Antenna, wireless communication device, and antenna forming method
US-2024421495-A1 · Dec 19, 2024 · US
US9502774B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9502774-B2 |
| Application number | US-201113884417-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 10, 2011 |
| Priority date | Nov 12, 2010 |
| Publication date | Nov 22, 2016 |
| Grant date | Nov 22, 2016 |
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Official abstract text for this publication.
The present invention relates to a folded dipole antenna comprising a magnetic material comprising a hexagonal Z-type ferrite and/or a hexagonal Y-type ferrite as a main component in which a radiation element and a reflection element each having a folded dipole structure are disposed, and an RF tag comprising the folded dipole antenna and an IC chip connected to the folded dipole antenna. The RF tag according to the present invention has a smaller size than that of the conventional RF tags and is not susceptible to adverse influence from ambient environments, and can be operated at an UHF band or surrounding frequency bands thereof.
Opening claim text (preview).
The invention claimed is: 1. A folded dipole antenna comprising a magnetic material and only two dipole elements disposed in the magnetic material, wherein the only two dipole elements disposed in the magnetic material consist of one radiation element and one reflection element, the one radiation element has a folded dipole structure, and the one reflection element has a folded dipole structure. 2. The folded dipole antenna according to claim 1 , wherein the magnetic material comprises a hexagonal Z-type ferrite and/or a hexagonal Y-type ferrite as a main component. 3. The folded dipole antenna according to claim 1 , wherein a rate of change in feeding point impedance of the folded dipole antenna is in a range of −50% to +50%, the rate of change in feeding point impedance of the folded dipole antenna being determined by comparing a first feeding point impedance of the folded dipole antenna when disposed on a foamed polystyrene having a size of 10×5×3 cm with a second feeding point impedance of the folded dipole antenna when contacted with a metal plate having a size of 10×5×0.2 cm. 4. The folded dipole antenna according to claim 3 , wherein the rate of change in feeding point impedance of the folded dipole antenna is in the range of −30% to +30%. 5. The folded dipole antenna according to claim 3 , wherein the rate of change in feeding point impedance of the folded dipole antenna is in the range of −10% to +10%. 6. The folded dipole antenna according to claim 1 , wherein a rate of change in feeding point impedance of the folded dipole antenna is in a range of −10% to +10%, the rate of change in feeding point impedance of the folded dipole being determined by comparing a first feeding point impedance before a heat treatment in which the folded dipole antenna is held at 300° C. for 5 seconds with a second feeding point impedance after a heat treatment in which the folded dipole antenna is held at 300° C. for 5 seconds. 7. The folded dipole antenna according to claim 6 , wherein the rate of change in feeding point impedance of the folded dipole antenna is in the range of −5% to +5%.
Radiating elements coated with or embedded in protective material · CPC title
used in active tags, i.e. provided with its own power source or in passive tags, i.e. deriving power from RF signal · CPC title
using a secondary device in the form of a single substantially straight conductive element · CPC title
with folded element or elements, the folded parts being spaced apart a small fraction of operating wavelength (resonant loop antennas H01Q7/00) · CPC title
the antenna being foldable or folded · CPC title
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