IP Library Granted Patent US 8,745,855
Granted Patent B2
US 8,745,855 · App. 13/361,392 · Granted Jun 10, 2014

Method for producing antenna device

Inventors: Katsuhisa Orihara (Tokyo, JP); Satoru Sugita (Tokyo, JP); Norio Saito (Tokyo, JP); Masayoshi Kanno (Tokyo, JP)
Assignee: Dexerials Corporation
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Quick Facts
Patent No.
US 8,745,855
App. No.
13/361,392
Granted
Jun 10, 2014
Kind
B2
Abstract

A method for manufacturing an antenna device is provided. The manufacturing method includes forming an antenna circuit so that the resonance frequency of the antenna circuit will be lower than an oscillation frequency of the reader/ writer and affixing a magnetic sheet to an antenna coil via an adhesive. The antenna circuit includes the antenna coil that receives the magnetic field transmitted from the reader/ writer and a capacitor electrically connected to the antenna coil. The magnetic sheet is at a face-to-face position with respect to the antenna coil and is configured to change the inductance of the antenna coil. The adhesive is of a film thickness to change the inductance so that the resonance frequency of the resonance circuit will be coincident with the oscillation frequency depending on the spacing between the antenna coil and the magnetic sheet.

Claims (17)

1. A method for manufacturing an antenna device that is inductively coupled to a transmitter on receipt of a magnetic field transmitted at preset an oscillation frequency from the transmitter to provide for a communication enabled state, the method comprising:

forming a resonance circuit including an antenna coil that receives the magnetic field transmitted from the transmitter and a variable capacitor electrically connected to the antenna coil so that a resonance frequency of the resonance circuit will be lower than the preset oscillation frequency; and

affixing a magnetic sheet to the antenna coil via an insulation material,

wherein the magnetic sheet is formed at a face-to-face position with respect to the antenna coil and configured to change an inductance of the antenna coil, and a thickness of the insulation material allows the inductance to change so that the resonance frequency of the resonance circuit is coincident with the oscillation frequency depending on a spacing between the antenna coil and the magnetic sheet, and

wherein the affixing of the magnetic sheet comprises:

measuring the resonance frequency of the resonance circuit; and

affixing the magnetic sheet to the antenna coil via the insulation material having the thickness which, based on measured results of the resonant frequency, will provide for the resonance frequency of the resonance circuit coincident with the oscillation frequency.

2. A method for manufacturing an antenna device that is inductively coupled to a transmitter on receipt of a magnetic field transmitted at preset an oscillation frequency from the transmitter to provide for a communication enabled state, the method comprising:

forming a resonance circuit including an antenna coil that receives the magnetic field transmitted from the transmitter and a variable capacitor electrically connected to the antenna coil so that a resonance frequency of the resonance circuit will be lower than the preset oscillation frequency; and

affixing a magnetic sheet to the antenna coil via an insulation material,

wherein the magnetic sheet is formed at a face-to-face position with respect to the antenna coil and configured to change an inductance of the antenna coil, and a thickness of the insulation material allows the inductance to change so that the resonance frequency of the resonance circuit is coincident with the oscillation frequency depending on a spacing between the antenna coil and the magnetic sheet, and

wherein the affixing of the magnetic sheet comprises:

affixing the antenna coil to the magnetic sheet via an adhesive, curable by preset curing processing, as the insulation material;

changing the spacing as the resonance frequency of the resonance circuit is measured; and

curing the adhesive to affix the antenna coil and the magnetic sheet together when the resonance frequency of the resonance circuit has become equal to the oscillation frequency.

3. The method according to claim 2 , wherein the forming of the resonance circuit comprises using a capacitor formed of a ferroelectric material, and the capacitance of the capacitor decreases monotonously with rise in temperature.

4. The method according to claim 1 , wherein the forming of the resonance circuit comprises using a capacitor formed of a ferroelectric material, and the capacitance of the capacitor decreases monotonously with rise in temperature.

Assignments (2)
CHANGE OF NAME Recorded Apr 15, 2013
From: SONY CHEMICAL & INFORMATION DEVICE CORPORATION
To: DEXERIALS CORPORATION
Reel/Frame 030219/0679 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2012
From: ORIHARA, KATSUHISA; SUGITA, SATORU; SAITO, NORIO; KANNO, MASAYOSHI
To: SONY CHEMICAL & INFORMATION DEVICE CORPORATION
Reel/Frame 028364/0424 →
Priority Claims (1)
JP 2009-175750 · Jul 28, 2009 · national
Continuity (2)
Continuation PCTJP2010062617 · Jul 27, 2010
Related Publication 20120204414A1 · Aug 16, 2012