High-frequency antenna element and high-frequency antenna module
US-2017288305-A1 · Oct 5, 2017 · US
US2019269048A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2019269048-A1 |
| Application number | US-201716319722-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jul 19, 2017 |
| Priority date | Jul 22, 2016 |
| Publication date | Aug 29, 2019 |
| Grant date | — |
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Provided is an electromagnetic-wave absorber that can favorably absorb electromagnetic waves of a plurality of different frequencies in a high frequency band equal to or higher than the millimeter-wave band. The electromagnetic-wave absorber includes an electromagnetic-wave absorbing layer 1 in which a plurality of magnetic layers 1a-1e are stacked, each magnetic layer containing magnetic iron oxide that magnetically resonates at a high frequency in a band equal to or higher than the millimeter-wave band. A value of an anisotropic magnetic field (HA) of the magnetic iron oxide contained in at least one of the magnetic layers is different from that of the magnetic iron oxide contained in another of the magnetic layers.
Opening claim text (preview).
1 . An electromagnetic-wave absorber comprising an electromagnetic-wave absorbing layer in which a plurality of magnetic layers are stacked, each magnetic layer containing magnetic iron oxide that magnetically resonates at a high frequency in a band equal to or higher than a millimeter-wave band, wherein a value of an anisotropic magnetic field (H A ) of the magnetic iron oxide contained in at least one of the magnetic layers is different from that of the magnetic iron oxide contained in another of the magnetic layers. 2 . The electromagnetic-wave absorber according to claim 1 , wherein a frequency characteristic of electromagnetic waves to be absorbed by the electromagnetic-wave absorber has a plurality of peaks, and the number of the peaks of the frequency characteristic is equal to the number of the magnetic layers stacked. 3 . The electromagnetic-wave absorber according to claim 1 , wherein an input impedance between the adjacent magnetic layers is matched, and an input impedance of the magnetic layer disposed on an uppermost surface on an electromagnetic-wave incident side is matched to an impedance in the air. 4 . The electromagnetic-wave absorber according to claim 1 , wherein the input impedance of the magnetic layers gradually increases from the electromagnetic-wave incident side along a traveling direction of electromagnetic waves. 5 . The electromagnetic-wave absorber according to claim 1 , wherein the magnetic layers contain the magnetic iron oxide in a particulate form and a resin binder, and thus the electromagnetic-wave absorber is formed into a sheet having flexibility. 6 . The electromagnetic-wave absorber according to claim 1 , wherein the magnetic iron oxide is epsilon iron oxide. 7 . The electromagnetic-wave absorber according to claim 1 , wherein a reflective layer made of at least one of a metal plate, a metal foil or a metal-deposited film, is stacked on a surface of the electromagnetic-wave absorbing layer that is not on the electromagnetic-wave incident side. 8 . The electromagnetic-wave absorber according to claim 7 , wherein the reflective layer and the electromagnetic-wave absorbing layer are stacked sequentially on a resin base, and an adhesive layer is formed on a surface of the resin base on a side opposite to a side where the electromagnetic-wave absorbing layer is disposed.
characterised by their coercivity {(H01F1/40 takes precedence)} · CPC title
Screening of apparatus or components against electric or magnetic fields (devices for absorbing radiation from an antenna H01Q17/00) · CPC title
in a bonding agent · CPC title
Physical, chemical or physicochemical properties · CPC title
Magnetic shielding materials · CPC title
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