JP2000322190A - Input device - Google Patents

Input device

Info

Publication number
JP2000322190A
JP2000322190A JP13330299A JP13330299A JP2000322190A JP 2000322190 A JP2000322190 A JP 2000322190A JP 13330299 A JP13330299 A JP 13330299A JP 13330299 A JP13330299 A JP 13330299A JP 2000322190 A JP2000322190 A JP 2000322190A
Authority
JP
Japan
Prior art keywords
circuit board
rotating member
terminal
rotary
rotary electric
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.)
Granted
Application number
JP13330299A
Other languages
Japanese (ja)
Other versions
JP3780119B2 (en
Inventor
Kenji Yamazaki
健二 山崎
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Alps Alpine Co Ltd
Original Assignee
Alps Electric Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Alps Electric Co Ltd filed Critical Alps Electric Co Ltd
Priority to JP13330299A priority Critical patent/JP3780119B2/en
Priority to TW89106916A priority patent/TW535103B/en
Priority to CNB2004100042674A priority patent/CN1269015C/en
Priority to CNB001074040A priority patent/CN1185569C/en
Publication of JP2000322190A publication Critical patent/JP2000322190A/en
Application granted granted Critical
Publication of JP3780119B2 publication Critical patent/JP3780119B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H19/00Switches operated by an operating part which is rotatable about a longitudinal axis thereof and which is acted upon directly by a solid body external to the switch, e.g. by a hand
    • H01H19/02Details
    • H01H19/10Movable parts; Contacts mounted thereon
    • H01H19/14Operating parts, e.g. turn knob
    • H01H2019/146Roller type actuators
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H25/00Switches with compound movement of handle or other operating part
    • H01H25/008Operating part movable both angularly and rectilinearly, the rectilinear movement being perpendicular to the axis of angular movement

Landscapes

  • User Interface Of Digital Computer (AREA)
  • Switches With Compound Operations (AREA)
  • Position Input By Displaying (AREA)

Abstract

PROBLEM TO BE SOLVED: To obtain an input device which eliminates the load applied to the connection part between a terminal and a circuit board and maintains the connection state satisfactorily when a rotary electric components is slanted by absorbing the tilt quantity of the rotary electric component through the bending of a margin part and maintaining the connection state of the terminal and circuit board when the rotary electric component is slanted. SOLUTION: A rotary encoder tilts as shown by the arrow A as an operation shaft 29 tilts, but it smoothly tilt on the abutting part P3 between an extension part 18e formed integrally with the back wall 18 of a fitting plate 17 and the circuit board 22 as a fulcrum and a gap (t) is formed with the circuit board 22. Simultaneously, the margin part 5a of the terminal 5 shrinks from its natural length to reduction length S2 to absorb the tilt quantity of the rotary encoder. This absorption eliminates the load applied to the connection part between the terminal 5 and circuit board 22 through the tilting of the rotary encoder to maintain the connection state between the terminal 5 and circuit board 22 satisfactorily.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、回転部材を回転操
作することによりディスプレイ上の画面スクロール等を
制御する入力装置に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an input device for controlling screen scrolling on a display by rotating a rotating member.

【0002】[0002]

【従来の技術】この種の入力装置としては、従来、回転
型電気部品の回転部材を回転操作することにより、ディ
スプレイ上の画面スクロール等の制御を行うものが広く
知られている。
2. Description of the Related Art As an input device of this type, a device which controls a screen scroll on a display or the like by rotating a rotating member of a rotary electric component is widely known.

【0003】以下、上記回転型電機部品としてロータリ
ーエンコーダを取り上げ、かかる入力装置の従来技術を
図20乃至図23を用いて説明する。
Hereinafter, a rotary encoder will be described as the rotary electric machine component, and a prior art of such an input device will be described with reference to FIGS.

【0004】この入力装置は、ロータリーエンコーダ4
1が回路基板54に取り付けられてなっており、ロータ
リーエンコーダ41は、被検知体を有する回転部材46
と、検知体を有する支持部材42と、回転部材46に弾
接する節度板52と、回転部材46、支持部材42及び
節度板52を一体に保持する取付板53とから構成さ
れ、支持部材42、節度板52及び取付板53からなる
固定部材に回転部材46が回転可能に支持されてなって
いる。
The input device is a rotary encoder 4
1 is attached to a circuit board 54, and a rotary encoder 41 is provided with a rotating member 46 having an object to be detected.
, A supporting member 42 having a detection body, a moderating plate 52 elastically in contact with the rotating member 46, and a mounting plate 53 for integrally holding the rotating member 46, the supporting member 42 and the moderating plate 52. A rotating member 46 is rotatably supported by a fixed member including a moderating plate 52 and a mounting plate 53.

【0005】支持部材42は、5角形状をなす絶縁合成
樹脂製の基板として形成され、その中心部分に嵌合孔4
3が形成されており、3つの導電性金属弾性片44a,
44b,44cからなる検知体44と、これら導電性金
属弾性片44a,44b,44cに各々導通した端子4
5a,45b,45cとがインサート成形により備えら
れている。
The support member 42 is formed as a pentagonal substrate made of insulating synthetic resin, and has a fitting hole 4 at its center.
3 are formed, and the three conductive metal elastic pieces 44a,
Detector 44 composed of 44b and 44c and terminals 4 electrically connected to conductive metal elastic pieces 44a, 44b and 44c, respectively.
5a, 45b and 45c are provided by insert molding.

【0006】回転部材46は、円板状の絶縁合成樹脂材
からなり、その中心部分に回転軸47が一体形成されて
おり、回転軸47の一端部には、内周面に平坦部を有
し、後述する操作軸60を嵌入するための孔部48が回
転軸線R方向に延びるように回転軸47の他端部に貫通
して形成されている。尚、操作軸60の傾倒時、操作軸
60との接触を避けるために、この孔部48の他端部側
は一端側に比べて大径な大径部48aとされている。ま
た、回転部材46には環状の導電板(不図示)が埋設が
されており、この導電板の一部分である複数の導電部4
9が回転部材46の表面に露出し、回転軸47を中心と
する同心円周上に等間隔に配置されて被検知体50とさ
れている。また、回転部材46の裏面には、回転軸47
を中心として放射状に延びる複数の凹凸からなる放射状
凹凸部51が全周に渡って形成されている。そして、こ
の回転部材46は、回転軸47の一端部が支持部材42
の嵌合孔43に嵌入されて、複数の導電部49が3つの
導電性金属弾性片44a,44b,44cと摺接した状
態となっている。
The rotating member 46 is made of a disc-shaped insulating synthetic resin material, and a rotating shaft 47 is integrally formed at a central portion thereof. One end of the rotating shaft 47 has a flat portion on an inner peripheral surface. A hole 48 into which an operation shaft 60 described later is inserted is formed through the other end of the rotation shaft 47 so as to extend in the direction of the rotation axis R. In order to avoid contact with the operation shaft 60 when the operation shaft 60 is tilted, the other end of the hole 48 is a large diameter portion 48a having a larger diameter than the one end. An annular conductive plate (not shown) is embedded in the rotating member 46, and a plurality of conductive portions 4 which are a part of the conductive plate are provided.
9 are exposed on the surface of the rotating member 46, and are arranged at equal intervals on a concentric circle centered on the rotating shaft 47, thereby forming a detection target 50. A rotating shaft 47 is provided on the back surface of the rotating member 46.
A radially uneven portion 51 composed of a plurality of unevennesses extending radially from the center is formed over the entire circumference. The rotating member 46 is configured such that one end of a rotating shaft 47 is
And the plurality of conductive portions 49 are in sliding contact with the three conductive metal elastic pieces 44a, 44b, and 44c.

【0007】節度板52は、金属製の板ばね材にプレス
加工を施してなるもので、先端部に回転部材46の放射
状凹凸部51に弾接する突部52が形成されている。
The moderating plate 52 is formed by pressing a metal leaf spring material, and has a projection 52 formed at its tip to elastically contact the radially uneven portion 51 of the rotating member 46.

【0008】取付板53は、金属製矩形板の両側を直角
に折り曲げることによって断面コ字状に形成され、4つ
の爪部53aと一対の取付脚53bとプレスバーリング
加工法で形成された嵌合孔53cとを有している。そし
て、この取付板53は、その裏面に節度板52の後端部
が固着された状態で回転部材46の裏面側に配置され、
嵌合孔53cに回転軸47の他端部が嵌入されて4つの
爪部53aが折り曲げられることにより、回転部材4
6、支持部材42及び節度板53を挟持してこれらを一
体に保持しており、節度板52の突部52aが回転部材
46の放射状凹凸部51の凹部内に位置した状態となっ
ている。
The mounting plate 53 is formed into a U-shaped cross section by bending both sides of a metal rectangular plate at right angles, and is fitted with four claw portions 53a and a pair of mounting legs 53b by press burring. It has a hole 53c. The mounting plate 53 is disposed on the back surface of the rotating member 46 with the rear end of the moderation plate 52 fixed to the back surface thereof.
The other end of the rotating shaft 47 is fitted into the fitting hole 53c and the four claw portions 53a are bent, so that the rotating member 4
6, the support member 42 and the moderation plate 53 are sandwiched and held together, and the projection 52a of the moderation plate 52 is located in the concave portion of the radial uneven portion 51 of the rotating member 46.

【0009】これにより、支持部材42、節度板52及
び取付板53からなる上述した固定部材が形成され、こ
の固定部材に回転部材46が、嵌合孔43,53cに嵌
入した回転軸47によって回転可能に支持されている。
また、3つの導電性金属弾性片44a,44b,44c
からなる検知体44と、複数の導電部49からなる被検
知体50とで回転部材46の回転によりパルス信号を生
成するパルス信号生成部が構成されている。
As a result, the above-mentioned fixing member comprising the supporting member 42, the moderating plate 52 and the mounting plate 53 is formed, and the rotating member 46 is rotated by the rotating shaft 47 fitted in the fitting holes 43, 53c. Supported as possible.
Also, three conductive metal elastic pieces 44a, 44b, 44c
And a detection target 50 including a plurality of conductive portions 49 constitute a pulse signal generation unit that generates a pulse signal by rotation of the rotating member 46.

【0010】一方、回路基板54は、端子挿入孔54a
及び取付孔54bと逃げ孔54cとが穿設され、この逃
げ孔54cを挟んで端子挿入孔54a及び取付孔54b
と対向する位置に、押釦スイッチ55が取り付けられて
いる。この押釦スイッチ55は、回路基板54に接続固
定された本体56にアクチュエータ56aが配されてお
り、本体56の一端部にコイルばね57が装着され、本
体56の他端部には上端を開放した長孔58aを有する
軸支持部58が形成されている。
On the other hand, the circuit board 54 has a terminal insertion hole 54a.
A mounting hole 54b and an escape hole 54c are formed, and the terminal insertion hole 54a and the mounting hole 54b are sandwiched between the escape hole 54c.
A push button switch 55 is attached to a position facing the button. The push button switch 55 has an actuator 56a disposed on a main body 56 connected and fixed to a circuit board 54, a coil spring 57 mounted on one end of the main body 56, and an upper end opened on the other end of the main body 56. A shaft support portion 58 having a long hole 58a is formed.

【0011】そして、上記の如く構成されたロータリー
エンコーダ41は、端子挿入孔54a及び取付孔54b
に挿通させた端子45a,45b,45c及び一対の取
付脚53cが半田付けされることによって、回路基板5
4に押釦スイッチ55と対向して取り付けられ、端子4
5a,45b,45cが回路基板54と電気的に接続さ
れた状態となっている。
The rotary encoder 41 constructed as described above has a terminal insertion hole 54a and a mounting hole 54b.
The terminals 45a, 45b, 45c and a pair of mounting legs 53c, which are inserted through the circuit board 5, are soldered.
4 is attached to the push button switch 55 so as to face the terminal 4.
5a, 45b, 45c are in a state of being electrically connected to the circuit board 54.

【0012】また、ロータリーエンコーダ41と押釦ス
イッチ55との間には円板状の操作体59が配設され、
その一部分を逃げ孔54c内に位置させおり、操作体5
9の中心部に貫通して固定された操作軸60が、その両
端部を各々回転部材46の孔部48と押釦スイッチ55
の長孔58aとに嵌入させて、操作体59及び回転部材
46と一体に回転でき、且つ回転軸47の一端部を支点
として長孔58aの上下方向(矢印B,C方向)にのみ
傾倒動可能に支持されている。
A disc-shaped operating body 59 is disposed between the rotary encoder 41 and the push button switch 55,
A part thereof is located in the escape hole 54c, and the operating body 5
An operation shaft 60 fixedly penetrating the center of the rotary member 9 has a hole 48 of the rotating member 46 and a push button switch 55 at both ends.
And can rotate integrally with the operating body 59 and the rotating member 46, and can be tilted only in the vertical direction (arrows B and C directions) of the long hole 58a with one end of the rotating shaft 47 as a fulcrum. Supported as possible.

【0013】また、操作軸60の一端部にはブッシュ6
1が嵌め込まれ、このブッシュ61にコイルばね57と
アクチュエータ56aとが当接して、操作軸60を回路
基板54と平行に保持しており、ブッシュ61が押釦ス
イッチ55の本体56と距離Hを隔てて対向し、また、
本体56の一端部と回転部材46の回転軸47の一端部
との間が距離L1に設定された状態となっている。
A bush 6 is provided at one end of the operation shaft 60.
The coil spring 57 and the actuator 56a come into contact with the bush 61 to hold the operating shaft 60 in parallel with the circuit board 54. The bush 61 is separated from the main body 56 of the push button switch 55 by a distance H. And facing each other,
The distance between one end of the main body 56 and one end of the rotating shaft 47 of the rotating member 46 is set to the distance L1.

【0014】この状態で、操作者が手指で操作体59を
回転させると、節度板52の突部52aが放射状凹凸部
51の凹凸に交互に弾接してクリック感を生起させなが
ら、回転部材46が操作軸60と一体に操作体59の回
転と同一方向へ回転するので、回転部材46の回転に伴
って3つの導電性金属弾性片44a,44b,44cと
複数の導電部49とが接触・離反してパルス信号が生成
され、このパルス信号は操作体59の回転量検出信号と
して端子45a,45b,45cから出力されて回路基
板54に入力される。尚、この際、操作軸60は、孔部
48の内周面に設けられた平坦部と平面同士で嵌合して
いるので、回転部材46と操作軸60とをガタ無く連結
することが可能であり、よって操作体59の回転を回転
部材46に確実に伝えることができる。
In this state, when the operator rotates the operating body 59 with his / her finger, the projections 52a of the moderation plate 52 alternately resiliently contact the irregularities of the radial irregularities 51 to generate a click feeling. Is rotated integrally with the operation shaft 60 in the same direction as the rotation of the operation body 59, so that the three conductive metal elastic pieces 44a, 44b, 44c and the plurality of conductive portions 49 come into contact with the rotation of the rotation member 46. When separated, a pulse signal is generated. The pulse signal is output from the terminals 45 a, 45 b, and 45 c as a rotation amount detection signal of the operating body 59 and is input to the circuit board 54. At this time, since the operation shaft 60 is fitted with a flat portion provided on the inner peripheral surface of the hole portion 48 in a plane-to-plane relationship, the rotating member 46 and the operation shaft 60 can be connected without play. Therefore, the rotation of the operating body 59 can be transmitted to the rotating member 46 reliably.

【0015】また、操作者が手指で操作体59を押圧す
ると、図23に示すように、操作軸60は、回転軸47
の一端部を支点としてブッシュ61が嵌め込まれた一端
部側が、矢印C方向にコイルばね57の弾発力に抗して
距離H分降下して傾倒し、ブッシュ59が押釦スイッチ
55のアクチュエータ56aを押圧して押釦スイッチ5
5のON,OFFが切り換えられ、押釦スイッチ55の
ON,OFF信号が回路基板54に入力される。このと
き、操作軸60の傾き角度θはtan-1(距離H÷距離
L1)となっており、操作軸60の他端部は孔部48a
内でL3×tanθだけ径方向に移動する。また、上述
した如く、操作軸60と孔部48とが平面同士の嵌合で
あるため、操作軸60の傾倒に連動して回転部材46が
傾き、回転部材46とこの回転部材46を回転可能に軸
支する取付板53の軸受部には大きな加重が加わる。そ
して、操作者が操作体59の押圧を止めると、コイルば
ね57の弾発力によって操作体59及び操作軸60が押
圧前の状態(矢印B方向)に復帰する。
When the operator presses the operating body 59 with his / her finger, as shown in FIG.
Of the push button switch 55, the one end of the push button switch 55 is tilted downward by the distance H in the direction of arrow C against the elastic force of the coil spring 57. Press to push button switch 5
5 is switched between ON and OFF, and ON / OFF signals of the push button switch 55 are input to the circuit board 54. At this time, the inclination angle θ of the operation shaft 60 is tan −1 (distance H ÷ distance L1), and the other end of the operation shaft 60 is provided with the hole 48a.
In the radial direction by L3 × tan θ. Further, as described above, since the operation shaft 60 and the hole 48 are fitted to each other in a plane, the rotating member 46 is inclined in conjunction with the inclination of the operation shaft 60, and the rotating member 46 and the rotating member 46 can be rotated. A large load is applied to the bearing portion of the mounting plate 53 which is pivotally supported. Then, when the operator stops pressing the operation body 59, the operation body 59 and the operation shaft 60 return to the state before the pressing (the direction of the arrow B) by the elastic force of the coil spring 57.

【0016】しかして、回路基板54に入力された操作
体59の回転量検出信号及び押釦スイッチ55のON,
OFF信号は、回路基板54に設けられた図示せぬCP
Uで演算が施された後、図示を省略した表示装置に入力
され、図示せぬディスプレイ上の画面スクロールやカー
ソル等の制御が実行されるようになっている。
Thus, the rotation amount detection signal of the operating body 59 input to the circuit board 54 and the ON / OFF of the push button switch 55
The OFF signal is output from a CP (not shown) provided on the circuit board 54.
After the calculation is performed in U, the calculation is input to a display device (not shown), and control such as screen scrolling and a cursor on a display (not shown) is executed.

【0017】[0017]

【発明が解決しようとする課題】しかしながら、上述し
た入力装置の従来技術にあっては、操作軸60が傾倒す
る際に回転軸47の一端部において、図23に示すよう
に、回転部材46の孔部48と操作軸60の他端部との
接触点には、各々上向きの力F3と下向きの力F4とが
生じる。このため、ロータリーエンコーダ41にモーメ
ントが加わり、ロータリーエンコーダ41が矢印A方向
に傾倒する。その結果、端子45a,45b,45cと
回路基板54との半田付け部分62(接続部分)に負荷
が加わり、端子45a,45b,45cと回路基板54
との接続に断線をきたす虞があった。
However, according to the prior art of the input device described above, when the operating shaft 60 is tilted, the one end of the rotating shaft 47 is rotated by one end of the rotating member 46 as shown in FIG. At the contact point between the hole 48 and the other end of the operation shaft 60, an upward force F3 and a downward force F4 are generated, respectively. Therefore, a moment is applied to the rotary encoder 41, and the rotary encoder 41 tilts in the direction of arrow A. As a result, a load is applied to the soldered portion 62 (connection portion) between the terminals 45a, 45b, 45c and the circuit board 54, and the terminals 45a, 45b, 45c and the circuit board 54 are connected.
There is a fear that the connection with the wire may be broken.

【0018】本発明は上述た従来技術の事情に鑑みてな
されたもので、その目的は、回転型電気部品の傾倒時
に、端子と回路基板との接続部分に加わる負荷を解消
し、端子と回路基板との接続状態を良好に維持できる入
力装置を提供することである。
The present invention has been made in view of the above-mentioned circumstances of the prior art, and has as its object to eliminate a load applied to a connection portion between a terminal and a circuit board when the rotary electric component is tilted, and to provide a terminal and a circuit. An object of the present invention is to provide an input device that can maintain a good connection state with a substrate.

【0019】[0019]

【課題を解決するための手段】上記目的を達成するため
に、本発明の入力装置は、固定部材と、この固定部材に
回転可能に支持された回転部材と、この回転部材の回転
により生成された信号を出力する端子とを有する回転型
電気部品と、前記端子が接続されて前記信号が入力され
る回路基板とを備えてなり、前記固定部材は、前記回転
型電気部品を前記回路基板に取り付けるための取付板を
備え、前記回転部材の一端部に操作軸を嵌入するための
孔部を前記回転部材の回転軸線方向に延びるように形成
し、前記端子に余裕部を形成するとともに、前記取付板
に設けた取付脚で前記回転型電気部品を前記回路基板に
取り付け、前記操作軸の操作により前記回転型電気部品
が傾倒された際に、前記余裕部が撓み込んで前記回転型
電気部品の傾倒量を吸収し、前記端子と前記回路基板と
の接続状態を維持することを最も主要な特徴としてい
る。
In order to achieve the above object, an input device according to the present invention comprises a fixed member, a rotating member rotatably supported by the fixed member, and a rotating member formed by rotating the rotating member. And a circuit board to which the terminal is connected and to which the signal is input, and wherein the fixing member is configured to attach the rotary electric component to the circuit board. A mounting plate for mounting, a hole for fitting an operation shaft to one end of the rotating member is formed so as to extend in the rotation axis direction of the rotating member, and a margin is formed in the terminal, The rotary electric component is mounted on the circuit board by mounting legs provided on a mounting plate, and when the rotary electric component is tilted by operating the operation shaft, the extra portion is bent and the rotary electric component is bent. Amount of tilt It absorbed, and the most important feature to maintain the connection between the circuit board and the terminal.

【0020】また、上記構成において、前記取付板に前
記回路基板に当接する延設部を設け、前記回転部材の一
端部から他端部に向かって前記端子と前記延設部とをこ
の順番に配置し、前記操作軸の操作により前記回転型電
気部品が、前記延設部と前記回路基板との当接部分を支
点として傾倒する構成とした。
Further, in the above structure, the mounting plate is provided with an extending portion which is in contact with the circuit board, and the terminal and the extending portion are arranged in this order from one end to the other end of the rotating member. The rotary electric component is arranged to be tilted by operating the operation shaft so that the rotary electrical component is supported by a contact portion between the extended portion and the circuit board as a fulcrum.

【0021】さらに、上記構成において、前記取付脚
は、前記回路基板に半田付け無しで前記回転部品を傾倒
可能な状態で係止されている構成とした。
Further, in the above configuration, the mounting leg is locked so that the rotating component can be tilted without soldering to the circuit board.

【0022】[0022]

【発明の実施の形態】以下、回転型電気部品と回路基板
とを備えた本発明の入力装置の一実施形態として、回転
型電気部品をロータリーエンコーダを例にして図1乃至
図19に基づいて説明する。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, as an embodiment of an input device according to the present invention having a rotary electric component and a circuit board, a rotary encoder will be described with reference to FIGS. explain.

【0023】この入力装置は、ロータリーエンコーダ1
が回路基板22に取り付けられてなっており、ロータリ
ーエンコーダ1は、検知体と被検知体との相対的回転運
動に伴って電気信号を出力するものであって、被検知体
20を有する回転部材10と、検知体9を有する支持部
材2と、回転部材10に弾接する節度板16と、回転部
材10、支持部材2及び節度板16を一体に保持する取
付板17とから構成され、支持部材2、節度板16及び
取付板17からなる固定部材に回転部材10が回転可能
に支持されてなっている。
This input device is a rotary encoder 1
Is attached to the circuit board 22, and the rotary encoder 1 outputs an electric signal in accordance with the relative rotational movement between the detection body and the detection body, and is a rotary member having the detection body 20. 10, a support member 2 having a detection body 9, a moderating plate 16 elastically contacting the rotating member 10, and a mounting plate 17 for integrally holding the rotating member 10, the supporting member 2 and the moderating plate 16; 2. The rotating member 10 is rotatably supported by a fixed member composed of the moderation plate 16 and the mounting plate 17.

【0024】支持部材2は、図4乃至図5に示すよう
に、略5角形状をなす絶縁合成樹脂製の基板として形成
され、その周縁部に側壁部3がコ字状に形成されてお
り、この側壁部3には、先端部に一対の突部3aが形成
され、回転軸線R方向に貫通する2つの貫通孔3bが穿
設されているとともに、これら貫通孔3bの両側に両貫
通孔3bを挟んで対向する一対の突起3cが突設されて
いる。また、この支持部材2には円形の嵌合孔4が穿設
され、図示せぬ導電板が嵌合孔4を包囲するように埋設
されているとともに、導電性板ばね材からなり、この導
電板に各々導通する3本の端子5,6,7がインサート
成形により取り付けられている。そして、上記導電板の
一部である複数の導電部8が、支持部材2の裏面に嵌合
孔4を中心とする同心円周状に露出して検知体9とされ
ており、また、3本の端子5,6,7は何れも同一形状
を有し、折曲形成により余裕部5a,6a,7aが各々
一体に設けられている。
As shown in FIGS. 4 and 5, the supporting member 2 is formed as a substantially pentagonal substrate made of insulating synthetic resin, and a side wall 3 is formed in a U-shape at a peripheral portion thereof. The side wall 3 has a pair of protrusions 3a formed at the end thereof, two through holes 3b penetrating in the direction of the rotation axis R, and both through holes 3b on both sides of the through hole 3b. A pair of protrusions 3c opposed to each other with the 3b interposed therebetween are projected. The support member 2 has a circular fitting hole 4 formed therein. A conductive plate (not shown) is embedded so as to surround the fitting hole 4 and is made of a conductive leaf spring material. Three terminals 5, 6, 7 which are electrically connected to the plate are attached by insert molding. A plurality of conductive portions 8, which are part of the conductive plate, are exposed concentrically around the fitting hole 4 on the back surface of the support member 2 to form a detector 9. The terminals 5, 6, 7 have the same shape, and the margins 5a, 6a, 7a are integrally provided by bending.

【0025】回転部材10は、円板状の絶縁合成樹脂材
からなり、図6乃至図10に示すように、その中心部分
に回転軸11が一体形成されており、この回転軸11の
一端部には、後述する操作軸29を嵌入するための6角
形状の孔部12が回転軸線R方向に延びるように回転軸
11の他端部に貫通して形成されている。また、回転部
材10の表面には回転軸11包囲するように環状の凹部
13が設けられ、この凹部13内に3つの突部13aが
形成されており、導電金属板材からなり3つの摺動片1
4aを有するリング状の摺動子14が、その3つの孔1
4bに各々突部13aを圧入させた状態で凹部13内に
支持されている。そして、摺動子14で被検知体20を
構成している。
The rotating member 10 is made of a disc-shaped insulating synthetic resin material. As shown in FIGS. 6 to 10, a rotating shaft 11 is integrally formed at a central portion thereof. A hexagonal hole 12 into which an operation shaft 29 described later is fitted is formed through the other end of the rotating shaft 11 so as to extend in the direction of the rotating axis R. An annular concave portion 13 is provided on the surface of the rotary member 10 so as to surround the rotary shaft 11, and three protrusions 13a are formed in the concave portion 13, and three sliding pieces made of a conductive metal plate material are formed. 1
The ring-shaped slider 14 having the four holes 4a has three holes 1a.
4b are supported in the recess 13 in a state where the protrusions 13a are press-fitted. The slider 14 constitutes the detection target 20.

【0026】また、回転部材10の裏面には、回転軸1
1を中心として半径方向に放射状に延びる複数の凹部1
5a及び凸部15bからなる放射状凹凸部15が全周に
渡って交互に形成されている。また、回転軸11の孔部
12の内周面には、回転部材10の一端部から他端部に
向かって漸次径が小さくなるようなテーパ部12aが形
成され、テーパ部12aの終端部が回転軸線Rと平行な
小径部12bとされており、この小径部12bに連続し
て大径部12cが形成されることにより、テーパー部1
2aの終端部に段差部12dが設けられている。そし
て、図3に示すように、テーパ部12aの傾きは、テー
パ部12aの延長線Kと回転軸線Rとの交点P0よりも
回転部材10の一端側において、延長線K上の任意の1
点P1と交点P0とを結ぶ直線K’と、回転軸線R上の
任意の1点P2と交点P0とを結ぶ直線R’とのなす角
αが、約3゜となるように設定されており、この回転部
材10は、回転軸11の一端部が支持部材2の嵌合孔4
に嵌入されて軸支され、3つの摺動片14a(図では1
つのみ示す)が支持部材2の複数の導電部8と摺接した
状態となっている。
A rotating shaft 1 is provided on the back surface of the rotating member 10.
A plurality of recesses 1 extending radially around the center 1
Radial uneven portions 15 composed of 5a and convex portions 15b are formed alternately over the entire circumference. Further, a tapered portion 12a whose diameter gradually decreases from one end to the other end of the rotating member 10 is formed on the inner peripheral surface of the hole 12 of the rotating shaft 11, and the terminal end of the tapered portion 12a is formed. The small-diameter portion 12b is parallel to the rotation axis R, and the large-diameter portion 12c is formed continuously with the small-diameter portion 12b.
A step 12d is provided at the end of 2a. As shown in FIG. 3, the inclination of the tapered portion 12 a may be any one on the extended line K at one end of the rotating member 10 beyond the intersection P 0 between the extended line K of the tapered portion 12 a and the rotation axis R.
An angle α between a straight line K ′ connecting the point P1 and the intersection P0 and a straight line R ′ connecting the arbitrary point P2 on the rotation axis R and the intersection P0 is set to be about 3 °. The rotating member 10 has one end of the rotating shaft 11 which is fitted into the fitting hole 4 of the supporting member 2.
And is supported by three sliding pieces 14a (1 in the figure).
Are shown in sliding contact with the plurality of conductive portions 8 of the support member 2.

【0027】節度板16は、金属製の板ばね材にプレス
加工を施してなるもので、図11乃至図12に示すよう
に、中央部に略矩形状の挿通孔16aが形成され、先端
部に表面側に突出する突部16bが形成されている。ま
た、節度板16の後端部には、2つの貫通孔16cが穿
設されているとともに、これら貫通孔16cの両側に両
貫通孔16cを挟んで対向する一対の係止孔16dが形
成されている。そして、図3に示すように、この節度板
16は、挿通孔16aに回転部材10の回転軸11の他
端部が挿通され、一対の係止孔16dに支持部材2の一
対の突起3cが嵌入して係止されており、一対の貫通孔
16cが支持部材2の一対の貫通孔3bに対向するとと
もに、突部16bが回転部材10の放射状凹凸部15に
弾接した状態となっている。
The moderating plate 16 is formed by pressing a metal leaf spring material. As shown in FIGS. 11 and 12, a substantially rectangular insertion hole 16a is formed at the center, and a tip end is formed. A protruding portion 16b protruding toward the front surface is formed on the front side. Two through holes 16c are formed at the rear end of the moderating plate 16, and a pair of locking holes 16d are formed on both sides of the through holes 16c so as to face each other with the two through holes 16c interposed therebetween. ing. As shown in FIG. 3, the moderation plate 16 has the insertion shaft 16 having the other end of the rotating shaft 11 inserted into the insertion hole 16a, and the pair of projections 3c of the support member 2 having the pair of locking holes 16d. The pair of through-holes 16 c face the pair of through-holes 3 b of the support member 2, and the protrusions 16 b are in elastic contact with the radial irregularities 15 of the rotating member 10. .

【0028】取付板17は、金属製平板に曲折加工を施
してなるもので、図13乃至図14に示すように、背面
壁18の両側に直角に曲折形成された一対の側壁19を
有し、これら側壁19には片側について2個ずつ、両側
で4個の爪部19aと、片側について1つずつ、両側で
2個の取付脚19bとがそれぞれ設けられている。ま
た、背面壁18には円形の嵌合孔18aがプレスバーリ
ング加工法にて穿設され、この嵌合孔18aを挟んで両
側に2つの係合孔18bが形成されているとともに、嵌
合孔18aの下方に2つの貫通孔18cと、これら貫通
孔18cの両側に両貫通孔18cを挟んで対向する一対
の係止孔18dとが共に回転軸線R方向に貫通して穿設
されており、更に貫通孔18cの下方には延設部18e
が背面壁18の下縁部に一体に形成されている。
The mounting plate 17 is formed by bending a metal flat plate, and has a pair of side walls 19 bent at right angles on both sides of a back wall 18 as shown in FIGS. Each of these side walls 19 is provided with two claw portions 19a on each side, four claw portions 19a on each side, and two mounting legs 19b on each side, one claw portion 19a on each side. A circular fitting hole 18a is formed in the rear wall 18 by press burring, and two engaging holes 18b are formed on both sides of the fitting hole 18a. Two through-holes 18c are provided below 18a, and a pair of locking holes 18d opposed to both sides of the through-holes 18c with the two through-holes 18c interposed therebetween are formed so as to penetrate in the direction of the rotation axis R. Further, an extension 18e is provided below the through hole 18c.
Are formed integrally with the lower edge of the rear wall 18.

【0029】そして、図1乃至図3に示すように、この
取付板17は、嵌合孔18aに回転軸11の他端部が嵌
入されて軸支され、2つの係合孔18bに各々支持部材
2の一対の突部3aが挿通して係合されるとともに、一
対の係止孔18dに支持部材2の一対の突起3cが嵌入
して係止されており、一対の側壁19間に支持部材2、
回転部材10及び節度板16が位置して、一対の貫通孔
18cに節度板16の貫通孔16c及び支持部材2の貫
通孔3bが対向し、4個の爪部19aが支持部材2側に
折り曲げられることにより、4個の爪部19aと背面壁
18とで支持部材2、回転部材10及び節度板16を挟
持してこれらを一体に保持している。
As shown in FIGS. 1 to 3, the mounting plate 17 has the other end of the rotary shaft 11 fitted in the fitting hole 18a and is supported by the two engaging holes 18b. A pair of projections 3a of the member 2 are inserted and engaged, and a pair of projections 3c of the support member 2 are fitted and locked in a pair of locking holes 18d. Member 2,
The rotating member 10 and the moderating plate 16 are located, the through-hole 16c of the moderating plate 16 and the through-hole 3b of the supporting member 2 face the pair of through-holes 18c, and the four claw portions 19a are bent toward the supporting member 2 side. Thus, the support member 2, the rotating member 10, and the moderating plate 16 are sandwiched between the four claw portions 19a and the rear wall 18, and these are integrally held.

【0030】これにより、支持部材2、節度板16及び
取付板17からなる上述した固定部材が形成され、この
固定部材に回転部材10が嵌合孔4,18aに嵌入した
回転軸11によって回転可能に支持されており、また、
支持部材2と節度板16と取付板17の貫通孔3b,1
6c,18cでこの固定部材を貫通する2つの貫通孔が
構成され、これら2つの貫通孔は何れも回転部材10か
ら外れた位置、即ち平面視して回転部材10の外側位置
に回転軸線R方向に貫通して設けられている。また、摺
動子14からなる被検知体20と複数の導電部8からな
る検知体9とで回転部材10の回転によりパルス信号を
生成するパルス信号生成部が構成されている。
As a result, the above-mentioned fixing member composed of the support member 2, the moderating plate 16 and the mounting plate 17 is formed, and the rotating member 10 can be rotated by the rotating shaft 11 fitted in the fitting holes 4 and 18a. Is supported by
Through holes 3b, 1 of support member 2, moderation plate 16, and mounting plate 17
6c and 18c form two through-holes penetrating the fixing member, and these two through-holes are located at positions deviating from the rotating member 10, that is, outside the rotating member 10 in a plan view, in the direction of the rotation axis R. Is provided so as to pass through. Further, a pulse signal generation unit that generates a pulse signal by rotation of the rotating member 10 is configured by the detection target 20 including the slider 14 and the detection target 9 including the plurality of conductive portions 8.

【0031】次に、このように構成されたロータリーエ
ンコーダ1の組立方法を説明すると、図15に示すよう
に、平板状の基台21aの表面に2本の位置決めピン2
1bを立設固定してなる治具21を用いた上で、次の手
順で組み立てられる。
Next, a method of assembling the rotary encoder 1 having the above structure will be described. As shown in FIG. 15, two positioning pins 2 are provided on the surface of a flat base 21a.
After using the jig 21 in which the 1b is erected and fixed, it is assembled in the following procedure.

【0032】先ず、治具21の2本の位置決めピン21
bに、取付板17の背面壁18に穿設された2つの貫通
孔18cを挿通させて、治具21に取付板17を装着す
る。次に、治具21の2本の位置決めピン21bに、節
度板16の後端部に穿設された2つの貫通孔16cを挿
通させて、節度板16を治具21に装着する。すると、
取付板17の背面壁18に節度板16が当接し、取付板
17と節度板16の一対の係止孔18d,16d同士が
重なり合って対向した状態となる。
First, the two positioning pins 21 of the jig 21
The mounting plate 17 is mounted on the jig 21 by inserting the two through holes 18c formed in the rear wall 18 of the mounting plate 17 into the b. Next, the two positioning pins 21 b of the jig 21 are inserted into the two through holes 16 c formed in the rear end of the moderating plate 16, and the moderating plate 16 is mounted on the jig 21. Then
The moderating plate 16 is in contact with the rear wall 18 of the mounting plate 17, and the pair of locking holes 18 d and 16 d of the mounting plate 17 and the moderating plate 16 overlap and face each other.

【0033】次に、回転部材10の回転軸11の他端部
を取付板17の嵌入孔18aに嵌入して、回転部材10
を治具21に装着し、次いで、支持部材2の裏面を治具
21に向けた状態で、治具21の2本の位置決めピン2
1bに支持部材2の2つの貫通孔3bを挿通すると、一
対の突起3cが節度板16と取付板17の一対の係止孔
16d,18dに挿通されて係止され、支持部材2が治
具21に装着される。
Next, the other end of the rotating shaft 11 of the rotating member 10 is fitted into the fitting hole 18a of the mounting plate 17, and the rotating member 10
Is mounted on the jig 21, and then the two positioning pins 2 of the jig 21 are held with the back surface of the support member 2 facing the jig 21.
When the two through holes 3b of the support member 2 are inserted into the support member 1b, the pair of projections 3c are inserted and locked into the pair of locking holes 16d and 18d of the moderation plate 16 and the mounting plate 17, and the support member 2 is fixed to the jig. 21.

【0034】しかる後、取付板17の4つの爪部19a
を支持部材2側に折り曲げると、4個の爪部19aと背
面壁18とで支持部材2、回転部材10及び節度板16
が挟持されこれらが一体に保持されて組立が完了する。
そして、組立後においては支持部材2と節度板16とを
重ね合わせた状態で、節度板16に取付板17の背面壁
18が重ね合わされ4個の爪部19aと協力して支持部
材2と節度板16とを一体に保持した状態となってお
り、回転部材10の一端部から他端部に向かって3本の
端子5,6,7と延設部18eとがこの順番に配置され
ている。このように、ロータリーエンコーダ1の組立方
法は、取付板17と、節度板16と、回転部材10と、
支持部材2とを治具21に順次装着するだけでロータリ
ーエンコーダ1を組み立てることができ、生産性を向上
させることができる。
Thereafter, the four claw portions 19a of the mounting plate 17 are
Is bent toward the support member 2, the four claw portions 19 a and the back wall 18 support the support member 2, the rotating member 10 and the moderation plate 16.
And are held together to complete the assembly.
After the assembly, the back wall 18 of the mounting plate 17 is superimposed on the moderating plate 16 in a state where the supporting member 2 and the moderating plate 16 are superimposed on each other, and cooperates with the four claw portions 19a. The plate 16 and the plate 16 are integrally held, and three terminals 5, 6, 7 and an extending portion 18e are arranged in this order from one end of the rotating member 10 to the other end. . As described above, the method of assembling the rotary encoder 1 includes the mounting plate 17, the moderating plate 16, the rotating member 10,
The rotary encoder 1 can be assembled only by sequentially mounting the support member 2 and the jig 21 sequentially, and productivity can be improved.

【0035】また、節度板16の取付板17に対する取
付位置は、2本の位置決めピン21bによって決まるの
で、節度板16を取付板17の背面壁18に当接させる
際、取付板17に対して節度板16が位置ずれすること
がなく、従って、支持部材2の一対の突起3cを節度板
16と取付板17の一対の係止孔16d,18dに挿通
する際に、両者が強嵌合の寸法関係であっても容易に挿
通が可能であり、ロータリーエンコーダ1の組立後にお
いては、支持部材2の一対の突起3cが節度板16と取
付板17の一対の係止孔16d,18dに強嵌合で係止
されるので、節度板16の取付板17に対する取り付け
にガタつきがなく、取付位置にずれが生じることがな
い。
The mounting position of the moderating plate 16 with respect to the mounting plate 17 is determined by the two positioning pins 21b, so that when the moderating plate 16 is brought into contact with the rear wall 18 of the mounting plate 17, When the moderating plate 16 is not displaced, when the pair of projections 3c of the support member 2 are inserted into the pair of locking holes 16d and 18d of the moderating plate 16 and the mounting plate 17, they are strongly fitted. Even when the rotary encoder 1 is assembled, the pair of protrusions 3c of the support member 2 can be easily inserted into the pair of locking holes 16d and 18d of the moderating plate 16 and the mounting plate 17 after the rotary encoder 1 is assembled. Since it is locked by fitting, there is no play in attaching the moderating plate 16 to the attaching plate 17, and there is no shift in the attaching position.

【0036】このように構成・組み立てられたロータリ
ーエンコーダ1は、図16に示すように、図示せぬ回路
パターンが形成された回路基板22に取り付けられて用
いられる。即ち、回路基板22には、3つの端子挿入孔
22aと2つの取付孔22bとが形成されており、各取
付孔22bにロータリーエンコーダ1が取付脚19bを
係止させて取り付けられ、各端子挿入孔22aに各々挿
入された3つの端子5,6,7が半田23により上記回
路パターンと電気的に接続されて使用される。このと
き、取付脚19bには半田付けが施されていないため、
ロータリーエンコーダ1は、延設部18eと回路基板2
2との当接部分P3を支点として矢印A方向に傾倒可能
な状態となっており、また、各端子5,6,7に設けら
れた余裕部5a,6a,7aには負荷が加わっておらず
自然長S1となっている。
The rotary encoder 1 constructed and assembled as described above is used by being attached to a circuit board 22 on which a circuit pattern (not shown) is formed as shown in FIG. That is, three terminal insertion holes 22a and two attachment holes 22b are formed in the circuit board 22, and the rotary encoder 1 is attached to each of the attachment holes 22b by locking the attachment legs 19b. The three terminals 5, 6, 7 inserted into the holes 22a are used by being electrically connected to the circuit pattern by the solder 23. At this time, since the mounting legs 19b are not soldered,
The rotary encoder 1 includes the extension portion 18 e and the circuit board 2.
2 can be tilted in the direction of arrow A with the contact portion P3 as a fulcrum, and a load is applied to the margins 5a, 6a, 7a provided in the terminals 5, 6, 7 respectively. The natural length S1.

【0037】また、回路基板22には逃げ孔22cが形
成されているとともに、この逃げ孔22cのロータリー
エンコーダ1と反対側に、押釦スイッチ24がロータリ
ーエンコーダ1と対向して取り付けられている。この押
釦スイッチ24は、回路基板22に接続固定された本体
25にアクチュエータ25aが配されており、本体25
の一端部にコイルばね26が装着され、図17に示すよ
うに、本体25の他端部には上端を開放した長孔27a
を有する軸支持部27が形成されている。
A relief hole 22c is formed in the circuit board 22, and a push button switch 24 is mounted on the opposite side of the relief hole 22c from the rotary encoder 1 so as to face the rotary encoder 1. The push button switch 24 includes an actuator 25 a provided on a main body 25 connected and fixed to the circuit board 22.
A coil spring 26 is attached to one end of the main body 25. As shown in FIG.
Is formed.

【0038】また、ロータリーエンコーダ1と押釦スイ
ッチ24との間には、円板状の操作体28が配設されそ
の一部分を逃げ孔22c内に位置させおり、回転部材1
0の孔部12に対応する断面6角形状の操作軸29が、
操作体28の中心部に貫通して固定され、その両端部を
各々回転部材10の孔部12と押釦スイッチ24の長孔
27aとに嵌入させて、操作体28及び回転部材10と
一体に回転でき、且つ回転軸11の小径部12b(テー
パ部12aの後端部)を支点として長孔27aの上下方
向(矢印B,C方向)にのみ傾倒動可能に支持されてい
る。
A disc-shaped operating body 28 is disposed between the rotary encoder 1 and the push button switch 24, and a part thereof is located in the escape hole 22c.
The operating shaft 29 having a hexagonal cross section corresponding to the hole 12 of 0
It penetrates and is fixed to the central part of the operating body 28, and both ends thereof are fitted into the hole 12 of the rotating member 10 and the long hole 27 a of the push button switch 24, respectively, and rotate integrally with the operating body 28 and the rotating member 10. It is supported so as to be tiltable only in the vertical direction (arrows B and C directions) of the long hole 27a with the small diameter portion 12b (the rear end of the tapered portion 12a) of the rotating shaft 11 as a fulcrum.

【0039】また、操作軸29の一端部にはブッシュ3
0が嵌め込まれ、このブッシュ30にコイルばね26と
アクチュエータ25aとが当接して、操作軸29を回路
基板22と平行に保持しており、従来技術と同様に、ブ
ッシュ30が押釦スイッチ24の本体25と距離Hを隔
てて対向し、また、本体25の一端部と回転部材10の
回転軸11の一端部との間が距離L1に設定された状態
となっている。
A bush 3 is provided at one end of the operating shaft 29.
0, the coil spring 26 and the actuator 25a contact the bush 30 to hold the operating shaft 29 in parallel with the circuit board 22. As in the prior art, the bush 30 is connected to the main body of the push button switch 24. 25 and a distance H, and the distance between one end of the main body 25 and one end of the rotating shaft 11 of the rotating member 10 is set to a distance L1.

【0040】そして、操作者が手指で操作体28を回転
させると、節度板16の突部16bが放射状凹凸部15
の凹部15aと凸部15bとに交互に弾接してクリック
感を生起させながら、回転部材10が操作軸29と一体
に操作体28の回転と同一方向へ回転するので、回転部
材10の回転に伴って3つの摺動片14aと複数の導電
部8とが接触・離反してパルス信号が生成され、このパ
ルス信号は操作体28の回転量検出信号として端子5,
6,7から出力されて回路基板22に入力される。
When the operator rotates the operating body 28 with his / her finger, the projection 16b of the moderating plate 16 is
The rotating member 10 rotates integrally with the operation shaft 29 in the same direction as the rotation of the operating body 28 while generating a click feeling by alternately elastically contacting the concave portion 15a and the convex portion 15b. Accordingly, the three sliding pieces 14a and the plurality of conductive portions 8 come into contact with and separate from each other to generate a pulse signal. The pulse signal is used as a rotation amount detection signal of the operating body 28 at the terminal 5,
The signals are output from 6, 6 and input to the circuit board 22.

【0041】また、操作者が手指で操作体28を押圧す
ると、操作軸29は、回転軸11の小径部12b(テー
パ部12aの後端部)を支点としてブッシュ30が嵌め
込まれた一端部側が、矢印C方向にコイルばね26の弾
発力に抗して距離H分降下して傾倒し、図18に示すよ
うに、ブッシュ30が押釦スイッチ24のアクチュエー
タ25aを押圧して押釦スイッチ24のON,OFFが
切り換えられ、押釦スイッチ24のON,OFF信号が
回路基板22に入力される。このとき、傾倒支点となる
回転軸11の小径部12bは、回転軸11の一端部の押
釦スイッチ24と反対側に、回転軸11の一端部から更
に距離L2を隔てて位置しており、また、操作軸29の
傾倒が回転軸11の小径部12b以外の部分との接触に
より妨げられぬように、段部12dを設け且つテーパ部
12aの傾斜を上記の如く約3゜としているので、ロー
タリーエンコーダ1と押釦スイッチ24との配置関係を
従来技術と同じとしながらも、操作軸29の傾き角度θ
1はtan-1(距離H÷(距離L1+距離L2))とな
って従来技術の傾きよりも小さくできるとともに、操作
軸29の他端部をテーパ部12aで受けて傾倒した操作
軸29を安定的に支持できる。
When the operator presses the operating body 28 with his / her finger, the operating shaft 29 has one end where the bush 30 is fitted around the small diameter portion 12b (the rear end of the tapered portion 12a) of the rotating shaft 11 as a fulcrum. In the direction indicated by arrow C, the bush 30 is lowered by the distance H against the resilience of the coil spring 26 and tilts, and the bush 30 presses the actuator 25a of the push button switch 24 to turn on the push button switch 24 as shown in FIG. , OFF, and the ON / OFF signal of the push button switch 24 is input to the circuit board 22. At this time, the small-diameter portion 12b of the rotating shaft 11 serving as a tilting fulcrum is located on a side of the one end of the rotating shaft 11 opposite to the push button switch 24 and further away from the one end of the rotating shaft 11 by a distance L2. Since the stepped portion 12d is provided and the inclination of the tapered portion 12a is set to about 3 ° as described above so that the inclination of the operation shaft 29 is not hindered by contact with a portion other than the small-diameter portion 12b of the rotary shaft 11, the rotary While the arrangement relationship between the encoder 1 and the push button switch 24 is the same as that of the prior art, the inclination angle θ of the operation shaft 29 is
1 is tan -1 (distance H ÷ (distance L1 + distance L2)), which can be made smaller than the inclination of the prior art, and the other end of the operation shaft 29 is received by the tapered portion 12a to stabilize the inclined operation shaft 29. I can support it.

【0042】したがって、操作軸29の傾倒時、図19
に示すように、回転部材10の小径部12bと操作軸2
9の他端部との接触点には、各々上向きの力F1と下向
きの力F2とが生じるが、その大きさは操作軸29の傾
きが小さな分従来技術に比べ小さなものとなり、操作軸
29が受けるこれら力F1,F2の反力が小さくなるた
め、操作軸29は円滑に傾倒動できる。また、上・下向
きの力F1,F2を小さく抑えられることにより、ロー
タリーエンコーダ1に加わる矢印A方向のモーメントが
小さくなり、ロータリーエンコーダ1の矢印A方向への
傾倒量が少なくなるため、各端子5,6,7と回路基板
22との接続部分(半田23が付けられた部分)に加わ
る負荷を軽減できる。また、操作軸29の傾きが小さな
分、操作軸29との接触を避けるために設けた、回転軸
11の大径部12cの径寸法を小さくできるので、回転
部材10が小型なものとなり、ロータリーエンコーダ1
の小型化を図ることができる。また、回転部材10の孔
部12及びこれに嵌入する操作軸29が共に正六角形状
であるため、回転部材10の何れの回転角度位置におい
ても、操作軸29の傾倒操作を円滑に行うことができる
ものである。
Accordingly, when the operating shaft 29 is tilted,
As shown in the figure, the small diameter portion 12b of the rotating member 10 and the operating shaft 2
9, an upward force F1 and a downward force F2 are generated at the contact point with the other end, respectively. The magnitude of the upward force F1 and the downward force F2 is smaller than that of the prior art because the inclination of the operation shaft 29 is small. Since the reaction force of these forces F1 and F2 received by the operation shaft 29 becomes small, the operation shaft 29 can be tilted smoothly. In addition, since the upward and downward forces F1 and F2 can be kept small, the moment in the direction of arrow A applied to the rotary encoder 1 decreases, and the amount of tilt of the rotary encoder 1 in the direction of arrow A decreases. , 6, 7 and the circuit board 22 (the portion to which the solder 23 is attached) can be reduced. In addition, since the inclination of the operation shaft 29 is small, the diameter of the large-diameter portion 12c of the rotation shaft 11, which is provided to avoid contact with the operation shaft 29, can be reduced. Encoder 1
Can be reduced in size. Further, since both the hole 12 of the rotating member 10 and the operation shaft 29 fitted into the hole 12 are regular hexagons, the tilting operation of the operation shaft 29 can be smoothly performed at any rotation angle position of the rotation member 10. You can do it.

【0043】更には、操作軸29は回転部材10の中央
部で係合されており、孔部12も両開口端付近で操作軸
29は(L3/2)tanθ1程度だけ径方向に移動す
ることになるから、この意味でも、操作軸29との接触
を避けるために設けた回転軸11の大径部12cの径寸
法を従来より小さくできるので、回転部材10が小型な
ものとなり、ひいてはロータリーエンコーダ1の小型化
を図ることができる。また、小径部12aには平坦面が
形成されており操作軸29との嵌合を確実にしている
が、そのため操作軸29の傾倒に伴って回転部材10が
傾く傾向にある。しかし、本実施形態では、操作軸29
は回転軸線R方向において回転部材10の中央部で係合
しており、回転部材10の回転軸11を介して軸受部に
当接するので、この意味でも、従来に比べて回転部材1
0の支持部分に与えるダメージを抑えることができる。
Further, the operating shaft 29 is engaged at the center of the rotating member 10, and the operating shaft 29 is moved in the radial direction by about (L3 / 2) tan θ1 near both open ends of the hole 12. In this sense, the diameter of the large-diameter portion 12c of the rotary shaft 11 provided to avoid contact with the operation shaft 29 can be made smaller than in the past. 1 can be reduced in size. The small-diameter portion 12a is formed with a flat surface to ensure the fitting with the operation shaft 29. Therefore, the rotating member 10 tends to tilt as the operation shaft 29 tilts. However, in the present embodiment, the operation shaft 29
Is engaged at the center of the rotating member 10 in the direction of the rotation axis R, and abuts on the bearing via the rotating shaft 11 of the rotating member 10.
Thus, the damage to the supporting portion of No. 0 can be suppressed.

【0044】また、図18に示すように、ロータリーエ
ンコーダ1は操作軸29の傾倒により矢印A方向に傾倒
するが、このとき、ロータリーエンコーダ1は、節度板
16の突部16bが回転部材10の放射状凹凸部15の
凹部15aに嵌まり込んでいるため回転部材10が回転
することなく、取付板17の背面壁18に一体に形成さ
れた延設部18eと回路基板22との当接部分P3を支
点としてスムーズに傾倒し、回路基板22との間に隙間
tが生じ、これに伴い3本の端子5,6,7の余裕部5
a,6a,7aが自然長S1から縮小長S2まで縮まり
ロータリーエンコーダ1の傾倒量を吸収する。この吸収
の結果、ロータリーエンコーダ1の傾倒により各端子
5,6,7と回路基板22との接続部分に加わる負荷が
解消され、各端子5,6,7と回路基板22との接続状
態を良好に維持できる。
As shown in FIG. 18, the rotary encoder 1 is tilted in the direction of arrow A by tilting the operation shaft 29. At this time, the rotary encoder 1 Since the rotary member 10 is fitted into the concave portion 15a of the radial uneven portion 15, the contact portion P3 between the extended portion 18e formed integrally with the rear wall 18 of the mounting plate 17 and the circuit board 22 does not rotate. Is tilted smoothly with the fulcrum as a fulcrum, and a gap t is formed between the circuit board 22 and the clearances 5 of the three terminals 5, 6, 7.
a, 6a and 7a are reduced from the natural length S1 to the reduced length S2 to absorb the tilt amount of the rotary encoder 1. As a result of this absorption, the load applied to the connection portions between the terminals 5, 6, 7 and the circuit board 22 due to the tilt of the rotary encoder 1 is eliminated, and the connection state between the terminals 5, 6, 7 and the circuit board 22 is improved. Can be maintained.

【0045】そして、操作者が操作体28の押圧を止め
ると、コイルばね26の弾発力によって操作体28及び
操作軸29が押圧前の状態(矢印C方向)に復帰し、端
子5,6,7の余裕部5a,6a,7aの弾発力によっ
てロータリーエンコーダ1が押圧前の状態(矢印Aと反
対方向)に復帰する。しかして、回路基板22に入力さ
れた操作体28の回転量検出信号及び押釦スイッチ24
のON,OFF信号は、回路基板22の図示せぬCPU
で演算が施された後、図示を省略した表示装置に入力さ
れ、図示せぬディスプレイ上の画面スクロールやカーソ
ル等の制御が実行されるようになっている。
When the operator stops pressing the operating body 28, the operating body 28 and the operating shaft 29 return to the state before the pressing (in the direction of arrow C) by the resilient force of the coil spring 26, and the terminals 5 and 6 are turned off. , 7 allow the rotary encoder 1 to return to the state before being pressed (in the direction opposite to the arrow A) due to the elastic force of the margins 5a, 6a, 7a. Thus, the rotation amount detection signal of the operating body 28 input to the circuit board 22 and the push button switch 24
Are turned on and off by a CPU (not shown) on the circuit board 22.
After the calculation is performed, the data is input to a display device (not shown), and control such as screen scrolling and a cursor on a display (not shown) is executed.

【0046】尚、この実施形態では、回転部材10に被
検知体20を設け、支持部材2に検知体9を設けたが、
回転部材10に検知体9を設け、支持部材2に被検知体
20を設けるようにしてもよく、また、この実施形態で
は、回転部材10の回転によりパルス信号を生成するパ
ルス信号生成部を摺動子14からなる被検知体20と複
数の導電部8からなる検知体9との組み合わせで構成し
ているが、本発明はこれに限定されるものではなく、こ
の他に例えば、VR式エンコーダや可変抵抗器が如き摺
動子と抵抗体との組み合わせ、磁石とホール素子の組み
合わせ等で構成することも可能である。
In this embodiment, the detection member 20 is provided on the rotating member 10 and the detection member 9 is provided on the support member 2.
The detecting member 9 may be provided on the rotating member 10 and the detected object 20 may be provided on the supporting member 2. In this embodiment, a pulse signal generating unit that generates a pulse signal by rotation of the rotating member 10 is slid. Although the present invention is configured by a combination of the detection target 20 including the moving element 14 and the detection target 9 including the plurality of conductive portions 8, the present invention is not limited to this. It is also possible to configure a combination of a slider and a resistor such as a variable resistor or a combination of a magnet and a Hall element.

【0047】[0047]

【発明の効果】本発明は、以上説明したような形態で実
施され、以下に記載するような効果を奏する。
The present invention is embodied in the form described above, and has the following effects.

【0048】固定部材と、この固定部材に回転可能に支
持された回転部材と、この回転部材の回転により生成さ
れた信号を出力する端子とを有する回転型電気部品と、
前記端子が接続されて前記信号が入力される回路基板と
を備えてなり、前記固定部材は、前記回転型電気部品を
前記回路基板に取り付けるための取付板を備え、前記回
転部材の一端部に操作軸を嵌入するための孔部を前記回
転部材の回転軸線方向に延びるように形成し、前記端子
に余裕部を形成するとともに、前記取付板に設けた取付
脚で前記回転型電気部品を前記回路基板に取り付け、前
記操作軸の操作により前記回転型電気部品が傾倒された
際に、前記余裕部が撓み込んで前記回転型電気部品の傾
倒量を吸収し、前記端子と前記回路基板との接続状態を
維持するので、前記回転型電機部品の傾倒により前記端
子と前記回路基板との接続部分に加わる負荷が解消さ
れ、前記端子と前記回路基板との接続状態を良好に維持
できる。
A rotary electric component having a fixed member, a rotary member rotatably supported by the fixed member, and a terminal for outputting a signal generated by rotation of the rotary member;
A circuit board to which the terminals are connected and to which the signal is input, wherein the fixing member includes a mounting plate for mounting the rotary electric component to the circuit board, and at one end of the rotary member. A hole for fitting the operation shaft is formed so as to extend in the direction of the rotation axis of the rotating member, a margin is formed in the terminal, and the rotary electric component is mounted on the mounting plate by the mounting leg provided on the mounting plate. When the rotary electric component is tilted by the operation of the operation shaft when attached to a circuit board, the extra portion bends to absorb the tilting amount of the rotary electrical component, and the connection between the terminal and the circuit board is reduced. Since the connection state is maintained, the load applied to the connection portion between the terminal and the circuit board due to the tilting of the rotary electric component is eliminated, and the connection state between the terminal and the circuit board can be maintained well.

【0049】また、前記取付板に前記回路基板に当接す
る延設部を設け、前記回転部材の一端部から他端部に向
かって前記端子と前記延設部とをこの順番に配置し、前
記操作軸の操作により前記回転型電気部品が、前記延設
部と前記回路基板との当接部分を支点として傾倒するの
で、前記回転型電気部品をスムーズに傾倒させることが
できる。
[0049] Further, the mounting plate is provided with an extending portion that comes into contact with the circuit board, and the terminal and the extending portion are arranged in this order from one end to the other end of the rotating member. By operating the operation shaft, the rotary electric component is tilted with the contact portion between the extending portion and the circuit board as a fulcrum, so that the rotary electrical component can be tilted smoothly.

【0050】さらに、前記取付脚は、前記回路基板に半
田付け無しで前記回転部品を傾倒可能な状態で係止され
ているので、簡単な構成で前記回転型電気部品を前記回
路基板に傾倒可能に取り付けることができる。
Further, since the mounting leg is locked to the circuit board without soldering so that the rotary component can be tilted, the rotary electrical component can be tilted to the circuit board with a simple configuration. Can be attached to

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の入力装置に係る回転型電機部品の正面
図。
FIG. 1 is a front view of a rotary electric machine component according to an input device of the present invention.

【図2】本発明の入力装置に係る回転型電気部品の側面
図。
FIG. 2 is a side view of the rotary electric component according to the input device of the present invention.

【図3】図1の3−3線に沿う断面図。FIG. 3 is a sectional view taken along line 3-3 in FIG. 1;

【図4】本発明の入力装置に係る回転型電気部品に備え
られる支持部材の裏面図。
FIG. 4 is a rear view of a support member provided in the rotary electric component according to the input device of the present invention.

【図5】本発明の入力装置に係る回転型電気部品に備え
られる支持部材の側面図。
FIG. 5 is a side view of a support member provided in the rotary electric component according to the input device of the present invention.

【図6】本発明の入力装置に係る回転型電気部品に備え
られる回転部材の正面図。
FIG. 6 is a front view of a rotary member provided in the rotary electric component according to the input device of the present invention.

【図7】本発明の入力装置に係る回転型電気部品に備え
られる回転部材の側面図。
FIG. 7 is a side view of a rotary member provided in the rotary electric component according to the input device of the present invention.

【図8】本発明の入力装置に係る回転型電機部品に備え
られる回転部材の裏面図。
FIG. 8 is a rear view of a rotating member provided in the rotary electric component according to the input device of the present invention.

【図9】図6の9−9線に沿う断面図。FIG. 9 is a sectional view taken along lines 9-9 in FIG. 6;

【図10】本発明の入力装置に係る回転型電気部品に備
えられる回転部材に摺動子が取り付けられた状態を示す
正面図。
FIG. 10 is a front view showing a state in which a slider is attached to a rotary member provided in the rotary electric component according to the input device of the present invention.

【図11】本発明の入力装置に係る回転型電気部品に備
えられる節度板の正面図。
FIG. 11 is a front view of a moderating plate provided in the rotary electric component according to the input device of the present invention.

【図12】図11の12−12線に沿う断面図。FIG. 12 is a sectional view taken along the line 12-12 in FIG. 11;

【図13】本発明の入力装置に係る回転型電気部品に備
えられる取付板の正面図。
FIG. 13 is a front view of a mounting plate provided on the rotary electric component according to the input device of the present invention.

【図14】図13の14−14線に沿う断面図。FIG. 14 is a sectional view taken along the line 14-14 in FIG. 13;

【図15】本発明の入力装置に係る回転型電気部品の組
立方法を示す説明図。
FIG. 15 is an explanatory view showing a method of assembling a rotary electric component according to the input device of the present invention.

【図16】本発明の入力装置の断面図。FIG. 16 is a sectional view of the input device of the present invention.

【図17】本発明の入力装置に係る回路基板に備えられ
た押釦スイッチの斜視図。
FIG. 17 is a perspective view of a push button switch provided on a circuit board according to the input device of the present invention.

【図18】本発明の入力装置に係る回路基板に備えられ
た押釦スイッチが駆動された状態を示す説明図。
FIG. 18 is an explanatory diagram showing a state in which a push button switch provided on a circuit board according to the input device of the present invention is driven.

【図19】本発明の入力装置の要部断面図。FIG. 19 is a sectional view of a main part of the input device of the present invention.

【図20】従来の入力装置の断面図。FIG. 20 is a sectional view of a conventional input device.

【図21】図20の分解斜視図。FIG. 21 is an exploded perspective view of FIG. 20;

【図22】従来の入力装置に係る回転型電気部品に備え
られた回転部材の正面図。
FIG. 22 is a front view of a rotary member provided in a rotary electric component according to a conventional input device.

【図23】従来の入力装置に係る回路基板に備えられた
押釦スイッチが駆動された状態を示す説明図。
FIG. 23 is an explanatory diagram showing a state in which a push button switch provided on a circuit board according to a conventional input device is driven.

【符号の説明】[Explanation of symbols]

1 ロータリーエンコーダ(回転型電気部品) 2 支持部材 3 側壁部 3a 突部 3b 貫通孔 3c 突起 4 嵌合孔 5 端子 5a 余裕部 6 端子 6a 余裕部 7 端子 7a 余裕部 8 導電部 9 検知体 10 回転部材 11 回転軸 12 孔部 12a テーパ部 12b 小径部 12c 大径部 12d 段差部 13 凹部 13a 突部 14 摺動子 14a 摺動片 14b 孔 15 放射状凹凸部 15a 凹部 15b 凸部 16 節度板 16a 挿通孔 16b 突部 16c 貫通孔 16d 係止孔 17 取付板 18 背面壁 18a 嵌合孔 18b 係合孔 18c 貫通孔 18d 係止孔 18e 延設部 19 側壁 19a 爪部 19b 取付脚 20 被検知体 21 治具 21a 基台 22 回路基板 22a 端子挿通孔 22b 取付孔 22c 逃げ孔 23 半田 24 押釦スイッチ 25 本体 25a アクチュエータ 26 コイルばね 27 軸支持部 27a 長孔 28 操作体 29 操作軸 30 ブッシュ R 回転軸線 K 延長線 DESCRIPTION OF SYMBOLS 1 Rotary encoder (rotary electric component) 2 Support member 3 Side wall part 3a Projection part 3b Through hole 3c Projection 4 Fitting hole 5 Terminal 5a Extra part 6 Terminal 6a Extra part 7 Terminal 7a Extra part 8 Conductive part 9 Detector 10 Rotation Member 11 Rotation shaft 12 Hole 12a Tapered portion 12b Small diameter portion 12c Large diameter portion 12d Stepped portion 13 Concave portion 13a Projection 14 Slider 14a Sliding piece 14b Hole 15 Radial irregularity 15a Concave portion 15b Convex portion 16 Moderation plate 16a Insertion hole 16b Projecting portion 16c Through hole 16d Locking hole 17 Mounting plate 18 Back wall 18a Fitting hole 18b Engaging hole 18c Through hole 18d Locking hole 18e Extension portion 19 Side wall 19a Claw portion 19b Mounting leg 20 Detected object 21 Jig 21a base 22 circuit board 22a terminal insertion hole 22b mounting hole 22c escape hole 23 solder 24 push button switch 2 Body 25a actuator 26 coil spring 27 shaft support portion 27a elongated hole 28 operation body 29 operation shaft 30 Bush R rotation axis K extension

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 固定部材と、この固定部材に回転可能に
支持された回転部材と、この回転部材の回転により生成
された信号を出力する端子とを有する回転型電気部品
と、前記端子が接続されて前記信号が入力される回路基
板とを備えてなり、前記固定部材は、前記回転型電気部
品を前記回路基板に取り付けるための取付板を備え、前
記回転部材の一端部に操作軸を嵌入するための孔部を前
記回転部材の回転軸線方向に延びるように形成し、前記
端子に余裕部を形成するとともに、前記取付板に設けた
取付脚で前記回転型電気部品を前記回路基板に取り付
け、前記操作軸の操作により前記回転型電気部品が傾倒
された際に、前記余裕部が撓み込んで前記回転型電気部
品の傾倒量を吸収し、前記端子と前記回路基板との接続
状態を維持することを特徴とする入力装置。
A rotary member having a fixed member, a rotating member rotatably supported by the fixed member, and a terminal for outputting a signal generated by rotation of the rotating member; And a circuit board to which the signal is input, wherein the fixing member includes a mounting plate for mounting the rotary electric component to the circuit board, and an operation shaft is fitted into one end of the rotary member. Holes are formed to extend in the direction of the rotation axis of the rotating member, a margin is formed in the terminal, and the rotary electric component is mounted on the circuit board by mounting legs provided on the mounting plate. When the rotary electric component is tilted by the operation of the operation shaft, the extra portion bends to absorb the tilting amount of the rotary electrical component, thereby maintaining the connection state between the terminal and the circuit board. Specially Input device to be used.
【請求項2】 前記取付板に前記回路基板に当接する延
設部を設け、前記回転部材の一端部から他端部に向かっ
て前記端子と前記延設部とをこの順番に配置し、前記操
作軸の操作により前記回転型電気部品が、前記延設部と
前記回路基板との当接部分を支点として傾倒することを
特徴とする請求項1に記載の入力装置。
2. The mounting plate has an extending portion that contacts the circuit board, and the terminal and the extending portion are arranged in this order from one end to the other end of the rotating member. 2. The input device according to claim 1, wherein the rotary electric component is tilted about an abutting portion between the extending portion and the circuit board by operating an operation shaft. 3.
【請求項3】 前記取付脚は、前記回路基板に半田付け
無しで前記回転部品を傾倒可能な状態で係止されている
ことを特徴とする請求項2に記載の入力装置。
3. The input device according to claim 2, wherein the mounting leg is locked to the circuit board so that the rotating component can be tilted without soldering.
JP13330299A 1999-05-13 1999-05-13 Input device Expired - Lifetime JP3780119B2 (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
JP13330299A JP3780119B2 (en) 1999-05-13 1999-05-13 Input device
TW89106916A TW535103B (en) 1999-05-13 2000-04-13 Input device for rotational electric components
CNB2004100042674A CN1269015C (en) 1999-05-13 2000-05-11 Input device
CNB001074040A CN1185569C (en) 1999-05-13 2000-05-11 Input device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP13330299A JP3780119B2 (en) 1999-05-13 1999-05-13 Input device

Publications (2)

Publication Number Publication Date
JP2000322190A true JP2000322190A (en) 2000-11-24
JP3780119B2 JP3780119B2 (en) 2006-05-31

Family

ID=15101497

Family Applications (1)

Application Number Title Priority Date Filing Date
JP13330299A Expired - Lifetime JP3780119B2 (en) 1999-05-13 1999-05-13 Input device

Country Status (1)

Country Link
JP (1) JP3780119B2 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014167931A (en) * 2014-05-12 2014-09-11 Toyoda Iron Works Co Ltd Press-fit terminal
JP7347565B1 (en) 2022-03-15 2023-09-20 カシオ計算機株式会社 Operators and electronic musical instruments

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014167931A (en) * 2014-05-12 2014-09-11 Toyoda Iron Works Co Ltd Press-fit terminal
JP7347565B1 (en) 2022-03-15 2023-09-20 カシオ計算機株式会社 Operators and electronic musical instruments

Also Published As

Publication number Publication date
JP3780119B2 (en) 2006-05-31

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