JP5056379B2 - connector - Google Patents

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JP5056379B2
JP5056379B2 JP2007307234A JP2007307234A JP5056379B2 JP 5056379 B2 JP5056379 B2 JP 5056379B2 JP 2007307234 A JP2007307234 A JP 2007307234A JP 2007307234 A JP2007307234 A JP 2007307234A JP 5056379 B2 JP5056379 B2 JP 5056379B2
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connector
housing
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female
inner housing
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JP2009129884A (en
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太一 岡
秀明 竹原
順二 村上
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Hitachi Cable Ltd
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本発明は、走行時を含む自動車など車両の振動によるがたつきを規制し、両コネクタハウジング内の雌雄両端子の接続の信頼性に優れるコネクタに関するものである。   The present invention relates to a connector that regulates rattling due to vibrations of a vehicle such as an automobile including when traveling and has excellent connection reliability between both male and female terminals in both connector housings.

電気接続を行うコネクタにおいては、コネクタから生じるノイズの放射により外部の電子機器を誤動作させる虞がある。このため、コネクタから生じるノイズの放射を防ぐ必要がある。その対策として、コネクタの外側ケースであるハウジングを導電性材料例えばアルミニウムなどで作製し、このハウジングにて接続部である端子を覆うことにより、コネクタから生じる放射ノイズの低減が図られている。   In a connector that performs electrical connection, external electronic devices may malfunction due to the radiation of noise generated from the connector. For this reason, it is necessary to prevent radiation of noise generated from the connector. As a countermeasure, a housing which is an outer case of the connector is made of a conductive material such as aluminum, and the terminal which is a connecting portion is covered with this housing, thereby reducing radiation noise generated from the connector.

一方、ハウジングをアルミニウムなどの導電性材料又は樹脂などの絶縁材料で作製する場合、量産性、コストの低減を考慮して射出成型により行われることが多い。この場合、ハウジングが薄壁状となるため、成型時に僅かながら内反りが生じることがあり、コネクタの嵌合時にハウジング同士が干渉して嵌合抵抗が増大してしまうことがある。この嵌合抵抗を低減するために、両ハウジングには所定のクリアランスを設ける必要がある。   On the other hand, when the housing is made of a conductive material such as aluminum or an insulating material such as resin, it is often performed by injection molding in consideration of mass productivity and cost reduction. In this case, since the housing has a thin wall shape, slight warping may occur at the time of molding, and when the connectors are fitted, the housings may interfere with each other and the fitting resistance may increase. In order to reduce this fitting resistance, it is necessary to provide a predetermined clearance in both housings.

また、射出成型を行う場合、射出成型機の金型に抜き勾配を設ける必要があるため、成型されたハウジング同士を嵌合した際に、ハウジング間にクリアランスが生じる。   Further, when injection molding is performed, it is necessary to provide a draft in the mold of the injection molding machine, so that a clearance is generated between the housings when the molded housings are fitted together.

コネクタの両ハウジングに所定のクリアランスが生じると、コネクタを嵌合した状態において、両ハウジングが外部からの振動によって嵌合直交方向にがたつくおそれがある。また、振動により両ハウジングにがたが生じると、インナーハウジングに収納されている端子も動くことになる。コネクタの端子は、一方の端子が有するばねの接触力(ばね力)により、もう一方の端子を保持しているが、大きな振動によりばねの接触力よりも大きな力が付加されると、端子を保持することが困難となる。そのため、端子が動いてしまい、端子の磨耗から接触不良となり、接触抵抗が増加する。このため、端子が発熱することがある。   When a predetermined clearance is generated in both housings of the connector, there is a possibility that both housings may rattle in the direction perpendicular to the fitting due to external vibration in a state where the connectors are fitted. Further, when rattling occurs in both housings due to vibration, the terminals accommodated in the inner housing also move. The terminal of the connector holds the other terminal due to the contact force (spring force) of the spring of one terminal, but if a force greater than the contact force of the spring is applied due to large vibration, the terminal It becomes difficult to hold. For this reason, the terminal moves, contact failure occurs due to terminal wear, and the contact resistance increases. For this reason, the terminal may generate heat.

一方、アウターハウジングにアルミニウムなどの導電性材料を用いた場合、端子を収納し且つ絶縁性能を有する樹脂などの絶縁材料で作製されたインナーハウジングとアウターハウジングとをネジを用いて別途結合する必要がある。   On the other hand, when a conductive material such as aluminum is used for the outer housing, it is necessary to separately connect the inner housing and the outer housing, which are made of an insulating material such as a resin that houses terminals and has insulating performance, using screws. is there.

インナーハウジングまたはアウターハウジングに係止部を設けて両ハウジングを結合するようにすれば、両ハウジングを安価に結合することが可能となる。この場合、コネクタの嵌合方向に対しては係止部によりインナーハウジングの動きを抑制することが可能であるが、嵌合直交方向に対しては係止部による効果が小さく強固に固定することが困難であるため、インナーハウジングとアウターハウジング間にはがたが生じることがある。このような状態において、車両走行時の振動が付加されると、前述と同様に、振動によりハウジング及び端子が動いてしまうため、端子の磨耗から接触不良となり、接触抵抗が増加し、端子が発熱してしまう。なお、端子の接触力を車両走行時の振動を考慮して非常に大きな力に設計すると、端子の挿入力が増大(従って嵌合抵抗も増大)すると共に、端子表面のメッキが削れてしまうという問題が発生する。   If the inner housing or the outer housing is provided with a locking portion to couple the two housings, the two housings can be coupled at low cost. In this case, it is possible to suppress the movement of the inner housing by the locking portion with respect to the fitting direction of the connector, but the effect by the locking portion is small and firmly fixed with respect to the fitting orthogonal direction. Is difficult, there may be a backlash between the inner housing and the outer housing. In such a state, if vibration is applied when the vehicle is running, the housing and the terminal move due to the vibration, as described above, so that contact failure occurs due to terminal wear, contact resistance increases, and the terminal generates heat. Resulting in. If the contact force of the terminal is designed to be a very large force in consideration of vibration during vehicle travel, the terminal insertion force increases (and therefore the fitting resistance also increases), and the terminal surface plating is scraped. A problem occurs.

一方、インナーハウジングとアウターハウジングをネジで結合する場合、両ハウジングを強固に結合することが可能となるが、部品点数が増加するだけでなく、ネジの締付け管理や組立工数の増加が生じ、製造コストが増大してしまう。また、ネジが入るスペースをコネクタに設ける必要があるため、コネクタのサイズが大きくなり、小型化が困難となる。   On the other hand, when the inner housing and the outer housing are connected with screws, the two housings can be firmly connected, but not only the number of parts increases, but also the tightening management of screws and the increase in assembly man-hours occur. Cost increases. Moreover, since it is necessary to provide a space for a screw in the connector, the size of the connector becomes large, and miniaturization becomes difficult.

なお、コネクタとしては、特許文献1に記載されているように、両コネクタハウジングのコネクタ嵌合方向及び嵌合直交方向のがたを規制するために、雄型コネクタハウジングのインナーハウジングに、相互に合体されるインナーリング及びアウターリングと、インナーリングを支持する防水用のスプリングパッキンとを設け、インナーリング及びアウターリングには相手側のリングに対して相互に当接する傾斜面をそれぞれ形成し、アウターリングをインナーリングの前端面より突出させて組み付け、両コネクタハウジングの嵌合時に、アウターリングの前端面に雌型コネクタハウジングの奥壁を当接させるようにしたものが提案されているが、相互に当接する傾斜面を有するインナーリング及びアウターリングが必要であり、部品点数が多く、製造コストが増大する。   In addition, as described in Patent Document 1, in order to regulate the connector fitting direction and the fitting orthogonal direction of both connector housings, the connector is mutually connected to the inner housing of the male connector housing. An inner ring and an outer ring to be combined with each other and a waterproof spring packing for supporting the inner ring are provided. The inner ring and the outer ring are respectively formed with inclined surfaces that abut against the other ring, and the outer ring is formed. It has been proposed that the ring protrudes from the front end surface of the inner ring, and the inner wall of the female connector housing is brought into contact with the front end surface of the outer ring when the two connector housings are fitted. Inner ring and outer ring with inclined surfaces that come into contact with the Ku, the manufacturing cost is increased.

特開2005−19287号公報Japanese Patent Laid-Open No. 2005-19287

そこで、本発明は、前記事情を考慮してなされたものであり、コネクタ嵌合方向及び嵌合直交方向のがたを規制することができ、部品点数が少なく製造コストの低減が図れるコネクタを提供することを目的とする。   Accordingly, the present invention has been made in view of the above circumstances, and provides a connector that can regulate the play in the connector fitting direction and the fitting orthogonal direction, and can reduce the number of parts and the manufacturing cost. The purpose is to do.

前記目的を達成するために、本発明のうち、請求項1に係る発明は、電気的接続を行うための雄端子を収容するインナーハウジングと、該インナーハウジングを収容するアウターハウジングとを有する雄コネクタと、
ばね力により上記雄端子を保持すると共に電気的接続を行うための雌端子を収容するインナーハウジングと、該インナーハウジングを収容するアウターハウジングとを有する雌コネクタと、
上記雄コネクタと上記雌コネクタを嵌合する嵌合部材と、
から成り、上記雄コネクタと上記雌コネクタを嵌合した際に、上記雄コネクタのアウターハウジングと上記雌コネクタのアウターハウジングとの間に所定のクリアランスがあるコネクタにおいて、
上記雄コネクタと上記雌コネクタの嵌合時に、上記雄コネクタのインナーハウジング及び上記雌コネクタのインナーハウジングと相互に面接触し弾性材料からなるがた規制部材が上記雄コネクタのアウターハウジング又は上記雌コネクタのアウターハウジングの内部に配設され
上記がた規制部材には、上記雄コネクタ又は上記雌コネクタのいずれかのインナーハウジングに設けられた係合受部に係合して固定される係合部が設けられ、さらに、
上記がた規制部材が配設された上記雄コネクタのインナーハウジング側又は上記雌コネクタのインナーハウジング側から上記がた規制部材側に向かって径が大きくなるテーパー形状を有する係止部が上記係合部に形成されると共に、該係止部の最大径部は上記がた規制部材が配設される上記雄コネクタのインナーハウジング又は上記雌コネクタのインナーハウジングに設けられた上記がた規制部材の上記係合部と係合するための孔の径よりも大きいことを特徴とする。
To achieve the above object, the invention according to claim 1 of the present invention is a male connector having an inner housing for housing a male terminal for electrical connection and an outer housing for housing the inner housing. When,
A female connector having an inner housing for holding the male terminal by spring force and accommodating a female terminal for electrical connection; and an outer housing for accommodating the inner housing;
A fitting member for fitting the male connector and the female connector;
In the connector having a predetermined clearance between the outer housing of the male connector and the outer housing of the female connector when the male connector and the female connector are fitted.
When the male connector and the female connector are fitted, the inner member housing of the male connector and the inner housing of the female connector are in surface contact with each other and the restricting member made of an elastic material is the outer housing of the male connector or the female connector. Disposed in the outer housing of the
The above-mentioned rattling member is provided with an engagement portion that is engaged and fixed to an engagement receiving portion provided in an inner housing of either the male connector or the female connector,
A locking portion having a tapered shape with a diameter increasing from the inner housing side of the male connector or the inner housing side of the female connector to which the rattle restricting member is disposed toward the shading restricting member side is the engagement. And the maximum diameter portion of the locking portion is formed on the inner housing of the male connector or the inner member of the female connector on which the lower member is disposed. It is larger than the diameter of the hole for engaging with the engaging portion .

請求項2に係る発明は、請求項1記載のコネクタにおいて、上記弾性材料は、ショアA硬度10以上70以下の材料であることを特徴とする。
The invention according to claim 2 is the connector according to claim 1, wherein said resilient material is characterized in that as the material used Shore A hardness of 10 to 70.

請求項に係る発明は、請求項1又は2記載のコネクタにおいて、上記係合部の先端には、上記係合部の直径よりも細い径の細軸部が突設されていることを特徴とする。 According to a third aspect of the present invention, in the connector according to the first or second aspect , a thin shaft portion having a diameter smaller than the diameter of the engaging portion is projected from the tip of the engaging portion. And

請求項1に係る発明によれば、一方のアウターハウジングの内部に、規制部材を設けるだけでよく、両インナーハウジングががた規制部材に面接触で密着することにより簡単な構造でコネクタ嵌合方向及び嵌合直交方向のがたを規制することができ、部品点数が少なく製造コストの低減が図れる。
さらに、上記がた規制部材が配設された上記雄コネクタのインナーハウジング側又は上記雌コネクタのインナーハウジング側から上記がた規制部材側に向かって径が大きくなるテーパー形状を有する係止部が上記係合部に形成されると共に、該係止部の最大径部は上記がた規制部材が配設される上記雄コネクタのインナーハウジング又は上記雌コネクタのインナーハウジングに設けられた上記がた規制部材の上記係合部と係合するための孔の径よりも大きいことから、雄コネクタと雌コネクタとを挿抜させても、がた規制部材がインナーハウジングから抜け落ちることがない。
According to the first aspect of the present invention, it is only necessary to provide a regulating member inside one of the outer housings, and the connector fitting direction can be achieved with a simple structure by closely contacting the inner and outer regulating members with the surface contact. In addition, it is possible to regulate rattling in the direction perpendicular to the fitting, and the number of parts is small, and the manufacturing cost can be reduced.
Further, the locking portion having a tapered shape with a diameter increasing from the inner housing side of the male connector or the female housing inner side of the female connector, in which the above-described rattling regulating member is disposed, toward the above-mentioned rattling regulating member side, The ratchet restricting member provided on the inner housing of the male connector or the inner housing of the female connector is formed in the engaging portion, and the maximum diameter portion of the locking portion is provided with the shading restricting member. Therefore, even if the male connector and the female connector are inserted and removed, the rattling restricting member does not fall out of the inner housing.

請求項2に係る発明によれば、上記弾性材料が、ショアA硬度10以上70以下の材料であるため、がた規制部材の弾性変形により両インナーハウジングとがた規制部材を隙間なく接触ないし密着させることが可能となり、コネクタ嵌合方向及び嵌合直交方向のがたを充分に抑制することができる。
According to the second aspect of the present invention, since the elastic material is a material having a Shore A hardness of 10 or more and 70 or less , the inner and outer housings are brought into contact with or tightly contacted with the inner member by elastic deformation of the inner member. Therefore, it is possible to sufficiently suppress rattling in the connector fitting direction and the fitting orthogonal direction.

以下に、本発明を実施するための最良の形態を添付図面に基いて詳述する。図1は本発明の実施形態に係るコネクタ1を概略的に示す分解斜視図、図2はコネクタ1の嵌合状態を示す縦断面図、図3は雌型コネクタ1bの断面斜視図、図4は雄型コネクタ1aの要部を示す斜視図である。   The best mode for carrying out the present invention will be described below in detail with reference to the accompanying drawings. 1 is an exploded perspective view schematically showing a connector 1 according to an embodiment of the present invention, FIG. 2 is a longitudinal sectional view showing a fitting state of the connector 1, FIG. 3 is a sectional perspective view of a female connector 1b, and FIG. These are perspective views which show the principal part of the male connector 1a.

これらの図において、コネクタ1は自動車等の車両が振動を生ずる部分に適用される電気接続部品であり、車両走行時の車体振動、HEV(Hybrid Electric Vehicle)、EV(Electric Vehicle)などのモータ及びインバータ駆動時の振動、エンジンからの強制振動に起因するコネクタ1の振動を、コネクタ1のアウターハウジング7,8のがたを規制することで抑制し、インナーハウジング5,6内の雄、雌両端子2,3の接続の信頼性を向上させるものである。   In these drawings, a connector 1 is an electrical connection component applied to a portion where a vehicle such as an automobile generates vibrations. A vehicle vibration during traveling of the vehicle, a motor such as HEV (Hybrid Electric Vehicle), EV (Electric Vehicle), and the like The vibration of the connector 1 due to the vibration when the inverter is driven and the forced vibration from the engine is suppressed by restricting the play of the outer housings 7 and 8 of the connector 1, and both male and female ends in the inner housings 5 and 6 are suppressed. This improves the reliability of connection between the children 2 and 3.

上記コネクタ1は、がた規制部材4を介して雄コネクタ1aと雌コネクタ1bを嵌合することで構成されている。具体的には、互いに嵌合してコネクタ1を構成する雄コネクタ1aと雌コネクタ1bは、それぞれ、端子2,3を収容する絶縁材料からなるインナーハウジング5,6と、該インナーハウジング5,6を収容する導電性材料からなるアウターハウジング7,8とを有し、一方のアウターハウジング7の内部に、コネクタ嵌合時に、両インナーハウジング5,6と相互に面接触するがた規制部材4を設けて構成されている。このがた規制部材4は、図4に示すように1つの部材からなることが好ましい。インナーハウジング5の基端部2aにがた規制部材4をセットする工程を簡略化できるからである。   The connector 1 is configured by fitting a male connector 1a and a female connector 1b via a backlash regulating member 4. Specifically, the male connector 1a and the female connector 1b that are engaged with each other to form the connector 1 have inner housings 5 and 6 made of an insulating material for accommodating the terminals 2 and 3, respectively, and the inner housings 5 and 6 And the outer housings 7 and 8 made of a conductive material that accommodates the inner housing 5 and the regulating member 4 that is in surface contact with the inner housings 5 and 6 when the connector is fitted. It is provided and configured. As shown in FIG. 4, the restriction member 4 is preferably made of one member. This is because the process of setting the rattling restricting member 4 on the base end portion 2a of the inner housing 5 can be simplified.

雄コネクタ1aは、コネクタケースであるアウターハウジング7と、雄端子2と、この雄端子2を絶縁して収納するインナーハウジング5と、がた規制部材4とで構成されている。雄側のアウターハウジング7は、導電性材料例えばアルミニウム、インナーハウジング5は絶縁材料例えば樹脂好ましくはPBT(ポリ・ブチレン・テレフタレート)、雄端子2は導電性材料例えば銅合金、がた規制部材4は弾性材料例えばシリコンゴムによりそれぞれ構成されている。   The male connector 1a includes an outer housing 7 that is a connector case, a male terminal 2, an inner housing 5 that insulates and stores the male terminal 2, and a rattling restriction member 4. The male outer housing 7 is a conductive material such as aluminum, the inner housing 5 is an insulating material such as a resin, preferably PBT (polybutylene terephthalate), the male terminal 2 is a conductive material such as a copper alloy, Each is made of an elastic material such as silicon rubber.

雌コネクタ1bは、コネクタケースであるアウターハウジング8と、雌端子3と、雌端子3を絶縁して収納するインナーハウジング6と、嵌合方向でインナーハウジング6からの雌端子3の抜け落ちを防ぐインナープレート11と、雄コネクタ1aのアウターハウジング7と接触するグランドコンタクト12と、ケーブル13のシールド14とアウターハウジング8とに接触して両者を電気的に接続するフェルール15と、コネクタ嵌合時に防水性能を発揮して両アウターハウジング7,8間をシールする防水シール16と、ケーブル13とアウターハウジング8の後部筒状部8bとの間の防水を行うワイヤシール17と、ワイヤシール17の抜けを防止すべく後部筒状部8bの端部に装着された三連形のテールプレート18と、コネクタ嵌合時に挿入をアシストするレバー20と、コネクタ1の嵌合状態を明らかにすると共にレバー20を固定する固定部材(CPA:Connector Position Assurance)21とから構成されている。上記雄コネクタ1aと上記雌コネクタ1bを嵌合する嵌合部材は、主に上記レバー20と固定部材21とから構成されている。   The female connector 1b includes an outer housing 8, which is a connector case, a female terminal 3, an inner housing 6 that insulates and stores the female terminal 3, and an inner that prevents the female terminal 3 from falling off the inner housing 6 in the fitting direction. Plate 11, ground contact 12 that contacts outer housing 7 of male connector 1 a, ferrule 15 that contacts shield 14 and outer housing 8 of cable 13 and electrically connects both, and waterproof performance when the connector is fitted A waterproof seal 16 that seals between the outer housings 7 and 8, a wire seal 17 that waterproofs between the cable 13 and the rear cylindrical portion 8 b of the outer housing 8, and prevents the wire seal 17 from coming off. A triple tail plate 18 mounted on the end of the rear cylindrical portion 8b and a connector fit A lever 20 which at assisting the insertion, fixing members for fixing the lever 20 clarified the fitting state of the connector 1: and a (CPA Connector Position Assurance) 21 Prefecture. The fitting member for fitting the male connector 1a and the female connector 1b is mainly composed of the lever 20 and the fixing member 21.

上記雌側のアウターハウジング8はアルミニウム、インナーハウジング6、インナープレート11、テールプレート18、レバー20及び固定部材21は樹脂例えばPBT、雌端子3、フェルール15及びグランドコンタクト12は銅合金、防水シール16、ワイヤシール17はシリコンゴムでそれぞれ構成されている。   The female outer housing 8 is aluminum, the inner housing 6, the inner plate 11, the tail plate 18, the lever 20 and the fixing member 21 are resin, for example, PBT, the female terminal 3, the ferrule 15, and the ground contact 12 are copper alloy, and a waterproof seal 16. The wire seal 17 is made of silicon rubber.

図示例のコネクタ1においては、雄コネクタ1a側に並列の複数例えば3つの雄端子2を有し、これら雄端子2に対応して雌コネクタ1b側に並列の複数例えば3つの雌端子3を有している。雌コネクタ1bのアウターハウジング8は、扁平筒状の前部筒状部8aと、雌端子3に対応する複数例えば3本のケーブル13をそれぞれ挿入する並列した複数の筒状の後部筒状部8bとを一体に有している。   The connector 1 in the illustrated example has a plurality of, for example, three male terminals 2 in parallel on the male connector 1a side, and a plurality of, for example, three female terminals 3 in parallel on the female connector 1b side corresponding to these male terminals 2. is doing. The outer housing 8 of the female connector 1b includes a flat cylindrical front cylindrical portion 8a and a plurality of parallel rear cylindrical portions 8b into which a plurality of, for example, three cables 13 corresponding to the female terminals 3 are inserted. Are integrated.

ケーブル13は、図2に示すように、導線である芯線13aと、該芯線13aを被覆する内側絶縁プラスチック13bと、該内側絶縁プラスチック13bを被覆するシールド(メッシュチューブ)14と、該シールド14を被覆する外側絶縁プラスチック13cとを有する同軸ケーブルからなっている。上記シールド14の先端側は外側絶縁プラスチック13cの先端側外周面を覆うように折り返されており、そのシールド14にフェルール15を介してアウターハウジング8の後部筒状部8bが電気的に接続されている。   As shown in FIG. 2, the cable 13 includes a core wire 13a that is a conductor, an inner insulating plastic 13b that covers the core wire 13a, a shield (mesh tube) 14 that covers the inner insulating plastic 13b, and the shield 14 It consists of a coaxial cable having an outer insulating plastic 13c to be covered. The front end side of the shield 14 is folded back so as to cover the outer peripheral surface of the front end side of the outer insulating plastic 13 c, and the rear cylindrical portion 8 b of the outer housing 8 is electrically connected to the shield 14 via the ferrule 15. Yes.

上記雌端子3に上記芯線13aが電気的に接続されている。雌端子3は雌コネクタ1bのインナーハウジング6内に収容されており、該インナーハウジング6の先端部には雄端子2の断面U字状の基端部2aを挿入する断面U字状の挿入口22が形成されている(図3参照)。上記インナーハウジング6には上記後部筒状部8bの延出端23に接触するグランドコンタクト12が取付けられ、該グランドコンタクト12に雄コネクタ1aのアウターハウジング7の内面の一部が接触するようになっている。   The core wire 13 a is electrically connected to the female terminal 3. The female terminal 3 is accommodated in the inner housing 6 of the female connector 1b, and an insertion port having a U-shaped cross section for inserting the U-shaped base end 2a of the male terminal 2 into the distal end portion of the inner housing 6. 22 is formed (see FIG. 3). A ground contact 12 that contacts the extending end 23 of the rear tubular portion 8b is attached to the inner housing 6, and a part of the inner surface of the outer housing 7 of the male connector 1a comes into contact with the ground contact 12. ing.

上記雌端子3は雄端子2の断面U字状の基端部2aの内面に雌端子3のV字構造によるばね力で押圧されるようになっている。雌コネクタ1bにおけるアウターハウジング8とインナーハウジング6とは、図3に示すようにアウターハウジング8の後部筒状部8bの延出端23に形成された上下一対の凹部24に対し、インナーハウジング6に形成された上下一対の凸部25を係合させることにより結合されている。   The female terminal 3 is pressed against the inner surface of the base end 2a having a U-shaped cross section of the male terminal 2 by a spring force due to the V-shaped structure of the female terminal 3. The outer housing 8 and the inner housing 6 in the female connector 1b are connected to the inner housing 6 with respect to a pair of upper and lower recesses 24 formed in the extending end 23 of the rear cylindrical portion 8b of the outer housing 8 as shown in FIG. The upper and lower pair of convex portions 25 formed are coupled by engaging with each other.

一方、雄コネクタ1aのインナーハウジング5は、図2又は図4に示すように扁平筒状のアウターハウジング7内に一方の開口から挿入されて他方の開口側の内周壁段部26に係止されるフランジ部27を有し、該フランジ部27にはこれよりアウターハウジング7の他方の開口部近傍へ向って延出し、該開口部近傍の内周壁上下面に突設された凸部28にこれを乗り越えて係合する係合フック部30が上下に複数例えば3つずつ形成されている。これにより、アウターハウジング7とインナーハウジング5とが結合されている。   On the other hand, the inner housing 5 of the male connector 1a is inserted into the flat cylindrical outer housing 7 from one opening as shown in FIG. 2 or 4, and is locked to the inner peripheral wall step portion 26 on the other opening side. The flange portion 27 extends toward the other opening portion of the outer housing 7 from the flange portion 27 and protrudes from the upper and lower surfaces of the inner peripheral wall near the opening portion. A plurality of, for example, three engaging hook portions 30 are formed on the upper and lower sides. Thereby, the outer housing 7 and the inner housing 5 are combined.

雄端子2は、インナーハウジング5から前方(図2中の左方向)に突出しており、雄端子2の基端部2aはインナーハウジング5の後端に形成されたフランジ部27の後端面から後方(図2中の右方向)に突出している。上記がた規制部材4は、上記インナーハウジング5のフランジ部27の後端面に平行な平板状に形成されており、がた規制部材4にはフランジ部27の後端面から突出した雄端子2の基端部2aを挿通させる開口部31が形成されている。   The male terminal 2 projects forward (in the left direction in FIG. 2) from the inner housing 5, and the base end portion 2 a of the male terminal 2 is rearward from the rear end surface of the flange portion 27 formed at the rear end of the inner housing 5. Projecting in the right direction in FIG. The rattling regulating member 4 is formed in a flat plate shape parallel to the rear end surface of the flange portion 27 of the inner housing 5, and the rattling regulating member 4 has a male terminal 2 protruding from the rear end surface of the flange portion 27. An opening 31 through which the base end portion 2a is inserted is formed.

上記がた規制部材4には、一方のインナーハウジング5に設けられた係合受部である孔部32に係合(嵌合)してがた規制部材4を固定するための係合部である突軸部33が設けられている。該突軸部33はがた規制部材4と同じ弾性材料例えばシリコンゴムにより形成されていることが好ましい。図示例では、インナーハウジング5のフランジ部27に、これを前後方向に貫通する上下一対の孔部32が左右の長手方向に適宜間隔で複数(例えば8つ)設けられている。上記突軸部33は、左右方向に長い平板状のがた規制部材4の前端面に、前記孔部32と対応して突設されている。   The rattling restriction member 4 has an engagement portion for fixing the restriction member 4 engaged (fitted) with a hole 32 which is an engagement receiving portion provided in one inner housing 5. A protruding shaft portion 33 is provided. The projecting shaft portion 33 is preferably formed of the same elastic material as that of the back regulating member 4, for example, silicon rubber. In the illustrated example, a plurality (for example, eight) of a pair of upper and lower hole portions 32 penetrating through the flange portion 27 of the inner housing 5 in the front-rear direction are provided at appropriate intervals in the left-right longitudinal direction. The protruding shaft portion 33 protrudes from the front end surface of the flat plate-shaped regulating member 4 that is long in the left-right direction, corresponding to the hole portion 32.

突軸部33にはテーパー状ないし傘状の係止部34が設けられていることが好ましい。テーパー状ないし傘状の係止部34は、本実施形態では、軸対称の形状をしており、最も径の大きい部分である大径部分から一方向側では突軸部33の径までテーパー状に径が小さくなっている。係止部34の他方向側である大径部分と突軸部33との境界部に略90°の段差部分を有する。また、係止部34の大径部分の径は孔部32の径よりも大きい。例えば、孔部32の孔径は2mmの場合、係止部24の大径部分の外径は孔部32の孔径よりも大きい2.2mmとされる。なお、係止部34の形状は軸対称でなくとも良く、大径部分が孔部32に引っ掛かる構造であれば良い。この構成により、孔部32からの突軸部33の引き抜け(離脱)を防止できる。   The protruding shaft portion 33 is preferably provided with a tapered or umbrella-shaped locking portion 34. In the present embodiment, the tapered or umbrella-like locking portion 34 has an axially symmetric shape, and is tapered from the large diameter portion, which is the largest diameter portion, to the diameter of the protruding shaft portion 33 in one direction. The diameter is small. A step portion of approximately 90 ° is provided at the boundary between the large diameter portion on the other direction side of the locking portion 34 and the protruding shaft portion 33. Further, the diameter of the large diameter portion of the locking portion 34 is larger than the diameter of the hole portion 32. For example, when the hole diameter of the hole portion 32 is 2 mm, the outer diameter of the large diameter portion of the locking portion 24 is 2.2 mm, which is larger than the hole diameter of the hole portion 32. Note that the shape of the locking portion 34 does not have to be axisymmetric, and may be any structure as long as the large diameter portion is caught by the hole 32. With this configuration, the protruding shaft 33 can be prevented from being pulled out (detached) from the hole 32.

がた規制部材4の前端面がインナーハウジング5のフランジ部27の後端面に接触している状態で、係止部34の大径部分が孔部32内に丁度嵌ることで孔部32からの突軸部33の引き抜け(離脱)防止ができる。または、係止部34の大径部分が孔部32を通過して係止部34の突軸部33との段差部分がフランジ部27の前端面に係止される(引っ掛かる)ようになっていてもよい。また、上記突軸部33の先端には該突軸部33の直径よりも細い径の先導用の細軸部33aが突設されていることが突軸部33を孔部32に容易に嵌合させることができる点で好ましい。   In the state where the front end surface of the rattling restricting member 4 is in contact with the rear end surface of the flange portion 27 of the inner housing 5, the large-diameter portion of the locking portion 34 is fitted into the hole portion 32 so that The protruding shaft portion 33 can be prevented from being pulled out (detached). Or the large diameter part of the latching | locking part 34 passes the hole part 32, and the level | step-difference part with the projecting shaft part 33 of the latching | locking part 34 is latched by the front-end surface of the flange part 27 (it catches). May be. Further, a leading thin shaft portion 33a having a diameter smaller than the diameter of the projecting shaft portion 33 is projected at the tip of the projecting shaft portion 33 so that the projecting shaft portion 33 can be easily fitted into the hole 32. It is preferable in that it can be combined.

なお、上記レバー20は、雌側アウターハウジング8の前部筒状部8aの両側部に突設した支軸35を介して前後方向に揺動可能(回動可能)に支持され、レバー20を前倒し位置(図1参照)から後ろ倒し位置(図2、図3参照)に回動する際に、雄側アウターハウジング7の両側部に突設した支軸36にレバー20の係合溝20aが係合して該支軸36を上記支軸35に接近させる方向にアシストするようになっている。上記固定部材21は、フック状に形成されており、雌側アウターハウジング8の前部筒状部8aの上側後端部に突出形成された突出部37に前後移動可能に設けられ、後ろ倒し位置のレバー20に固定部材21を係合させることによりレバー20をロックするようになっている。   The lever 20 is supported so as to be swingable (rotatable) in the front-rear direction via support shafts 35 projecting from both sides of the front cylindrical portion 8a of the female-side outer housing 8, and the lever 20 is When rotating from the forward-turned position (see FIG. 1) to the backward-turned position (see FIGS. 2 and 3), the engaging groove 20a of the lever 20 is formed on the support shaft 36 projecting on both sides of the male outer housing 7. By engaging, the support shaft 36 is assisted in a direction to approach the support shaft 35. The fixing member 21 is formed in a hook shape, and is provided in a projecting portion 37 projecting from the upper rear end portion of the front cylindrical portion 8a of the female outer housing 8 so as to be movable back and forth, and is in a backwardly tilted position. The lever 20 is locked by engaging the fixing member 21 with the lever 20.

以上の構成からなるコネクタ1によれば、互いに嵌合する雄コネクタ1aと雌コネクタ1bが、それぞれ、端子2,3を収容する絶縁材料からなるインナーハウジング5,6と、該インナーハウジング5,6を収容する導電性材料からなるアウターハウジング7,8とを有し、一方のアウターハウジング7の内部に、コネクタ嵌合時に、両インナーハウジング5,6と相互に面接触する一つのがた規制部材4を設けているため、一方のアウターハウジングの内部に、一つのがた規制部材を設けるだけでよく、両インナーハウジング5,6ががた規制部材4に面接触で密着することにより簡単な構造でコネクタ嵌合方向及び嵌合直交方向のがたを規制することができ、部品点数が少なく製造コストの低減が図れる。   According to the connector 1 having the above-described configuration, the male connector 1a and the female connector 1b that are fitted to each other have the inner housings 5 and 6 made of an insulating material for accommodating the terminals 2 and 3, respectively, and the inner housings 5 and 6 The outer housings 7 and 8 are made of a conductive material that accommodates the inner housing, and the inner member of one outer housing 7 is in contact with the inner housings 5 and 6 when the connector is fitted. 4 is provided, it is only necessary to provide one rattling restricting member inside one outer housing, and the inner housings 5 and 6 are simply structured by being in close contact with the rattling restricting member 4 by surface contact. Thus, rattling in the connector fitting direction and the fitting orthogonal direction can be restricted, and the number of parts is small and the manufacturing cost can be reduced.

換言すれば、コネクタ嵌合時には嵌合方向及び嵌合直交方向において、雄雌両インナーハウジング5,6間、雄雌それぞれのインナーハウジング5,6とアウターハウジング7,8間もがた規制部材4により密着状態となり、強固に固定することが可能となる。また、上記がたの低減は、一つのがた規制部材4だけで達成することができ、雄雌のコネクタ1a,1bの形状変更も非常に少なくて済むため、製造コストの低減が図れる。   In other words, the restriction member 4 between the male and female inner housings 5 and 6 and between the male and female inner housings 5 and 6 and the outer housings 7 and 8 in the fitting direction and the orthogonal direction of fitting when the connector is fitted. It becomes a close contact state and can be firmly fixed. Moreover, the reduction of the above-mentioned backlash can be achieved with only one backlash regulating member 4 and the shape change of the male and female connectors 1a and 1b can be very little, so that the manufacturing cost can be reduced.

また、上記がた規制部材4が、ショアA硬度10以上70以下の弾性材料からなることが好ましい。例えば厚さ1.5mmのシリコンゴム(ショアA硬度38度)をがた規制部材4に用いれば、がた規制部材4が充分に弾性変形することができ、がた規制部材4の弾性変形により両インナーハウジング5,6とがた規制部材4を隙間なく接触ないし密着させることが可能となり、コネクタ嵌合方向及び嵌合直交方向のがたを充分に抑制することができる。なお、ショアA硬度10以上70以下としたのは、ショアA硬度10未満ではゴムの成形が困難であることと、ショアA硬度が70より大きいと充分に弾性変形することができないことからである。また、インナーハウジング5,6は樹脂成型品のため、寸法しろ(較差)を設ける必要がある。この寸法しろ(較差)はがたつきの要因となるが、がた規制部材4の弾性変形量を充分に確保することで、コネクタ嵌合時にインナーハウジング5,6と、がた規制部材4とが密着してがたつきを防ぐことができる。   Moreover, it is preferable that the above-mentioned regulating member 4 is made of an elastic material having a Shore A hardness of 10 or more and 70 or less. For example, if silicon rubber (Shore A hardness 38 degrees) with a thickness of 1.5 mm is used for the regulating member 4, the rattling regulating member 4 can be sufficiently elastically deformed. Both inner housings 5 and 6 can be contacted or brought into close contact with each other without gaps, and play in the connector fitting direction and the fitting orthogonal direction can be sufficiently suppressed. The reason why the Shore A hardness is 10 or more and 70 or less is that it is difficult to mold rubber when the Shore A hardness is less than 10, and when the Shore A hardness is more than 70, the rubber cannot be elastically deformed sufficiently. . Moreover, since the inner housings 5 and 6 are resin molded products, it is necessary to provide a dimensional margin (range). Although this size margin (difference) becomes a cause of rattling, by ensuring a sufficient amount of elastic deformation of the rattling regulating member 4, the inner housings 5 and 6 and the rattling regulating member 4 can be connected when the connector is fitted. It can prevent rattling from close contact.

インナーハウジング5,6が絶縁材料例えば樹脂で、アウターハウジング7,8が導電性材料例えばアルミニウムである場合、インナーハウジング5,6とアウターハウジング7,8間にがたを考慮したクリアランスを確保する必要があるが、このクリアランスに関わらず上記がた規制部材4によりコネクタ嵌合方向及び嵌合直交方向のがたを抑制することが可能となる。   When the inner housings 5 and 6 are made of an insulating material such as resin and the outer housings 7 and 8 are made of a conductive material such as aluminum, it is necessary to secure a clearance in consideration of rattling between the inner housings 5 and 6 and the outer housings 7 and 8. However, regardless of this clearance, it is possible to suppress rattling in the connector fitting direction and the fitting orthogonal direction by the above-described rattling regulating member 4.

また、上記がた規制部材4には、一方のインナーハウジング5に設けられた係合受部例えば孔部32に係合してがた規制部材4を固定するための係合部例えば突軸部33が設けられているため、雄雌両コネクタ1a,1bの挿抜を繰り返してもがた規制部材4が一方のインナーハウジング5から脱落するおそれがなく、常に上記効果が得られ、信頼性の向上が図れる。この場合、突軸部33にはテーパー状ないし傘状の係止部34が設けられ、孔部32の孔径は例えば2mm、係止部34の大径部分の外径は孔部32の孔径よりも大きい2.2mmとされているため、一度インナーハウジング5の孔部32に係止部34を挿入すると、シリコンゴムに弾性変形を生じさせる大きな力を加えない限り抜き取ることができない。従って、コネクタを挿抜させても、がた規制部材4がインナーハウジング5から抜け落ちることがなく、常に性能を発揮することができる。   Further, the above-described rattling member 4 includes an engaging portion, for example, a protruding shaft portion, for fixing the engaging member provided in one inner housing 5, for example, the hole 32. Since 33 is provided, there is no possibility that the regulating member 4 that has been repeatedly inserted and withdrawn from both the male and female connectors 1a and 1b will drop off from the inner housing 5, and the above-described effects can be obtained at all times, and reliability is improved. Can be planned. In this case, the protruding shaft portion 33 is provided with a tapered or umbrella-shaped locking portion 34, the hole diameter of the hole portion 32 is 2 mm, for example, and the outer diameter of the large diameter portion of the locking portion 34 is larger than the hole diameter of the hole portion 32. Therefore, once the locking portion 34 is inserted into the hole 32 of the inner housing 5, it cannot be pulled out unless a large force causing elastic deformation is applied to the silicon rubber. Therefore, even if the connector is inserted and removed, the rattling regulating member 4 does not fall out of the inner housing 5 and can always exhibit performance.

以上、本発明の実施の形態を図面により詳述してきたが、本発明は前記実施の形態に限定されるものではなく、本発明の要旨を逸脱しない範囲での種々の設計変更が可能である。例えば、インナーハウジング及びアウターハウジングが共に絶縁材料例えば樹脂であってよく、この場合、インナーハウジングとアウターハウジング間にがたを考慮する必要がないが、コネクタ嵌合時の嵌合抵抗を低減するために所定のクリアランスを設ける必要があり、このクリアランスに関わらずがた規制部材によってコネクタ嵌合方向及び嵌合直交方向のがたを抑制することができる。   The embodiments of the present invention have been described in detail with reference to the drawings. However, the present invention is not limited to the above-described embodiments, and various design changes can be made without departing from the gist of the present invention. . For example, both the inner housing and the outer housing may be made of an insulating material such as resin. In this case, there is no need to consider rattling between the inner housing and the outer housing, but in order to reduce the fitting resistance when the connector is fitted. It is necessary to provide a predetermined clearance, and rattling in the connector fitting direction and the fitting orthogonal direction can be suppressed by the regulating member regardless of the clearance.

本発明の実施形態に係るコネクタを概略的に示す分解斜視図である。1 is an exploded perspective view schematically showing a connector according to an embodiment of the present invention. コネクタの嵌合状態を示す縦断面図である。It is a longitudinal cross-sectional view which shows the fitting state of a connector. 雌型コネクタの断面斜視図である。It is a cross-sectional perspective view of a female connector. 雄型コネクタの要部を示す斜視図である。It is a perspective view which shows the principal part of a male connector.

符号の説明Explanation of symbols

1 コネクタ
1a 雄コネクタ
1b 雌コネクタ
2,3 端子
4 がた規制部材
5,6 インナーハウジング
7,8 アウターハウジング
20 レバー(嵌合部材)
21 固定部材(嵌合部材)
32 孔部(係合受部)
33 突軸部(係合部)
DESCRIPTION OF SYMBOLS 1 Connector 1a Male connector 1b Female connector 2, 3 Terminal 4 Cover regulating member 5, 6 Inner housing 7, 8 Outer housing 20 Lever (fitting member)
21 Fixing member (fitting member)
32 hole (engagement receiving part)
33 Projection shaft (engagement part)

Claims (3)

電気的接続を行うための雄端子を収容するインナーハウジングと、該インナーハウジングを収容するアウターハウジングとを有する雄コネクタと、
ばね力により上記雄端子を保持すると共に電気的接続を行うための雌端子を収容するインナーハウジングと、該インナーハウジングを収容するアウターハウジングとを有する雌コネクタと、
上記雄コネクタと上記雌コネクタを嵌合する嵌合部材と、
から成り、上記雄コネクタと上記雌コネクタを嵌合した際に、上記雄コネクタのアウターハウジングと上記雌コネクタのアウターハウジングとの間に所定のクリアランスがあるコネクタにおいて、
上記雄コネクタと上記雌コネクタの嵌合時に、上記雄コネクタのインナーハウジング及び上記雌コネクタのインナーハウジングと相互に面接触し弾性材料からなるがた規制部材が上記雄コネクタのアウターハウジング又は上記雌コネクタのアウターハウジングの内部に配設され
上記がた規制部材には、上記雄コネクタ又は上記雌コネクタのいずれかのインナーハウジングに設けられた係合受部に係合して固定される係合部が設けられ、さらに、
上記がた規制部材が配設された上記雄コネクタのインナーハウジング側又は上記雌コネクタのインナーハウジング側から上記がた規制部材側に向かって径が大きくなるテーパー形状を有する係止部が上記係合部に形成されると共に、該係止部の最大径部は上記がた規制部材が配設される上記雄コネクタのインナーハウジング又は上記雌コネクタのインナーハウジングに設けられた上記がた規制部材の上記係合部と係合するための孔の径よりも大きいことを特徴とするコネクタ。
A male connector having an inner housing for housing a male terminal for electrical connection, and an outer housing for housing the inner housing;
A female connector having an inner housing for holding the male terminal by spring force and accommodating a female terminal for electrical connection; and an outer housing for accommodating the inner housing;
A fitting member for fitting the male connector and the female connector;
In the connector having a predetermined clearance between the outer housing of the male connector and the outer housing of the female connector when the male connector and the female connector are fitted.
When the male connector and the female connector are fitted, the inner member housing of the male connector and the inner housing of the female connector are in surface contact with each other and the restricting member made of an elastic material is the outer housing of the male connector or the female connector. Disposed in the outer housing of the
The above-mentioned rattling member is provided with an engagement portion that is engaged and fixed to an engagement receiving portion provided in an inner housing of either the male connector or the female connector,
A locking portion having a tapered shape with a diameter increasing from the inner housing side of the male connector or the inner housing side of the female connector to which the rattle restricting member is disposed toward the shading restricting member side is the engagement. And the maximum diameter portion of the locking portion is formed on the inner housing of the male connector or the inner member of the female connector on which the lower member is disposed. The connector characterized by being larger than the diameter of the hole for engaging with an engaging part .
上記弾性材料は、ショアA硬度10以上70以下の材料であることを特徴とする請求項1記載のコネクタ。   The connector according to claim 1, wherein the elastic material is a material having a Shore A hardness of 10 or more and 70 or less. 上記係合部の先端には、上記係合部の直径よりも細い径の細軸部が突設されていることを特徴とする請求項1又は2記載のコネクタ。 3. The connector according to claim 1, wherein a thin shaft portion having a diameter smaller than the diameter of the engaging portion is projected from the tip of the engaging portion.
JP2007307234A 2007-11-28 2007-11-28 connector Active JP5056379B2 (en)

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JPH0195475A (en) * 1987-10-08 1989-04-13 Yazaki Corp Waterproof connector
JP2929340B2 (en) * 1991-09-20 1999-08-03 日本ラインツ株式会社 gasket
JP3433433B2 (en) * 1994-03-07 2003-08-04 矢崎総業株式会社 Shield connector
JP2002022019A (en) * 2000-07-06 2002-01-23 Mitsubishi Cable Ind Ltd Seal material, seal member using the same, and seal using the seal member
JP2002022919A (en) * 2000-07-04 2002-01-23 Toppan Printing Co Ltd Method for manufacturing color filter
JP2002083646A (en) * 2000-09-08 2002-03-22 Sumitomo Wiring Syst Ltd Waterproof connector
JP2002203638A (en) * 2001-01-04 2002-07-19 Sumitomo Wiring Syst Ltd Connector
JP4461379B2 (en) * 2004-12-28 2010-05-12 住友電装株式会社 connector
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