JP2007329070A - Multidirectional input device - Google Patents

Multidirectional input device Download PDF

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JP2007329070A
JP2007329070A JP2006160759A JP2006160759A JP2007329070A JP 2007329070 A JP2007329070 A JP 2007329070A JP 2006160759 A JP2006160759 A JP 2006160759A JP 2006160759 A JP2006160759 A JP 2006160759A JP 2007329070 A JP2007329070 A JP 2007329070A
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pressing member
operation shaft
movable contact
input device
guide wall
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Hideyasu Hayashi
秀安 林
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Alps Alpine Co Ltd
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Alps Electric Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a multidirectional input device with a push switch capable of smoothly press-operating the push switch. <P>SOLUTION: The device is provided with an operating shaft 1 with one end side protruded from an opening 2b of a case 2 and the other end housed, detecting means 12, 13, 14b, 9 for detecting a slanting movement of the operating shaft 1, push switches 14 (14a, 14b), 15 operated in accordance with the slanting movement or pressing movement of the operating shaft 1, and a pressing member 5 press-operating the push switches 14, 15, arranged between the push switches 14, 15 and the other end of the operating shaft 1. A cylindrical guide wall 4a is provided outside push switches 14, 15 inside the housing part so as to surround an outer periphery of the movable contact piece 15, and a cylindrical protruded wall 5a equipped with an inner periphery face guided to the outer periphery face of the guide wall 4a is provided at the pressing member 5, so that the pressing member 5 is arranged to be in free sliding in an axis direction of the operating shaft 1 by engaging the protruded wall 5a and the guide wall 4a. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、多方向入力装置に係り、特に中央に押圧操作用のプッシュスイッチを備えたセンタープッシュスイッチ付きの傾倒型多方向入力装置に関する。   The present invention relates to a multidirectional input device, and more particularly, to a tilted multidirectional input device with a center push switch having a push switch for pressing operation at the center.

従来のセンタープッシュスイッチ付きの傾倒型多方向入力装置としては、操作軸の軸線方向の移動動作でスイッチをオン、オフさせるプッシュスイッチを備え、操作軸の傾倒動作により8方向のスイッチ、及びプッシュスイッチを操作するようにした構造のものが知られている(例えば、特許文献1参照)。   The tilt type multi-directional input device with a conventional center push switch is equipped with a push switch that turns the switch on and off by the movement of the operation axis in the axial direction. The thing of the structure which operated this is known (for example, refer patent document 1).

この従来の多方向入力装置の構造を図14、図15に示す。図14は従来の多方向入力装置の断面図、図15は同分解斜視図であり、同図において、21は、上方開口の凹部を備えた絶縁樹脂製の下ケースで、凹部底面には中央固定接点22および外側固定接点23からなる第一固定接点24が設けられ、それぞれの固定接点22および23と電気的に導通した端子22Aおよび23Aが外方に導出されている。この外側固定接点23には、導電金属薄板からなる円形ドーム状の可動接点25の外周下端部25Aが当接状態に載せられている。   The structure of this conventional multidirectional input device is shown in FIGS. FIG. 14 is a cross-sectional view of a conventional multidirectional input device, and FIG. 15 is an exploded perspective view thereof. In FIG. 14, reference numeral 21 denotes a lower case made of an insulating resin having a recess with an upper opening. A first fixed contact 24 including a fixed contact 22 and an outer fixed contact 23 is provided, and terminals 22A and 23A that are electrically connected to the fixed contacts 22 and 23 are led out to the outside. On the outer fixed contact 23, an outer peripheral lower end 25A of a circular dome-shaped movable contact 25 made of a conductive metal thin plate is placed in contact.

また、下ケース21の上方開口部を覆うように、中央に円形の孔部26Aを有し、裏面に第二固定接点27が設けられた絶縁樹脂製の上ケース26が下ケース21に結合されている。この上ケース26は、孔部26Aを構成する端部の裏面側が球状に形成された球状壁部26Bで構成されると共に、正八角形の下方開口の凹部26Cを備えたものとなっており、凹部26Cの天面の露出している部分に合計で十六個の第二固定接点27が設けられたものとなっている。   In addition, an upper case 26 made of an insulating resin having a circular hole 26A at the center and provided with a second fixed contact 27 on the back surface is coupled to the lower case 21 so as to cover the upper opening of the lower case 21. ing. The upper case 26 is composed of a spherical wall portion 26B formed in a spherical shape on the back side of the end portion constituting the hole portion 26A, and includes a concave portion 26C having a regular octagonal downward opening. A total of sixteen second fixed contacts 27 are provided on the exposed portion of the top surface of 26C.

この上ケース26の孔部26Aと凹部26Cは、中心位置を合わせて設けられている。そして、この十六個の第二固定接点27の配置状態は、孔部26Aの中心位置から等距離で、かつ上ケース26の正八角形に形成された凹部26Cの一つの辺に対して各々二つずつ配設されている。また、上ケース26からは、合計で八本の各々電気的に独立状態に配された端子28が導出されており、端子28のそれぞれは、上記第二固定接点27の内、凹部26Cの角部を形成する隣接する一方の辺側に配された一つと他方の辺側に配された一つとに電気的に接続されている。   The hole 26A and the recess 26C of the upper case 26 are provided with their center positions aligned. The sixteen second fixed contacts 27 are arranged at two equal distances from the center position of the hole 26A and one side of the concave portion 26C formed in the regular octagon of the upper case 26. One by one. In addition, a total of eight terminals 28 arranged in an electrically independent state are led out from the upper case 26, and each of the terminals 28 is a corner of the recess 26 </ b> C in the second fixed contact 27. Are electrically connected to one disposed on one side of the adjacent side and one disposed on the other side.

29は絶縁樹脂製の筒状部材で、上方が円形孔30Aで下方が小判形孔30Bとなった貫通孔30を有すると共に、その外周中間部に外形が凹部26Cよりも少し小さい正八角形に形成された導電性の鍔部31がインサート成形によって固定され、この筒状部材29と鍔部31で可動接点体32を構成している。筒状部材29は、上方外周部分が球状壁部26Bと同一径の球形状に加工された上部球体部29Aを備えたものとなっている。   Reference numeral 29 denotes a cylindrical member made of insulating resin, which has a through hole 30 with a circular hole 30A on the upper side and an oval hole 30B on the lower side, and is formed in a regular octagon whose outer shape is slightly smaller than the concave part 26C at the outer peripheral middle part. The conductive flange 31 is fixed by insert molding, and the cylindrical member 29 and the flange 31 constitute a movable contact body 32. The cylindrical member 29 includes an upper sphere portion 29A whose upper outer peripheral portion is processed into a spherical shape having the same diameter as the spherical wall portion 26B.

33は導電材料からなる弾性部材であるコイルバネで、下端を外側固定接点23に電気的に接続させて下ケース21内に収容装着され、その上端は、上面が平坦なリング状の導電材料製の押え部材34の裏面に当接して押え部材34に上方への付勢力を加えている。そして、上記可動接点体32は、この押え部材34の内周部分の上面に導電性の鍔部31が載せられると共に、筒状部材29の上部球体部29Aが上ケース26の球状壁部26Bに係合するように配されている。
すなわち、この可動接点体32は、押え部材34を介して鍔部31にコイルバネ33の上方への付勢力を受け、かつ上ケース26との係合箇所が共に球形状であるために、水平状態を保つことができるものとなっている。
A coil spring 33, which is an elastic member made of a conductive material, is housed in the lower case 21 with its lower end electrically connected to the outer fixed contact 23, and its upper end is made of a ring-shaped conductive material with a flat upper surface. An upward biasing force is applied to the presser member 34 in contact with the back surface of the presser member 34. In the movable contact body 32, the conductive flange 31 is placed on the upper surface of the inner peripheral portion of the pressing member 34, and the upper spherical portion 29A of the cylindrical member 29 is placed on the spherical wall portion 26B of the upper case 26. Arranged to engage.
That is, since the movable contact body 32 receives the upward biasing force of the coil spring 33 on the collar portion 31 via the presser member 34 and is engaged with the upper case 26 in a spherical shape, the movable contact body 32 is in a horizontal state. Can be kept.

このとき、図14に示すように、押え部材34の平坦な上面外周部を上ケース26の凹部26Cを構成する側壁部の下端面26Dに当接させて停止させ、この際に筒状部材29の上部球体部29Aが上ケース26の球状壁部26Bに係合する寸法で構成すると、押え部材34の水平状態を容易に安定化させることができ、これにより可動接点体32も安定した水平状態を保てるようにできる。
また、この場合には、上ケース26の凹部26Cの中に鍔部31が収容されることとなり、それぞれは正八角形の形状に形成されているために、上ケース26の凹部26Cに対して可動接点体32の回転を容易に防止できる。
At this time, as shown in FIG. 14, the flat upper surface outer peripheral portion of the pressing member 34 is brought into contact with the lower end surface 26D of the side wall portion constituting the concave portion 26C of the upper case 26 and stopped. If the upper sphere portion 29A is configured to have a size that engages with the spherical wall portion 26B of the upper case 26, the horizontal state of the pressing member 34 can be easily stabilized, and the movable contact body 32 can also be stabilized in a horizontal state. Can be maintained.
Further, in this case, the collar portion 31 is accommodated in the concave portion 26C of the upper case 26, and each is formed in a regular octagonal shape, so that it is movable with respect to the concave portion 26C of the upper case 26. The rotation of the contact body 32 can be easily prevented.

そして、この可動接点体32の貫通孔30には、棒状の操作軸35が挿通され、その上方部は上ケース26の孔部26Aから外方に突出して操作部35Cとなると共に、球形状に形成された下端部35Aは、可動接点25の頂点部25B上に載置された絶縁性の押圧部材36の上面に当接状態に配されている。
また、この操作軸35は、中央外周部に小判形部35Bを備え、この小判形部35Bが、筒状部材29の貫通孔30の小判形孔30Bに係合されることによって、操作軸35は可動接点体32に対して回転はせず、かつ所定距離の上下動可能に保持されている。
A rod-like operation shaft 35 is inserted into the through hole 30 of the movable contact body 32, and an upper portion thereof protrudes outward from the hole portion 26A of the upper case 26 to become an operation portion 35C. The formed lower end portion 35 </ b> A is disposed in contact with the upper surface of the insulating pressing member 36 placed on the apex portion 25 </ b> B of the movable contact 25.
Further, the operation shaft 35 includes an oval portion 35B at the center outer peripheral portion, and the oval portion 35B is engaged with the oval hole 30B of the through hole 30 of the cylindrical member 29, whereby the operation shaft 35 is engaged. Is not rotated with respect to the movable contact body 32 and is held so as to move up and down a predetermined distance.

そして、上述のごとく、操作軸35を挿通保持している可動接点体32は、通常状態において水平状態に保持されているために、操作力が加わっていない状態では、可動接点体32の筒状部材29に保持されている操作軸35も垂直な中立位置を保っている。そして、上ケース26の上方から装着された金属カバー37の脚部37Aが下ケース21の底面にカシメ固定されることによって、上ケース26と下ケース21は結合されている。   As described above, the movable contact body 32 through which the operation shaft 35 is inserted and held is held in a horizontal state in the normal state. Therefore, when the operation force is not applied, the cylindrical shape of the movable contact body 32 is obtained. The operation shaft 35 held by the member 29 also maintains a vertical neutral position. Then, the upper case 26 and the lower case 21 are joined by the caulking and fixing of the legs 37A of the metal cover 37 attached from above the upper case 26 to the bottom surface of the lower case 21.

特開2001−110278号公報Japanese Patent Laid-Open No. 2001-110278

しかしながら、上述した従来の多方向入力装置においては、可動接点25を押圧操作する押圧部材36が、円筒状の壁部内に上下方向に移動可能に収納されているものの、押圧部材36が板状であることから、傾いて、壁部とかみ合ってしまい、スムーズなプッシュスイッチの押圧操作が得られないという問題があった。   However, in the conventional multidirectional input device described above, the pressing member 36 that presses the movable contact 25 is housed in the cylindrical wall portion so as to be movable in the vertical direction, but the pressing member 36 is plate-shaped. For this reason, there is a problem in that it tilts and engages with the wall portion, and a smooth push switch pressing operation cannot be obtained.

従って、本発明は上記した問題点を解決し、プッシュスイッチをスムーズに押圧操作可能なプッシュスイッチ付きの多方向入力装置を提供することを目的とする。   Accordingly, an object of the present invention is to solve the above-mentioned problems and to provide a multidirectional input device with a push switch that can smoothly push the push switch.

上記課題を解決するために本発明の多方向入力装置では第1の解決手段として、収納部及びこの収納部に連通する開口部を有する筺体と、この筺体の前記開口部から一端側が突出されると共に、多方向に傾倒動作可能でかつ軸線方向に押圧動作可能に前記収納部内に他端側が収容された操作軸と、前記収納部に配設され前記操作軸の傾倒動作を検出する検出手段と、前記収納部に配設され前記操作軸の傾倒動作及び押圧動作に伴って操作される反転可能なドーム状の板ばねからなる可動接片及び該可動接片と接離する中央固定接点とを有するプッシュスイッチと、このプッシュスイッチと前記操作軸の他端側との間に配設され前記プッシュスイッチを押圧操作する押圧部材とを備え、前記収納部内の前記プッシュスイッチの外側に前記可動接片の外周を囲むように筒状のガイド壁を設けると共に、前記押圧部材に前記ガイド壁の外周面に案内される内周面を有する筒状の突出壁を設け、この突出壁と前記ガイド壁とを係合させて前記押圧部材を前記操作軸の軸線方向に摺動可能に配設した構成とした。   In order to solve the above-mentioned problem, in the multi-directional input device of the present invention, as a first solving means, a housing having a housing portion and an opening communicating with the housing portion, and one end side of the housing protrudes from the opening. And an operation shaft having the other end side accommodated in the storage portion so as to be capable of tilting in multiple directions and being capable of pressing in the axial direction, and detecting means disposed in the storage portion and detecting the tilting operation of the operation shaft. A movable contact piece comprising a reversible dome-shaped leaf spring disposed in the storage portion and operated in accordance with a tilting operation and a pressing operation of the operation shaft, and a central fixed contact contacting and moving away from the movable contact piece A push switch disposed between the push switch and the other end side of the operation shaft, and a push member that pushes the push switch. A cylindrical guide wall is provided so as to surround the outer periphery of the guide wall, and a cylindrical protruding wall having an inner peripheral surface guided by the outer peripheral surface of the guide wall is provided on the pressing member, and the protruding wall and the guide wall And the pressing member is slidably disposed in the axial direction of the operation shaft.

また、第2の解決手段として、前記ガイド壁と前記押圧部材との間に弾性部材を設け、この弾性部材により前記押圧部材を介して前記操作軸をその操作部側に付勢するようにした構成とした。
また、第3の解決手段として、前記ガイド壁に該ガイド壁の内側から外側に貫通する切り欠き部を設けた構成とした。
また、第4の解決手段として、前記ガイド壁部と前記押圧部材に、前記操作軸の軸線方向に対向する面を形成し、この対向する面に前記押圧部材の軸線方向の移動を規制するストッパ部を設けた構成とした。
As a second solution, an elastic member is provided between the guide wall and the pressing member, and the elastic shaft biases the operation shaft toward the operation portion through the pressing member. The configuration.
As a third solution, the guide wall is provided with a notch that penetrates from the inside to the outside of the guide wall.
Further, as a fourth solving means, a stopper is formed on the guide wall and the pressing member so as to face each other in the axial direction of the operation shaft, and the opposing surface is restricted from moving in the axial direction of the pressing member. It was set as the structure which provided the part.

また、第5の解決手段として、前記押圧部材には、前記操作軸の他端側と対向する前記突出壁の中央に、前記操作軸の他端側端部を収容する凹部が設けられている構成とした。
また、第6の解決手段として、前記操作軸は、前記開口部内の所定方向に傾倒可能であり、前記操作軸が所定方向以外の方向に傾倒するのを規制する規制部を前記開口内に設け、該規制部を前記操作軸に沿って設けられた複数の突堤で形成した構成とした。
また、第7の解決手段として、前記検出手段は、前記収納部に設けられた共通固定接点及び個別固定接点と、前記操作軸の傾倒動作に伴って傾動する駆動体に設けられ、前記個別固定接点と接離する可動接点板と、この可動接点板と前記共通固定接点との間に弾接され、前記共通固定接点と前記可動接点板とを導通させると共に、前記可動接点板を前記個別固定接点側に付勢するコイルばねとからなる構成とした。
Further, as a fifth solving means, the pressing member is provided with a recess for accommodating the other end of the operation shaft at the center of the protruding wall facing the other end of the operation shaft. The configuration.
Further, as a sixth solving means, the operation shaft can be tilted in a predetermined direction in the opening, and a restricting portion for restricting the operation shaft from tilting in a direction other than the predetermined direction is provided in the opening. The restriction portion is formed by a plurality of jetties provided along the operation axis.
Further, as a seventh solving means, the detection means is provided in a common fixed contact and an individual fixed contact provided in the storage unit, and a drive body that tilts with a tilting operation of the operation shaft, and the individual fixed contact A movable contact plate that comes in contact with and separates from the contact point, and is elastically contacted between the movable contact plate and the common fixed contact, electrically connects the common fixed contact and the movable contact plate, and individually fixes the movable contact plate. The coil spring is configured to be biased toward the contact side.

上述したように、本発明の多方向入力装置は、収納部及び収納部に連通する開口部を有する筺体と、筺体の開口部から一端側が突出されると共に、多方向に傾倒動作可能でかつ軸線方向に押圧動作可能に収納部内に他端側が収容された操作軸と、収納部に配設され操作軸の傾倒動作を検出する検出手段と、収納部に配設され操作軸の傾倒動作及び押圧動作に伴って操作される反転可能なドーム状の板ばねからなる可動接片及び可動接片と接離する中央固定接点とを有するプッシュスイッチと、プッシュスイッチと操作軸の他端側との間に配設されプッシュスイッチを押圧操作する押圧部材とを備え、収納部内のプッシュスイッチの外側に可動接片の外周を囲むように筒状のガイド壁を設けると共に、押圧部材にガイド壁の外周面に案内される内周面を有する筒状の突出壁を設け、突出壁とガイド壁とを係合させて押圧部材を操作軸の軸線方向に摺動可能に配設したことから、筒状のガイド壁に筒状の突出壁が案内されて押圧部材が操作軸の軸線方向に摺動するので、押圧部材の案内が確実となり、プッシュスイッチの可動接片を押圧する際に適切な位置をスムーズに押圧操作することができ、反転可能なドーム状の板ばねからなる可動接片の反転動作が確実に行え、明確なクリック感触を得ることができる。   As described above, the multidirectional input device of the present invention includes a housing having a housing and an opening communicating with the housing, one end projecting from the housing opening, and capable of tilting in multiple directions and being axial An operation shaft whose other end is accommodated in the storage unit so as to be capable of pressing in the direction, detection means disposed in the storage unit for detecting the tilting operation of the operation shaft, and tilting operation and pressing of the operation shaft disposed in the storage unit Between the push switch and the other end side of the operating shaft, a push switch having a movable contact piece made of a reversible dome-shaped leaf spring that is operated in accordance with the operation and a central fixed contact that is in contact with and away from the movable contact piece And a pressing member for pressing the push switch, and a cylindrical guide wall is provided outside the push switch in the housing so as to surround the outer periphery of the movable contact piece, and the pressing member has an outer peripheral surface of the guide wall. Be guided to A cylindrical projecting wall having a peripheral surface is provided, and the pressing member is slidable in the axial direction of the operation shaft by engaging the projecting wall and the guide wall. As the protruding wall is guided and the pressing member slides in the axial direction of the operation shaft, the guiding of the pressing member is ensured, and the appropriate position is smoothly pressed when pressing the movable contact piece of the push switch. Therefore, the reversing operation of the movable contact piece made of a reversible dome-shaped leaf spring can be reliably performed, and a clear click feeling can be obtained.

また、ガイド壁と押圧部材との間に弾性部材を設け、弾性部材により押圧部材を介して操作軸をその操作部側に付勢するようにしたことから、操作軸の軸線方向のガタを抑制することができ、ガイド壁の外壁と突出壁の内壁とによる安定した案内が可能となる。
また、ガイド壁にガイド壁の内側から外側に貫通する切り欠き部を設けたことから、切り欠き部がガイド壁内外の空気の流通を可能にするので、突出壁の内部が真空状態になることがなく、プッシュスイッチの動作をより円滑にすると共に、押圧部材の復帰が確実なものとなる。
また、ガイド壁部と押圧部材に、操作軸の軸線方向に対向する面を形成し、この対向する面に押圧部材の軸線方向の移動を規制するストッパ部を設けたことから、操作軸に軸線方向への過大な荷重が加えられても、押圧部材が変形するのを防止できると共に、プッシュスイッチの可動接片に過大な力が作用するのを防止することができる。
In addition, an elastic member is provided between the guide wall and the pressing member, and the operating shaft is biased by the elastic member via the pressing member to the operating portion side, thereby suppressing backlash in the axial direction of the operating shaft. Therefore, stable guidance is possible by the outer wall of the guide wall and the inner wall of the protruding wall.
In addition, since the notch that penetrates the guide wall from the inside to the outside of the guide wall is provided, the notch enables the air inside and outside the guide wall to flow, so that the inside of the protruding wall becomes a vacuum state. Therefore, the operation of the push switch is made smoother and the return of the pressing member is ensured.
In addition, since the guide wall and the pressing member are formed with a surface facing the axial direction of the operation shaft, and a stopper portion that restricts the movement of the pressing member in the axial direction is provided on this facing surface, Even if an excessive load in the direction is applied, it is possible to prevent the pressing member from being deformed and to prevent an excessive force from acting on the movable contact piece of the push switch.

また、押圧部材には、操作軸の他端側と対向する突出壁の中央に、操作軸の他端側端部を収容する凹部が設けられていることから、押圧部材に筒状の突出壁を設けた場合においても全体の厚さを薄く形成できるので、装置の薄型化を図ることが可能となる。
また、操作軸は、開口部内の所定方向に傾倒可能であり、操作軸が所定方向以外の方向に傾倒するのを規制する規制部を開口部内に設け、該規制部を操作軸に沿って設けられた複数の突堤で形成したことから、操作軸に沿って長尺状に設けられた突堤によって操作軸が規制されるので、操作軸の所定方向以外への傾倒操作を確実に規制することができる。
また、検出手段は、収納部に設けられた共通固定接点及び個別固定接点と、操作軸の傾倒動作に伴って傾動する駆動体に設けられ、個別固定接点と接離する可動接点板と、可動接点板と共通固定接点との間に弾接され、共通固定接点と可動接点板とを導通させると共に、可動接点板を個別固定接点側に付勢するコイルばねとからなることから、簡単な構造で、確実に操作軸の傾倒方向を検出できると共に、容易に操作軸のセンター位置への復帰を行うことができる。
In addition, the pressing member is provided with a recess for accommodating the end of the other end of the operating shaft at the center of the protruding wall facing the other end of the operating shaft. Even in the case where the device is provided, the entire thickness can be reduced, so that the device can be made thinner.
Further, the operation shaft can be tilted in a predetermined direction in the opening, and a restricting portion for restricting the operation shaft from tilting in a direction other than the predetermined direction is provided in the opening, and the restricting portion is provided along the operation shaft. Since the operation axis is regulated by the elongated jetty provided along the operation axis, the tilting operation of the operation axis in a direction other than the predetermined direction can be reliably regulated. it can.
In addition, the detection means is provided in a common fixed contact and individual fixed contact provided in the storage unit, a movable contact plate provided in a drive body that is tilted in accordance with a tilting operation of the operation shaft, and a movable contact plate It has a simple structure because it consists of a coil spring that is elastically contacted between the contact plate and the common fixed contact, electrically connects the common fixed contact and the movable contact plate, and biases the movable contact plate toward the individual fixed contact. Thus, the tilt direction of the operation shaft can be reliably detected and the operation shaft can be easily returned to the center position.

以下、本発明の実施の形態を図1乃至図13に示す。図1は本発明の多方向入力装置を示す分解斜視図、図2は本発明の多方向入力装置を示す断面図、図3は本発明の上ケースを示す平面図、図4は本発明の上ケースを示す底面図、図5は本発明の下ケースを示す平面図、図6は図5の6−6線における断面図、図7は本発明の押圧部材を示す断面図、図8本発明の押圧部材を示す底面図、図9は本発明の弾性部材を示す平面図、図10は本発明の弾性部材を示す正面面、図11は本発明の多方向入力装置の傾倒動作を説明する断面図、図12は本発明の多方向入力装置の傾倒動作を説明する断面図、図13は本発明の多方向入力装置の押圧動作を説明する断面図である。   Embodiments of the present invention are shown in FIGS. 1 is an exploded perspective view showing a multidirectional input device of the present invention, FIG. 2 is a sectional view showing the multidirectional input device of the present invention, FIG. 3 is a plan view showing an upper case of the present invention, and FIG. FIG. 5 is a plan view showing the lower case of the present invention, FIG. 6 is a sectional view taken along line 6-6 in FIG. 5, FIG. 7 is a sectional view showing the pressing member of the present invention, and FIG. FIG. 9 is a plan view showing the elastic member of the present invention, FIG. 10 is a front view showing the elastic member of the present invention, and FIG. 11 explains the tilting operation of the multidirectional input device of the present invention. FIG. 12 is a sectional view for explaining the tilting operation of the multidirectional input device of the present invention, and FIG. 13 is a sectional view for explaining the pressing operation of the multidirectional input device of the present invention.

図1に示すように本発明の多方向入力装置は、傾倒及び押圧操作可能な操作軸1と、この操作軸1が挿通される開口部を有し、操作軸1の傾倒動作を検出する検出手段を構成する個別固定接点12が配設された上ケース2と、操作軸1の傾倒動作に伴って傾動して個別固定接点12と接離する可動接点板13を有する駆動体3と、プッシュスイッチの一部を構成する中央固定接点14a及び共通固定接点14bが配設された下ケース4と、操作軸1の押圧に伴って中央固定接点14aと接離する可動接片15を押圧する押圧部材5と、共通固定接点14bと可動接点板13との間に弾接され、可動接点板13及び駆動体3を個別固定接点12が配設された上ケース2の方向へ付勢するコイルばね9と、コードパターン16が設けられ、このコードパターン16と摺接する摺動子17を有する回転体7を回転可能に収容する中ケース6と、上ケース2と中ケース6及び下ケース4を一体的に重合させる取付板8とから主に構成されている。尚、上ケース2、中ケース6、下ケース4及び取付板8から、本発明の多方向入力装置の筺体が構成されている。   As shown in FIG. 1, the multidirectional input device of the present invention has an operation shaft 1 that can be tilted and pressed, and an opening through which the operation shaft 1 is inserted, and detects a tilting operation of the operation shaft 1. An upper case 2 provided with an individual fixed contact 12 constituting means, a drive body 3 having a movable contact plate 13 that is tilted in accordance with the tilting operation of the operation shaft 1 and contacts and separates from the individual fixed contact 12; The lower case 4 provided with the central fixed contact 14a and the common fixed contact 14b constituting a part of the switch, and the pressing that presses the movable contact 15 that contacts and separates from the central fixed contact 14a when the operating shaft 1 is pressed. A coil spring which is elastically contacted between the member 5 and the common fixed contact 14b and the movable contact plate 13 and biases the movable contact plate 13 and the driving body 3 toward the upper case 2 in which the individual fixed contact 12 is disposed. 9 and a code pattern 16 are provided. Mainly from an intermediate case 6 that rotatably accommodates a rotating body 7 having a slider 17 that is in sliding contact with a pattern 16, and an upper case 2, an attachment plate 8 that integrally superimposes the intermediate case 6 and the lower case 4. It is configured. Note that the upper case 2, the middle case 6, the lower case 4, and the mounting plate 8 constitute a housing of the multidirectional input device of the present invention.

図5、図6は下ケース4を示し、この下ケース4は合成樹脂等の絶縁材からなり、外形が略八角形状に形成されている。この下ケース4の中央には略円環状をした筒状のガイド壁4aが設けられている。また、筒状のガイド壁4aの一部には筒部の内側から外側に貫通する切り欠き部4bが設けられており、この切り欠き部4bを設けることでガイド壁4a内の空気の出入りを許容している。また、ガイド壁4aの外周部の下方には平坦面からなる略円環状の段部4cが設けられており、この段部4cと後述する押圧部材5の突出壁5aの先端部とが対向して配設されるものとなっている。また、下ケース4のそれぞれ直交する方向の対向する4辺部には、上下に貫通するガイド孔4dが設けられており、このガイド孔4dに後述する取付板8の取付脚8cが挿通されるものとなっている。   5 and 6 show the lower case 4, and the lower case 4 is made of an insulating material such as a synthetic resin and has an outer shape that is substantially octagonal. A cylindrical guide wall 4 a having a substantially annular shape is provided at the center of the lower case 4. Further, a part of the cylindrical guide wall 4a is provided with a notch 4b penetrating from the inside to the outside of the cylinder part. By providing this notch part 4b, air in and out of the guide wall 4a can be provided. Allowed. A substantially annular step 4c having a flat surface is provided below the outer peripheral portion of the guide wall 4a, and the step 4c and a tip of a protruding wall 5a of the pressing member 5 described below face each other. Are arranged. In addition, guide holes 4d penetrating vertically are provided in four opposite sides of the lower case 4 in the orthogonal direction, and mounting legs 8c of a mounting plate 8 to be described later are inserted into the guide holes 4d. It has become a thing.

また、ガイド壁4aの内側の平面(内底面)及び外側の外周平面は、下ケース4の平面(内底面)よりも一段低く凹状に形成されている。このガイド壁4aの内底面中央には、導電性の金属板からなる中央固定接点14aがその一部を表出してインサート成形などの方法で埋設されており、この中央固定接点14aの外側に対向して一対の共通固定接点14bが、同じく、その一部を表出してインサート成形などの方法で埋設されている。また、この共通固定接点14bは、ガイド壁4aの外周平面にも導出され、円弧状の共通固定接点14bを形成している。また、中央固定接点14a及び共通固定接点14bから導出した外部端子14cが下ケース4の外方に突出して設けられている。   In addition, the inner plane (inner bottom surface) and the outer outer peripheral plane of the guide wall 4a are formed in a concave shape that is one step lower than the plane (inner bottom surface) of the lower case 4. At the center of the inner bottom surface of the guide wall 4a, a central fixed contact 14a made of a conductive metal plate is partially exposed and embedded by a method such as insert molding, and is opposed to the outside of the central fixed contact 14a. Similarly, a pair of common fixed contacts 14b are partly exposed and embedded by a method such as insert molding. The common fixed contact 14b is also led to the outer peripheral plane of the guide wall 4a to form an arc-shaped common fixed contact 14b. Further, an external terminal 14 c led out from the central fixed contact 14 a and the common fixed contact 14 b is provided so as to protrude outward from the lower case 4.

また、ガイド壁4aの内底面に配設された中央固定接点14a及び共通固定接点14b上には、導電性の反転可能なドーム状の板ばねからなる可動接片15が配設されており、この時、可動接片15の外周縁部が共通固定接点14bに接触し、ドーム状の頂部中央が中央固定接点14aと対向した状態となっている。
また、ガイド壁4aの外周平面に配設された円弧状の共通固定接点14b上には、円環状の金属板からなるばね受11が載置されており、ガイド壁4aの外側には、ばね受11を介して導電性の金属製のコイルばね9の一端側が載置されている。そして、このコイルばね9の他端側は、同じく金属製のばね受11を介して、後述する駆動体3に設けられた導電性の金属板からなる可動接点板13と導通されるものとなっている。
Further, on the central fixed contact 14a and the common fixed contact 14b disposed on the inner bottom surface of the guide wall 4a, there is disposed a movable contact piece 15 made of a conductive inverting plate-shaped leaf spring, At this time, the outer peripheral edge portion of the movable contact piece 15 is in contact with the common fixed contact 14b, and the center of the dome-shaped top portion faces the central fixed contact 14a.
A spring receiver 11 made of an annular metal plate is placed on an arc-shaped common fixed contact 14b disposed on the outer peripheral plane of the guide wall 4a. A spring receiver 11 is placed outside the guide wall 4a. One end side of the conductive metal coil spring 9 is placed through the receiver 11. Then, the other end side of the coil spring 9 is electrically connected to a movable contact plate 13 made of a conductive metal plate provided on the driving body 3 described later through a metal spring receiver 11. ing.

図7,図8は押圧部材5を示し、この押圧部材5は合成樹脂等の絶縁材からなり、外形が円形で略円盤状に形成されている。この押圧部材5の外周部には図7の下方に向かって円環状をした筒状の突出壁5aが設けられており、また、図7の上方側の中央には押圧部材5の厚みの略半分程窪んだ円形状の凹部5bが設けられている。また、凹部5bの反対側である図7の下方側の中央には下方側に突出した押圧突起5cが設けられている。この押圧部材5は、下ケース4のガイド壁4a上に載置され、筒状の突出壁5aが筒状のガイド壁4aに案内されて押圧部材5が上下方向に摺動するものとなっている。   7 and 8 show the pressing member 5, which is made of an insulating material such as synthetic resin, and has a circular outer shape and a substantially disk shape. A cylindrical projecting wall 5a having an annular shape toward the lower side of FIG. 7 is provided on the outer peripheral portion of the pressing member 5, and the thickness of the pressing member 5 is approximately at the center on the upper side of FIG. A circular recess 5b that is recessed by about half is provided. Further, a pressing protrusion 5c protruding downward is provided at the center of the lower side of FIG. The pressing member 5 is placed on the guide wall 4a of the lower case 4, and the cylindrical protruding wall 5a is guided by the cylindrical guide wall 4a so that the pressing member 5 slides in the vertical direction. Yes.

また、この場合、筒状の突出壁5aの内径L1(図7参照)は、これと係合する筒状のガイド壁4aの外径L2(図6参照)よりも大きく形成されており、このため、押圧部材5の突出壁5aをガイド壁4aの外側に係合して配置することができ、ガイド壁4aの外壁と突出壁5aの内壁とにより安定した案内ができるものとなっている。
また、ガイド壁4aの先端部と押圧部材5の突出壁5aの内側の天面との間には、図9、図10に示すような金属製で環状のウエーブワッシャ等からなる弾性部材10が挿入されており、この弾性部材10により押圧部材5がガイド壁4aの壁面に沿って上方へ付勢されている。この弾性部材10の付勢力によって押圧部材5を介して後述する操作軸1が操作部側に付勢されており、操作軸1の軸線方向のガタを抑制するものとなっている。
In this case, the inner diameter L1 (see FIG. 7) of the cylindrical projecting wall 5a is formed larger than the outer diameter L2 (see FIG. 6) of the cylindrical guide wall 4a engaged therewith. For this reason, the protruding wall 5a of the pressing member 5 can be engaged with the outer side of the guide wall 4a and can be stably guided by the outer wall of the guide wall 4a and the inner wall of the protruding wall 5a.
Further, an elastic member 10 made of a metal, such as an annular wave washer as shown in FIGS. 9 and 10, is formed between the front end portion of the guide wall 4 a and the top surface inside the protruding wall 5 a of the pressing member 5. The pressing member 5 is urged upward by the elastic member 10 along the wall surface of the guide wall 4a. An operating shaft 1 to be described later is urged to the operation portion side via the pressing member 5 by the urging force of the elastic member 10, and the backlash in the axial direction of the operating shaft 1 is suppressed.

また、ガイド壁4aの外周部の下方には平坦面からなる略円環状の段部4cが設けられており、この段部4cと押圧部材5の突出壁5aの先端部とが対向して配設されており、操作軸1の押圧操作時に押圧部材5の突出壁5aの先端部が、ガイド壁4aの外周部の段部4cと当接することでそれ以上の移動を規制するストッパ部を構成している。
このために、操作軸1に軸線方向への過大な荷重が加えられても、押圧部材5が変形するのを防止できると共に、プッシュスイッチの可動接片15に過大な力が作用するのを防止することができるものとなっている。
A substantially annular step 4c having a flat surface is provided below the outer peripheral portion of the guide wall 4a. The step 4c and the tip of the protruding wall 5a of the pressing member 5 are opposed to each other. A stopper portion is provided that restricts further movement when the distal end portion of the protruding wall 5a of the pressing member 5 abuts on the step portion 4c of the outer peripheral portion of the guide wall 4a when the operating shaft 1 is pressed. is doing.
For this reason, even if an excessive load is applied to the operation shaft 1 in the axial direction, it is possible to prevent the pressing member 5 from being deformed and to prevent an excessive force from acting on the movable contact piece 15 of the push switch. It has become something that can be done.

中ケース6は、合成樹脂等の絶縁材からなり、同じく外形が略八角形状に形成されている。この中ケース6は上面開口の箱状に形成され、その内底部中央には円形の窓口6aが設けられている。また、この窓口6aの周面の内底面には、適宜、所定のピッチでその一部が表出して埋設された導電性の金属板からなるコードパターン16が配設されている。また、中ケース6の開口内には、このコードパターン16に摺接する弾性を有する金属薄板からなる摺動子17が固着された回転体7が回転可能に収容されている。   The middle case 6 is made of an insulating material such as synthetic resin, and has an outer shape that is substantially octagonal. The middle case 6 is formed in a box shape having an upper opening, and a circular window 6a is provided at the center of the inner bottom portion. Further, on the inner bottom surface of the peripheral surface of the window 6a, a code pattern 16 made of a conductive metal plate, which is partly exposed and embedded at a predetermined pitch, is disposed as appropriate. Further, in the opening of the middle case 6, a rotating body 7 to which a slider 17 made of a thin metal plate having elasticity that comes into sliding contact with the code pattern 16 is fixed is rotatably accommodated.

回転体7は、合成樹脂等の絶縁材で中央に窓口7aを有する円環状に形成されており、その上面側には複数の凹凸からなるクリック用のカム7bと、後述する駆動体3の係合凹部3dと嵌合して共回り可能となる一対の係合突起7cが形成されている。また、その反対側である下面側には摺動子17が固着されており、この摺動子17がコードパターン16と接触した状態で回転体7が中ケース6の開口内に回転可能に収容されている。また、コードパターン16から導出した外部端子16aが中ケース6の外方に突出して設けられている。
この中ケース6は、中央の窓口6aに、下ケース4の筒状のガイド壁4a、押圧部材5、及びコイルばね9が挿通された状態で、下ケース4の上面側に一体的に嵌合されている。
The rotating body 7 is made of an insulating material such as synthetic resin and is formed in an annular shape having a window 7a in the center, and a click cam 7b formed of a plurality of projections and depressions on the upper surface side of the rotating body 7 and a driving body 3 described later. A pair of engaging projections 7c are formed which can be fitted together with the mating recess 3d to be rotated together. Further, a slider 17 is fixed to the opposite lower surface side, and the rotating body 7 is rotatably accommodated in the opening of the middle case 6 with the slider 17 in contact with the cord pattern 16. Has been. An external terminal 16 a derived from the code pattern 16 is provided so as to protrude outward from the middle case 6.
The middle case 6 is integrally fitted to the upper surface side of the lower case 4 with the cylindrical guide wall 4a, the pressing member 5 and the coil spring 9 of the lower case 4 inserted in the central window 6a. Has been.

図3、図4は上ケース2を示し、この上ケース2は合成樹脂等の絶縁材からなり、外形が略八角形状に形成されている。この上ケース2の中央には上方へ突出する円筒状の軸受け部2aが設けられており、この軸受け部2aの中央には上下に貫通する開口部2bが設けられている。この開口部2bは、上方側のやや小径の小径部2cとこの小径部2cの下方側に連接するやや大径の大径部2dとから形成されている。また、小径部2cは、上下方向(開口部2bに挿通される操作軸1の軸線方向)に所定の厚みを有して設けられており、対向する4方向へそれぞれ窪み部2eを有する略十字状に形成され、それぞれの窪み部2eの間には、操作軸1に沿って長尺状に設けられた複数の突堤2fが形成されている。   3 and 4 show the upper case 2, and the upper case 2 is made of an insulating material such as synthetic resin and has an outer shape that is substantially octagonal. A cylindrical bearing portion 2a protruding upward is provided at the center of the upper case 2, and an opening portion 2b penetrating vertically is provided at the center of the bearing portion 2a. The opening 2b is formed of a slightly smaller diameter small diameter portion 2c on the upper side and a slightly larger diameter large diameter portion 2d connected to the lower side of the small diameter portion 2c. The small-diameter portion 2c is provided with a predetermined thickness in the vertical direction (the axial direction of the operation shaft 1 inserted through the opening 2b), and has a substantially cross shape having recesses 2e in the four opposing directions. A plurality of jetties 2f provided in a long shape along the operation shaft 1 are formed between the respective recessed portions 2e.

このように、操作軸1に沿って長尺状に複数の突堤2fを設けることにより、これらの突堤2fによって操作軸1が窪み部2e以外の方向へ傾倒するのが規制されるので、操作軸1の所定方向以外への傾倒操作を確実に規制することができるものとなっている。この場合、突堤2fは、操作軸1の軸線方向に沿って長尺状に形成されているので、幅広の突堤2fにより操作軸1が軸線方向に沿って規制されることからより確実に規制することができるものとなる。   Thus, by providing a plurality of elongated jetty 2f along the operation shaft 1, the tilting of the operation shaft 1 in a direction other than the recess 2e is restricted by the jetty 2f. The tilting operation in directions other than the predetermined direction of 1 can be reliably controlled. In this case, since the jetty 2f is formed in an elongated shape along the axial direction of the operating shaft 1, the operating shaft 1 is regulated along the axial direction by the wide jetty 2f, so that the jetty is more reliably regulated. Will be able to.

また、上ケース2の軸受け部2aの外側の上面側には、上方へ突出する一対のガイド突起2gが設けられており、このガイド突起2gに後述する取付板8のガイド孔8dが挿通されて位置決めされるものとなっている。
また、これと反対側の上ケース2の下面側には、導電性の金属板からなる複数の個別固定接点12、12がその一部を表出させてインサート成形等の方向で一体に埋設されている。この個別固定接点12は、操作軸1の傾倒方向であるそれぞれの窪み部2eが設けられた十字状の位置に対応して4箇所にそれぞれ設けられている。また、個別固定接点12から導出した外部端子12aが上ケース2の外方に突出して設けられている。また、個別固定接点12の内側で開口部2bの外周縁には、下方に突出した環状の突条部2hが設けられている。
Further, a pair of guide protrusions 2g protruding upward are provided on the outer upper surface side of the bearing portion 2a of the upper case 2, and guide holes 8d of a mounting plate 8 described later are inserted into the guide protrusions 2g. It is to be positioned.
A plurality of individual fixed contacts 12, 12 made of a conductive metal plate are exposed on the lower surface side of the upper case 2 on the opposite side, and are partially embedded in the direction of insert molding or the like. ing. The individual fixed contacts 12 are provided at four positions corresponding to the cross-shaped positions where the respective recessed portions 2e that are the tilting directions of the operation shaft 1 are provided. An external terminal 12 a led out from the individual fixed contact 12 is provided so as to protrude outward from the upper case 2. In addition, an annular ridge 2h protruding downward is provided on the outer peripheral edge of the opening 2b inside the individual fixed contact 12.

また、上ケース2の下面側には、個別固定接点12の外側の位置に弾性を有する薄板金属板からなる環状のクリック用板ばね18が固着されている。このクリック用板ばね18が、中ケース6の開口内に回転可能に収容された回転体7の上面側に形成されたクリック用のカム7bと摺接することにより、操作軸1の回転操作時のクリック感触が得られるものとなっている。   An annular click leaf spring 18 made of a thin metal plate having elasticity is fixed to the lower surface side of the upper case 2 at a position outside the individual fixed contact 12. The click leaf spring 18 is in sliding contact with the click cam 7b formed on the upper surface side of the rotating body 7 rotatably accommodated in the opening of the middle case 6, so that the operating shaft 1 can be rotated. A click feeling can be obtained.

操作軸1は、合成樹脂等の絶縁材からなり、略円柱状の操作部1aと、この操作部1aより大径の小判状の鍔部1bとを有している。また、鍔部1bの先端側には円弧状の押圧部1cが設けられており、この押圧部1cが押圧部材5の上面側に設けられた凹部5b内に収容されて、凹部5bの内底面と当接した状態で配置されている。このように、操作軸1の押圧部1cが凹部5b内に収容されていることから、押圧部材5に筒状の突出壁5aを設けた場合においても全体の厚さを薄く形成できるので、装置の薄型化を図ることが可能となっている。   The operation shaft 1 is made of an insulating material such as a synthetic resin, and has a substantially cylindrical operation portion 1a and an oval collar portion 1b having a larger diameter than the operation portion 1a. Further, an arcuate pressing portion 1c is provided on the distal end side of the flange portion 1b. The pressing portion 1c is accommodated in a recess 5b provided on the upper surface side of the pressing member 5, and the inner bottom surface of the recess 5b. It is arranged in a state in contact with. As described above, since the pressing portion 1c of the operating shaft 1 is accommodated in the recess 5b, even when the pressing member 5 is provided with the cylindrical protruding wall 5a, the entire thickness can be reduced, so that the device It is possible to reduce the thickness.

駆動体3は、合成樹脂等の絶縁材からなる略円筒状の基部3aの外周部に、円形状の導電性の金属板からなる可動接点板13の上面側および下面側の周縁部の一部を表出した状態でインサート成形等の方法で一体に埋設して形成されている。また、この駆動体3の基部3aには、円形の挿通孔3b及び小判形の嵌合孔3cが設けられており、円形の挿通孔3bに操作軸1の操作部1aが挿通され、小判形の嵌合孔3cに鍔部1bが嵌入された状態で、操作軸1と駆動体3とが一体的に係合されている。そして、駆動体3は操作軸1に、操作軸1の軸線方向には単独で移動可能で、操作軸1の回転方向には共回り可能なように係合されている。   The driving body 3 has a peripheral portion of a substantially cylindrical base portion 3a made of an insulating material such as a synthetic resin, and a part of a peripheral portion on the upper surface side and the lower surface side of the movable contact plate 13 made of a circular conductive metal plate. In the state where it is exposed, it is embedded and formed by a method such as insert molding. The base 3a of the drive body 3 is provided with a circular insertion hole 3b and an oval fitting hole 3c. The operation portion 1a of the operating shaft 1 is inserted into the circular insertion hole 3b, and the oval shape is formed. The operating shaft 1 and the driving body 3 are integrally engaged with the fitting hole 3c in a state where the flange portion 1b is fitted. The driving body 3 is engaged with the operating shaft 1 so that it can move independently in the axial direction of the operating shaft 1 and can rotate in the rotational direction of the operating shaft 1.

この操作軸1及び駆動体3は、上ケース2の軸受け部2aに設けられた開口部2bに挿通され、図2に示すように、駆動体3の可動接点板13の下面側が、ばね受11を介してコイルばね9によって上方に付勢されており、可動接点板13の上面側と上ケース2の下面側に表出された複数の個別固定接点12とが対向された状態で配設されている。この時、可動接点板13の上面側は、上ケース2の下面側に設けられた環状の突条部2hと当接され、個別固定接点12とは離間された状態となっている。   The operating shaft 1 and the driving body 3 are inserted into an opening 2b provided in the bearing portion 2a of the upper case 2, and the lower surface side of the movable contact plate 13 of the driving body 3 is connected to a spring receiver 11 as shown in FIG. And is urged upward by a coil spring 9, and is arranged in a state where a plurality of individual fixed contacts 12 exposed on the upper surface side of the movable contact plate 13 and the lower surface side of the upper case 2 face each other. ing. At this time, the upper surface side of the movable contact plate 13 is in contact with an annular protrusion 2 h provided on the lower surface side of the upper case 2 and is separated from the individual fixed contact 12.

また、駆動体3の外周縁部の対向する位置には、一対の係合凹部3dが設けられており、この係合凹部3dと、回転体7の上面側に設けられた係合突起7cが係合することにより、操作軸1の回転操作に伴って、共回りする駆動体3を介して回転体7が回転されるものとなっている。この時、回転体7に固着された摺動子17が中ケース6に設けられたコードパターン16と摺接することにより、コード信号出力が得られ回転検出を行うようになっている。(図1及び図2参照)   Further, a pair of engaging recesses 3 d are provided at positions facing the outer peripheral edge of the driving body 3, and the engaging recesses 3 d and an engaging protrusion 7 c provided on the upper surface side of the rotating body 7 are provided. By engaging, the rotating body 7 is rotated through the driving body 3 that rotates together with the rotation operation of the operation shaft 1. At this time, the slider 17 fixed to the rotating body 7 is in sliding contact with the code pattern 16 provided in the middle case 6, whereby a code signal output is obtained and rotation detection is performed. (See Fig. 1 and Fig. 2)

また、操作軸1の操作部1aは軸線方向と直交する所定方向(本実施例では十字状の4方向)に傾倒動作可能で、かつ、軸線方向に押圧動作可能に設けられている。この時、操作軸1は、操作部1aが軸受け部2aの開口部2b(小径部2c)の対向する4方向に設けられたそれぞれの窪み部2eに沿って十字方向に傾倒動作可能となっている(図3参照)。また、操作軸1は、操作部1aが駆動体3の挿通孔3bに沿って押圧動作可能となっている。   Further, the operation portion 1a of the operation shaft 1 is provided so as to be able to tilt in a predetermined direction (four cross-shaped directions in the present embodiment) orthogonal to the axial direction and to be capable of pressing in the axial direction. At this time, the operation shaft 1 can be operated to tilt the operation portion 1a in the cross direction along the respective recessed portions 2e provided in the four directions opposed to the opening 2b (small diameter portion 2c) of the bearing portion 2a. (See FIG. 3). Further, the operation shaft 1 can be pressed by the operation portion 1 a along the insertion hole 3 b of the drive body 3.

取付板8は、金属板からなり、中央に挿通孔8bを有する環状の基板部8aと、この基板部8aのそれぞれ対向する4箇所の周縁部から折り曲げ形成された取付脚8cとを有している。また、基板部8aには円と楕円形状からなる一対のガイド孔8dが設けられている。
この取付板8は、下ケース4と中ケース6と上ケース2がそれぞれ重ねられて一体的に係合される際に、中央の挿通孔8bに上ケース2の軸受け部2aが挿通されて上面側から冠着され、一対のガイド孔8dが一対の上ケース2のガイド突起2gに嵌合されると共に、4個の取付脚8cが下ケース4の対向する4辺部に設けられたガイド孔4dに挿入され、その先端がかしめられることにより、上ケース2と中ケース6と下ケース4を一体的に係合して筺体を構成するものとなっている。そして、一体的に係合された筺体の内部に形成される収納部に、可動接片15、弾性部材10、押圧部材5、ばね受11、コイルばね9、及び操作軸1が挿通された駆動体3がそれぞれ収容されている。
The mounting plate 8 is made of a metal plate, and includes an annular substrate portion 8a having an insertion hole 8b in the center, and mounting legs 8c formed by bending from the four peripheral edges of the substrate portion 8a. Yes. The substrate portion 8a is provided with a pair of guide holes 8d made of a circle and an ellipse.
When the lower case 4, the middle case 6, and the upper case 2 are overlapped and integrally engaged with each other, the mounting plate 8 is inserted into the center insertion hole 8 b through the bearing portion 2 a of the upper case 2. A pair of guide holes 8d are fitted to the guide projections 2g of the pair of upper cases 2 and the four mounting legs 8c are provided on the four opposing sides of the lower case 4 By being inserted into 4d and crimped at its tip, the upper case 2, the middle case 6 and the lower case 4 are integrally engaged to form a housing. The movable contact piece 15, the elastic member 10, the pressing member 5, the spring receiver 11, the coil spring 9, and the operation shaft 1 are inserted into the housing portion formed inside the integrally engaged housing. Each body 3 is accommodated.

次に、図11乃至図13を用いて本発明の多方向入力装置の傾倒及び押圧動作について説明する。
図11は、操作軸1の操作部1aを、図示左側に若干傾倒させた状態を示している。この時、操作軸1と一体的に係合された駆動体3は、コイルばね9の付勢力に抗して、図示右側の上ケース2の下面側に設けられた突条部2hを支点として反時計方向に回転するものとなり、図示左側の可動接点板13の先端と図示左側の個別固定接点12との間隔が大きくなると共に、これとは反対側に位置する図示右側の可動接点板13の先端と図示右側の個別固定接点12とが接触することにより、可動接点板13とコイルばね9とばね受11を介して個別固定接点12と共通固定接点14bがオン状態となることから、操作軸1の傾倒方向の検出が行われるものとなる。
この場合、操作軸1の先端の押圧部1cにより、押圧部材5の上面側に設けられた凹部5bの内底面が押され、押圧部材5が若干押し下げられるが、下方に配設されたプッシュスイッチ用のドーム状の可動接片15は反転されず、プッシュスイッチはオフ状態を維持している。
Next, the tilting and pressing operation of the multidirectional input device of the present invention will be described with reference to FIGS.
FIG. 11 shows a state where the operation portion 1a of the operation shaft 1 is slightly tilted to the left side in the drawing. At this time, the driving body 3 integrally engaged with the operation shaft 1 resists the urging force of the coil spring 9 and uses the protrusion 2h provided on the lower surface side of the upper case 2 on the right side of the drawing as a fulcrum. It rotates in the counterclockwise direction, and the distance between the tip of the movable contact plate 13 on the left side of the figure and the individual fixed contact 12 on the left side of the figure is increased, and the movable contact plate 13 on the right side of the figure located on the opposite side of this is When the tip and the individual fixed contact 12 on the right side in the drawing come into contact with each other, the individual fixed contact 12 and the common fixed contact 14 b are turned on via the movable contact plate 13, the coil spring 9 and the spring receiver 11. The tilt direction of 1 is detected.
In this case, the inner bottom surface of the concave portion 5b provided on the upper surface side of the pressing member 5 is pushed by the pressing portion 1c at the tip of the operating shaft 1, and the pressing member 5 is pushed down slightly. The dome-shaped movable contact piece 15 is not inverted, and the push switch is maintained in the off state.

次に、図11の状態から、図12に示すように更に操作軸1の操作部1aを図示左側に傾倒させると、今度は、図示右側の可動接点板13の先端と図示右側の個別固定接点12とが接触した状態のまま、この接触部を支点として駆動体3が更に反時計方向に回転するものとなり、操作軸1の先端の押圧部1cにより、押圧部材5の上面側に設けられた凹部5bの内底面が更に下方に押され、押圧部材5が押し下げられることにより、下方に配設されたプッシュスイッチ用のドーム状の可動接片15が反転して、ドーム状の頂部下面と中央固定接点14aとが接触し、可動接片15を介して中央固定接点14aが共通固定接点14bと導通してオン状態となることにより、傾倒方向における第2の検出が行われるものとなる。
尚、操作軸1の操作部1aを図示右側に傾倒させた場合においても、同様な動作となるためその説明を省略する。また、上記実施例では、4方向の傾倒動作について説明したが、本発明はこれに限定されずに、8方向などの多方向の傾倒動作にも適用できるのはもちろんである。
Next, when the operation portion 1a of the operation shaft 1 is further tilted to the left side as shown in FIG. 12 from the state shown in FIG. The drive body 3 is further rotated counterclockwise with the contact portion as a fulcrum while being in contact with the contact portion 12, and is provided on the upper surface side of the pressing member 5 by the pressing portion 1 c at the tip of the operation shaft 1. When the inner bottom surface of the recess 5b is further pushed downward and the pressing member 5 is pushed down, the dome-shaped movable contact piece 15 for the push switch disposed below is inverted, and the bottom surface and the center of the dome-shaped top portion are reversed. When the fixed contact 14a comes into contact with the central fixed contact 14a and the common fixed contact 14b through the movable contact piece 15 and is turned on, the second detection in the tilt direction is performed.
It should be noted that even when the operation portion 1a of the operation shaft 1 is tilted to the right side in the figure, the same operation is performed, and thus the description thereof is omitted. In the above embodiment, the tilting operation in four directions has been described. However, the present invention is not limited to this, and it is needless to say that the tilting motion can be applied to multi-directional tilting operations such as eight directions.

図13は、操作軸1の操作部1aを、図示下側へ押圧した状態を示している。この時、駆動体3は移動されず、操作軸1のみが図示下側に移動するものとなり、操作軸1の先端の押圧部1cにより、押圧部材5の上面側に設けられた凹部5bの内底面が下方に押され、押圧部材5が押し下げられることにより、下方に配設されたプッシュスイッチ用のドーム状の可動接片15が反転して、ドーム状の頂部下面と中央固定接点14aとが接触し、可動接片15を介して中央固定接点14aが共通固定接点14bと導通してオン状態となることにより、操作軸1の押圧方向の検出が行われるものとなる。この時、傾倒動作を検出する検出手段である可動接点板13と個別固定接点12とは離間しておりオフ状態を維持している。   FIG. 13 shows a state where the operation portion 1a of the operation shaft 1 is pressed downward in the figure. At this time, the driving body 3 is not moved, and only the operating shaft 1 moves downward in the figure, and the inside of the concave portion 5b provided on the upper surface side of the pressing member 5 is pressed by the pressing portion 1c at the tip of the operating shaft 1. When the bottom surface is pushed downward and the pressing member 5 is pushed down, the dome-shaped movable contact piece 15 for the push switch disposed below is inverted, and the bottom surface of the dome-shaped top portion and the center fixed contact 14a are connected. When the central fixed contact 14a is brought into contact with the common fixed contact 14b through the movable contact piece 15 and is turned on, the pressing direction of the operation shaft 1 is detected. At this time, the movable contact plate 13, which is a detecting means for detecting the tilting operation, and the individual fixed contact 12 are separated from each other and are maintained in the off state.

この場合、押圧部材5は、下ケース4のガイド壁4a上に載置され、筒状の突出壁5aが筒状のガイド壁4aに案内されて押圧部材5が上下方向に摺動するものとなっており、押圧部材5の突出壁5aがガイド壁4aの外側に係合して配置されていることから、ガイド壁4aの外壁と突出壁5aの内壁とにより安定した案内ができるものとなっている。また、ガイド壁4aの先端部と押圧部材5の突出壁5aの内側の天面との間には、金属製で環状のウエーブワッシャ等からなる弾性部材10が挿入されており、この弾性部材10により押圧部材5がガイド壁4aの壁面に沿って上方へ付勢され、この弾性部材10の付勢力によって押圧部材5を介して操作軸1が操作部側に付勢されていることから、操作軸1の軸線方向のガタを抑制するものとなっている。   In this case, the pressing member 5 is placed on the guide wall 4a of the lower case 4, the cylindrical protruding wall 5a is guided by the cylindrical guide wall 4a, and the pressing member 5 slides in the vertical direction. Since the protruding wall 5a of the pressing member 5 is disposed so as to engage with the outside of the guide wall 4a, stable guidance can be performed by the outer wall of the guide wall 4a and the inner wall of the protruding wall 5a. ing. An elastic member 10 made of a metal and made of an annular wave washer or the like is inserted between the distal end portion of the guide wall 4a and the top surface inside the protruding wall 5a of the pressing member 5, and this elastic member 10 Thus, the pressing member 5 is urged upward along the wall surface of the guide wall 4a, and the operating shaft 1 is urged to the operation portion side via the pressing member 5 by the urging force of the elastic member 10. The backlash in the axial direction of the shaft 1 is suppressed.

また、ガイド壁4aの外周部の下方には平坦面からなる略円環状の段部4cが設けられており、この段部4cと押圧部材5の突出壁5aの先端部とが対向して配設されており、操作軸1の押圧操作時に押圧部材5の突出壁5aの先端部が、ガイド壁4aの外周部の段部4cと当接することでストッパーとなりそれ以上の移動を規制している。このために、操作軸1に軸線方向への過大な荷重が加えられても、押圧部材5が変形するのを防止できると共に、プッシュスイッチの可動接片15に過大な力が作用するのを防止することができるものとなっている。   A substantially annular step 4c having a flat surface is provided below the outer peripheral portion of the guide wall 4a. The step 4c and the tip of the protruding wall 5a of the pressing member 5 are opposed to each other. When the operating shaft 1 is pressed, the tip of the protruding wall 5a of the pressing member 5 comes into contact with the step 4c on the outer peripheral portion of the guide wall 4a to become a stopper and restrict further movement. . For this reason, even if an excessive load is applied to the operation shaft 1 in the axial direction, it is possible to prevent the pressing member 5 from being deformed and to prevent an excessive force from acting on the movable contact piece 15 of the push switch. It has become something that can be done.

上記した本発明の実施例によれば、下ケース4に収納されたプッシュスイッチの外側に可動接片15の外周を囲むように筒状のガイド壁4aを設けると共に、押圧部材5にこのガイド壁4aの外周面に案内される内周面を有する筒状の突出壁5aを設け、この突出壁5aとガイド壁4aとを係合させて押圧部材5を操作軸1の軸線方向に摺動可能に配設したことから、筒状のガイド壁4aに筒状の突出壁5aが案内されて押圧部材5が操作軸1の軸線方向に摺動するので、押圧部材5の案内が確実となり、プッシュスイッチの可動接片15を押圧する際に適切な位置をスムーズに押圧操作することができ、反転可能なドーム状の板ばねからなる可動接片15の反転動作が確実に行え、明確なクリック感触を得ることができるものとなっている。   According to the embodiment of the present invention described above, the cylindrical guide wall 4a is provided outside the push switch housed in the lower case 4 so as to surround the outer periphery of the movable contact piece 15, and the guide member is provided on the pressing member 5. A cylindrical protruding wall 5a having an inner peripheral surface guided by the outer peripheral surface of 4a is provided, and the pressing member 5 can be slid in the axial direction of the operation shaft 1 by engaging the protruding wall 5a and the guide wall 4a. Since the cylindrical projecting wall 5a is guided by the cylindrical guide wall 4a and the pressing member 5 slides in the axial direction of the operating shaft 1, the pressing member 5 is reliably guided and pushed. When pressing the movable contact piece 15 of the switch, an appropriate position can be smoothly pushed, the reversing operation of the movable contact piece 15 made of a reversible dome-shaped leaf spring can be performed reliably, and a clear click feeling Has become something that can get

本発明の多方向入力装置を示す分解斜視図である。It is a disassembled perspective view which shows the multidirectional input device of this invention. 本発明の多方向入力装置を示す断面図である。It is sectional drawing which shows the multidirectional input device of this invention. 本発明の上ケースを示す平面図である。It is a top view which shows the upper case of this invention. 本発明の上ケースを示す底面図である。It is a bottom view which shows the upper case of this invention. 本発明の下ケースを示す平面図である。It is a top view which shows the lower case of this invention. 本発明の図5の6−6線における断面図である。It is sectional drawing in the 6-6 line | wire of FIG. 5 of this invention. 本発明の押圧部材を示す断面図である。It is sectional drawing which shows the pressing member of this invention. 本発明の押圧部材を示す底面図である。It is a bottom view which shows the press member of this invention. 本発明の弾性部材を示す平面図である。It is a top view which shows the elastic member of this invention. 本発明の弾性部材を示す正面面である。It is a front surface which shows the elastic member of this invention. 本発明の多方向入力装置の傾倒動作を説明する断面図である。It is sectional drawing explaining the tilting operation | movement of the multidirectional input device of this invention. 本発明の多方向入力装置の傾倒動作を説明する断面図である。It is sectional drawing explaining the tilting operation | movement of the multidirectional input device of this invention. 本発明の多方向入力装置の押圧動作を説明する断面図である。It is sectional drawing explaining the pressing operation of the multidirectional input device of this invention. 従来の多方向入力装置を示す断面図である。It is sectional drawing which shows the conventional multidirectional input device. 従来の多方向入力装置を示す分解斜視図である。It is a disassembled perspective view which shows the conventional multidirectional input device.

符号の説明Explanation of symbols

1:操作軸
1a:操作部
1b:鍔部
1c:押圧部
2:上ケース
2a:軸受け部
2b:開口部
2c:小径部
2d:大径部
2e:窪み部
2f:突堤
2g:ガイド突起
2h:突条部
3:駆動体
3a:基部
3b:挿通孔
3c:嵌合孔
3d:係合凹部
4:下ケース
4a:ガイド壁
4b:切り欠き部
4c:段部
4d:ガイド孔
5:押圧部材
5a:突出壁
5b:凹部
5c:押圧突起
6:中ケース
6a:窓口
7:回転体
7a:窓口
7b:カム
7c:係合突起
8:取付板
8a:基板部
8b:挿通孔
8c:取付脚
8d:ガイド孔
9:コイルばね
10:弾性部材
11:ばね受
12:個別固定接点
12a:外部端子
13:可動接点板
14a:中央固定接点
14b:共通固定接点
14c:外部端子
15:可動接片
16:コードパターン
16a:外部端子
17:摺動子
18:クリック用板ばね
1: Operation shaft 1a: Operation portion 1b: Gutter portion 1c: Pressing portion 2: Upper case 2a: Bearing portion 2b: Opening portion 2c: Small diameter portion 2d: Large diameter portion 2e: Depression portion 2f: Jetty 2g: Guide protrusion 2h: Projection part 3: Drive body 3a: Base part 3b: Insertion hole 3c: Fitting hole 3d: Engaging recess part 4: Lower case 4a: Guide wall 4b: Notch part 4c: Step part 4d: Guide hole 5: Pressing member 5a : Protruding wall 5b: Concave part 5c: Pressing protrusion 6: Middle case 6a: Window 7: Rotating body 7a: Window 7b: Cam 7c: Engaging protrusion 8: Mounting plate 8a: Substrate part 8b: Insertion hole 8c: Mounting leg 8d: Guide hole 9: Coil spring 10: Elastic member 11: Spring support 12: Individual fixed contact 12a: External terminal 13: Movable contact plate 14a: Center fixed contact 14b: Common fixed contact 14c: External terminal 15: Movable contact 16: Cord The pattern 16a: external terminal 17: slider 18: leaf spring for click

Claims (7)

収納部及びこの収納部に連通する開口部を有する筺体と、この筺体の前記開口部から一端側が突出されると共に、多方向に傾倒動作可能でかつ軸線方向に押圧動作可能に前記収納部内に他端側が収容された操作軸と、前記収納部に配設され前記操作軸の傾倒動作を検出する検出手段と、前記収納部に配設され前記操作軸の傾倒動作及び押圧動作に伴って操作される反転可能なドーム状の板ばねからなる可動接片及び該可動接片と接離する中央固定接点とを有するプッシュスイッチと、このプッシュスイッチと前記操作軸の他端側との間に配設され前記プッシュスイッチを押圧操作する押圧部材とを備え、前記収納部内の前記プッシュスイッチの外側に前記可動接片の外周を囲むように筒状のガイド壁を設けると共に、前記押圧部材に前記ガイド壁の外周面に案内される内周面を有する筒状の突出壁を設け、この突出壁と前記ガイド壁とを係合させて前記押圧部材を前記操作軸の軸線方向に摺動可能に配設したことを特徴とする多方向入力装置。   A housing having an accommodating portion and an opening communicating with the accommodating portion, and one end projecting from the opening of the housing, and can be tilted in multiple directions and pressed in the axial direction. An operation shaft in which the end side is accommodated, a detection unit that is disposed in the storage unit and detects a tilting operation of the operation shaft, and is operated in accordance with a tilting operation and a pressing operation of the operation shaft that is disposed in the storage unit. A push switch having a movable contact piece made of a reversible dome-shaped leaf spring and a central fixed contact contacting and moving away from the movable contact piece, and disposed between the push switch and the other end side of the operation shaft. And a pressing member for pressing the push switch, and a cylindrical guide wall is provided on the outer side of the push switch in the storage portion so as to surround the outer periphery of the movable contact piece. A cylindrical protruding wall having an inner peripheral surface guided by the outer peripheral surface of the wall is provided, and the pressing member is slidable in the axial direction of the operation shaft by engaging the protruding wall and the guide wall. A multidirectional input device characterized by being provided. 前記ガイド壁と前記押圧部材との間に弾性部材を設け、この弾性部材により前記押圧部材を介して前記操作軸をその操作部側に付勢するようにしたことを特徴とする請求項1記載の多方向入力装置。   The elastic member is provided between the guide wall and the pressing member, and the operating shaft is urged toward the operating portion by the elastic member via the pressing member. Multi-directional input device. 前記ガイド壁に該ガイド壁の内側から外側に貫通する切り欠き部を設けたことを特徴とする請求項1、又は2記載の多方向入力装置。   The multidirectional input device according to claim 1, wherein the guide wall is provided with a notch that penetrates from the inside to the outside of the guide wall. 前記ガイド壁部と前記押圧部材に、前記操作軸の軸線方向に対向する面を形成し、この対向する面に前記押圧部材の軸線方向の移動を規制するストッパ部を設けたことを特徴とする請求項1乃至3の何れかに記載の多方向入力装置。   A surface facing the axial direction of the operation shaft is formed on the guide wall portion and the pressing member, and a stopper portion for restricting movement of the pressing member in the axial direction is provided on the facing surface. The multidirectional input device according to claim 1. 前記押圧部材には、前記操作軸の他端側と対向する前記突出壁の中央に、前記操作軸の他端側端部を収容する凹部が設けられていることを特徴とする請求項1乃至4の何れかに記載の多方向入力装置。   2. The pressing member is provided with a recess that accommodates the other end of the operation shaft at the center of the protruding wall facing the other end of the operation shaft. The multidirectional input device according to any one of 4. 前記操作軸は、前記開口部内の所定方向に傾倒可能であり、前記操作軸が所定方向以外の方向に傾倒するのを規制する規制部を前記開口部内に設け、該規制部を前記操作軸に沿って設けられた複数の突堤で形成したことを特徴とする請求項1乃至5の何れかに記載の多方向入力装置。   The operation shaft is tiltable in a predetermined direction in the opening, and a restricting portion for restricting the operation shaft from tilting in a direction other than the predetermined direction is provided in the opening, and the restricting portion is provided on the operation shaft. The multidirectional input device according to any one of claims 1 to 5, wherein the multidirectional input device is formed of a plurality of jetty provided along. 前記検出手段は、前記収納部に設けられた共通固定接点及び個別固定接点と、前記操作軸の傾倒動作に伴って傾動する駆動体に設けられ、前記個別固定接点と接離する可動接点板と、この可動接点板と前記共通固定接点との間に弾接され、前記共通固定接点と前記可動接点板とを導通させると共に、前記可動接点板を前記個別固定接点側に付勢するコイルばねとからなることを特徴とする請求項1乃至6の何れかに記載の多方向入力装置。   The detection means includes a common fixed contact and an individual fixed contact provided in the storage unit, a movable contact plate that is provided in a drive body that is tilted in accordance with a tilting operation of the operation shaft, and that contacts and separates from the individual fixed contact. A coil spring which is elastically contacted between the movable contact plate and the common fixed contact, electrically connects the common fixed contact and the movable contact plate, and biases the movable contact plate toward the individual fixed contact side; The multidirectional input device according to claim 1, comprising:
JP2006160759A 2006-06-09 2006-06-09 Multidirectional input device Withdrawn JP2007329070A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013097910A (en) * 2011-10-28 2013-05-20 Teikoku Tsushin Kogyo Co Ltd Rotary electronic component
CN104036997A (en) * 2013-03-08 2014-09-10 欧姆龙株式会社 Switch
CN111240396A (en) * 2020-01-21 2020-06-05 连云港杰瑞电子有限公司 Spherical surface sealed two-dimensional degree of freedom operating lever and operating method
CN112306144A (en) * 2020-10-27 2021-02-02 连云港杰瑞电子有限公司 Arbitrary parking type spherical two-dimensional degree of freedom operating lever and operating method

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013097910A (en) * 2011-10-28 2013-05-20 Teikoku Tsushin Kogyo Co Ltd Rotary electronic component
CN104036997A (en) * 2013-03-08 2014-09-10 欧姆龙株式会社 Switch
EP2775497A1 (en) * 2013-03-08 2014-09-10 Omron Corporation Switch
KR20140110731A (en) * 2013-03-08 2014-09-17 오므론 가부시키가이샤 Switch
KR101602550B1 (en) * 2013-03-08 2016-03-10 오므론 가부시키가이샤 Switch
CN104036997B (en) * 2013-03-08 2016-03-23 欧姆龙株式会社 Switch
US9362066B2 (en) 2013-03-08 2016-06-07 Omron Corporation Switch
CN111240396A (en) * 2020-01-21 2020-06-05 连云港杰瑞电子有限公司 Spherical surface sealed two-dimensional degree of freedom operating lever and operating method
CN111240396B (en) * 2020-01-21 2021-09-03 连云港杰瑞电子有限公司 Spherical surface sealed two-dimensional degree of freedom operating lever and operating method
CN112306144A (en) * 2020-10-27 2021-02-02 连云港杰瑞电子有限公司 Arbitrary parking type spherical two-dimensional degree of freedom operating lever and operating method
CN112306144B (en) * 2020-10-27 2021-12-14 连云港杰瑞电子有限公司 Arbitrary parking type spherical two-dimensional degree of freedom operating lever and operating method

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