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JP2010268306A - Coil antenna - Google Patents

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Publication number
JP2010268306A
JP2010268306A JP2009119027A JP2009119027A JP2010268306A JP 2010268306 A JP2010268306 A JP 2010268306A JP 2009119027 A JP2009119027 A JP 2009119027A JP 2009119027 A JP2009119027 A JP 2009119027A JP 2010268306 A JP2010268306 A JP 2010268306A
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Prior art keywords
coil
coil conductor
antenna
magnetic core
axis
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JP2009119027A
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JP4883136B2 (en
Inventor
Kuniaki Yosui
邦明 用水
Hiroyuki Kubo
浩行 久保
Hiromitsu Ito
宏充 伊藤
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Murata Manufacturing Co Ltd
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Murata Manufacturing Co Ltd
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Priority to JP2009119027A priority Critical patent/JP4883136B2/en
Priority to CN201010180738.2A priority patent/CN101888021B/en
Priority to GB1008206A priority patent/GB2470299B/en
Publication of JP2010268306A publication Critical patent/JP2010268306A/en
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Publication of JP4883136B2 publication Critical patent/JP4883136B2/en
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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/067Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components
    • G06K19/07Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips
    • G06K19/077Constructional details, e.g. mounting of circuits in the carrier
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/12Supports; Mounting means
    • H01Q1/22Supports; Mounting means by structural association with other equipment or articles
    • H01Q1/2208Supports; Mounting means by structural association with other equipment or articles associated with components used in interrogation type services, i.e. in systems for information exchange between an interrogator/reader and a tag/transponder, e.g. in Radio Frequency Identification [RFID] systems
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/36Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith
    • H01Q1/38Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith formed by a conductive layer on an insulating support
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q7/00Loop antennas with a substantially uniform current distribution around the loop and having a directional radiation pattern in a plane perpendicular to the plane of the loop
    • H01Q7/06Loop antennas with a substantially uniform current distribution around the loop and having a directional radiation pattern in a plane perpendicular to the plane of the loop with core of ferromagnetic material
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q7/00Loop antennas with a substantially uniform current distribution around the loop and having a directional radiation pattern in a plane perpendicular to the plane of the loop
    • H01Q7/06Loop antennas with a substantially uniform current distribution around the loop and having a directional radiation pattern in a plane perpendicular to the plane of the loop with core of ferromagnetic material
    • H01Q7/08Ferrite rod or like elongated core
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q9/00Electrically-short antennas having dimensions not more than twice the operating wavelength and consisting of conductive active radiating elements
    • H01Q9/04Resonant antennas
    • H01Q9/16Resonant antennas with feed intermediate between the extremities of the antenna, e.g. centre-fed dipole
    • H01Q9/26Resonant antennas with feed intermediate between the extremities of the antenna, e.g. centre-fed dipole with folded element or elements, the folded parts being spaced apart a small fraction of operating wavelength
    • H01Q9/27Spiral antennas

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  • Engineering & Computer Science (AREA)
  • Computer Hardware Design (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Details Of Aerials (AREA)
  • Coils Or Transformers For Communication (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To constitute a compact coil antenna that operates even if the coil antenna is arranged closely to its conductor plate and that has a higher degree of coupling with an antenna on the side of a communication partner. <P>SOLUTION: Each of the lower coil conductor part 11U and the upper coil conductor part 11S has a substantially rectangular and spiral shape, the inner end of the lower coil conductor part 11U conducts to the inner end of the upper coil conductor part 11S to be connected in series. In the lower coil conductor part 11U and the upper coil conductor part 11S, the arrangement interval of parallel-to-axis parts PA that are parallel to the direction of the axis of a magnetic-material core 1 is shorter than the arrangement interval in orthogonal-to-axis parts CA that are orthogonal to the axis of the magnetic-material core 1. In addition, the parallel-to-axis parts PA of the upper coil conductor part 11S are arranged so as to be over the parallel-to-axis parts PA of the lower coil conductor part 11U. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

この発明は、外部機器と電磁界信号を介して通信するRFID(Radio Frequency Identification)システム等に用いられるコイルアンテナに関するものである。   The present invention relates to a coil antenna used in an RFID (Radio Frequency Identification) system or the like that communicates with an external device via an electromagnetic field signal.

RFIDシステムで用いられる携帯電子機器に搭載されるコイルアンテナが例えば特許文献1,特許文献2,特許文献3に開示されている。
図1は特許文献1に記載されるアンテナコイルの構造を示す上面図である。図1に示されるアンテナコイル30は、フィルム32a上の平面内で導体31(31a,31b,31e,31d)を渦巻き状に巻回して構成された空芯コイル32と、その空芯コイル32の平面とほぼ平行となるように空芯コイル32に挿入された平板状の磁芯部材33とを備えている。空芯コイル32には孔32dが設けられ、この孔32dに磁芯部材33が挿入されている。第1ターミナル31aと連結導体31eとはスルーホール32bで連結され、第2ターミナル31bと連結導体31eとはスルーホール32cで連結されている。そして、この磁性体アンテナが導電板34上に配置されている。
For example, Patent Document 1, Patent Document 2, and Patent Document 3 disclose a coil antenna mounted on a portable electronic device used in an RFID system.
FIG. 1 is a top view showing a structure of an antenna coil described in Patent Document 1. FIG. An antenna coil 30 shown in FIG. 1 includes an air-core coil 32 formed by spirally winding a conductor 31 (31a, 31b, 31e, 31d) in a plane on a film 32a, and the air-core coil 32. A flat magnetic core member 33 inserted into the air-core coil 32 so as to be substantially parallel to the plane is provided. The air core coil 32 is provided with a hole 32d, and a magnetic core member 33 is inserted into the hole 32d. The first terminal 31a and the connecting conductor 31e are connected by a through hole 32b, and the second terminal 31b and the connecting conductor 31e are connected by a through hole 32c. The magnetic antenna is disposed on the conductive plate 34.

また、特許文献2のアンテナコイルは、平面体からなるアンテナ磁心がアンテナコイルの空芯部内に挿通されつつ、アンテナコイルと実質的に同一平面を構成するように配置されている。   In addition, the antenna coil of Patent Document 2 is arranged so that the antenna magnetic core made of a planar body is inserted into the air core portion of the antenna coil and forms substantially the same plane as the antenna coil.

特許文献3のコイルアンテナは、平面上に巻いた複数のコイルが同一中心軸上に多層に配置され、各層のコイルが直列に接続されて、各層のコイル間に透磁率の高い部材が配設されている。   In the coil antenna of Patent Document 3, a plurality of coils wound on a plane are arranged in multiple layers on the same central axis, coils of each layer are connected in series, and a member with high magnetic permeability is arranged between the coils of each layer Has been.

特開2002−325013号公報JP 2002-325013 A 特開2002−373319号公報JP 2002-373319 A 特開2005−94319号公報JP 2005-94319 A

一般に、コイルアンテナは、所定の共振周波数で共振させるために要するインダクタンスが得られれば、コイルの巻き数が多く、コイルの損失が小さく、磁心が太いほどコイルアンテナとしての特性が向上し、通信性能が良くなる。しかし、特許文献1〜3に示されているコイルアンテナにおいては次のような問題があった。   In general, if the coil antenna has the inductance required to resonate at a predetermined resonance frequency, the number of turns of the coil, the loss of the coil, and the thicker the magnetic core, the better the characteristics as the coil antenna, and the communication performance Will be better. However, the coil antennas disclosed in Patent Documents 1 to 3 have the following problems.

特許文献1,2のアンテナコイルは、コイルの巻き数を増やそうとすると磁性体コアを細くする必要がある、磁性体コアを太くするとコイルの巻き数が増やせない、コイル導体の線幅を細くして巻き数を増やすとコイルの損失が大きくなる、といった問題がある。   In the antenna coils of Patent Documents 1 and 2, it is necessary to make the magnetic core thinner if the number of turns of the coil is increased, and if the magnetic core is made thicker, the number of turns of the coil cannot be increased. When the number of turns is increased, the coil loss increases.

また、特許文献1のアンテナコイルは、図1に示されているように、背後の導電板34に平行な磁束と結合させる構造である。そのため、例えば携帯電話端末に搭載した場合に、筐体内部の回路基板に平行に実装すると、携帯電話端末をリーダライタの面に対して平行にかざして使用する、といったことができないという問題がある。   Moreover, the antenna coil of patent document 1 is a structure couple | bonded with the magnetic flux parallel to the back conductive plate 34, as FIG. 1 shows. For this reason, for example, when mounted on a mobile phone terminal, if the mobile phone terminal is mounted parallel to the circuit board inside the housing, the mobile phone terminal cannot be used while being held parallel to the surface of the reader / writer. .

特許文献3のコイルアンテナでは、透磁率の高い部材(磁性体コア)が縦方向を向いているため、このコイルアンテナを導体板上に置くと通信できない。   In the coil antenna of patent document 3, since the member (magnetic body core) with high magnetic permeability has faced the vertical direction, if this coil antenna is put on a conductor board, it cannot communicate.

そこで、この発明の目的は、導体板に近接配置しても作用し、通信相手側アンテナとの結合度が高く小型のコイルアンテナを提供することにある。   Accordingly, an object of the present invention is to provide a small coil antenna that operates even when placed close to a conductor plate and has a high degree of coupling with a communication partner antenna.

前記課題を解決するためにこの発明のコイルアンテナは、次のように構成する。
(1)コイル導体が形成されたフレキシブル基板と板状の磁性体コアとを備え、
前記コイル導体のうち、前記磁性体コアの軸に平行な部分の配置間隔は、前記磁性体コアの軸に直交する部分の配置間隔より狭く形成されている。
In order to solve the above problems, the coil antenna of the present invention is configured as follows.
(1) A flexible substrate on which a coil conductor is formed and a plate-like magnetic core,
Of the coil conductor, the arrangement interval of the portions parallel to the axis of the magnetic core is formed narrower than the arrangement interval of the portions orthogonal to the axis of the magnetic core.

(2)前記コイル導体は複数の層に構成され、各層のコイル導体のうち前記磁性体コアの軸に平行な部分は、互いに重なる位置に配置されている。 (2) The coil conductor is composed of a plurality of layers, and portions of the coil conductors of each layer that are parallel to the axis of the magnetic core are arranged at positions overlapping each other.

(3)前記コイル導体はコイル導体開口部の周囲に渦巻き状に形成され、前記フレキシブル基板は前記コイル導体のコイル導体開口部に穴が形成され、前記磁性体コアは前記穴に挿通されている。 (3) The coil conductor is formed in a spiral around the coil conductor opening, the flexible substrate has a hole formed in the coil conductor opening of the coil conductor, and the magnetic core is inserted through the hole. .

(4)前記コイル導体は、前記磁性体コアの軸に平行な部分と前記磁性体コアの軸に直交する部分をそれぞれ二箇所に備える矩形の渦巻き状に形成され、前記磁性体コアは前記コイル導体のうち前記磁性体コアの軸に直交する二箇所うち一方の部分を覆っている。 (4) The coil conductor is formed in a rectangular spiral shape having a portion parallel to the axis of the magnetic core and a portion orthogonal to the axis of the magnetic core at two locations, and the magnetic core is the coil Of the conductor, one of the two portions perpendicular to the axis of the magnetic core is covered.

(5)前記コイル導体はコイル導体開口部の周囲に渦巻き状に形成され、前記フレキシブル基板は前記コイル導体のコイル導体開口部で折り曲げられて、前記磁性体コアを包むように配置されている。 (5) The coil conductor is formed in a spiral shape around the coil conductor opening, and the flexible substrate is bent at the coil conductor opening of the coil conductor so as to wrap the magnetic core.

この発明によれば、次の効果を奏する。
(A)導体板に近接配置しても作用し、通信できる。
According to the present invention, the following effects can be obtained.
(A) Even if it is arranged close to the conductor plate, it works and can communicate.

(B)同じアンテナサイズで磁性体コアを太くすることができるので、磁性体コアを通る磁束が多くなり、通信性能が良くなる。 (B) Since the magnetic core can be thickened with the same antenna size, the magnetic flux passing through the magnetic core is increased, and the communication performance is improved.

(C)同じアンテナサイズでコイルの線幅を太くすることができるので、コイルの損失が小さくなり、通信性能が良くなる。 (C) Since the line width of the coil can be increased with the same antenna size, the loss of the coil is reduced and the communication performance is improved.

(D)コイルパターンのピッチを広げることで、通信相手側のアンテナコイルとの結合係数が大きくなり、通信性能が良くなる。 (D) By increasing the pitch of the coil pattern, the coupling coefficient with the antenna coil on the communication partner side is increased, and the communication performance is improved.

できる。 it can.

特許文献1に記載されるコイルアンテナの構造を示す正面図である。It is a front view which shows the structure of the coil antenna described in patent document 1. 第1の実施形態に係るコイルアンテナの構成を示す図である。図2(A)は、フレキシブル基板101の上面図である。図2(B)はコイル導体11の上層コイル導体部11Sの形状を示す図である。図2(C)はコイル導体11の下層コイル導体部11Uの形状を示す図である。図2(D)は下層コイル導体部11Uと上層コイル導体部11Sとが重なった状態を示す図である。It is a figure which shows the structure of the coil antenna which concerns on 1st Embodiment. FIG. 2A is a top view of the flexible substrate 101. FIG. 2B is a diagram illustrating the shape of the upper layer coil conductor portion 11 </ b> S of the coil conductor 11. FIG. 2C is a diagram showing the shape of the lower layer coil conductor portion 11U of the coil conductor 11. FIG. 2D is a diagram showing a state in which the lower layer coil conductor portion 11U and the upper layer coil conductor portion 11S overlap each other. 図3(A)はコイルアンテナ201の上面図、図3(B)は正面図である。3A is a top view of the coil antenna 201, and FIG. 3B is a front view. コイルの長さLと結合係数との関係を示す図である。It is a figure which shows the relationship between the length L of a coil, and a coupling coefficient. 図5(A)は第2の実施形態に係るコイルアンテナ202の上面図、図5(B)は、コイルアンテナ202を備えるアンテナ装置全体の正面図である。FIG. 5A is a top view of the coil antenna 202 according to the second embodiment, and FIG. 5B is a front view of the whole antenna device including the coil antenna 202. 図6(A)は第3の実施形態に係るコイルアンテナ203の上面図、図6(B)は、コイルアンテナ203の下面図である。図6(C)は、コイルアンテナ203を備えるアンテナ装置全体の正面図である。6A is a top view of the coil antenna 203 according to the third embodiment, and FIG. 6B is a bottom view of the coil antenna 203. FIG. 6C is a front view of the entire antenna device including the coil antenna 203.

《第1の実施形態》
図2は第1の実施形態に係るコイルアンテナの構成を示す図である。
図2(A)は、コイルアンテナの構成要素に一つであるフレキシブル基板101の上面図である。フレキシブル基板101は基材10とコイル導体11とで構成されている。コイル導体11は基材10の上面に形成されている。
<< First Embodiment >>
FIG. 2 is a diagram illustrating the configuration of the coil antenna according to the first embodiment.
FIG. 2A is a top view of the flexible substrate 101 which is one of the constituent elements of the coil antenna. The flexible substrate 101 includes a base material 10 and a coil conductor 11. The coil conductor 11 is formed on the upper surface of the base material 10.

図2(B)は前記コイル導体11の上層コイル導体部11Sの形状を示す図である。図2(C)は前記コイル導体11の下層コイル導体部11Uの形状を示す図である。そして、図2(D)は前記下層コイル導体部11Uと前記上層コイル導体部11Sとが重なった状態を示す図である。   FIG. 2B is a view showing the shape of the upper layer coil conductor portion 11S of the coil conductor 11. FIG. 2C is a view showing the shape of the lower layer coil conductor portion 11U of the coil conductor 11. FIG. 2D is a diagram showing a state in which the lower layer coil conductor portion 11U and the upper layer coil conductor portion 11S overlap each other.

前記下層コイル導体部11U及び前記上層コイル導体部11Sはそれぞれほぼ矩形の渦巻き状であり、下層コイル導体部11Uと上層コイル導体部11Sとの間には絶縁層が介在している。但し、下層コイル導体部11Uの内側の端部と上層コイル導体部11Sの内側の端部とは導通して、両者は直列接続されている。このようにして前記コイル導体11はコイル導体開口部CWの周囲に渦巻き状に形成されている。   Each of the lower layer coil conductor part 11U and the upper layer coil conductor part 11S has a substantially rectangular spiral shape, and an insulating layer is interposed between the lower layer coil conductor part 11U and the upper layer coil conductor part 11S. However, the inner end portion of the lower layer coil conductor portion 11U and the inner end portion of the upper layer coil conductor portion 11S are electrically connected, and both are connected in series. Thus, the coil conductor 11 is spirally formed around the coil conductor opening CW.

フレキシブル基板101には、上層コイル導体部11Sの外側の端部に連続する端子電極12が設けられている。また、下層コイル導体部11Uの外側の端部に導通する端子電極13が設けられている。   The flexible substrate 101 is provided with a terminal electrode 12 that is continuous with an outer end portion of the upper coil conductor portion 11S. Moreover, the terminal electrode 13 which conduct | electrically_connects to the outer edge part of the lower layer coil conductor part 11U is provided.

なお、下層コイル導体部11Uと上層コイル導体部11Sは、フレキシブル基板の基材の片面に重ねて形成する代わりに、フレキシブル基板の基材の両面にそれぞれ形成してもよい。
図2(A)に示すように、フレキシブル基板101の基材10には前記コイル導体開口部CWに対応する位置に穴(スリット)Sが形成されている。
The lower layer coil conductor part 11U and the upper layer coil conductor part 11S may be formed on both sides of the base material of the flexible substrate instead of being formed on one side of the base material of the flexible substrate.
As shown in FIG. 2A, a hole (slit) S is formed in the base material 10 of the flexible substrate 101 at a position corresponding to the coil conductor opening CW.

図3(A)はコイルアンテナ201の上面図、図3(B)は正面図である。
フレキシブル基板101の穴Sには矩形板状のフェライトシートによる磁性体コア1が挿通されている。このことによってコイルアンテナ201が構成されている。このコイルアンテナ201が平面導体2に近接配置されることによってアンテナ装置が構成される。平面導体2は、コイルアンテナ201を実装する回路基板などである。コイルアンテナ201は、図3(A)に示した端子電極12,13の形成面が平面導体(回路基板)2に対向するように配置される。
3A is a top view of the coil antenna 201, and FIG. 3B is a front view.
A magnetic core 1 made of a rectangular ferrite sheet is inserted into the hole S of the flexible substrate 101. Thus, the coil antenna 201 is configured. The coil antenna 201 is disposed close to the planar conductor 2 to constitute an antenna device. The planar conductor 2 is a circuit board on which the coil antenna 201 is mounted. The coil antenna 201 is disposed so that the formation surfaces of the terminal electrodes 12 and 13 shown in FIG. 3A face the planar conductor (circuit board) 2.

図2(A)に示したように、下層コイル導体部11U及び上層コイル導体部11Sについて、磁性体コア1の軸方向(図の左右方向)(磁路方向)に平行な軸平行部PAの配置間隔は、磁性体コア1の軸に直交する軸直交部CAの配置間隔より狭い。さらにこの例では、下層コイル導体部11Uの軸平行部PAに対して上層コイル導体部11Sの軸平行部PAが重なるように配置されている。   As shown in FIG. 2A, for the lower layer coil conductor portion 11U and the upper layer coil conductor portion 11S, the axis parallel portion PA parallel to the axial direction (left-right direction in the figure) (magnetic path direction) of the magnetic core 1 The arrangement interval is narrower than the arrangement interval of the axis orthogonal part CA orthogonal to the axis of the magnetic core 1. Furthermore, in this example, it arrange | positions so that the axial parallel part PA of the upper layer coil conductor part 11S may overlap with the axial parallel part PA of the lower layer coil conductor part 11U.

そのため、同じアンテナサイズで磁性体コアをより太くすることができ、同じアンテナサイズでコイルの線幅をより太くすることができ、コイルパターンのピッチをより広げることができる。   Therefore, the magnetic core can be made thicker with the same antenna size, the coil line width can be made thicker with the same antenna size, and the pitch of the coil pattern can be further widened.

ここで、コイルの損失を表す抵抗値と、通信性能の良さを表す結合係数(通信相手側のコイルアンテナとの結合係数)のシミュレーション結果を示す。シミュレーションの条件は次のとおりである。   Here, the simulation result of the resistance value representing the loss of the coil and the coupling coefficient representing the good communication performance (coupling coefficient with the coil antenna on the communication partner side) is shown. The simulation conditions are as follows.

〈各コイルアンテナ〉
(1)第1の従来構造のコイルアンテナ
磁心の長さに平行なコイルを重ねず、コイル導体の線幅を広く、磁心を細くしたコイルアンテナ
磁性体コアのサイズ 14×15×0.2mm
コイル導体の線幅 0.1mm
(2)第2の従来構造のコイルアンテナ
磁心の長さに平行なコイルを重ねず、コイル導体の線幅を細く、磁心を太くしたコイルアンテナ
磁性体コアのサイズ 17×15×0.2mm
コイル導体の線幅 0.1mm
(3)本発明のコイルアンテナ
磁性体コアの長さに平行なコイルを重ね、コイル導体の線幅を広く、磁心を太くしたコイルアンテナ
磁性体コアのサイズ 17×15×0.2mm
コイル導体の線幅 0.3mm
〈共通項目〉
通信相手のコイルアンテナのサイズ 100×100mm
通信相手のコイルアンテナとの距離 30mm
各コイルアンテナのコイル導体のサイズ 20×15mm
各コイルアンテナのコイル導体のターン数 6
コイルの損失を表す抵抗値と、通信性能の良さを表す結合係数との関係は次のとおりである。
<Each coil antenna>
(1) Coil antenna of the first conventional structure A coil antenna in which the coil conductor is wide and the magnetic core is thin without overlapping coils parallel to the length of the magnetic core. Size of the magnetic core 14 × 15 × 0.2 mm
Coil conductor wire width 0.1mm
(2) Coil antenna of the second conventional structure Coil antenna in which the coil conductor is thinned and the magnetic core is thickened without overlapping the coil parallel to the length of the magnetic core The size of the magnetic core 17 × 15 × 0.2 mm
Coil conductor wire width 0.1mm
(3) Coil antenna of the present invention Coil antenna in which coils parallel to the length of the magnetic core are stacked, the line width of the coil conductor is wide, and the magnetic core is thickened. Size of the magnetic core 17 × 15 × 0.2 mm
Coil conductor wire width 0.3mm
<Common Items>
Size of coil antenna of communication partner 100 × 100mm
Distance to communication partner coil antenna 30mm
Size of coil conductor of each coil antenna 20 × 15mm
Number of turns of coil conductor of each coil antenna 6
The relationship between the resistance value representing the loss of the coil and the coupling coefficient representing the good communication performance is as follows.

――――――――――――――――――――――――――――――
コイルアンテナ 抵抗[Ω] 結合係数
――――――――――――――――――――――――――――――
(1) 1.59 2.11%
(2) 2.00 2.29%
(3) 1.62 2.33%
――――――――――――――――――――――――――――――
このように、相手側アンテナとの結合係数が高く、且つ低抵抗のコイルアンテナが構成できる。
――――――――――――――――――――――――――――――
Coil antenna Resistance [Ω] Coupling coefficient ――――――――――――――――――――――――――――――
(1) 1.59 2.11%
(2) 2.00 2.29%
(3) 1.62 2.33%
――――――――――――――――――――――――――――――
Thus, a coil antenna having a high coupling coefficient with the counterpart antenna and a low resistance can be configured.

次に、コイルの長さ(磁性体コアの周囲に巻かれる範囲のコイル軸方向の大きさ)Lと結合係数との関係を図4に示す。シミュレーションの条件は前述したものと共通である。
このように、磁性体コア1の軸方向の長さMに対するコイルの長さLの比が25%を超えると、結合係数は最大値に達する。したがって、最良の通信性能を得ることができる。
Next, FIG. 4 shows the relationship between the coil length (the size in the coil axis direction in the range wound around the magnetic core) L and the coupling coefficient. The simulation conditions are the same as those described above.
Thus, when the ratio of the coil length L to the axial length M of the magnetic core 1 exceeds 25%, the coupling coefficient reaches the maximum value. Therefore, the best communication performance can be obtained.

《第2の実施形態》
図5(A)は第2の実施形態に係るコイルアンテナ202の上面図、図5(B)は、コイルアンテナ202を備えるアンテナ装置全体の正面図である。
フレキシブル基板102は基材10とコイル導体11とで構成されている。コイル導体11は基材10の上面に形成されている。
<< Second Embodiment >>
FIG. 5A is a top view of the coil antenna 202 according to the second embodiment, and FIG. 5B is a front view of the whole antenna device including the coil antenna 202.
The flexible substrate 102 includes a base material 10 and a coil conductor 11. The coil conductor 11 is formed on the upper surface of the base material 10.

コイル導体11は、第1の実施形態の場合と同様に、それぞれほぼ矩形の渦巻き状の下層コイル導体部及び上層コイル導体部で構成されている。第1の実施形態で示したコイルアンテナと異なるのは、フレキシブル基板102と磁性体コア1とが重ねられるように配置されている点である。   As in the case of the first embodiment, the coil conductor 11 includes a substantially rectangular spiral lower layer coil conductor portion and upper layer coil conductor portion. The difference from the coil antenna shown in the first embodiment is that the flexible substrate 102 and the magnetic core 1 are arranged so as to overlap each other.

コイル導体11は、磁性体コア1の軸に平行な軸平行部PAと磁性体コア1の軸に直交する軸直交部CAを備え、軸平行部PAの配置間隔は軸直交部CAの配置間隔より狭い。
磁性体コア1はコイル導体11の二つの軸平行部PAうち一方の部分を覆う。
The coil conductor 11 includes an axis parallel part PA parallel to the axis of the magnetic core 1 and an axis orthogonal part CA orthogonal to the axis of the magnetic core 1, and the arrangement interval of the axis parallel part PA is the arrangement interval of the axis orthogonal part CA. Narrower.
The magnetic core 1 covers one part of the two axis parallel parts PA of the coil conductor 11.

このような構造であっても、第1の実施形態の場合と同様に、相手側アンテナとの結合係数が高く且つ低抵抗のコイルアンテナが構成できる。また、導体板に近接配置しても作用する小型のコイルアンテナが構成できる。   Even with such a structure, a coil antenna having a high coupling coefficient with the counterpart antenna and a low resistance can be configured, as in the case of the first embodiment. In addition, a small coil antenna that operates even when placed close to the conductor plate can be configured.

《第3の実施形態》
図6(A)は第3の実施形態に係るコイルアンテナ203の上面図、図6(B)はコイルアンテナ203の下面図、図6(C)は、コイルアンテナ203を備えるアンテナ装置全体の正面図である。
<< Third Embodiment >>
6A is a top view of the coil antenna 203 according to the third embodiment, FIG. 6B is a bottom view of the coil antenna 203, and FIG. 6C is a front view of the entire antenna device including the coil antenna 203. FIG.

フレキシブル基板103は基材10とコイル導体11とで構成されている。コイル導体11は基材10の一方の表面に形成されている。   The flexible substrate 103 includes a base material 10 and a coil conductor 11. The coil conductor 11 is formed on one surface of the base material 10.

コイル導体11は、第1・第2の実施形態の場合と同様に、それぞれほぼ矩形の渦巻き状の下層コイル導体部及び上層コイル導体部で構成されている。第2の実施形態で示したコイルアンテナと異なるのは、フレキシブル基板103が折り曲げられて、磁性体コア1を包むように配置された点である。   As with the first and second embodiments, the coil conductor 11 includes a substantially rectangular spiral lower layer coil conductor portion and upper layer coil conductor portion. The difference from the coil antenna shown in the second embodiment is that the flexible substrate 103 is bent and arranged so as to wrap the magnetic core 1.

コイル導体11は、磁性体コア1の軸に平行な軸平行部PAと磁性体コア1の軸に直交する軸直交部CAを備えている。
フレキシブル基板103はコイル導体11のコイル導体開口部CWを通るラインで折り曲げられて、磁性体コア1を包むように配置されている。
The coil conductor 11 includes an axis parallel part PA parallel to the axis of the magnetic core 1 and an axis orthogonal part CA orthogonal to the axis of the magnetic core 1.
The flexible substrate 103 is bent along a line passing through the coil conductor opening CW of the coil conductor 11 and disposed so as to wrap the magnetic core 1.

このような構造であっても、第1・第2の実施形態の場合と同様に、相手側アンテナとの結合係数が高く且つ低抵抗のコイルアンテナが構成できる。また、導体板に近接配置しても作用する小型のコイルアンテナが構成できる。   Even with such a structure, similarly to the first and second embodiments, a coil antenna having a high coupling coefficient with the counterpart antenna and a low resistance can be configured. In addition, a small coil antenna that operates even when placed close to the conductor plate can be configured.

CA…軸直交部
CW…コイル導体開口部
PA…軸平行部
S…穴
1…磁性体コア
2…平面導体
10…基材
11…コイル導体
11S…上層コイル導体部
11U…下層コイル導体部
12,13…端子電極
101〜103…フレキシブル基板
201〜203…コイルアンテナ
CA ... Axis orthogonal part CW ... Coil conductor opening PA ... Axis parallel part S ... Hole 1 ... Magnetic core 2 ... Planar conductor 10 ... Base material 11 ... Coil conductor 11S ... Upper layer coil conductor part 11U ... Lower layer coil conductor part 12, 13 ... Terminal electrodes 101-103 ... Flexible substrates 201-203 ... Coil antenna

Claims (5)

コイル導体が形成されたフレキシブル基板と板状の磁性体コアとを備えたコイルアンテナにおいて、
前記コイル導体のうち、前記磁性体コアの軸に平行な部分の配置間隔は、前記磁性体コアの軸に直交する部分の配置間隔より狭く形成されたコイルアンテナ。
In a coil antenna comprising a flexible substrate on which a coil conductor is formed and a plate-like magnetic core,
Of the coil conductor, a coil antenna in which an arrangement interval of a portion parallel to the axis of the magnetic core is formed narrower than an arrangement interval of a portion orthogonal to the axis of the magnetic core.
前記コイル導体は複数の層に構成され、各層のコイル導体のうち前記磁性体コアの軸に平行な部分は、互いに重なる位置に配置された請求項1に記載のコイルアンテナ。   2. The coil antenna according to claim 1, wherein the coil conductor is formed of a plurality of layers, and portions of the coil conductors of each layer that are parallel to the axis of the magnetic core are arranged at positions overlapping each other. 前記コイル導体はコイル導体開口部の周囲に渦巻き状に形成され、前記フレキシブル基板は前記コイル導体のコイル導体開口部に穴が形成され、前記磁性体コアは前記穴に挿通された、請求項1または2に記載のコイルアンテナ。   The coil conductor is spirally formed around a coil conductor opening, the flexible substrate has a hole formed in the coil conductor opening of the coil conductor, and the magnetic core is inserted through the hole. Or the coil antenna of 2. 前記コイル導体は、前記磁性体コアの軸に平行な部分と前記磁性体コアの軸に直交する部分をそれぞれ二箇所に備える矩形の渦巻き状に形成され、前記磁性体コアは前記コイル導体のうち前記磁性体コアの軸に直交する二箇所うち一方の部分を覆う、請求項1または2に記載のコイルアンテナ。   The coil conductor is formed in a rectangular spiral shape having a portion parallel to the axis of the magnetic core and a portion orthogonal to the axis of the magnetic core, respectively, and the magnetic core is formed of the coil conductor. 3. The coil antenna according to claim 1, wherein one of the two portions perpendicular to the axis of the magnetic core is covered. 前記コイル導体はコイル導体開口部の周囲に渦巻き状に形成され、前記フレキシブル基板は前記コイル導体のコイル導体開口部で折り曲げられて、前記磁性体コアを包むように配置された、請求項1または2に記載のコイルアンテナ。   The coil conductor is formed in a spiral shape around a coil conductor opening, and the flexible substrate is bent at the coil conductor opening of the coil conductor so as to wrap the magnetic core. The coil antenna described in 1.
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