A 3.1-10.6 GHz HEMT Distributed Amplifier for Ultra-Wideband Application

In this paper, a Distributed Amplifier (DA) by using HEMT technology for ultra-wideband application is presented. Creation of Distributed integrated circuit has been investigated for approximately seventy years rapidly to developing semiconductor process technologies in the modern IC design. By usin...

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Main Authors: Sepideh Ebrahimi, Alishir Moradikordalivand
Format: Article
Language:English
Published: OICC Press 2024-02-01
Series:Majlesi Journal of Electrical Engineering
Subjects:
Online Access:https://oiccpress.com/mjee/article/view/5224
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author Sepideh Ebrahimi
Alishir Moradikordalivand
author_facet Sepideh Ebrahimi
Alishir Moradikordalivand
author_sort Sepideh Ebrahimi
collection DOAJ
description In this paper, a Distributed Amplifier (DA) by using HEMT technology for ultra-wideband application is presented. Creation of Distributed integrated circuit has been investigated for approximately seventy years rapidly to developing semiconductor process technologies in the modern IC design. By using of this method, multiple parallel signals are combined and obtain to increase the bandwidth, enhanced power combining amplitude, and novel design capabilities for IC process. The circuit was designed and simulated in ED02AH technology by using ADS2010. The 4-stage design achieves 15.5 dB of power gain (±0.5 dB) from 3.1 to 10.6 GHz. Reflected power of the input and output from loads matched to 50 Ohm are all below â10 dB over the bandwidth of the device, as is power transmitted from the output to the input. The device is stable for a wide range of input and output loads.
format Article
id doaj-art-a45f9414ee9e44e5bc4f0fd17365dfa3
institution OA Journals
issn 2345-377X
2345-3796
language English
publishDate 2024-02-01
publisher OICC Press
record_format Article
series Majlesi Journal of Electrical Engineering
spelling doaj-art-a45f9414ee9e44e5bc4f0fd17365dfa32025-08-20T01:47:42ZengOICC PressMajlesi Journal of Electrical Engineering2345-377X2345-37962024-02-0164A 3.1-10.6 GHz HEMT Distributed Amplifier for Ultra-Wideband ApplicationSepideh Ebrahimi0Alishir Moradikordalivand1Young Researchers Club, Islamic Azad University, Aligodarz Branch, AligodarzFaculty of Electrical Engineering, University Technology Malaysia, JohorIn this paper, a Distributed Amplifier (DA) by using HEMT technology for ultra-wideband application is presented. Creation of Distributed integrated circuit has been investigated for approximately seventy years rapidly to developing semiconductor process technologies in the modern IC design. By using of this method, multiple parallel signals are combined and obtain to increase the bandwidth, enhanced power combining amplitude, and novel design capabilities for IC process. The circuit was designed and simulated in ED02AH technology by using ADS2010. The 4-stage design achieves 15.5 dB of power gain (±0.5 dB) from 3.1 to 10.6 GHz. Reflected power of the input and output from loads matched to 50 Ohm are all below â10 dB over the bandwidth of the device, as is power transmitted from the output to the input. The device is stable for a wide range of input and output loads.https://oiccpress.com/mjee/article/view/5224Cloud computing, DDoS attacks, Machine Learning, deep learning techniques, . ,
spellingShingle Sepideh Ebrahimi
Alishir Moradikordalivand
A 3.1-10.6 GHz HEMT Distributed Amplifier for Ultra-Wideband Application
Majlesi Journal of Electrical Engineering
Cloud computing, DDoS attacks, Machine Learning, deep learning techniques, . ,
title A 3.1-10.6 GHz HEMT Distributed Amplifier for Ultra-Wideband Application
title_full A 3.1-10.6 GHz HEMT Distributed Amplifier for Ultra-Wideband Application
title_fullStr A 3.1-10.6 GHz HEMT Distributed Amplifier for Ultra-Wideband Application
title_full_unstemmed A 3.1-10.6 GHz HEMT Distributed Amplifier for Ultra-Wideband Application
title_short A 3.1-10.6 GHz HEMT Distributed Amplifier for Ultra-Wideband Application
title_sort 3 1 10 6 ghz hemt distributed amplifier for ultra wideband application
topic Cloud computing, DDoS attacks, Machine Learning, deep learning techniques, . ,
url https://oiccpress.com/mjee/article/view/5224
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