2013Unpublished venueRequires access

Performance study of preliminary mini anechoic chamber fitted with coconut shell coated absorbers

Hasnain Abdullah, Juliana Md Sharif, Mohd Nasir Taib, Rusnani Ariffin, Nurul Iza Muhammad, Rohaiza Baharudin, Asmalia Zanal, Ida Rahayu Mohamed Noordin, Noorhayati Mohamad Noor, Azizah Ahmad, Siti Zura A. Jalil, Wan Khairuddin Wan Ali

Open publisher page 3 citations

Abstract

An anechoic chamber is considered good when there is no signal reflection inside the chamber and also when there is no incoming signal from outside the chamber. The key element inside an anechoic chamber is the absorbing material. The evaluations of mini anechoic chamber fitted with coated absorbers were carried out by analyzing the absorption performance. The study includes the comparison of measurement with and without coated absorbers. The evaluations were carried out using 500 MHz, 2 GHz and 10GHz frequencies. The most significant result shows an absorption level of up to approximately 75% when the chamber was fitted with coated absorbers for 10 GHz.

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What this paper is about

An anechoic chamber is considered good when there is no signal reflection inside the chamber and also when there is no incoming signal from outside the chamber. The key element inside an anechoic chamber is the absorbing material. The evaluations of mini anechoic chamber fitted with coated absorbers were carried out by analyzing the absorption performance. The study includes the comparison of measurement with and without coated absorbers. The evaluations were carried out using 500 MHz, 2 GHz and 10GHz frequencies. The most significant result shows an absorption level of up to approximately 75% when the chamber was fitted with coated absorbers for 10 GHz.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

An anechoic chamber is considered good when there is no signal reflection inside the chamber and also when there is no incoming signal from outside the chamber. The key element inside an anechoic chamber is the absorbing material. The evaluations of mini anechoic chamber fitted with coated absorbers were carried out by analyzing the absorption performance. The study includes the comparison of measurement with and without coated absorbers. The evaluations were carried out using 500 MHz, 2 GHz and 10GHz frequencies. The most significant result shows an absorption level of up to approximately 75% when the chamber was fitted with coated absorbers for 10 GHz.

Key concepts: Anechoic chamber, Reflection (computer programming), Absorption (acoustics), Materials science, SIGNAL (programming language), Shell (structure), Optics, Acoustics

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