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A 0.617–2.7 GHz Highly Linear High-Power Dual Port 15 Throws Antenna Switch Module (DP15T-ASM) with Branched-Antenna Technique and Termination Mode

This paper presents a Dual-Port-15-Throw (DP15T) antenna switch module (ASM) Radio Frequency (RF) switch implemented by a branched antenna technique which has a high linearity for wireless communications and various frequency bands, including a low- frequency band of 617–960 MHz, a mid-frequency ban...

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Autores principales: Rad, Reza E., Choi, Kyung-Duk, Kim, Sung-Jin, Pu, Young-Gun, Jung, Yeon-Jae, Huh, Hyung-Ki, Yoo, Joon-Mo, Kim, Seok-Kee, Lee, Kang-Yoon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8953518/
https://www.ncbi.nlm.nih.gov/pubmed/35336447
http://dx.doi.org/10.3390/s22062276
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author Rad, Reza E.
Choi, Kyung-Duk
Kim, Sung-Jin
Pu, Young-Gun
Jung, Yeon-Jae
Huh, Hyung-Ki
Yoo, Joon-Mo
Kim, Seok-Kee
Lee, Kang-Yoon
author_facet Rad, Reza E.
Choi, Kyung-Duk
Kim, Sung-Jin
Pu, Young-Gun
Jung, Yeon-Jae
Huh, Hyung-Ki
Yoo, Joon-Mo
Kim, Seok-Kee
Lee, Kang-Yoon
author_sort Rad, Reza E.
collection PubMed
description This paper presents a Dual-Port-15-Throw (DP15T) antenna switch module (ASM) Radio Frequency (RF) switch implemented by a branched antenna technique which has a high linearity for wireless communications and various frequency bands, including a low- frequency band of 617–960 MHz, a mid-frequency band of 1.4–2.2 GHz, and a high-frequency band of 2.3–2.7 GHz. To obtain an acceptable Insertion Loss (IL) and provide a consistent input for each throw, a branched antenna technique is proposed that distributes a unified magnetic field at the inputs of the throws. The other role of the proposed antenna is to increase the inductance effects for the closer ports to the antenna pad in order to decrease IL at higher frequencies. The module is enhanced by two termination modes for each antenna path to terminate the antenna when the switch is not operating. The module is fabricated in the silicon-on-insulator CMOS process. The measurement results show a maximum IMD2 and IMD3 of −100 dBm, while for the second and third harmonics the maximum value is −89 dBc. The module operates with a maximum power handling of 35 dBm. Experimental results show a maximum IL of 0.34 and 0.92 dB and a minimum isolation of 49 dB and 35.5 dB at 0.617 GHz and 2.7 GHz frequencies, respectively. The module is implemented in a compact way to occupy an area of 0.74 mm(2). The termination modes show a second harmonic of 75 dBc, which is desirable.
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spelling pubmed-89535182022-03-26 A 0.617–2.7 GHz Highly Linear High-Power Dual Port 15 Throws Antenna Switch Module (DP15T-ASM) with Branched-Antenna Technique and Termination Mode Rad, Reza E. Choi, Kyung-Duk Kim, Sung-Jin Pu, Young-Gun Jung, Yeon-Jae Huh, Hyung-Ki Yoo, Joon-Mo Kim, Seok-Kee Lee, Kang-Yoon Sensors (Basel) Communication This paper presents a Dual-Port-15-Throw (DP15T) antenna switch module (ASM) Radio Frequency (RF) switch implemented by a branched antenna technique which has a high linearity for wireless communications and various frequency bands, including a low- frequency band of 617–960 MHz, a mid-frequency band of 1.4–2.2 GHz, and a high-frequency band of 2.3–2.7 GHz. To obtain an acceptable Insertion Loss (IL) and provide a consistent input for each throw, a branched antenna technique is proposed that distributes a unified magnetic field at the inputs of the throws. The other role of the proposed antenna is to increase the inductance effects for the closer ports to the antenna pad in order to decrease IL at higher frequencies. The module is enhanced by two termination modes for each antenna path to terminate the antenna when the switch is not operating. The module is fabricated in the silicon-on-insulator CMOS process. The measurement results show a maximum IMD2 and IMD3 of −100 dBm, while for the second and third harmonics the maximum value is −89 dBc. The module operates with a maximum power handling of 35 dBm. Experimental results show a maximum IL of 0.34 and 0.92 dB and a minimum isolation of 49 dB and 35.5 dB at 0.617 GHz and 2.7 GHz frequencies, respectively. The module is implemented in a compact way to occupy an area of 0.74 mm(2). The termination modes show a second harmonic of 75 dBc, which is desirable. MDPI 2022-03-15 /pmc/articles/PMC8953518/ /pubmed/35336447 http://dx.doi.org/10.3390/s22062276 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Rad, Reza E.
Choi, Kyung-Duk
Kim, Sung-Jin
Pu, Young-Gun
Jung, Yeon-Jae
Huh, Hyung-Ki
Yoo, Joon-Mo
Kim, Seok-Kee
Lee, Kang-Yoon
A 0.617–2.7 GHz Highly Linear High-Power Dual Port 15 Throws Antenna Switch Module (DP15T-ASM) with Branched-Antenna Technique and Termination Mode
title A 0.617–2.7 GHz Highly Linear High-Power Dual Port 15 Throws Antenna Switch Module (DP15T-ASM) with Branched-Antenna Technique and Termination Mode
title_full A 0.617–2.7 GHz Highly Linear High-Power Dual Port 15 Throws Antenna Switch Module (DP15T-ASM) with Branched-Antenna Technique and Termination Mode
title_fullStr A 0.617–2.7 GHz Highly Linear High-Power Dual Port 15 Throws Antenna Switch Module (DP15T-ASM) with Branched-Antenna Technique and Termination Mode
title_full_unstemmed A 0.617–2.7 GHz Highly Linear High-Power Dual Port 15 Throws Antenna Switch Module (DP15T-ASM) with Branched-Antenna Technique and Termination Mode
title_short A 0.617–2.7 GHz Highly Linear High-Power Dual Port 15 Throws Antenna Switch Module (DP15T-ASM) with Branched-Antenna Technique and Termination Mode
title_sort 0.617–2.7 ghz highly linear high-power dual port 15 throws antenna switch module (dp15t-asm) with branched-antenna technique and termination mode
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8953518/
https://www.ncbi.nlm.nih.gov/pubmed/35336447
http://dx.doi.org/10.3390/s22062276
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