wide band response similar to the bandwidth of LNA. The size of the fabricated antenna is calculated as 40 x 40 mm2. The peak gain is approximately 4.1 dBi at 3.9 GHz. The codesign‐III, proposes a receiver achieving a much wider band of 1.6 to 6 GHz with a gain of 16.5 dB and NF of 2.59 dB at 2.06 GHz. The codesign improves the system integration by reducing overall chip area and offers saving in the effective cost. |
url |
https://doi.org/10.1049/mia2.12062 |
work_keys_str_mv |
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