JPH076721U - Rotation angle detector - Google Patents
Rotation angle detectorInfo
- Publication number
- JPH076721U JPH076721U JP4194793U JP4194793U JPH076721U JP H076721 U JPH076721 U JP H076721U JP 4194793 U JP4194793 U JP 4194793U JP 4194793 U JP4194793 U JP 4194793U JP H076721 U JPH076721 U JP H076721U
- Authority
- JP
- Japan
- Prior art keywords
- shaft
- input shaft
- coupling
- rotation angle
- joint
- 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.)
- Pending
Links
Landscapes
- Transmission And Conversion Of Sensor Element Output (AREA)
- Optical Transform (AREA)
Abstract
(57)【要約】
【目的】 周辺に軸継ぎ手の設置スペースを必要とせず
に使用でき、かつ被検出側の軸に多少の変位や力が生じ
る場合でも精度良く角度検出できるものとする。ロータ
リエンコーダやポテンショメータに適用される。
【構成】 入力軸1は一端に角度検出用回転子2が固定
され、2個の軸受3で回転自在に支持されている。角度
検出用回転子2は、外周部に多数のスリット9が放射状
に設けられた円板スケールからなり、スリット形成位置
の両側に発光素子と受光素子とが設けられる。入力軸1
は中空軸に形成し、内部に撓み軸継ぎ手4が内蔵してあ
る。軸継ぎ手4はオルダムカップリング形式のものであ
り、被検出側の軸8に形成された伝達部材5と、中間部
材6と、従動部材7とで構成される。中間部材6は、両
側の部材5,7に直交する係合溝6a,6bで係合し、
従動部材7は入力軸1に一体に固定される。軸継ぎ手4
にはベローズカップリング等も使用できる。
(57) [Summary] [Purpose] It should be possible to use it without the need for a shaft joint installation space around it, and to detect angles accurately even if some displacement or force occurs on the shaft on the detected side. It is applied to rotary encoders and potentiometers. [Structure] The input shaft 1 has an angle detection rotor 2 fixed at one end and is rotatably supported by two bearings 3. The angle detecting rotor 2 is a disk scale having a large number of slits 9 radially provided on the outer periphery thereof, and a light emitting element and a light receiving element are provided on both sides of the slit forming position. Input shaft 1
Is formed as a hollow shaft, and a flexible shaft coupling 4 is incorporated therein. The shaft joint 4 is of the Oldham coupling type and is composed of a transmission member 5 formed on the shaft 8 on the detected side, an intermediate member 6, and a driven member 7. The intermediate member 6 engages with the engaging grooves 6a and 6b orthogonal to the members 5 and 7 on both sides,
The driven member 7 is integrally fixed to the input shaft 1. Shaft joint 4
A bellows coupling or the like can also be used for this.
Description
【0001】[0001]
この考案は、光学式あるいは磁気式ロータリエンコーダや、ポテンショメータ 等の回転角度検出装置に関する。 The present invention relates to a rotation angle detecting device such as an optical or magnetic rotary encoder or a potentiometer.
【0002】[0002]
従来、回転角度を検出する装置として、図3に示す光学式ロータリエンコーダ が使用されている。これは、入力軸51に取付けた円板スケール52の放射状ス リット53を光源54と受光素子55とで光電的に読み取り、回転角度を検出す るものである。受光素子55の前方には、位置固定のインデックススケール56 が設けてある。 入力軸51は、2個の転がり軸受57,57で支持してあり、通常、被検出側 の軸58とは撓み軸継ぎ手(図示せず)などで接続される。そのため、被検出側 の軸58が変位しても、入力軸51が変位したり、力を受けることはない。 Conventionally, an optical rotary encoder shown in FIG. 3 has been used as a device for detecting a rotation angle. In this, the radial slit 53 of the disc scale 52 attached to the input shaft 51 is photoelectrically read by the light source 54 and the light receiving element 55, and the rotation angle is detected. A fixed index scale 56 is provided in front of the light receiving element 55. The input shaft 51 is supported by two rolling bearings 57, 57, and is usually connected to the shaft 58 on the detected side by a flexible shaft joint (not shown) or the like. Therefore, even if the shaft 58 on the detected side is displaced, the input shaft 51 is neither displaced nor subjected to a force.
【0003】[0003]
しかし、スペースの都合などにより、被検出側の軸58と入力軸51とを、軸 継ぎ手を使わないで接続する場合がある。そのような場合、入力軸51は変位し たり、力を受けたりする。そのため、円板スケール52も変位することになり、 検出される回転角度に誤差が含まれる可能性がある。 However, there is a case where the shaft 58 on the detected side and the input shaft 51 are connected without using a shaft coupling due to space limitations. In such a case, the input shaft 51 is displaced or receives a force. Therefore, the disc scale 52 is also displaced, and the detected rotation angle may include an error.
【0004】 この考案の目的は、周辺に軸継ぎ手の設置スペースを必要とせずに使用でき、 かつ被検出側の軸に多少の変位や力が生じた場合でも精度良く角度検出が行える 回転角度検出装置を提供することである。The object of the present invention is to use without requiring a space for installing a shaft coupling in the periphery, and to accurately detect an angle even if some displacement or force is generated on the shaft on the detected side. It is to provide a device.
【0005】[0005]
この考案の回転角度検出装置は、角度検出用回転子が設けられて軸受に回転自 在に支持された入力軸を中空軸とし、被検出側の軸を前記入力軸に接続する軸継 ぎ手を前記入力軸の内部に設けたものである。軸継ぎ手は、偏心および偏角の吸 収可能なものとする。 In the rotation angle detecting device of the present invention, an input shaft, which is provided with a rotor for angle detection and is rotatably supported by a bearing, is a hollow shaft, and a shaft on the detection side is connected to the input shaft. Is provided inside the input shaft. The shaft coupling shall be able to absorb eccentricity and declination.
【0006】[0006]
この構成によると、被検出側の軸の回転が内蔵の軸継ぎ手を介して入力軸に伝 えられる。この場合に、被検出側の軸が多少変位していたり、回転方向以外の力 が加わっていても、これらの変位や力は前記軸継ぎ手で吸収され、回転変位のみ が入力軸に伝えられる。そのため、正確な回転角度が検出でき、また回転角度検 出装置の破損防止にも役立つ。また、軸継ぎ手を入力軸に内蔵したので、外部に 軸継ぎ手を設けることが不要で、周辺に軸継ぎ手の設置スペースが得られない箇 所でも使用することができる。 With this configuration, the rotation of the shaft on the detected side is transmitted to the input shaft via the built-in shaft coupling. In this case, even if the shaft on the detected side is slightly displaced or a force other than the rotational direction is applied, these displacements and forces are absorbed by the shaft coupling, and only the rotational displacement is transmitted to the input shaft. Therefore, the accurate rotation angle can be detected, and it also helps prevent damage to the rotation angle detection device. In addition, since the shaft joint is built into the input shaft, there is no need to install a shaft joint outside, and it can be used in places where the space for installing the shaft joint cannot be obtained.
【0007】[0007]
この考案の一実施例を図1および図2に基づいて説明する。この実施例は光学 式ロータリエンコーダに適用した例である。入力軸1は、一端に角度検出用回転 子2が固定され、シール付き深溝玉軸受等からなる2個の軸受3で回転自在に支 持されている。角度検出用回転子2は、外周部に多数のスリット9が放射状に設 けられた円板スケールからなり、スリット形成位置の両側に発光素子と受光素子 とが配置される。入力軸1は中空軸に形成し、内部に撓み軸継ぎ手4が内蔵して ある。 An embodiment of this invention will be described with reference to FIGS. This embodiment is an example applied to an optical rotary encoder. An angle detecting rotor 2 is fixed to one end of the input shaft 1 and is rotatably supported by two bearings 3 such as a deep groove ball bearing with a seal. The angle detecting rotor 2 is a disc scale having a large number of slits 9 radially provided on the outer periphery thereof, and a light emitting element and a light receiving element are arranged on both sides of the slit forming position. The input shaft 1 is formed as a hollow shaft, and a flexible shaft joint 4 is built therein.
【0008】 軸継ぎ手4はオルダムカップリング形式のものであり、被検出側の軸8に形成 された伝達部材5と、中間部材6と、従動部材7とで構成される。各部材5〜7 は、入力軸1の内径よりも若干小径の丸軸状のものであり、従動部材7は入力軸 1に一体に固定されている。中間部材6は、両端面に一対の係合溝6a,6bを 互いに直交して設けたものであり、これら係合溝6a,6bに各々係合する係合 突条5a,7aが、前記伝達部材5および従動部材7に形成されている。被検出 側の軸8は、他の機器に回転自在に支持されてこの回転角度検出装置の入力軸1 に先端が挿入されたものであり、中間部材6は、両側の部材5,7に前記係合溝 6a,6bで係合して入力軸1内に移動自在に収容されている。The shaft joint 4 is of the Oldham coupling type and is composed of a transmission member 5 formed on the shaft 8 on the detected side, an intermediate member 6, and a driven member 7. Each of the members 5 to 7 is a round shaft having a diameter slightly smaller than the inner diameter of the input shaft 1, and the driven member 7 is integrally fixed to the input shaft 1. The intermediate member 6 has a pair of engagement grooves 6a and 6b provided on both end surfaces thereof at right angles to each other. It is formed on the member 5 and the driven member 7. The shaft 8 on the detected side is rotatably supported by another device and has its tip inserted into the input shaft 1 of this rotation angle detecting device. It is movably accommodated in the input shaft 1 by being engaged with the engaging grooves 6a and 6b.
【0009】 この構成によると、被検出側の軸8の回転が内蔵の軸継ぎ手4を介して入力軸 1に伝えられ、角度検出用回転子2が回転する。この場合に、軸継ぎ手4の中間 部材6は、両側の部材5,7に直交する2本の係合溝6a,6bで係合した状態 で、入力軸1内を径方向に自由に移動できる。そのため、被検出側の軸8が入力 1に対して偏心や偏角を生じていたり、回転方向以外の力が加わっていても、こ れらの変位や力が中間部材6の自由な動きで吸収され、回転変位のみが入力軸1 に伝えられる。そのため、正確な回転角度が検出でき、また回転角度検出装置の 破損防止にも役立つ。 また、軸継ぎ手4を入力軸1に内蔵したので、外部に軸継ぎ手を設けることが 不要で、周辺に軸継ぎ手の設置スペースが得られない箇所でも使用することがで きる。With this configuration, the rotation of the shaft 8 on the detected side is transmitted to the input shaft 1 via the built-in shaft coupling 4, and the rotor 2 for angle detection rotates. In this case, the intermediate member 6 of the shaft coupling 4 can freely move in the radial direction inside the input shaft 1 while being engaged with the two engaging grooves 6a and 6b orthogonal to the members 5 and 7 on both sides. . Therefore, even if the shaft 8 on the detected side is eccentric or declined with respect to the input 1, or if a force other than the rotational direction is applied, these displacements and forces can be freely moved by the intermediate member 6. Only the rotational displacement is absorbed and transmitted to the input shaft 1. Therefore, the accurate rotation angle can be detected, and it also helps prevent damage to the rotation angle detection device. Further, since the shaft coupling 4 is built in the input shaft 1, it is not necessary to provide the shaft coupling externally, and the shaft coupling can be used in a place where the space for installing the shaft coupling cannot be obtained in the periphery.
【0010】 なお、前記実施例では内蔵の軸継ぎ手4としてオルダムカップリングを使用し たが、ベローズカップリングやその他の種々の撓み軸継ぎ手等を使用することが できる。また、前記実施例は光学式のロータリエンコーダに適用した場合につき 説明したが、この考案は回転角度検出装置一般に適用することができる。例えば 、角度検出用回転子2に磁気スケールを施した磁気式エンコーダや、入力軸1に 円板形の角度検出用回転子2に代えてブラシ型の角度検出用回転子を設けたポテ ンショメータ等にも適用することができる。Although the Oldham coupling is used as the built-in shaft coupling 4 in the above-mentioned embodiment, a bellows coupling or other various flexible shaft couplings can be used. Further, although the above embodiment has been described with respect to the case of being applied to the optical rotary encoder, the present invention can be applied to a rotation angle detecting device in general. For example, a magnetic encoder in which the angle detecting rotor 2 is provided with a magnetic scale, a potentiometer in which a brush type angle detecting rotor is provided in the input shaft 1 instead of the disc type angle detecting rotor 2, and the like. Can also be applied to.
【0011】[0011]
この考案の回転角度検出装置は、入力軸を中空軸として偏心および偏角の吸収 可能な軸継ぎ手を入力軸に内蔵したので、周辺に撓み軸継ぎ手の設置スペースを 必要とせずに使用でき、かつ被検出側の軸に多少の変位や力が生じる場合でも精 度良く角度検出が行える。 In the rotation angle detecting device of the present invention, since the input shaft has a hollow shaft joint and is capable of absorbing eccentricity and declination, the input shaft has a built-in shaft joint. Even if some displacement or force is generated on the shaft on the detected side, angle detection can be performed accurately.
【図1】この考案の一実施例の切欠斜視図である。FIG. 1 is a cutaway perspective view of an embodiment of the present invention.
【図2】(A)はその軸継ぎ手の平面図、(B)は同正
面図、(C)は(A)のC−C線断面図である。2A is a plan view of the shaft coupling, FIG. 2B is a front view of the same, and FIG. 2C is a sectional view taken along line CC of FIG.
【図3】従来例の斜視図である。FIG. 3 is a perspective view of a conventional example.
1…入力軸、2…角度検出用回転子、3…軸受、4…軸
継ぎ手、5…伝達部材、6…中間部材、6a,6b…係
合溝、7…従動部材DESCRIPTION OF SYMBOLS 1 ... Input shaft, 2 ... Angle detection rotor, 3 ... Bearing, 4 ... Shaft coupling, 5 ... Transmission member, 6 ... Intermediate member, 6a, 6b ... Engaging groove, 7 ... Follower member
Claims (1)
転自在に支持された入力軸を中空軸とし、被検出側の軸
を前記入力軸に接続する偏心および偏角の吸収可能な軸
継ぎ手を前記入力軸の内部に設けた回転角度検出装置。1. An axis capable of absorbing an eccentricity and an eccentricity, in which an input shaft rotatably supported by a bearing is provided with a rotor for detecting an angle is a hollow shaft, and a shaft on a detection side is connected to the input shaft. A rotation angle detection device in which a joint is provided inside the input shaft.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP4194793U JPH076721U (en) | 1993-06-30 | 1993-06-30 | Rotation angle detector |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP4194793U JPH076721U (en) | 1993-06-30 | 1993-06-30 | Rotation angle detector |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH076721U true JPH076721U (en) | 1995-01-31 |
Family
ID=12622413
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP4194793U Pending JPH076721U (en) | 1993-06-30 | 1993-06-30 | Rotation angle detector |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH076721U (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS51156212U (en) * | 1975-06-04 | 1976-12-13 | ||
JPS5533954U (en) * | 1978-08-25 | 1980-03-05 | ||
JP2002107110A (en) * | 2000-09-28 | 2002-04-10 | Tadatoshi Goto | Detector for relative rotational position |
WO2015045140A1 (en) * | 2013-09-30 | 2015-04-02 | 株式会社トランストロン | Rotation angle sensor |
-
1993
- 1993-06-30 JP JP4194793U patent/JPH076721U/en active Pending
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS51156212U (en) * | 1975-06-04 | 1976-12-13 | ||
JPS5533954U (en) * | 1978-08-25 | 1980-03-05 | ||
JP2002107110A (en) * | 2000-09-28 | 2002-04-10 | Tadatoshi Goto | Detector for relative rotational position |
WO2015045140A1 (en) * | 2013-09-30 | 2015-04-02 | 株式会社トランストロン | Rotation angle sensor |
JPWO2015045140A1 (en) * | 2013-09-30 | 2017-03-02 | 株式会社トランストロン | Rotation angle sensor |
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