A 220 GHz Broadband Sub-Harmonic Mixer Based on Global Design Method

A terahertz mixer is one of terahertz key components and widely used on terahertz wireless communication, remote sensing, aerospace exploration, and biomedical system. The performance of the terahertz mixer has a great effect on the entire terahertz transceiver system performance. This paper propose...

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Main Authors: Jianhang Cui, Yong Zhang, Dejiao Xia, Yuehang Xu, Fei Xiao, Bo Yan, Ruimin Xu
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8657350/
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spelling doaj-15f055cffa2d4f9f9f14f0781c41be362021-03-29T22:18:47ZengIEEEIEEE Access2169-35362019-01-017300673007810.1109/ACCESS.2019.29024828657350A 220 GHz Broadband Sub-Harmonic Mixer Based on Global Design MethodJianhang Cui0https://orcid.org/0000-0001-8476-4048Yong Zhang1Dejiao Xia2Yuehang Xu3https://orcid.org/0000-0003-1706-2681Fei Xiao4Bo Yan5Ruimin Xu6University of Electronic Science and Technology of China, Chengdu, ChinaUniversity of Electronic Science and Technology of China, Chengdu, ChinaThe 55<sup>th</sup> Research Institute of China Electronics Technology Group Corporation, Nanjing, ChinaUniversity of Electronic Science and Technology of China, Chengdu, ChinaUniversity of Electronic Science and Technology of China, Chengdu, ChinaUniversity of Electronic Science and Technology of China, Chengdu, ChinaUniversity of Electronic Science and Technology of China, Chengdu, ChinaA terahertz mixer is one of terahertz key components and widely used on terahertz wireless communication, remote sensing, aerospace exploration, and biomedical system. The performance of the terahertz mixer has a great effect on the entire terahertz transceiver system performance. This paper proposes a 220 GHz broadband sub-harmonic mixer based on global design method (GDM), which is different from the traditional subdivision design method of which the mixer circuit is composed of functional unit circuits. Instead, the GDM adopts the overall performance of the mixer (conversion loss) as an optimization goal. The continuous structures of the circuit are described by ideal transmission line models and waveguide models, meanwhile, the S-parameters of the de-embedded model are used to describe the discontinuous structures. The measured single-sideband (SSB) conversion loss is basically consistent with the simulation results, which verifies the accuracy and reliability of the GDM. When local oscillator (LO) frequency is fixed at 110 GHz, the measured SSB conversion loss is less than 10 dB with the average value of 8.1 dB from 198 to 238 GHz. The minimum conversion loss of the mixer is 6.35 dB at 207 GHz. The measured double-sideband noise temperature of the mixer is less than 924 K at an intermediate frequency of 1.6 GHz. The GDM has the characteristics with a wide frequency band, small circuit size, simple structure, low LO power, and stable performance, and can also be applied to other terahertz components.https://ieeexplore.ieee.org/document/8657350/Terahertz componentsterahertz sub-harmonic mixersubdivision design methodglobal design method
collection DOAJ
language English
format Article
sources DOAJ
author Jianhang Cui
Yong Zhang
Dejiao Xia
Yuehang Xu
Fei Xiao
Bo Yan
Ruimin Xu
spellingShingle Jianhang Cui
Yong Zhang
Dejiao Xia
Yuehang Xu
Fei Xiao
Bo Yan
Ruimin Xu
A 220 GHz Broadband Sub-Harmonic Mixer Based on Global Design Method
IEEE Access
Terahertz components
terahertz sub-harmonic mixer
subdivision design method
global design method
author_facet Jianhang Cui
Yong Zhang
Dejiao Xia
Yuehang Xu
Fei Xiao
Bo Yan
Ruimin Xu
author_sort Jianhang Cui
title A 220 GHz Broadband Sub-Harmonic Mixer Based on Global Design Method
title_short A 220 GHz Broadband Sub-Harmonic Mixer Based on Global Design Method
title_full A 220 GHz Broadband Sub-Harmonic Mixer Based on Global Design Method
title_fullStr A 220 GHz Broadband Sub-Harmonic Mixer Based on Global Design Method
title_full_unstemmed A 220 GHz Broadband Sub-Harmonic Mixer Based on Global Design Method
title_sort 220 ghz broadband sub-harmonic mixer based on global design method
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description A terahertz mixer is one of terahertz key components and widely used on terahertz wireless communication, remote sensing, aerospace exploration, and biomedical system. The performance of the terahertz mixer has a great effect on the entire terahertz transceiver system performance. This paper proposes a 220 GHz broadband sub-harmonic mixer based on global design method (GDM), which is different from the traditional subdivision design method of which the mixer circuit is composed of functional unit circuits. Instead, the GDM adopts the overall performance of the mixer (conversion loss) as an optimization goal. The continuous structures of the circuit are described by ideal transmission line models and waveguide models, meanwhile, the S-parameters of the de-embedded model are used to describe the discontinuous structures. The measured single-sideband (SSB) conversion loss is basically consistent with the simulation results, which verifies the accuracy and reliability of the GDM. When local oscillator (LO) frequency is fixed at 110 GHz, the measured SSB conversion loss is less than 10 dB with the average value of 8.1 dB from 198 to 238 GHz. The minimum conversion loss of the mixer is 6.35 dB at 207 GHz. The measured double-sideband noise temperature of the mixer is less than 924 K at an intermediate frequency of 1.6 GHz. The GDM has the characteristics with a wide frequency band, small circuit size, simple structure, low LO power, and stable performance, and can also be applied to other terahertz components.
topic Terahertz components
terahertz sub-harmonic mixer
subdivision design method
global design method
url https://ieeexplore.ieee.org/document/8657350/
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