JP7194903B2 - Electric tool - Google Patents

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JP7194903B2
JP7194903B2 JP2017107099A JP2017107099A JP7194903B2 JP 7194903 B2 JP7194903 B2 JP 7194903B2 JP 2017107099 A JP2017107099 A JP 2017107099A JP 2017107099 A JP2017107099 A JP 2017107099A JP 7194903 B2 JP7194903 B2 JP 7194903B2
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motor
magnet
rotating body
motor shaft
power tool
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JP2018202499A (en
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弘明 村上
亜紀子 本田
光政 水野
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Panasonic Intellectual Property Management Co Ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25FCOMBINATION OR MULTI-PURPOSE TOOLS NOT OTHERWISE PROVIDED FOR; DETAILS OR COMPONENTS OF PORTABLE POWER-DRIVEN TOOLS NOT PARTICULARLY RELATED TO THE OPERATIONS PERFORMED AND NOT OTHERWISE PROVIDED FOR
    • B25F5/00Details or components of portable power-driven tools not particularly related to the operations performed and not otherwise provided for

Description

本発明は、モータの回転角度を検出する回転検出部を備えた電動工具に関する。 The present invention relates to an electric power tool having a rotation detector that detects the rotation angle of a motor.

穴あけ作業やねじ類の締付作業に用いられる手持ち式の電動工具は、小型化および軽量化のために、ビルトイン式モータを使用することが多い(たとえば特許文献1~3)。ビルトイン式モータは、モータの構成要素をハウジングの内周面に突設されたリブ部材に直接組み付けることで構成される。 2. Description of the Related Art Hand-held electric power tools used for drilling and fastening screws often use built-in motors in order to reduce the size and weight (for example, Patent Documents 1 to 3). A built-in type motor is constructed by directly assembling components of the motor to rib members projecting from the inner peripheral surface of a housing.

特開2007-136607号公報JP 2007-136607 A 特開2006-972号公報Japanese Unexamined Patent Application Publication No. 2006-972 特開2012-71360号公報JP 2012-71360 A

インパクト回転工具などの電動工具では、モータの回転角度から締付トルクを推定する制御が実施される。締付トルクの推定精度を高めるためには、モータの回転角度を高精度に検出する回転検出部を電動工具に設けることが必要であるが、電動工具はユーザが手に持って使用するものであるため、回転検出部の小型化に対する要請は大きい。 Electric power tools such as impact rotary tools are controlled to estimate tightening torque from the rotation angle of the motor. In order to increase the accuracy of tightening torque estimation, it is necessary to equip the power tool with a rotation detector that detects the rotation angle of the motor with high accuracy. Therefore, there is a great demand for miniaturization of the rotation detector.

本発明はこうした状況に鑑みなされたものであり、その目的は、モータの回転角度を検出する回転検出部の小型化に寄与する技術を提供することにある。 SUMMARY OF THE INVENTION The present invention has been made in view of such circumstances, and an object of the present invention is to provide a technology that contributes to miniaturization of a rotation detector that detects the rotation angle of a motor.

上記課題を解決するために、本発明のある態様の電動工具は、モータと、モータの回転出力を先端工具に伝達する伝達機構と、モータの回転角度を検出する磁気式の回転検出部と、を備えた電動工具であって、回転検出部は、モータのモータシャフトに取り付けられた磁石を有する回転体と、回転体の回転位置に応じた回転位置信号を出力する位置検出部とを有する。回転体および位置検出部の少なくとも一方は、バックヨーク構造を有する。 In order to solve the above problems, an electric power tool according to one aspect of the present invention includes a motor, a transmission mechanism for transmitting rotational output of the motor to a tip tool, a magnetic rotation detector for detecting the rotation angle of the motor, wherein the rotation detector has a rotor having a magnet attached to the motor shaft of the motor, and a position detector that outputs a rotational position signal corresponding to the rotational position of the rotor. At least one of the rotating body and the position detection section has a back yoke structure.

本発明によれば、モータの回転角度を検出する回転検出部の小型化に寄与する技術を提供できる。 ADVANTAGE OF THE INVENTION According to this invention, the technique which contributes to size reduction of the rotation detection part which detects the rotation angle of a motor can be provided.

実施形態に係る電動工具の一部断面概要図である。1 is a schematic diagram of a partial cross section of an electric power tool according to an embodiment; FIG. 回転体およびモータシャフトの断面を示す図である。It is a figure which shows the cross section of a rotating body and a motor shaft.

図1は、本発明の実施形態に係る電動工具の一部断面概要図を示す。電動工具1はハウジング2を備え、モータユニット4がハウジング2に内装される。モータユニット4は、ステータ、およびモータシャフト9と一体化したロータをハウジング2に組み付けることで機能するビルトイン式モータとして構成され、モータケースを有しないことで電動工具1の小型化および軽量化に貢献する。以下、モータユニット4の前方側のモータシャフト9を「モータシャフト9a」、後方側のモータシャフト9を「モータシャフト9b」と呼ぶ。モータシャフト9aには、遠心ファンである冷却ファン3が固定される。 FIG. 1 shows a partial cross-sectional schematic diagram of an electric power tool according to an embodiment of the present invention. The power tool 1 has a housing 2 in which a motor unit 4 is installed. The motor unit 4 is configured as a built-in motor that functions by assembling a stator and a rotor that is integrated with the motor shaft 9 into the housing 2, and contributes to miniaturization and weight reduction of the power tool 1 by not having a motor case. do. Hereinafter, the motor shaft 9 on the front side of the motor unit 4 will be called "motor shaft 9a", and the motor shaft 9 on the rear side will be called "motor shaft 9b". A cooling fan 3, which is a centrifugal fan, is fixed to the motor shaft 9a.

駆動ブロック5は、モータの回転出力を先端工具に伝達する伝達機構を備える。具体的に駆動ブロック5は、モータシャフト9aの回転出力を出力軸6に伝達する動力伝達機構を備え、動力伝達機構は、モータシャフト9aに取り付けられたピニオンギヤに噛み合う遊星歯車減速機構を有してよい。電動工具1がインパクト回転工具である場合、動力伝達機構は、出力軸6に間欠的な回転衝撃力を発生させるインパクト機構を含む。出力軸6にはチャック機構7が連結し、ドリルやドライバなどの先端工具を着脱可能とする。ハウジング2のグリップ部には、作業者により操作される操作スイッチ8が設けられ、作業者が操作スイッチ8を引くとモータユニット4におけるロータが回転して、出力軸6が先端工具を駆動する。 The drive block 5 has a transmission mechanism that transmits the rotational output of the motor to the tip tool. Specifically, the drive block 5 has a power transmission mechanism that transmits the rotational output of the motor shaft 9a to the output shaft 6, and the power transmission mechanism has a planetary gear reduction mechanism that meshes with a pinion gear attached to the motor shaft 9a. good. When the power tool 1 is an impact rotary tool, the power transmission mechanism includes an impact mechanism that intermittently generates an impact force of rotation on the output shaft 6 . A chuck mechanism 7 is connected to the output shaft 6 so that a tip tool such as a drill or a driver can be attached and detached. A grip portion of the housing 2 is provided with an operation switch 8 operated by an operator. When the operator pulls the operation switch 8, the rotor in the motor unit 4 rotates and the output shaft 6 drives the tool bit.

モータユニット4はインナーロータ型のブラシレスモータであって、複数の永久磁石を有するロータがステータの内側で回転する。モータユニット4の構成要素であるロータおよびステータは、それぞれ別個独立にハウジング2に固定される。ハウジング2は、電動工具1の回転軸線中心を横切る垂直面で2分される一対の(左右の)半割れハウジング部材から構成される。モータユニット4のハウジング2への組付は、一方のハウジング部材に、ステータおよびモータシャフト9の第1軸受10a、第2軸受10bを組み込み、他方のハウジング部材をかさねて、一対のハウジング部材をねじ締め等で結合することで行われる。 The motor unit 4 is an inner rotor type brushless motor, and a rotor having a plurality of permanent magnets rotates inside a stator. A rotor and a stator, which are components of the motor unit 4, are fixed to the housing 2 independently of each other. The housing 2 is composed of a pair of (left and right) half-split housing members that are bisected by a vertical plane crossing the center of the rotation axis of the power tool 1 . The motor unit 4 is assembled to the housing 2 by incorporating the first bearing 10a and the second bearing 10b of the stator and the motor shaft 9 into one housing member, overlapping the other housing member, and screwing the pair of housing members together. It is done by joining with tightening or the like.

モータユニット4の後方には、モータの回転角度を検出する磁気式の回転検出部12が設けられる。回転検出部12は、モータシャフト9bに取り付けられた回転体20と、回転体20の回転位置に応じた回転位置信号を出力する位置検出部30とを有する。回転体20は磁石26を有する。 A magnetic rotation detector 12 is provided behind the motor unit 4 to detect the rotation angle of the motor. The rotation detector 12 has a rotor 20 attached to the motor shaft 9 b and a position detector 30 that outputs a rotational position signal corresponding to the rotational position of the rotor 20 . The rotor 20 has magnets 26 .

回転検出部12は、磁気式エンコーダとして構成され、回転体20は、磁石26を固定する固定用ブッシュ27を備える。位置検出部30はセンサ基板上に設けられ、磁力の変化を検出する磁気センサを含んで構成される。固定用ブッシュ27は、磁石26を位置検出部30に対向するように保持する。モータ回転角度の検出精度を高めるために、回転体20および位置検出部30の間隔は狭く設定され、たとえば両者の間隔は約2mmである。位置検出部30は、モータ回転を制御する制御部(図示せず)に、回転体20の回転位置に応じた回転位置信号を出力する。 The rotation detector 12 is configured as a magnetic encoder, and the rotating body 20 includes a fixing bush 27 for fixing the magnet 26 . The position detection unit 30 is provided on the sensor substrate and includes a magnetic sensor that detects changes in magnetic force. The fixing bush 27 holds the magnet 26 so as to face the position detection section 30 . In order to increase the detection accuracy of the motor rotation angle, the gap between the rotor 20 and the position detector 30 is set narrow, for example, about 2 mm. The position detection unit 30 outputs a rotational position signal corresponding to the rotational position of the rotor 20 to a control unit (not shown) that controls motor rotation.

位置検出部30は支持部材14により、モータユニット4のステータ側に固定される。回転体20をモータシャフト9bに固定し、且つ位置検出部30をモータユニット4に固定することで、回転体20および位置検出部30の組付精度を高めることができ、回転体20および位置検出部30の間隔を所定値に高精度に設定できる。また位置検出部30をハウジング2に固定する場合と比べると、位置検出部30をモータユニット4に固定することで、ハウジング2の変形に対して回転体20および位置検出部30の相対位置が影響を受けにくく、信頼性の高い回転検出部12を実現できる。 The position detector 30 is fixed to the stator side of the motor unit 4 by the support member 14 . By fixing the rotating body 20 to the motor shaft 9b and fixing the position detecting section 30 to the motor unit 4, the assembly accuracy of the rotating body 20 and the position detecting section 30 can be improved. The interval of the portion 30 can be set to a predetermined value with high accuracy. Moreover, compared with the case where the position detection section 30 is fixed to the housing 2 , by fixing the position detection section 30 to the motor unit 4 , the deformation of the housing 2 is affected by the relative positions of the rotor 20 and the position detection section 30 . It is possible to realize the highly reliable rotation detection unit 12 that is not easily affected by .

実施形態の電動工具1において、回転体20および位置検出部30の少なくとも一方は、バックヨーク構造を有する。回転検出部12がバックヨーク構造を有することで、回転体20および位置検出部30の間の磁力を大きくでき、磁石26の小型化を実現できる。 In the power tool 1 of the embodiment, at least one of the rotating body 20 and the position detection section 30 has a back yoke structure. Since the rotation detector 12 has the back yoke structure, the magnetic force between the rotor 20 and the position detector 30 can be increased, and the size of the magnet 26 can be reduced.

位置検出部30にバックヨーク構造をもたせるために、回転体20と対向する位置検出部30の面の裏側に、バックヨークである磁性体31が配置される。位置検出部30の裏面に磁性体31を配置することで、回転体20および位置検出部30の間の磁力を大きくでき、磁石26の小型化を実現できる。 In order to provide the position detection section 30 with a back yoke structure, a magnetic body 31 as a back yoke is arranged on the back side of the surface of the position detection section 30 facing the rotor 20 . By arranging the magnetic body 31 on the back surface of the position detection section 30, the magnetic force between the rotating body 20 and the position detection section 30 can be increased, and the size of the magnet 26 can be reduced.

図2は、回転体20およびモータシャフト9bの断面を示す。回転体20は開口21を有し、実施形態のモータシャフト9bは回転体20の開口21に圧入固定される。なおモータシャフト9bと回転体20とはねじ締めにより固定されてもよい。 FIG. 2 shows a section of the rotating body 20 and the motor shaft 9b. The rotating body 20 has an opening 21 , and the motor shaft 9 b of the embodiment is press-fitted into the opening 21 of the rotating body 20 . The motor shaft 9b and the rotating body 20 may be fixed by screwing.

固定用ブッシュ27の磁石固定面には、磁石26の一端面側を嵌合する凹部が形成され、磁石26は、凹部に嵌合されて固定される。なお磁石26は、固定用ブッシュ27の凹部に相対回転不能に嵌合する形状を有して、凹部に相対回転不能に嵌合することが好ましい。磁石26は凹部に接着剤で固定される。 The magnet fixing surface of the fixing bushing 27 is formed with a recess into which one end face side of the magnet 26 is fitted, and the magnet 26 is fitted into and fixed to the recess. It is preferable that the magnet 26 has a shape that fits into the concave portion of the fixing bush 27 so as to be non-rotatable relative to the concave portion. A magnet 26 is fixed in the recess with an adhesive.

回転体20にバックヨーク構造をもたせるために、固定用ブッシュ27を磁性材料で形成して、バックヨークとして機能させてよい。また磁性体であるモータシャフト9bと磁石26とを接触させて、モータシャフト9bをバックヨークとして機能させてもよい。回転体20において、固定用ブッシュ27およびモータシャフト9bのいずれか一方をバックヨークとして機能させてもよく、また双方をバックヨークとして機能させてもよい。これにより磁石26の小型化を実現できる。 In order to provide the rotating body 20 with a back yoke structure, the fixing bush 27 may be made of a magnetic material and function as a back yoke. Alternatively, the motor shaft 9b, which is a magnetic body, may be brought into contact with the magnet 26 so that the motor shaft 9b functions as a back yoke. In the rotor 20, either one of the fixing bush 27 and the motor shaft 9b may function as the back yoke, or both may function as the back yoke. Thereby, miniaturization of the magnet 26 can be realized.

回転検出部12は、磁性材料で形成された磁気シールドにより囲まれてもよい。これにより回転検出部12が、外部磁界の影響を受けにくくし、モータ回転角度の検出精度を高めることができる。図1に示すように、位置検出部30は支持部材14によりモータユニット4のステータ側に固定されているが、支持部材14が、回転検出部12を囲むように磁性材料で形成されることで、回転検出部12を取り囲む支持部材14を、磁気シールドとして機能させることができる。なお回転検出部12を取り囲む磁気シールドは、ハウジング2から突設するリブ部材によって形成されてもよい。 The rotation detector 12 may be surrounded by a magnetic shield made of a magnetic material. As a result, the rotation detector 12 is less likely to be affected by an external magnetic field, and the detection accuracy of the motor rotation angle can be improved. As shown in FIG. 1, the position detection section 30 is fixed to the stator side of the motor unit 4 by the support member 14. The support member 14 is made of a magnetic material so as to surround the rotation detection section 12. , the support member 14 surrounding the rotation detector 12 can function as a magnetic shield. The magnetic shield surrounding the rotation detector 12 may be formed by rib members projecting from the housing 2 .

以上、本発明を実施形態をもとに説明した。この実施形態は例示であり、それらの各構成要素あるいは各処理プロセスの組合せにいろいろな変形例が可能なこと、またそうした変形例も本発明の範囲にあることは当業者に理解されるところである。 The present invention has been described above based on the embodiments. It should be understood by those skilled in the art that this embodiment is an example, and that various modifications can be made to the combination of each component or each treatment process, and such modifications are also within the scope of the present invention. .

本発明の態様の概要は、次の通りである。
本発明のある態様の電動工具(1)は、モータ(4)と、モータの回転出力を先端工具に伝達する伝達機構(5)と、モータの回転角度を検出する回転検出部(12)とを備える。回転検出部(12)は、モータのモータシャフト(9b)に取り付けられた磁石(26)を有する回転体(20)と、回転体の回転位置に応じた回転位置信号を出力する位置検出部(30)とを有する。回転体(20)および位置検出部(30)の少なくとも一方は、バックヨーク構造を有することが好ましい。
A summary of aspects of the invention follows.
An electric power tool (1) according to one aspect of the present invention comprises a motor (4), a transmission mechanism (5) for transmitting rotational output of the motor to a tip tool, and a rotation detector (12) for detecting the rotation angle of the motor. Prepare. The rotation detector (12) includes a rotating body (20) having a magnet (26) attached to the motor shaft (9b) of the motor, and a position detecting section (which outputs a rotational position signal corresponding to the rotational position of the rotating body). 30). At least one of the rotor (20) and the position detector (30) preferably has a back yoke structure.

回転体(20)は、磁石(26)を固定する固定用ブッシュ(27)を有し、固定用ブッシュは磁性材料で形成されることが好ましい。回転体(20)と対向する位置検出部(30)の面の裏側に、バックヨークである磁性体(31)が配置されることが好ましい。回転体(20)の磁石(26)が、モータシャフト(9b)と接触してもよい。回転検出部(30)は、磁性材料で形成された磁気シールドにより囲まれることが好ましい。位置検出部(30)はモータ(4)に対して固定されてもよい。 The rotating body (20) has a fixing bush (27) for fixing the magnet (26), and the fixing bush is preferably made of a magnetic material. A magnetic body (31), which is a back yoke, is preferably arranged on the back side of the surface of the position detection section (30) facing the rotating body (20). A magnet (26) of the rotating body (20) may contact the motor shaft (9b). The rotation detector (30) is preferably surrounded by a magnetic shield made of a magnetic material. The position detector (30) may be fixed relative to the motor (4).

1・・・電動工具、2・・・ハウジング、4・・・モータユニット、5・・・駆動ブロック、6・・・出力軸、9a,9b・・・モータシャフト、10a・・・第1軸受、10b・・・第2軸受、12・・・回転検出部、20・・・回転体、26・・・磁石、27・・・固定用ブッシュ、30・・・位置検出部、31・・・磁性体。 DESCRIPTION OF SYMBOLS 1... Electric tool, 2... Housing, 4... Motor unit, 5... Drive block, 6... Output shaft, 9a, 9b... Motor shaft, 10a... First bearing , 10b... second bearing, 12... rotation detector, 20... rotor, 26... magnet, 27... fixing bush, 30... position detector, 31... magnetic material.

Claims (5)

ステータ、およびモータシャフトと一体化したロータをハウジングに組み付けることで機能するビルトイン式モータとして構成されるモータユニットと、
前記モータユニットの回転出力を先端工具に伝達する伝達機構と、
前記モータユニットの回転角度を検出する磁気式の回転検出部と、を備えた電動工具であって、
前記回転検出部は、前記モータユニットの後方側のモータシャフトに取り付けられた磁石を有する回転体と、前記回転体の回転位置に応じた回転位置信号を出力する位置検出部とを有し、
前記回転体は、前記磁石を固定する固定用ブッシュを有し、前記固定用ブッシュは磁性材料で形成されて前記モータシャフトに取り付けられ、前記磁石の前方に配置される前記モータシャフトおよび前記固定用ブッシュをバックヨークとして機能させるバックヨーク構造を有し、
前記位置検出部は、前記ハウジングを介さずに、前記モータユニットから延びる支持部材により前記モータユニットのステータ側に固定される、
ことを特徴とする電動工具。
a motor unit configured as a built-in motor that functions by assembling a stator and a rotor integrated with a motor shaft into a housing ;
a transmission mechanism for transmitting the rotational output of the motor unit to the tip tool;
and a magnetic rotation detector that detects the rotation angle of the motor unit ,
The rotation detection section has a rotating body having a magnet attached to a motor shaft on the rear side of the motor unit , and a position detecting section that outputs a rotational position signal corresponding to the rotational position of the rotating body,
The rotating body has a fixing bush for fixing the magnet. The fixing bush is made of a magnetic material and attached to the motor shaft . It has a back yoke structure that makes the bush function as a back yoke,
The position detection unit is fixed to the stator side of the motor unit by a support member extending from the motor unit without interposing the housing.
A power tool characterized by:
前記位置検出部は、前記回転体の前記磁石に軸方向に対向する位置に設けられ、
前記回転体の前記磁石が、前記モータシャフトの端部に当接する、
ことを特徴とする請求項1に記載の電動工具。
The position detection unit is provided at a position facing the magnet of the rotating body in the axial direction,
the magnet of the rotating body abuts the end of the motor shaft;
The power tool according to claim 1, characterized in that:
前記回転体と対向する前記位置検出部の面の裏側に、バックヨークとして機能する磁性体が配置される、
ことを特徴とする請求項1または2に記載の電動工具。
A magnetic body functioning as a back yoke is arranged on the back side of the surface of the position detection unit facing the rotating body.
The power tool according to claim 1 or 2 , characterized in that:
前記回転検出部は、磁性材料で形成された磁気シールドにより囲まれる、
ことを特徴とする請求項1からのいずれかに記載の電動工具。
the rotation detection unit is surrounded by a magnetic shield made of a magnetic material;
The power tool according to any one of claims 1 to 3 , characterized in that:
前記磁石が、前記磁石の前方に配置される前記モータシャフトに接触する、the magnet contacts the motor shaft positioned in front of the magnet;
ことを特徴とする請求項1から4のいずれかに記載の電動工具。The power tool according to any one of claims 1 to 4, characterized in that:
JP2017107099A 2017-05-30 2017-05-30 Electric tool Active JP7194903B2 (en)

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JP2006158059A (en) 2004-11-29 2006-06-15 Yaskawa Electric Corp Magnetic encoder and motor equipped with the same
JP2006217672A (en) 2005-02-01 2006-08-17 Nidec Sankyo Corp Small motor with encoder
JP2008219995A (en) 2007-03-01 2008-09-18 Nippon Densan Corp Motor
JP2012114997A (en) 2010-11-22 2012-06-14 Nidec Sankyo Corp Motor
JP2014134390A (en) 2013-01-08 2014-07-24 Jtekt Corp Rotation angle sensor abnormality detection device
JP2015146700A (en) 2014-02-04 2015-08-13 日立オートモティブシステムズステアリング株式会社 Motor controller and power steering device
JP2015229223A (en) 2014-06-05 2015-12-21 株式会社マキタ Working tool
JP2016086557A (en) 2014-10-27 2016-05-19 日本電産サンキョー株式会社 Motor, and structure for fixing driven member to rotary shaft
JP2016118500A (en) 2014-12-22 2016-06-30 日本精工株式会社 Rotation angle sensor, brushless motor equipped with rotation angle sensor, electric power steering device mounting brushless motor, and vehicle

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006158059A (en) 2004-11-29 2006-06-15 Yaskawa Electric Corp Magnetic encoder and motor equipped with the same
JP2006217672A (en) 2005-02-01 2006-08-17 Nidec Sankyo Corp Small motor with encoder
JP2008219995A (en) 2007-03-01 2008-09-18 Nippon Densan Corp Motor
JP2012114997A (en) 2010-11-22 2012-06-14 Nidec Sankyo Corp Motor
JP2014134390A (en) 2013-01-08 2014-07-24 Jtekt Corp Rotation angle sensor abnormality detection device
JP2015146700A (en) 2014-02-04 2015-08-13 日立オートモティブシステムズステアリング株式会社 Motor controller and power steering device
JP2015229223A (en) 2014-06-05 2015-12-21 株式会社マキタ Working tool
JP2016086557A (en) 2014-10-27 2016-05-19 日本電産サンキョー株式会社 Motor, and structure for fixing driven member to rotary shaft
JP2016118500A (en) 2014-12-22 2016-06-30 日本精工株式会社 Rotation angle sensor, brushless motor equipped with rotation angle sensor, electric power steering device mounting brushless motor, and vehicle

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