JP4034192B2 - Operation button device - Google Patents

Operation button device Download PDF

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Publication number
JP4034192B2
JP4034192B2 JP2003001477A JP2003001477A JP4034192B2 JP 4034192 B2 JP4034192 B2 JP 4034192B2 JP 2003001477 A JP2003001477 A JP 2003001477A JP 2003001477 A JP2003001477 A JP 2003001477A JP 4034192 B2 JP4034192 B2 JP 4034192B2
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JP
Japan
Prior art keywords
operation button
annular pedestal
emitting element
light
light emitting
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
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JP2003001477A
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Japanese (ja)
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JP2004214100A (en
Inventor
祐輔 五月女
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ペンタックス株式会社
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Priority to JP2003001477A priority Critical patent/JP4034192B2/en
Priority to TW092136693A priority patent/TWI237282B/en
Priority to US10/750,811 priority patent/US6855899B2/en
Priority to CN200410000317.1A priority patent/CN1261953C/en
Publication of JP2004214100A publication Critical patent/JP2004214100A/en
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Publication of JP4034192B2 publication Critical patent/JP4034192B2/en
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Description

【0001】
【技術分野】
本発明は、操作ボタン装置に関し、特に操作ボタンの周囲の環状台座を発光させる操作ボタン装置に関する。
【0002】
【従来技術及びその問題点】
カメラ等の電子機器において、例えば電源がオンであることを表示するために、操作ボタンの周囲に位置させた環状台座を光らせる操作ボタン装置が知られている。従って、環状台座は導光性樹脂材料からなっており、この導光性環状台座に、発光素子(LED)からの光を直接または間接に導いている。
【0003】
しかしながら従来装置は、発光素子からの光を十分に環状台座に導くことができず、明るさにむらが生じるという問題があった。特に発光素子を環状台座の中心に置くことができない場合にこの問題が大きい。
【0004】
【特許文献】
特開2002-208326号公報
【0005】
【発明の目的】
本発明は、押しボタン周囲の環状台座を効率的に照明できる操作ボタン装置を得ることを目的とする。特に発光素子を環状台座中心からオフセットさせて配置せざるを得ない場合にも、環状台座をより均一に照明できる操作ボタン装置を得ることを目的とする。
【0006】
【発明の概要】
本発明は、反射シートを用いて発光素子からの光を環状台座に導くにつき、反射シートの好ましい形状を研究してなされたものである。
すなわち本発明は、導光性樹脂材料からなり機器本体に固定される環状をなす台座;この環状台座内に押圧操作可能に設けられた操作ボタン;及び環状台座に光を与える発光素子;を有する操作ボタン装置において、上記発光素子と環状台座との間の空間の側部に、円柱状コンデンサの外面一部からなる凸シリンダ面を、前記円柱状コンデンサの軸線が前記発光素子と環状台座の並び方向と略平行な方向を向き、前記凸シリンダ面の断面における接線と直交する方向が概ね環状台座及び操作ボタンに向く方向に配置し、この凸シリンダ面に反射シートを添着したことを特徴としている。
以上のような凸シリンダ面を設けてその上に反射シートを添着すると、発光素子からの光を効率的に環状台座に与えることができる。
【0007】
凸シリンダ面を構成する円柱面の半径は、発光素子と操作ボタンとの間隔の数倍以上と大きくすることが好ましい。また操作ボタンは、導光性樹脂材料からなるボタン本体と、このボタン本体の頭部を覆う遮光材料からなるキャップ部材とから構成すると、発光素子からの直接光、あるいは反射シートからの反射光をボタン本体を通して環状台座に与えることができる。
【0008】
凸シリンダ面は、機器本体がカメラの場合、内蔵ストロボ用に必須のコンデンサを円柱形コンデンサとし、この円柱形コンデンサの外面一部によって構成することが可能である。
【0009】
【発明の実施形態】
図示実施形態は、カメラの電源スイッチに本発明を適用した例である。カメラ10の上面カバー部材11には、円形開口12(図3、図5、図6参照)が形成されており、この円形開口12に、導光性(透光性)合成樹脂材料の成形品からなる環状台座20が挿入固定されている。この環状台座20は、筒状体21の上端部に、外方に突出する外方フランジ22と、内方に突出する内方フランジ23とを有している。外方フランジ22は円形開口12に接着固定される。この環状台座20の平面形状を、図2にハッチングを付して示した。
【0010】
上面カバー部材11の内面には、ボタン成形体30の固定部31が接着固定されている。ボタン成形体30は、環状台座20と同様に、導光性(透光性)合成樹脂材料の成形品からなるもので、固定部31と、ボタン本体32と、この固定部31とボタン本体32とを接続する弾性変形アーム33とを有している。
【0011】
ボタン本体32は、環状台座20の筒状体21内に押し下げ可能に嵌まる平面円形をなしており、その頭部に、遮光材料(非透光性材料、例えば金属)からなるキャップ34を被着して操作ボタン35を構成している。弾性変形アーム33は、固定部31の一端部から出て環状台座20を囲むL字状をなしており、その先端部に、ボタン本体32との接続部36を有している。すなわち、ボタン成形体30の固定部31とボタン本体32とは隣接していて、固定部31から出た弾性変形アーム33は該固定部31の反対側において接続部36によりボタン本体32に接続されている。環状台座20の筒状体21には、弾性変形アーム33の通過を許す切欠24(図2)が形成されている。
【0012】
このように弾性変形アーム33を配置することにより、弾性変形アーム33の有効長を十分長くとり、ボタン本体32に環状台座20内でその略軸線方向に動く動きを与えることができる。弾性変形アーム33は、ボタン本体32に環状台座20から突出する方向の付勢力を与えるように形成されており、ボタン本体32には、環状台座20の内方フランジ23に当接してその突出端を規制するフランジ32aが形成されている。
【0013】
カメラ10内には、操作ボタン35の下方(内方)に位置させてスイッチ素子(タクトスイッチ)13が固定されており、ボタン成形体30の固定部31の下方(内方)に、LED(発光素子)14が固定されている。すなわち、LED14は、操作ボタン35の中心からオフセットした位置にある。固定部31の下面には、スイッチ素子13を押圧する押圧突起37(図2)が形成されている。スイッチ素子13は、この実施形態ではカメラの電源スイッチであり、オンすると、LED14が発光する。スイッチ素子13、LED14、CPU16等は、FPC基板15によって接続されている。
【0014】
カメラ10内には、LED14と環状台座20との間の空間の側部に、円柱状コンデンサ17の外面一部からなる凸シリンダ面17aが位置している。円柱状コンデンサ17は、カメラの内蔵ストロボ用であって、その軸線は、LED14と環状台座20の並び方向と略平行な方向を向いており、凸シリンダ面17aは、その断面における接線と直交する方向が概ね環状台座20及び操作ボタン35に向いている。また、円柱状コンデンサ17の軸線は、図5に明らかなように、LED14よりも下方に位置しており、凸シリンダ面17aの半径は、LED14と操作ボタン35との間隔に比して十分大きく、その数倍以上に設定されている。そして、この凸シリンダ面17aの表面には、スイッチ素子13とLED14を避けて、反射シート18、19が添着(貼着)されている。反射シート18、19、凸シリンダ面17aよりも反射率が高い、例えば白色のシートである。
【0015】
上記構成の本操作ボタン装置は、操作ボタン35(ボタン本体32)を押し下げて押圧突起37によりスイッチ素子13を一度押圧するとカメラ10の電源がオンしてLED14が点灯し、操作ボタン35によりスイッチ素子13を再び押圧すると電源がオフしてLED14が消灯する。LED14の点灯状態では、図5に矢印を付して示すように、LED14からの光の一部が反射シート18及び19で反射し、その反射光が環状台座20に直接あるいは32を通って環状台座20に与えられる。凸シリンダ面17aは、上述のようにその断面における接線と直交する方向が概ね環状台座20及び操作ボタン35に向いているため、この上の反射シート18及び19によって反射された光は効率的に環状台座20に与えられることとなる。なお、ボタン本体32の上面は、キャップ34によって覆われているので、外観上、操作ボタン35が光ることはない。
【0016】
ボタン本体32が導光性材料からなることは好ましいが、必須ではない。また、反射シート18と19は二分割したが、一部材としてもよい。
【0017】
以上の実施形態では、ストロボ内蔵カメラに必須のコンデンサを円柱状とし、その外面一部を利用したために、特別に凸シリンダ面を形成する必要がないという利点がある。しかし、コンデンサを持たない機器では、特別に凸シリンダ面を設けてもよい。また図示実施形態の環状台座20は、完全な円形であるが、楕円形等の非円形の環状であってもよいことは勿論である。
【0018】
また以上は、カメラ10の電源スイッチに本発明を適用し、電源スイッチオン時に環状台座20を光らせるようにした実施形態であるが、電源スイッチオンに限らず、特定の状態のときに環状台座20を光らせる操作スイッチ装置一般に本発明は適用可能である。
【0019】
【発明の効果】
本発明によれば、操作ボタンの周囲の環状台座を発光させる操作ボタン装置において、明るさむらをなくして環状台座を効率的に照明できる。
【図面の簡単な説明】
【図1】本発明による操作ボタン装置の一実施形態を示す斜視図である。
【図2】同平面図である。
【図3】同分解斜視図である。
【図4】反射テープをコンデンサの円柱面に添着した状態の斜視図である。
【図5】図2のV-V線に沿う断面図である。
【符号の説明】
10 カメラ
11 上面カバー部材
12 円形開口
13 スイッチ素子
14 LED(発光素子)
17 円柱状コンデンサ
17a 凸シリンダ面
18 19 反射シート
20 環状台座
21 筒状体
22 外方フランジ
23 内方フランジ
24 切欠
30 ボタン成形体
31 固定部
32 ボタン本体
32a フランジ
33 弾性変形アーム
34 キャップ
35 操作ボタン
36 接続部
37 押圧突起
[0001]
【Technical field】
The present invention relates to an operation button device, and more particularly to an operation button device that emits light from an annular pedestal around the operation button.
[0002]
[Prior art and its problems]
In an electronic device such as a camera, for example, an operation button device is known that illuminates an annular pedestal positioned around the operation button in order to display that the power is on. Therefore, the annular pedestal is made of a light guide resin material, and light from the light emitting element (LED) is directly or indirectly guided to the light guide annular pedestal.
[0003]
However, the conventional device has a problem that the light from the light emitting element cannot be sufficiently guided to the annular pedestal, resulting in uneven brightness. This problem is particularly serious when the light emitting element cannot be placed at the center of the annular pedestal.
[0004]
[Patent Literature]
Japanese Patent Laid-Open No. 2002-208326
OBJECT OF THE INVENTION
An object of this invention is to obtain the operation button apparatus which can illuminate the annular pedestal around a push button efficiently. In particular, an object of the present invention is to obtain an operation button device that can illuminate the annular pedestal more uniformly even when the light emitting element has to be arranged offset from the center of the annular pedestal.
[0006]
SUMMARY OF THE INVENTION
This invention is made | formed by investigating the preferable shape of a reflective sheet, when guiding the light from a light emitting element to a cyclic | annular base using a reflective sheet.
That is, the present invention includes an annular pedestal made of a light guide resin material and fixed to an apparatus main body; an operation button provided in the annular pedestal so as to be able to be pressed; and a light emitting element that gives light to the annular pedestal. In the operation button device, a convex cylinder surface formed of a part of the outer surface of the cylindrical capacitor is formed on a side portion of a space between the light emitting element and the annular pedestal, and an axis of the cylindrical capacitor is arranged between the light emitting element and the annular pedestal. It is characterized in that it is oriented in a direction substantially parallel to the direction, and a direction perpendicular to the tangent line in the section of the convex cylinder surface is arranged in a direction substantially facing the annular pedestal and the operation button, and a reflective sheet is attached to the convex cylinder surface. .
When the convex cylinder surface as described above is provided and a reflection sheet is attached thereon, light from the light emitting element can be efficiently given to the annular pedestal.
[0007]
The radius of the cylindrical surface constituting the convex cylinder surface is preferably increased to be several times or more the interval between the light emitting element and the operation button. Further, when the operation button includes a button main body made of a light guide resin material and a cap member made of a light shielding material covering the head of the button main body, direct light from the light emitting element or reflected light from the reflection sheet can be obtained. It can be given to the annular pedestal through the button body.
[0008]
When the device main body is a camera , the convex cylinder surface can be constituted by a cylindrical capacitor as a capacitor essential for the built-in strobe, and a part of the outer surface of the cylindrical capacitor.
[0009]
DETAILED DESCRIPTION OF THE INVENTION
The illustrated embodiment is an example in which the present invention is applied to a power switch of a camera. A circular opening 12 (see FIGS. 3, 5, and 6) is formed in the upper surface cover member 11 of the camera 10, and a molded product of a light guide (translucent) synthetic resin material is formed in the circular opening 12. An annular pedestal 20 made of is inserted and fixed. The annular pedestal 20 has an outer flange 22 projecting outward and an inner flange 23 projecting inward at the upper end of the cylindrical body 21. The outer flange 22 is bonded and fixed to the circular opening 12. The planar shape of the annular pedestal 20 is shown by hatching in FIG.
[0010]
A fixing part 31 of the button molded body 30 is bonded and fixed to the inner surface of the upper surface cover member 11. Like the annular pedestal 20, the button molded body 30 is made of a molded product of a light guide (translucent) synthetic resin material, and includes a fixed portion 31, a button main body 32, and the fixed portion 31 and the button main body 32. And an elastically deformable arm 33 for connecting the two.
[0011]
The button main body 32 has a flat circular shape that can be pushed down into the cylindrical body 21 of the annular pedestal 20, and a cap 34 made of a light shielding material (non-translucent material such as metal) is covered on the head. An operation button 35 is configured by wearing it. The elastically deformable arm 33 has an L shape that protrudes from one end of the fixed portion 31 and surrounds the annular pedestal 20, and has a connection portion 36 with the button main body 32 at the tip thereof. That is, the fixing part 31 of the button molded body 30 and the button main body 32 are adjacent to each other, and the elastically deformable arm 33 protruding from the fixing part 31 is connected to the button main body 32 by the connection part 36 on the opposite side of the fixing part 31. ing. The tubular body 21 of the annular pedestal 20 is formed with a notch 24 (FIG. 2) that allows the elastic deformation arm 33 to pass therethrough.
[0012]
By disposing the elastic deformation arm 33 in this manner, the effective length of the elastic deformation arm 33 can be made sufficiently long, and the button main body 32 can be given a movement that moves in the substantially axial direction within the annular pedestal 20. The elastic deformation arm 33 is formed so as to apply an urging force in a direction protruding from the annular pedestal 20 to the button main body 32, and the button main body 32 abuts against the inner flange 23 of the annular pedestal 20 and has a protruding end thereof. The flange 32a which regulates is formed.
[0013]
In the camera 10, a switch element (tact switch) 13 is fixed below (inward) the operation button 35, and an LED (inside) is fixed below (inward) the fixing portion 31 of the button molded body 30. (Light emitting element) 14 is fixed. That is, the LED 14 is at a position offset from the center of the operation button 35. A pressing protrusion 37 (FIG. 2) that presses the switch element 13 is formed on the lower surface of the fixing portion 31. In this embodiment, the switch element 13 is a power switch of the camera. When the switch element 13 is turned on, the LED 14 emits light. The switch element 13, the LED 14, the CPU 16, etc. are connected by the FPC board 15.
[0014]
In the camera 10, a convex cylinder surface 17 a made up of a part of the outer surface of the cylindrical capacitor 17 is located at the side of the space between the LED 14 and the annular pedestal 20. The cylindrical capacitor 17 is for a built-in strobe of the camera, and its axis is oriented in a direction substantially parallel to the alignment direction of the LED 14 and the annular pedestal 20, and the convex cylinder surface 17a is orthogonal to the tangent line in the cross section. The direction is generally directed to the annular pedestal 20 and the operation button 35. Further, as apparent from FIG. 5, the axis of the cylindrical capacitor 17 is located below the LED 14, and the radius of the convex cylinder surface 17 a is sufficiently larger than the distance between the LED 14 and the operation button 35. , It is set to more than a few times. Reflective sheets 18 and 19 are attached (adhered) to the surface of the convex cylinder surface 17a, avoiding the switch element 13 and the LED 14. For example, a white sheet having a higher reflectance than the reflective sheets 18 and 19 and the convex cylinder surface 17a.
[0015]
In the operation button device having the above-described configuration, when the operation button 35 (button body 32) is pressed down and the switch element 13 is pressed once by the pressing protrusion 37, the power of the camera 10 is turned on and the LED 14 is turned on. When 13 is pressed again, the power is turned off and the LED 14 is turned off. In the lighting state of the LED 14, as shown with an arrow in FIG. 5, a part of the light from the LED 14 is reflected by the reflection sheets 18 and 19, and the reflected light directly or directly passes through the annular pedestal 20 or 32. The pedestal 20 is given. As described above, the convex cylinder surface 17a has a direction orthogonal to the tangent line in the cross section thereof substantially facing the annular pedestal 20 and the operation button 35. Therefore, the light reflected by the reflection sheets 18 and 19 on the convex cylinder surface 17a is efficiently It will be given to the annular pedestal 20. Since the upper surface of the button body 32 is covered with the cap 34, the operation button 35 does not shine in appearance.
[0016]
Although it is preferable that the button body 32 is made of a light guide material, it is not essential. Further, although the reflection sheets 18 and 19 are divided into two parts, they may be formed as one member.
[0017]
In the above embodiment, the condenser essential for the camera with a built-in strobe is formed into a columnar shape and a part of the outer surface thereof is used. Therefore, there is an advantage that it is not necessary to form a special convex cylinder surface. However, in a device that does not have a capacitor, a special convex cylinder surface may be provided. In addition, the annular pedestal 20 in the illustrated embodiment has a perfect circular shape, but may be a noncircular annular shape such as an ellipse.
[0018]
The above is an embodiment in which the present invention is applied to the power switch of the camera 10 and the annular pedestal 20 is illuminated when the power switch is turned on. However, the present invention is not limited to the power switch on, but the annular pedestal 20 is in a specific state. In general, the present invention is applicable to an operation switch device that shines light.
[0019]
【The invention's effect】
According to the present invention, in the operation button device that emits light from the annular pedestal around the operation button, the annular pedestal can be efficiently illuminated without uneven brightness.
[Brief description of the drawings]
FIG. 1 is a perspective view showing an embodiment of an operation button device according to the present invention.
FIG. 2 is a plan view of the same.
FIG. 3 is an exploded perspective view of the same.
FIG. 4 is a perspective view of a state in which a reflective tape is attached to a cylindrical surface of a capacitor.
5 is a cross-sectional view taken along line VV in FIG.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 10 Camera 11 Upper surface cover member 12 Circular opening 13 Switch element 14 LED (light emitting element)
17 Cylindrical capacitor 17a Convex cylinder surface 18 19 Reflective sheet 20 Annular base 21 Cylindrical body 22 Outer flange 23 Inner flange 24 Notch 30 Button molded body 31 Fixing part 32 Button body 32a Flange 33 Elastic deformation arm 34 Cap 35 Operation button 36 Connection 37 Pressing protrusion

Claims (4)

導光性樹脂材料からなり機器本体に固定される環状をなす台座;この環状台座内に押圧操作可能に設けられた操作ボタン;及び上記環状台座に光を与える発光素子;を有する操作ボタン装置において、
上記発光素子と環状台座との間の空間の側部に、円柱状コンデンサの外面一部からなる凸シリンダ面を、前記円柱状コンデンサの軸線が前記発光素子と環状台座の並び方向と略平行な方向を向き、前記凸シリンダ面の断面における接線と直交する方向が概ね環状台座及び操作ボタンに向く方向に配置し、
この凸シリンダ面に反射シートを添着したことを特徴とする操作ボタン装置。
An operation button device having an annular pedestal made of a light guide resin material and fixed to an apparatus main body; an operation button provided in the annular pedestal so as to be capable of pressing operation; and a light emitting element for giving light to the annular pedestal. ,
A convex cylinder surface made of a part of the outer surface of a cylindrical capacitor is formed on the side of the space between the light emitting element and the annular pedestal, and the axis of the cylindrical capacitor is substantially parallel to the alignment direction of the light emitting element and the annular pedestal. The direction is oriented , and the direction perpendicular to the tangent in the cross section of the convex cylinder surface is arranged in a direction substantially facing the annular pedestal and the operation button ,
An operation button device comprising a reflective sheet attached to the convex cylinder surface.
請求項1記載の操作ボタン装置において、上記凸シリンダ面を構成する円柱面の半径は、発光素子と操作ボタンとの間隔の数倍以上である操作ボタン装置。  The operation button device according to claim 1, wherein a radius of a cylindrical surface constituting the convex cylinder surface is several times or more a distance between the light emitting element and the operation button. 請求項1または2記載の操作ボタン装置において、操作ボタンは、導光性樹脂材料からなるボタン本体と、このボタン本体の頭部を覆う遮光材料からなるキャップ部材とから構成されている操作ボタン装置。  3. The operation button device according to claim 1, wherein the operation button includes a button body made of a light guide resin material and a cap member made of a light shielding material that covers a head portion of the button body. . 請求項1ないし3のいずれか一項記載の操作ボタン装置はカメラに搭載されていて、前記円柱形のコンデンサは、内蔵ストロボ用のコンデンサである操作ボタン装置。 4. The operation button device according to claim 1 , wherein the operation button device is mounted on a camera, and the cylindrical capacitor is a capacitor for a built-in strobe .
JP2003001477A 2003-01-07 2003-01-07 Operation button device Expired - Fee Related JP4034192B2 (en)

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JP2003001477A JP4034192B2 (en) 2003-01-07 2003-01-07 Operation button device
TW092136693A TWI237282B (en) 2003-01-07 2003-12-24 Push button device having an illuminator
US10/750,811 US6855899B2 (en) 2003-01-07 2004-01-05 Push button device having an illuminator
CN200410000317.1A CN1261953C (en) 2003-01-07 2004-01-07 Push-button device with light-projector

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