Anechoic chamber having multi-layer electromagnetic wave absorbers of sintered ferrite and ferrite composite membrane
Kanako Naito, Tetsuya Mizumoto, Michiharu Takahashi, Sumio Kunieda
Abstract
Kanako Naito, Tetsuya Mizumoto, Michiharu Takahashi, Sumio Kunieda
Abstract
The structure of the multi-layer electromagnetic wave absorber composed of sintered ferrite and ferrite composite membrane is proposed to improve radiowave absorbing characteristics. The absorption characteristics of the multi-layer absorber can be largely extended compared with the single sintered ferrite layer. Moreover, it is shown that the site attenuation characteristics satisfy the FCC standard for 3 m and 10 m transmission distance (3 m method and 10 m method) in the anechoic chambers in which the novel absorbers are fitted. The wall thickness of the novel anechoic chamber can be made thinner of less than 90 mm. Consequently, the anechoic chamber for the 3 m method can reduce its installation area to about 60% of the conventional one.>
OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The structure of the multi-layer electromagnetic wave absorber composed of sintered ferrite and ferrite composite membrane is proposed to improve radiowave absorbing characteristics. The absorption characteristics of the multi-layer absorber can be largely extended compared with the single sintered ferrite layer. Moreover, it is shown that the site attenuation characteristics satisfy the FCC standard for 3 m and 10 m transmission distance (3 m method and 10 m method) in the anechoic chambers in which the novel absorbers are fitted. The wall thickness of the novel anechoic chamber can be made thinner of less than 90 mm. Consequently, the anechoic chamber for the 3 m method can reduce its installation area to about 60% of the conventional one.>
Key concepts: Anechoic chamber, Ferrite (magnet), Materials science, Composite number, Composite material, Attenuation, Acoustics, Absorption (acoustics)