JP6000721B2 - Electrical connectors for molded wiring boards - Google Patents

Electrical connectors for molded wiring boards Download PDF

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Publication number
JP6000721B2
JP6000721B2 JP2012168273A JP2012168273A JP6000721B2 JP 6000721 B2 JP6000721 B2 JP 6000721B2 JP 2012168273 A JP2012168273 A JP 2012168273A JP 2012168273 A JP2012168273 A JP 2012168273A JP 6000721 B2 JP6000721 B2 JP 6000721B2
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Prior art keywords
connector
wiring board
floating
external connection
terminal
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JP2014026909A (en
Inventor
亮 亀岡
亮 亀岡
仁 柏木
仁 柏木
昭生 萩原
昭生 萩原
永 佐野
永 佐野
武司 加藤
武司 加藤
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JATCO Ltd
Union Machinery Co Ltd
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JATCO Ltd
Union Machinery Co Ltd
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Priority to JP2012168273A priority Critical patent/JP6000721B2/en
Priority to KR1020130088886A priority patent/KR102073991B1/en
Priority to CN201310325090.7A priority patent/CN103579869B/en
Publication of JP2014026909A publication Critical patent/JP2014026909A/en
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Publication of JP6000721B2 publication Critical patent/JP6000721B2/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R12/00Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
    • H01R12/70Coupling devices
    • H01R12/91Coupling devices allowing relative movement between coupling parts, e.g. floating or self aligning
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R12/00Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
    • H01R12/70Coupling devices
    • H01R12/71Coupling devices for rigid printing circuits or like structures
    • H01R12/72Coupling devices for rigid printing circuits or like structures coupling with the edge of the rigid printed circuits or like structures
    • H01R12/722Coupling devices for rigid printing circuits or like structures coupling with the edge of the rigid printed circuits or like structures coupling devices mounted on the edge of the printed circuits

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  • Coupling Device And Connection With Printed Circuit (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Connector Housings Or Holding Contact Members (AREA)
  • Connection Or Junction Boxes (AREA)

Description

この発明は成形配線板用の電気接続具、詳しくは、外殻に覆われた空間内に配置された成形配線板と該空間外に配置されている各種電気機器とを電気的に接続する為に用いる電気接続具に関するものである。   The present invention relates to an electrical connector for a molded wiring board, and more specifically, to electrically connect a molded wiring board disposed in a space covered with an outer shell and various electric devices disposed outside the space. It is related with the electrical connector used for.

自動車の変速機やエンジンあるいは各種産業機械など、外殻によって覆われた空間内に配置された電気制御部においては、組立性の改善による原価低減化を図る為、従来のハーネスに代えて、所望の回路が形成された金属配線をプラスチックモールドへ固定した成形配線板を用いることが多くなっている。   In electric control units arranged in the space covered by the outer shell, such as automobile transmissions, engines, and various industrial machines, in order to reduce costs by improving assembly, it is desirable to replace conventional harnesses. In many cases, a molded wiring board in which a metal wiring having the above circuit is fixed to a plastic mold is used.

なしNone

なしNone

この場合、成形配線板には、外部の電気機器との間での電気信号の授受の為、外部接続用のコネクターが接続されているのが普通であるが、自動車の変速機などの外殻によって覆われた空間内においては、成形配線板は鋳造部品などの適当な構造物に固定されており、該空間を覆う外殻などに取付けられている外部接続用のコネクターとの間で取付け誤差が生じることは避けられず、取付け誤差が生じても成形配線板と外部接続用コネクターの電気的接続が安定的に保持される様に何らかの対策を必要としていた。   In this case, an external connection connector is usually connected to the molded wiring board to exchange electrical signals with external electrical equipment. In the space covered by the cable, the molded wiring board is fixed to an appropriate structure such as a cast part, and there is an installation error with the connector for external connection attached to the outer shell that covers the space. Inevitably, some measures are required so that the electrical connection between the molded wiring board and the external connection connector can be stably maintained even if an attachment error occurs.

本発明者は、自動車の変速機内などの外殻によって覆われた空間内に成形配線板を設置する場合の上記問題点を解決せんとして鋭意研究を行った結果、該空間内に設置された成形配線板と外部の電気機器との接続の際に、取付け誤差が生じたとしても、高い信頼性で接続を維持出来、取付け作業も容易な電気接続具を開発することに成功し、本発明としてここに提案するものである。   The present inventor has conducted earnest research to solve the above problems when installing a molded wiring board in a space covered by an outer shell such as in a transmission of an automobile, and as a result, the molding installed in the space. Even if there is an installation error when connecting the wiring board and external electrical equipment, we have succeeded in developing an electrical connector that can maintain the connection with high reliability and is easy to install. This is what we propose here.

縦横方向の誤差を吸収するフローティング機構を介して電気的に接続された上下一対の接続用端子を有するフローティングコネクターと、中間部分において閉塞された外筒内に、その軸芯と平行に複数の接続用端子が位置せしめられている外部接続コネクターとからなり、外殻によって覆われた空間内に配置された成形配線板の接続用端子に、前記フローティングコネクターの下部の接続用端子を嵌合させると共に、外殻にあけられた貫通孔を通って、下部部分が外殻内の空間に挿入された外部接続コネクターの接続用端子の下部嵌合部をフローティングコネクター上部の接続用端子に嵌合させることにより、フローティングコネクターと外部接続コネクターを介して外殻によって覆われた空間内に配置された成形配線板と該空間外に配置された機器とを電気的に接続出来る様にして、上記課題を解決した。 A floating connector that has a pair of upper and lower connection terminals that are electrically connected via a floating mechanism that absorbs vertical and horizontal errors, and a plurality of connections in parallel to the axial center of the outer cylinder closed at the middle part And an external connection connector in which the terminal for use is positioned, and the connection terminal at the lower part of the floating connector is fitted to the connection terminal of the molded wiring board disposed in the space covered by the outer shell. , through the through-hole drilled in the shell, the lower portion is fitted the lower fitting portion of the connection terminal of the external connection connector is inserted in the space in the outer shell to the connecting terminal of the floating connector top by, it is arranged outside between arranged molded wiring board and the air in covered by the outer shell via a floating connector and the external connection connector space Was and in the manner can be electrically connected to the equipment, the above-mentioned problems are eliminated.

自動車の変速機や各種産業機械などの外殻によって覆われた空間内の鋳造部品などの内部構造物に固定された成形配線板の接続用端子にはフローティングコネクターの下部の接続用端子が嵌合されており、フローティングコネクターの上部の接続用端子は空間を覆う外殻から挿入された外部接続コネクターに接続されているので、成形配線板はこのフローティングコネクターを介して外部接続コネクターに電気的に接続されていることになる。そして、フローティングコネクターには縦横方向の誤差を吸収する作用があるので、成形配線板が固定されている内部構造物と外部接続コネクターとの間で相対的な位置のズレ、つまり取付け誤差が生じたとしても、そのズレはフローティングコネクターが吸収し、成形配線板と外部接続コネクターとの電気的接続は常に安定的に保持される。従って、外部接続コネクターに接続される外部の機器との間での電気的接続も常に安定的に保持される。
この際、フローティングコネクターの上部の接続用端子とこれに嵌合される外部接続コネクターの接続用端子の下部嵌合部の寸法を共通化しておけば、外部接続コネクターを必要に応じて垂直タイプ、水平タイプどちらにすることも簡単に出来、多彩なバリエーション展開が可能となる。
The connection terminal on the lower part of the floating connector is fitted to the connection terminal of the molded wiring board fixed to the internal structure such as cast parts in the space covered by the outer shell of automobile transmissions and various industrial machines. Since the connection terminal at the top of the floating connector is connected to the external connection connector inserted from the outer shell that covers the space, the molded wiring board is electrically connected to the external connection connector via this floating connector. Will be. And since the floating connector has the effect of absorbing the vertical and horizontal errors, there is a relative positional deviation between the internal structure to which the molded wiring board is fixed and the external connection connector, that is, an installation error has occurred. Even so, the deviation is absorbed by the floating connector, and the electrical connection between the molded wiring board and the external connection connector is always stably maintained. Accordingly, the electrical connection with the external device connected to the external connection connector is always stably maintained.
At this time, if the dimensions of the connection terminal on the upper part of the floating connector and the lower fitting part of the connection terminal of the external connection connector fitted to this are made common, the external connection connector can be a vertical type if necessary. Either horizontal type can be easily done, and various variations can be developed.

この様に、この発明に係る成形配線板用の電気接続具を用いた場合、成形配線板と外部接続コネクターの相対的位置にズレが生じるおそれのある自動車の変速機やエンジン内などにも成形配線板を簡単に設置することが可能となり、組立性にすぐれた成形配線板の利用範囲をより一層拡大させることが可能で、原価コストの低減化に寄与し得る効果を有する。   In this way, when the electrical connector for a molded wiring board according to the present invention is used, molding is also performed in a transmission or an engine of an automobile that may cause a shift in the relative position between the molded wiring board and the external connection connector. The wiring board can be easily installed, the range of use of the molded wiring board excellent in assemblability can be further expanded, and there is an effect that can contribute to a reduction in cost.

この発明に係る成形配線板用の電気接続具の実施例1の断面図。Sectional drawing of Example 1 of the electrical connector for molded wiring boards which concerns on this invention. 配線板本体5にフローティングコネクター9が嵌合されている状態の斜視図。The perspective view of the state in which the floating connector 9 is fitted to the wiring board main body 5. この発明の構成要素の一つであるフローティングコネクター9の斜視図。The perspective view of the floating connector 9 which is one of the components of this invention. 同じく、その正面図。Similarly, the front view. 同じく、その側面図。Similarly, the side view. フローティングコネクター9にこの発明の構成要素の一つである外部接続コネクター12を嵌合した状態の斜視図。The perspective view of the state which fitted the external connector 12 which is one of the components of this invention to the floating connector 9. FIG. 図6に示した状態の縦断面図。The longitudinal cross-sectional view of the state shown in FIG. 同じく、他の方向から見たその縦断面図。Similarly, the longitudinal cross-sectional view seen from the other direction. この発明の構成要素の一つである外部接続コネクターの縦断面図。The longitudinal cross-sectional view of the external connection connector which is one of the components of this invention. 同じく、他の方向から見たその縦断面図。Similarly, the longitudinal cross-sectional view seen from the other direction. 水平タイプの外部接続コネクターを用いた状態の斜視図。The perspective view of the state using a horizontal type external connection connector.

基板にコネクターを実装する際に生じる縦横方向の誤差(ズレ)を吸収するフローティング機構をもったフローティングコネクターと外部接続コネクターとを介して、外殻によって覆われた空間内の成形配線板と空間外に配置された機器とを電気的に接続する様にしたことに最大の特徴が存する。 Through the floating connector and an external connection connector having a floating mechanism for absorbing the error (deviation) in the vertical and horizontal direction caused when mounting the connector to the substrate, forming a wiring board in covered by the outer shell space and the space outside The greatest feature lies in the fact that it is electrically connected to the devices arranged in the .

図1は、この発明に係る成形配線板用の電気接続具の実施例1の断面図である。
図1において、1は自動車の変速機やエンジンあるいは各種産業機械などの内部に形成されている空間を表し、この空間1は外殻2に覆われており、その内部には鋳造部品などからなる内部構造物3が位置している。
FIG. 1 is a cross-sectional view of Embodiment 1 of an electrical connector for a molded wiring board according to the present invention.
In FIG. 1, reference numeral 1 denotes a space formed in an automobile transmission, engine, or various industrial machines. The space 1 is covered with an outer shell 2, and the inside thereof is made of cast parts and the like. An internal structure 3 is located.

又、4は成形配線板であり、この実施例における成形配線板4は、所望の回路が形成された金属配線が固定されている配線板本体5を、周縁が垂直に立ち上がった箱形をなした絶縁性を有する合成樹脂製のケース11に収容し、該ケース11の上面を合成樹脂製の蓋材6で覆ったものである。そして、この配線板本体5に形成されている回路の端末には、上方に向かって接続用端子7が植設されており、蓋材6のこの接触用端子7の植設箇所に対応する部分は刳り抜かれて、貫通孔8が形成されており、蓋材6の上方から接続用端子7に直接アクセス出来る様になっている。   Reference numeral 4 denotes a molded wiring board. In this embodiment, the molded wiring board 4 has a wiring board body 5 to which a metal wiring on which a desired circuit is formed is fixed, and has a box shape with a peripheral edge rising vertically. The case 11 is made of a synthetic resin case 11 having insulating properties, and the upper surface of the case 11 is covered with a cover material 6 made of synthetic resin. And the terminal 7 for a connection is planted upwards in the terminal of the circuit formed in this wiring board main body 5, The part corresponding to the planting location of this terminal 7 for contacts of the cover material 6 The through hole 8 is formed by being cut out so that the connection terminal 7 can be directly accessed from above the lid member 6.

そして、この接続用端子7にはこの発明に係る電気接続具の構成要素の一つであるフロ
ーティングコネクター9の下部の接続用端子18が嵌合されており、図2に示す様に、フローティングコネクター9のロケーター10は、配線板本体5に固定されている。なお、フローティングコネクター9とは、縦横方向の誤差を吸収する機構、つまりフローティング機構を搭載したコネクターのことであり、図3、図4、図5、図6に示す通り、この実施例に係るフローティングコネクター9は、インシュレーター16及びその下部に位置したロケーター10とから構成されており、ロケーター10には接続用端子18及び縦横方向のズレを吸収するフローティング機構19が設けられており、インシュレーター16にはフローティング機構19を介して接続用端子18と電気的に接続された接続用端子21が設けられているが、これらは既存のフローティングコネクターと基本的に同じである。
なお、図4及び図5中20は外部接続コネクター12に固定する為、インシュレーター16の上端に形成されたペグである。
更に、図中21はこの発明に係る電気接続具のもう一つの構成要素である外部接続コネクターであり、図9及図10に示す様に、中間部分において閉塞された外筒14内に、その軸芯と平行に複数の接続用端子13が位置せしめられており、この接続用端子13の上部は外筒14内の上部空間に露出しており、上部嵌合部23と、その下部は外筒14内の下部空間に露出しており、下部嵌合部22となっている。
そして、図7及び図8に示す様に、フローティングコネクター9の上部に形成されている接続用端子21には、外部接続コネクター12の接続用端子13の下部嵌合部22が嵌合されている。なお、この外部接続コネクター12には、接続用端子13の上部嵌合部23が垂直に植設されている図6、図9、図10に示す様な垂直タイプと接続用端子13の上部嵌合部23が水平方向を向く様に屈曲せしめられている図11に示す様な水平タイプとが存在するが、フローティングコネクター9に接続する外部接続コネクター12はどちらのタイプでも良い。
The connecting terminal 7 is fitted with a connecting terminal 18 below the floating connector 9 which is one of the components of the electrical connector according to the present invention. As shown in FIG. The locator 10 is fixed to the wiring board body 5. The floating connector 9 is a mechanism that absorbs errors in the vertical and horizontal directions, that is, a connector equipped with a floating mechanism . As shown in FIG . 3, FIG. 4, FIG. 5, and FIG. the connector 9 is constituted by a locator 10 for located in insulator 16 and the lower thereof, the locator 10 and the floating mechanism 19 is provided for absorbing the displacement of the connection terminals 18 and the vertical and horizontal directions, the insulator 16 A connection terminal 21 that is electrically connected to the connection terminal 18 via a floating mechanism 19 is provided, but these are basically the same as existing floating connectors.
4 and 5, reference numeral 20 denotes a peg formed at the upper end of the insulator 16 for fixing to the external connector 12 .
Further, reference numeral 21 in the figure denotes an external connection connector which is another component of the electrical connector according to the present invention, and as shown in FIGS. 9 and 10, the external cylinder 14 is closed in the intermediate portion. A plurality of connection terminals 13 are positioned in parallel with the shaft core, and the upper part of the connection terminals 13 is exposed in the upper space in the outer cylinder 14, and the upper fitting part 23 and the lower part thereof are external. It is exposed to a lower space in the cylinder 14 and serves as a lower fitting portion 22.
As shown in FIGS. 7 and 8, the lower fitting portion 22 of the connection terminal 13 of the external connection connector 12 is fitted to the connection terminal 21 formed on the upper portion of the floating connector 9. . It should be noted that the external connection connector 12 has an upper fitting portion 23 of the connection terminal 13 vertically planted, as shown in FIGS. 6, 9, and 10, and the upper fit of the connection terminal 13 . Although there is a horizontal type as shown in FIG. 11 in which the joint portion 23 is bent so as to face the horizontal direction , the external connection connector 12 connected to the floating connector 9 may be either type.

又、外部接続コネクター12には接続用端子13を囲う様に外筒14が設けられているが、この外筒14の基部15は蓋材6の貫通孔8の周縁にぴったりと嵌り込み、貫通孔8を通ってケース11内に金属粉などの異物(コンタミネーション)が侵入することを防いでいる。 Although the outer cylinder 14 as the external connection connector 12 surrounding the connection terminal 13 is provided, the base portion 15 of the outer cylinder 14 is fitted snugly to the periphery of the through hole 8 of the lid member 6, through It prevents foreign matter (contamination) such as metal powder from entering the case 11 through the hole 8.

この実施例は、上記の通りの構成を有するものであり、自動車の変速機や各種産業機械などの外殻によって覆われた空間1内の鋳造部品などの内部構造物3に固定された成形配線板4の接続用端子7にはフローティングコネクター9の下部の接続用端子18が嵌合されており、このフローティングコネクター9の上部の接続用端子21は空間1を覆う外殻2から挿入された外部接続コネクター12の接続用端子13の下部嵌合部22嵌合されているので、成形配線板4はこのフローティングコネクター9を介して外部接続コネクター12に電気的に接続されていることになる。そして、フローティングコネクター9には縦横方向の誤差を吸収する作用があるので、成形配線板4が固定されている内部構造物3と外部接続コネクター12とに間で相対的な位置のズレ、つまり取付け誤差が生じたとしても、そのズレはフローティングコネクター9が吸収し、成形配線板4と外部接続コネクター12との電気的接続は常に安定的に保持される。従って、外部接続コネクター12の上部嵌合部23に接続される外部の機器との間での電気的接続も常に安定的に保持される
この際、フローティングコネクター9の上部の接続用端子21とこれに嵌合される外部接続コネクター12の接続用端子13下部嵌合部22の寸法を共通化しておけば、外部接続コネクター12を必要に応じて垂直タイプ、水平タイプどちらにすることも簡単に出来、多彩なバリエーション展開が可能となる。
This embodiment has the above-described configuration, and is formed wiring fixed to an internal structure 3 such as a cast part in a space 1 covered with an outer shell of an automobile transmission or various industrial machines. A connecting terminal 18 on the lower part of the floating connector 9 is fitted to the connecting terminal 7 on the plate 4, and the connecting terminal 21 on the upper part of the floating connector 9 is externally inserted from the outer shell 2 covering the space 1. The molded wiring board 4 is electrically connected to the external connection connector 12 via the floating connector 9 because it is fitted to the lower fitting portion 22 of the connection terminal 13 of the connection connector 12. Since the floating connector 9 has an action of absorbing errors in the vertical and horizontal directions, the relative displacement between the internal structure 3 and the external connection connector 12 to which the molded wiring board 4 is fixed, that is, the mounting is attached. Even if an error occurs, the deviation is absorbed by the floating connector 9, and the electrical connection between the molded wiring board 4 and the external connection connector 12 is always stably maintained. Therefore, the electrical connection with the external device connected to the upper fitting portion 23 of the external connection connector 12 is always stably maintained .
At this time, if the dimensions of the upper connection terminal 21 of the floating connector 9 and the lower fitting portion 22 of the connection terminal 13 of the external connection connector 12 fitted thereto are made common, the external connection connector 12 is necessary. Depending on the type, both vertical and horizontal types can be easily achieved, allowing a wide variety of variations.

更に、成形配線板4は、ケース11内に収容されており、外部接続コネクター12には外筒14が設けられているので、自動車の変速機の内部など油が流れている環境下においても、成形配線板4は油の流れている部分とは適度な距離が保たれ、金属粉などの異物の混入による短絡等の問題が発生する危険も少ない。   Further, the molded wiring board 4 is accommodated in the case 11, and the external connection connector 12 is provided with the outer cylinder 14. Therefore, even in an environment where oil flows, such as inside an automobile transmission, The molded wiring board 4 is kept at an appropriate distance from the oil-flowing portion, and there is little risk of problems such as a short circuit due to mixing of foreign matters such as metal powder.

この様に、この発明に係る成形配線板用の電気接続具を用いた場合、成形配線板と外部接続コネクターの相対的位置にズレが生じるおそれのある自動車の変速機やエンジン内などにも、ハーネスに代わり、組立性にすぐれた成形配線板を簡単に設置することが可能となり、その利用範囲を拡大させ、原価コストの低減化に寄与し得る効果を有する。   In this way, when using the electrical connector for a molded wiring board according to the present invention, also in a transmission or an engine of an automobile that may cause a shift in the relative position of the molded wiring board and the external connection connector, Instead of a harness, it is possible to easily install a molded wiring board excellent in assemblability, and this has the effect of expanding the range of use and contributing to a reduction in cost.

自動車の変速機やエンジン内だけでなく、各種産業機器など広範囲にわたる電気的接続
に用いることができる。
It can be used not only in automobile transmissions and engines but also in a wide range of electrical connections such as various industrial equipment.

1.空間
2.外殻
3.内部構造物
4.成形配線板
5.配線板本体
6.蓋材
7.接続用端子
8.貫通孔
9.フローティングコネクター
10.ロケーター
11.ケース
12.外部接続コネクター
13.接続用端子
14.外筒
15.基部
16.インシュレーター
18.接続用端子
19.フローティング機構
20.ペグ
21.接続用端子
22.下部嵌合部
23.上部嵌合部
1. Space 2. Outer shell 3. Internal structure 4. 4. Molded wiring board Wiring board body 6. Lid material Connection terminal 8. Through hole 9. Floating connector 10. Locator 11. Case 12. External connector 13. Connection terminal 14. Outer cylinder 15. Base 16. Insulator 18. Connection terminal 19. Floating mechanism 20. Pegs
21. Terminal for connection
22. Lower fitting part
23. Upper mating part

Claims (1)

縦横方向の誤差を吸収するフローティング機構を介して電気的に接続された上下一対の接続用端子を有するフローティングコネクターと、中間部分において閉塞された外筒内に、その軸芯と平行に複数の接続用端子が位置せしめられている外部接続コネクターとからなり、外殻によって覆われた空間内に配置された成形配線板の接続用端子に、前記フローティングコネクターの下部の接続用端子を嵌合させると共に、外殻にあけられた貫通孔を通って、下部部分が外殻内の空間に挿入された外部接続コネクターの接続用端子の下部嵌合部をフローティングコネクター上部の接続用端子に嵌合させることにより、フローティングコネクターと外部接続コネクターを介して外殻によって覆われた空間内に配置された成形配線板と該空間外に配置された機器とを電気的に接続出来る様にしたことを特徴とする成形配線板用の電気接続具。 A floating connector that has a pair of upper and lower connection terminals that are electrically connected via a floating mechanism that absorbs vertical and horizontal errors, and a plurality of connections in parallel to the axial center of the outer cylinder closed at the middle part And an external connection connector in which the terminal for use is positioned, and the connection terminal at the lower part of the floating connector is fitted to the connection terminal of the molded wiring board disposed in the space covered by the outer shell. , through the through-hole drilled in the shell, the lower portion is fitted the lower fitting portion of the connection terminal of the external connection connector is inserted in the space in the outer shell to the connecting terminal of the floating connector top by, it is arranged outside between arranged molded wiring board and the air in covered by the outer shell via a floating connector and the external connection connector space Electrical connecting device for molding wiring board is characterized in that the manner be electrically connected to the equipment was.
JP2012168273A 2012-07-30 2012-07-30 Electrical connectors for molded wiring boards Active JP6000721B2 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
JP2012168273A JP6000721B2 (en) 2012-07-30 2012-07-30 Electrical connectors for molded wiring boards
KR1020130088886A KR102073991B1 (en) 2012-07-30 2013-07-26 Electric connector for molding wiring board
CN201310325090.7A CN103579869B (en) 2012-07-30 2013-07-30 Shape the electrical fitting of distributing board

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2012168273A JP6000721B2 (en) 2012-07-30 2012-07-30 Electrical connectors for molded wiring boards

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JP6000721B2 true JP6000721B2 (en) 2016-10-05

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JP7341842B2 (en) * 2019-10-15 2023-09-11 ヒロセ電機株式会社 Connector assembly method, in-vehicle equipment assembly method, connector assembly, in-vehicle equipment

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GB9715378D0 (en) * 1997-07-23 1997-09-24 Tec Electrical Components Limi Connector assemblies
DE19932942A1 (en) * 1999-07-14 2001-03-15 Tyco Electronics Logistics Ag RF right angle connector
JP2004296294A (en) * 2003-03-27 2004-10-21 Mitsumi Electric Co Ltd Connector
JP2005129453A (en) * 2003-10-27 2005-05-19 Smk Corp Connector with floating structure
JP4100357B2 (en) * 2004-02-24 2008-06-11 松下電工株式会社 Magnetic outlet adapter
JP4330502B2 (en) * 2004-08-11 2009-09-16 三洋電機株式会社 Floating connector
JP4369492B2 (en) * 2007-03-26 2009-11-18 三菱電機株式会社 Terminal device for vehicle alternator
JP2011060732A (en) * 2009-09-14 2011-03-24 Japan Aviation Electronics Industry Ltd Connector
JP2011076755A (en) * 2009-09-29 2011-04-14 Taiko Denki Co Ltd Floating connector
US8294043B2 (en) 2010-12-07 2012-10-23 Honeywell International Inc. Integrated connector shield ring for shielded enclosures

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CN103579869A (en) 2014-02-12
JP2014026909A (en) 2014-02-06
CN103579869B (en) 2018-01-30
KR102073991B1 (en) 2020-02-05

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