JP4357091B2 - Rotating electronic components with pushbutton switches - Google Patents

Rotating electronic components with pushbutton switches Download PDF

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Publication number
JP4357091B2
JP4357091B2 JP2000170497A JP2000170497A JP4357091B2 JP 4357091 B2 JP4357091 B2 JP 4357091B2 JP 2000170497 A JP2000170497 A JP 2000170497A JP 2000170497 A JP2000170497 A JP 2000170497A JP 4357091 B2 JP4357091 B2 JP 4357091B2
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Prior art keywords
switch
slide member
pressing portion
knob
slide
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JP2000170497A
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JP2001351471A (en
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茂明 木下
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帝国通信工業株式会社
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Description

【0001】
【発明の属する技術分野】
本発明は、回転式スイッチ等の回転式電子部品に押釦スイッチの機能を設けた押釦スイッチ付き回転式電子部品に関するものである。
【0002】
【従来の技術】
従来、回転式スイッチのつまみを回転することによってそのスイッチの切替えを行なうと共に、このつまみを半径方向に押圧することで別の押釦スイッチをオンオフする構造の押釦スイッチ付き回転式電子部品が開発され、使用されている。
【0003】
この種の押釦スイッチ付き回転式電子部品は、例えば携帯電話のメニュー選択・設定スイッチや、ビデオカメラのマニュアルフォーカス調整・設定スイッチや、カメラのアイリス調整・設定スイッチなどとして用いられる。即ち例えば携帯電話の場合で言えば、つまみを回転することでメニューを選択し、その状態でつまみを半径方向に押圧することでそのメニューを設定するように用いられる。
【0004】
そして本願出願人はこの種の押釦スイッチ付き回転式電子部品として、図4に示すものを開発した。同図に示すようにこの押釦スイッチ付き回転式電子部品は、スライド部材210に設けた突起211につまみ230を回動自在に固定し、スライド部材210の表面に取り付けたフレキシブル基板250につまみ230に取り付けた摺動子240を当接し、さらに突起211の先端に取り付けたクリック板260のクリック部269をつまみ230に設けたクリック用凹部235に係合し、一方スライド部材210の外方に設けたバネ収納部217内に「く」字状に折り曲げた板バネ270を収納して板バネ270中央の押圧部271を支持板290に設けたスイッチ接点281上に当接し、同時にその上下両端の係止部273,275をスライド部材210と支持板290に固定された押釦用ケース295の所定部分に当接して構成されている。
【0005】
そしてつまみ230を回転すると、摺動子240がフレキシブル基板250に設けたスイッチパターン253上を摺動して所望の出力が得られる。一方つまみ230を矢印a方向に押圧すれば、これと一体にスライド部材210もスライド移動して、板バネ270がたわめられることで押圧部271がスイッチ接点281側に突出し、これをオンする。
【0006】
ところで上記押釦スイッチ付き回転式電子部品は、その小型化・薄型化を図るために発明されたものではあるが、携帯機器の更なる小型化・薄型化などのため、更なる小型化・薄型化が要求されている。特に板バネ270を収納した部分は、その全体が携帯機器の内部に入り込む部分なので、その高さの短縮化が求められている。
【0007】
しかしながら板バネ270は「く」字状で比較的長いので、その更なる高さ(長さ)の短縮は困難であった。
【0008】
【発明が解決しようとする課題】
本発明は上述の点に鑑みてなされたものでありその目的は、従来よりも更に高さ方向(スライド方向)の小型化が図れる押釦スイッチ付き回転式電子部品を提供することにある。
【0009】
【課題を解決するための手段】
上記問題点を解決するため本発明にかかる押釦スイッチ付き回転式電子部品は、固定側部材に対してスライド部材をスライド自在に取り付け、且つスライド部材の所定位置に回転式電子部品を取り付け、一方固定側部材の所定位置に配設したスイッチ接点に対向して設置されるスイッチ押圧部と、スイッチ押圧部から延びてスライド部材に押圧される押圧部と、スイッチ押圧部から延びて固定側部材に回動自在に軸支される軸支部とを具備してなるスイッチ作動部材を設置し、前記スイッチ作動部材の押圧部と軸支部とを、スイッチ接点の位置よりも回転式電子部品側の位置に位置させ、前記スライド部材によってスイッチ作動部材の押圧部が押圧されることで、スイッチ作動部材が軸支部を中心に回動してそのスイッチ押圧部がスイッチ接点を押圧することを特徴とする。これによってスイッチ作動部材の高さ方向の長さを短くでき、押釦スイッチ付き回転式電子部品の高さ方向の寸法の小型化が図れる。
さらに前記スライド部材に取り付けた回転式電子部品にはスライド部材のスライド方向に対して略垂直な方向の回転軸で回転する回転操作用のつまみが設けられており、且つ前記スイッチ作動部材の押圧部と軸支部とは、前記つまみと固定側部材の間の位置まで入り込んでいることが好ましい。
【0010】
【発明の実施の形態】
以下、本発明の実施形態を図面に基づいて詳細に説明する。
図1は本発明の一実施形態にかかる押釦スイッチ付き回転式スイッチを示す概略側断面図である。同図に示すようにこの押釦スイッチ付き回転式スイッチは、回転式スイッチAと押釦スイッチBとを一体にして構成されている。
【0011】
ここで回転式スイッチAの部分は、スライド部材10に設けた突起11をつまみ30に設けた孔31に挿入することでつまみ30を回動自在に軸支すると共に、つまみ30のスライド部材10に対向する面に摺動子40を取り付け、スライド部材10のつまみ30と対向する面に摺動子40が摺接するスイッチパターン53を設けたフレキシブル基板50を取り付け、さらに突起11の先端にクリック板60を取り付けることでクリック板60につまみ30が突起11から抜け出ないようにする機能を兼用せしめて構成されている。
【0012】
一方押釦スイッチBの部分は、スライド部材10の外周から突出するように設けたスライドガイド部17に凹部19を形成し、この凹部19内にスイッチ作動部材70を配置し、スイッチ作動部材70のスイッチ押圧部71に対向する位置にフレキシブル基板80を配設してこのフレキシブル基板80を固定側部材である支持板90に取り付け、一方支持板90に押釦用ケース95を固定することで形成される収納部97内にスライドガイド部17を上下動自在に収納して構成されている。以下各構成部品について説明する。
【0013】
ここで図2はつまみ30を取り付けたスライド部材10と、押釦用ケース95とを示す斜視図である。図1,図2に示すようにスライド部材10は合成樹脂の一体成形品であり、フレキシブル基板50を載置する基部13と、基部13から下方(スライド方向)に突出するように設けられるスライドガイド部17とを具備して構成されている。基部13にはその中央から突出する突起11と、略リング状の外周側壁15とが設けられている。外周側壁15のスライドガイド部17側の部分には、下記するスイッチ作動部材70の押圧部75を当接する当接部21が設けられ、一方突起11の先端にはさらに横断面小判型の小突起12が設けられている。また図2に示すようにスライド部材10の背面側からはT字型の係止突起18が突出し、スライドガイド部17の左右両側辺にはスライド規制用凹部23が設けられている。
【0014】
押釦用ケース95は前記スライド部材10のスライドガイド部17を覆う形状に形成され、その両側から前記スライド規制用凹部23を通して下記するフレキシブル基板80の取付孔85,85と支持板90の取付孔94,94とに挿入される突起状の係止部98,98が設けられている。
【0015】
つまみ30は合成樹脂を略円板形状に成形したものであり、その中央には貫通孔31が設けられ、またスライド部材10に対向する側の面には金属板製の摺動子40が取り付けられ、さらに反対側の面に設けた円形の凹部33内には貫通孔31を中心にしてリング状に多数の凹凸からなるクリック用凹凸部35が設けられている。
【0016】
次にクリック板60は弾性金属板を略円板状に形成し、その中央に小突起12を嵌合する小判型の貫通孔63を設けるとともに、その外周に円弧状の二本のアーム67,67を設け、各アーム67,67の中央にそれぞれクリック部69,69を設けて構成されている。
【0017】
図3はスイッチ作動部材70とフレキシブル基板50,80と支持板90とを示す斜視図である。同図及び図1に示すようにスイッチ作動部材70は、中央下部にスイッチ押圧部71を設け、このスイッチ押圧部71の上部中央から押圧用アーム73を延ばしてその先端に押圧部75を設け、一方スイッチ押圧部71の上部両側から2本の軸支用アーム77,77を延ばしてその先端近傍に小孔からなる軸支部79,79を設けて構成されている。押圧用アーム73と軸支用アーム77,77は、スイッチ押圧部71の上辺(回転式スイッチA側の辺)の部分で反対方向に向けて所定角度ずつ折り曲げられている。即ち押圧用アーム73と軸支用アーム77は、所定角度(好ましくは鋭角)開くように形成されている。
【0018】
次にフレキシブル基板50は略円形であって中央に前記スライド部材10の突起11を貫通する寸法の孔51が設けられ、また図3の手前側の面には所望のスイッチパターン53が形成されている。一方フレキシブル基板80は、その表面中央にドーム形状の弾性金属板からなるクリック板82を取り付けてなるスイッチ接点81が設けられており、またその両側には取付孔85,85が設けられている。そしてフレキシブル基板50とフレキシブル基板80は連結部87によって連結されており、引き出し部89から引き出されている。
【0019】
支持板90はこの実施形態では金属板製であり、その上部近傍には前記スライド部材10の係止突起18を挿入・係止するT字型の孔からなる係止部91が設けられ、またその中央には並列に二つの爪状の係止部93,93が設けられ、さらにその下方両側の前記取付孔85,85に対応する位置にも取付孔94,94が設けられている。
【0020】
そしてこの押釦スイッチ付き回転式スイッチを組み立てるには、まず図3に示すフレキシブル基板50を図1に示すようにスライド部材10の基部13上に載置して突起11を孔51に貫通する。そしてこのスライド部材10の突起11を摺動子40を固定したつまみ30の孔31に挿入し、この突起11先端の小突起12をクリック板60の貫通孔63に嵌合して小突起12の先端を熱カシメする。これによってつまみ30の抜けが防止され、同時に摺動子40先端の摺接部41がフレキシブル基板50のスイッチパターン53に押し付けられて弾接される。これによって図2に示す状態となる。
【0021】
一方支持板90の下部にフレキシブル基板80を載置し、その上にスイッチ作動部材70を載せる。このときスイッチ作動部材70の2つの軸支部79,79を、支持板90の係止部93,93に引っ掛ける。
【0022】
そしてこの支持板90の上に前記つまみ30を取り付けたスライド部材10を載置するが、その際スライド部材10の係止突起18を支持板90の係止部91に挿入して下方向に移動することで係止する。このとき図1に示すようにスイッチ作動部材70の押圧部75はスライド部材10の当接部21に当接する。そしてスライド部材10のスライドガイド部17の上から押釦用ケース95を被せ、そのとき係止部98,98をスライド規制用凹部23,23と取付孔85,85と取付孔95,95に挿入し、支持板90の裏面で熱カシメする。これによって図1に示す押釦スイッチ付き回転式スイッチが完成する。このとき同図に示すようにスイッチ作動部材70のスイッチ押圧部71は、スイッチ接点81上に当接している。
【0023】
そしてつまみ30を回転すれば、摺動子40の摺接部41がフレキシブル基板50のスイッチパターン53上を摺動してその出力を変化し、同時にクリック板60のクリック部69,69がつまみ30のクリック用凹凸部35に係合離脱することでクリック感覚を生じる。
【0024】
一方つまみ30を半径方向(矢印C方向(スライド方向))に押圧すれば、つまみ30などと共にスライド部材10が下降し、スイッチ作動部材70の押圧部75がスライド部材10の当接部21によって押し下げられるので、スイッチ作動部材70は軸支部79,79を中心にして回動しようとし、この結果スイッチ押圧部71がスイッチ接点81を押圧してこれを反転させ、オンさせる。つまみ30の押圧を解除すればクリック板82やスイッチ作動部材70は元の位置に自動復帰してスイッチ接点81がオフする。なおスライド部材10の上下動は、スライド部材10のスライド規制用凹部23,23に係合する係止部98,98によって規制される。
【0025】
以上本発明の実施形態を説明したが、本発明は上記実施形態に限定されるものではなく、特許請求の範囲、及び明細書と図面に記載された技術的思想の範囲内において種々の変形が可能である。なお直接明細書及び図面に記載がない何れの形状や材質であっても、本願発明の作用・効果を奏する以上、本願発明の技術的思想の範囲内である。
【0026】
例えば上記実施形態ではスライド部材10に回転式スイッチAを取り付けた例を示したが、回転式可変抵抗器など、他の回転式電子部品を取り付けても良い。回転式電子部品の構造も上記実施形態に限定されず、要はスライド部材10に取り付けることができる回転式電子部品であればどのような構造のものであっても良い。
【0027】
上記実施形態ではスイッチ作動部材70の軸支部79,79を支持板90に軸支したが、支持板90以外の他の固定側部材に軸支してもよい。また上記実施形態ではスイッチ接点81の上にクリック板82を取り付けたが、その代わりに一方のスイッチ接点を構成する可動接点板を取り付けても良いし、又必ずしもクリック板や可動接点板を取り付けなくても良い。
【0028】
本発明に用いるスイッチ作動部材70の構造は上記実施形態の構造に限定されず、例えば図5に示すように軸支用アーム77,77を連結部78で結び、この連結部78に軸支部79を設けてもよいなど、種々の変形が可能である。
【0029】
【発明の効果】
以上詳細に説明したように本発明によれば、スイッチ作動部材の押圧部と軸支部をスイッチ押圧部の位置よりも回転式電子部品側に位置せしめる構造なので、従来よりもさらに高さ方向(スライド方向)の小型化が図れるという優れた効果を有する。
【0030】
特に押圧部と軸支部を回転式電子部品のつまみの内側まで入り込ませれば、その小型化がさらに有効に行なえる。
【図面の簡単な説明】
【図1】本発明の一実施形態にかかる押釦スイッチ付き回転式スイッチを示す概略側断面図である。
【図2】つまみ30を取り付けたスライド部材10と押釦用ケース95とを示す斜視図である。
【図3】スイッチ作動部材70とフレキシブル基板50,80と支持板90とを示す斜視図である。
【図4】従来例を示す図である。
【図5】本発明に用いる他のスイッチ作動部材70を示す斜視図である。
【符号の説明】
A 回転式スイッチ(回転式電子部品)
B 押釦スイッチ
10 スライド部材
11 突起
13 基部
17 スライドガイド部
21 当接部
23 スライド規制用凹部
30 つまみ
40 摺動子
50 フレキシブル基板
53 スイッチパターン
60 クリック板
70 スイッチ作動部材
71 スイッチ押圧部
73 押圧用アーム
75 押圧部
77 軸支用アーム
79 軸支部
80 フレキシブル基板
81 スイッチ接点
82 クリック板
90 支持板(固定側部材)
95 押釦用ケース
97 収納部
98 係止部
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a rotary electronic component with a push button switch in which a rotary electronic component such as a rotary switch is provided with a function of a push button switch.
[0002]
[Prior art]
Conventionally, a rotary electronic component with a pushbutton switch has been developed, in which the switch is switched by rotating a knob of the rotary switch, and another pushbutton switch is turned on and off by pressing this knob in the radial direction. in use.
[0003]
This type of rotary electronic component with a pushbutton switch is used, for example, as a menu selection / setting switch for a mobile phone, a manual focus adjustment / setting switch for a video camera, an iris adjustment / setting switch for a camera, and the like. That is, in the case of a mobile phone, for example, the menu is selected by rotating the knob, and the menu is set by pressing the knob in the radial direction in that state.
[0004]
The applicant of the present application has developed such a rotary electronic component with a push button switch as shown in FIG. As shown in the figure, this rotary electronic component with a pushbutton switch has a knob 230 fixed to a protrusion 211 provided on the slide member 210 so that the knob 230 can rotate, and is attached to a flexible substrate 250 attached to the surface of the slide member 210. The attached slider 240 is brought into contact, and the click portion 269 of the click plate 260 attached to the tip of the protrusion 211 is engaged with the click recess 235 provided on the knob 230, and provided on the outside of the slide member 210. A leaf spring 270 bent in a “<” shape is housed in the spring housing portion 217, and a pressing portion 271 at the center of the leaf spring 270 is brought into contact with the switch contact 281 provided on the support plate 290, and at the same time, the upper and lower ends The stop portions 273 and 275 are configured to contact a predetermined portion of the push button case 295 fixed to the slide member 210 and the support plate 290. That.
[0005]
When the knob 230 is rotated, the slider 240 slides on the switch pattern 253 provided on the flexible substrate 250, and a desired output is obtained. On the other hand, if the knob 230 is pressed in the direction of the arrow a, the slide member 210 is also slid together with this, and the leaf spring 270 is bent, so that the pressing portion 271 protrudes toward the switch contact 281 and turns on. .
[0006]
By the way, the above-mentioned rotary electronic component with a push button switch was invented to reduce the size and thickness of the electronic device. However, in order to further reduce the size and thickness of portable devices, the size and thickness of the portable device are further reduced. Is required. In particular, the portion in which the leaf spring 270 is housed is a portion that enters the inside of the portable device, and therefore, the height is required to be shortened.
[0007]
However, since the leaf spring 270 has a “<” shape and is relatively long, it is difficult to further reduce its height (length).
[0008]
[Problems to be solved by the invention]
The present invention has been made in view of the above points, and an object of the present invention is to provide a rotary electronic component with a pushbutton switch that can be further downsized in the height direction (sliding direction) compared to the conventional art.
[0009]
[Means for Solving the Problems]
In order to solve the above problems, the rotary electronic component with a pushbutton switch according to the present invention is configured such that a slide member is slidably attached to a fixed side member, and the rotary electronic component is attached to a predetermined position of the slide member, while being fixed. A switch pressing portion disposed opposite to the switch contact disposed at a predetermined position of the side member, a pressing portion extending from the switch pressing portion and pressed by the slide member, and extending from the switch pressing portion and rotating to the fixed side member. A switch actuating member comprising a pivotally supported pivotally supported portion is installed, and the pressing portion and the pivotally supporting portion of the switch actuating member are positioned at a position closer to the rotary electronic component than the position of the switch contact. is allowed, the by sliding member by the pressing portion of the switch actuating member is pressed, the switch pressing unit switch actuating member is rotated around the shaft support switch contact Characterized by pressing a. As a result, the length in the height direction of the switch operating member can be shortened, and the size in the height direction of the rotary electronic component with the push button switch can be reduced.
Further, the rotary electronic component attached to the slide member is provided with a knob for rotation operation that rotates on a rotation axis in a direction substantially perpendicular to the slide direction of the slide member, and the pressing portion of the switch operating member It is preferable that the shaft support part is inserted to a position between the knob and the fixed side member.
[0010]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings.
FIG. 1 is a schematic sectional side view showing a rotary switch with a pushbutton switch according to an embodiment of the present invention. As shown in the figure, this rotary switch with a pushbutton switch is configured by integrating a rotary switch A and a pushbutton switch B.
[0011]
Here, the rotary switch A is configured such that the protrusion 11 provided on the slide member 10 is inserted into the hole 31 provided in the knob 30 so that the knob 30 is pivotally supported and the slide member 10 of the knob 30 is supported. A slider 40 is attached to the opposite surface, a flexible substrate 50 provided with a switch pattern 53 on which the slider 40 is slidably contacted is attached to the surface of the slide member 10 facing the knob 30, and the click plate 60 is attached to the tip of the protrusion 11. Is attached to the click plate 60 so that the knob 30 does not come out of the protrusion 11.
[0012]
On the other hand, in the push button switch B, a recess 19 is formed in a slide guide portion 17 provided so as to protrude from the outer periphery of the slide member 10, and a switch actuating member 70 is disposed in the recess 19. A storage formed by disposing a flexible substrate 80 at a position facing the pressing portion 71, attaching the flexible substrate 80 to a support plate 90 that is a fixed member, and fixing a push button case 95 to the support plate 90. The slide guide portion 17 is housed in the portion 97 so as to be movable up and down. Each component will be described below.
[0013]
Here, FIG. 2 is a perspective view showing the slide member 10 to which the knob 30 is attached and a push button case 95. As shown in FIGS. 1 and 2, the slide member 10 is an integrally molded product of synthetic resin, and includes a base portion 13 on which the flexible substrate 50 is placed and a slide guide provided so as to protrude downward (sliding direction) from the base portion 13. And a portion 17. The base 13 is provided with a protrusion 11 protruding from the center thereof and a substantially ring-shaped outer peripheral side wall 15. A contact portion 21 that contacts a pressing portion 75 of the switch operating member 70 described below is provided on a portion of the outer peripheral side wall 15 on the slide guide portion 17 side. 12 is provided. As shown in FIG. 2, a T-shaped locking protrusion 18 protrudes from the back side of the slide member 10, and slide restricting recesses 23 are provided on the left and right sides of the slide guide portion 17.
[0014]
The push button case 95 is formed in a shape that covers the slide guide portion 17 of the slide member 10, and the mounting holes 85, 85 of the flexible substrate 80 and the mounting holes 94 of the support plate 90 to be described below through the slide restricting recesses 23 from both sides thereof. , 94 are provided in the form of protrusions 98 and 98 that are inserted into the projections.
[0015]
The knob 30 is formed by molding a synthetic resin into a substantially disk shape, and a through hole 31 is provided at the center thereof, and a slider 40 made of a metal plate is attached to the surface facing the slide member 10. In addition, in a circular recess 33 provided on the opposite surface, click uneven portions 35 each including a large number of uneven portions in a ring shape with the through hole 31 as the center are provided.
[0016]
Next, the click plate 60 is formed of an elastic metal plate in a substantially disc shape, provided with a small through hole 63 for fitting the small protrusion 12 at the center thereof, and two arc-shaped arms 67, 67, and click portions 69 and 69 are provided at the centers of the arms 67 and 67, respectively.
[0017]
FIG. 3 is a perspective view showing the switch operating member 70, the flexible boards 50 and 80, and the support plate 90. As shown in FIG. 1 and FIG. 1, the switch actuating member 70 is provided with a switch pressing portion 71 at the center lower portion, and a pressing arm 73 is extended from the upper center of the switch pressing portion 71 and a pressing portion 75 is provided at the tip thereof. On the other hand, two shaft support arms 77, 77 are extended from both upper sides of the switch pressing portion 71, and shaft support portions 79, 79 each having a small hole are provided in the vicinity of the tip thereof. The pressing arm 73 and the pivot support arms 77 and 77 are bent by a predetermined angle in the opposite direction at the upper side of the switch pressing portion 71 (side on the rotary switch A side). That is, the pressing arm 73 and the pivot support arm 77 are formed to open at a predetermined angle (preferably an acute angle).
[0018]
Next, the flexible substrate 50 has a substantially circular shape and is provided with a hole 51 having a dimension penetrating the protrusion 11 of the slide member 10 at the center, and a desired switch pattern 53 is formed on the front surface of FIG. Yes. On the other hand, the flexible substrate 80 is provided with a switch contact 81 to which a click plate 82 made of a dome-shaped elastic metal plate is attached at the center of the surface, and attachment holes 85 and 85 are provided on both sides thereof. The flexible substrate 50 and the flexible substrate 80 are connected by a connecting portion 87 and are drawn out from a drawer portion 89.
[0019]
The support plate 90 is made of a metal plate in this embodiment, and a locking portion 91 formed of a T-shaped hole for inserting and locking the locking protrusion 18 of the slide member 10 is provided in the vicinity of the upper portion thereof. Two claw-shaped locking portions 93, 93 are provided in parallel at the center, and mounting holes 94, 94 are also provided at positions corresponding to the mounting holes 85, 85 on both lower sides thereof.
[0020]
To assemble the rotary switch with the pushbutton switch, first, the flexible substrate 50 shown in FIG. 3 is placed on the base 13 of the slide member 10 as shown in FIG. Then, the protrusion 11 of the slide member 10 is inserted into the hole 31 of the knob 30 to which the slider 40 is fixed, and the small protrusion 12 at the tip of the protrusion 11 is fitted into the through hole 63 of the click plate 60 to Crimp the tip. This prevents the knob 30 from coming off, and at the same time, the sliding contact portion 41 at the tip of the slider 40 is pressed against the switch pattern 53 of the flexible substrate 50 to be elastically contacted. As a result, the state shown in FIG. 2 is obtained.
[0021]
On the other hand, the flexible substrate 80 is placed under the support plate 90, and the switch operating member 70 is placed thereon. At this time, the two shaft support portions 79, 79 of the switch operating member 70 are hooked on the locking portions 93, 93 of the support plate 90.
[0022]
The slide member 10 to which the knob 30 is attached is placed on the support plate 90. At this time, the locking protrusion 18 of the slide member 10 is inserted into the locking portion 91 of the support plate 90 and moved downward. To lock. At this time, as shown in FIG. 1, the pressing portion 75 of the switch operating member 70 contacts the contact portion 21 of the slide member 10. Then, a push button case 95 is put on the slide guide portion 17 of the slide member 10, and at this time, the locking portions 98, 98 are inserted into the slide restricting recesses 23, 23, the mounting holes 85, 85, and the mounting holes 95, 95. Then, heat crimping is performed on the back surface of the support plate 90. This completes the rotary switch with pushbutton switch shown in FIG. At this time, the switch pressing portion 71 of the switch actuating member 70 is in contact with the switch contact 81 as shown in FIG.
[0023]
When the knob 30 is rotated, the sliding contact portion 41 of the slider 40 slides on the switch pattern 53 of the flexible substrate 50 to change its output, and at the same time, the click portions 69 and 69 of the click plate 60 are moved to the knob 30. A click sensation is generated by disengaging from the click uneven portion 35.
[0024]
On the other hand, when the knob 30 is pressed in the radial direction (arrow C direction (sliding direction)), the slide member 10 is lowered together with the knob 30 and the like, and the pressing portion 75 of the switch operating member 70 is pushed down by the contact portion 21 of the slide member 10. Therefore, the switch actuating member 70 tries to rotate around the shaft support portions 79 and 79, and as a result, the switch pressing portion 71 presses the switch contact 81 to reverse it and turn it on. If the pressing of the knob 30 is released, the click plate 82 and the switch operating member 70 are automatically returned to their original positions, and the switch contact 81 is turned off. The vertical movement of the slide member 10 is restricted by the locking portions 98 and 98 that engage with the slide restriction recesses 23 and 23 of the slide member 10.
[0025]
Although the embodiments of the present invention have been described above, the present invention is not limited to the above-described embodiments, and various modifications can be made within the scope of the technical idea described in the claims and the specification and drawings. Is possible. Note that any shape or material not directly described in the specification and drawings is within the scope of the technical idea of the present invention as long as the effects and advantages of the present invention are achieved.
[0026]
For example, although the example which attached the rotary switch A to the slide member 10 was shown in the said embodiment, you may attach other rotary electronic components, such as a rotary variable resistor. The structure of the rotary electronic component is not limited to the above-described embodiment. In short, any structure may be used as long as the rotary electronic component can be attached to the slide member 10.
[0027]
In the above embodiment, the shaft support portions 79 and 79 of the switch operating member 70 are pivotally supported by the support plate 90, but may be pivotally supported by other fixed members other than the support plate 90. In the above embodiment, the click plate 82 is attached on the switch contact 81, but a movable contact plate constituting one switch contact may be attached instead, and the click plate and the movable contact plate are not necessarily attached. May be.
[0028]
The structure of the switch actuating member 70 used in the present invention is not limited to the structure of the above-described embodiment. For example, as shown in FIG. 5, shaft support arms 77 and 77 are connected by a connecting portion 78, and the connecting portion 78 is connected to the shaft supporting portion 79. Various modifications are possible, such as providing
[0029]
【The invention's effect】
According to the present invention described above in detail, since the pressing portion and the shaft support of the switch actuating member such structure that Ru brought position to a rotary electronic component side of a position of the switch pressing portion, further the height direction than the conventional It has an excellent effect of reducing the size in the (sliding direction).
[0030]
In particular, if the pressing portion and the shaft support portion are inserted to the inside of the knob of the rotary electronic component, the downsizing can be further effectively performed.
[Brief description of the drawings]
FIG. 1 is a schematic sectional side view showing a rotary switch with a pushbutton switch according to an embodiment of the present invention.
2 is a perspective view showing a slide member 10 to which a knob 30 is attached and a push button case 95. FIG.
3 is a perspective view showing a switch operating member 70, flexible substrates 50 and 80, and a support plate 90. FIG.
FIG. 4 is a diagram showing a conventional example.
FIG. 5 is a perspective view showing another switch operating member 70 used in the present invention.
[Explanation of symbols]
A Rotary switch (Rotary electronic component)
B Pushbutton switch 10 Slide member 11 Protrusion 13 Base 17 Slide guide portion 21 Abutting portion 23 Slide regulating recess 30 Knob 40 Slider 50 Flexible substrate 53 Switch pattern 60 Click plate 70 Switch operating member 71 Switch pressing portion 73 Pressing arm 75 Pressing portion 77 Shaft support arm 79 Shaft support portion 80 Flexible substrate 81 Switch contact 82 Click plate 90 Support plate (fixed side member)
95 Pushbutton case 97 Storage portion 98 Locking portion

Claims (2)

固定側部材に対してスライド部材をスライド自在に取り付け、且つスライド部材の所定位置に回転式電子部品を取り付け、
一方固定側部材の所定位置に配設したスイッチ接点に対向して設置されるスイッチ押圧部と、スイッチ押圧部から延びてスライド部材に押圧される押圧部と、スイッチ押圧部から延びて固定側部材に回動自在に軸支される軸支部とを具備してなるスイッチ作動部材を設置し、
前記スイッチ作動部材の押圧部と軸支部とを、スイッチ接点の位置よりも回転式電子部品側の位置に位置させ、
前記スライド部材によってスイッチ作動部材の押圧部が押圧されることで、スイッチ作動部材が軸支部を中心に回動してそのスイッチ押圧部がスイッチ接点を押圧することを特徴とする押釦スイッチ付き回転式電子部品。
A slide member is slidably attached to the fixed side member, and a rotary electronic component is attached to a predetermined position of the slide member.
On the other hand, a switch pressing portion installed opposite to the switch contact disposed at a predetermined position of the fixed side member, a pressing portion extending from the switch pressing portion and pressed against the slide member, and extending from the switch pressing portion to the fixed side member A switch actuating member having a shaft support portion rotatably supported by
The pressing portion and the shaft support portion of the switch operating member are positioned at a position closer to the rotary electronic component than the position of the switch contact,
A rotary type with a pushbutton switch, characterized in that when the pressing part of the switch actuating member is pushed by the slide member, the switch actuating member rotates around the shaft support part and the switch pushing part presses the switch contact. Electronic components.
前記スライド部材に取り付けた回転式電子部品にはスライド部材のスライド方向に対して略垂直な方向の回転軸で回転する回転操作用のつまみが設けられており、
且つ前記スイッチ作動部材の押圧部と軸支部とは、前記つまみと固定側部材の間の位置まで入り込んでいることを特徴とする請求項1記載の押釦スイッチ付き回転式電子部品。
The rotary electronic component attached to the slide member is provided with a knob for rotating operation that rotates on a rotation axis in a direction substantially perpendicular to the slide direction of the slide member,
2. The rotary electronic component with a push button switch according to claim 1 , wherein the pressing portion and the shaft support portion of the switch operating member are inserted to a position between the knob and the fixed side member.
JP2000170497A 2000-06-07 2000-06-07 Rotating electronic components with pushbutton switches Expired - Fee Related JP4357091B2 (en)

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Application Number Priority Date Filing Date Title
JP2000170497A JP4357091B2 (en) 2000-06-07 2000-06-07 Rotating electronic components with pushbutton switches

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JP4357091B2 true JP4357091B2 (en) 2009-11-04

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Publication number Priority date Publication date Assignee Title
JP2008283009A (en) * 2007-05-11 2008-11-20 Teikoku Tsushin Kogyo Co Ltd Electronic component with clicking function

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