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Archimedean Spiral Pairs with no Electrical Connections as a Passive Wireless Implantable Sensor

We have developed, modeled, fabricated, and tested a passive wireless sensor system that exhibits a linear frequency-displacement relationship. The displacement sensor is comprised of two anti-aligned Archimedean coils separated by an insulating dielectric layer. There are no electrical connections...

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Autores principales: Drazan, John F, Gunko, Aleksandra, Dion, Matthew, Abdoun, Omar, Cady, Nathaniel C, Connor, Kenneth A, Ledet, Eric H
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4945132/
https://www.ncbi.nlm.nih.gov/pubmed/27430033
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author Drazan, John F
Gunko, Aleksandra
Dion, Matthew
Abdoun, Omar
Cady, Nathaniel C
Connor, Kenneth A
Ledet, Eric H
author_facet Drazan, John F
Gunko, Aleksandra
Dion, Matthew
Abdoun, Omar
Cady, Nathaniel C
Connor, Kenneth A
Ledet, Eric H
author_sort Drazan, John F
collection PubMed
description We have developed, modeled, fabricated, and tested a passive wireless sensor system that exhibits a linear frequency-displacement relationship. The displacement sensor is comprised of two anti-aligned Archimedean coils separated by an insulating dielectric layer. There are no electrical connections between the two coils and there are no onboard electronics. The two coils are inductively and capacitively coupled due to their close proximity. The sensor system is interrogated wirelessly by monitoring the return loss parameter from a vector network analyzer. The resonant frequency of the sensor is dependent on the displacement between the two coils. Due to changes in the inductive and capacitive coupling between the coils at different distances, the resonant frequency is modulated by coil separation. In a specified range, the frequency shift can be linearized with respect to coil separation. Batch fabrication techniques were used to fabricate copper coils for experimental testing with air as the dielectric. Through testing, we validated the performance of sensors as predicted within acceptable errors. Because of its simplicity, this displacement sensor has potential applications for in vivo sensing.
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spelling pubmed-49451322016-07-14 Archimedean Spiral Pairs with no Electrical Connections as a Passive Wireless Implantable Sensor Drazan, John F Gunko, Aleksandra Dion, Matthew Abdoun, Omar Cady, Nathaniel C Connor, Kenneth A Ledet, Eric H J Biomed Technol Res Article We have developed, modeled, fabricated, and tested a passive wireless sensor system that exhibits a linear frequency-displacement relationship. The displacement sensor is comprised of two anti-aligned Archimedean coils separated by an insulating dielectric layer. There are no electrical connections between the two coils and there are no onboard electronics. The two coils are inductively and capacitively coupled due to their close proximity. The sensor system is interrogated wirelessly by monitoring the return loss parameter from a vector network analyzer. The resonant frequency of the sensor is dependent on the displacement between the two coils. Due to changes in the inductive and capacitive coupling between the coils at different distances, the resonant frequency is modulated by coil separation. In a specified range, the frequency shift can be linearized with respect to coil separation. Batch fabrication techniques were used to fabricate copper coils for experimental testing with air as the dielectric. Through testing, we validated the performance of sensors as predicted within acceptable errors. Because of its simplicity, this displacement sensor has potential applications for in vivo sensing. 2014-08-18 2014 /pmc/articles/PMC4945132/ /pubmed/27430033 Text en http://creativecommons.org/licenses/by/2.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Drazan, John F
Gunko, Aleksandra
Dion, Matthew
Abdoun, Omar
Cady, Nathaniel C
Connor, Kenneth A
Ledet, Eric H
Archimedean Spiral Pairs with no Electrical Connections as a Passive Wireless Implantable Sensor
title Archimedean Spiral Pairs with no Electrical Connections as a Passive Wireless Implantable Sensor
title_full Archimedean Spiral Pairs with no Electrical Connections as a Passive Wireless Implantable Sensor
title_fullStr Archimedean Spiral Pairs with no Electrical Connections as a Passive Wireless Implantable Sensor
title_full_unstemmed Archimedean Spiral Pairs with no Electrical Connections as a Passive Wireless Implantable Sensor
title_short Archimedean Spiral Pairs with no Electrical Connections as a Passive Wireless Implantable Sensor
title_sort archimedean spiral pairs with no electrical connections as a passive wireless implantable sensor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4945132/
https://www.ncbi.nlm.nih.gov/pubmed/27430033
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