PCB Transducer Coil Design for a Low-Noise Magnetic Measurement System in Space Missions

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Membrilla, Jose A. Vílchez, Mateos, Ignacio, Quirós-Olozábal, Ángel, Pantoja, Mario F., Sánchez, Clemente Cobos
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929628732456960
author Membrilla, Jose A. Vílchez
Mateos, Ignacio
Quirós-Olozábal, Ángel
Pantoja, Mario F.
Sánchez, Clemente Cobos
author_facet Membrilla, Jose A. Vílchez
Mateos, Ignacio
Quirós-Olozábal, Ángel
Pantoja, Mario F.
Sánchez, Clemente Cobos
contents Here a minimum power dissipation coil transducer has been designed to allow in-flight noise characterization of a low-frequency magnetic measurement system. The coil was produced using PCB technology to provide mechanical stability and easy integration close to the magnetic sensors. The transducer design strategy relies on an inverse boundary element method, which has been efficiently adapted to produce optimal multilayer PCB coils subjected to different geometrical and performance constraints. The resulting coil transducer was simulated and experimentally validated under realistic conditions where the payload is magnetically shielded from low-frequency fluctuations by using a three-layer cylindrical mu-metal enclosure. The results show that the specific transducer coil proposed efficiently produces stable magnetic conditions for adequate validation of the magnetic diagnostic system while providing reduced power dissipation and optimal mechanical stability.
format Preprint
id arxiv_https___arxiv_org_abs_2412_10043
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle PCB Transducer Coil Design for a Low-Noise Magnetic Measurement System in Space Missions
Membrilla, Jose A. Vílchez
Mateos, Ignacio
Quirós-Olozábal, Ángel
Pantoja, Mario F.
Sánchez, Clemente Cobos
Instrumentation and Detectors
Applied Physics
Here a minimum power dissipation coil transducer has been designed to allow in-flight noise characterization of a low-frequency magnetic measurement system. The coil was produced using PCB technology to provide mechanical stability and easy integration close to the magnetic sensors. The transducer design strategy relies on an inverse boundary element method, which has been efficiently adapted to produce optimal multilayer PCB coils subjected to different geometrical and performance constraints. The resulting coil transducer was simulated and experimentally validated under realistic conditions where the payload is magnetically shielded from low-frequency fluctuations by using a three-layer cylindrical mu-metal enclosure. The results show that the specific transducer coil proposed efficiently produces stable magnetic conditions for adequate validation of the magnetic diagnostic system while providing reduced power dissipation and optimal mechanical stability.
title PCB Transducer Coil Design for a Low-Noise Magnetic Measurement System in Space Missions
topic Instrumentation and Detectors
Applied Physics
url https://arxiv.org/abs/2412.10043