JP5227379B2 - Flat conductor electrical connector - Google Patents

Flat conductor electrical connector Download PDF

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JP5227379B2
JP5227379B2 JP2010191015A JP2010191015A JP5227379B2 JP 5227379 B2 JP5227379 B2 JP 5227379B2 JP 2010191015 A JP2010191015 A JP 2010191015A JP 2010191015 A JP2010191015 A JP 2010191015A JP 5227379 B2 JP5227379 B2 JP 5227379B2
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flat conductor
elastic arm
contact
contact portion
arm portion
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JP2012049029A (en
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史朗 須永
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Hirose Electric Co Ltd
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Description

本発明は平型導体用電気コネクタに関する。   The present invention relates to an electrical connector for a flat conductor.

平型導体用電気コネクタにおいて、ハウジング内に向け前方へ挿入される平型導体と端子との接触の確実性そして安定性を確保すべく、該端子に平型導体との接触のための接触部を複数形成することがある。このような複数の接触部が形成された端子を有する電気コネクタとして、例えば、特許文献1に記載されている電気コネクタが知られている。   In the electrical connector for a flat conductor, in order to ensure the certainty and stability of the contact between the flat conductor inserted forward into the housing and the terminal, the contact portion for contacting the flat conductor with the terminal May be formed. For example, an electrical connector described in Patent Document 1 is known as an electrical connector having a terminal in which a plurality of contact portions are formed.

特許文献1の電気コネクタでは、端子は、上下方向(平型導体の面に対して直角な方向)に延びる基部の下部から、平型導体抜出方向である後方へ向けて延びる可撓な第一の接触腕部(弾性腕部)と、上記第一の接触腕部よりも下方位置で上記基部から該第一の接触腕部と平行に延びる可撓な第二の接触腕部(弾性腕部)とを有している。第一の接触腕部は、平型導体と接触するための前方接触部が後端にて上方へ突出して形成されている。また、第二の接触腕部は、後方側部分が上下方向で斜め上方へ延びていて、上記前方接触部よりも後方で、平型導体と接触するための後方接触部が後端にて上方へ突出して形成されている。したがって、上記端子は、前後方向でずれて位置する二つの接触部、すなわち第一の接触腕部の前方接触部および第二の接触腕部の後方接触部を有している。これらの二つの接触部は、上下方向では、例えば特許文献1の図7の例では、前方接触部の方が後方接触部よりも若干ではあるが上方に位置している。   In the electrical connector disclosed in Patent Document 1, the terminal is a flexible first extending from the lower portion of the base portion extending in the up-down direction (a direction perpendicular to the plane of the flat conductor) to the rear, which is the flat conductor extraction direction. One contact arm portion (elastic arm portion) and a flexible second contact arm portion (elastic arm) extending in parallel with the first contact arm portion from the base at a position lower than the first contact arm portion Part). The first contact arm portion is formed such that a front contact portion for contacting the flat conductor protrudes upward at the rear end. Further, the second contact arm portion has a rear side portion extending obliquely upward in the up-down direction, and the rear contact portion for contacting the flat conductor is rearward of the front contact portion and at the rear end. It is formed to protrude. Accordingly, the terminal has two contact portions that are shifted in the front-rear direction, that is, a front contact portion of the first contact arm portion and a rear contact portion of the second contact arm portion. For example, in the example of FIG. 7 of Patent Document 1, these two contact portions are positioned above the front contact portion, although slightly more than the rear contact portion.

該特許文献1の電気コネクタでは、可動部材たるアクチュエータが開位置にあるときに、平型導体がハウジング内へ前方に向け挿入され、しかる後にアクチュエータが閉位置へ移動することによって平型導体が上記前方接触部と後方接触部へ向けて下方へ圧せられ、上記前方接触部および後方接触部が下方へ弾性変位して、該平型導体の前端部下面に形成された対応回路部と接圧をもって接触する。特許文献1では、アクチュエータが開位置にあるときには、該アクチュエータと後方接触部そして前方接触部との間に、平型導体の厚みよりも大きい間隔を保っており、平型導体は容易に挿入される。   In the electrical connector of Patent Document 1, when the actuator as a movable member is in the open position, the flat conductor is inserted forward into the housing, and then the actuator is moved to the closed position, whereby the flat conductor is moved to the above position. Pressed downward toward the front contact portion and the rear contact portion, and the front contact portion and the rear contact portion are elastically displaced downward to contact the corresponding circuit portion formed on the lower surface of the front end portion of the flat conductor. Touch with. In Patent Document 1, when the actuator is in the open position, a gap larger than the thickness of the flat conductor is maintained between the actuator, the rear contact portion, and the front contact portion, and the flat conductor is easily inserted. The

特許第4192203号Japanese Patent No. 4192203

平型導体は、アクチュエータが開位置にあるときに、ハウジング内に向け前方へ挿入される。平型導体の前端部下面に形成された対応回路部が上記前方接触部及び後方接触部の上となる所定位置にまで挿入され、しかる後に、平型導体はアクチュエータにより下方へ圧せられる。平型導体は、上記所定位置にまで挿入される間、平型導体の自重により、あるいは挿入時までの間の平型導体への下方に向けた力の印加により、下面の対応回路部を端子の接触部、特に後方接触部と摺接させるようにすることができる。この場合、平型導体は一旦、後方接触部上に置かれてから、そのまま前方へ挿入されて該後方接触部と摺接することにより、上記対応回路部は、所定位置へまで進む間に、上記後方接触部との摺接、いわゆるワイピングにより平型導体の対応回路部の面がクリーニングされ、後の端子との接触を良好にする可能性が期待される。かかる平型導体とのワイピングを効果的に行うためには、後方接触部が形成されている第二の弾性腕部が容易に弾性撓みを生ずるような弾性を有していることが好ましい。   The flat conductor is inserted forward into the housing when the actuator is in the open position. The corresponding circuit portion formed on the lower surface of the front end portion of the flat conductor is inserted to a predetermined position above the front contact portion and the rear contact portion, and then the flat conductor is pressed downward by the actuator. While the flat conductor is inserted to the predetermined position, the corresponding circuit portion on the lower surface is connected to the flat conductor by its own weight or by applying a downward force to the flat conductor until the insertion. It can be made to slidably contact with the contact portion, particularly the rear contact portion. In this case, the flat conductor is once placed on the rear contact portion, and then inserted forward as it is and slidably contacted with the rear contact portion. The surface of the corresponding circuit portion of the flat conductor is cleaned by sliding contact with the rear contact portion, that is, so-called wiping, and the possibility of improving the contact with the subsequent terminal is expected. In order to effectively perform wiping with such a flat conductor, it is preferable that the second elastic arm portion on which the rear contact portion is formed has elasticity that easily causes elastic bending.

しかしながら、特許文献1では、開位置におけるアクチュエータと後方接触部そして前方接触部との間の間隔は、平型導体の厚みよりも大きいので、挿入された平型導体の高さ方向が定まらず、第二の弾性腕部の後方接触部上に軽く置かれただけでは、いかに第二の弾性腕部が撓み易いといっても、平型導体の自重だけでは十分な摺接圧が得られず、さりとて、挿入時に平型導体を下方に押しつけると、手加減で摺接圧を所望値にすることが困難であるばかりか、平型導体の幅方向でも挿入過程のどの時点においても摺接圧が変動してしまう。仮に、これらの問題を伴うことなく、熟練者が巧みに平型導体を挿入できて良好なワイピングが得られたとしても、後に、アクチュエータが閉位置にきた使用状態で平型導体と後方接触部との間の接圧が十分でなくなる。すなわち、特許文献1では、上記第二の弾性腕部は第一の弾性腕部よりも長く延びており、この点では、撓んで摺接し易くなっていると言える。しかしながら、コネクタ使用時に弾性腕部に求められる機能は、平型導体が閉位置におけるアクチュエータにより圧せられた際に、接触部で平型導体の対応回路部と十分な接圧をもって接触することであるが、上述のように撓み易くすると、接圧が十分でなくなるという相反する好ましくない結果をもたらす。さりとて、第二の弾性腕部を、長くは延びてはいるものの高い接圧を得るように十分な剛性をもたせれば、撓みにくくなりワイピングによるクリーニング効果が低下することとなる。   However, in Patent Document 1, since the distance between the actuator in the open position, the rear contact portion, and the front contact portion is larger than the thickness of the flat conductor, the height direction of the inserted flat conductor is not determined, Even if it is said that the second elastic arm can bend easily just by placing it lightly on the rear contact part of the second elastic arm, sufficient sliding contact pressure cannot be obtained by the weight of the flat conductor alone. When the flat conductor is pressed downward at the time of insertion, it is difficult to adjust the sliding contact pressure to a desired value by hand, and the sliding contact pressure at any point in the insertion process also in the width direction of the flat conductor. It will fluctuate. Even if the skilled person can skillfully insert the flat conductor without any of these problems and good wiping is obtained, the flat conductor and the rear contact portion will be used in the state where the actuator is in the closed position later. The contact pressure between is not sufficient. That is, in Patent Document 1, the second elastic arm portion extends longer than the first elastic arm portion, and in this respect, it can be said that the second elastic arm portion is bent and easily comes into sliding contact. However, the function required of the elastic arm when using the connector is that when the flat conductor is pressed by the actuator in the closed position, the contact portion makes contact with the corresponding circuit portion of the flat conductor with sufficient contact pressure. However, if it is easy to bend as described above, there is a conflicting undesirable result that the contact pressure becomes insufficient. If the second elastic arm portion has a sufficient rigidity so as to obtain a high contact pressure although it extends for a long time, it is difficult to bend and the cleaning effect by wiping is reduced.

本発明は、かかる事情に鑑み、平型導体の挿入時には撓みやすく十分なワイピングが行え、可動部材の閉位置の移動時には平型導体と端子の接触部との間に十分な接圧を得られる複数の接触部を有する平型導体用電気コネクタを提供することを課題とする。   In view of such circumstances, the present invention can perform sufficient wiping so as to bend easily when a flat conductor is inserted, and obtain sufficient contact pressure between the flat conductor and the contact portion of the terminal when the movable member is moved to the closed position. It is an object of the present invention to provide a flat conductor electrical connector having a plurality of contact portions.

本発明に係る平型導体用電気コネクタは、平型導体を受け入れる受入部と端子を保持する端子溝が形成されたハウジングと、金属板の平坦な板面を維持して作られ上記板面に対して直角な方向を配列方向としてハウジングの端子溝で配列保持されていてハウジングの受入部へ前方に向け挿入される平型導体との接触のための接触部とハウジング外で回路基板へ半田接続されるための接続部とを有している複数の端子と、上記受入部を開放して平型導体の挿入を可能とする開位置と挿入後の平型導体を端子の接触部へ圧する閉位置の間で可動な可動部材とを有している。   An electrical connector for a flat conductor according to the present invention is made by maintaining a flat plate surface of a metal plate, a housing in which a receiving portion for receiving a flat conductor, a terminal groove for holding a terminal is formed, and a flat plate surface of the metal plate. Solder connection to the circuit board outside the housing and the contact part for contact with the flat conductor that is held in the terminal groove of the housing with the direction perpendicular to the arrangement direction and inserted forward into the receiving part of the housing A plurality of terminals having a connection portion to be connected, an open position where the receiving portion is opened to allow insertion of a flat conductor, and a closed position where the flat conductor after insertion is pressed against the contact portion of the terminal. And a movable member movable between the positions.

かかる平型導体用電気コネクタにおいて、本発明では、端子は、前後方向に延び接触部が形成された可撓な複数の弾性腕部と、平型導体に対して該弾性腕部と反対側に位置する支持腕部とを有し、上記弾性腕部は接触部が平型導体により圧せられたときに該平型導体の面に対して直角方向に弾性変位可能であり、上記支持腕部は該支持腕部の先端側部分に可動部材を上記開位置と閉位置の間で可動に支持する支持部が形成され、ハウジングもしくは開位置の可動部材は平型導体の上面に接する規制面を有し、平型導体の厚み方向での該規制面と上記後方接触部との距離が平型導体の厚みよりも狭く形成されており、各端子における複数の弾性腕部は、それらの接触部が前後方向で異なって位置しており、少なくとも最後方に位置する接触部が、挿入中の平型導体の面との間で干渉量を有し該面に摺接するように設けられており、閉位置へ向う可動部材により平型導体が接触部を圧したときに、最後方に位置する接触部を有する弾性腕部が弾性変位進行中に、該弾性腕部に形成されている当接部がハウジングに当接して、該弾性腕部の接触部が弾性変位しにくくなることを特徴としている。   In such an electrical connector for a flat conductor, according to the present invention, the terminal has a plurality of flexible elastic arm portions extending in the front-rear direction and formed with contact portions, and on the opposite side of the elastic arm portion with respect to the flat conductor. A support arm portion positioned, and the elastic arm portion is elastically displaceable in a direction perpendicular to the surface of the flat conductor when the contact portion is pressed by the flat conductor, and the support arm portion The support arm is formed with a support portion for supporting the movable member in a movable manner between the open position and the closed position, and the housing or the movable member in the open position has a regulating surface in contact with the upper surface of the flat conductor. A distance between the regulating surface in the thickness direction of the flat conductor and the rear contact portion is formed to be narrower than the thickness of the flat conductor, and the plurality of elastic arm portions in each terminal are the contact portions thereof. Are located differently in the front-rear direction, and at least the contact part located at the rearmost When the flat conductor presses the contact portion with a movable member that is in contact with the surface of the flat conductor being inserted and is in sliding contact with the surface, While the elastic arm portion having the contact portion located at the position is in the process of elastic displacement, the contact portion formed on the elastic arm portion comes into contact with the housing, and the contact portion of the elastic arm portion is less likely to be elastically displaced. It is characterized by.

このような構成の本発明によると、ハウジングあるいは開位置の可動部材の規制面と最後方の接触部との間の、平型導体の厚み方向での距離が平型導体の厚みより小さいので、平型導体の挿入時に平型導体は、上記規制面から受ける力により各端子で均一に、上記接触部へ圧せられることとなり、上記平型導体は確実・均一なワイピングによる良好なクリーニング効果を得る。本発明では、平型導体挿入時に、最後方に位置する接触部を有する弾性腕部の腕長を十分に長くすることで該弾性腕部を撓みやすくして、ワイピングを十分行うことができる一方で、平型導体の挿入後には、可動部材が閉位置へ向うと、上記弾性腕部に設けられた当接部が可動部材の移動中にハウジングに当接し、該弾性腕部は接触部までの弾性腕長が短くなり、その結果、撓みづらくなる。したがって、コネクタ使用時には、上記接触部における接圧が上がり、平型導体との良好な接触を確保そして維持する。   According to the present invention having such a configuration, the distance in the thickness direction of the flat conductor between the regulating surface of the movable member in the housing or the open position and the rearmost contact portion is smaller than the thickness of the flat conductor. When the flat conductor is inserted, the flat conductor is uniformly pressed to the contact portion at each terminal by the force received from the regulation surface, and the flat conductor has a good cleaning effect by reliable and uniform wiping. obtain. In the present invention, when the flat conductor is inserted, the elastic arm portion having the contact portion located at the rearmost portion is made sufficiently long so that the elastic arm portion can be easily bent and wiping can be performed sufficiently. After the flat conductor is inserted, when the movable member moves to the closed position, the contact portion provided on the elastic arm portion contacts the housing during the movement of the movable member, and the elastic arm portion reaches the contact portion. As a result, the length of the elastic arm becomes short, and it becomes difficult to bend. Accordingly, when the connector is used, the contact pressure at the contact portion increases, and good contact with the flat conductor is secured and maintained.

本発明において、最後方に位置する接触部は、他の接触部よりも平型導体との干渉量が大きく設定されていることが好ましい。平型導体の挿入時に、平型導体の対応回路部と最初に接触し最も長い間接触するのは、最後方の接触部である。したがって、最後方の接触部は他の接触部より大きい干渉量をもつことにより効果的なワイピングを得る一方で、それより前方の接触部では干渉量が然程大きくないので、この前方の接触部での挿入抵抗は小さく、全体として平型導体の挿入力を大きくしないですむ。   In the present invention, it is preferable that the contact portion located at the rear end is set to have a larger amount of interference with the flat conductor than the other contact portions. When the flat conductor is inserted, it is the last contact portion that first comes into contact with the corresponding circuit portion of the flat conductor and makes the longest contact. Therefore, the contact portion at the rear end has an effective amount of wiping by having an interference amount larger than that of the other contact portions, while the amount of interference is not so large at the contact portion in front of the contact portion. The insertion resistance of the flat conductor is small as a whole, and it is not necessary to increase the insertion force of the flat conductor.

本発明において、複数の弾性腕部は前方接触部が形成された前方弾性腕部と後方接触部が形成された後方弾性腕部の二つの弾性腕部を有し、自由状態における後方弾性腕部の腕長が前方弾性腕部よりも長いようにすることができる。端子が二つの弾性腕部を有する場合、後方弾性腕部の自由状態の長さを前方弾性腕部より長くすると、ワイピングが後方弾性腕部に形成された後方接触部で確実に行なわれる。上記前方弾性腕部と後方弾性腕部は、端子の前部位置を基部として後方に延びているように形成することができる。この場合、後方弾性腕部は端子の後部位置で屈曲され接触部を有する先端が前方へ向いているようにすることもできる。こうすることにより、後方弾性腕部は、上記屈曲された部分から先端までの距離の分、さらに弾性腕長を長くできる。   In the present invention, the plurality of elastic arm portions have two elastic arm portions, a front elastic arm portion formed with a front contact portion and a rear elastic arm portion formed with a rear contact portion, and a rear elastic arm portion in a free state. The arm length can be longer than the front elastic arm portion. When the terminal has two elastic arm portions, if the length of the free state of the rear elastic arm portion is made longer than that of the front elastic arm portion, wiping is reliably performed at the rear contact portion formed on the rear elastic arm portion. The front elastic arm portion and the rear elastic arm portion can be formed so as to extend rearward with the front position of the terminal as a base. In this case, the rear elastic arm portion may be bent at the rear position of the terminal so that the tip having the contact portion faces forward. By doing so, the elastic rear arm portion can further increase the elastic arm length by the distance from the bent portion to the tip.

本発明において、最後方に位置する接触部を有する弾性腕部に設けられる当接部は、該弾性腕部の長手方向で接触部よりも、後方側に設けることも、あるいは先端側に設けることもできる。前者の場合、当接部とハウジングとの当接により、弾性腕部は接触部までの片持ち梁状の弾性腕長を短くするし、後者の場合は、弾性腕部は両持ち梁状となり、いずれの場合も、撓みにくくなる。すなわち接触部は弾性変位しにくくなる。   In the present invention, the contact portion provided on the elastic arm portion having the contact portion located at the rearmost side may be provided on the rear side of the contact portion in the longitudinal direction of the elastic arm portion or on the tip side. You can also. In the former case, the elastic arm portion shortens the cantilevered elastic arm length to the contact portion by the contact between the contact portion and the housing, and in the latter case, the elastic arm portion becomes a double-supported beam shape. In either case, it becomes difficult to bend. That is, the contact portion is not easily elastically displaced.

本発明は、以上のごとく、平型導体の挿入方向で最後方に位置する端子の接触部とハウジングあるいは開位置における可動部材に形成された規制面との平型導体の厚み方向での距離を平型導体の厚みより小さくし、平型導体の挿入後の可動部材が閉位置への移動により上記接触部が平型導体により圧せられて下方に撓む最後方の弾性接触腕部が撓み過程にて当接部でハウジングと当接するようにしたので、平型導体の挿入時に、平型導体が規制面から受ける力により、十分に撓み易い状態になっている最後方の弾性接触部の接触部へ、幅方向にも、挿入過程のどの時点でも、各接触部へ確実そして安定して圧せられ、良好なワイピングによりクリーニングされると共に、所定位置まで挿入された後に、可動部材の閉位置への移動により、平型導体に圧せられて弾性腕部が撓んでその撓みが進行すると上記弾性腕部の当接部がハウジングと当接するようになり該弾性腕部の自由長、すなわち撓みに寄与する弾性腕長が短くなり、弾性腕部は撓みづらくなり、その結果、可動部材が閉位置にきているコネクタ使用時には、平型導体との間の接圧が高くなりその状態が維持される。   In the present invention, as described above, the distance in the thickness direction of the flat conductor between the contact portion of the terminal located at the rearmost in the insertion direction of the flat conductor and the regulating surface formed on the movable member in the housing or the open position is set. The thickness of the flat conductor is smaller than the thickness of the flat conductor, and the movable member after insertion of the flat conductor moves to the closed position. In the process, the contact portion is brought into contact with the housing, so that when the flat conductor is inserted, the elastic contact portion on the rearmost side that is sufficiently bent by the force that the flat conductor receives from the regulating surface is inserted. At each point of the insertion process in the width direction, the contact part is reliably and stably pressed against each contact part, cleaned by good wiping, and after being inserted to a predetermined position, the movable member is closed. Flat type by moving to position When the elastic arm portion is bent by the body and the bending proceeds, the contact portion of the elastic arm portion comes into contact with the housing, and the free length of the elastic arm portion, that is, the elastic arm length contributing to the bending is As a result, the elastic arm portion becomes difficult to bend, and as a result, when using the connector in which the movable member is in the closed position, the contact pressure with the flat conductor is increased and the state is maintained.

本発明の実施形態に係る平型導体用電気コネクタの全体を示す斜視図であり、可動部材が開位置にある状態で示されている。It is a perspective view showing the whole electric connector for flat type conductors concerning an embodiment of the present invention, and is shown in the state where a movable member exists in an open position. 図1の端子位置での断面図であり、(A)は平型導体挿入前、(B)は平型導体挿入完了時、(C)は平型導体挿入後、可動部材が閉位置にある状態を示している。FIGS. 2A and 2B are cross-sectional views at a terminal position in FIG. 1, (A) before flat conductor insertion, (B) when flat conductor insertion is completed, and (C) after flat conductor insertion, the movable member is in the closed position. Indicates the state. 図1の実施形態の変形例に係る平型導体用電気コネクタの縦断面図である。It is a longitudinal cross-sectional view of the electrical connector for flat conductors which concerns on the modification of embodiment of FIG. 図1の実施形態の他の変形例に係る平型導体用電気コネクタの縦断面図である。It is a longitudinal cross-sectional view of the electrical connector for flat conductors which concerns on the other modification of embodiment of FIG. 図1の実施形態のさらなる変形例に係る平型導体用電気コネクタの縦断面図であり、(A)は平型導体挿入前、(B)は平型導体の挿入後、可動部材が閉位置にある状態を示している。It is a longitudinal cross-sectional view of the electrical connector for flat conductors which concerns on the further modification of embodiment of FIG. 1, (A) is before a flat conductor insertion, (B) is a movable member closed position after insertion of a flat conductor. Shows the state.

以下、添付図面にもとづき、本発明の実施形態を説明する。   Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.

<第一実施形態>
図1は、可動部材が開位置にある状態の本実施形態に係る平型導体用電気コネクタの全体を示す斜視図である。また、図2は、図1のコネクタの端子配列方向での端子の位置における縦断面であり、(A)は平型導体挿入前、可動部材が開位置にある状態、(B)は平型導体挿入後、可動部材が開位置にある状態、(C)は平型導体挿入後、可動部材が閉位置にある状態を示している。
<First embodiment>
FIG. 1 is a perspective view showing the entire flat conductor electrical connector according to this embodiment in a state where the movable member is in the open position. 2 is a vertical cross-section at the terminal position in the terminal arrangement direction of the connector of FIG. 1, (A) is a state where the movable member is in the open position before the flat conductor is inserted, and (B) is a flat type. After the conductor is inserted, the movable member is in the open position, and (C) shows the state in which the movable member is in the closed position after the flat conductor is inserted.

本実施形態に係る平型導体用電気コネクタ1(以下、単に「コネクタ1」という)は、回路基板(図示せず)上に配置されるとともに、例えばFPCなどの平型導体の接続部分が前方(図2における右方)へ向けて回路基板の面と平行となる方向に挿入されて、該平型導体と回路基板とを電気的に接続させるためのコネクタである。図1において、コネクタ1の端子配列方向である長手方向の中間部は、二点鎖線で示されており、図示が省略されている。   An electrical connector 1 for flat conductors (hereinafter simply referred to as “connector 1”) according to the present embodiment is disposed on a circuit board (not shown), and a connecting portion of a flat conductor such as an FPC is forward. The connector is inserted in a direction parallel to the surface of the circuit board (to the right in FIG. 2) to electrically connect the flat conductor and the circuit board. In FIG. 1, an intermediate portion in the longitudinal direction, which is the terminal arrangement direction of the connector 1, is indicated by a two-dot chain line and is not shown.

コネクタ1は、略直方体外形をなし電気絶縁材製、例えば合成樹脂製のハウジング10と、該ハウジング10に等間隔で配列保持される金属製の複数の端子20と、該ハウジング10および複数の端子20によって回動可能に支持される電気絶縁材製、例えば合成樹脂製の可動部材30と、該ハウジング10の端子配列方向両端部で該ハウジング10に保持される金属製の固定金具40を有している。   The connector 1 has a substantially rectangular parallelepiped outer shape and is made of an electrical insulating material, for example, a synthetic resin housing 10, a plurality of metal terminals 20 arranged and held in the housing 10 at equal intervals, and the housing 10 and the plurality of terminals. 20, a movable member 30 made of an electrical insulating material, for example, made of synthetic resin, rotatably supported by 20, and a metal fixing bracket 40 held by the housing 10 at both ends in the terminal arrangement direction of the housing 10. ing.

また、図2(B),(C)に示される平型導体Fは、コネクタ1に挿入された際に、端子配列方向(図2(B),(C)において紙面に直角な方向)で複数の端子20とそれぞれ対応した位置に、該端子20と接続される対応回路部が下面に形成されている。   2B and 2C are inserted in the connector 1 in the terminal arrangement direction (direction perpendicular to the paper surface in FIGS. 2B and 2C). Corresponding circuit portions connected to the terminals 20 are formed on the lower surface at positions corresponding to the plurality of terminals 20, respectively.

図1および図2に見られるように、ハウジング10は、底壁11と、該底壁11における平型導体挿入方向での前方位置にて上方に延びる前壁12、端子配列方向(平型導体の幅方向に相当する方向)でハウジング10の両端位置にて底壁11から上方に延びる側壁13(図2には図示せず)とを備えている。該ハウジング10には、端子20を保持するための端子溝14が該ハウジング10の端子配列方向に等間隔で前後に延びて形成されている。該ハウジング10は、端子配列範囲にて後部が上方に開放して切り欠かれた開放空間を形成している。   As shown in FIGS. 1 and 2, the housing 10 includes a bottom wall 11, a front wall 12 extending upward at a front position of the bottom wall 11 in the flat conductor insertion direction, and a terminal arrangement direction (flat conductor). Side walls 13 (not shown in FIG. 2) extending upward from the bottom wall 11 at both end positions of the housing 10 in a direction corresponding to the width direction of the housing 10. A terminal groove 14 for holding the terminal 20 is formed in the housing 10 so as to extend back and forth at equal intervals in the terminal arrangement direction of the housing 10. The housing 10 forms an open space in which the rear part is opened upward and cut out in the terminal arrangement range.

図2に示されているように、上記端子溝14は、紙面に平行な方向に延びたスリット状に形成されていて、前後方向に貫通している。   As shown in FIG. 2, the terminal groove 14 is formed in a slit shape extending in a direction parallel to the paper surface and penetrates in the front-rear direction.

図1に見られるように、固定金具40は、後述の可動部材30の端軸部を回動自在に支持する軸支持部を有している。また、該側壁13は、固定金具40を保持するためのスリット状の固定金具保持溝13Aが、該側壁13の後方側位置にて上方、下方そして後方に開口して形成されている。   As can be seen in FIG. 1, the fixture 40 has a shaft support portion that rotatably supports an end shaft portion of a movable member 30 described later. Further, the side wall 13 is formed with slit-shaped fixing metal holding grooves 13 </ b> A for holding the fixing metal 40 opening upward, downward, and rearward at positions on the rear side of the side wall 13.

図2に見られるように、ハウジング10の後半部における上半部は、既述したように、端子配列範囲にわたって連通し上方に開放された開放空間が形成されており、該開放空間の下半部は、後方から平型導体Fを受け入れるための受入部として受入空間15をなしている。また、上記開放空間の上半部は、開位置と閉位置との間での可動部材30の移動を許容する可動部材移動空間16をなしている。   As shown in FIG. 2, the upper half of the rear half of the housing 10 is formed with an open space that communicates over the terminal arrangement range and opens upward, as described above, and the lower half of the open space. The portion forms a receiving space 15 as a receiving portion for receiving the flat conductor F from the rear. The upper half of the open space forms a movable member moving space 16 that allows the movable member 30 to move between the open position and the closed position.

図2に見られるように、端子20は、金属板の平坦面を維持して、例えば打抜き加工により作られており、板面に直角な方向を端子配列方向としてハウジング10の端子溝14にて配列保持されている。該端子20は、平型導体の挿入方向と逆の方向(抜出方向)、すなわち、図2にて左方に向けハウジング10の端子溝14に取り付けられる。   As shown in FIG. 2, the terminal 20 is made by, for example, punching while maintaining a flat surface of the metal plate, and the terminal groove 14 of the housing 10 has a direction perpendicular to the plate surface as a terminal arrangement direction. Array is retained. The terminal 20 is attached to the terminal groove 14 of the housing 10 in the direction (extraction direction) opposite to the insertion direction of the flat conductor, that is, leftward in FIG.

図2に示されているように、端子20は、端子溝14内の上部にて該端子溝14の上側部分に沿って後方に延び可動部材移動空間16へ向けて腕状に延出する支持腕部21と、端子溝14の下部にて該端子溝14の下側部分に沿ってハウジングの底壁11に接しながら後方へ向けて前後方向の中間位置まで延びる延長腕部22と、前方かつ下方に向けてハウジング10外へ延びる接続部23と、端子溝14内の前部で上下方向に延び支持腕部21の前端、延長腕部22の前端そして接続部23の後端とを連結する連結部24とを有している。連結部24により連結された支持腕部21、延長腕部22そして接続部23は高剛性をもって一体化されている。   As shown in FIG. 2, the terminal 20 extends rearwardly along the upper portion of the terminal groove 14 at the upper part in the terminal groove 14 and extends in an arm shape toward the movable member moving space 16. An arm portion 21, an extension arm portion 22 that extends to the middle in the front-rear direction while contacting the bottom wall 11 of the housing along the lower portion of the terminal groove 14 at the lower portion of the terminal groove 14, The connecting portion 23 extending outward from the housing 10 downward is connected to the front end of the support arm portion 21, the front end of the extended arm portion 22, and the rear end of the connecting portion 23. And a connecting portion 24. The support arm portion 21, the extended arm portion 22, and the connection portion 23 connected by the connecting portion 24 are integrated with high rigidity.

上記連結部24の後縁からは、前後方向で中間位置まで延びる延長腕部22とほぼ同じ範囲で、可撓な前方弾性腕部25が該延長腕部22よりも上方位置で後方へ向けて延びている。上記延長腕部22の後端部からは、可撓な後方弾性腕部26が後方に延びており、該後方弾性腕部26は、底壁11との間に隙間を形成しつつ該底壁11に沿って延びる下方部分26−1と、該下方部分26−1の後端位置にて屈曲されて向きを変えて前方へ向けて延びる上方部分26−2とを有している。本実施形態では、図2に見られるように、該後端で屈曲された後に前方に向く後方弾性腕部26の上方部分26−2は前方弾性腕部25の後端部近傍にまで延びている。上記後方弾性腕部26の下方部分26−1は、上記延長腕部22よりも上下方向幅を狭くした寸法に作られていて自由状態で該底壁11と隙間を保っている(図2(A),(B)参照)。   From the rear edge of the connecting portion 24, the flexible front elastic arm portion 25 is directed rearward at a position above the extended arm portion 22 in substantially the same range as the extended arm portion 22 extending to the intermediate position in the front-rear direction. It extends. A flexible rear elastic arm portion 26 extends rearward from the rear end portion of the extended arm portion 22, and the rear elastic arm portion 26 forms a gap between the bottom wall 11 and the bottom wall 11. 11 and a lower portion 26-1 extending along the lower end portion 26-1, and an upper portion 26-2 that is bent at the rear end position of the lower portion 26-1 and changes its direction to extend forward. In this embodiment, as seen in FIG. 2, the upper portion 26-2 of the rear elastic arm portion 26 facing forward after being bent at the rear end extends to the vicinity of the rear end portion of the front elastic arm portion 25. Yes. The lower portion 26-1 of the rear elastic arm portion 26 is made to have a size that is narrower in the vertical width than the extension arm portion 22, and maintains a gap with the bottom wall 11 in a free state (FIG. 2 ( (See A) and (B)).

上記前方弾性腕部25は、上述のごとく、前後方向で延長腕部22とほぼ同じ位置まで延びており、挿入後の平型導体Fの下面の対応回路部と接触するための前方接触部25Aが該前方弾性腕部25の後端部で上方へ突出して形成されている。また、上記後方弾性腕部26は、後端位置で屈曲部を経て前方に向け上記前方弾性腕部25の前方接触部25A近くにまで延びる上方部分26−2の前端に、挿入後の平型導体Fの下面の対応回路部と接触するための後方接触部26Aが上方へ突出して形成されている。上記屈曲部すなわち上記下方部分26−1の後端は後方弾性腕部26が弾性変位過程でハウジングの底壁11と当接する当接部27を形成する。図2に示されているように、該後方接触部26Aは、平型導体Fの挿入前に後方弾性腕部26が自由状態にあるときに、前方接触部25Aよりも上方に位置している。さらに、上記後方接触部26Aは、図2(A)に見られるように、上記後方弾性腕部26が自由状態にあるときに、開位置にある可動部材30の下端との間の隙間を平型導体Fの厚みよりも小さくするように位置づけられている。したがって、上記隙間に平型導体Fが挿入されると、開位置における可動部材30の下端面は、平型導体Fに対して規制面30Aとして機能し、該平型導体Fは、上記後方接触部26Aを下方に圧して弾性変位させて、自らは前方へ移動して、次に、前方接触部25Aを下方へ圧して弾性変位させることとなる。平型導体Fの挿入前の自由状態では、後方接触部26Aの方が前方接触部25Aよりも上方に位置している関係上、平型導体Fの挿入後、後方接触部26Aの弾性変位量は、前方接触部25Aの弾性変位量よりも大きい。なお、この時点では、前方接触部25Aは弾性変位していることを要せず、平型導体Fと接触しなくとも良い。   As described above, the front elastic arm portion 25 extends to substantially the same position as the extended arm portion 22 in the front-rear direction, and the front contact portion 25A for contacting the corresponding circuit portion on the lower surface of the flat conductor F after insertion. Is formed so as to protrude upward at the rear end portion of the front elastic arm portion 25. Further, the rear elastic arm portion 26 has a flat shape after insertion at the front end of the upper portion 26-2 extending to the front contact portion 25A of the front elastic arm portion 25 toward the front through a bent portion at the rear end position. A rear contact portion 26A for contacting the corresponding circuit portion on the lower surface of the conductor F is formed to protrude upward. The bent portion, that is, the rear end of the lower portion 26-1, forms a contact portion 27 where the rear elastic arm portion 26 contacts the bottom wall 11 of the housing in the course of elastic displacement. As shown in FIG. 2, the rear contact portion 26A is located above the front contact portion 25A when the rear elastic arm portion 26 is in a free state before the flat conductor F is inserted. . Further, as seen in FIG. 2A, the rear contact portion 26A flattens the gap between the lower end of the movable member 30 in the open position when the rear elastic arm portion 26 is in a free state. It is positioned so as to be smaller than the thickness of the mold conductor F. Therefore, when the flat conductor F is inserted into the gap, the lower end surface of the movable member 30 in the open position functions as a regulating surface 30A with respect to the flat conductor F, and the flat conductor F is in contact with the rear contact. The portion 26A is pressed downward to be elastically displaced and moves forward, and then the front contact portion 25A is pressed downward to be elastically displaced. In a free state before insertion of the flat conductor F, the rear contact portion 26A is positioned above the front contact portion 25A. Therefore, after the flat conductor F is inserted, the amount of elastic displacement of the rear contact portion 26A. Is larger than the elastic displacement amount of the front contact portion 25A. At this time, the front contact portion 25A does not need to be elastically displaced and does not have to contact the flat conductor F.

上記端子20の支持腕部21は、可動部材移動空間16内に位置する後端部の下縁に、下方へ開口した凹状の回動支持部21Aが形成されている。該回動支持部21Aは、後述するように、可動部材30の回動中心となる軸部32を収容するとともに、該可動部材30が開位置と閉位置との間を回動する際に、該軸部32を回動自在に支持する。   The support arm portion 21 of the terminal 20 is formed with a concave rotation support portion 21 </ b> A opening downward at the lower edge of the rear end portion located in the movable member moving space 16. As will be described later, the rotation support portion 21A accommodates a shaft portion 32 serving as a rotation center of the movable member 30, and when the movable member 30 rotates between an open position and a closed position, The shaft portion 32 is rotatably supported.

上記端子20の接続部23は、その下縁部がハウジング10の底壁11の下面よりも若干下方に位置しており、コネクタ1が回路基板(図示せず)上に配置されたときに該回路基板の対応回路部と確実に接触して、該対応回路部と半田接続可能となっている。また、連結部24はその上下縁部で端子溝14内に圧入されている。   The connecting portion 23 of the terminal 20 has a lower edge located slightly below the lower surface of the bottom wall 11 of the housing 10, and when the connector 1 is disposed on a circuit board (not shown), The corresponding circuit portion of the circuit board is securely contacted and can be soldered to the corresponding circuit portion. The connecting portion 24 is press-fitted into the terminal groove 14 at the upper and lower edge portions.

可動部材30は、該可動部材30が開位置にあるときに挿入された平型導体Fの上面を端子20の前方接触部25Aおよび後方接触部26Aへ向けて下方に規制する規制手段として機能する。該可動部材30は、図2(B)に示されるように上下方向に延びた縦姿勢で平型導体Fの挿入を可能にする開位置と、図2(C)に示されるような前後方向に延びた横姿勢で端子20の前方接触部25Aおよび後方接触部26Aに対する平型導体Fの接圧を高める閉位置との間で回動可能となっている。   The movable member 30 functions as a restricting means for restricting the upper surface of the flat conductor F inserted when the movable member 30 is in the open position downward toward the front contact portion 25A and the rear contact portion 26A of the terminal 20. . The movable member 30 has an open position in which the flat conductor F can be inserted in a vertical position extending in the vertical direction as shown in FIG. 2B, and a front-back direction as shown in FIG. It can be rotated between a closed position in which the contact pressure of the flat conductor F with respect to the front contact portion 25A and the rear contact portion 26A of the terminal 20 is increased.

可動部材30は、図1によく見られるように、端子配列方向で端子20の配列範囲を越える幅で形成されている。該可動部材30は、図1,図2(A),(B)に示されているように、端子配列方向で端子20に対応した位置にて、端子20の板厚寸法よりも若干広い溝幅のスリット状をなす溝部31が上記開位置での該可動部材30の略下半部に形成されている。したがって、図1によく見られるように、可動部材30の略下半部は、前後方向で見たときに端子配列範囲で貫通する櫛歯状となっていて、図示されているように、該溝部31は端子20の回動支持部21Aが前方から進入することを許容している。   As is often seen in FIG. 1, the movable member 30 is formed with a width exceeding the arrangement range of the terminals 20 in the terminal arrangement direction. As shown in FIGS. 1, 2A and 2B, the movable member 30 has a groove slightly wider than the plate thickness of the terminal 20 at a position corresponding to the terminal 20 in the terminal arrangement direction. A groove portion 31 having a slit shape is formed in a substantially lower half portion of the movable member 30 at the open position. Accordingly, as is often seen in FIG. 1, the substantially lower half of the movable member 30 has a comb-like shape penetrating in the terminal arrangement range when viewed in the front-rear direction. The groove portion 31 allows the rotation support portion 21A of the terminal 20 to enter from the front.

上記溝部31には、図2(A),(B)に示されているように、該可動部材30の下端部寄り位置に軸部32が島状に設けられていて、該軸部32によって溝部31の対向内壁面同士が連結されている。該軸部32は断面形状が本実施形態では円形をなしている。   As shown in FIGS. 2A and 2B, the groove portion 31 is provided with a shaft portion 32 in an island shape near the lower end portion of the movable member 30. The opposed inner wall surfaces of the groove portion 31 are connected to each other. The shaft portion 32 has a circular cross section in the present embodiment.

また、可動部材30は、端子配列方向における両側端に上記軸部32と同軸上に形成された端軸部を有していて、該端軸部が、既述した固定金具40の支持部により回動自在に支持されている。   The movable member 30 has end shaft portions formed coaxially with the shaft portion 32 at both side ends in the terminal arrangement direction, and the end shaft portions are supported by the support portions of the fixing bracket 40 described above. It is supported rotatably.

また、図2(A),(B)に見られるように、開位置で縦姿勢にある可動部材30の前面(右面)(下端部)は、該可動部材30が閉位置で横姿勢となったときに平型導体Fを下方へ圧する加圧面34として形成されている(図2(C)をも参照)。   2A and 2B, the front surface (right surface) (lower end) of the movable member 30 in the vertical position at the open position is in the horizontal position when the movable member 30 is in the closed position. It is formed as a pressing surface 34 that presses the flat conductor F downward (see also FIG. 2C).

固定金具40は、金属板を打ち抜いて作られており、図1に見られるように、その板面が端子配列方向に対して直角となる姿勢でハウジング10のスリット状の固定金具保持溝13Aへ後方から取り付けられている。該固定金具40の下縁部が回路基板と半田接続されることにより、コネクタ1が回路基板上に固定される。   The fixture 40 is made by punching a metal plate. As shown in FIG. 1, the fixture 40 is inserted into the slit-like fixture holding groove 13A of the housing 10 in a posture in which the plate surface is perpendicular to the terminal arrangement direction. It is attached from the rear. The connector 1 is fixed on the circuit board by soldering the lower edge of the fixing bracket 40 to the circuit board.

以下、コネクタ1と平型導体Fとの接続動作を図2にもとづいて説明する。   Hereinafter, the connection operation between the connector 1 and the flat conductor F will be described with reference to FIG.

先ず、図2(A)に示されるように、可動部材30を縦姿勢の開位置にもたらす。次に、ハウジング10の受入空間15内へ平型導体Fを後方(左方)から前方(右方)ヘ向け挿入する。図2(B)に示されるように、平型導体Fは、該平型導体Fの前端面が前壁12の後面に当接する正規の所定位置まで挿入される。本実施形態では、上記開状態にある可動部材30の下端に形成された規制面30Aと、後方に位置する平型導体Fとの接触前の後方接触部26Aとの間が、上下方向で平型導体Fの厚みよりも小さい隙間となっている。したがって、可動部材30が開位置にあるときに、上記平型導体Fが受入空間15へ導入されると、該平型導体Fは上面が可動部材30の下端で形成される上記規制面30Aで規制されて該規制面30Aから下方に向けた力を受け、該上面が上記後方接触部26Aを下方に圧して弾性変位せしめる。この後方接触部26Aの弾性変位量は、平型導体Fの挿入前における自由状態の該後方接触部26Aと平型導体Fの厚みとの干渉量に等しい。平型導体Fは、上記後方接触部26Aに対して上記弾性変位量を確保しつつさらに前方へ挿入される。本実施形態では、後方弾性腕部26は、前後方向でハウジングの中間位置から、該ハウジングの底壁11との間に隙間を形成しつつ後方に延びる下方部分26−1と、後端で屈曲された後に前方に延びる上方部分26−2とが横U字状をなして連続形成されているので、その弾性腕長が十分に長くなっていて、容易に上記弾性変位量を十分に確保できる。平型導体Fの前端部下面に形成されているパット状の接続部分は、十分に弾性変位している上記後方接触部26Aとの接触のもとでさらに前進することにより、いわゆるワイピング効果でクリーニングされる。   First, as shown in FIG. 2A, the movable member 30 is brought to the open position in the vertical position. Next, the flat conductor F is inserted into the receiving space 15 of the housing 10 from the rear (left side) to the front (right side). As shown in FIG. 2B, the flat conductor F is inserted to a predetermined position where the front end surface of the flat conductor F abuts the rear surface of the front wall 12. In the present embodiment, the space between the regulation surface 30A formed at the lower end of the movable member 30 in the open state and the rear contact portion 26A before contact with the flat conductor F located at the rear is flat in the vertical direction. The gap is smaller than the thickness of the mold conductor F. Therefore, when the flat conductor F is introduced into the receiving space 15 when the movable member 30 is in the open position, the flat conductor F has the restriction surface 30 </ b> A whose upper surface is formed by the lower end of the movable member 30. It is regulated and receives a downward force from the regulation surface 30A, and the upper surface presses the rear contact portion 26A downward and elastically displaces it. The amount of elastic displacement of the rear contact portion 26A is equal to the amount of interference between the rear contact portion 26A in a free state and the thickness of the flat conductor F before the flat conductor F is inserted. The flat conductor F is inserted further forward while securing the elastic displacement with respect to the rear contact portion 26A. In the present embodiment, the rear elastic arm portion 26 is bent at the rear end with the lower portion 26-1 extending rearward from the middle position of the housing in the front-rear direction while forming a gap with the bottom wall 11 of the housing. Since the upper portion 26-2 extending forward is continuously formed in the shape of a horizontal U, the elastic arm length is sufficiently long, and the elastic displacement amount can be sufficiently secured easily. . The pad-shaped connecting portion formed on the lower surface of the front end portion of the flat conductor F further advances in contact with the rear contact portion 26A that is sufficiently elastically displaced, thereby cleaning with a so-called wiping effect. Is done.

しかし、この前方接触部25Aは、上記後方接触部26Aよりも平型導体Fとの干渉量が小さく、又、平型導体F(の先端)はこの前方接触部25Aとの弾性接触後には所定位置まであまり前進距離を残しておらず、上記前方接触部25Aとの摺接の距離が小さい。前方接触部25Aでは、ワイピング効果よりも、可動部材30が閉位置まで達した後に、平型導体Fを確実な接触のもとに支持することに意義がある。ワイピング効果は、所定位置までの摺接距離が大きい後方接触部26Aによって十分に得られているので、この時点での上記前方接触部25Aとの間の弾性接触圧はなくとも良い。   However, the front contact portion 25A has a smaller amount of interference with the flat conductor F than the rear contact portion 26A, and the flat conductor F (the tip) has a predetermined amount after elastic contact with the front contact portion 25A. The forward distance is not much left to the position, and the sliding contact distance with the front contact portion 25A is small. In the front contact portion 25A, rather than the wiping effect, it is meaningful to support the flat conductor F in a reliable contact after the movable member 30 reaches the closed position. Since the wiping effect is sufficiently obtained by the rear contact portion 26A having a large sliding contact distance to a predetermined position, there is no need for elastic contact pressure with the front contact portion 25A at this time.

このように、平型導体Fが所定位置まで前進し受入空間15への挿入を完了した後に、図2(C)に見られるように、可動部材30を閉位置へ回動させる。該可動部材30の閉位置へ向けた回動の進行に伴い、上記後方弾性腕部26は、下方へ弾性撓み変形し、その後端、すなわち、該後方弾性腕部26の下方部分と上方部分との境界となる屈曲部、すなわち下方部分26−1の後端がハウジング10の底壁11と当接し、上記下方部分26−1は、最早それ以上、弾性撓みに寄与できなくなくなり、該後方弾性腕部26は上記上方部分26−2のみで弾性撓みを確保するようになる。したがって、後方弾性腕部26は、弾性撓みの過程において、その剛性を高めて撓みづらくなり、以後、後方接触部26Aは比較的小さな弾性変位量のもとで、平型導体Fとの間で大きな接圧をもたらす。   Thus, after the flat conductor F has advanced to a predetermined position and has been inserted into the receiving space 15, the movable member 30 is rotated to the closed position as seen in FIG. As the movable member 30 rotates toward the closed position, the rear elastic arm portion 26 is elastically deformed downward, and the rear end thereof, that is, the lower portion and the upper portion of the rear elastic arm portion 26, The lower end 26-1 is in contact with the bottom wall 11 of the housing 10, and the lower portion 26-1 can no longer contribute to the elastic deflection. The arm portion 26 ensures elastic bending only by the upper portion 26-2. Therefore, the rear elastic arm portion 26 increases its rigidity in the process of elastic bending and becomes difficult to bend. Thereafter, the rear contact portion 26A is in contact with the flat conductor F under a relatively small amount of elastic displacement. Bring great contact pressure.

かくして、本実施形態の後方弾性腕部26は、平型導体Fの挿入当初は十分な弾性撓みによりワイピングのための弾性変位量を大きく確保し、後に、剛性を高めて、コネクタの使用状態で必要な平型導体Fとの間で十分に大きな接圧を確保する。   Thus, the rear elastic arm portion 26 of the present embodiment ensures a large amount of elastic displacement for wiping by sufficient elastic bending at the beginning of insertion of the flat conductor F, and later increases the rigidity so that the connector can be used. A sufficiently large contact pressure is ensured with the required flat conductor F.

本実施形態では、可動部材30が開位置にあるときに、平型導体Fを受入空間15へ挿入するに際し、該可動部材30の下端面が平型導体Fに対して規制面として作用して、該平型導体Fが上方へ逃げることなく後方接触部26Aを下方に向け十分に弾性変位させることとしていたが、本発明では、上記規制面は可動部材によらずとも得ることができる。例えば、側壁13の内側の平型導体Fの両側縁に対応する位置で、図1にて二点鎖線で示されているように、挿入された平型導体Fの両側縁の上面に当接する突条部13Bを形成しておけば、該突条部の下面が規制面として作用し、該平型導体Fは、後方接触部26Aによってもち上げられようとしてもこの規制面で上方へ移動することが規制され、規制面からの反力で、有効的に後方接触部26Aを下方に圧するようになる。勿論、規制面を形成するためには、上記突条部によらずとも、前後方向の複数に設けた突起や平型導体Fの側縁を案内する条溝部であってもよい。   In the present embodiment, when the flat member F is inserted into the receiving space 15 when the movable member 30 is in the open position, the lower end surface of the movable member 30 acts as a restriction surface on the flat conductor F. In the present invention, the restricting surface can be obtained without using a movable member. However, the flat conductor F is sufficiently elastically displaced downward without causing the flat conductor F to escape upward. For example, at a position corresponding to both side edges of the flat conductor F inside the side wall 13, as shown by a two-dot chain line in FIG. If the protrusion 13B is formed, the lower surface of the protrusion acts as a restricting surface, and the flat conductor F moves upward on the restricting surface even if it is lifted by the rear contact portion 26A. Thus, the reaction force from the regulation surface effectively presses the rear contact portion 26A downward. Of course, in order to form the restricting surface, a plurality of protrusions provided in the front-rear direction and a groove portion that guides the side edge of the flat conductor F may be used instead of the above-described protrusions.

図1及び図2に示される実施形態では、回路基板上のコネクタに対し平型導体を回路基板の面と平行な方向から挿入されるようになっていたが、本発明はこの形態に限定されず、図3のように回路基板の面に対して直角な方向から平型導体を挿入する形態のコネクタにも適用可能である。図3にてこの平型導体Fは上方から下方に向け挿入されるので、この実施形態では、下方が前方となる。   In the embodiment shown in FIGS. 1 and 2, the flat conductor is inserted into the connector on the circuit board from a direction parallel to the surface of the circuit board. However, the present invention is limited to this embodiment. In addition, the present invention can be applied to a connector in which a flat conductor is inserted from a direction perpendicular to the surface of the circuit board as shown in FIG. In FIG. 3, since the flat conductor F is inserted from the upper side to the lower side, the lower side is the front side in this embodiment.

図3においては、図1及び図2の横置型のコネクタを垂立型となるように90°回転させて配置したものではあるが、端子と可動部材のそれぞれの一部を若干変更した形態となっている。端子20は、下端でハウジング10の両側に延出した接続部23A,23Bを有し、可動部材30はハウジング外に位置する操作部が短くなっている。したがって、図3のコネクタは図1のコネクタと比較して、コネクタが垂立型であること、接続部23A,23Bがハウジングの下端から両側方に延出していること、可動部材30の操作部が若干短いことでのみ図1のコネクタと相違しているが、本発明の本旨とする端子の接触部そして平型導体と当接する規制部に関しては、何ら変わりはない。   In FIG. 3, the horizontal connector of FIGS. 1 and 2 is arranged to be rotated 90 ° so as to be a vertical type, but with a form in which a part of each of the terminal and the movable member is slightly changed. It has become. The terminal 20 has connection portions 23A and 23B extending at both ends of the housing 10 at the lower end, and the movable member 30 has a short operation portion located outside the housing. Therefore, the connector of FIG. 3 is a vertical type connector, the connecting portions 23A and 23B extend from the lower end of the housing to both sides, and the operating portion of the movable member 30 as compared with the connector of FIG. 1 is slightly different from the connector of FIG. 1 only in that the contact portion of the terminal and the restricting portion that comes into contact with the flat conductor are the same.

かかる図3の形態では、可動部材が上方に向け縦姿勢をとっているときが開位置であり、その状態で、平型導体Fは上方から下方へ向け、すなわち、前方へ向け挿入される。挿入当初は、平型導体Fは可動部材30の規制面30Aにより規制されて後方接触部26Aを左方へ圧しつつ前進し、該平型導体Fの前端面が前壁12の後面に当接する所定位置へもたらされる。その間での平型導体Fによる上記後方接触部26Aそして前方接触部25Aに対する作動は、図1及び図2の場合と全く同じである。   In the form of FIG. 3, the open position is when the movable member takes a vertical posture upward, and in this state, the flat conductor F is inserted from above to below, that is, forward. At the beginning of insertion, the flat conductor F is regulated by the regulating surface 30A of the movable member 30 and moves forward while pressing the rear contact portion 26A to the left, and the front end surface of the flat conductor F abuts the rear surface of the front wall 12. Brought into place. In the meantime, the operation of the flat contact F with respect to the rear contact portion 26A and the front contact portion 25A is exactly the same as in the case of FIGS.

平型導体Fが所定位置にまでもたらされると、可動部材30は、図3に見られるように、横姿勢の閉位置にまで回動される。   When the flat conductor F is brought to the predetermined position, the movable member 30 is rotated to the closed position in the horizontal position as seen in FIG.

次に、図4の実施形態は、図1及び図2の形態にくらべ、可動部材30が反対方向に回動するようになっている点で相違するが、それ以外は図1及び図2の形態と全く同じである。図3の場合、可動部材の操作部が若干短くなっているが、実質的には、図1及び図2のものと同じである。   Next, the embodiment of FIG. 4 is different from the embodiment of FIGS. 1 and 2 in that the movable member 30 is rotated in the opposite direction, but otherwise the embodiment of FIG. 1 and FIG. The form is exactly the same. In the case of FIG. 3, the operation part of the movable member is slightly shorter, but is substantially the same as that of FIGS. 1 and 2.

かかる図4のコネクタでは、図1及び図2の場合と同様に、可動部材30を縦姿勢の開位置のときに平型導体Fを所定位置まで前方へ挿入する。しかる後、可動部材30を反時計方向に回動させて図4に見られる横姿勢の閉位置へもたらす。平型導体Fと端子20との間の作動は、図1及び図2の場合と全く同様である。   In the connector of FIG. 4, the flat conductor F is inserted forward to a predetermined position when the movable member 30 is in the open position in the vertical position, as in FIGS. 1 and 2. Thereafter, the movable member 30 is rotated counterclockwise to bring it to the closed position in the horizontal position as shown in FIG. The operation between the flat conductor F and the terminal 20 is exactly the same as in FIGS.

図5の実施形態は、図3における前方弾性腕部25そして後方弾性腕部26にそれぞれ対応する上方弾性腕部25そして下方弾性腕部26を有しているが、該下方弾性腕部26の形態のみにおいて、図4の形態とは異なっている。   The embodiment of FIG. 5 has an upper elastic arm portion 25 and a lower elastic arm portion 26 corresponding to the front elastic arm portion 25 and the rear elastic arm portion 26 in FIG. Only the form is different from the form of FIG.

図5において、端子20は上方弾性腕部25と下方弾性腕部26の二つの弾性腕部を有し、両弾性腕部は、上下した位置で連結部24から後方に向けほぼ平行に延びている。上方弾性腕部25は、下方弾性腕部26よりも上方位置で、後方に直状に延び、その後端に前方接触部25Aを有している。上記上方弾性腕部25よりも下方に位置する下方弾性腕部26は、ハウジング10の底壁11から離れた位置で後方に延び、上記上方弾性腕部25の後端に対応する位置付近で上方かつ後方に向け傾斜して屈曲形成されていて、その後端部に後方接触部26Aを有している。後方弾性腕部26は、前後方向中間部で下縁に突起状の当接部27を有している。該当接部27は、後方接触部26Aが平型導体Fに圧せられて下方へ弾性変位する際、その変位過程で、ハウジング10の底壁11に当接するようにその突起量が設定されている。かかる実施形態においては、両弾性腕部25,26はその形態が図1そして図2あるいは図4のものと異なっているが、上記前方接触部25Aそして後方接触部26Aの位置(前後方向そして上下方向の位置)に関しては、図1そして図2あるいは図4のものと同じである。   In FIG. 5, the terminal 20 has two elastic arm portions, an upper elastic arm portion 25 and a lower elastic arm portion 26, and both elastic arm portions extend substantially in parallel toward the rear from the connecting portion 24 in the up and down position. Yes. The upper elastic arm portion 25 extends straight rearward at a position above the lower elastic arm portion 26, and has a front contact portion 25A at the rear end thereof. The lower elastic arm portion 26 located below the upper elastic arm portion 25 extends rearward at a position away from the bottom wall 11 of the housing 10, and is located above a position corresponding to the rear end of the upper elastic arm portion 25. And it inclines toward the back and is bent and it has 26 A of back contact parts in the rear-end part. The rear elastic arm portion 26 has a projecting contact portion 27 at the lower edge at the middle portion in the front-rear direction. When the rear contact portion 26A is pressed downward by the flat conductor F and elastically displaced downward, the abutment portion 27 has its projection amount set so as to abut against the bottom wall 11 of the housing 10 in the displacement process. Yes. In this embodiment, both elastic arm portions 25 and 26 are different in shape from those of FIG. 1 and FIG. 2 or FIG. 4, but the positions of the front contact portion 25A and the rear contact portion 26A (front and rear direction and up and down direction). The direction position is the same as that in FIG. 1 and FIG. 2 or FIG.

本実施形態では、図5(A)に見られるように、可動部材30が縦姿勢の開位置のときに平型導体Fが挿入される。後方接触部26Aそして前方接触部25Aの位置が、前後方向においても上下方向においても、図1そして図2あるいは図4の場合と同じであるので、平型導体Fが挿入されて所定位置へ前進するまで、平型導体Fと上記後方接触部26Aそして前方接触部25Aとは、図1そして図2と場合と全く同様に作動する。   In this embodiment, as shown in FIG. 5A, the flat conductor F is inserted when the movable member 30 is in the open position in the vertical position. Since the positions of the rear contact portion 26A and the front contact portion 25A are the same as in the case of FIG. 1 and FIG. 2 or FIG. Until then, the flat conductor F, the rear contact portion 26A, and the front contact portion 25A operate in exactly the same manner as in FIGS.

平型導体Fが所定位置まで前進すると、可動部材30が図5(B)に見られる横姿勢の閉位置へ向け回動される。その回動過程で、下方弾性腕部26の突起状の当接部27がハウジング10の底壁11に当接する。したがって、その後は、下方弾性腕部26の弾性腕長は短くなり、該当接部27よりも後方の部分のみで弾性撓みを生ずるようになる。かくして、後方弾性腕部26は平型導体Fとの接触当初は撓み易く、平型導体の前進時に弾性変位量を大きくして十分なワイピング効果を得た後、可動部材30が閉位置にきたときには、短い弾性腕長で撓みにくくして小さな弾性変位量でも接圧を大きく確保するようになる。   When the flat conductor F moves forward to a predetermined position, the movable member 30 is rotated toward the closed position in the horizontal position as shown in FIG. During the rotation process, the protruding contact portion 27 of the lower elastic arm portion 26 contacts the bottom wall 11 of the housing 10. Therefore, after that, the elastic arm length of the lower elastic arm portion 26 is shortened, and elastic bending occurs only in a portion behind the corresponding contact portion 27. Thus, the rear elastic arm portion 26 is easily bent at the time of contact with the flat conductor F, and the movable member 30 is brought into the closed position after obtaining a sufficient wiping effect by increasing the amount of elastic displacement when the flat conductor advances. Sometimes, a short elastic arm length makes it difficult to bend, and a large contact pressure can be secured even with a small amount of elastic displacement.

図5に示されている本実施形態では、さらなる変形が可能である。図5では、後方弾性腕部26は、その中間部に当接部27を設けて、後方弾性腕部26の弾性変位過程で、該突起27がハウジング10の底壁11に当接して、その時点以降、上記後方弾性腕部26を撓みづらくして、後方接触部26Aでの小さな変位量で高い接圧を得るようにしたが、上記突起状の当接部27に代えて、図5にて二点鎖線で示されるように、上記後方弾性腕部26の後端に下方へ延出する延出突部を設けこれを当接部27’とすることとすれば、同様の効果を得ることができる。すなわち、後方弾性腕部26は平型導体Fの挿入時には片梁状のバネであったものが可動部材の閉位置の回転に伴って、上記延出突部として設けられた当接部27’が底壁11と当接して、後方弾性腕部26が全長にわたる両持ち梁状として、後方弾性腕部26は撓みにくくなり、すなわち後方接触部26Aが弾性変位しにくくなり、接圧を大きく確保することもできる。   In the present embodiment shown in FIG. 5, further modifications are possible. In FIG. 5, the rear elastic arm portion 26 is provided with a contact portion 27 at an intermediate portion thereof, and in the elastic displacement process of the rear elastic arm portion 26, the protrusion 27 contacts the bottom wall 11 of the housing 10. After the time point, the rear elastic arm portion 26 is made difficult to bend and a high contact pressure is obtained with a small displacement amount at the rear contact portion 26A, but in place of the protruding contact portion 27, FIG. As shown by a two-dot chain line, a similar effect can be obtained by providing an extension protrusion extending downward at the rear end of the rear elastic arm portion 26 as a contact portion 27 ′. be able to. That is, the rear elastic arm portion 26 is a single-beam spring when the flat conductor F is inserted, and the abutting portion 27 ′ provided as the extending protrusion with the rotation of the movable member at the closed position. Comes into contact with the bottom wall 11 and the rear elastic arm portion 26 is in the form of a cantilever beam extending over the entire length, so that the rear elastic arm portion 26 is less likely to bend, that is, the rear contact portion 26A is less likely to be elastically displaced, thereby ensuring a large contact pressure. You can also

実施例では、複数設けられる弾性腕部が二つの場合を例示したが、本発明はこれに限定されず、三つ以上設けることも可能である。その場合、最後方に位置する接触部が規制面との間に、弾性腕部の接触部よりも、平型導体に対して大きな干渉量を有するように設定するとともに、この最後方に位置する接触部が形成された弾性腕部が弾性変位過程で弾性腕長を短くするようにされる。   In the embodiment, the case where a plurality of elastic arm portions are provided is illustrated, but the present invention is not limited to this, and three or more elastic arm portions can be provided. In that case, the contact portion located at the rearmost position is set so as to have a larger amount of interference with the flat conductor than the contact portion of the elastic arm portion between the restriction surface and the contact portion located at the rearmost position. The elastic arm portion formed with the contact portion shortens the elastic arm length during the elastic displacement process.

1 コネクタ 25A 前方接触部
10 ハウジング 26 (後方)(下方)弾性腕部
15 受入部(受入空間) 26A 後方接触部
20 端子 27,27’ 当接部
21A (回動)支持部 30 可動部材
25 (前方)(上方)弾性腕部 30A 規制面
DESCRIPTION OF SYMBOLS 1 Connector 25A Front contact part 10 Housing 26 (back) (downward) elastic arm part 15 Receiving part (receiving space) 26A Back contact part 20 Terminal 27, 27 'Contact part 21A (rotation) support part 30 Movable member 25 ( Front) (Upper) Elastic arm 30A Restricting surface

Claims (7)

平型導体を受け入れる受入部と端子を保持する端子溝が形成されたハウジングと、金属板の平坦な板面を維持して作られ上記板面に対して直角な方向を配列方向としてハウジングの端子溝で配列保持されていてハウジングの受入部へ前方に向け挿入される平型導体との接触のための接触部とハウジング外で回路基板へ半田接続されるための接続部とを有している複数の端子と、上記受入部を開放して平型導体の挿入を可能とする開位置と挿入後の平型導体を端子の接触部へ圧する閉位置の間で可動な可動部材とを有している平型導体用電気コネクタにおいて、
端子は、前後方向に延び接触部が形成された可撓な複数の弾性腕部と、平型導体に対して該弾性腕部と反対側に位置する支持腕部とを有し、
上記弾性腕部は接触部が平型導体により圧せられたときに該平型導体の面に対して直角方向に弾性変位可能であり、
上記支持腕部は該支持腕部の先端側部分に可動部材を上記開位置と閉位置の間で可動に支持する支持部が形成され、
ハウジングもしくは開位置の可動部材は平型導体の上面に接する規制面を有し、平型導体の厚み方向での該規制面と上記後方接触部との距離が平型導体の厚みよりも狭く形成されており、
各端子における複数の弾性腕部は、それらの接触部が前後方向で異なって位置しており、少なくとも最後方に位置する接触部が、挿入中の平型導体の面との間で干渉量を有し該面に摺接するように設けられており、
閉位置へ向う可動部材により平型導体が接触部を圧したときに、最後方に位置する接触部を有する弾性腕部が弾性変位進行中に、該弾性腕部に形成されている当接部がハウジングに当接して、該弾性腕部の接触部が弾性変位しにくくなることを特徴とする平型導体用電気コネクタ。
A housing in which a receiving portion for receiving a flat conductor and a terminal groove for holding a terminal are formed, and a terminal of the housing which is made while maintaining a flat plate surface of a metal plate and whose direction is perpendicular to the plate surface. It has a contact portion for contact with a flat conductor that is arranged and held in a groove and is inserted forward into a receiving portion of the housing, and a connection portion for soldering to a circuit board outside the housing. A plurality of terminals, and a movable member movable between an open position where the receiving portion is opened and a flat conductor can be inserted, and a closed position where the flat conductor after insertion is pressed against the contact portion of the terminal. In the flat conductor electrical connector
The terminal has a plurality of flexible elastic arm portions extending in the front-rear direction and having contact portions formed thereon, and a support arm portion positioned on the opposite side of the elastic arm portion with respect to the flat conductor,
The elastic arm portion is elastically displaceable in a direction perpendicular to the surface of the flat conductor when the contact portion is pressed by the flat conductor,
The support arm portion is formed with a support portion for supporting the movable member movably between the open position and the closed position at a tip side portion of the support arm portion,
The movable member in the housing or the open position has a regulating surface in contact with the upper surface of the flat conductor, and the distance between the regulating surface and the rear contact portion in the thickness direction of the flat conductor is narrower than the thickness of the flat conductor. Has been
The plurality of elastic arm portions in each terminal have their contact portions positioned differently in the front-rear direction, and at least the contact portion located at the rearmost portion has an interference amount with the surface of the flat conductor being inserted. And is provided so as to be in sliding contact with the surface,
When the flat conductor presses the contact portion with the movable member toward the closed position, the contact portion formed on the elastic arm portion while the elastic arm portion having the contact portion located at the rear end is in the process of elastic displacement. An electrical connector for a flat conductor, wherein the contact portion of the elastic arm portion is less likely to be elastically displaced by being in contact with the housing.
最後方に位置する接触部は、他の接触部よりも平型導体との干渉量が大きいこととする請求項1に記載の平型導体用電気コネクタ。   The flat connector electrical connector according to claim 1, wherein the contact portion located at the rearmost portion has a larger amount of interference with the flat conductor than other contact portions. 複数の弾性腕部は前方接触部が形成された前方弾性腕部と後方接触部が形成された後方弾性腕部の二つの弾性腕部を有し、自由状態における後方弾性腕部の腕長が前方弾性腕部よりも長いこととする請求項1又は請求項2に記載の平型導体用電気コネクタ。   The plurality of elastic arm portions have two elastic arm portions, a front elastic arm portion formed with a front contact portion and a rear elastic arm portion formed with a rear contact portion, and the arm length of the rear elastic arm portion in a free state is The flat connector electrical connector according to claim 1 or 2, wherein the electrical connector is longer than the front elastic arm portion. 前方弾性腕部と後方弾性腕部は、端子の前部位置を基部として後方に延びていることとする請求項1ないし請求項3のうちの一つに記載の平型導体用電気コネクタ。   4. The electrical connector for a flat conductor according to claim 1, wherein the front elastic arm portion and the rear elastic arm portion extend rearward with a front portion position of the terminal as a base portion. 後方弾性腕部は端子の後部位置で屈曲され接触部を有する先端が前方へ向いていることとする請求項4に記載の平型導体用電気コネクタ。   The flat connector electric connector according to claim 4, wherein the rear elastic arm portion is bent at a rear position of the terminal, and a tip having a contact portion faces forward. 当接部は弾性腕部の長手方向で接触部よりも後方側に設けられていることとする請求項1に記載の平型導体用電気コネクタ。   2. The electrical connector for a flat conductor according to claim 1, wherein the contact portion is provided on the rear side of the contact portion in the longitudinal direction of the elastic arm portion. 当接部は弾性腕部の長手方向で接触部よりも先端側に設けられていることとする請求項1に記載の平型導体用電気コネクタ。   2. The electrical connector for a flat conductor according to claim 1, wherein the contact portion is provided on the tip side of the contact portion in the longitudinal direction of the elastic arm portion.
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