JPH04209479A - Electrical connector - Google Patents
Electrical connectorInfo
- Publication number
- JPH04209479A JPH04209479A JP40532190A JP40532190A JPH04209479A JP H04209479 A JPH04209479 A JP H04209479A JP 40532190 A JP40532190 A JP 40532190A JP 40532190 A JP40532190 A JP 40532190A JP H04209479 A JPH04209479 A JP H04209479A
- Authority
- JP
- Japan
- Prior art keywords
- connector
- guide member
- elastic arm
- male connector
- male
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Landscapes
- Details Of Connecting Devices For Male And Female Coupling (AREA)
Abstract
Description
[00011 [00011
【産業上の利用分野]本発明は、電気コネクタ、特に雌
型コネクタの開口内で雌型コネクタのコンタクトを雄型
コネクタのコンタクトに正規に嵌合するように案内する
ガイド部材を有する電気コネクタに関する。
[0002]
【従来の技術】雄型及び雌型コネクタの嵌合の際に、雌
型コネクタに収容保持されたコンタクトが雄型コネクタ
によって変形することを防止するために雌型コネクタ内
にガイド部材を設けた電気コネクタが提案されている(
実開昭61−99979号公報)。図9において、ガイ
ドプレート100は雌型コネクタのハウジング102の
凹部104内に摺動自在に配置され、雄型コネクタ(図
示せず)が凹部104内に挿入する間、孔106により
コンタクト108を案内する。このため、コンタクト1
08を変形させることなく両コネクタを嵌合させること
ができる。
[0003]ところが、このガイドプレート100は、
旦凹部104の奥に押込まれると、雄型コネクタを雌型
コネクタ1O2から抜去する際に元の位置に復帰するこ
とができない。このため、2度目の雄型コネクタの挿入
の際に雌型コネクタ1O2のコンタクト108が変形す
る虞れがある。
[0004]そこで、本出願人は、雄型コネクタを抜去
する際に、雄型コネクタの移動に伴って元の位置に復帰
するガイド部材を有するコネクタを提案した(実開昭6
3116985号公報)。図10に示すように、雄型コ
ネクタ141はその嵌合部に係止アーム145を有し、
雌型コネクタ131との嵌合時においてガイド部材13
5の係止孔135bに係止する。雄型コネクタ141を
雌型コネクタ131から抜去すると、図11に示すよう
に、係止アーム145は押え板133によって付勢され
るので係止孔135bと係合し、雄型コネクタ141の
移動に伴ってガイド部材135を元の位置に戻すことが
できる。
[0005]TECHNICAL FIELD The present invention relates to an electrical connector, and more particularly to an electrical connector having a guide member for guiding the contacts of the female connector into proper engagement with the contacts of the male connector within the opening of the female connector. . [0002] [0002] When male and female connectors are mated together, a guide member is provided in the female connector to prevent the contacts housed and held in the female connector from being deformed by the male connector. An electrical connector with a
Utility Model Application No. 61-99979). In FIG. 9, a guide plate 100 is slidably disposed within a recess 104 of a female connector housing 102 to guide contacts 108 through holes 106 while a male connector (not shown) is inserted into the recess 104. do. For this reason, contact 1
Both connectors can be fitted together without deforming 08. [0003] However, this guide plate 100 is
Once pushed deep into the recess 104, the male connector cannot be returned to its original position when removed from the female connector 1O2. Therefore, there is a risk that the contacts 108 of the female connector 1O2 may be deformed when the male connector is inserted for the second time. [0004] Therefore, the present applicant proposed a connector having a guide member that returns to its original position as the male connector moves when the male connector is removed (Utility Model Application No. 6).
3116985). As shown in FIG. 10, the male connector 141 has a locking arm 145 at its fitting portion,
When mating with the female connector 131, the guide member 13
It is locked in the locking hole 135b of No.5. When the male connector 141 is removed from the female connector 131, as shown in FIG. Accordingly, the guide member 135 can be returned to its original position. [0005]
【発明が解決しようとする課題】しかし、上記係止アー
ム145はアンダーカット部が2箇所あるために金型上
、成形することが困難である。また、雄型コネクタ14
1が非防水タイプである場合には通常、フード部141
bを有しない。この場合、係止アーム145は露出する
ので損傷する虞れがある。更に、押え板133及び係止
アーム145が設けられている空間にはコンタクトを設
けることはできない。このため、コネクタの小型化が困
難である。
[0006]そこで、本発明は上記問題点に鑑み、雄型
及び雌型コネクタの嵌合後、雄型コネクタの抜去に伴っ
てガイド部材が元の位置に復帰する電気コネクタであっ
て、特に成形性に優れ、かつ、小型化が可能な電気コネ
クタを提供することを目的とする。
[00071However, since the locking arm 145 has two undercuts, it is difficult to mold it using a mold. In addition, the male connector 14
1 is a non-waterproof type, usually the hood part 141
It does not have b. In this case, the locking arm 145 is exposed and may be damaged. Further, contacts cannot be provided in the space where the presser plate 133 and the locking arm 145 are provided. Therefore, it is difficult to miniaturize the connector. [0006] Therefore, in view of the above-mentioned problems, the present invention provides an electrical connector in which a guide member returns to its original position when the male connector is removed after the male and female connectors are mated, and in particular, The purpose of the present invention is to provide an electrical connector that has excellent performance and can be miniaturized. [00071
【課題を解決するための手段]本発明の電気コネクタは
、雄型コネクタと、該雄型コネクタを受容する開口を有
する雌型コネクタと、前記開口内に前記雄型コネクタの
移動方向に摺動可能に収容され、前記雌型コネクタから
前記開口内に突出するコンタクトを案内するガイド部材
とからなる電気コネクタであって、前記ガイド部材は、
少なくとも1つの弾性腕を有し、前記開口の壁面には、
前記弾性腕と当接して前記雌型コネクタからの前記ガイ
ド部材の離脱を防止する第1突起、及び前記ガイド部材
を仮止めする第2突起を設け、前記雄型コネクタの壁面
には、前記弾性腕と係合する第3突起を設けたことを特
徴とする。
[0008]
【作用】雄型及び雌型コネクタの嵌合前において、ガイ
ド部材は第2突起によって仮止めされ、かつ、第1突起
がガイド部材の弾性腕と当接することによって雌型コネ
クタから離脱するのを阻止している。次に雄型コネクタ
が雌型コネクタに挿入されると、弾性腕が第3突起によ
って外方へ撓むことにより、ガイド部材は、仮止め位置
に留まったまま雄型コネクタの挿入を許容する。雄型コ
ネクタが更に挿入されると、ガイド部材の雄型コネクタ
対向面が雄型コネクタと当接することにより、弾性腕が
第2突起を乗り越えた後にガイド部材は雄型コネクタの
移動に伴って移動する。
[0009]雄型コネクタを雌型コネクタから抜去する
際には、弾性腕が第3突起と係合して、ガイド部材は雄
型コネクタの移動に伴って移動する。弾性腕が第2突起
に当接すると、第2突起によって内方に撓み、第2突起
を乗り越えることにより、ガイド部材は仮止め位置に到
達する。雄型コネクタを更に引き抜くと、弾性腕が第1
突起に当接し、かつ、第3突起が弾性腕を外方へ撓ませ
るので、ガイド部材は仮止め位置に留まったまま、雄型
コネクタが雌型コネクタから離脱する。
[00101[Means for Solving the Problems] The electrical connector of the present invention includes a male connector, a female connector having an opening for receiving the male connector, and a female connector that slides into the opening in the direction of movement of the male connector. a guide member that is removably received and guides a contact projecting from the female connector into the opening, the guide member comprising:
having at least one elastic arm on the wall of the opening;
A first protrusion that comes into contact with the elastic arm to prevent the guide member from detaching from the female connector, and a second protrusion that temporarily fixes the guide member, and a wall surface of the male connector is provided with the elastic arm. It is characterized by providing a third protrusion that engages with the arm. [0008] [Operation] Before the male and female connectors are mated, the guide member is temporarily fixed by the second protrusion, and the first protrusion comes into contact with the elastic arm of the guide member, so that the guide member is detached from the female connector. is prevented from doing so. Next, when the male connector is inserted into the female connector, the resilient arms are deflected outward by the third protrusions, so that the guide member allows the male connector to be inserted while remaining in the temporarily fixed position. When the male connector is further inserted, the male connector facing surface of the guide member comes into contact with the male connector, so that after the elastic arm gets over the second protrusion, the guide member moves as the male connector moves. do. [0009] When the male connector is removed from the female connector, the elastic arm engages with the third protrusion and the guide member moves as the male connector moves. When the elastic arm comes into contact with the second protrusion, it is deflected inward by the second protrusion, and by climbing over the second protrusion, the guide member reaches the temporary fixing position. When the male connector is pulled out further, the elastic arm
Since the third protrusion makes contact with the protrusion and deflects the elastic arm outward, the male connector separates from the female connector while the guide member remains in the temporary fixing position. [00101
【実施例]以下、図面を参照して本発明の詳細な説明す
る。図1は本発明の電気コネクタの一実施例の分解斜視
図である。図2はガイド部材30を収容する雌型コネク
タ20の断面図である。図3は図2のIII−III線
に沿った拡大断面図である。
[0011]図1において、本発明の電気コネクタは、
雌型コンタクト(図示せず)を収容保持する雄型コネク
タ10と、雄型コンタクト(図示せず)を収容保持する
と共に、雄型コネクタ10を受容する開口22内にガイ
ド部材30を収容する雌型コネクタ20とから構成され
る。ガイド部材30には板状部32にコンタクトの数に
対応した貫通孔34が設けられていると共に、板状部3
2の長手方向両端から板状部32に対して略直角に延び
る弾性腕36が設けられている。
[0012]図2に示すように、雌型コネクタ10と嵌
合する前の雌型コネクタ20において、ガイド部材30
は仮止め位置にある。この仮止め位置では、図3に示す
ように雌型コネクタ20の開口22内の壁面24に設け
られた第1突起26と、弾性腕36に設けられた溝38
内に位置する第2突起28との間に弾性腕の端部40が
挟まれる。これにより、ガイド部材30は、雌型コネク
タ20から離脱することはなく、雄型コネクタを挿入し
ない限り、開口22内方(図において右方向)に移動し
ない。このため、雌型コネクタ20の搬送中に、ガイド
部材30が不用意に移動することを防止する。この仮止
め位置では、言うまでもなく、雌型コネクタ20に収容
保持されている雄型コンタクト60の先端がガイド部材
30の貫通孔34と整列している。
[0013]図4は雄型コネクタ10の挿入開始時にお
ける拡大断面図である。図5は雄型コネクタ10の挿入
過程を示す断面図である。図6は雄型及び雌型コネクタ
10゜20の嵌合状態を示す断面図である。図7及び図
8は雄型コネクタ10の抜去過程を示す拡大断面図であ
る。
[0014]図4に示すように、雄型コネクタ10が雌
型コネクタ20の開口22内に挿入されると、雄型コネ
クタ10の壁面に設けられた第3突起12がガイド部材
30の弾性腕36の端部40を外方へ押圧する。第2突
起28の前側斜面28aの角度αは第3突起12の前側
斜面12aの角度βより大きく形成されているので、弾
性腕36の端部40は第2突起28の前側斜面と強く係
合する。このため、弾性腕36の端部40が仮止め位置
に留まった状態で、第3突起12が弾性腕36の端部4
0を乗り越えて溝38内を進入する。
[0015]雄型コネクタ10を更に挿入すると、図5
に示すように、雄型コネクタ10の前端面がガイド部材
30の板状部32の対向面に当接する。このとき、第2
突起28の前側斜面28aと弾性腕36の端部40との
係合が外れ、ガイド部材30は雄型コネクタ10の移動
に伴って開口22内を摺動する。この摺動の間、雌型コ
ネクタ20の雄型コンタクト60は、ガイド部材30の
貫通孔34によって雄型コネクタ10の雌型コンタクト
70に正確に案内されるので、図6に示すように両コネ
クタ10.20と共に両コンタクト60.70が正常に
嵌合する。
[00161両コネクタ10.20の嵌合状態から雌型
コネクタ10を抜去すると、初めに雄型コネクタ10の
みが移動し、ガイド部材30は移動しない。第3突起1
2の後側斜面12bが弾性腕36の端部40に当接する
ことにより、ガイド部材30は雄型コネクタ10の移動
に伴って摺動を開始する。更に、雄型コネクタ10を移
動させると、弾性腕36の端部40が第2突起28に当
接する。図示のように、第3突起12の後側斜面12b
の角度γは第2突起28の後側斜面28bの角度δより
大きく形成されている。従って、弾性腕36の端部40
は第3突起12の後側斜面12bとより強く係合するの
で、弾性腕36が内方へ撓みながら端部40か第2突起
28の後側斜面28bに沿って摺動し、第2突起28を
乗り越える。これにより、ガイド部材30は仮止め位置
に到達する。
[0017]引き続いて、雄型コネクタを抜去すると、
弾性腕36の端部40は第1突起26に当接する。図8
に示すように、第1突起26の端面角度εは第3突起1
2の後側斜面12bの角度γより大きく形成されている
ので、弾性腕36の端部40は第1突起26と強く係合
する。このため、弾性腕36が外方に撓むと共に、第3
突起12が弾性腕36の端部40を乗り越える。これに
より、ガイド部材30は仮止め位置に留まったまま、雄
型コネクタlOのみが雌型コネクタ20から離脱する。
[0018]この特定実施例における各突起26.28
.12の斜面の角度は、α及びγが60°、β及びδが
300、εが95°であることが望ましいが、必要によ
って適宜変更してもよい。また、この特定実施例では第
1乃至第3突起に当接するのは単一の弾性腕であったが
、各突起の上下方向の位置をずらし、かつ、各突起に対
応する3本の弾性腕を設けてもよいし、また、2本の弾
性腕を設けてもよい。
[0019]
【効果】本発明によれば、3種類の突起と弾性腕との協
働によって、非嵌合時及び雄型コネクタの抜去時におい
てガイド部材が雌型コネクタから離脱しないと共に、雄
型コネクタの抜去に伴ってガイド部材が元の位置に復帰
する電気コネクタが実現できる。しかも、ガイド部材は
雌型コネクタの開口内に収容されているときに露出する
部位を有しないので、損傷の虞れがない。また、雄型コ
ネクタの抜去に伴ってガイド部材が元の位置に復帰する
機能を得るために特に空間を必要としないので、電気コ
ネクタの小型化に有効である。更に、ガイド部材は比較
的成形し易い形状であるので、量産性に優れている。[Embodiments] The present invention will be described in detail below with reference to the drawings. FIG. 1 is an exploded perspective view of an embodiment of the electrical connector of the present invention. FIG. 2 is a cross-sectional view of the female connector 20 that accommodates the guide member 30. FIG. 3 is an enlarged sectional view taken along line III-III in FIG. 2. [0011] In FIG. 1, the electrical connector of the present invention includes:
A male connector 10 that accommodates and holds a female contact (not shown), and a female connector that accommodates and holds a male contact (not shown) and that accommodates a guide member 30 in an opening 22 that receives the male connector 10. type connector 20. The guide member 30 is provided with through holes 34 corresponding to the number of contacts in the plate portion 32, and the plate portion 32 is provided with through holes 34 corresponding to the number of contacts.
Elastic arms 36 are provided that extend substantially perpendicularly to the plate-like portion 32 from both ends of the plate-like portion 2 in the longitudinal direction. [0012] As shown in FIG. 2, in the female connector 20 before mating with the female connector 10, the guide member 30
is in the temporary position. In this temporary fixing position, as shown in FIG.
The end portion 40 of the elastic arm is sandwiched between the second protrusion 28 located inside. As a result, the guide member 30 does not separate from the female connector 20 and does not move inside the opening 22 (to the right in the figure) unless a male connector is inserted. This prevents the guide member 30 from moving inadvertently while the female connector 20 is being transported. Needless to say, in this temporary fixing position, the tips of the male contacts 60 housed and held in the female connector 20 are aligned with the through holes 34 of the guide member 30. [0013] FIG. 4 is an enlarged cross-sectional view of the male connector 10 at the beginning of insertion. FIG. 5 is a sectional view showing the insertion process of the male connector 10. FIG. 6 is a sectional view showing the fitted state of the male and female connectors 10°20. 7 and 8 are enlarged sectional views showing the process of removing the male connector 10. [0014] As shown in FIG. 4, when the male connector 10 is inserted into the opening 22 of the female connector 20, the third protrusion 12 provided on the wall of the male connector 10 engages the elastic arm of the guide member 30. Push the ends 40 of 36 outward. Since the angle α of the front slope 28a of the second projection 28 is larger than the angle β of the front slope 12a of the third projection 12, the end 40 of the elastic arm 36 is strongly engaged with the front slope of the second projection 28. do. Therefore, while the end 40 of the elastic arm 36 remains in the temporary fixing position, the third protrusion 12
0 and enters the groove 38. [0015] When the male connector 10 is further inserted, FIG.
As shown in FIG. 2, the front end surface of the male connector 10 comes into contact with the opposing surface of the plate-shaped portion 32 of the guide member 30. At this time, the second
The front slope 28a of the projection 28 and the end 40 of the elastic arm 36 are disengaged, and the guide member 30 slides within the opening 22 as the male connector 10 moves. During this sliding, the male contacts 60 of the female connector 20 are accurately guided to the female contacts 70 of the male connector 10 by the through holes 34 of the guide member 30, so that both connectors 10.20 and both contacts 60.70 fit normally. [00161 When the female connector 10 is removed from the fitted state of both connectors 10 and 20, only the male connector 10 moves first, and the guide member 30 does not move. Third protrusion 1
2 comes into contact with the end 40 of the elastic arm 36, so that the guide member 30 starts sliding as the male connector 10 moves. Further, when the male connector 10 is moved, the end portion 40 of the elastic arm 36 comes into contact with the second protrusion 28 . As illustrated, the rear slope 12b of the third protrusion 12
The angle γ is larger than the angle δ of the rear slope 28b of the second protrusion 28. Therefore, the end 40 of the elastic arm 36
is more strongly engaged with the rear slope 12b of the third projection 12, so the elastic arm 36 slides along the end 40 or the rear slope 28b of the second projection 28 while deflecting inward, and the second projection 12 Get over 28. As a result, the guide member 30 reaches the temporary fixing position. [0017] Subsequently, when the male connector is removed,
An end 40 of the elastic arm 36 abuts the first protrusion 26 . Figure 8
As shown, the end face angle ε of the first protrusion 26 is
2, the end portion 40 of the elastic arm 36 strongly engages with the first protrusion 26. Therefore, the elastic arm 36 bends outward and the third
The protrusion 12 rides over the end 40 of the resilient arm 36. As a result, only the male connector 10 is detached from the female connector 20 while the guide member 30 remains in the temporary fixing position. [0018] Each protrusion 26.28 in this particular embodiment
.. The angles of the slopes 12 are preferably 60° for α and γ, 300° for β and δ, and 95° for ε, but may be changed as necessary. In addition, in this specific example, a single elastic arm was in contact with the first to third protrusions, but the vertical position of each protrusion is shifted, and three elastic arms corresponding to each protrusion are provided. Alternatively, two elastic arms may be provided. [0019] [Effects] According to the present invention, due to the cooperation of the three types of protrusions and the elastic arms, the guide member does not separate from the female connector when unmated and when the male connector is removed, and the guide member does not separate from the male connector. An electrical connector in which the guide member returns to its original position when the connector is removed can be realized. Furthermore, since the guide member does not have any exposed portion when accommodated in the opening of the female connector, there is no risk of damage. Further, since no particular space is required for the guide member to return to its original position when the male connector is removed, it is effective in downsizing the electrical connector. Furthermore, since the guide member has a shape that is relatively easy to mold, it is excellent in mass production.
【図11本発明の電気コネクタの一実施例の分解斜視図
である。
【図2】ガイド部材を収容する雌型コネクタの断面図で
ある。FIG. 11 is an exploded perspective view of an embodiment of the electrical connector of the present invention. FIG. 2 is a cross-sectional view of a female connector housing a guide member.
【図3】図2のIII−III線に沿った拡大断面図で
ある。FIG. 3 is an enlarged sectional view taken along line III-III in FIG. 2;
【図4】雄型コネクタの挿入開始時における拡大断面図
である。FIG. 4 is an enlarged cross-sectional view of the male connector at the beginning of insertion.
【図5】雄型コネクタの挿入過程を示す断面図である。FIG. 5 is a sectional view showing the insertion process of the male connector.
【図6】雄型及び雌型コネクタの嵌合状態を示す断面図
である。FIG. 6 is a sectional view showing a fitted state of male and female connectors.
【図7及び図8】雄型コネクタの抜去過程を示す図3と
同様の拡大断面図である。
に図9】従来例の断面図である。7 and 8 are enlarged sectional views similar to FIG. 3 showing the process of removing the male connector. FIG. 9 is a sectional view of a conventional example.
【図10及び図11】異なる従来例の断面図である。10 and 11 are cross-sectional views of different conventional examples.
10 雄型コネクタ 12 第3突起 20 雌型コネクタ 22 開口 26 第1突起 28 第2突起 30 ガイド部材 36 弾性腕 60 コンタクト 10 Male connector 12 Third protrusion 20 Female connector 22 Opening 26 First protrusion 28 Second protrusion 30 Guide member 36 Elastic arm 60 Contact
【図7】[Figure 7]
Claims (1)
る開口を有する雌型コネクタと、前記開口内に前記雄型
コネクタの移動方向に摺動可能に収容され、前記雌型コ
ネクタから前記開口内に突出するコンタクトを案内する
ガイド部材とからなる電気コネクタにおいて、前記ガイ
ド部材は、少なくとも1つの弾性腕を有し、前記開口の
壁面には、前記弾性腕と当接して前記雌型コネクタから
の前記ガイド部材の離脱を防止する第1突起、及び前記
ガイド部材を仮止めする第2突起を設け、前記雄型コネ
クタの壁面には、前記弾性腕と係合する第3突起を設け
たことを特徴とする電気コネクタ。1. A male connector; a female connector having an opening for receiving the male connector; an electrical connector comprising a guide member that guides a contact protruding into an opening, the guide member having at least one elastic arm, and a wall surface of the opening that is in contact with the elastic arm and the female connector. A first protrusion for preventing the guide member from separating from the connector and a second protrusion for temporarily fixing the guide member are provided, and a third protrusion for engaging with the elastic arm is provided on the wall surface of the male connector. An electrical connector characterized by:
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP40532190A JP2946000B2 (en) | 1990-12-06 | 1990-12-06 | Electrical connector |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP40532190A JP2946000B2 (en) | 1990-12-06 | 1990-12-06 | Electrical connector |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH04209479A true JPH04209479A (en) | 1992-07-30 |
JP2946000B2 JP2946000B2 (en) | 1999-09-06 |
Family
ID=18514935
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP40532190A Expired - Lifetime JP2946000B2 (en) | 1990-12-06 | 1990-12-06 | Electrical connector |
Country Status (1)
Country | Link |
---|---|
JP (1) | JP2946000B2 (en) |
Cited By (18)
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US5466164A (en) * | 1993-03-09 | 1995-11-14 | Sumitomo Wiring Systems, Ltd. | Connector having a protective hood |
US5558526A (en) * | 1994-03-29 | 1996-09-24 | The Whitaker Corporation | Connector with a contact-aligning device |
US5599200A (en) * | 1994-03-16 | 1997-02-04 | Yazaki Corporation | Connector with a terminal protecting board |
FR2778502A1 (en) * | 1998-05-05 | 1999-11-12 | Framatome Connectors Int | Electrical connector with multiple male terminal pins |
FR2812767A1 (en) * | 2000-08-04 | 2002-02-08 | Fci Automotive France | Car electrical connection moving protection grid having moving grid protection electrical connection and having mechanical stop activated tonguelet section moving grid open position/closed position returning when removed. |
DE10220865B4 (en) * | 2001-05-11 | 2005-06-02 | Yazaki Corp. | Socket with a holder to be fastened thereto |
JP2007080690A (en) * | 2005-09-14 | 2007-03-29 | Sumitomo Wiring Syst Ltd | Connector |
JP2007103120A (en) * | 2005-10-03 | 2007-04-19 | Sumitomo Wiring Syst Ltd | Connector |
JP2010097911A (en) * | 2008-10-20 | 2010-04-30 | Yazaki Corp | Connector |
DE102010009836A1 (en) | 2009-03-03 | 2010-09-09 | Yazaki Corp. | Resin-molded part with locking arm, this connector using and a method of forming a resin-molded part with locking arm |
JP2011086478A (en) * | 2009-10-15 | 2011-04-28 | Tyco Electronics Japan Kk | Electrical connector assembly |
JP2011524625A (en) * | 2008-06-17 | 2011-09-01 | タイコ・エレクトロニクス・コーポレイション | Electrical connector with floating alignment member |
JP2011238624A (en) * | 2011-07-22 | 2011-11-24 | Sumitomo Wiring Syst Ltd | Connector |
JP2015210972A (en) * | 2014-04-28 | 2015-11-24 | 富士通株式会社 | Connector and connector set |
JP2016051666A (en) * | 2014-09-02 | 2016-04-11 | 矢崎総業株式会社 | connector |
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US9774125B2 (en) | 2015-10-23 | 2017-09-26 | Tyco Electronics Japan G.K. | Connector having a moving plate |
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JP4966625B2 (en) | 2006-10-27 | 2012-07-04 | 矢崎総業株式会社 | connector |
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US5599200A (en) * | 1994-03-16 | 1997-02-04 | Yazaki Corporation | Connector with a terminal protecting board |
US5558526A (en) * | 1994-03-29 | 1996-09-24 | The Whitaker Corporation | Connector with a contact-aligning device |
FR2778502A1 (en) * | 1998-05-05 | 1999-11-12 | Framatome Connectors Int | Electrical connector with multiple male terminal pins |
FR2812767A1 (en) * | 2000-08-04 | 2002-02-08 | Fci Automotive France | Car electrical connection moving protection grid having moving grid protection electrical connection and having mechanical stop activated tonguelet section moving grid open position/closed position returning when removed. |
EP1182742A1 (en) * | 2000-08-04 | 2002-02-27 | F.C.I. - Framatome Connectors International | Mobil protection grid for contact pins in an electrical connector and connector equiped with such a grid |
DE10220865B4 (en) * | 2001-05-11 | 2005-06-02 | Yazaki Corp. | Socket with a holder to be fastened thereto |
JP2007080690A (en) * | 2005-09-14 | 2007-03-29 | Sumitomo Wiring Syst Ltd | Connector |
JP2007103120A (en) * | 2005-10-03 | 2007-04-19 | Sumitomo Wiring Syst Ltd | Connector |
JP2011524625A (en) * | 2008-06-17 | 2011-09-01 | タイコ・エレクトロニクス・コーポレイション | Electrical connector with floating alignment member |
JP2010097911A (en) * | 2008-10-20 | 2010-04-30 | Yazaki Corp | Connector |
DE102010009836A1 (en) | 2009-03-03 | 2010-09-09 | Yazaki Corp. | Resin-molded part with locking arm, this connector using and a method of forming a resin-molded part with locking arm |
US8002570B2 (en) | 2009-03-03 | 2011-08-23 | Yazaki Corporation | Resin molded parts with lock arm, connector using it and method for forming resin molded parts with lock arm |
JP2010205552A (en) * | 2009-03-03 | 2010-09-16 | Yazaki Corp | Resin molding component with lock arm, connector using it, and molding method of resin molding component with lock arm |
JP2011086478A (en) * | 2009-10-15 | 2011-04-28 | Tyco Electronics Japan Kk | Electrical connector assembly |
JP2011238624A (en) * | 2011-07-22 | 2011-11-24 | Sumitomo Wiring Syst Ltd | Connector |
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JPWO2014192800A1 (en) * | 2013-05-30 | 2017-02-23 | 矢崎総業株式会社 | connector |
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WO2024153387A1 (en) * | 2023-01-19 | 2024-07-25 | Mercedes-Benz Group AG | Device and method for fitting a plurality of wiring harness components at a counterpart location |
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