JP2005005374A - Mounting structure for deck and substrate - Google Patents

Mounting structure for deck and substrate Download PDF

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Publication number
JP2005005374A
JP2005005374A JP2003165040A JP2003165040A JP2005005374A JP 2005005374 A JP2005005374 A JP 2005005374A JP 2003165040 A JP2003165040 A JP 2003165040A JP 2003165040 A JP2003165040 A JP 2003165040A JP 2005005374 A JP2005005374 A JP 2005005374A
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JP
Japan
Prior art keywords
mounting
deck
substrate
board
leg
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.)
Pending
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JP2003165040A
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Japanese (ja)
Inventor
Tomoaki Tomita
智明 冨田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Funai Electric Co Ltd
Original Assignee
Funai Electric Co Ltd
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Filing date
Publication date
Application filed by Funai Electric Co Ltd filed Critical Funai Electric Co Ltd
Priority to JP2003165040A priority Critical patent/JP2005005374A/en
Publication of JP2005005374A publication Critical patent/JP2005005374A/en
Pending legal-status Critical Current

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Abstract

<P>PROBLEM TO BE SOLVED: To provide a mounting structure for deck and substrate by which a deck main body and a substrate can be mounted easily without using any screw at the time of mounting the deck main body and substrate, can be reduced in cost by reducing the number of components, and can shorten the mounting time by improving the working efficiency by curtailing the working process performed by using screws. <P>SOLUTION: Two reversed F-shaped mounting legs 2 and 3 facing each other are provided downwardly on the bottom surface of the deck main body 1, and mounting holes 4a and 4a are dug into a substrate 4 on which the deck main body 1 is mounted at the spots corresponding to the legs 2 and 3. Then the deck main body 1 is mounted on the substrate 4 in a state where the main body 1 can be disengaged from the substrate 4 depending upon the locked states of the legs 2 and 3, by entering and locking the lower-end locking pieces 2a and 3a of the legs 2 and 3 in the mounting holes 4a and 4a of the substrate 4 by inserting the legs 2 and 3 into the holes 4a and 4a and, at the same time, bringing protruded pieces 2c and 3c protruded from the middle portions of the legs 2 and 3 into contact with the top surface of the substrate 4. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

【0001】
【発明の属する技術分野】
本発明は、デッキ本体をデッキ本体の下側に位置する基板に取り付けるようにしたデッキと基板の取付構造に関する。
【0002】
【従来の技術】
従来、デッキと基板とを取り付けるには、例えば、ビスを2本使用して、この2本のビスでデッキと基板とを取り付けるようにしていた。
ところで、このようにビスを使用しているものでは、2本のビスを必要としていて、部品点数が多くなってコスト高となり、2本のビスを取り付ける作業工程が必要であって、作業能率が悪いという問題があった。
【0003】
第1の従来技術を図8、図9に示す。フライバックトランス120に先端を屈曲せしめた係合片121を設け、プリント基板113に設けた係合穴114に係合片121を挿入して係合穴114の縁部114aに屈曲部121aを係合させるにあたり、プリント基板113をはんだで肉盛りし、屈曲部121aとプリント基板113との間にはんだを介在させるものである。(例えば、特許文献1参照)。
ところが、これは、フライバックトランス120の左右両側面の下部に、外側に突き出た係合片121を設けたものであり、下面側に係合片を設けたものではなかった。
【0004】
第2の従来技術を図10(a)(b)(c)に示す。ポリプロピレン樹脂等の弾性を有す樹脂部材より構成される取付部材210を有した電機部品205の取付装置であって、電機部品205を取付ける取付部材210をシャーシ201等の固定部材に設けられた取付口216に係止されるフック部211と、電機部品205を保持する保持部212と、少なくとも1つのヒンジ部213とより構成し、ヒンジ部213によりフック部211を内外方向に押圧可能とし、取付口216に取付可能としたものである。(例えば、特許文献2参照)。
ところが、これは、電気部品205と取付部材210とが別体になっているものであった。
【0005】
第3の従来技術を図11、図12に示す。モールド313にフック318を垂設し、フック318を基板315の係止孔322等へ挿通して係止させ、モールド313を基板315等へ固定するモールドの固定装置において、モールド313よりフック318の側面に対峙してガード壁320を垂設したものである。(例えば、特許文献3参照)。
ところが、これはフック318を基板315の係止孔322に係入係止した状態では、モールド313の上下位置を固定できないものであった。
【0006】
【特許文献1】
特開2002−185166号公報
【特許文献2】
実開昭59−18486号公報
【特許文献3】
実開平4−72686号公報
【0007】
【発明が解決しようとする課題】
本発明は、デッキ本体と基板とを取り付ける際に、ビスを使わずに簡単にデッキ本体と基板とを取り付けることができ、部品点数を削減することができてコストダウンを図れ、しかもビスを使って取り付ける作業工程を削減できて作業能率を上げることができ、取り付け時間の短縮化を図ることができるデッキと基板の取付構造を提供する事を目的としている。
【0008】
【課題を解決するための手段】
本発明は、上記課題を解決するために提案されたものであって、請求項1に記載の発明は、デッキ本体をこのデッキ本体の下側に位置する基板にビスを用いて取り付けるようにしたデッキと基板の取付構造において、前記ビスに代えて、デッキ本体の下面から下向きに互いに対向する内向きの逆F字形の少なくとも2本の取付用脚部が設けられ、このデッキ本体が取り付けられる基板における前記取付用脚部に対応する箇所に取付孔が穿設され、前記デッキ本体の逆F字形の取付用脚部が前記基板の取付孔に挿入されて、前記逆F字形の取付用脚部の下端係止片部が前記基板の取付孔に係入係止されるとともに、前記逆F字形の取付用脚部の中途部分から突設されている突出片部が前記基板の上面に当接されて前記デッキ本体が前記基板に前記取付用脚部の係止状態によって係脱可能に取り付けられるように構成したことを特徴としている。
【0009】
請求項2に記載の発明は、デッキ本体の下面から下向きに互いに対向する内向き又は外向きの逆F字形の少なくとも2本の取付用脚部が設けられ、このデッキ本体が取り付けられる基板における前記取付用脚部に対応する箇所に取付孔が穿設され、前記デッキ本体の逆F字形の取付用脚部が前記基板の取付孔に挿入されて、前記逆F字形の取付用脚部の下端係止片部が前記基板の取付孔に係入係止されるとともに、前記逆F字形の取付用脚部の中途部分から突設されている突出片部が前記基板の上面に当接されて前記デッキ本体が前記基板に前記取付用脚部の係止状態によって取り付けられるように構成したことを特徴としている。
【0010】
請求項3に記載の発明は、前記逆L字形の取付用脚部の下端左右両側に内向きに傾斜するテーパー面が形成されているものである。
請求項4に記載の発明は、前記デッキ本体の下面の取付用脚部の側面に、前記デッキ本体と前記基板とを接続するフレキシブルケーブルが接着剤で添設され、前記取付用脚部が前記基板の取付孔に係入係止された状態で前記フレキシブルケーブルの先端部が前記基板の裏面のパターンに半田付けされるように構成したものである。
【0011】
請求項5に記載の発明は、前記デッキ本体の下面の取付用脚部の側面にガイド溝が下端の前端部まで穿設され、このガイド溝内に前記デッキ本体と前記基板を接続するフレキシブルケーブルが配設されていて、前記取付用脚部が前記基板の取付孔に係入係止された状態で前記フレキシブルケーブルの先端部が前記基板の裏面のパターンに半田付けされるように構成したことを特徴としている。
【0012】
【発明の実施の形態】
以下、本発明に係るデッキと基板の取付構造の実施の形態について、図を参照しつつ説明する。
図1は本発明の第1実施形態のデッキと基板の取付構造の取付前の状態を示す断面図、図2は同取付構造の取付途中の状態を示す要部の部分断面図、図3は同取付装置の取付状態を示す断面図である。
【0013】
第1実施形態のデッキと基板の取付構造は、図1、図2、図3に示すように、デッキ本体1の下面から下向きに互いに対向する内向きの逆F字形の2本の取付用脚部2、3が設けられ、このデッキ本体1が取り付けられる基板4における取付用脚部2、3に対応する箇所に取付孔4a、4aが穿設されている。
更に、これら逆L字形の取付用脚部2、3の下端係止片部2a、3aの下端左右両側に内向きに傾斜するテーパー面2b、3bが形成されている。
【0014】
そして、デッキ本体1の逆F字形の取付用脚部2、3が基板4の取付孔4a、4aにテーパー面2a、3aでガイドされて挿入される。更に、逆F字形の取付用脚部2、3の下端係止片部2a、3aが基板4の取付孔4a、4aに係入係止されるとともに、逆F字形の取付用脚部2、3の途中部分から突設されている突出片部2c、3cが基板4の上面に当接される。これにより、デッキ本体1が基板4に取付用脚部2、3の係止状態によって係脱可能に取り付けられるようにしている。
この状態で、図3に示すように筐体5内に配置され、筐体5内のボス部5a、5aにデッキ本体1の両側突出片6がビス7、7で取り付けられるようになっている。更に、取付用脚部2、3の下端の外面部分が筐体5の底面から上向きに突設されたリブ8、8に当接されるようになっている。
【0015】
ここで、デッキ本体1の取付用脚部2、3を基板4の取付孔4a、4aに挿入するには、先ず、片方の取付用脚部2を基板4の片方の取付孔4aに挿入し、この取付用脚部2の下端係止片部2aを基板4の取付孔4aの縁部に係止するようにデッキ本体1を図にて右側に移動させる。
更に、他方の取付用脚部3を外側に少し曲げるようにしてから基板4の他方の取付孔4aに強制的に挿入させる。
すると、図3に示すように、両側の取付用脚部2、3の下端係止片部2a、3aが基板4の裏面に係止した状態で、デッキ本体1が基板4に取り付けられることとなる。
【0016】
また、デッキ本体1を基板4から取り外すには、他方の取付用脚部3を外側に少し曲げてこの取付用脚部3を基板4の取付孔4aから取り出して、その後に片方の取付用脚部2を基板4の取付孔4aから取り外すようにする。
また、デッキ本体1の他方の取付用脚3を先に基板4の取付孔4aに挿入してから片方の取付用脚部2を少し外側に曲げるようにして挿入するようにしてもよい。尚、取り外す場合にも、どちらの取付用脚部2、3を先に外すようにしてもよい。
【0017】
したがって、この第1実施形態によれば、デッキ本体1の下面に下向きに取付用脚部2、3を設けて、この取付用脚部2、3を基板4の取付孔4a、4aに挿入して係入係止するようにしたので、デッキ本体1と基板4とを取り付ける際に、ビスを使わずに簡単にデッキ本体1と基板4とを取り付けることができ、部品点数を削減することができてコストダウンを図れ、しかもビスを使って取り付ける作業工程を削減できて作業能率を上げることができ、取り付け時間の短縮化を図ることができる。
【0018】
また、取り付けた後には、取付用脚部2、3の突出片部2c、3cが基板4の上面に接するので、基板4に取り付けられたデッキ本体1が傾くようなことがなくて、安定した取付状態を保持することができる。
更に、取付用脚部2、3の下端係止片部2a、3aの下端左右両側にテーパー面2b、3bが形成されているので、この取付用脚部2、3を基板4の取付孔4a、4aにスムーズに挿入することができる。
【0019】
図4は第2実施形態のデッキと基板の取付構造の取付前の状態を示す断面図、図5は同取付構造の取付状態を示す断面図である。
第2実施形態のデッキと基板の取付構造は、図4、図5に示すように、デッキ本体1の下面から下向きに互いに対向する外向きの逆F字形の2本の取付用脚部2A、3Aが設けられ、このデッキ本体1が取り付けられる基板4における取付用脚部2A、3Aに対応する箇所に取付孔4a、4aが穿設されている。更に、デッキ本体1の逆F字形の取付用脚部2A、3Aが基板4の取付孔4a、4aに挿入されて、逆F字形の取り付け用脚部2A、3Aの下端係止片部2d、3dが基板4の取付孔4a、4aに係入係止されるとともに、逆F字形の取付用脚部2A,3Aの途中部分から突設されている突出片部2e、2eが基板4の上面に当接されてデッキ本体1が基板4に取付用脚部2A、3Aの係止状態によって取り付けられるようになっている。尚、第1実施形態と同様に、デッキ本体1の取付用脚部2A、3Aの下端側面にテーパー面を形成して、基板4の取付孔4a、4aに挿入しやすくすることが好ましい。
【0020】
ここで、デッキ本体1の取付用脚部2A、3Aを基板4の取付孔4a、4aに挿入するには、先ず、片方の取付用脚部2Aを基板4の片方の取付孔4aに挿入し、この取付用脚部2Aの下端係止片部2dを基板4の取付孔4aの縁部に係止するようにデッキ本体1を図にて左側に移動させる。
更に、他方の取付用脚部3Aを内側に少し曲げるようにしてから基板4の他方の取付孔4aに強制的に挿入させる。
すると、図5に示すように、両側の取付用脚部2A、3Aの下端係止片部2d、3dが基板4の裏面に係止した状態で、デッキ本体1が基板4に取り付けられることとなる。
【0021】
また、デッキ本体1を基板4から取り外すには、他方の取付用脚部3Aを外側に少し曲げてこの取付用脚部3Aを基板4の取付孔4aから取り出して、その後に片方の取付用脚部2Aを基板4の取付孔4aから取り外すようにする。
また、デッキ本体1の他方の取付用脚3Aを先に基板4の取付孔4aに挿入してから片方の取付用脚部2Aを少し外側に曲げるようにして挿入するようにしてもよい。尚、取り外す場合にも、どちらの取付用脚部2A、3Aを先に外すようにしてもよい。
【0022】
したがって、この第2実施形態によれば、デッキ本体1の下面に下向きに取付用脚部2A、3Aを設けて、この取付用脚部2A、3Aを基板4の取付孔4a、4aに挿入して係入係止するようにしたので、デッキ本体1と基板4とを取り付ける際に、ビスを使わずに簡単にデッキ本体1と基板4とを取り付けることができ、部品点数を削減することができてコストダウンを図れ、しかもビスを使って取り付ける作業工程を削減できて作業能率を上げることができ、取り付け時間の短縮化を図ることができる。
また、取り付けた後には、取付用脚部2A、3Aの突出片部2c、3cが基板4の上面に接するので、基板4に取り付けられたデッキ本体1が傾くようなことがなくて、安定した取付状態を保持することができる。
【0023】
図6は第3実施形態のデッキと基板の取付構造の取付状態を示す断面図である。
第3実施形態のデッキと基板の取付構造は、図6に示すように、デッキ本体1の下面の一方の取付用脚部2Aの側面に、デッキ本体1と基板4とを接続するフレキシブルケーブル9が接着剤で添設され、取付用脚部2A、3Aが基板4の取付孔4a、4aに係入係止された状態でフレキシブルケーブル9の先端部が基板4の裏面のパターン(図示略)に半田付けされるようにしている。
尚、取付用脚部2A、3Aの下端係止片部2d、3dの下端面は上向き外側に向けて傾斜する傾斜面2f、3fに形成されている。
【0024】
したがって、この第3実施形態によれば、一方の取付用脚部2Aにデッキ本体1と基板4とを接続するフレキシブルケーブル9を接着剤で添設したので、取付用脚部2Aを基板4の取付孔4aに挿入するときに同時にフレキシブルケーブル9でデッキ本体1と基板4とを接続することができるとともに、このフレキシブルケーブル9をばらつくことなく接続することができる。
また、取付用脚部2Aの下端係止片2dの傾斜面2fに沿ってフレキシブルケーブル9を配設することができて、このフレキシブルケーブル9が取付用脚部2Aから外れることを防ぐことができる。
【0025】
図7は第4実施形態のデッキと基板の取付構造を示し、(a)はその取付状態を示す断面図、(b)はその要部を示す部分断面図である。
第4実施形態のデッキと基板の取付構造は、図7(a)(b)に示すように、デッキ本体1の下面の一方の取付用脚部2Aの側面にガイド溝2gが下端の前端部まで穿設され、このガイド溝2g内にデッキ本体1と基板4を接続するフレキシブルケーブル9が配設されている。そして、取付用脚部2A、3Aが基板4の取付孔4a、4aに係入係止された状態でフレキシブルケーブル9の先端部が基板4の裏面のパターン(図示略)に半田付けされるようになっている。
【0026】
したがって、この第4実施形態によれば、フレキシブルケーブル9が取付用脚部2Aのガイド溝2g内に配設されるので、接着剤を必要とせず、しかもフレキシブルケーブル9を安定した状態で配設することができる。
【0027】
【発明の効果】
以上説明したように、請求項1に記載の発明は、デッキ本体をこのデッキ本体の下側に位置する基板にビスを用いて取り付けるようにしたデッキと基板の取付構造において、ビスに代えて、デッキ本体の下面から下向きに互いに対向する内向きの逆F字形の少なくとも2本の取付用脚部が設けられ、このデッキ本体が取り付けられる基板における取付用脚部に対応する箇所に取付孔が穿設され、デッキ本体の逆F字形の取付用脚部が基板の取付孔に挿入されて、逆F字形の取付用脚部の下端係止片部が基板の取付孔に係入係止されるとともに、逆F字形の取付用脚部の中途部分から突設されている突出片部が基板の上面に当接されてデッキ本体が基板に取付用脚部の係止状態によって係脱可能に取り付けられるように構成したので、以下に述べる効果を奏する。
【0028】
即ち、デッキ本体の下面に下向きに取付用脚部を設けて、この取付用脚部を基板の取付孔に挿入して係入係止するようにしたので、デッキ本体と基板とを取り付ける際に、ビスを使わずに簡単にデッキ本体と基板とを取り付けることができ、部品点数を削減することができてコストダウンを図れ、しかもビスを使って取り付ける作業工程を削減できて作業能率を上げることができ、取り付け時間の短縮化を図ることができる。
また、取り付けた後には、取付用脚部の突出片部が基板の上面に接するので、基板に取り付けられたデッキ本体が傾くようなことがなくて、安定した取付状態を保持することができる。
【0029】
請求項2に記載の発明は、デッキ本体の下面から下向きに互いに対向する内向き又は外向きの逆F字形の少なくとも2本の取付用脚部が設けられ、このデッキ本体が取り付けられる基板における取付用脚部に対応する箇所に取付孔が穿設され、デッキ本体の逆F字形の取付用脚部が基板の取付孔に挿入されて、逆F字形の取付用脚部の下端係止片部が基板の取付孔に係入係止されるとともに、逆F字形の取付用脚部の中途部分から突設されている突出片部が基板の上面に当接されてデッキ本体が基板に取付用脚部の係止状態によって取り付けられるように構成したので、以下に述べる効果を奏する。
【0030】
即ち、デッキ本体の下面に下向きに取付用脚部を設けて、この取付用脚部を基板の取付孔に挿入して係入係止するようにしたので、デッキ本体と基板とを取り付ける際に、ビスを使わずに簡単にデッキ本体と基板とを取り付けることができ、部品点数を削減することができてコストダウンを図れ、しかもビスを使って取り付ける作業工程を削減できて作業能率を上げることができ、取り付け時間の短縮化を図ることができる。
また、取り付けた後には、取付用脚部の突出片部が基板の上面に接するので、基板に取り付けられたデッキ本体が傾くようなことがなくて、安定した取付状態を保持することができる。
【0031】
請求項3に記載の発明は、逆L字形の取付用脚部の下端左右両側に内向きに傾斜するテーパー面が形成されているので、取付用脚部を基板の取付孔に挿入する際に、このテーパー面にガイドされて取付用脚部を基板の取付孔にスムーズに挿入することができる。
請求項4に記載の発明は、デッキ本体の下面の取付用脚部の側面に、デッキ本体と基板とを接続するフレキシブルケーブルが接着剤で添設され、取付用脚部が基板の取付孔に係入係止された状態でフレキシブルケーブルの先端部が基板の裏面のパターンに半田付けされるように構成したので、取付用脚部を基板の取付孔に挿入するときに同時にフレキシブルケーブルでデッキ本体と基板とを接続することができるとともに、このフレキシブルケーブルをばらつくことなく接続することができる。
【0032】
請求項5に記載の発明は、デッキ本体の下面の取付用脚部の側面にガイド溝が下端の前端部まで穿設され、このガイド溝内にデッキ本体と基板を接続するフレキシブルケーブルが配設されていて、取付用脚部が基板の取付孔に係入係止された状態でフレキシブルケーブルの先端部が基板の裏面のパターンに半田付けされるように構成したので、接着剤を必要とせず、しかもフレキシブルケーブル9を安定した状態で配設することができる。
【図面の簡単な説明】
【図1】本発明の第1実施形態のデッキと基板の取付構造の取付前の状態を示す断面図である。
【図2】同取付構造の取付途中の状態を示す要部の部分断面図である。
【図3】同取付装置の取付状態を示す断面図である。
【図4】第2実施形態のデッキと基板の取付構造の取付前の状態を示す断面図である。
【図5】同取付構造の取付状態を示す断面図である。
【図6】第3実施形態のデッキと基板の取付構造の取付状態を示す断面図である。
【図7】第4実施形態のデッキと基板の取付構造を示し、(a)はその取付状態を示す断面図、(b)はその要部を示す部分断面図である。
【図8】従来のフライバックトランスの固定構造を示す分解斜視図である。
【図9】同固定構造の取付固定状態を示す断面図である。
【図10】従来の電気部品取付装置を示し、(a)はその正面図、(b)はその取付脚を若干外側に拡げた状態を示す正面図、(c)はその電気部品の取付装置がシャーシに取り付けられた状態を示す断面図である。
【図11】従来のモールドの固定装置におけるプラグユニットの正面図である。
【図12】同固定装置におけるフック部を回路基板に係入係止した状態の部分拡大断面図である。
【符号の説明】
1 デッキ本体
2 取付用脚部
2A 取付用脚部
2a 下端係止片部
2b テーパー面
2c 突出片部
2d 下端係止片部
2e 突出片部
2f 傾斜面
2g ガイド溝
3 取付用脚部
3A 取付用脚部
3a 下端係止片部
3b テーパー面
3c 突出片部
3d 下端係止片部
3f 傾斜面
4 基板
4a 取付孔
5 筐体
5a ボス部
6 両側突出片
7 ビス
8 リブ
9 フレキシブルケーブル
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a deck and board mounting structure in which a deck main body is mounted on a board positioned below the deck main body.
[0002]
[Prior art]
Conventionally, in order to attach the deck and the substrate, for example, two screws are used, and the deck and the substrate are attached with the two screws.
By the way, in the case of using screws in this way, two screws are required, the number of parts is increased, the cost is increased, and an operation process for attaching the two screws is required. There was a problem of being bad.
[0003]
The first prior art is shown in FIGS. The flyback transformer 120 is provided with an engagement piece 121 having a bent tip, the engagement piece 121 is inserted into the engagement hole 114 provided in the printed circuit board 113, and the bent portion 121a is engaged with the edge 114a of the engagement hole 114. In combination, the printed circuit board 113 is built up with solder, and the solder is interposed between the bent portion 121 a and the printed circuit board 113. (For example, refer to Patent Document 1).
However, this is the one in which the engagement piece 121 protruding outward is provided at the lower part of the left and right side surfaces of the flyback transformer 120, and the engagement piece is not provided on the lower surface side.
[0004]
The second prior art is shown in FIGS. 10 (a), (b) and (c). An attachment device for an electric component 205 having an attachment member 210 composed of a resin member having elasticity such as polypropylene resin, and the attachment member 210 for attaching the electric component 205 is provided on a fixing member such as a chassis 201 It comprises a hook portion 211 that is locked to the mouth 216, a holding portion 212 that holds the electrical component 205, and at least one hinge portion 213, and the hook portion 211 can be pressed inward and outward by the hinge portion 213. It can be attached to the mouth 216. (For example, refer to Patent Document 2).
However, in this case, the electric component 205 and the mounting member 210 are separate.
[0005]
The third prior art is shown in FIGS. In the mold fixing device for fixing the mold 313 to the substrate 315 or the like by hooking the hook 318 to the mold 313 and inserting the hook 318 into the locking hole 322 or the like of the substrate 315 to lock the hook 318. A guard wall 320 is suspended from the side surface. (For example, refer to Patent Document 3).
However, in this state, the vertical position of the mold 313 cannot be fixed when the hook 318 is engaged and locked in the locking hole 322 of the substrate 315.
[0006]
[Patent Document 1]
JP 2002-185166 A [Patent Document 2]
Japanese Utility Model Publication No. 59-18486 [Patent Document 3]
Japanese Utility Model Publication No. 4-72686 [0007]
[Problems to be solved by the invention]
In the present invention, when the deck body and the board are attached, the deck body and the board can be easily attached without using screws, the number of parts can be reduced, and the cost can be reduced. It is an object of the present invention to provide a deck and board mounting structure that can reduce the mounting work process, increase the work efficiency, and shorten the mounting time.
[0008]
[Means for Solving the Problems]
The present invention has been proposed in order to solve the above-mentioned problems, and the invention according to claim 1 is such that the deck body is attached to the board located below the deck body using screws. In the deck and board mounting structure, instead of the screws, at least two inwardly inverted F-shaped mounting legs facing each other downward from the bottom surface of the deck body are provided, and the board to which the deck body is mounted Mounting holes are drilled at locations corresponding to the mounting legs in the above, and the inverted F-shaped mounting legs of the deck body are inserted into the mounting holes of the substrate, so that the inverted F-shaped mounting legs. And a projecting piece projecting from the middle portion of the inverted F-shaped mounting leg abuts against the upper surface of the substrate. The deck body is in front of the board The locked state of the attaching legs are characterized by being configured to be mounted so as to be disengaged.
[0009]
The invention according to claim 2 is provided with at least two inwardly or outwardly inverted F-shaped mounting legs facing each other downward from the bottom surface of the deck body, and the board on which the deck body is mounted A mounting hole is formed at a position corresponding to the mounting leg, and the inverted F-shaped mounting leg of the deck body is inserted into the mounting hole of the board, and the lower end of the inverted F-shaped mounting leg. The locking piece is engaged and locked in the mounting hole of the board, and the protruding piece projecting from the middle portion of the inverted F-shaped mounting leg is brought into contact with the upper surface of the board. The deck main body is configured to be attached to the board according to a locking state of the mounting leg portion.
[0010]
According to a third aspect of the present invention, tapered surfaces that are inclined inward are formed on the left and right sides of the lower end of the inverted L-shaped mounting leg.
According to a fourth aspect of the present invention, a flexible cable for connecting the deck body and the substrate is attached to the side surface of the mounting leg portion on the lower surface of the deck body with an adhesive, and the mounting leg portion is The flexible cable is configured such that the distal end portion of the flexible cable is soldered to the pattern on the back surface of the substrate while being engaged and locked in the mounting hole of the substrate.
[0011]
According to a fifth aspect of the present invention, there is provided a flexible cable in which a guide groove is formed in a side surface of the mounting leg portion on the lower surface of the deck main body up to a front end portion at a lower end, and the deck main body and the substrate are connected in the guide groove. Is arranged, and the tip of the flexible cable is soldered to the pattern on the back surface of the substrate in a state where the mounting leg is engaged and locked in the mounting hole of the substrate. It is characterized by.
[0012]
DETAILED DESCRIPTION OF THE INVENTION
DESCRIPTION OF EMBODIMENTS Hereinafter, embodiments of a deck and board mounting structure according to the present invention will be described with reference to the drawings.
FIG. 1 is a cross-sectional view showing a state before the mounting structure of the deck and board according to the first embodiment of the present invention, FIG. 2 is a partial cross-sectional view of a main part showing a state during the mounting of the mounting structure, and FIG. It is sectional drawing which shows the attachment state of the attachment apparatus.
[0013]
As shown in FIGS. 1, 2, and 3, the deck and board mounting structure of the first embodiment has two inwardly inverted F-shaped mounting legs facing each other downward from the bottom surface of the deck body 1. The mounting holes 4a and 4a are formed at locations corresponding to the mounting legs 2 and 3 on the substrate 4 to which the deck body 1 is mounted.
Further, tapered surfaces 2b and 3b which are inclined inwardly are formed on the left and right sides of the lower end locking piece portions 2a and 3a of the inverted L-shaped mounting leg portions 2 and 3, respectively.
[0014]
Then, the inverted F-shaped mounting legs 2 and 3 of the deck body 1 are inserted into the mounting holes 4a and 4a of the substrate 4 while being guided by the tapered surfaces 2a and 3a. Further, the lower end locking pieces 2a, 3a of the inverted F-shaped mounting legs 2, 3 are engaged and locked in the mounting holes 4a, 4a of the substrate 4, and the inverted F-shaped mounting legs 2, The projecting piece portions 2 c and 3 c projecting from the middle portion of 3 are brought into contact with the upper surface of the substrate 4. As a result, the deck body 1 is detachably attached to the substrate 4 depending on the locking state of the mounting legs 2 and 3.
In this state, as shown in FIG. 3, it is arranged in the housing 5, and the both-side protruding pieces 6 of the deck body 1 are attached to the boss portions 5 a, 5 a in the housing 5 with screws 7, 7. . Further, the outer surface portions at the lower ends of the mounting legs 2 and 3 are brought into contact with ribs 8 and 8 projecting upward from the bottom surface of the housing 5.
[0015]
Here, in order to insert the mounting legs 2 and 3 of the deck body 1 into the mounting holes 4 a and 4 a of the board 4, first, the one mounting leg 2 is inserted into the one mounting hole 4 a of the board 4. The deck body 1 is moved to the right in the drawing so that the lower end locking piece 2a of the mounting leg 2 is locked to the edge of the mounting hole 4a of the substrate 4.
Further, the other mounting leg 3 is bent slightly outward and then forcedly inserted into the other mounting hole 4 a of the substrate 4.
Then, as shown in FIG. 3, the deck body 1 is attached to the substrate 4 with the lower end locking pieces 2 a, 3 a of the mounting legs 2, 3 on both sides locked to the back surface of the substrate 4. Become.
[0016]
Further, in order to remove the deck main body 1 from the board 4, the other mounting leg 3 is slightly bent outward, the mounting leg 3 is taken out from the mounting hole 4a of the board 4, and then one of the mounting legs 3 is removed. The part 2 is removed from the mounting hole 4 a of the substrate 4.
Alternatively, the other mounting leg 3 of the deck main body 1 may be inserted into the mounting hole 4a of the substrate 4 and then the one mounting leg 2 may be bent slightly outward. In addition, when removing, you may make it remove any attachment leg 2,3 previously.
[0017]
Therefore, according to the first embodiment, the mounting leg portions 2 and 3 are provided downward on the lower surface of the deck body 1, and the mounting leg portions 2 and 3 are inserted into the mounting holes 4 a and 4 a of the substrate 4. The deck body 1 and the board 4 can be easily attached without using screws when the deck body 1 and the board 4 are attached, and the number of parts can be reduced. Thus, the cost can be reduced, and the work process for mounting using screws can be reduced, the work efficiency can be improved, and the mounting time can be shortened.
[0018]
In addition, since the protruding pieces 2c and 3c of the mounting legs 2 and 3 are in contact with the upper surface of the substrate 4 after being attached, the deck body 1 attached to the substrate 4 is not tilted and is stable. The mounting state can be maintained.
Further, since the tapered surfaces 2b and 3b are formed on the left and right sides of the lower end locking pieces 2a and 3a of the mounting legs 2 and 3, the mounting legs 2 and 3 are connected to the mounting holes 4a of the substrate 4, respectively. 4a can be smoothly inserted.
[0019]
FIG. 4 is a cross-sectional view showing a state before the mounting structure of the deck and board according to the second embodiment, and FIG. 5 is a cross-sectional view showing the mounting state of the mounting structure.
As shown in FIGS. 4 and 5, the deck and board mounting structure of the second embodiment has two outward inverted F-shaped mounting legs 2 </ b> A that face each other downward from the bottom surface of the deck body 1. 3A is provided, and mounting holes 4a and 4a are formed at locations corresponding to the mounting legs 2A and 3A on the substrate 4 to which the deck body 1 is mounted. Further, the inverted F-shaped mounting legs 2A, 3A of the deck body 1 are inserted into the mounting holes 4a, 4a of the substrate 4, and the lower end locking piece 2d of the inverted F-shaped mounting legs 2A, 3A, 3d is engaged and locked in the mounting holes 4a and 4a of the substrate 4, and the projecting pieces 2e and 2e projecting from the middle portions of the inverted F-shaped mounting legs 2A and 3A are the upper surfaces of the substrate 4 The deck main body 1 is attached to the board 4 by the locking state of the mounting legs 2A and 3A. As in the first embodiment, it is preferable that a taper surface is formed on the lower end side surface of the mounting legs 2A and 3A of the deck body 1 so that the deck body 1 can be easily inserted into the mounting holes 4a and 4a.
[0020]
Here, in order to insert the mounting leg portions 2A, 3A of the deck body 1 into the mounting holes 4a, 4a of the substrate 4, first, one mounting leg portion 2A is inserted into the one mounting hole 4a of the substrate 4. The deck body 1 is moved to the left in the drawing so that the lower end locking piece 2d of the mounting leg 2A is locked to the edge of the mounting hole 4a of the substrate 4.
Further, the other mounting leg 3A is bent slightly inward and then forcedly inserted into the other mounting hole 4a of the substrate 4.
Then, as shown in FIG. 5, the deck body 1 is attached to the substrate 4 with the lower end locking pieces 2 d and 3 d of the mounting legs 2 A and 3 A on both sides locked to the back surface of the substrate 4. Become.
[0021]
Further, in order to remove the deck main body 1 from the board 4, the other mounting leg 3A is slightly bent outward, the mounting leg 3A is taken out from the mounting hole 4a of the board 4, and then one mounting leg is attached. The part 2A is removed from the mounting hole 4a of the substrate 4.
Alternatively, the other mounting leg 3A of the deck main body 1 may be inserted into the mounting hole 4a of the substrate 4 and then the one mounting leg 2A may be bent slightly outward. In addition, when removing, you may make it remove any attachment leg 2A, 3A first.
[0022]
Therefore, according to the second embodiment, the mounting leg portions 2A, 3A are provided downward on the lower surface of the deck body 1, and the mounting leg portions 2A, 3A are inserted into the mounting holes 4a, 4a of the substrate 4. The deck body 1 and the board 4 can be easily attached without using screws when the deck body 1 and the board 4 are attached, and the number of parts can be reduced. Thus, the cost can be reduced, and the work process for mounting using screws can be reduced, the work efficiency can be improved, and the mounting time can be shortened.
In addition, since the protruding pieces 2c and 3c of the mounting legs 2A and 3A are in contact with the upper surface of the substrate 4 after being attached, the deck body 1 attached to the substrate 4 is not tilted and is stable. The mounting state can be maintained.
[0023]
FIG. 6 is a cross-sectional view showing a mounting state of the deck and board mounting structure of the third embodiment.
As shown in FIG. 6, the deck and board mounting structure of the third embodiment is a flexible cable 9 that connects the deck body 1 and the board 4 to the side surface of one mounting leg 2 </ b> A on the lower surface of the deck body 1. Is attached with an adhesive, and the tip of the flexible cable 9 is a pattern on the back surface of the substrate 4 (not shown) with the mounting legs 2A and 3A engaged and locked in the mounting holes 4a and 4a of the substrate 4. To be soldered.
In addition, the lower end surfaces of the lower end locking pieces 2d and 3d of the mounting legs 2A and 3A are formed as inclined surfaces 2f and 3f which are inclined upward and outward.
[0024]
Therefore, according to the third embodiment, the flexible cable 9 for connecting the deck main body 1 and the substrate 4 is attached to one of the mounting legs 2A with the adhesive. The deck main body 1 and the substrate 4 can be connected simultaneously with the flexible cable 9 when inserted into the mounting hole 4a, and the flexible cable 9 can be connected without variation.
Further, the flexible cable 9 can be disposed along the inclined surface 2f of the lower end locking piece 2d of the mounting leg 2A, and the flexible cable 9 can be prevented from being detached from the mounting leg 2A. .
[0025]
7A and 7B show the deck and board mounting structure of the fourth embodiment, wherein FIG. 7A is a cross-sectional view showing the mounting state, and FIG. 7B is a partial cross-sectional view showing the main part thereof.
As shown in FIGS. 7A and 7B, the deck and board mounting structure of the fourth embodiment has a guide groove 2g on the side surface of one mounting leg 2A on the lower surface of the deck body 1, and a front end portion at the lower end. The flexible cable 9 for connecting the deck body 1 and the substrate 4 is disposed in the guide groove 2g. And the front-end | tip part of the flexible cable 9 is soldered to the pattern (not shown) of the back surface of the board | substrate 4 in the state in which the attachment leg parts 2A and 3A were engaged and latched in the attachment holes 4a and 4a of the board | substrate 4. It has become.
[0026]
Therefore, according to the fourth embodiment, since the flexible cable 9 is disposed in the guide groove 2g of the mounting leg 2A, no adhesive is required and the flexible cable 9 is disposed in a stable state. can do.
[0027]
【The invention's effect】
As described above, the invention according to claim 1 is a deck-board mounting structure in which a deck body is mounted to a board located on the lower side of the deck body using screws. At least two inwardly inverted F-shaped mounting legs facing each other downward from the bottom surface of the deck body are provided, and mounting holes are drilled at locations corresponding to the mounting legs on the board to which the deck body is mounted. The inverted F-shaped mounting leg of the deck body is inserted into the mounting hole of the board, and the lower end locking piece of the inverted F-shaped mounting leg is engaged and locked into the mounting hole of the board. At the same time, the projecting piece projecting from the middle part of the inverted F-shaped mounting leg is brought into contact with the upper surface of the board so that the deck body can be attached to and detached from the board depending on the locking state of the mounting leg. As described below, It achieves the effect that.
[0028]
That is, the mounting leg is provided downward on the bottom surface of the deck body, and the mounting leg is inserted into the mounting hole of the board to be engaged and locked. The deck body and board can be easily attached without using screws, the number of parts can be reduced, the cost can be reduced, and the work process to be attached using screws can be reduced to improve the work efficiency. Thus, the installation time can be shortened.
Moreover, since the protruding piece of the mounting leg contacts the upper surface of the board after the mounting, the deck main body mounted on the board does not tilt and a stable mounting state can be maintained.
[0029]
The invention according to claim 2 is provided with at least two inwardly or outwardly inverted F-shaped mounting legs facing each other downward from the bottom surface of the deck body, and mounting on the board to which the deck body is mounted A mounting hole is drilled at a position corresponding to the leg portion, and the inverted F-shaped mounting leg portion of the deck body is inserted into the mounting hole of the substrate, so that the lower end locking piece portion of the inverted F-shaped mounting leg portion is inserted. Is engaged and locked in the mounting hole of the board, and the projecting piece projecting from the middle part of the inverted F-shaped mounting leg is brought into contact with the upper surface of the board so that the deck body is attached to the board. Since it is configured to be attached depending on the latched state of the legs, the following effects can be obtained.
[0030]
That is, the mounting leg is provided downward on the bottom surface of the deck body, and the mounting leg is inserted into the mounting hole of the board to be engaged and locked. The deck body and board can be easily attached without using screws, the number of parts can be reduced, the cost can be reduced, and the work process to be attached using screws can be reduced to improve the work efficiency. Thus, the installation time can be shortened.
Moreover, since the protruding piece of the mounting leg contacts the upper surface of the board after the mounting, the deck main body mounted on the board does not tilt and a stable mounting state can be maintained.
[0031]
In the third aspect of the invention, since the tapered surfaces inclined inwardly are formed on the left and right sides of the lower end of the inverted L-shaped mounting leg, when the mounting leg is inserted into the mounting hole of the board, The mounting leg portion can be smoothly inserted into the mounting hole of the substrate by being guided by the tapered surface.
According to a fourth aspect of the present invention, a flexible cable for connecting the deck body and the substrate is attached to the side surface of the mounting leg portion on the lower surface of the deck body with an adhesive, and the mounting leg portion is attached to the mounting hole of the substrate. Since the tip of the flexible cable is soldered to the pattern on the back side of the board in the state of being engaged and locked, the deck body with the flexible cable at the same time when the mounting leg is inserted into the mounting hole of the board Can be connected to the substrate, and the flexible cable can be connected without variation.
[0032]
According to the fifth aspect of the present invention, a guide groove is formed in the side surface of the mounting leg on the lower surface of the deck main body up to the front end of the lower end, and a flexible cable for connecting the deck main body and the substrate is disposed in the guide groove. Since the tip of the flexible cable is soldered to the pattern on the back side of the board with the mounting legs engaged and locked in the mounting holes of the board, no adhesive is required. And the flexible cable 9 can be arrange | positioned in the stable state.
[Brief description of the drawings]
FIG. 1 is a cross-sectional view showing a state before mounting of a deck and board mounting structure according to a first embodiment of the present invention.
FIG. 2 is a partial cross-sectional view of a main part showing a state in the middle of attachment of the attachment structure.
FIG. 3 is a cross-sectional view showing a mounting state of the mounting device.
FIG. 4 is a cross-sectional view showing a state before the mounting structure of the deck and board according to the second embodiment.
FIG. 5 is a cross-sectional view showing a mounting state of the mounting structure.
FIG. 6 is a cross-sectional view showing a mounting state of the deck and board mounting structure of the third embodiment.
7A and 7B show a mounting structure of a deck and a board according to a fourth embodiment, in which FIG. 7A is a cross-sectional view showing a mounting state thereof, and FIG.
FIG. 8 is an exploded perspective view showing a conventional flyback transformer fixing structure.
FIG. 9 is a cross-sectional view showing a mounting and fixing state of the fixing structure.
10A and 10B show a conventional electric component mounting apparatus, wherein FIG. 10A is a front view thereof, FIG. 10B is a front view showing a state in which the mounting legs are slightly expanded outward, and FIG. It is sectional drawing which shows the state attached to the chassis.
FIG. 11 is a front view of a plug unit in a conventional mold fixing device.
FIG. 12 is a partially enlarged cross-sectional view showing a state in which the hook portion of the fixing device is engaged and locked to the circuit board.
[Explanation of symbols]
1 Deck body 2 Mounting leg 2A Mounting leg 2a Lower end locking piece 2b Tapered surface 2c Projecting piece 2d Lower end locking piece 2e Projecting piece 2f Inclined surface 2g Guide groove 3 Mounting leg 3A For mounting Leg 3a Lower end locking piece 3b Tapered surface 3c Projecting piece 3d Lower end locking piece 3f Inclined surface 4 Substrate 4a Mounting hole 5 Housing 5a Boss portion 6 Both sides protruding piece 7 Screw 8 Rib 9 Flexible cable

Claims (5)

デッキ本体をこのデッキ本体の下側に位置する基板にビスを用いて取り付けるようにしたデッキと基板の取付構造において、前記ビスに代えて、デッキ本体の下面から下向きに互いに対向する内向きの逆F字形の少なくとも2本の取付用脚部が設けられ、このデッキ本体が取り付けられる基板における前記取付用脚部に対応する箇所に取付孔が穿設され、前記デッキ本体の逆F字形の取付用脚部が前記基板の取付孔に挿入されて、前記逆F字形の取付用脚部の下端係止片部が前記基板の取付孔に係入係止されるとともに、前記逆F字形の取付用脚部の中途部分から突設されている突出片部が前記基板の上面に当接されて前記デッキ本体が前記基板に前記取付用脚部の係止状態によって係脱可能に取り付けられるように構成したことを特徴とするデッキと基板の取付構造。In the deck and board mounting structure in which the deck body is attached to the board located below the deck body using screws, instead of the screws, the decks are inwardly opposed to each other downward from the bottom surface of the deck body. At least two F-shaped mounting legs are provided, and mounting holes are formed at locations corresponding to the mounting legs on the board to which the deck body is mounted, for mounting the deck body in an inverted F-shape. A leg is inserted into the mounting hole of the board, and a lower end locking piece of the inverted F-shaped mounting leg is engaged and locked into the mounting hole of the board, and the inverted F-shaped mounting A projecting piece projecting from a midway part of the leg is brought into contact with the upper surface of the substrate so that the deck body can be removably attached to the substrate by the locking state of the mounting leg. Characterized by Mounting structure of the deck and the substrate. デッキ本体の下面から下向きに互いに対向する内向き又は外向きの逆F字形の少なくとも2本の取付用脚部が設けられ、このデッキ本体が取り付けられる基板における前記取付用脚部に対応する箇所に取付孔が穿設され、前記デッキ本体の逆F字形の取付用脚部が前記基板の取付孔に挿入されて、前記逆F字形の取付用脚部の下端係止片部が前記基板の取付孔に係入係止されるとともに、前記逆F字形の取付用脚部の中途部分から突設されている突出片部が前記基板の上面に当接されて前記デッキ本体が前記基板に前記取付用脚部の係止状態によって取り付けられるように構成したことを特徴とするデッキと基板の取付構造。At least two inward or outward inverted F-shaped mounting legs facing each other downward from the bottom surface of the deck main body are provided, and at positions corresponding to the mounting leg portions on the board to which the deck main body is mounted. A mounting hole is formed, an inverted F-shaped mounting leg of the deck body is inserted into the mounting hole of the board, and a lower end locking piece of the inverted F-shaped mounting leg is mounted on the board. A projecting piece projecting from a middle portion of the inverted F-shaped mounting leg is brought into contact with the upper surface of the substrate, and the deck body is attached to the substrate. A structure for mounting a deck and a board, wherein the mounting structure is configured to be attached according to the locking state of the legs. 前記逆L字形の取付用脚部の下端左右両側に内向きに傾斜するテーパー面が形成されている請求項2に記載のデッキと基板の取付構造。The deck and board mounting structure according to claim 2, wherein tapered surfaces inclined inward are formed on both left and right sides of the lower end of the inverted L-shaped mounting leg. 前記デッキ本体の下面の取付用脚部の側面に、前記デッキ本体と前記基板とを接続するフレキシブルケーブルが接着剤で添設され、前記取付用脚部が前記基板の取付孔に係入係止された状態で前記フレキシブルケーブルの先端部が前記基板の裏面のパターンに半田付けされるように構成した請求項2又は3に記載のデッキと基板の取付構造。A flexible cable for connecting the deck body and the substrate is attached to the side surface of the mounting leg portion on the lower surface of the deck body with an adhesive, and the mounting leg portion is engaged and locked in the mounting hole of the substrate. The deck and board attachment structure according to claim 2 or 3, wherein a tip portion of the flexible cable is soldered to a pattern on a back surface of the board in a state where the flexible cable is formed. 前記デッキ本体の下面の取付用脚部の側面にガイド溝が下端の前端部まで穿設され、このガイド溝内に前記デッキ本体と前記基板を接続するフレキシブルケーブルが配設されていて、前記取付用脚部が前記基板の取付孔に係入係止された状態で前記フレキシブルケーブルの先端部が前記基板の裏面のパターンに半田付けされるように構成したことを特徴とする請求項2又は3に記載のデッキと基板の取付構造。A guide groove is drilled in the side surface of the mounting leg on the bottom surface of the deck body up to the front end of the lower end, and a flexible cable for connecting the deck body and the substrate is disposed in the guide groove, and the mounting 4. The structure according to claim 2, wherein the front end portion of the flexible cable is soldered to the pattern on the back surface of the substrate in a state where the leg portion is engaged and locked in the mounting hole of the substrate. The mounting structure of the deck and board described in 1.
JP2003165040A 2003-06-10 2003-06-10 Mounting structure for deck and substrate Pending JP2005005374A (en)

Priority Applications (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2019388A2 (en) 2007-07-25 2009-01-28 Funai Electric Co., Ltd. Structure for mounting indicator unit on electronic apparatus

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2019388A2 (en) 2007-07-25 2009-01-28 Funai Electric Co., Ltd. Structure for mounting indicator unit on electronic apparatus
US8045338B2 (en) 2007-07-25 2011-10-25 Funai Electric Co., Ltd. Structure for mounting indicator unit on electronic apparatus

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