Compact phase shifter using arbitrary length of two coupled transmission lines

Abstract This article presents a compact structure of two coupled transmission lines with two reactive loads for the tunable phase shifter using a printed‐circuit board. The proposed circuit offers size reduction and wide phase shift range. The conventional reflection‐type phase shifter approach has...

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Main Authors: Tso‐Jung Chang, Krishna Pande, Ting‐Jui Huang, Heng‐Tung Hsu
Format: Article
Language:English
Published: Wiley 2021-08-01
Series:IET Circuits, Devices and Systems
Online Access:https://doi.org/10.1049/cds2.12030
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spelling doaj-77aa7414abe846bfa6a145f96f8cf1372021-07-15T12:27:54ZengWileyIET Circuits, Devices and Systems1751-858X1751-85982021-08-0115540341410.1049/cds2.12030Compact phase shifter using arbitrary length of two coupled transmission linesTso‐Jung Chang0Krishna Pande1Ting‐Jui Huang2Heng‐Tung Hsu3International College of Semiconductor Technology National Chiao Tung University Taiwan, ROCInternational College of Semiconductor Technology National Chiao Tung University Taiwan, ROCInternational College of Semiconductor Technology National Chiao Tung University Taiwan, ROCInternational College of Semiconductor Technology National Chiao Tung University Taiwan, ROCAbstract This article presents a compact structure of two coupled transmission lines with two reactive loads for the tunable phase shifter using a printed‐circuit board. The proposed circuit offers size reduction and wide phase shift range. The conventional reflection‐type phase shifter approach has large total electrical length and high insertion loss. To overcome such technical issues, arbitrary‐length two coupled transmission lines were introduced in this work. After optimising the length and the even‐mode characteristic impedance of the coupled transmission lines, tuning the odd‐mode characteristic impedance can decide the variation of two adjustable reactive loads. Based on the proposed structure, further discussion of the wideband tuning operation and measurement of the phase shift range with −20 dB return loss are addressed in this article. The fabricated circuit is measured at 700  to 2400 MHz. The even‐ and odd‐mode characteristic impedance of two coupled transmission lines are 100‐Ω and 70‐Ω having about 2.16 dB maximum insertion loss, while maintaining 181‐degree phase shift range and 40‐degree total electrical length of transmission lines at 700 MHz, respectively, providing about 78% to 89% size reduction compared with the previous research. Our data indicates that insertion loss, multi‐band operation, and miniaturisation are superior to any published data.https://doi.org/10.1049/cds2.12030
collection DOAJ
language English
format Article
sources DOAJ
author Tso‐Jung Chang
Krishna Pande
Ting‐Jui Huang
Heng‐Tung Hsu
spellingShingle Tso‐Jung Chang
Krishna Pande
Ting‐Jui Huang
Heng‐Tung Hsu
Compact phase shifter using arbitrary length of two coupled transmission lines
IET Circuits, Devices and Systems
author_facet Tso‐Jung Chang
Krishna Pande
Ting‐Jui Huang
Heng‐Tung Hsu
author_sort Tso‐Jung Chang
title Compact phase shifter using arbitrary length of two coupled transmission lines
title_short Compact phase shifter using arbitrary length of two coupled transmission lines
title_full Compact phase shifter using arbitrary length of two coupled transmission lines
title_fullStr Compact phase shifter using arbitrary length of two coupled transmission lines
title_full_unstemmed Compact phase shifter using arbitrary length of two coupled transmission lines
title_sort compact phase shifter using arbitrary length of two coupled transmission lines
publisher Wiley
series IET Circuits, Devices and Systems
issn 1751-858X
1751-8598
publishDate 2021-08-01
description Abstract This article presents a compact structure of two coupled transmission lines with two reactive loads for the tunable phase shifter using a printed‐circuit board. The proposed circuit offers size reduction and wide phase shift range. The conventional reflection‐type phase shifter approach has large total electrical length and high insertion loss. To overcome such technical issues, arbitrary‐length two coupled transmission lines were introduced in this work. After optimising the length and the even‐mode characteristic impedance of the coupled transmission lines, tuning the odd‐mode characteristic impedance can decide the variation of two adjustable reactive loads. Based on the proposed structure, further discussion of the wideband tuning operation and measurement of the phase shift range with −20 dB return loss are addressed in this article. The fabricated circuit is measured at 700  to 2400 MHz. The even‐ and odd‐mode characteristic impedance of two coupled transmission lines are 100‐Ω and 70‐Ω having about 2.16 dB maximum insertion loss, while maintaining 181‐degree phase shift range and 40‐degree total electrical length of transmission lines at 700 MHz, respectively, providing about 78% to 89% size reduction compared with the previous research. Our data indicates that insertion loss, multi‐band operation, and miniaturisation are superior to any published data.
url https://doi.org/10.1049/cds2.12030
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AT tingjuihuang compactphaseshifterusingarbitrarylengthoftwocoupledtransmissionlines
AT hengtunghsu compactphaseshifterusingarbitrarylengthoftwocoupledtransmissionlines
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