JP5074789B2 - Connection structure - Google Patents

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JP5074789B2
JP5074789B2 JP2007055953A JP2007055953A JP5074789B2 JP 5074789 B2 JP5074789 B2 JP 5074789B2 JP 2007055953 A JP2007055953 A JP 2007055953A JP 2007055953 A JP2007055953 A JP 2007055953A JP 5074789 B2 JP5074789 B2 JP 5074789B2
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wiring
wiring board
frame member
connection structure
printed wiring
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JP2008218816A (en
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勝成 御影
辰珠 朴
惠司 小山
正道 山本
幸喜 中間
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Sumitomo Electric Industries Ltd
Sumitomo Electric Printed Circuits Inc
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Sumitomo Electric Industries Ltd
Sumitomo Electric Printed Circuits Inc
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Description

本発明は、携帯電話等の各種電気機器に用いられる配線同士、特にフレキシブル配線板を他の配線板に接続するための接続構造体に関する。   The present invention relates to a connection structure for connecting wires used in various electric devices such as a mobile phone, in particular, a flexible wiring board to another wiring board.

従来より、特に携帯電話等の小型軽量電気機器には、フィルム状配線体、いわゆるフレキシブル配線板が配置されることが多い。フレキシブル配線板は、携帯電話などの開閉機構や回転機構を有する機器中の電気的接続を行うために、極めて便利なものであることから、近年使用頻度が高まっている。フレキシブル配線板は、可撓性に富む反面、剛体構造のリジッド配線板とは異なり、コネクタの挿入口に挿入する際の挿入力を大きくすることは困難である。そこで、フレキシブル配線板を他の配線板に接続する接続構造体(コネクタ)として、無挿入力コネクタ(ZIF:Zero Interpose Force)が汎用されている(特許文献1,2参照)。   2. Description of the Related Art Conventionally, film-shaped wiring bodies, so-called flexible wiring boards, are often arranged particularly in small and light electrical devices such as mobile phones. In recent years, flexible wiring boards have been used more frequently because they are very convenient for electrical connection in devices having an opening / closing mechanism and a rotating mechanism such as a mobile phone. The flexible wiring board is rich in flexibility, but unlike a rigid wiring board having a rigid structure, it is difficult to increase the insertion force when the flexible wiring board is inserted into the insertion port of the connector. Therefore, a non-insertion force connector (ZIF: Zero Interpose Force) is widely used as a connection structure (connector) for connecting a flexible wiring board to another wiring board (see Patent Documents 1 and 2).

図6(a),(b)は、一般的なZIF構造のコネクタの構造を示す平面図、および側面図である。同図に示すように、リジッドプリント配線板において、配線101が形成された剛体構造のリジッド基板100の上にZIFコネクタ110が配置されている。フレキシブルプリント配線板においては、フレキシブル基板200の上に配線201が形成されている。ZIFコネクタ110には、配線101に各々接続される金属ワイヤ状の複数の接触子103が設けられている。接触子103は、側方から見てコ字状に設けられおり、そのうち上側先端部は、鈎状となっている。接続を行う際には、フレキシブルプリント配線板は、ZIFコネクタ110の接触子103のコ字状開口部に、ほとんど無挿入力で挿入される。そして、接触子103と配線201とを接触させた状態でロック部105を軸106の回りに回動させて、接触子103の鈎状の上側先端部をフレキシブル基板200に食い込ませるように押圧することで、配線同士の接続が完了する。ロック部105は、その先端部が最下方まで移動したときにZIFコネクタ110の側方に延びる両腕部によって係止される。   FIGS. 6A and 6B are a plan view and a side view showing the structure of a general ZIF connector. As shown in the figure, in a rigid printed wiring board, a ZIF connector 110 is disposed on a rigid substrate 100 having a rigid structure on which wirings 101 are formed. In the flexible printed wiring board, wiring 201 is formed on a flexible substrate 200. The ZIF connector 110 is provided with a plurality of metal wire-like contacts 103 each connected to the wiring 101. The contact 103 is provided in a U shape when viewed from the side, and an upper end portion of the contact 103 has a hook shape. When connecting, the flexible printed wiring board is inserted into the U-shaped opening of the contact 103 of the ZIF connector 110 with almost no insertion force. Then, in a state where the contact 103 and the wiring 201 are in contact with each other, the lock portion 105 is rotated around the shaft 106 to press the hook-shaped upper end portion of the contact 103 into the flexible substrate 200. This completes the connection between the wirings. The lock portion 105 is locked by both arm portions extending to the side of the ZIF connector 110 when the tip end portion moves to the lowest position.

上記ZIFコネクタ110の作動により、フレキシブル基板200上の配線201と、マザーボードであるリジッド基板100上の配線101とが電気的に接続された状態となる。そして、接触子103とフレキシブル基板200上の配線201との接続状態が保持されるように、フレキシブルプリント配線板が把持された状態になる。特許文献1,2には、ロック部105や接触子103の各種構造が開示されている。   By the operation of the ZIF connector 110, the wiring 201 on the flexible substrate 200 and the wiring 101 on the rigid substrate 100 which is a mother board are electrically connected. Then, the flexible printed wiring board is held so that the connection state between the contact 103 and the wiring 201 on the flexible substrate 200 is maintained. Patent Documents 1 and 2 disclose various structures of the lock portion 105 and the contact 103.

特公平6−65090号公報Japanese Patent Publication No. 6-65090 特公平7−24230号公報Japanese Patent Publication No. 7-24230

しかるに、最近のように、携帯電話等の各種電気機器類の小型化の進展に伴い、ZIFコネクタの薄型化,小型化が求められると、上記ZIFコネクタ110における電気的な接続の信頼性を維持することが困難となってきている。   However, as the recent trend toward miniaturization of various electric devices such as mobile phones, when the ZIF connector is required to be thinner and smaller, the reliability of electrical connection in the ZIF connector 110 is maintained. It has become difficult to do.

すなわち、ワイヤ状の接触子103や、接触子103を支持する部分の厚みや幅寸法を、形状を設定状態に保つための機械的強度を保ちつつ、低減すること自体に限界がある。   That is, there is a limit to reducing the wire-like contactor 103 and the thickness and width dimension of the portion supporting the contactor 103 while maintaining the mechanical strength for keeping the shape in the set state.

また、ZIFコネクタ110や接触子103などの厚みや幅寸法を低減すると、上記ZIFコネクタ110の接触子103によるフレキシブルプリント配線板の把持力を十分高く維持することが困難である。反面、この把持力を十分高く維持して接続の信頼性を確保しようとすると、ZIFコネクタ100の薄型化,小型化が困難である。たとえば、配線101,201の幅が0.1mm程度で、挟ピッチ化によって配線間の隙間が0.1mm程度になると、接触子103の幅もそれに対応させる必要が生じるが、その場合には、把持力が弱くなって、フレキシブルプリント配線板が非常に外れやすい。   Further, if the thickness and width dimension of the ZIF connector 110 and the contact 103 are reduced, it is difficult to maintain the gripping force of the flexible printed wiring board by the contact 103 of the ZIF connector 110 sufficiently high. On the other hand, if this gripping force is maintained sufficiently high to ensure connection reliability, it is difficult to make the ZIF connector 100 thinner and smaller. For example, when the width of the wirings 101 and 201 is about 0.1 mm and the gap between the wirings is about 0.1 mm due to the narrow pitch, the width of the contact 103 needs to correspond to that, but in that case, The gripping force is weakened and the flexible printed wiring board is very likely to come off.

上述のような不具合は、フレキシブルプリント配線板とリジッドプリント配線板との接続だけでなく、フレキシブルプリント配線板同士の接続においても生じており、かつ、各種フレキシブル配線板についても生じうる。   The above-described problems occur not only in the connection between the flexible printed wiring board and the rigid printed wiring board but also in the connection between the flexible printed wiring boards, and may also occur in various flexible wiring boards.

本発明の目的は、フレキシブル配線板と他の配線板との電気的接続を保持するための接続構造体として、薄型化,小型化が可能で、かつ、接続の信頼性を維持することが可能な構造を提供することにある。   It is an object of the present invention to reduce the thickness and size of a connection structure for maintaining electrical connection between a flexible wiring board and another wiring board, and to maintain connection reliability. Is to provide a simple structure.

本発明の接続構造体は、フレキシブル配線板等である2つの配線体のうち一方の配線体の背面から弾性部材を挟んで一方の配線体を押圧しつつ、枠部材に係合する押圧部材を設けたものである。前記枠部材は、前記第1の配線の先端部を囲むように前記第1の配線板の表面に設けられている。前記押圧部材は、前記第1の配線と第2の配線とを接触させるように、前記第2の配線体及び弾性部材を第1の配線体に押圧して前記枠部材に係合させられるThe connection structure of the present invention includes a pressing member that engages with the frame member while pressing one wiring body with the elastic member sandwiched from the back side of one of the two wiring bodies such as a flexible wiring board. It is provided. The frame member is provided on the surface of the first wiring board so as to surround the front end portion of the first wiring. The pressing member is engaged with the frame member by pressing the second wiring body and the elastic member against the first wiring body so that the first wiring and the second wiring are brought into contact with each other .

これにより、弾性部材の弾性力と、押圧部材−枠部材間の嵌合による押圧力とによって、第1の配線と第2の配線との導通状態が確保される。すなわち、従来のZIFコネクタに存在していた,配線の数に対応した数の金属ワイヤからなる接触子が不要になり、かつ、ZIFコネクタにおける,接触子を支持する部分も不要になる。したがって、各部の機械的強度を高く保ちつつ、接続構造体全体の厚みや幅寸法を低減することが可能であり、薄型化,小型化の進展に対応することができる。   Thereby, the electrical connection state of a 1st wiring and a 2nd wiring is ensured with the elastic force of an elastic member, and the pressing force by fitting between a pressing member and a frame member. That is, a contact made of a number of metal wires corresponding to the number of wires, which is present in the conventional ZIF connector, is unnecessary, and a portion for supporting the contact in the ZIF connector is also unnecessary. Therefore, it is possible to reduce the thickness and width dimension of the entire connection structure while keeping the mechanical strength of each part high, and it is possible to cope with the progress of thinning and miniaturization.

前記第2の配線体の先端部には、前記枠部材の内側に対して、第1の配線体の厚み方向に挿入可能なガイド部材が取り付けられている。このガイド部材を取り付けることにより、第1の配線と第2の配線との接続位置を対応させつつ、第2の配線体の先端部を枠部材内に格納することが可能になる。 Wherein the second distal portion of the wire body, the inner of the frame member, is insertable guide member in the thickness direction of the first wiring body is mounted. By attaching the guide member, it is possible to store the tip end portion of the second wiring body in the frame member while matching the connection positions of the first wiring and the second wiring.

押圧部材と弾性部材とが、二色成形により一体的に設けられていることにより、製造コストの低減を図りつつ、位置決めを正確にかつ容易にすることができる。   Since the pressing member and the elastic member are integrally provided by two-color molding, the positioning can be accurately and easily performed while reducing the manufacturing cost.

枠部材または押圧部材に、係合解除機構をさらに設けることにより、脱着自在の接続構造体が得られる。   By further providing an engagement release mechanism to the frame member or the pressing member, a detachable connection structure can be obtained.

本発明の接続構造体によると、従来のZIFコネクタのようなワイヤ状の接触子ではなく、枠部材と押圧部材とを用い、貫通電極を有する弾性部材を挟んで配線体同士を押圧する構造としたので、薄型化,小型化の進展に対応することができる。   According to the connection structure of the present invention, not a wire-like contact like a conventional ZIF connector, but a structure in which a wiring member is pressed with an elastic member having a penetrating electrode between a frame member and a pressing member. Therefore, it can respond to the progress of thinning and miniaturization.

−接続構造体全体の構造−
図1は、本発明の実施の形態に係る接続構造体の接続前の構造を示す断面図である。図1に示すように、接続構造体は、リジッド基板11上に配線12(第1の配線)が形成された第1の配線体であるリジッドプリント配線板10と、フレキシブル基板21上に配線22(第2の配線)が形成された第2の配線体であるフレキシブルプリント配線板20と、フレキシブル基板21の裏面に貼り付けられたガイド部材25と、剛性の高い樹脂からなる押圧部材27と、ゴム等の弾性材料からなる弾性部材30とを備えている。リジッド基板11には、枠部材15が接着剤等により連結されている。
-Overall structure of connection structure-
FIG. 1 is a cross-sectional view showing a structure before connection of a connection structure according to an embodiment of the present invention. As shown in FIG. 1, the connection structure includes a rigid printed wiring board 10 that is a first wiring body in which wiring 12 (first wiring) is formed on a rigid substrate 11, and wiring 22 on a flexible substrate 21. A flexible printed wiring board 20 which is a second wiring body in which (second wiring) is formed, a guide member 25 attached to the back surface of the flexible substrate 21, a pressing member 27 made of a highly rigid resin, And an elastic member 30 made of an elastic material such as rubber. A frame member 15 is connected to the rigid substrate 11 with an adhesive or the like.

図2は、リジッドプリント配線板10の平面図である。リジッド基板11に連結された枠部材15は、ほぼコ字状の平面形状を有している。また、配線12は、リジッド基板11上を延びて、外部機器に接続されており、その先端部が枠部材15によって三方を囲まれている。そして、図1に示すガイド部材25は、矩形リング状であり、その外周が枠部材15が囲む空間の平面的大きさよりもごくわずかだけ小さく、ガイド部材25が前記枠部材15の内側に対して、前記リジッド基板11の厚み方向に挿入可能な構造となっている。ただし、枠部材15の内周およびガイド部材25の外周の平面形状は、矩形に限定されるものではなく、円形,多角形など任意の形状が可能である。 FIG. 2 is a plan view of the rigid printed wiring board 10. The frame member 15 connected to the rigid substrate 11 has a substantially U-shaped planar shape. In addition, the wiring 12 extends on the rigid substrate 11 and is connected to an external device, and its tip is surrounded on three sides by a frame member 15. The guide member 25 shown in FIG. 1 has a rectangular ring shape, the outer periphery of which is only slightly smaller than the planar size of the space surrounded by the frame member 15, and the guide member 25 is located with respect to the inside of the frame member 15. The rigid substrate 11 can be inserted in the thickness direction . However, the planar shape of the inner periphery of the frame member 15 and the outer periphery of the guide member 25 is not limited to a rectangle, and can be any shape such as a circle or a polygon.

リジッド基板11としては、ガラスエポキシ板に限らず、紙フェノール板,紙エポキシ板,フッ素樹脂板,アルミナ板等が用いられる。配線12の材料としては、銅合金を用いるのが一般的であるが、これに限定されるものではない。フレキシブル基板21としては、ポリイミド板に限らず、ポリエステル板(低温使用),ガラスエポキシ板(薄板)等が用いられる。配線22の材料としては、銅合金を用いるのが一般的であるが、これに限定されるものではない。   The rigid substrate 11 is not limited to a glass epoxy plate, but may be a paper phenol plate, a paper epoxy plate, a fluororesin plate, an alumina plate, or the like. The material of the wiring 12 is generally a copper alloy, but is not limited to this. As the flexible substrate 21, not only a polyimide plate but also a polyester plate (low temperature use), a glass epoxy plate (thin plate), or the like is used. The material of the wiring 22 is generally a copper alloy, but is not limited to this.

押圧部材27は、比較的剛性の高い樹脂によって構成されている。また、弾性部材30は、熱可塑性エラストマーによって構成されている。弾性部材30には、各配線22(12)の位置に対応した凸部30aが設けられていて、フレキシブルプリント配線板20の配線22をリジッドプリント配線板10の配線12側に押圧するように構成されている。また、本実施の形態では、押圧部材27と弾性部材30とは、共通の金型を用いた二色成形(ダブルモールド)によって、一体的に形成されている。ただし、両者を個別に成形して接着剤によって貼り付けてもよい。ガイド部材25は、矩形リング状であり、リング内におけるフレキシブル基板21の弾性を保持するように設けられている。ガイド部材の材質は、硬質樹脂でもよいし、金属またはセラミックスでもよい。   The pressing member 27 is made of a resin having a relatively high rigidity. The elastic member 30 is made of a thermoplastic elastomer. The elastic member 30 is provided with a convex portion 30a corresponding to the position of each wiring 22 (12), and is configured to press the wiring 22 of the flexible printed wiring board 20 to the wiring 12 side of the rigid printed wiring board 10. Has been. In the present embodiment, the pressing member 27 and the elastic member 30 are integrally formed by two-color molding (double molding) using a common mold. However, both may be formed separately and attached with an adhesive. The guide member 25 has a rectangular ring shape, and is provided so as to maintain the elasticity of the flexible substrate 21 in the ring. The material of the guide member may be hard resin, metal or ceramic.

本実施の形態に係る押圧部材27の中央部の好ましい厚みは0.2mm〜0.3mmであり、弾性部材30のベース部分の好ましい厚みは0.1mm〜0.2mmであり、弾性部材30の凸部30aの好ましい厚みは0.05mm〜0.1mmであり、ガイド部材25の好ましい厚みは0.15mm〜0.3mmである。   A preferable thickness of the central portion of the pressing member 27 according to the present embodiment is 0.2 mm to 0.3 mm, and a preferable thickness of the base portion of the elastic member 30 is 0.1 mm to 0.2 mm. The preferable thickness of the convex part 30a is 0.05 mm to 0.1 mm, and the preferable thickness of the guide member 25 is 0.15 mm to 0.3 mm.

図3は、本実施の形態の接続構造体の組立方法を説明するための斜視図である。同図に示すように、ガイド部材25が貼り付けられたフレキシブルプリント配線板20の上方から、弾性部材30が付設された押圧板27をかぶせる。そして、ガイド部材25によって枠部材15で囲まれる空間に、フレキシブルプリント配線板20を導入する。このとき、ガイド部材25が、前記枠部材15の内側に対して、前記リジッド基板11の厚み方向に挿入されることにより、フレキシブルプリント配線板20等の導入を案内する。そして、最終的に、第1の配線12に第2の配線22が接触した状態で、押圧板27の下部が枠部材15の内側面に係合して、接続構造体が組み立てられる。 FIG. 3 is a perspective view for explaining a method of assembling the connection structure according to the present embodiment. As shown in the figure, a pressing plate 27 provided with an elastic member 30 is placed over the flexible printed wiring board 20 to which the guide member 25 is attached. Then, the flexible printed wiring board 20 is introduced into the space surrounded by the frame member 15 by the guide member 25. At this time, the guide member 25 is inserted in the thickness direction of the rigid board 11 with respect to the inside of the frame member 15 to guide introduction of the flexible printed wiring board 20 and the like. Finally, with the second wiring 22 in contact with the first wiring 12, the lower part of the pressing plate 27 engages with the inner surface of the frame member 15, and the connection structure is assembled.

図4は、実施の形態に係る接続構造体の組立状態を示す断面図である。同図の拡大詳示図に示すように、枠部材15には溝状の係合部15aが形成されており、押圧部材27には、突起状の係合部27aが形成されていて、両係合部15a,27aが互いに係合することにより、フレキシブルプリント配線板20が外れるのを防いでいる。そして、押圧部材27に付設された弾性部材30は、矩形リング状のガイド部材25を挿通して直接フレキシブル基板21の背面に接触している。このとき、弾性部材30の凸部が配線22に対向する部位に接触しており、リジッド基板11上の配線12と、フレキシブル基板20上の配線22とは、強く密着し合って、確実な導通状態が得られる。   FIG. 4 is a cross-sectional view showing an assembled state of the connection structure according to the embodiment. As shown in the enlarged detail view of the figure, the frame member 15 has a groove-like engagement portion 15a, and the pressing member 27 has a projection-like engagement portion 27a. When the engaging portions 15a and 27a engage with each other, the flexible printed wiring board 20 is prevented from coming off. The elastic member 30 attached to the pressing member 27 is in direct contact with the back surface of the flexible substrate 21 through the rectangular ring-shaped guide member 25. At this time, the convex portion of the elastic member 30 is in contact with the portion facing the wiring 22, and the wiring 12 on the rigid substrate 11 and the wiring 22 on the flexible substrate 20 are strongly in close contact with each other for reliable conduction. A state is obtained.

本実施の形態によると、フレキシブルプリント配線板20の背面から弾性部材30を押し当てた状態で、押圧部材27により、フレキシブルプリント配線板20をリジッドプリント配線板10に押圧することにより、配線12,22の電気的接続を行うようにしたので、薄型化,小型化に容易に対応することができる。すなわち、接触子を支持する部分が不要となり、板状の弾性部材30の厚み,貫通電極36の径,間隔などの寸法は、0.1mm以下まで小さくしても十分高い強度が得られる。そして、押圧部材27によってフレキシブルプリント配線板20等を押圧する力と、弾性部材30の弾性力とによって、配線22に配線12に密着する方向の付勢力を作用させるので、配線12と配線22との表面に凹凸があっても、配線12と配線22との間の接触を確保することができる。したがって、接触不良を確実に抑制することができる。また、弾性部材30の弾性変形によって、フレキシブルプリント配線板に対する把持力も向上する。したがって、接続構造体による電気的接続の信頼性がさらに向上する。   According to the present embodiment, the flexible printed wiring board 20 is pressed against the rigid printed wiring board 10 by the pressing member 27 while the elastic member 30 is pressed from the back surface of the flexible printed wiring board 20. Since 22 electrical connections are made, it is possible to easily cope with a reduction in thickness and size. That is, a portion for supporting the contact is not necessary, and a sufficiently high strength can be obtained even if the thickness of the plate-like elastic member 30, the diameter of the through electrode 36, the interval, and the like are reduced to 0.1 mm or less. And since the urging | biasing force of the direction closely_contact | adhered to the wiring 12 is made to act on the wiring 22 with the force which presses the flexible printed wiring board 20 grade | etc., By the pressing member 27, and the elastic force of the elastic member 30, the wiring 12 and wiring 22 Even if there are irregularities on the surface, contact between the wiring 12 and the wiring 22 can be ensured. Accordingly, contact failure can be reliably suppressed. Moreover, the gripping force with respect to the flexible printed wiring board is also improved by the elastic deformation of the elastic member 30. Therefore, the reliability of electrical connection by the connection structure is further improved.

しかも、押圧部材27を枠部材15に係合させるだけの簡単な操作で、接続構造体を組み立てることができ、かつ、組立状態から、押圧部材27を上方に移動させることで、係合状態を容易に解除できるので、取り外しも容易である。   In addition, the connection structure can be assembled by a simple operation of merely engaging the pressing member 27 with the frame member 15, and the engaging state is changed by moving the pressing member 27 upward from the assembled state. Since it can be easily released, it is easy to remove.

また、フレキシブルプリント配線板20にガイド部材25が付設されているので、フレキシブルプリント配線板20の先端部を枠部材15で囲まれる空間内に導入することが容易となり、かつフレキシブルプリント配線板20の配線22の位置とリジッドプリント配線板10の配線12との位置合わせが容易となる。枠部材15が囲む空間の幅とフレキシブルプリント配線20の幅とを一致させることにより、ガイド部材25を省略することも可能である。ただし、ガイド部材25が付設されていることにより、柔軟性に富むフレキシブルプリント配線板20の先端部の強度が補強されるので、組み立て作業を容易かつ迅速に行うことができる。   Further, since the guide member 25 is attached to the flexible printed wiring board 20, it is easy to introduce the distal end portion of the flexible printed wiring board 20 into the space surrounded by the frame member 15, and the flexible printed wiring board 20 The position of the wiring 22 and the wiring 12 of the rigid printed wiring board 10 can be easily aligned. The guide member 25 can be omitted by matching the width of the space surrounded by the frame member 15 with the width of the flexible printed wiring 20. However, since the guide member 25 is attached, the strength of the distal end portion of the flexible printed wiring board 20 rich in flexibility is reinforced, so that the assembling operation can be performed easily and quickly.

多孔質樹脂の中でも、多孔質PTFEは、特に強度や耐熱性が大きく、繰り返し加重による弾性の劣化もほとんどないことから、長期間使用しても弾性の劣化による把持力の低下を防止することができる。   Among porous resins, porous PTFE has particularly high strength and heat resistance, and since there is almost no deterioration in elasticity due to repeated loading, it can prevent a decrease in gripping force due to deterioration in elasticity even after long-term use. it can.

(変形例)
図5は、実施の形態の変形例における係合部及び係合解除機構を示す部分断面図である。この変形例においては、図4に示すリジッドプリント配線板10,フレキシブルプリント配線板20,弾性部材30およびガイド部材25を備えている。そして、図4の構造とは異なる点は、枠部材15の係合部15aが、上部がテーパ状で下部がほぼ垂直な内壁を有する突起構造を有しており、押圧部材27の係合部27aが、ほぼ垂直な板バネ27bの下端部に設けられた鈎状構造を有している点である。そして、組立時には、押圧部材27の係合部27aの先端のテーパ面と枠部材15の係合部15aのテーパ面とが当接して、押圧部材27が枠部材15内に円滑に導入され、鈎状の係合部27aが枠部材15の係合部15aの下端面に係合することで、押圧部材27の脱落、つまりフレキシブルプリント配線板20の脱落が確実に防止される。
(Modification)
FIG. 5 is a partial cross-sectional view showing an engagement portion and an engagement release mechanism in a modification of the embodiment. This modification includes a rigid printed wiring board 10, a flexible printed wiring board 20, an elastic member 30, and a guide member 25 shown in FIG. 4 is different from the structure of FIG. 4 in that the engaging portion 15a of the frame member 15 has a protruding structure having an inner wall in which the upper portion is tapered and the lower portion is substantially vertical. 27a has a hook-like structure provided at the lower end of the substantially vertical leaf spring 27b. At the time of assembly, the tapered surface of the tip of the engaging portion 27a of the pressing member 27 and the tapered surface of the engaging portion 15a of the frame member 15 come into contact with each other, and the pressing member 27 is smoothly introduced into the frame member 15, Since the hook-shaped engaging portion 27a is engaged with the lower end surface of the engaging portion 15a of the frame member 15, the pressing member 27 is prevented from falling off, that is, the flexible printed wiring board 20 is prevented from falling off.

一方、枠部材15の係合部15には、横方向に貫通するピン穴15bが形成されており、ピン穴15bの内方側開口部は押圧部材27の板バネ27bの位置に対応している。そして、接続構造体が組立てられた状態で、ピン穴15bにピンを差し込むことにより、枠部材15の係合部15aと枠部材27の係合部27aとの係合状態が解除される。つまり、ピン穴15bと、板バネ27bとにより係合解除機構が構成されている。   On the other hand, a pin hole 15b penetrating in the lateral direction is formed in the engaging portion 15 of the frame member 15, and the inner opening of the pin hole 15b corresponds to the position of the leaf spring 27b of the pressing member 27. Yes. Then, in a state where the connection structure is assembled, by inserting a pin into the pin hole 15b, the engagement state between the engagement portion 15a of the frame member 15 and the engagement portion 27a of the frame member 27 is released. That is, the pin hole 15b and the leaf spring 27b constitute an engagement release mechanism.

本変形例によると、図5に示すような係合解除機構を有することにより、接続構造体の組立ておよび分解、言い換えると、フレキシブルプリント配線板29の脱着を容易、迅速に行うことができる。   According to this modification, by having the disengagement mechanism as shown in FIG. 5, the connection structure can be assembled and disassembled, in other words, the flexible printed wiring board 29 can be attached and detached easily and quickly.

(他の実施の形態)
上記実施の形態では、弾性部材30として、熱可塑性エラストマーを用いたが、本発明の弾性部材の材料は、これに限定されるものではない。たとえば、多孔質樹脂や各種ゴムを用いてもよい。
(Other embodiments)
In the said embodiment, although the thermoplastic elastomer was used as the elastic member 30, the material of the elastic member of this invention is not limited to this. For example, a porous resin or various rubbers may be used.

一方、上記実施の形態のごとく、弾性部材30を熱可塑性エラストマーによって構成し、押圧部材27と二色成形(ダブルモールド)により一体的に構成することにより、製造コストの削減と、組み立て作業の容易・迅速化を図ることができる。   On the other hand, as in the above-described embodiment, the elastic member 30 is made of a thermoplastic elastomer and is integrally formed by the pressing member 27 and two-color molding (double mold), thereby reducing manufacturing costs and facilitating assembly work.・ It can be speeded up.

上記実施の形態では、第1の配線体としてリジッドプリント配線板(略称PCB)を用い、第2の配線体としてフレキシブルプリント配線板(略称FPC)を用いた例について説明したが、本発明の第1の配線体は、リジッドプリント配線板10に限らず、フレキシブルプリント配線板であってもよい。また、フレキシブルプリント配線板であっても、フレキシブルフラットケーブル(FFC)と呼ばれるものがあり、これら各種配線基板同士の接続に用いることができる。ただし、一方は、フレキシブルプリント配線板であることが望ましい。リジッドプリント配線板同士の電気的接続を行う場合には、本発明よりも簡素な構造を採りうるからである。   In the above embodiment, an example in which a rigid printed wiring board (abbreviated as PCB) is used as the first wiring body and a flexible printed wiring board (abbreviated as FPC) is used as the second wiring body has been described. The wiring body 1 is not limited to the rigid printed wiring board 10 but may be a flexible printed wiring board. Moreover, even if it is a flexible printed wiring board, there exists what is called a flexible flat cable (FFC), and it can be used for the connection of these various wiring boards. However, it is desirable that one is a flexible printed wiring board. This is because when the rigid printed wiring boards are electrically connected to each other, a simpler structure than that of the present invention can be adopted.

また、本発明の係合部の構造は、上記実施の形態やその変形例の係合部15a,27aの構造に限定されるものではなく、周知の各種機構を用いて、枠部材15と押圧部材27との嵌合状態を維持するものであればよい。   Further, the structure of the engaging portion of the present invention is not limited to the structure of the engaging portions 15a and 27a of the above-described embodiment and its modifications, and the frame member 15 and the pressing member can be pressed using various known mechanisms. What is necessary is just to maintain a fitting state with the member 27. FIG.

また、本発明の係合解除機構は、変形例における係合解除機構に限定されるものではなく、周知の係合解除機構を用いることができる。   Further, the disengagement mechanism of the present invention is not limited to the disengagement mechanism in the modified example, and a known disengagement mechanism can be used.

また、本発明の枠部材の構造は、実施の形態の枠部材15の構造に限定されるものではない。枠部材15の平面形状がコ字状である必要はなく、フレキシブルプリント配線板20の先端部および両側面を規定する機能を有していればよい。   Further, the structure of the frame member of the present invention is not limited to the structure of the frame member 15 of the embodiment. The planar shape of the frame member 15 does not need to be U-shaped, and it is sufficient that the frame member 15 has a function of defining the distal end portion and both side surfaces of the flexible printed wiring board 20.

上記開示された本発明の実施の形態の構造は、あくまで例示であって、本発明の範囲はこれらの記載の範囲に限定されるものではない。本発明の範囲は、特許請求の範囲の記載によって示され、さらに特許請求の範囲の記載と均等の意味及び範囲内でのすべての変更を含むものである。   The structure of the embodiment of the present invention disclosed above is merely an example, and the scope of the present invention is not limited to the scope of these descriptions. The scope of the present invention is indicated by the description of the scope of claims, and further includes meanings equivalent to the description of the scope of claims and all modifications within the scope.

本発明は、携帯電話などの電気機器に搭載されるフレキシブル配線板と他の配線板との配線間の電気接続を行うコネクタとして利用することができる。   INDUSTRIAL APPLICABILITY The present invention can be used as a connector that performs electrical connection between wiring between a flexible wiring board mounted on an electric device such as a mobile phone and another wiring board.

実施の形態に係る接続構造体の接続前の構造を示す断面図である。It is sectional drawing which shows the structure before the connection of the connection structure which concerns on embodiment. 実施の形態に係るリジッドプリント配線板の平面図である。It is a top view of the rigid printed wiring board concerning an embodiment. 実施の形態の接続構造体の組立方法を説明するための斜視図である。It is a perspective view for demonstrating the assembly method of the connection structure of embodiment. 実施の形態に係る接続構造体の組立状態を示す断面図である。It is sectional drawing which shows the assembly state of the connection structure which concerns on embodiment. 実施の形態の変形例における係合部及び解除機構を示す部分断面図である。It is a fragmentary sectional view which shows the engaging part and the cancellation | release mechanism in the modification of embodiment. (a),(b)は、一般的なZIF構造のコネクタの構造を示す平面図、および側面図である。(A), (b) is the top view and side view which show the structure of the connector of a general ZIF structure.

符号の説明Explanation of symbols

10 リジッドプリント配線板
11 リジッド基板
12 配線
15 枠部材
15a 係合部
15b ピン穴
20 フレキシブルプリント配線板
21 フレキシブル基板
22 配線
25 ガイド部材
27 押圧部材
27a 係合部
27b 板バネ
30 弾性部材
30a 凸部
DESCRIPTION OF SYMBOLS 10 Rigid printed wiring board 11 Rigid board 12 Wiring 15 Frame member 15a Engagement part 15b Pin hole 20 Flexible printed wiring board 21 Flexible board 22 Wiring 25 Guide member 27 Press member 27a Engagement part 27b Leaf spring 30 Elastic member 30a Convex part

Claims (4)

第1の配線が形成された第1の配線体と、
前記第1の配線体における前記第1の配線の先端部周辺に設けられた枠部材と、
前記第1の配線に接続される第2の配線が形成された第2の配線体と、
前記第2の配線体の前記第2の配線と対向する側に配置された押圧部材と、
前記押圧部材と前記第2の配線体との間に介在する弾性部材とを備え、
前記枠部材は、前記第1の配線の先端部を囲むように前記第1の配線板の表面に連結されているとともに、
押圧部材は、前記第1の配線と第2の配線とを接触させるように、前記第2の配線体および弾性部材を第1の配線体に押圧して枠部材に係合する、接続構造体。
A first wiring body in which a first wiring is formed;
A frame member provided around the tip of the first wiring in the first wiring body;
A second wiring body in which a second wiring connected to the first wiring is formed;
A pressing member disposed on a side of the second wiring body facing the second wiring;
An elastic member interposed between the pressing member and the second wiring body,
The frame member is connected to the surface of the first wiring board so as to surround a front end portion of the first wiring,
The pressing member presses the second wiring body and the elastic member against the first wiring body and engages the frame member so that the first wiring and the second wiring are brought into contact with each other. .
請求項1記載の接続構造体において、
前記第2の配線体の先端部には、前記枠部材の内側に対して、第1の配線体の厚み方向に挿入可能なガイド部材が取り付けられている、接続構造体。
The connection structure according to claim 1,
A connection structure in which a guide member that can be inserted in the thickness direction of the first wiring body is attached to the inside of the frame member at the tip of the second wiring body.
請求項1または2記載の接続構造体において、
前記押圧部材と弾性部材とは、二色成形により一体的に設けられている、接続構造体。
The connection structure according to claim 1 or 2,
The connection structure, wherein the pressing member and the elastic member are integrally provided by two-color molding.
請求項1〜3のいずれかに記載の接続構造体において、
前記枠部材または前記押圧部材には、前記枠部材と前記押圧部材との係合を解除させるための係合解除機構が設けられている、接続構造体。
In the connection structure in any one of Claims 1-3,
A connection structure in which the frame member or the pressing member is provided with an engagement release mechanism for releasing the engagement between the frame member and the pressing member.
JP2007055953A 2007-03-06 2007-03-06 Connection structure Expired - Fee Related JP5074789B2 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007029463A1 (en) * 2005-09-06 2007-03-15 Advantest Corporation Test equipment and test method

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8584331B2 (en) * 2011-09-14 2013-11-19 Xerox Corporation In situ flexible circuit embossing to form an electrical interconnect

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5212951Y2 (en) * 1971-06-21 1977-03-23
JPS6355485U (en) * 1986-09-27 1988-04-13
JPH02276292A (en) * 1989-04-18 1990-11-13 Matsushita Electric Ind Co Ltd Connection of printed wiring board
JPH0553509A (en) * 1991-07-03 1993-03-05 Pioneer Electron Corp Display device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007029463A1 (en) * 2005-09-06 2007-03-15 Advantest Corporation Test equipment and test method

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