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Investigation on Stray-Capacitance Influences of Coaxial Cables in Capacitive Transducers for a Space Inertial Sensor

Ultra-sensitive inertial sensors are one of the key components in satellite Earth’s gravity field recovery missions and space gravitational wave detection missions. Low-noise capacitive position transducers are crucial to these missions to achieve the scientific goal. However, in actual engineering...

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Autores principales: Yu, Jianbo, Wang, Chengrui, Wang, Ying, Bai, Yanzheng, Hu, Ming, Li, Ke, Li, Zhuxi, Qu, Shaobo, Wu, Shuchao, Zhou, Zebing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7308964/
https://www.ncbi.nlm.nih.gov/pubmed/32517190
http://dx.doi.org/10.3390/s20113233
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author Yu, Jianbo
Wang, Chengrui
Wang, Ying
Bai, Yanzheng
Hu, Ming
Li, Ke
Li, Zhuxi
Qu, Shaobo
Wu, Shuchao
Zhou, Zebing
author_facet Yu, Jianbo
Wang, Chengrui
Wang, Ying
Bai, Yanzheng
Hu, Ming
Li, Ke
Li, Zhuxi
Qu, Shaobo
Wu, Shuchao
Zhou, Zebing
author_sort Yu, Jianbo
collection PubMed
description Ultra-sensitive inertial sensors are one of the key components in satellite Earth’s gravity field recovery missions and space gravitational wave detection missions. Low-noise capacitive position transducers are crucial to these missions to achieve the scientific goal. However, in actual engineering applications, the sensor head and electronics unit usually place separately in the satellite platform where a connecting cable is needed. In this paper, we focus on the stray-capacitance influences of coaxial cables which are used to connect the mechanical core and the electronics. Specially, for the capacitive transducer with a differential transformer bridge structure usually used in high-precision space inertial sensors, a connecting method of a coaxial cable between the transformer’s secondary winding and front-end circuit’s preamplifier is proposed to transmit the AC modulated analog voltage signal. The measurement and noise models including the stray-capacitance of the coaxial cable under this configuration is analyzed. A prototype system is set up to investigate the influences of the cables experimentally. Three different types and lengths of coaxial cables are chosen in our experiments to compare their performances. The analysis shows that the stray-capacitance will alter the circuit’s resonant frequency which could be adjusted by additional tuning capacitance, then under the optimal resonant condition, the output voltage noises of the preamplifier are measured and the sensitivity coefficients are also calibrated. Meanwhile, the stray-capacitance of the cables is estimated. Finally, the experimental results show that the noise level of this circuit with the selected cables could all achieve 1–2 × 10(−7) pF/Hz(1/2) at 0.1 Hz.
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spelling pubmed-73089642020-06-25 Investigation on Stray-Capacitance Influences of Coaxial Cables in Capacitive Transducers for a Space Inertial Sensor Yu, Jianbo Wang, Chengrui Wang, Ying Bai, Yanzheng Hu, Ming Li, Ke Li, Zhuxi Qu, Shaobo Wu, Shuchao Zhou, Zebing Sensors (Basel) Article Ultra-sensitive inertial sensors are one of the key components in satellite Earth’s gravity field recovery missions and space gravitational wave detection missions. Low-noise capacitive position transducers are crucial to these missions to achieve the scientific goal. However, in actual engineering applications, the sensor head and electronics unit usually place separately in the satellite platform where a connecting cable is needed. In this paper, we focus on the stray-capacitance influences of coaxial cables which are used to connect the mechanical core and the electronics. Specially, for the capacitive transducer with a differential transformer bridge structure usually used in high-precision space inertial sensors, a connecting method of a coaxial cable between the transformer’s secondary winding and front-end circuit’s preamplifier is proposed to transmit the AC modulated analog voltage signal. The measurement and noise models including the stray-capacitance of the coaxial cable under this configuration is analyzed. A prototype system is set up to investigate the influences of the cables experimentally. Three different types and lengths of coaxial cables are chosen in our experiments to compare their performances. The analysis shows that the stray-capacitance will alter the circuit’s resonant frequency which could be adjusted by additional tuning capacitance, then under the optimal resonant condition, the output voltage noises of the preamplifier are measured and the sensitivity coefficients are also calibrated. Meanwhile, the stray-capacitance of the cables is estimated. Finally, the experimental results show that the noise level of this circuit with the selected cables could all achieve 1–2 × 10(−7) pF/Hz(1/2) at 0.1 Hz. MDPI 2020-06-06 /pmc/articles/PMC7308964/ /pubmed/32517190 http://dx.doi.org/10.3390/s20113233 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yu, Jianbo
Wang, Chengrui
Wang, Ying
Bai, Yanzheng
Hu, Ming
Li, Ke
Li, Zhuxi
Qu, Shaobo
Wu, Shuchao
Zhou, Zebing
Investigation on Stray-Capacitance Influences of Coaxial Cables in Capacitive Transducers for a Space Inertial Sensor
title Investigation on Stray-Capacitance Influences of Coaxial Cables in Capacitive Transducers for a Space Inertial Sensor
title_full Investigation on Stray-Capacitance Influences of Coaxial Cables in Capacitive Transducers for a Space Inertial Sensor
title_fullStr Investigation on Stray-Capacitance Influences of Coaxial Cables in Capacitive Transducers for a Space Inertial Sensor
title_full_unstemmed Investigation on Stray-Capacitance Influences of Coaxial Cables in Capacitive Transducers for a Space Inertial Sensor
title_short Investigation on Stray-Capacitance Influences of Coaxial Cables in Capacitive Transducers for a Space Inertial Sensor
title_sort investigation on stray-capacitance influences of coaxial cables in capacitive transducers for a space inertial sensor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7308964/
https://www.ncbi.nlm.nih.gov/pubmed/32517190
http://dx.doi.org/10.3390/s20113233
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