Indonesian Journal of Electrical Engineering and Computer Science
Vol 15, No 3: September 2019

Design of metal plate temperature sensor based on fiber bragg grating (FBG)

Nani Fadzlina Naim (Universiti Teknologi MARA (UiTM))
Nur Shahira Anuar (Universiti Teknologi MARA (UiTM))
Suzi Seroja Sarnin (Universiti Teknologi MARA (UiTM))
Norsuzila Yaa’cob (Universiti Teknologi MARA (UiTM))



Article Info

Publish Date
01 Sep 2019

Abstract

This paper presents the design and characterization for metal plate temperature sensor based on Fiber Bragg Grating (FBG). Five types of FBGs were used such as Acrylate FBG, Bare FBG, Bimetallic Acrylate FBG, Bimetallic Bare FBG and Ceramic FBG to determine the sensitivity on four different plates at 23℃ to 70℃, experimentally. The four different plates are Aluminium, Aluminium Coating, Zinc and Zinc Coating has been used because of their excellent thermal conductivity. Two metals which are Copper and Zinc have been chosen to design the Bimetallic Strips FBG due to the Coefficient Thermal Expansion (CTE) to improve their sensitivity. The results show that Ceramic FBG has been chosen as the best temperature sensor because it has the highest sensitivity compared to other FBGs with sensitivity value of 50.4 and 59.7 pm 16(℃)-1">  when in contact with Aluminium and Zinc plates, respectively. In addition, Aluminium and Zinc plates has been chosen as the most reliable metal plates where it can transfer heat efficiently due to high thermal conductive which is 237 W/mK and 116 W/mK thus it gives the highest sensitivity when measured using Bimetallic Acrylate, Bimetallic Bare and Ceramic FBG.

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