JP4330705B2 - Multi-directional switch - Google Patents

Multi-directional switch Download PDF

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Publication number
JP4330705B2
JP4330705B2 JP17437199A JP17437199A JP4330705B2 JP 4330705 B2 JP4330705 B2 JP 4330705B2 JP 17437199 A JP17437199 A JP 17437199A JP 17437199 A JP17437199 A JP 17437199A JP 4330705 B2 JP4330705 B2 JP 4330705B2
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JP
Japan
Prior art keywords
plunger
protrusion
switch
dome
metal
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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.)
Expired - Fee Related
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JP17437199A
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Japanese (ja)
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JP2001006498A (en
Inventor
功 宮下
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Citizen Electronics Co Ltd
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Citizen Electronics Co Ltd
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Priority to JP17437199A priority Critical patent/JP4330705B2/en
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Description

【0001】
【発明の属する技術分野】
本発明は、携帯電話、ビデオカメラ、車載オーデオ、ボータブルステレオ等の操作用の多方向スイッチに関する。
【0002】
【従来の技術】
多方向スイッチは複数のスイッチ接点を備えていて、操作部に加わる力の作用点や力の作用方向によって、所望のスイッチ接点を選択して動作するように構成し、何通りかの異なる信号を出力するものである。このような多方向スイッチの従来技術として、図4に基づいてその概要を説明する。
【0003】
図4(a)は、多方向スイッチの平面図、図4(b)は、図4(a)のA−A線断面図である。図4において、多方向スイッチ11の構成は、モールド枠12と、該モールド枠12の上面側を覆う蓋部材13と、モールド枠12の下面側にリードフレーム14をインサート成形された固定接点部15と可動接点部16を4方向箇所に各々設けたスイッチの回路を構成する回路基板17とによりケース本体18を構成し、該ケース本体18内にドーム型金属バネ19を4箇所に搭載する。このドーム型金属バネ19に対応する位置に下面に突起部20aを有する押しボタン20を配置する構造であって、前記押しボタン20を押圧する位置に対応して、図4では、4個のスイッチのいずれか1つを選択的に動作させるものである。
【0004】
【発明が解決しようとする課題】
しかしながら、前述した多方向スイッチは、4個のドーム型金属バネを配置しスイッチは4方向の操作性を構築できるが、スイッチ中心部を押圧させることでドーム型金属バネを配置しても製品化が困難である。これはドーム型金属バネはストロークが短いため押しボタンの略中心部を押圧すると4方向のドーム型金属バネも同時に押圧されると言う構造上の問題が有る。また、仮にストロークの異なるドーム型金属バネを配置してもバネサイズが大きくなりコンパクトな製品が出来ない等の課題があった。
【0005】
本発明は、上記従来の課題に鑑みなされたものであり、その目的は、同一形状同一ストロークのドーム型金属バネを使用し、操作方向を増大した小型な多方向スイッチを提供するものである。
【0006】
【課題を解決するための手段】
上記目的を達成するために、本発明における多方向スイッチは、複数個のスイッチ接点を有する回路基板と、該回路基板上複数個のスイッチ接点に対応する各位置に配設されるドーム型金属バネ操作腕を有し該操作腕の中央部に形成される中央突起部と前記操作腕の先端部近傍に形成される先端突起部を有し中央部近傍に肩部が形成された十字形メインプランジャと、上面に前記十字形メインプランジャの先端突起部と接する接触端部とその反対側に端部を有し前記先端突起部と異なる位置の下面側に突起部が形成された金属プランジャと、前記十字形メインプランジャが挿嵌される開口部と前記十字形メインプランジャの肩部を押さえる押さえ部と前記金属プランジャの端部が当接する当接部が形成されたモールド枠と、とより形成される多方向スイッチであって、前記複数個のスイッチ接点は前記十字形メインプランジャの中央突起部と対向する位置と前記金属プランジャの突起部に対向する位置に設けられていて、且つ各スイッチ接点には前記ドーム型金属バネが配設されており、前記中央突起部は前記ドーム型金属バネに対向して配置されると共に、前記先端突起部は前記金属プランジャの接触端部に接していて、且つ前記金属プランジャの突起部は、前記モールド枠の当接部と当接する前記端部と前記十字形メインプランジャの先端突起部と接する前記接触端部との間に形成されており、前記先端突起部の下方への作用力は前記金属プランジャの端部を支点として前記接触端部を押し下げ、前記金属プランジャの突起部が前記ドーム型金属バネに作用し前記回路基板上の突起部対向スイッチ接点に接触するよう構成されたことを特徴とするものである。
また、前記金属プランジャの突起部は、前記モールド枠の当接部と当接する前記端部と前記十字形メインプランジャの先端突起部と接する前記接触端部との間にあって、これら当接面の反対側に形成されていることを特徴とするものであり、更に前記複数個のドーム型金属バネを装着するための装着孔部が形成されたベースシートを有し、該ベースシートは前記回路基板上に配置されていることを特徴とするものである。
【0007】
【発明の実施の形態】
以下図面に基づいて本発明における多方向スイッチについて説明する。図1は、本発明の実施の形態における多方向スイッチに係わり、図1(a)、は多方向スイッチの平面図、図1(b)は、図1(a)のB−B線断面図、図1(c)は、図1(a)のC−C線断面図である。
【0008】
図1において、符号1は多方向スイッチで、その構成は、複数個のスイッチ接点を有するガラスエポキシ材等よりなる回路基板2の上面に、ポリイミド材等よりなるモールド枠3、ポリイミド材等よりなるベースシート4を積層した構造で、前記モールド枠3には後述する十字形メインプランジャが挿嵌する十字形状の開口部3aが設けられている。符号5は十字形メインプランジャでポリイミド材等よりなり、直交する4本の操作腕を有しその下面側で中央部及び操作腕の先端部近傍にそれぞれ突起部5a(中央部)及び5b(先端部)が形成されている。前記十字形メインプランジャ5の中央近傍の肩部5cをモールド枠3の押さえ部3bが押さえているので、十字形メインプランジャ5はモールド枠3の開口部3aから抜け出ることはない。
【0009】
前記ベースシート4にはバネ装着孔部4aが配設され、そのバネ装着孔部4aに湾曲部を有するステンレス材等よりなるドーム型金属バネ6が位置決めされ前記回路基板2上に載置されている。前記ドーム型金属バネ6の配設個数は、本実施の形態においては、多方向スイッチ1の中央部と十字形メインプランジャ5の先端部に隣接した4箇所の計5箇である。ここで、図1(b)示すように、非操作状態において、スイッチ中央に配設したドーム型金属バネ6のドーム頂点と十字形メインプランジャ5の中央下面の突起部5aとは接触しているが、周辺4個のドーム型金属バネ6においては、十字形メインプランジャ5との間にステンレス材等よりなる金属プランジャ7が介在しているので、図1(c)に示すように、十字形メインプランジャ5の先端部下面に形成した突起部5bが金属プランジャ7に接し、金属プランジャ7の下面に形成した突起部7aがドーム型金属バネ6のドーム頂点に接している。
【0010】
以上述べた構成によりその作用について説明する。図2は、図1の多方向スイッチの十字形メインプランジャの略中央部を押圧した場合の動作時の状態を示し、図2(a)は、多方向スイッチの平面図、図2(b)は、図2(a)のB−B線断面図、図2(c)は、図2(a)のC−C線断面図である。
【0011】
先ず、図2(b)において、十字形メインプランジャ5の略中央部に作用力Fで矢印方向に押圧すると、十字形メインプランジャ5は略平行に動いて中央下面の突起部5aが中央に配設したドーム型金属バネ6のドーム頂点を押し下げ、湾曲形状が反転して回路基板2上に形成した回路パターン(図示せず)に接触してスイッチが閉じる。
【0012】
上記したように十字形メインプランジャ5が押し下げられた時、4本の操作腕の先端部下面に形成した突起部5bが金属プランジャ7の端部を押し下げるが、図2(c)に示すように、金属プランジャ7の端部(図では右端)がモールド体3の下面側に当接し支点となって反時計方向に回動し、金属プランジャ7の下面に形成した突起部7aがドーム型金属バネ6のドーム頂点を下方に押すが、前記支点からのレバー比によって、金属プランジャ7の突起部7aの動きは十字形メインプランジャ5の操作腕の先端の動きよりも縮小される。このため図2(b)のように中央のドーム型金属バネ6が回路基板2に接触しても、周辺に配置されたドーム型金属バネ6は、図2(c)のように多少変形するものの回路基板2に接触するには至らない。従って、十字形メインプランジャ5の略中央部を押圧した場合、多方向スイッチ1の中央のドーム型金属バネ6だけが動作して回路を閉じることになる。
【0013】
次に、図3は、図1の多方向スイッチの十字形メインプランジャの1本の操作腕の略端部を押圧した場合の動作時の状態を示し、図3(a)、は多方向スイッチの平面図、図3(b)は、図3(a)のB−B線断面図、図3(c)は、図3(a)のC−C線断面図である。
【0014】
先ず、図3において、十字形メインプランジャ5の1本の操作腕の略端部に作用力Fで矢印方向に押圧すると、図3(b)のように、操作腕の先端部は変位して傾斜し、先端部下面の突起部5bが金属プランジャ7の端部を押し下げる。この時、図3(c)のように、金属プランジャ7の下面の突起部7aがドーム型金属バネ6のドーム頂点を押し下げ湾曲形状が反転し、回路基板2上に形成した回路パターンに接触してこの部分のスイッチが閉じる。この時、図3(b)に示すように、十字形メインプランジャ5の操作腕の先端部が下がっても中央部の突起部5aはあまり動かず、回路基板2の中央部のドーム型金属バネ6の変形は僅かであって回路基板2には接触しない。従って、十字形メインプランジャ5の操作腕の先端部を押圧した場合にはその押圧した部分のスイッチだけが動作するものである。
【0015】
上記したように、本実施の形態では、同一形状同一ストロークのドーム型金属バネを、スイッチ回路を有するスイッチ体の4方向及び中央部の計5箇所に配置して十字形メインプランジャと金属プランジャのダブル機構のプランジャ方式により、スイッチ中心と4方向部の押圧は各々独立して押圧できるため5点接点の機能を持つ多方向スイッチが可能となる。
【0016】
【発明の効果】
以上説明したように、本発明による多方向スイッチは、従来の安価なドーム型金属バネを使用して5点の多方向スイッチが実現できた。このためドーム型金属バネ特有の高感触性の良いスイッチができる。また、スイッチ構造が簡単になるため製造コストが安価になり、製品の薄型化が可能となる。
【図面の簡単な説明】
【図1】本発明の実施の形態に係わる多方向スイッチの非動作時の状態を示し、図1(a)は多方向スイッチの平面図、図1(b)は図1(a)のB−B線断面図、図1(c)は図1(a)のC−C線断面図である。
【図2】図1の多方向スイッチの十字形メインプランジャの略中央部を押圧した場合の動作時の状態を示し、図2(a)は、多方向スイッチの平面図、図2(b)は、図2(a)のB−B線断面図、図2(c)は、図2(a)のC−C線断面図である。
【図3】図1の多方向スイッチの十字形メインプランジャの1本の操作腕の略端部を押圧した場合の動作時の状態を示し、図3(a)、は多方向スイッチの平面図、図3(b)は、図3(a)のB−B線断面図、図3(c)は、図3(a)のC−C線断面図である。
【図4】図4(a)は従来技術の多方向スイッチの平面図、図4(b)は、図4(a)のA−A線断面図である。
【符号の説明】
1 多方向スイッチ
2 回路基板
3 モールド体
3a 開口部
3b 押さえ部
4 ベースシート
4a バネ装着孔部
5 十字形メインプランジャ
5a 突起部(中央部)
5b 突起部(操作腕の先端下面)
5c 肩部
6 ドーム型金属バネ
7 金属プランジャ
7a 突起部(金属プランジャ下面)
F 作用力
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a multidirectional switch for operation of a mobile phone, a video camera, an in-vehicle audio system, a bootable stereo, or the like.
[0002]
[Prior art]
The multi-directional switch has a plurality of switch contacts, and is configured to select and operate the desired switch contact according to the point of action of the force applied to the operation unit and the direction of action of the force. Output. As a prior art of such a multidirectional switch, the outline thereof will be described with reference to FIG.
[0003]
4A is a plan view of the multidirectional switch, and FIG. 4B is a cross-sectional view taken along line AA in FIG. 4A. In FIG. 4, the multidirectional switch 11 includes a mold frame 12, a lid member 13 that covers the upper surface side of the mold frame 12, and a fixed contact portion 15 in which a lead frame 14 is insert-molded on the lower surface side of the mold frame 12. And a circuit board 17 constituting a circuit of a switch provided with movable contact portions 16 at four positions, respectively, and a case main body 18 is formed, and dome-shaped metal springs 19 are mounted in the case main body 18 at four positions. A push button 20 having a protrusion 20a on the lower surface is disposed at a position corresponding to the dome-shaped metal spring 19, and four switches are shown in FIG. 4 corresponding to the position at which the push button 20 is pressed. Any one of these is selectively operated.
[0004]
[Problems to be solved by the invention]
However, although the multi-directional switch described above has four dome-shaped metal springs and the switch can be operated in four directions, it can be commercialized even if a dome-shaped metal spring is placed by pressing the center of the switch. Is difficult. This is because the dome-shaped metal spring has a short stroke, and there is a structural problem that the dome-shaped metal springs in four directions are simultaneously pressed when the substantially center portion of the push button is pressed. In addition, even if a dome-shaped metal spring having a different stroke is disposed, the size of the spring increases and a compact product cannot be produced.
[0005]
The present invention has been made in view of the above-described conventional problems, and an object of the present invention is to provide a small multi-directional switch that uses a dome-shaped metal spring having the same shape and the same stroke and has an increased operation direction.
[0006]
[Means for Solving the Problems]
To achieve the above object, the multidirectional switch of the present invention, a dome-type metal disposed a circuit board having a plurality of switch contacts, at positions corresponding to the plurality of switch contacts of the circuit board a spring, the shoulder portion is formed near the center has a projecting end portion and the central protrusion formed on the central portion is formed in the vicinity of a leading end portion of the operating arm of the operating arm has an operation arm ten A metal plunger having a letter-shaped main plunger, a contact end contacting the tip protrusion of the cross-shaped main plunger on the upper surface, and an end on the opposite side, and a protrusion formed on the lower surface side at a position different from the tip protrusion And an opening into which the cruciform main plunger is inserted, a pressing part for pressing the shoulder of the cruciform main plunger, and a mold frame formed with an abutting part with which the end of the metal plunger abuts. Formation The plurality of switch contacts are provided at a position facing the central protrusion of the cruciform main plunger and a position facing the protrusion of the metal plunger, and each switch contact Is provided with the dome-shaped metal spring, the central protrusion is disposed to face the dome-shaped metal spring, the tip protrusion is in contact with the contact end of the metal plunger, and The protrusion of the metal plunger is formed between the end that contacts the contact portion of the mold frame and the contact end that contacts the tip protrusion of the cross-shaped main plunger, and the tip protrusion The downwardly acting force of the metal plunger pushes down the contact end with the end of the metal plunger as a fulcrum, and the protrusion of the metal plunger acts on the dome-shaped metal spring. It is characterized in that is configured to contact the protrusion opposite switch contact above.
Further, the protrusion of the metal plunger is between the end contacting the contact portion of the mold frame and the contact end contacting the tip protrusion of the cross-shaped main plunger, and is opposite to the contact surface. And a base sheet having mounting holes for mounting the plurality of dome-shaped metal springs. The base sheet is formed on the circuit board. It is characterized by being arranged .
[0007]
DETAILED DESCRIPTION OF THE INVENTION
The multidirectional switch according to the present invention will be described below with reference to the drawings. 1A and 1B relate to a multidirectional switch according to an embodiment of the present invention. FIG. 1A is a plan view of the multidirectional switch, and FIG. 1B is a cross-sectional view taken along line BB in FIG. FIG.1 (c) is CC sectional view taken on the line of Fig.1 (a).
[0008]
In FIG. 1, reference numeral 1 denotes a multidirectional switch, and its configuration is made of a mold frame 3 made of a polyimide material, a polyimide material, etc. on an upper surface of a circuit board 2 made of a glass epoxy material having a plurality of switch contacts. In the structure in which the base sheets 4 are laminated, the mold frame 3 is provided with a cross-shaped opening 3a into which a cross-shaped main plunger described later is inserted. Reference numeral 5 denotes a cross-shaped main plunger made of a polyimide material or the like, which has four orthogonal operation arms, and has a projection portion 5a (center portion) and 5b (tip portion) on the lower surface side in the vicinity of the center portion and the tip portion of the operation arm, respectively. Part) is formed. Since the pressing portion 3b of the mold frame 3 holds the shoulder portion 5c near the center of the cruciform main plunger 5, the cruciform main plunger 5 does not come out of the opening 3a of the mold frame 3.
[0009]
The base sheet 4 is provided with a spring mounting hole 4a, and a dome-shaped metal spring 6 made of stainless steel having a curved portion is positioned in the spring mounting hole 4a and placed on the circuit board 2. Yes. In the present embodiment, the number of the dome-shaped metal springs 6 is five, that is, four locations adjacent to the central portion of the multidirectional switch 1 and the tip portion of the cross-shaped main plunger 5. Here, as shown in FIG. 1B, in a non-operating state, the dome apex of the dome-shaped metal spring 6 disposed in the center of the switch is in contact with the protrusion 5a on the center lower surface of the cross-shaped main plunger 5. However, in the four dome-shaped metal springs 6 in the periphery, a metal plunger 7 made of stainless steel or the like is interposed between the cruciform main plunger 5 and, as shown in FIG. A protrusion 5 b formed on the lower surface of the front end of the main plunger 5 is in contact with the metal plunger 7, and a protrusion 7 a formed on the lower surface of the metal plunger 7 is in contact with the dome apex of the dome-shaped metal spring 6.
[0010]
The operation will be described with the configuration described above. 2 shows a state during operation when the substantially central portion of the cross-shaped main plunger of the multi-directional switch of FIG. 1 is pressed, FIG. 2 (a) is a plan view of the multi-directional switch, and FIG. 2 (b). FIG. 2A is a sectional view taken along line BB in FIG. 2A, and FIG. 2C is a sectional view taken along line CC in FIG.
[0011]
First, in FIG. 2 (b), when the acting force F is applied to the substantially central portion of the cruciform main plunger 5 in the direction of the arrow, the cruciform main plunger 5 moves substantially in parallel, and the projection 5a on the lower surface of the center is arranged in the center. The dome apex of the provided dome-shaped metal spring 6 is pushed down, the curved shape is reversed and the circuit pattern (not shown) formed on the circuit board 2 is contacted to close the switch.
[0012]
As described above, when the cruciform main plunger 5 is pushed down, the protrusions 5b formed on the lower surfaces of the tip ends of the four operating arms push down the end of the metal plunger 7, as shown in FIG. 2 (c). The end (right end in the figure) of the metal plunger 7 abuts on the lower surface side of the mold body 3 and turns counterclockwise, and the protrusion 7a formed on the lower surface of the metal plunger 7 is a dome-shaped metal spring. The dome apex 6 is pushed downward, but the movement of the protrusion 7 a of the metal plunger 7 is reduced more than the movement of the tip of the operating arm of the cross-shaped main plunger 5 due to the lever ratio from the fulcrum. For this reason, even if the central dome-shaped metal spring 6 is in contact with the circuit board 2 as shown in FIG. 2B, the dome-shaped metal spring 6 disposed in the periphery is slightly deformed as shown in FIG. However, it does not come into contact with the circuit board 2. Accordingly, when the substantially central portion of the cross-shaped main plunger 5 is pressed, only the dome-shaped metal spring 6 at the center of the multi-directional switch 1 operates to close the circuit.
[0013]
Next, FIG. 3 shows a state during operation when one of the operation arms of the cruciform main plunger of the multidirectional switch of FIG. 1 is pressed, and FIG. 3 (a) shows the multidirectional switch. FIG. 3B is a cross-sectional view taken along the line BB in FIG. 3A, and FIG. 3C is a cross-sectional view taken along the line CC in FIG.
[0014]
First, in FIG. 3, when the pressing force F is applied to the substantially end of one operating arm of the cross-shaped main plunger 5 in the direction of the arrow, the tip of the operating arm is displaced as shown in FIG. Inclined, and the protrusion 5b on the lower surface of the tip pushes down the end of the metal plunger 7. At this time, as shown in FIG. 3 (c), the protrusion 7a on the lower surface of the metal plunger 7 pushes down the dome apex of the dome-shaped metal spring 6 so that the curved shape is reversed and comes into contact with the circuit pattern formed on the circuit board 2. The lever switch is closed. At this time, as shown in FIG. 3B, even if the tip of the operating arm of the cross-shaped main plunger 5 is lowered, the central protrusion 5a does not move much, and the dome-shaped metal spring in the center of the circuit board 2 The deformation of 6 is slight and does not contact the circuit board 2. Therefore, when the tip of the operating arm of the cross-shaped main plunger 5 is pressed, only the switch of the pressed portion operates.
[0015]
As described above, in the present embodiment, the dome-shaped metal springs having the same shape and the same stroke are disposed in a total of five locations in the four directions and the central portion of the switch body having the switch circuit, and the cross-shaped main plunger and the metal plunger are arranged. The double mechanism plunger system allows the center of the switch and the four directions to be pressed independently, thereby enabling a multi-directional switch having a five-point contact function.
[0016]
【The invention's effect】
As described above, the multi-directional switch according to the present invention can be realized as a 5-point multi-directional switch using a conventional inexpensive dome-shaped metal spring. For this reason, a switch with a high touch characteristic peculiar to a dome shape metal spring can be made. Further, since the switch structure is simplified, the manufacturing cost is reduced and the product can be made thinner.
[Brief description of the drawings]
FIG. 1 shows a non-operating state of a multidirectional switch according to an embodiment of the present invention, FIG. 1 (a) is a plan view of the multidirectional switch, and FIG. 1 (b) is B in FIG. 1 (a). -B sectional view, FIG.1 (c) is CC sectional view taken on the line of Fig.1 (a).
2 shows a state during operation when the substantially central portion of the cross-shaped main plunger of the multi-directional switch of FIG. 1 is pressed, FIG. 2 (a) is a plan view of the multi-directional switch, and FIG. 2 (b). FIG. 2A is a sectional view taken along line BB in FIG. 2A, and FIG. 2C is a sectional view taken along line CC in FIG.
3 shows a state during operation when one of the operation arms of the cross-shaped main plunger of the multi-directional switch of FIG. 1 is pressed, and FIG. 3 (a) is a plan view of the multi-directional switch. 3B is a cross-sectional view taken along the line BB in FIG. 3A, and FIG. 3C is a cross-sectional view taken along the line CC in FIG.
4A is a plan view of a conventional multidirectional switch, and FIG. 4B is a cross-sectional view taken along line AA of FIG. 4A.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Multidirectional switch 2 Circuit board 3 Mold body 3a Opening part 3b Holding | maintenance part 4 Base sheet 4a Spring mounting hole part 5 Cross-shaped main plunger 5a Protrusion part (center part)
5b Protruding part (lower surface of the tip of the operating arm)
5c Shoulder 6 Dome-shaped metal spring 7 Metal plunger 7a Protrusion (metal plunger lower surface)
F acting force

Claims (2)

複数個のスイッチ接点を有する回路基板と、該回路基板上複数個のスイッチ接点に対応する各位置に配設されるドーム型金属バネ操作腕を有し該操作腕の中央部に形成される中央突起部と前記操作腕の先端部近傍に形成される先端突起部を有し中央部近傍に肩部が形成された十字形メインプランジャと、上面に前記十字形メインプランジャの先端突起部と接する接触端部とその反対側に端部を有し前記先端突起部と異なる位置の下面側に突起部が形成された金属プランジャと、前記十字形メインプランジャが挿嵌される開口部と前記十字形メインプランジャの肩部を押さえる押さえ部と前記金属プランジャの端部が当接する当接部が形成されたモールド枠と、とより形成される多方向スイッチであって、
前記複数個のスイッチ接点は前記十字形メインプランジャの中央突起部と対向する位置と前記金属プランジャの突起部に対向する位置に設けられていて、且つ各スイッチ接点には前記ドーム型金属バネが配設されており、前記中央突起部は前記ドーム型金属バネに対向して配置されると共に、前記先端突起部は前記金属プランジャの接触端部に接していて、且つ前記金属プランジャの突起部は、前記モールド枠の当接部と当接する前記端部と前記十字形メインプランジャの先端突起部と接する前記接触端部との間に形成されており、前記先端突起部の下方への作用力は前記金属プランジャの端部を支点として前記接触端部を押し下げ、前記金属プランジャの突起部が前記ドーム型金属バネに作用し前記回路基板上の突起部対向スイッチ接点に接触するよう構成されたことを特徴とする多方向スイッチ。
A circuit board having a plurality of switch contacts, the dome-shaped metal spring disposed at positions corresponding to the plurality of switch contacts of the circuit board, formed in a central portion of the operating arm has an operation arm A cross-shaped main plunger having a central projection portion and a tip projection portion formed in the vicinity of the distal end portion of the operating arm and having a shoulder portion formed in the vicinity of the central portion, and a tip projection portion of the cross-shaped main plunger on the upper surface A metal plunger having an end on the opposite side thereof in contact with the metal and having a protrusion formed on the lower surface side at a position different from the tip protrusion, an opening into which the cross-shaped main plunger is inserted, and A multi-directional switch formed by a pressing part that holds the shoulder of the cross-shaped main plunger and a mold frame formed with an abutting part with which the end of the metal plunger abuts,
The plurality of switch contacts are provided at a position facing the central protrusion of the cruciform main plunger and a position facing the protrusion of the metal plunger, and the dome-shaped metal spring is arranged at each switch contact. The central protrusion is disposed opposite to the dome-shaped metal spring, the tip protrusion is in contact with the contact end of the metal plunger, and the protrusion of the metal plunger is It is formed between the end portion that contacts the contact portion of the mold frame and the contact end portion that contacts the tip protrusion portion of the cruciform main plunger, and the downward acting force of the tip protrusion portion is With the end of the metal plunger as a fulcrum, the contact end is pushed down, and the protrusion of the metal plunger acts on the dome-shaped metal spring to act as a protrusion-facing switch contact on the circuit board. Multidirectional switch, characterized in that it is configured to touch.
前記複数個のドーム型金属バネを装着するための装着孔部が形成されたベースシートを更に有し、該ベースシートは前記回路基板上に配置されていることを特徴とする請求項1に記載の多方向スイッチ。2. The base sheet according to claim 1, further comprising a base sheet in which mounting holes for mounting the plurality of dome-shaped metal springs are formed, and the base sheet is disposed on the circuit board. Multi-directional switch.
JP17437199A 1999-06-21 1999-06-21 Multi-directional switch Expired - Fee Related JP4330705B2 (en)

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