JP4050582B2 - Clip-type relay connector - Google Patents

Clip-type relay connector Download PDF

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Publication number
JP4050582B2
JP4050582B2 JP2002273650A JP2002273650A JP4050582B2 JP 4050582 B2 JP4050582 B2 JP 4050582B2 JP 2002273650 A JP2002273650 A JP 2002273650A JP 2002273650 A JP2002273650 A JP 2002273650A JP 4050582 B2 JP4050582 B2 JP 4050582B2
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JP
Japan
Prior art keywords
inspection
base
cam lever
clip
support shaft
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JP2002273650A
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Japanese (ja)
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JP2004111269A (en
Inventor
岳史 ▲轟▼木
久史 鈴木
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Yokowo Co Ltd
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Yokowo Co Ltd
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Description

【0001】
【発明の属する技術分野】
本発明は、フレキシブル印刷基板やフレキシブルフラットケーブルなど(以下、検査側基板と称する)の端部に配設された端子を、検査用のテスターなどに電気的接続するためのクリップ式中継コネクタに関するものである。
【0002】
【従来の技術】
クリップ式中継コネクタの従来の一例が、特開2000−77122号公報に示される。かかるクリップ式中継コネクタは、フレキシブル基板などの検査側基板の端部を、クリップ式中継コネクタの挿入部の所定位置まで挿入して挟持させることで、検査側基板の端子にスプリングコネクタが適宜に弾接される。これらのスプリングコネクタは、クリップ式中継コネクタに組み込まれた中継用基板を介して、適宜にテスターなどの検査装置に電気的接続され、電子部品などが適宜に検査されることは勿論である。
【0003】
【発明が解決しようとする課題】
上記従来のクリップ式中継コネクタは、検査側基板に配設された多数の端子を、簡単な操作でテスターなどに正確に電気的接続でき、検査を効率的に行うのに好適である。
【0004】
しかるに、検査側基板を挟持するための弾性部材の弾力により、検査側基板を挿入するための挿入部を開口状態に保つためには、作業者がクリップ式中継コネクタを手で押さえておく必要がある。そこで、液晶パネルなどの大きな電子部品を検査する際には、大きな電子部品を支持するために作業者の両手が必要であり、その電子部品に付設される検査側基板を挿入部に挿入するには、クリップ式中継コネクタの挿入部を開口させるためにもう一人の作業者が必要であった。また、クリップ式中継コネクタを手で押さえて挿入部を開口状態として作業を行う際に、手で押さえる具合により、挿入部の開口状態が必ずしも完全な状態とならない。そこで、挿入部が不完全な開口状態で検査側基板を挿入ならびに引き抜くことにより、検査側基板に損傷を与えるとともにクリップ式中継コネクタのスプリングコネクタにも損傷を与える虞があった。さらに、電子部品の検査が終了して、クリップ式中継コネクタの挿入部を開口状態として検査側基板を引き抜き、クリップ式中継コネクタから手を離すと、挿入部が弾力により閉じられてしまい、次に検査する電子部品の検査側基板を挿入部に挿入するには、再び挿入部を開口しなければならず、作業がそれだけ煩雑である。
【0005】
本発明は、上述のごとき従来のクリップ式中継コネクタの事情に鑑みてなされたもので、挿入部の開口状態を確実に保つことができるとともに簡単に開口状態を解除できるクリップ式中継コネクタを提供することを目的とする。
【0006】
【課題を解決するための手段】
かかる目的を達成するために、本発明の絶縁性の第1と第2の基台を支軸により揺動自在に配設するとともに弾性部材を配設して前記支軸の一方側の前記第1と第2の基台の挿入部で検査側基板の端部を弾力的に挟持し得るようになし、前記第1または第2の基台のいずれか一方の基台に中継用基板を配設し、前記中継用基板に前記検査側基板を挟持した状態で前記検査側基板の端部に設けられた端子に弾接するようにスプリングコネクタを配設し、前記第1または第2の基台のいずれか一方の基台に他方の基台の両側で前記他方の基台より揺動方向に長い一対のアームを設け、前記アームに前記支軸の他方側で前記他方の基台より前記揺動方向に離して前記支軸と平行にカム支軸を設け、前記カム支軸にカムレバーを揺動自在に配設し、前記カムレバーの第1の揺動姿勢で前記弾性部材の弾力により前記検査側基板を前記第1と第2の基台で挟持し、前記カムレバーの第2の揺動姿勢で前記他方の基台に当接して前記弾性部材の弾力に抗して前記第1と第2の基台の挿入部を開口状態とししかも前記カムレバーが安定した姿勢となるように前記カムレバーを形成して構成されている。
【0007】
そして、前記第2の揺動姿勢で前記カムレバーの前記他方の基台に当接する部分を、前記カム支軸に平行な平面に形成して構成しても良い。
【0008】
さらに、前記第1と第2の揺動姿勢で前記カムレバーの前記他方の基台に対向または当接するそれぞれの部分を、前記カム支軸に平行な複数の平面でそれぞれに形成して構成することも可能である。
【0009】
【発明の実施の形態】
以下、本発明の実施例を図1ないし図8を参照して説明する。図1は、本発明のクリップ式中継コネクタの一実施例の平面図である。図2は、図1に示す実施例の正面図である。図3は、図1に示す実施例の左側面図である。図4は、図1のA−A矢視断面図である。図5は、カムレバーを操作して挿入部を開口状態とした正面図である。図6は、図5の開口状態の挿入部に検査側基板を挿入した状態の正面図である。図7は、カムレバーを途中まで戻した状態の正面図である。図8は、カムレバーを完全に戻して検査側基板を挟持させた状態の正面図である。
【0010】
図において、絶縁樹脂などからなる絶縁性の第1の基台10と、絶縁樹脂などからなる絶縁性の第2の基台12とが、支軸14により揺動自在に配設される。そして、第1と第2の基台10,12の支軸14の一方側にフレキシブル基板等の検査用側基板16が挿入される挿入部18が設けられる。第1と第2の基台10,12に対して検査側基板16の挿入を規制して位置決めするための機構が適宜に設けられることは勿論である。そして、第1と第2の基台10,12の支軸14の他方側に、挿入部18が閉じる方向に弾性付勢するスプリングコイル等の弾性部材20が縮設される。
【0011】
また、一方の基台である第2の基台12には、中継用基板22が組み込まれ、挿入部18に臨む一端部に、挿入された状態の検査側基板16の挿入側の端部に配設される端子に対応してスプリングコネクタ24,24…が配設される。この中継用基板22の他端部には、検査用のテスターなどに電気的接続されるケーブル等が電気的接続される接続端子が設けられ、これらの接続端子とスプリングコネクタ24,24…が、中継用基板22に設けられた印刷回路等により適宜に電気的接続されている。
【0012】
以上の構造は、従来のクリップ式中継コネクタと同様である。本発明のクリップ式中継コネクタの格別な構造は、以下の通りである。
【0013】
まず、他方の基台である第1の基台10から、支軸14に対して挿入部18とは反対側の他方側に、第2の基台12の両側で、第2の基台12よりも揺動方向に長い一対のアーム26,26が設けられる。そして、その先端部で第2の基台12から揺動方向に離して、支軸14と平行にカム支軸28が設けられる。さらに、このカム支軸28に揺動自在にカムレバー30が配設される。このカムレバー30は、図2,4,8のごとき第1の揺動姿勢にあっては、弾性部材20の弾力により挿入部18が閉じた状態と、図5,6のごとき第2の揺動姿勢にあっては、弾性部材20の弾力に抗して第2の基台12を揺動させて、挿入部18が開口した状態と、さらには図7のごとく、弾性部材20の弾力に抗して挿入部18が半分ほど開いた状態の中間の揺動姿勢と、が選択し得る。ここで、第2の揺動姿勢と中間の揺動姿勢において、カムレバー30は、第2の基台12にカム支軸28と平行な平面で弾接するように形成され、第2の揺動姿勢と中間の揺動姿勢が安定して保たれるようになされている。また、第1の揺動姿勢にあっても、カムレバー30は、検査側基板16が挿入部18に挿入されない状態では、カム支軸28と平行な平面で第2の基台12に弾接するように形成されるが、検査側基板16が挿入された状態にあっては、第2の基台12に弾接されないように形成される。
【0014】
かかる構成において、カムレバー30を、図5のごとく第2揺動姿勢として、挿入部18を開口状態とする。この開口状態は、カムレバー30により保たれ、手を離しても挿入部18が閉じることがない。そこで、図6のごとく、電子部品に付設された検査側基板16を挿入部18に所定位置まで挿入し、その後カムレバー30を図7の中間の揺動姿勢まで戻し、検査用基板16の端子にスプリングコネクタ24,24…が適正に弾接していることを確認して、さらにカムレバー30を戻して、図8のごとく第1の揺動姿勢とし、検査用基板16の端子にスプリングコネクタ24,24…が適正な弾力で弾接して電気的接続する状態として、適宜に電子部品の検査を行う。
【0015】
検査が終了すれば、カムレバー30を、再び第2の揺動姿勢まで操作して挿入部18を開口状態として、検査側基板16を挿入部18から引き抜くことができる。しかも、挿入部18の開口状態が保たれており、次に検査する電子部品の検査用基板16を挿入部18に簡単に挿入することができる。
【0016】
そこで、カムレバー30により、挿入部18の開口状態が確実に保たれるので、大きな電子部品を検査するために作業者の両手がふさがっていても、挿入部18に当該電子部品の検査用基板16を挿入することができる。また、挿入部18の開口状態が継続して保たれるので、検査が終了した検査用基板16の引き抜きと、次の検査の電子部品のための検査用基板16の挿入とを、カムレバー30を操作することなしに連続して作業することができる。しかも、挿入部18の開口状態は、カムレバー30により一定であり、不完全な開口状態で検査用基板16を挿入しまたは引き抜くようなことがない。
【0017】
なお、上記実施例では、アーム26,26…は、第1の基台10とは別体で形成されたものが、分離しないように適宜に第1の基台10に組み付けられているが、第1の基台10とアーム26,26が一体に成形されても良いことは勿論である。アーム26,26を別体で形成し、共締等により適宜に第1の基台10に組み付けられるようにすれば、従来のクリップ式中継コネクタを本発明のクリップ式中継コネクタに改造することができる。また、アーム26,26…は、第2の基台12に適宜に組み付けられても良い。そして、上記実施例では、カムレバー30が、中間の揺動姿勢を得られるように形成することで、第2の揺動姿勢から第1の揺動姿勢に、弾性部材20の弾力で急激に揺動するのを阻止しているが、これに限られず、カムレバー30は少なくとも第1と第2の揺動姿勢が安定して得られる形状であれば良いことは容易に理解されるであろう。さらに、カムレバー30は、検査側基板16を挟持する第1の揺動姿勢と、挿入部18の開口状態を保つ第2の揺動姿勢が安定して得られれば良く、カムレバー30を操作すべき揺動方向や揺動姿勢は、上記実施例に限られるものでない。
【0018】
【発明の効果】
以上説明したように、本発明のクリップ式中継コネクタは構成されているので、以下のごとき格別な効果を奏する。
【0019】
請求項1記載のクリップ式中継コネクタにあっては、カムレバーを第2の揺動姿勢とすることで、挿入部を開口状態に保つことができ、検査用基板の挿入および引き抜きが容易である。しかも、確実に挿入部が開口されており、不充分な開口状態で、検査用基板を挿入しまたは引き抜くことで損傷させるようなことがない。
【0020】
請求項2記載のクリップ式中継コネクタにあっては、カムレバーが第2の揺動姿勢で他方の基台に当接する部分を、カム支軸に平行な平面としたので、この第2の揺動姿勢を解除するには、弾性部材の弾力に抗して他の基台を若干さらに揺動させなければならず、弾性部材の弾力により第2の揺動姿勢を安定して保つことができる。
【0021】
請求項3記載のクリップ式中継コネクタにあっては、カムレバーが第1と第2の揺動姿勢で他方の基台に当接するそれぞれの部分を、カム支軸に平行な複数の平面でそれぞれに形成したので、カムレバーが複数の揺動姿勢をそれぞれに安定して保つことができ、弾性部材の弾力によりカムレバーが急激に揺動するのを抑制することができる。
【図面の簡単な説明】
【図1】本発明のクリップ式中継コネクタの一実施例の平面図である。
【図2】図1に示す実施例の正面図である。
【図3】図1に示す実施例の左側面図である。
【図4】図1のA−A矢視断面図である。
【図5】カムレバーを操作して挿入部を開口状態とした正面図である。
【図6】図5の開口状態の挿入部に検査側基板を挿入した状態の正面図である。
【図7】カムレバーを途中まで戻した状態の正面図である。
【図8】カムレバーを完全に戻して検査側基板を挟持させた状態の正面図である。
【符号の説明】
10 第1の基台
12 第2の基台
14 支軸
16 検査側基板
18 挿入部
20 弾性部材
22 中継用基板
24 スプリングコネクタ
26 アーム
28 カム支軸
30 カムレバー
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a clip-type relay connector for electrically connecting a terminal disposed at an end of a flexible printed circuit board, a flexible flat cable or the like (hereinafter referred to as an inspection side board) to an inspection tester or the like. It is.
[0002]
[Prior art]
A conventional example of a clip-type relay connector is disclosed in Japanese Patent Laid-Open No. 2000-77122. In such clip-type relay connectors, the end portion of the inspection-side board such as a flexible board is inserted and clamped to a predetermined position of the insertion portion of the clip-type relay connector, so that the spring connector is appropriately elasticated to the terminal of the inspection-side board. Touched. These spring connectors are appropriately electrically connected to an inspection device such as a tester via a relay board incorporated in the clip-type relay connector, and of course, electronic components are appropriately inspected.
[0003]
[Problems to be solved by the invention]
The conventional clip-type relay connector described above is suitable for efficiently inspecting a large number of terminals arranged on the inspection-side board to a tester or the like with a simple operation.
[0004]
However, in order to keep the insertion portion for inserting the inspection side substrate in an open state by the elasticity of the elastic member for holding the inspection side substrate, it is necessary for the operator to hold the clip-type relay connector by hand. is there. Therefore, when inspecting a large electronic component such as a liquid crystal panel, both hands of an operator are required to support the large electronic component, and an inspection-side substrate attached to the electronic component is inserted into the insertion portion. Requires another operator to open the insertion portion of the clip-type relay connector. In addition, when the clip-type relay connector is pressed by hand and the insertion portion is opened, the opening of the insertion portion is not always perfect depending on how the insertion portion is pressed by hand. Therefore, there is a possibility that the inspection-side board is damaged and the spring connector of the clip-type relay connector is damaged by inserting and pulling out the inspection-side board with the insertion portion being in an incomplete opening state. Furthermore, when the inspection of the electronic parts is finished, the insertion part of the clip-type relay connector is opened, the inspection side board is pulled out, and when the hand is released from the clip-type relay connector, the insertion part is closed by elasticity, In order to insert the inspection side substrate of the electronic component to be inspected into the insertion portion, the insertion portion must be opened again, and the work is complicated accordingly.
[0005]
The present invention has been made in view of the circumstances of the conventional clip-type relay connector as described above, and provides a clip-type relay connector that can reliably maintain the open state of the insertion portion and can easily release the open state. For the purpose.
[0006]
[Means for Solving the Problems]
In order to achieve such an object, the insulating first and second bases of the present invention are swingably disposed by a support shaft and an elastic member is disposed to dispose the first base on one side of the support shaft. The end portion of the inspection-side substrate can be elastically held between the insertion portions of the first and second bases, and the relay substrate is arranged on one of the first and second bases. A spring connector is disposed so as to elastically contact a terminal provided at an end of the inspection-side substrate in a state where the inspection-side substrate is sandwiched between the relay substrate and the first or second base. One of the bases is provided with a pair of arms longer in the swinging direction than the other base on both sides of the other base, and the arm is moved from the other base on the other side of the support shaft. A cam support shaft is provided in parallel with the support shaft away from the moving direction, and a cam lever is disposed on the cam support shaft so as to be swingable. The inspection-side substrate is clamped between the first and second bases by the elastic force of the elastic member in the first swinging posture of the cam lever, and the other base is held in the second swinging posture of the cam lever. The cam lever is formed so that the insertion portions of the first and second bases are in an open state against the elastic force of the elastic member and the cam lever is in a stable posture.
[0007]
A portion of the cam lever that contacts the other base of the second swing posture may be formed on a plane parallel to the cam support shaft.
[0008]
Furthermore, each part which opposes or contact | abuts to the said other base of the said cam lever by the said 1st and 2nd rocking | fluctuation attitude | position is each formed in the several plane parallel to the said cam spindle, and is comprised. Is also possible.
[0009]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, embodiments of the present invention will be described with reference to FIGS. FIG. 1 is a plan view of an embodiment of a clip-type relay connector according to the present invention. FIG. 2 is a front view of the embodiment shown in FIG. FIG. 3 is a left side view of the embodiment shown in FIG. 4 is a cross-sectional view taken along arrow AA in FIG. FIG. 5 is a front view of the insertion portion opened by operating the cam lever. FIG. 6 is a front view of a state in which an inspection-side substrate is inserted into the open insertion portion of FIG. FIG. 7 is a front view showing a state where the cam lever is partially returned. FIG. 8 is a front view of a state in which the cam lever is completely returned and the inspection-side substrate is clamped.
[0010]
In the figure, an insulative first base 10 made of insulating resin or the like and an insulative second base 12 made of insulating resin or the like are swingably disposed by a support shaft 14. An insertion portion 18 into which an inspection side substrate 16 such as a flexible substrate is inserted is provided on one side of the support shaft 14 of the first and second bases 10 and 12. Of course, a mechanism for restricting and positioning the inspection-side substrate 16 with respect to the first and second bases 10 and 12 is appropriately provided. Then, on the other side of the support shaft 14 of the first and second bases 10 and 12, an elastic member 20 such as a spring coil that elastically biases the insertion portion 18 in the closing direction is contracted.
[0011]
The second base 12, which is one of the bases, has a relay substrate 22 incorporated therein, at one end facing the insertion portion 18, and at the insertion-side end of the inspection-side substrate 16 in the inserted state. Spring connectors 24, 24... Are disposed corresponding to the terminals to be disposed. The other end of the relay substrate 22 is provided with connection terminals to be electrically connected to a cable or the like that is electrically connected to an inspection tester, and these connection terminals and spring connectors 24, 24. Electrical connection is appropriately made by a printed circuit or the like provided on the relay substrate 22.
[0012]
The above structure is the same as that of a conventional clip-type relay connector. The special structure of the clip-type relay connector of the present invention is as follows.
[0013]
First, from the first base 10 which is the other base to the other side opposite to the insertion portion 18 with respect to the support shaft 14, the second base 12 on both sides of the second base 12. A pair of arms 26, 26 that are longer in the swinging direction are provided. Then, a cam support shaft 28 is provided in parallel to the support shaft 14 so as to be separated from the second base 12 in the swinging direction at the tip portion. Further, a cam lever 30 is provided on the cam support shaft 28 so as to be swingable. The cam lever 30 is in the first swinging posture as shown in FIGS. 2, 4, and 8, and the insertion portion 18 is closed by the elastic force of the elastic member 20 and the second swinging motion as shown in FIGS. In the posture, the second base 12 is swung against the elastic force of the elastic member 20 so that the insertion portion 18 is opened, and further, as shown in FIG. Thus, an intermediate swinging posture in which the insertion portion 18 is half open can be selected. Here, in the second swinging posture and the intermediate swinging posture, the cam lever 30 is formed so as to be elastically contacted with the second base 12 in a plane parallel to the cam support shaft 28. The intermediate swinging posture is stably maintained. Even in the first swinging posture, the cam lever 30 elastically contacts the second base 12 in a plane parallel to the cam support shaft 28 in a state where the inspection side substrate 16 is not inserted into the insertion portion 18. However, it is formed so as not to be elastically contacted with the second base 12 when the inspection side substrate 16 is inserted.
[0014]
In such a configuration, the cam lever 30 is in the second swinging posture as shown in FIG. This open state is maintained by the cam lever 30, and the insertion portion 18 does not close even when the hand is released. Therefore, as shown in FIG. 6, the inspection-side substrate 16 attached to the electronic component is inserted into the insertion portion 18 to a predetermined position, and then the cam lever 30 is returned to the intermediate swinging posture of FIG. After confirming that the spring connectors 24, 24... Are properly elastically contacted, the cam lever 30 is further returned to the first swinging posture as shown in FIG. Inspect the electronic parts as appropriate in a state in which ... is elastically contacted and electrically connected with an appropriate elasticity.
[0015]
When the inspection is completed, the cam lever 30 can be operated again to the second swinging posture so that the insertion portion 18 is in an open state, and the inspection-side substrate 16 can be pulled out from the insertion portion 18. In addition, the opening state of the insertion portion 18 is maintained, and the inspection substrate 16 for the electronic component to be inspected next can be easily inserted into the insertion portion 18.
[0016]
Therefore, since the opening state of the insertion portion 18 is reliably maintained by the cam lever 30, even if the operator's hands are blocked in order to inspect a large electronic component, the insertion portion 18 has the inspection board 16 for the electronic component. Can be inserted. In addition, since the opening state of the insertion portion 18 is continuously maintained, the cam lever 30 can be used to pull out the inspection substrate 16 that has been inspected and insert the inspection substrate 16 for the electronic component for the next inspection. Can work continuously without operation. In addition, the opening state of the insertion portion 18 is fixed by the cam lever 30, and the inspection substrate 16 is not inserted or pulled out in an incomplete opening state.
[0017]
In addition, in the said Example, although the arms 26 and 26 ... were formed separately from the 1st base 10, it is suitably assembled | attached to the 1st base 10 so that it may not isolate | separate, Of course, the first base 10 and the arms 26 and 26 may be integrally formed. If the arms 26 and 26 are formed separately and can be appropriately assembled to the first base 10 by joint fastening or the like, the conventional clip-type relay connector can be modified to the clip-type relay connector of the present invention. it can. Further, the arms 26, 26... May be appropriately assembled to the second base 12. In the above-described embodiment, the cam lever 30 is formed so as to obtain an intermediate swinging posture, so that the elastic member 20 suddenly swings from the second swinging posture to the first swinging posture. However, the present invention is not limited to this, and it will be easily understood that the cam lever 30 only needs to have a shape that can stably obtain at least the first and second swinging postures. Furthermore, the cam lever 30 is only required to stably obtain the first swinging posture for sandwiching the inspection-side substrate 16 and the second swinging posture for keeping the insertion portion 18 open, and the cam lever 30 should be operated. The swinging direction and swinging posture are not limited to the above embodiment.
[0018]
【The invention's effect】
As described above, since the clip-type relay connector of the present invention is configured, the following special effects are achieved.
[0019]
In the clip-type relay connector according to the first aspect, by setting the cam lever to the second swinging posture, the insertion portion can be kept in an open state, and the inspection substrate can be easily inserted and pulled out. In addition, since the insertion portion is reliably opened, there is no possibility of being damaged by inserting or pulling out the inspection substrate in an insufficient opening state.
[0020]
In the clip-type relay connector according to claim 2, the portion where the cam lever contacts the other base in the second swinging posture is a plane parallel to the cam support shaft. To release the posture, the other base must be slightly swung against the elastic force of the elastic member, and the second rocking posture can be stably maintained by the elastic force of the elastic member.
[0021]
In the clip-type relay connector according to claim 3, the respective portions where the cam lever comes into contact with the other base in the first and second swinging postures are respectively arranged on a plurality of planes parallel to the cam spindle. Since it formed, the cam lever can maintain each of the plurality of swinging postures stably, and the cam lever can be prevented from swinging suddenly by the elastic force of the elastic member.
[Brief description of the drawings]
FIG. 1 is a plan view of an embodiment of a clip-type relay connector according to the present invention.
FIG. 2 is a front view of the embodiment shown in FIG.
FIG. 3 is a left side view of the embodiment shown in FIG.
4 is a cross-sectional view taken along the line AA in FIG. 1;
FIG. 5 is a front view in which an insertion portion is opened by operating a cam lever.
6 is a front view showing a state in which an inspection-side substrate is inserted into the open insertion portion in FIG. 5. FIG.
FIG. 7 is a front view showing a state where the cam lever is partially returned.
FIG. 8 is a front view of a state in which the cam lever is completely returned and the inspection-side substrate is clamped.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 10 1st base 12 2nd base 14 Support shaft 16 Inspection side board | substrate 18 Insertion part 20 Elastic member 22 Substrate 24 Relay connector 26 Arm 28 Cam support shaft 30 Cam lever

Claims (3)

絶縁性の第1と第2の基台を支軸により揺動自在に配設するとともに弾性部材を配設して前記支軸の一方側の前記第1と第2の基台の挿入部で検査側基板の端部を弾力的に挟持し得るようになし、前記第1または第2の基台のいずれか一方の基台に中継用基板を配設し、前記中継用基板に前記検査側基板を挟持した状態で前記検査側基板の端部に設けられた端子に弾接するようにスプリングコネクタを配設し、前記第1または第2の基台のいずれか一方の基台に他方の基台の両側で前記他方の基台より揺動方向に長い一対のアームを設け、前記アームに前記支軸の他方側で前記他方の基台より前記揺動方向に離して前記支軸と平行にカム支軸を設け、前記カム支軸にカムレバーを揺動自在に配設し、前記カムレバーの第1の揺動姿勢で前記弾性部材の弾力により前記検査側基板を前記第1と第2の基台で挟持し、前記カムレバーの第2の揺動姿勢で前記他方の基台に当接して前記弾性部材の弾力に抗して前記第1と第2の基台の挿入部を開口状態とししかも前記カムレバーが安定した姿勢となるように前記カムレバーを形成して構成したことを特徴とするクリップ式中継コネクタ。Insulating first and second bases are provided so as to be swingable by a support shaft, and an elastic member is provided to insert the first and second bases on one side of the support shaft. An end of the inspection side substrate can be elastically clamped, a relay substrate is disposed on one of the first and second bases, and the inspection side is connected to the inspection substrate. A spring connector is disposed so as to elastically contact a terminal provided at an end portion of the inspection-side substrate in a state where the substrate is sandwiched, and one of the first and second bases is attached to the other base. A pair of arms that are longer in the swing direction than the other base are provided on both sides of the base, and the arm is separated from the other base in the swing direction on the other side of the support shaft and parallel to the support shaft. A cam support shaft is provided, a cam lever is swingably disposed on the cam support shaft, and the cam lever is moved in the first swinging posture. The inspection-side substrate is held between the first and second bases by the elastic force of the member, and comes into contact with the other base in the second swinging posture of the cam lever against the elastic force of the elastic member. A clip-type relay connector characterized in that the cam lever is formed so that the insertion portions of the first and second bases are in an open state and the cam lever is in a stable posture. 請求項1記載のクリップ式中継コネクタにおいて、前記第2の揺動姿勢で前記カムレバーの前記他方の基台に当接する部分を、前記カム支軸に平行な平面に形成して構成したことを特徴とするクリップ式中継コネクタ。2. The clip-type relay connector according to claim 1, wherein a portion that contacts the other base of the cam lever in the second swinging posture is formed on a plane parallel to the cam support shaft. Clip type relay connector. 請求項1記載のクリップ式中継コネクタにおいて、前記第1と第2の揺動姿勢で前記カムレバーの前記他方の基台に対向または当接するそれぞれの部分を、前記カム支軸に平行な複数の平面でそれぞれに形成して構成したことを特徴とするクリップ式中継コネクタ。2. The clip-type relay connector according to claim 1, wherein each of the portions facing or abutting against the other base of the cam lever in the first and second swinging postures has a plurality of planes parallel to the cam spindle. A clip-type relay connector characterized in that it is formed and configured in each.
JP2002273650A 2002-09-19 2002-09-19 Clip-type relay connector Expired - Lifetime JP4050582B2 (en)

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JP2002273650A JP4050582B2 (en) 2002-09-19 2002-09-19 Clip-type relay connector

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JP4906666B2 (en) * 2006-11-10 2012-03-28 株式会社ヨコオ Relay connector
JP4916024B2 (en) * 2006-12-11 2012-04-11 株式会社ヨコオ Relay connector
JP4728305B2 (en) * 2007-09-04 2011-07-20 日本航空電子工業株式会社 Clip type inspection jig and clip open state holding mechanism used therefor
JP6065725B2 (en) * 2013-04-16 2017-01-25 富士通株式会社 Contact apparatus and contact method

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