JP2009004512A - Non-contact power transfer apparatus - Google Patents

Non-contact power transfer apparatus Download PDF

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JP2009004512A
JP2009004512A JP2007163045A JP2007163045A JP2009004512A JP 2009004512 A JP2009004512 A JP 2009004512A JP 2007163045 A JP2007163045 A JP 2007163045A JP 2007163045 A JP2007163045 A JP 2007163045A JP 2009004512 A JP2009004512 A JP 2009004512A
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coil
thin plate
plate member
shield
induced coil
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JP4966106B2 (en
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Hideki Tamura
秀樹 田村
Atsushi Isaka
篤 井坂
Shosuke Akisada
昭輔 秋定
Yoshinori Sainomoto
良典 才ノ本
Masayuki Suzuki
誠之 鈴木
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Panasonic Electric Works Co Ltd
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Panasonic Electric Works Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Abstract

<P>PROBLEM TO BE SOLVED: To provide a non-contact power transfer apparatus which is capable of connecting a coil (induced coil) terminal easily, and at the same time, the apparatus does not become large size. <P>SOLUTION: In the non-contact power transfer apparatus, a main body consists of a power supplying side member (charger 2) equipped with an induction coil 10 and a power supply side circuit 1, and a power supplied side member (portable device 4) equipped with an induced coil 30 and a power supplied side circuit 3, wherein the power supply from the induction coil 10 to the induced coil 30 is carried out by electromagnetic induction, arranging the induced coil 30 in a magnetic field by the induction coil 10. While providing the induced coil 30 in one side plane 51 of a thin plate member 5, a shield member 6 is provided in another side plane 52, one connection lug 30a among a pair of connection lugs of the induced coil 30 is connected to the shield member 6, the thin plate member 5 is provided in the power supplied side member so that the plane in which the induced coil 30 of the thin plate member 5 is provided is made to face the induction coil 10 of the power supply side member when in power supplying. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、充電器や携帯電話等の携帯機器に内蔵され、充電器と携帯機器との間で電磁誘導を利用して電力を伝達する非接触電力伝達装置に関するものである。   The present invention relates to a non-contact power transmission device that is built in a portable device such as a charger or a mobile phone and transmits electric power between the charger and the portable device using electromagnetic induction.

従来より、携帯電話やデジタルカメラ等の携帯機器は、外部に露出する電気接点を有し、この電気接点を充電器の電気接点に接触させて充電させている。   2. Description of the Related Art Conventionally, mobile devices such as mobile phones and digital cameras have electrical contacts exposed to the outside, and the electrical contacts are charged by contacting the electrical contacts of a charger.

しかしながら、このような充電方式では、電気接点が汚損したり水に濡れて錆びたりして充電できなくなる惧れがあるため、近年、充電器と携帯機器との間で非接触充電を行う非接触電力伝達装置が注目されつつある。非接触電力伝達装置では、充電器と携帯機器には非接触電力伝達用のコイルがそれぞれ内蔵され、前記二つのコイル間の電磁誘導を利用して電力を伝達するものである。   However, in such a charging method, there is a possibility that the electrical contacts may be soiled or get wet with water and rusted so that charging cannot be performed. Therefore, in recent years, non-contact charging is performed between the charger and the portable device. Power transmission devices are drawing attention. In the non-contact power transmission device, the charger and the portable device each have a coil for non-contact power transmission, and transmit power using electromagnetic induction between the two coils.

この非接触電力伝達装置としては、渦巻型コイルを薄板状の磁性材の表面に配設し、コイル端末を電源供給部や充電回路部に接続するものが知られている(例えば特許文献1参照)。   As this non-contact power transmission device, a device in which a spiral coil is disposed on the surface of a thin plate-shaped magnetic material and a coil terminal is connected to a power supply unit or a charging circuit unit is known (for example, see Patent Document 1). ).

しかしながら、特許文献1に示す従来のものにあっては、コイルは極細線で形成されており、コイル端末をそのまま外部の電源供給部または充電回路部に接続するのは困難であり、また、コイル端末を接続する際に別の導電体を設けたりして装置が大型化してしまうものであった。
特開平11−97263号公報
However, in the conventional one shown in Patent Document 1, the coil is formed of an extra fine wire, and it is difficult to connect the coil terminal to an external power supply unit or charging circuit unit as it is. When the terminal is connected, another conductor is provided and the apparatus becomes large.
JP 11-97263 A

本発明は上記従来の問題点に鑑みて発明したものであって、その目的とするところは、コイル(被誘導コイル)端末を容易に接続することができるとともに装置が大型化してしまうことのない非接触電力伝達装置を提供することを課題とするものである。   The present invention was invented in view of the above-described conventional problems, and the object of the present invention is to easily connect a coil (guided coil) terminal and to prevent the apparatus from becoming large. It is an object to provide a non-contact power transmission device.

上記課題を解決するために請求項1に係るにあっては、誘導コイル10と給電側回路1とを備えた給電側部材と、被誘導コイル30と被給電側回路3とを備えた被給電側部材とで主体が構成され、誘導コイル10による磁界内に被誘導コイル30を配置して電磁誘導により誘導コイル10から被誘導コイル30へ給電を行う非接触電力伝達装置において、薄板部材5の一方の面51に被誘導コイル30を設けるとともに他方の面52にシールド材6を設けて被誘導コイル30の一対の接続端子のうち一方の接続端子30aをシールド材6に接続し、前記薄板部材5の被誘導コイル30を設けた方の面が給電を行う際に給電側部材の誘導コイル10を向くように薄板部材5を被給電側部材に設けて成ることを特徴とするものである。   In order to solve the above problem, according to claim 1, a power supply side member including the induction coil 10 and the power supply side circuit 1, a power supply side member including the induced coil 30 and the power supply side circuit 3 is provided. In the non-contact power transmission device in which the main body is constituted by the side member, the induced coil 30 is arranged in the magnetic field of the induction coil 10 and power is fed from the induction coil 10 to the induced coil 30 by electromagnetic induction, The thin plate member is provided with the induced coil 30 on one surface 51 and the shield material 6 on the other surface 52 to connect one connection terminal 30a of the pair of connection terminals of the induced coil 30 to the shield material 6. The thin plate member 5 is provided on the power-supplied member so that the surface on which the five guided coils 30 are provided faces the induction coil 10 of the power-feeding member when power is supplied.

このような構成とすることで、被誘導コイル30の端末の一方(すなわち一方の接続端子30a)をシールド材6に接続して接続を容易にするとともに、被誘導コイル30の端末を接続するための導電体を別に設ける必要がないものである。   With this configuration, one of the terminals of the induced coil 30 (that is, one connection terminal 30a) is connected to the shield member 6 to facilitate the connection, and the terminal of the induced coil 30 is connected. It is not necessary to provide a separate conductor.

また、請求項2に係る発明は、請求項1に係る発明において、薄板部材5の一方の面51に導電部7を設け、被誘導コイル30の一対の接続端子のうち他方の接続端子30bを導電部7に接続して成ることを特徴とするものである。   The invention according to claim 2 is the invention according to claim 1, wherein the conductive portion 7 is provided on one surface 51 of the thin plate member 5, and the other connection terminal 30b of the pair of connection terminals of the induced coil 30 is provided. It is characterized by being connected to the conductive portion 7.

このような構成とすることで、被誘導コイル30の他方の接続端子30bを被給電側回路3に接続するのが容易になる。   With such a configuration, it becomes easy to connect the other connection terminal 30 b of the induced coil 30 to the power-supplied circuit 3.

また、請求項3に係る発明は、請求項1に係る発明において、薄板部材5の他方の面52に二つのシールド材6を互いに接触しないように設け、被誘導コイル30の一対の接続端子のうち一方の接続端子30aを一方のシールド材6aに接続するとともに、他方の接続端子30bを他方のシールド材6bに接続して成ることを特徴とするものである。   Further, the invention according to claim 3 is the invention according to claim 1, wherein the two shield members 6 are provided on the other surface 52 of the thin plate member 5 so as not to contact each other, and the pair of connection terminals of the induced coil 30 are provided. One of the connection terminals 30a is connected to one shield member 6a, and the other connection terminal 30b is connected to the other shield member 6b.

このような構成とすることで、被誘導コイル30の一対の接続端子を被給電側回路3に接続するのが容易になる。   With such a configuration, it becomes easy to connect the pair of connection terminals of the induced coil 30 to the power-supplied circuit 3.

また、請求項4に係る発明は、請求項1に係る発明において、薄板部材5の他方の面52に三つのシールド材6を互いに接触しないように設け、被誘導コイル30の一対の接続端子のうち一方の接続端子30aを一のシールド材6cに接続するとともに、他方の接続端子30bを他の一つのシールド材6dに接続して成ることを特徴とするものである。   Further, the invention according to claim 4 is the invention according to claim 1, wherein the three shield members 6 are provided on the other surface 52 of the thin plate member 5 so as not to contact each other, and the pair of connection terminals of the induced coil 30 are provided. One of the connection terminals 30a is connected to one shield material 6c, and the other connection terminal 30b is connected to another shield material 6d.

このような構成とすることで、被給電側回路3の整流回路11をブリッジ構成として整流する場合でも、被誘導コイル30の接続端子を被給電側回路3に接続するのが容易になる上、被誘導コイル30の接続端子が接続されていないシールド材6を被給電側回路3のグランドに接続することができる。   By adopting such a configuration, even when rectifying the rectifier circuit 11 of the power supplied side circuit 3 as a bridge configuration, it is easy to connect the connection terminal of the induced coil 30 to the power supplied side circuit 3. The shield material 6 to which the connection terminal of the induced coil 30 is not connected can be connected to the ground of the power supplied side circuit 3.

また、請求項5に係る発明は、請求項1乃至4のいずれか一項に係る発明において、シールド材6を箔状に形成し、他方の面52にシールド材6の一部を貼着するとともに残りを折り返して一方の面51に貼着して成ることを特徴とするものである。   The invention according to claim 5 is the invention according to any one of claims 1 to 4, wherein the shield material 6 is formed in a foil shape, and a part of the shield material 6 is adhered to the other surface 52. In addition, the remaining portion is folded and attached to one surface 51.

このような構成とすることで、シールド材6と被誘導コイル30の一対の接続端子との接続を簡単な構成で容易に行うことが可能となり、さらに、被給電側回路3をシールド部材に接続するにあたって薄板部材5の側端面のシールド部材を折り返している部分に接続することが可能となって被誘導コイル30の接続端子を被給電側回路3接続方法の自由度が増すものである。   With such a configuration, it is possible to easily connect the shield material 6 and the pair of connection terminals of the induced coil 30 with a simple configuration, and further connect the power-supplied side circuit 3 to the shield member. In doing so, the shield member on the side end face of the thin plate member 5 can be connected to the folded portion, and the degree of freedom of the method of connecting the power supply side circuit 3 to the connection terminal of the induced coil 30 is increased.

また、請求項6に係る発明は、請求項5に係る発明において、薄板部材5を略矩形状に形成してその一方の面51の略中央部に被誘導コイル30を設け、薄板部材5の長手方向の略中央部において一方のシールド材6a6を短手方向の一方の端部のみに位置させるとともに他方のシールド材6bを前記一方の端部を除いて中央部から他方の端部にかけて位置させ、薄板部材5の長手方向の端部において両方のシールド材6を薄板部材5の短手方向の両半部にそれぞれ位置させ、前記他方のシールド材6bと被誘導コイル30のグランド側の接続端子とを接続して成ることを特徴とするものである。   The invention according to claim 6 is the invention according to claim 5, wherein the thin plate member 5 is formed in a substantially rectangular shape, and the induced coil 30 is provided at a substantially central portion of one surface 51 of the thin plate member 5. One shield member 6a6 is positioned only at one end in the short direction at the substantially central portion in the longitudinal direction, and the other shield member 6b is positioned from the center to the other end except for the one end. Further, both shield members 6 are positioned at both halves in the short direction of the thin plate member 5 at the end in the longitudinal direction of the thin plate member 5, respectively, and the other shield material 6b and the connection terminal on the ground side of the induced coil 30 Are connected to each other.

このような構成とすることで、被誘導コイル30が位置して磁束が通る部分のシールド材6を大きくするとともにこれをグランド接続してグランド効果を高め、被給電側回路3と接続される長手方向の端部では一方のシールド材6a6の薄板部材5の短手方向の長さを長くとって接続が容易になる。   By adopting such a configuration, the shield material 6 at the portion where the induced coil 30 is located and through which the magnetic flux passes is enlarged and connected to the ground to enhance the ground effect. At the end in the direction, the length of the thin plate member 5 of the one shield member 6a6 is increased in the short direction to facilitate connection.

また、請求項7に係る発明は、請求項5に係る発明において、薄板部材5を略矩形状に形成してその一方の面51の略中央部に被誘導コイル30を設け、シールド材6を略矩形状に形成して長手方向の一方の端部から中央部に向けてその途中までスリット61を形成し、他方の面52にシールド材6のスリット61を形成していない側を貼着するとともに残りのスリット61を形成した側の端部を折り返して一方の面51に貼着し、他方の面52に貼着したシールド材6のスリット61と交差してシールド材6を分断して成ることを特徴とするものである。   The invention according to claim 7 is the invention according to claim 5, wherein the thin plate member 5 is formed in a substantially rectangular shape, the guided coil 30 is provided at a substantially central portion of the one surface 51, and the shield material 6 is provided. It is formed in a substantially rectangular shape, and a slit 61 is formed halfway from one end in the longitudinal direction toward the center, and the side of the shield material 6 on which the slit 61 is not formed is attached to the other surface 52. At the same time, the end portion on the side where the remaining slit 61 is formed is folded back and attached to one surface 51, and the shield material 6 is divided by intersecting with the slit 61 of the shield material 6 attached to the other surface 52. It is characterized by this.

このような構成とすることで、簡単な構成で容易に複数のシールド材6を設けることが可能となる。   By setting it as such a structure, it becomes possible to provide the several shielding material 6 easily with a simple structure.

本発明にあっては、被誘導コイルの一方の接続端子をシールド材に接続して、コイル端末の接続を容易にするとともに、被誘導コイルの端末を接続するための導電体を別に設ける必要がなくて、部品点数を削減することが可能となり、装置が大型化するのを防止することができる。   In the present invention, it is necessary to connect one connection terminal of the induced coil to the shield material to facilitate connection of the coil terminal and to provide a separate conductor for connecting the terminal of the induced coil. Therefore, the number of parts can be reduced, and the apparatus can be prevented from being enlarged.

以下、本発明の一実施形態について添付図面に基づいて説明する。   Hereinafter, an embodiment of the present invention will be described with reference to the accompanying drawings.

本発明の非接触電力伝達装置は、給電側の充電器2と、被給電側の電気機器との間で電力伝達を行うためのもので、被給電側の電気機器としては、携帯電話やデジタルカメラのように携帯する機器をはじめその他携帯しない機器であってもよく、特に限定されないものであるが、以下の実施形態では携帯機器4として説明する。   The non-contact power transmission device of the present invention is for transmitting power between the power supply side charger 2 and the power supply side electrical equipment. Examples of the power supply side electrical equipment include mobile phones and digital A device such as a camera and other devices that are not portable may be used, and the device is not particularly limited. However, in the following embodiment, the portable device 4 will be described.

まず、非接触電力伝達装置の基本的な動作について説明する。図2、図3に示すように、給電側回路1を備えた給電側部材である充電器2に設けている誘導コイル10が発生させる磁界内に、被給電側回路3を備えた被給電側部材である携帯機器4に設けている被誘導コイル30を位置させ、電磁誘導によって被誘導コイル30側に電力を伝達するものである。   First, the basic operation of the non-contact power transmission device will be described. As shown in FIGS. 2 and 3, the power-supplied side provided with the power-supplied side circuit 3 in the magnetic field generated by the induction coil 10 provided in the charger 2 that is a power-supply side member provided with the power-supply side circuit 1. The induced coil 30 provided in the portable device 4 as a member is positioned, and electric power is transmitted to the induced coil 30 side by electromagnetic induction.

充電器2および携帯機器4は、それぞれ充電器ケーシング21および携帯機器ケーシング41で外殻が構成され、各ケーシング内に種々の機器が収容される。充電器2では、充電器ケーシング21内に整流回路11および発振回路12を備えた給電側回路1を有する給電側回路基板20と、給電側回路基板20の回路に接続される誘導コイル10とを収容し、携帯機器4では、携帯機器ケーシング41内に図2(a)に示す半波整流回路31や図2(b)に示す全波整流回路等の整流回路31および充電制御回路32を備えた被給電側回路3を有する被給電側回路基板40と、被給電側回路基板40の回路に接続される被誘導コイル30とを収容している。そして誘導コイル10と被誘導コイル30とは、上記のように誘導コイル10が発生させる磁界内に被誘導コイル30が位置するように配置する。すなわち、充電を行う際、携帯機器ケーシング41の外面(表面)が充電器ケーシング21の外面(表面)に当接または近接するように携帯機器ケーシング41を配置するため、当接または近接する携帯機器ケーシング41と充電器ケーシング21の内面(裏面)にそれぞれ誘導コイル10と被誘導コイル30とを配置し、誘導コイル10が発生させる磁界が各ケーシングを介して被誘導コイル30に及んで電磁誘導が行われる。また携帯機器ケーシング41内には、被給電側回路基板40の回路に接続される充電池33が収容され、給電側から供給された電力が前記充電池33に蓄積される。また、被給電側回路基板40の回路に接続される被誘電コイル30は、本実施形態では渦巻き型コイルからなる薄型化されたもので、携帯電話やデジタルカメラ等の携帯機器4の小型化に寄与している。被誘導コイル30は被給電側回路基板40に固定されず本実施形態では薄板部材5に固定され、薄板部材5から延出するリード線や接続端子等の導電部材を介して被給電側回路基板40の回路に接続される。   The charger 2 and the portable device 4 each have an outer shell composed of the charger casing 21 and the portable device casing 41, and various devices are accommodated in the respective casings. In the charger 2, the power supply side circuit board 20 having the power supply side circuit 1 including the rectifier circuit 11 and the oscillation circuit 12 in the charger casing 21, and the induction coil 10 connected to the circuit of the power supply side circuit board 20 are provided. The portable device 4 includes a rectifier circuit 31 such as a half-wave rectifier circuit 31 shown in FIG. 2A and a full-wave rectifier circuit shown in FIG. The power-supplied side circuit board 40 having the power-supplied side circuit 3 and the induced coil 30 connected to the circuit of the power-supplied side circuit board 40 are accommodated. The induction coil 10 and the induced coil 30 are arranged so that the induced coil 30 is positioned in the magnetic field generated by the induction coil 10 as described above. That is, when charging, the portable device casing 41 is disposed so that the outer surface (front surface) of the portable device casing 41 is in contact with or close to the outer surface (surface) of the charger casing 21. The induction coil 10 and the induced coil 30 are arranged on the inner surface (rear surface) of the casing 41 and the charger casing 21, respectively, and the magnetic field generated by the induction coil 10 reaches the induced coil 30 via each casing and electromagnetic induction occurs. Done. In the portable device casing 41, a rechargeable battery 33 connected to the circuit of the power-supplied side circuit board 40 is accommodated, and the power supplied from the power supply side is stored in the rechargeable battery 33. In addition, the dielectric coil 30 connected to the circuit of the power-supplied side circuit board 40 is thinned by a spiral coil in the present embodiment, so that the portable device 4 such as a mobile phone or a digital camera can be miniaturized. Has contributed. The induced coil 30 is not fixed to the power-supplied circuit board 40 but is fixed to the thin plate member 5 in the present embodiment, and is connected to the power-supplied circuit board via a conductive member such as a lead wire or connection terminal extending from the thin plate member 5. 40 circuits are connected.

薄板部材5は、図1に示すように、磁性材にて形成される薄い平板状をしたもので、携帯機器ケーシング41内に収容される。携帯機器ケーシング41は、本実施形態では比較的厚み(短手方向の長さ)の薄い(10〜30mm)略矩形箱状のもので、携帯機器ケーシング41の短手方向と略直交する方向に薄板部材5の長手方向が向くように収容される。薄板部材5は、一方の面51に被誘導コイル30が取り付けられるとともに、他方の面52にシールド材6が設けられる。シールド材6は、本実施形態では薄い平板状の銅(銅箔)を略矩形状をした薄板部材5の他方の面52全面に貼着して形成されるが特に限定されないものであり、給電側から給電する際に誘導コイル10から発生する高周波磁束が被誘導コイル30以外の被給電側の部品(充電池33や被給電側回路基板40上の部品・回路)に及んで悪影響を与えるのを防止するものである。薄板部材5は、被誘導コイル30を取り付けた方の面を外面(携帯機器ケーシング41を除いた時に露出する面)として、充電器ケーシング21の誘導コイル10を設けた部分に当接または近接する携帯機器ケーシング41の内面側に近接させて配置して被誘導コイル30を該内面に当接させ、給電する際に誘導コイル10と被誘導コイル30とが充電器ケーシング21と携帯機器ケーシング41を介して近接して対向するように配置する。そして薄板部材5のシールド材6を貼着した方の面を内面とし、内部の被給電側回路基板40に対向するように面して設置し、該薄板部材5のシールド材6を設けた内面と被給電側回路基板40との間の空間に充電池33を配置する。これにより、誘導コイル10が発生させる磁界内に薄板部材5の外面側に設けた被誘導コイル30が位置して電磁誘導が生じても、薄板部材5の内面側に設けたシールド材6によって磁界がそれ以上に及ぶのが阻止され、誘導コイル10を基準として薄板部材5の裏側に位置する充電池33や被給電側回路基板40の整流回路31や充電制御回路32を含む回路が誘導コイル10から発生する高周波磁束の影響を受けるのを防止することが可能となる。   As shown in FIG. 1, the thin plate member 5 is a thin flat plate formed of a magnetic material, and is accommodated in the portable device casing 41. In this embodiment, the portable device casing 41 has a relatively thin (10 to 30 mm) thin rectangular box shape with a relatively short thickness (length in the short direction), and is in a direction substantially orthogonal to the short direction of the portable device casing 41. It accommodates so that the longitudinal direction of the thin plate member 5 may face. In the thin plate member 5, the induced coil 30 is attached to one surface 51, and the shield material 6 is provided on the other surface 52. In this embodiment, the shield material 6 is formed by adhering thin flat copper (copper foil) to the entire other surface 52 of the thin plate member 5 having a substantially rectangular shape, but is not particularly limited. The high-frequency magnetic flux generated from the induction coil 10 when power is supplied from the side affects the power-supplied components (components / circuits on the rechargeable battery 33 and the power-supplied circuit board 40) other than the induced coil 30. Is to prevent. The thin plate member 5 is in contact with or close to the portion of the charger casing 21 where the induction coil 10 is provided, with the surface on which the induced coil 30 is attached as the outer surface (the surface exposed when the portable device casing 41 is removed). The inductive coil 30 is placed in contact with the inner surface side of the portable device casing 41 so as to contact the inner surface, and the induction coil 10 and the induced coil 30 connect the charger casing 21 and the portable device casing 41 when power is supplied. It arrange | positions so that it may oppose and adjoin. Then, the surface of the thin plate member 5 to which the shield material 6 is attached is set as the inner surface, and is disposed so as to face the power-supplied side circuit board 40, and the inner surface of the thin plate member 5 provided with the shield material 6 The rechargeable battery 33 is disposed in a space between the power supply side circuit board 40 and the power supply side circuit board 40. Thereby, even if the induced coil 30 provided on the outer surface side of the thin plate member 5 is positioned in the magnetic field generated by the induction coil 10 and electromagnetic induction occurs, the magnetic field is generated by the shield material 6 provided on the inner surface side of the thin plate member 5. The circuit including the rechargeable battery 33 located on the back side of the thin plate member 5 with respect to the induction coil 10 and the rectifier circuit 31 and the charge control circuit 32 of the power-supplied side circuit board 40 is replaced with the induction coil 10. It is possible to prevent the influence of the high frequency magnetic flux generated from the magnetic field.

そして、被誘導コイル30の一対の接続端子のうち一方の接続端子30aをシールド材6に接続する。本実施形態では、薄板部材5に貫通孔53を穿設し、被誘導コイル30の一方の接続端子30a(コイルのグランド側の引き出し線)を薄板部材5の一方の面51側から貫通孔53に挿通して他方の面52側のシールド材6に接続してある。   Then, one of the connection terminals 30 a of the induced coil 30 is connected to the shield material 6. In the present embodiment, a through-hole 53 is formed in the thin plate member 5, and one connection terminal 30 a of the guided coil 30 (a lead wire on the ground side of the coil) is connected to the through-hole 53 from the one surface 51 side of the thin plate member 5. And is connected to the shield material 6 on the other surface 52 side.

このような構成とすることで、被誘導コイル30の接続端子の一方をシールド材6に接続しておくことで、あとは被誘導コイル30の接続端子の他方を接続すればよく接続が容易となるとともに、被誘導コイル30の接続端子の一方を接続するにあたってもシールド材6に接続することで別の導電体を設ける必要がなくて部品点数を削減することが可能となり、装置が大型化せず小型化に寄与することができる。   By adopting such a configuration, one of the connection terminals of the induced coil 30 is connected to the shield member 6, and then the other connection terminal of the induced coil 30 may be connected to facilitate connection. In addition, when one of the connection terminals of the induced coil 30 is connected, it is not necessary to provide another conductor by connecting to the shield member 6, thereby reducing the number of parts and increasing the size of the apparatus. It can contribute to downsizing.

また本実施形態では、薄板部材5の一方の面51に導電部7を設け、被誘導コイル30の一対の接続端子のうち他方の接続端子30bを導電部7に接続してある。導電部7は、シールド材6と同様の薄い平板状の銅箔であるが特に限定されない。そして、被誘導コイル30の一対の接続端子のうち一方の接続端子30aは上記のようにシールド材6に接続するとともに、他方の接続端子30bを導電部7に接続してある。これにより、被誘導コイル30の他方の接続端子30bを被給電側回路3に接続する際に接続端子に直接接続しなくても面積の広い導電部7に接続すればよいため、被誘導コイル30の他方の接続端子30bを被給電側回路3に接続するのが容易になる。   In the present embodiment, the conductive portion 7 is provided on one surface 51 of the thin plate member 5, and the other connection terminal 30 b of the pair of connection terminals of the induced coil 30 is connected to the conductive portion 7. The conductive portion 7 is a thin flat copper foil similar to the shield material 6, but is not particularly limited. One of the pair of connection terminals of the induced coil 30 is connected to the shield member 6 as described above, and the other connection terminal 30 b is connected to the conductive portion 7. Accordingly, when the other connection terminal 30b of the induced coil 30 is connected to the power-supplied side circuit 3, it is only necessary to connect to the conductive portion 7 having a large area without directly connecting to the connection terminal. It becomes easy to connect the other connection terminal 30b to the power supplied side circuit 3.

次に、他の実施形態について図4に基づいて説明する。なお、上実施形態と同様の構成については同符号を付して説明を省略し、主に異なる構成について説明する。   Next, another embodiment will be described with reference to FIG. In addition, about the structure similar to the said embodiment, the same code | symbol is attached | subjected and description is abbreviate | omitted and a different structure is mainly demonstrated.

図4に示す実施形態では、薄板部材5の他方の面52に二つのシールド材6を互いに接触しないように設け、被誘導コイル30の一対の接続端子のうち一方の接続端子30aを一方のシールド材6aに接続するとともに、他方の接続端子30bを他方のシールド材6bに接続するものである。図4に示す例では、略矩形状をした薄板部材5の一方の面51の略中央部に被誘導コイル30が固定してあるとともに、被誘導コイル30の一対の接続端子が薄板部材5の短手方向の両半部にそれぞれ延出してあり、薄板部材5の前記両接続端子の先端部が位置する部分にそれぞれ貫通孔53が穿設してあって、両接続端子をそれぞれ薄板部材5の一方の面51側から他方の面52側に向けて貫通孔53に挿通してある。   In the embodiment shown in FIG. 4, two shield members 6 are provided on the other surface 52 of the thin plate member 5 so as not to contact each other, and one of the pair of connection terminals of the induced coil 30 is connected to one shield terminal 30 a. While connecting to the material 6a, the other connection terminal 30b is connected to the other shield material 6b. In the example shown in FIG. 4, the induced coil 30 is fixed to the substantially central portion of the one surface 51 of the thin plate member 5 having a substantially rectangular shape, and the pair of connection terminals of the guided coil 30 is the thin plate member 5. The thin plate member 5 is extended to both halves, and through-holes 53 are formed in portions of the thin plate member 5 where the tip ends of the two connection terminals are located. Is inserted into the through hole 53 from the one surface 51 side toward the other surface 52 side.

シールド材6は、薄板部材5の短手方向の両側にそれぞれ別体の略矩形状のシールド材6を離間して略全面(離間した部分を除いて)に亘って貼着して設けてある。そして、薄板部材5に設けた二つの貫通孔53は位置が両シールド材6にそれぞれ対応していて、貫通孔53に挿通されている接続端子はそれぞれシールド材6に接続される。   The shield material 6 is provided on both sides in the short direction of the thin plate member 5 by separating and attaching a separate substantially rectangular shield material 6 over substantially the entire surface (excluding the separated portion). . The positions of the two through holes 53 provided in the thin plate member 5 correspond to the two shield materials 6, and the connection terminals inserted through the through holes 53 are connected to the shield material 6.

このような構成とすることで、被誘導コイル30の一対の接続端子を被給電側回路3に接続する際、各接続端子に直接接続しなくても面積の広いシールド部材に接続すればよいため、被誘導コイル30の接続端子を被給電側回路3に接続するのが容易になる。   With such a configuration, when the pair of connection terminals of the induced coil 30 is connected to the power-supplied circuit 3, it is only necessary to connect to a shield member having a large area without directly connecting to each connection terminal. It becomes easy to connect the connection terminal of the induced coil 30 to the power-supplied circuit 3.

次に、更に他の実施形態について図5に基づいて説明する。なお、上実施形態と同様の構成については同符号を付して説明を省略し、主に異なる構成について説明する。   Next, still another embodiment will be described with reference to FIG. In addition, about the structure similar to the said embodiment, the same code | symbol is attached | subjected and description is abbreviate | omitted and a different structure is mainly demonstrated.

図5に示す実施形態では、薄板部材5の他方の面52に三つのシールド材6を互いに接触しないように設け、被誘導コイル30の一対の接続端子のうち一方の接続端子30aを一のシールド材6cに接続するとともに、他方の接続端子30bを他の一つのシールド材6dに接続するものである。図5に示す例では、略矩形状をした薄板部材5の一方の面51の略中央部に被誘導コイル30が固定してあるとともに、被誘導コイル30の一対の接続端子が薄板部材5の短手方向の両半部にそれぞれ延出してあり、薄板部材5の前記両接続端子の先端部が位置する部分にそれぞれ貫通孔53が穿設してあって、両接続端子をそれぞれ薄板部材5の一方の面51側から他方の面52側に向けて貫通孔53に挿通してある。   In the embodiment shown in FIG. 5, three shield members 6 are provided on the other surface 52 of the thin plate member 5 so as not to contact each other, and one of the pair of connection terminals of the induced coil 30 is connected to one shield terminal 30 a. In addition to being connected to the material 6c, the other connection terminal 30b is connected to the other shield material 6d. In the example shown in FIG. 5, the induced coil 30 is fixed to a substantially central portion of one surface 51 of the substantially rectangular thin plate member 5, and the pair of connection terminals of the induced coil 30 is the thin plate member 5. The thin plate member 5 is extended to both halves, and through-holes 53 are formed in portions of the thin plate member 5 where the tip ends of the two connection terminals are located. Is inserted into the through hole 53 from the one surface 51 side toward the other surface 52 side.

シールド材6は、薄板部材5の短手方向に三つの別体の略矩形状のシールド材6をそれぞれ離間して略全面(離間した部分を除いて)に亘って貼着して設けてある。そして、薄板部材5に設けた二つの貫通孔53は位置が薄板部材5の短手方向の両端部のシールド材6にそれぞれ対応していて、貫通孔53に挿通されている接続端子は前記シールド材6にそれぞれ接続される。   The shield member 6 is provided by sticking three separate substantially rectangular shield members 6 in the lateral direction of the thin plate member 5 and separating them over substantially the entire surface (excluding the separated portion). . The positions of the two through holes 53 provided in the thin plate member 5 correspond to the shield members 6 at both ends of the thin plate member 5 in the short direction, and the connection terminal inserted through the through hole 53 is the shield. Each is connected to a material 6.

被給電側回路3の整流回路31をブリッジ構成として整流する場合、被誘導コイル30の一対の接続端子は両方ともグランドではないが、この場合、被誘導コイル30の接続端子が接続されていない残りの真ん中のシールド材6eを被給電側回路3のグランドに接続することができる。また、被誘導コイル30の一対の接続端子を被給電側回路3に接続する際、各接続端子に直接接続しなくても面積の広いシールド部材に接続すればよいため、被誘導コイル30の接続端子を被給電側回路3に接続するのが容易になるのは上述した通りである。   When the rectifier circuit 31 of the power-supplied circuit 3 is rectified as a bridge configuration, both of the pair of connection terminals of the induced coil 30 are not grounded, but in this case, the remaining connection terminal of the induced coil 30 is not connected. The middle shield member 6e can be connected to the ground of the power supplied side circuit 3. In addition, when the pair of connection terminals of the induced coil 30 are connected to the power-supplied circuit 3, it is only necessary to connect to a shield member having a large area without directly connecting to each connection terminal. As described above, it is easy to connect the terminal to the power-supplied side circuit 3.

次に、更に他の実施形態について図6に基づいて説明する。なお、上実施形態と同様の構成については同符号を付して説明を省略し、主に異なる構成について説明する。   Next, still another embodiment will be described with reference to FIG. In addition, about the structure similar to the said embodiment, the same code | symbol is attached | subjected and description is abbreviate | omitted and a different structure is mainly demonstrated.

図6に示す実施形態では、シールド材6を箔状に形成し、他方の面52にシールド材6の一部を貼着するとともに残りを折り返して一方の面51に貼着するものである。図6に示す例では、略矩形状をした薄板部材5の一方の面51の略中央部に被誘導コイル30が固定してあるとともに、被誘導コイル30の一対の接続端子が薄板部材5の短手方向の両半部にそれぞれ延出してあり、薄板部材5の前記両接続端子の先端部が位置する部分にそれぞれ貫通孔53が穿設してあって、両接続端子をそれぞれ薄板部材5の一方の面51側から他方の面52側に向けて貫通孔53に挿通してある。   In the embodiment shown in FIG. 6, the shield material 6 is formed in a foil shape, and a part of the shield material 6 is attached to the other surface 52 and the rest is folded and attached to the one surface 51. In the example shown in FIG. 6, the induced coil 30 is fixed to the substantially central portion of the one surface 51 of the thin plate member 5 having a substantially rectangular shape, and the pair of connection terminals of the guided coil 30 is the thin plate member 5. The thin plate member 5 is extended to both halves, and through-holes 53 are formed in portions of the thin plate member 5 where the tip ends of the two connection terminals are located. Is inserted into the through hole 53 from the one surface 51 side toward the other surface 52 side.

シールド材6は、長手方向の長さが薄板部材5の長手方向の長さよりも長く形成してあり、薄板部材5の短手方向の両側にそれぞれ別体の略矩形状のシールド材6を離間して略全面(離間した部分を除いて)に亘って貼着するのであるが、この時、シールド材6の長手方向の両端部がはみ出した状態で薄板部材5の他方の面52に貼着し、はみ出した両端部を薄板部材5の長手方向の端部に沿って折り返して薄板部材5の一方の面51の長手方向の両端部に貼着するものである。折り返した際に薄板部材5の一方の面51に貼着される部分の長さは、被誘導コイル30の接続端子に届く長さであればよい。そして、被誘導コイル30の両接続端子は両シールド材6にそれぞれ接続される。   The shield material 6 is formed such that the length in the longitudinal direction is longer than the length in the longitudinal direction of the thin plate member 5, and separate substantially rectangular shield materials 6 are separated on both sides in the short direction of the thin plate member 5. At this time, it is attached to the other surface 52 of the thin plate member 5 with both end portions in the longitudinal direction of the shield material 6 protruding. Then, the protruding both end portions are folded back along the longitudinal end portion of the thin plate member 5 and attached to both longitudinal end portions of the one surface 51 of the thin plate member 5. The length of the portion attached to the one surface 51 of the thin plate member 5 when folded back may be a length that can reach the connection terminal of the induced coil 30. Then, both connection terminals of the induced coil 30 are connected to both shield materials 6, respectively.

このような構成とすることで、シールド材6と被誘導コイル30の一対の接続端子との接続を簡単な構成で容易に行うことが可能となり、また、被誘導コイル30の一対の接続端子を被給電側回路3に接続する際、各接続端子に直接接続しなくても面積の広いシールド部材に接続すればよく、さらに、被給電側回路3をシールド部材に接続するにあたって薄板部材5の側端面のシールド部材を折り返している部分に接続することが可能となって、被誘導コイル30の接続端子を被給電側回路3に接続するのが容易になるとともに接続方法の自由度が増すものである。   With such a configuration, it is possible to easily connect the shield member 6 and the pair of connection terminals of the induced coil 30 with a simple configuration, and the pair of connection terminals of the induced coil 30 can be connected to each other. When connecting to the power-supplied side circuit 3, it is only necessary to connect to a shield member having a large area without directly connecting to each connection terminal. Further, when connecting the power-supplied side circuit 3 to the shield member, the thin plate member 5 side is connected. It becomes possible to connect the shield member on the end face to the folded portion, and it becomes easy to connect the connection terminal of the induced coil 30 to the power-supplied side circuit 3 and the degree of freedom of the connection method increases. is there.

また本実施形態では、シールド材6は、被誘導コイル30が位置する部分、すなわち薄板部材5の長手方向の略中央部において、一方のシールド材6fが短手方向の一方の端部のみに位置するとともに他方のシールド材6gを前記一方の端部を除いて中央部から他方の端部にかけて位置するように配置し、薄板部材5の長手方向の端部においては、両方のシールド材6をそれぞれ薄板部材5の短手方向の両半部にそれぞれ位置するように配置する。そして、他方のシールド材6gを被誘導コイル30のグランド側の接続端子と接続するものである。   Further, in the present embodiment, the shield material 6 is located at a portion where the induced coil 30 is located, that is, at a substantially central portion in the longitudinal direction of the thin plate member 5, and one shield material 6 f is located only at one end portion in the short direction. In addition, the other shield member 6g is disposed so as to be located from the center portion to the other end portion except for the one end portion, and both shield members 6 are respectively disposed at the end portions in the longitudinal direction of the thin plate member 5. It arrange | positions so that it may each be located in the both half parts of the transversal direction of the thin plate member 5. FIG. Then, the other shield member 6g is connected to the connection terminal on the ground side of the induced coil 30.

被誘導コイル30が位置する部分の近傍では磁束が通るため、被誘導コイル30が位置して磁束が通る部分のシールド材6を大きくするとともにこれをグランド接続することで、グランド効果を高めることができ、また、被給電側回路3と接続される長手方向の端部では一方のシールド材6fの幅(薄板部材5の短手方向の長さ)を大きくとって接続を容易にしている。   Since the magnetic flux passes in the vicinity of the portion where the induced coil 30 is located, the shielding effect 6 is increased at the portion where the induced coil 30 is located and the magnetic flux passes, and this is grounded to enhance the ground effect. In addition, the width of one shield member 6f (the length in the short direction of the thin plate member 5) is increased at the end in the longitudinal direction connected to the power-supplied side circuit 3 to facilitate connection.

次に、更に他の実施形態について図7、図8に基づいて説明する。なお、上実施形態と同様の構成については同符号を付して説明を省略し、主に異なる構成について説明する。   Next, still another embodiment will be described with reference to FIGS. In addition, about the structure similar to the said embodiment, the same code | symbol is attached | subjected and description is abbreviate | omitted and a different structure is mainly demonstrated.

本実施形態では、薄板部材5を略矩形状に形成してその一方の面51の略中央部に被誘導コイル30を設け、シールド材6を略矩形状に形成して長手方向の一方の端部から中央部に向けてその途中までスリット61を形成し、他方の面52にシールド材6のスリット61を形成していない側を貼着するとともに残りのスリット61を形成した側の端部を折り返して一方の面51に貼着し、他方の面52に貼着したシールド材6のスリット61と交差する別のスリット62を形成してシールド材6を分断するものである。被誘導コイル30の両接続端子は両シールド材6にそれぞれ接続される。   In the present embodiment, the thin plate member 5 is formed in a substantially rectangular shape, the induced coil 30 is provided in a substantially central portion of one surface 51 thereof, and the shield material 6 is formed in a substantially rectangular shape so that one end in the longitudinal direction is formed. The slit 61 is formed halfway from the center toward the center, and the side of the shield material 6 where the slit 61 is not formed is attached to the other surface 52 and the end on the side where the remaining slit 61 is formed is attached. The shield material 6 is divided by forming a separate slit 62 that intersects with the slit 61 of the shield material 6 that is folded and adhered to one surface 51 and is adhered to the other surface 52. Both connection terminals of the induced coil 30 are connected to both shield members 6, respectively.

このような構成とすることで、簡単な構成で容易に複数のシールド材6を設けることが可能となる。   By setting it as such a structure, it becomes possible to provide the several shielding material 6 easily with a simple structure.

本発明の被誘導コイルおよびシールド材を設けた薄板部材の一実施形態を示し、(a)は平面図であり、(b)は側断面図であり、(c)は下面図である。1 shows an embodiment of a thin plate member provided with a guided coil and a shield material according to the present invention, in which (a) is a plan view, (b) is a side sectional view, and (c) is a bottom view. 非接触電力伝達装置の回路構成を示し、(a)は半波整流の場合の回路構成図であり、(b)は半波整流の場合の回路構成図である。The circuit configuration of the non-contact power transmission device is shown, (a) is a circuit configuration diagram in the case of half-wave rectification, (b) is a circuit configuration diagram in the case of half-wave rectification. 非接触電力伝達装置の断面図である。It is sectional drawing of a non-contact electric power transmission apparatus. 他の実施形態の被誘導コイルおよびシールド材を設けた薄板部材を示し、(a)は平面図であり、(b)は側断面図であり、(c)は下面図である。The thin-plate member which provided the induced coil and shield material of other embodiment is shown, (a) is a top view, (b) is a sectional side view, (c) is a bottom view. 更に他の実施形態の被誘導コイルおよびシールド材を設けた薄板部材を示し、(a)は平面図であり、(b)は側断面図であり、(c)は下面図である。Furthermore, the thin-plate member which provided the induced coil and shield material of other embodiment is shown, (a) is a top view, (b) is a sectional side view, (c) is a bottom view. 更に他の実施形態の被誘導コイルおよびシールド材を設けた薄板部材を示し、(a)は平面図であり、(b)は側断面図であり、(c)は下面図である。Furthermore, the thin-plate member which provided the induced coil and shield material of other embodiment is shown, (a) is a top view, (b) is a sectional side view, (c) is a bottom view. 更に他の実施形態のシールド材の平面図である。It is a top view of the shielding material of other embodiment. 同上の実施形態の被誘導コイルおよびシールド材を設けた薄板部材を示し、(a)は平面図であり、(b)は側断面図であり、(c)は下面図である。The thin plate member which provided the induced coil and shield material of embodiment same as the above is shown, (a) is a top view, (b) is a side sectional view, and (c) is a bottom view.

符号の説明Explanation of symbols

1 給電側回路
10 誘導コイル
2 給電側部材(充電器)
3 被給電側回路
30 被誘導コイル
30a 一方の接続端子
30b 他方の接続端子
4 被給電側部材(携帯機器)
5 薄板部材
51 一方の面
52 他方の面
6 シールド材
DESCRIPTION OF SYMBOLS 1 Power supply side circuit 10 Induction coil 2 Power supply side member (charger)
3 Power-supplied side circuit 30 Inducted coil 30a One connection terminal 30b The other connection terminal 4 Power-supplied side member (mobile device)
5 Thin plate member 51 One surface 52 The other surface 6 Shielding material

Claims (7)

誘導コイルと給電側回路とを備えた給電側部材と、被誘導コイルと被給電側回路とを備えた被給電側部材とで主体が構成され、誘導コイルによる磁界内に被誘導コイルを配置して電磁誘導により誘導コイルから被誘導コイルへ給電を行う非接触電力伝達装置において、薄板部材の一方の面に被誘導コイルを設けるとともに他方の面にシールド材を設けて被誘導コイルの一対の接続端子のうち一方の接続端子をシールド材に接続し、前記薄板部材の被誘導コイルを設けた方の面が給電を行う際に給電側部材の誘導コイルを向くように薄板部材を被給電側部材に設けて成ることを特徴とする非接触電力伝達装置。   The main body is composed of a power supply side member including an induction coil and a power supply side circuit and a power supply side member including a guided coil and a power supply side circuit, and the induced coil is disposed in a magnetic field by the induction coil. In a non-contact power transmission device that feeds power from an induction coil to an induced coil by electromagnetic induction, a pair of connections of the induced coil is provided by providing an induced coil on one surface of the thin plate member and a shield material on the other surface. The thin plate member is connected to the shield member so that the thin plate member faces the induction coil of the power supply side member when the surface of the thin plate member on which the induced coil is provided supplies power. A non-contact power transmission device characterized in that it is provided. 薄板部材の一方の面に導電部を設け、被誘導コイルの一対の接続端子のうち他方の接続端子を導電部に接続して成ることを特徴とする請求項1記載の非接触電力伝達装置。   2. The non-contact power transmission device according to claim 1, wherein a conductive portion is provided on one surface of the thin plate member, and the other connection terminal of the pair of connection terminals of the induced coil is connected to the conductive portion. 薄板部材の他方の面に二つのシールド材を互いに接触しないように設け、被誘導コイルの一対の接続端子のうち一方の接続端子を一方のシールド材に接続するとともに、他方の接続端子を他方のシールド材に接続して成ることを特徴とする請求項1記載の非接触電力伝達装置。   Two shield materials are provided on the other surface of the thin plate member so as not to contact each other, one of the pair of connection terminals of the induced coil is connected to one shield material, and the other connection terminal is connected to the other 2. The non-contact power transmission device according to claim 1, wherein the non-contact power transmission device is connected to a shield material. 薄板部材の他方の面に三つのシールド材を互いに接触しないように設け、被誘導コイルの一対の接続端子のうち一方の接続端子を一のシールド材に接続するとともに、他方の接続端子を他の一つのシールド材に接続して成ることを特徴とする請求項1記載の非接触電力伝達装置。   Three shield members are provided on the other surface of the thin plate member so as not to contact each other, and one of the pair of connection terminals of the induced coil is connected to one shield member, and the other connection terminal is connected to the other member. The non-contact power transmission device according to claim 1, wherein the non-contact power transmission device is connected to one shield material. シールド材を箔状に形成し、他方の面にシールド材の一部を貼着するとともに残りを折り返して一方の面に貼着して成ることを特徴とする請求項1乃至4のいずれか一項に記載の非接触電力伝達装置。   The shield material is formed in a foil shape, and a part of the shield material is adhered to the other surface, and the remaining portion is folded and adhered to one surface. The non-contact power transmission device according to item. 薄板部材を略矩形状に形成してその一方の面の略中央部に被誘導コイルを設け、薄板部材の長手方向の略中央部において一方のシールド材を短手方向の一方の端部のみに位置させるとともに他方のシールド材を前記一方の端部を除いて中央部から他方の端部にかけて位置させ、薄板部材の長手方向の端部において両方のシールド材を薄板部材の短手方向の両半部にそれぞれ位置させ、前記他方のシールド材と被誘導コイルのグランド側の接続端子とを接続して成ることを特徴とする請求項5記載の非接触電力伝達装置。   A thin plate member is formed in a substantially rectangular shape, and an induced coil is provided at a substantially central portion of one surface of the thin plate member, and one shield material is disposed only at one end portion in the short direction at a substantially central portion in the longitudinal direction of the thin plate member. The other shield material is positioned from the center portion to the other end portion except for the one end portion, and both shield materials are placed in the half direction in the short direction of the thin plate member at the longitudinal end portion of the thin plate member. 6. The non-contact power transmission device according to claim 5, wherein the non-contact power transmission device is formed by connecting the other shield member and a ground-side connection terminal of the induced coil. 薄板部材を略矩形状に形成してその一方の面の略中央部に被誘導コイルを設け、シールド材を略矩形状に形成して長手方向の一方の端部から中央部に向けてその途中までスリットを形成し、他方の面にシールド材のスリットを形成していない側を貼着するとともに残りのスリットを形成した側の端部を折り返して一方の面に貼着し、他方の面に貼着したシールド材のスリットと交差してシールド材を分断して成ることを特徴とする請求項5記載の非接触電力伝達装置。   A thin plate member is formed in a substantially rectangular shape, and a guided coil is provided in a substantially central portion of one surface thereof, and a shield material is formed in a substantially rectangular shape, and a halfway direction from one end portion in the longitudinal direction toward the central portion. Slit up to the other side, and paste the side of the shield material that does not have the slit on the other side, fold the end of the side where the remaining slit is formed and stick it on one side, 6. The non-contact power transmission device according to claim 5, wherein the shield material is divided by intersecting with the slit of the adhered shield material.
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JP2012079806A (en) * 2010-09-30 2012-04-19 Nitto Denko Corp Electromagnetic-wave shield sheet for wireless power transmission
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