JP5399722B2 - Control circuit member and motor - Google Patents

Control circuit member and motor Download PDF

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JP5399722B2
JP5399722B2 JP2009006025A JP2009006025A JP5399722B2 JP 5399722 B2 JP5399722 B2 JP 5399722B2 JP 2009006025 A JP2009006025 A JP 2009006025A JP 2009006025 A JP2009006025 A JP 2009006025A JP 5399722 B2 JP5399722 B2 JP 5399722B2
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circuit board
control circuit
board
support member
circuit
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JP2010166680A (en
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伸生 水谷
伸吾 大森
充裕 高田
弘幸 滝川
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Asmo Co Ltd
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Asmo Co Ltd
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本発明は、回転検出素子を実装した回路基板を有する制御回路部材、及びその制御回路部材を備えたモータに関するものである。   The present invention relates to a control circuit member having a circuit board on which a rotation detection element is mounted, and a motor including the control circuit member.

従来、この種のモータは、回転軸を有するモータ本体と、モータ本体と一体に組み付けられ、回転軸の回転を減速出力する減速ギヤを収容するギヤハウジングと、ギヤハウジングに設けた回路収容部内に収容される制御回路部材とを備えている(例えば特許文献1参照)。制御回路部材は、回転軸の回転を検出するための回転検出素子(ホールIC等)が実装された回路基板を有している。この回転検出素子は、回転軸に一体回転可能に設けられた検出用マグネットと近い位置で対向するように配置する必要があるため、例えば特許文献1のモータでは、回転検出素子が実装される回路基板の素子取付部が検出用マグネットの近傍へと延びた形状をなしており、回路基板は、ギヤハウジングの回路収容部に対して素子取付部の延出方向(回転軸に対して垂直方向又は傾斜方向)に挿入して組み付けられるようになっている。   Conventionally, this type of motor has a motor main body having a rotation shaft, a gear housing that is assembled integrally with the motor main body and that receives a reduction gear that decelerates and outputs rotation of the rotation shaft, and a circuit housing portion provided in the gear housing. And a control circuit member to be accommodated (see, for example, Patent Document 1). The control circuit member has a circuit board on which a rotation detecting element (such as a Hall IC) for detecting the rotation of the rotating shaft is mounted. Since this rotation detection element needs to be arranged so as to face a detection magnet provided on the rotation shaft so as to be integrally rotatable, for example, in the motor of Patent Document 1, a circuit on which the rotation detection element is mounted The element mounting portion of the board extends in the vicinity of the magnet for detection, and the circuit board extends in the direction in which the element mounting portion extends (perpendicular to the rotation axis or with respect to the circuit housing portion of the gear housing). (Inclination direction) and can be assembled.

米国特許第5245258号明細書US Pat. No. 5,245,258

しかしながら、上記のようなモータでは、モータ本体とギヤハウジングとが回転軸の軸方向に組み付けられる構成になっているのに対し、回路基板が回転軸に対して垂直方向又は傾斜方向に組み付けられるため、回路基板の回路収容部への組み付けが煩雑なものとなっていた。   However, in the motor as described above, the motor main body and the gear housing are assembled in the axial direction of the rotating shaft, whereas the circuit board is assembled in a direction perpendicular to or inclined from the rotating shaft. Assembling the circuit board to the circuit housing portion has been complicated.

本発明は、上記課題を解決するためになされたものであって、その目的は、回路基板を回路収容部に対して容易に組み付けることができる制御回路部材及びモータを提供することにある。   The present invention has been made to solve the above problems, and an object of the present invention is to provide a control circuit member and a motor that can easily assemble a circuit board to a circuit housing portion.

上記課題を解決するために、請求項1に記載の発明は、回転軸を有するモータ本体と、該モータ本体と一体に組み付けられ、前記回転軸の回転を減速出力する減速ギヤを収容するギヤハウジングとを備えたモータに設けられるものであり、前記回転軸に一体回転可能に設けられた検出用マグネットと対向配置される回転検出素子が実装された回路基板と、前記ギヤハウジングに設けた回路収容部に対し前記回路基板を支持するための基板支持部材とから構成された制御回路部材であって、前記回路収容部に前記回転軸の軸方向から挿入可能に構成され、前記回路基板は、前記回転検出素子を前記検出用マグネットに接近させるべく前記回転軸の軸方向に対して傾斜した状態で前記回路収容部内に配置可能に構成され、前記基板支持部材は、ベース部と、該ベース部から延出される基板取付部とを備え、前記基板取付部の先端面は、前記回路基板における前記回転軸の軸方向に対する傾斜に対応した傾斜面となっており、該傾斜面が前記回路基板の板面と当接していることを特徴とする。 In order to solve the above-mentioned problem, the invention according to claim 1 is a gear housing that houses a motor main body having a rotating shaft and a reduction gear that is assembled integrally with the motor main body and decelerates and outputs the rotation of the rotating shaft. A circuit board on which a rotation detecting element arranged opposite to a detection magnet provided to be rotatable integrally with the rotating shaft is mounted, and a circuit housing provided in the gear housing A control circuit member configured to support the circuit board with respect to a portion, and is configured to be insertable into the circuit housing portion from an axial direction of the rotating shaft, configured the rotation detecting element to be disposed in the circuit housing portion in a state tilted with respect to the axial direction of the rotary shaft so as to approach to the detection magnet, said substrate support member, base And a substrate mounting portion extending from the base portion, and a tip surface of the substrate mounting portion is an inclined surface corresponding to an inclination of the circuit board with respect to an axial direction of the circuit board, The inclined surface is in contact with the plate surface of the circuit board .

この発明では、制御回路部材は、ギヤハウジングの回路収容部に対し回転軸の軸方向から挿入され、その制御回路部材の回路基板は、回転検出素子を検出用マグネットに接近させるべく回転軸の軸方向に対して傾斜した状態で設けられる。このため、回路基板に実装された回転検出素子が検出用マグネットと近い位置で対向するように構成しつつも、回路基板を回路収容部に対し容易に組み付けることができる。   In the present invention, the control circuit member is inserted into the circuit housing portion of the gear housing from the axial direction of the rotation shaft, and the circuit board of the control circuit member has the shaft of the rotation shaft so as to bring the rotation detection element closer to the detection magnet. It is provided in a state inclined with respect to the direction. For this reason, it is possible to easily assemble the circuit board to the circuit housing portion while configuring the rotation detection element mounted on the circuit board to face the detection magnet at a position close to the detection magnet.

請求項2に記載の発明は、請求項1に記載の制御回路部材において、前記基板取付部の前記先端面には、前記回路基板を固定するための固定凸部が形成されていることを特徴とする。
請求項に記載の発明は、請求項に記載の制御回路部材において、前記基板支持部材は、その幅方向から見て前記回転軸の軸方向と平行をなす前記ベース部と、該ベース部から垂直に延出され前記先端前記固定凸部が形成され前記基板取付部とを備え、前記回路基板は、前記基板取付部に対して傾斜した状態で板面垂直方向に組み付けられ、該回路基板に貫通形成された固定用孔に前記固定凸部が挿入されて固定されるものであって、前記基板支持部材の幅方向から見て、前記固定凸部における前記回転検出素子側の縁部が前記回路基板の組み付け方向と平行をなすとともに、反回転検出素子側の縁部が前記基板取付部の延出方向と平行をなすように形成されたことを特徴とする。
According to a second aspect of the present invention, in the control circuit member according to the first aspect, a fixing projection for fixing the circuit board is formed on the tip surface of the board mounting portion. And
According to a third aspect of the invention, the control circuit member according to claim 2, wherein the substrate support member, said base portion when viewed from the width direction to be parallel to the axial direction of the rotary shaft, the base portion and a said substrate mounting portion to which the fixing protrusions on the distal end surface extending vertically Ru is formed from the circuit board is assembled to the plate surface vertically in a state of being inclined with respect to the substrate attachment portion, The fixed convex portion is inserted and fixed in a fixing hole penetratingly formed in the circuit board, and when viewed from the width direction of the substrate support member, the fixed convex portion on the rotation detection element side The edge portion is parallel to the assembly direction of the circuit board, and the edge portion on the counter-rotation detecting element side is formed to be parallel to the extending direction of the substrate mounting portion.

この発明では、固定凸部における反回転検出素子側の縁部が、基板支持部材の幅方向から見て、基板取付部の延出方向と平行をなすため、基板支持部材の成形金型を基板取付部の延出方向に抜く構成の場合に、固定凸部がアンダーカットとならないように構成することが可能となる。また、固定凸部における回転検出素子側の縁部が回路基板の組み付け方向と平行をなすため、固定凸部を回路基板の固定用孔に対して好適な形状とすることが可能となる。   In this invention, the edge on the counter-rotation detecting element side of the fixed convex portion is parallel to the extending direction of the substrate mounting portion when viewed from the width direction of the substrate supporting member. In the case of a configuration in which the mounting portion is pulled out in the extending direction, the fixed convex portion can be configured not to be undercut. Further, since the edge on the rotation detecting element side of the fixed convex portion is parallel to the assembly direction of the circuit board, the fixed convex portion can have a suitable shape with respect to the fixing hole of the circuit board.

請求項に記載の発明は、請求項1〜3のいずれか1項に記載の制御回路部材において、前記基板支持部材には、前記回路基板における前記基板支持部材側の面に実装される電気部品を挿通可能な挿通部が形成されたことを特徴とする。 According to a fourth aspect of the present invention, in the control circuit member according to any one of the first to third aspects, the board supporting member is mounted on the surface of the circuit board on the board supporting member side. The insertion part which can insert components is formed.

この発明では、基板支持部材と回路基板とを近づけて構成できるため、制御回路部材の小型化が可能となる。また、基板支持部材と回路基板とを近づけて構成しつつも、基板支持部材における回路基板を支持する部位のレイアウトの自由度の低下を抑えることが可能となり、その結果、回路基板を安定して支持することが可能となる。   In the present invention, since the board support member and the circuit board can be configured close to each other, the control circuit member can be downsized. In addition, it is possible to suppress a decrease in the degree of freedom in layout of the portion of the substrate support member that supports the circuit board while configuring the substrate support member and the circuit board close to each other. It becomes possible to support.

請求項に記載の発明は、請求項1〜のいずれか1項に記載の制御回路部材において、前記基板支持部材には、前記回路基板に貫通形成された端子挿通孔に挿通され前記回路基板と電気的に接続される接続端子が前記回転軸の軸方向に対して垂直に設けられ、前記接続端子の先端部には、前記回路基板の組み付けの際の前記端子挿通孔との干渉を回避するための傾斜部が形成されたことを特徴とする。 According to a fifth aspect of the present invention, in the control circuit member according to any one of the first to fourth aspects, the circuit board support member is inserted into a terminal insertion hole formed in the circuit board so as to penetrate the circuit circuit member. A connection terminal that is electrically connected to the board is provided perpendicular to the axial direction of the rotating shaft, and the tip of the connection terminal has interference with the terminal insertion hole when the circuit board is assembled. An inclined portion for avoiding this is formed.

この発明では、接続端子を回転軸の軸方向に対して垂直に設けることが可能となるため、基板支持部材を容易に製造することが可能となる。
請求項に記載の発明は、回転軸を有するモータ本体と、前記モータ本体と一体に組み付けられ、前記回転軸の回転を減速出力する減速ギヤを収容するギヤハウジングと、前記ギヤハウジングに設けた回路収容部内に収容される請求項1〜5のいずれか1項に記載の制御回路部材とを備えたことを特徴とする。
In this invention, since the connection terminal can be provided perpendicular to the axial direction of the rotating shaft, the substrate support member can be easily manufactured.
According to a sixth aspect of the present invention, a motor main body having a rotating shaft, a gear housing that is assembled integrally with the motor main body and that decelerates and outputs the rotation of the rotating shaft, and the gear housing are provided. and wherein the kite and a control circuit member according to claim 1 which is accommodated in the circuit housing portion.

この発明では、モータにおいて、請求項1〜5のいずれか1項に記載の発明の効果を得ることができる。 In this invention, the effect of the invention according to any one of claims 1 to 5 can be obtained in the motor .

従って、上記記載の発明によれば、回路基板を回路収容部に対して容易に組み付けることができる。   Therefore, according to the above-described invention, the circuit board can be easily assembled to the circuit housing portion.

本実施形態のモータの側面図。The side view of the motor of this embodiment. モータの一部断面図。The partial cross section figure of a motor. モータの分解図。The exploded view of a motor. (a)制御回路部材の側面図、(b)同図(a)の一部拡大図、(c)同図(a)の一部拡大図、(d)制御回路部材の正面図。(A) The side view of a control circuit member, (b) The partial enlarged view of the figure (a), (c) The partial enlarged view of the figure (a), (d) The front view of a control circuit member.

以下、本発明を車両におけるパワーウインドウ装置用のモータに具体化した一実施形態を図面に従って説明する。図1に示すように、本実施形態のモータ1は、モータ本体2と、該モータ本体2の回転を減速して出力するための減速部3を備えている。   Hereinafter, an embodiment in which the present invention is embodied in a motor for a power window device in a vehicle will be described with reference to the drawings. As shown in FIG. 1, the motor 1 of this embodiment includes a motor main body 2 and a speed reducing unit 3 for decelerating and outputting the rotation of the motor main body 2.

モータ本体2は、図1及び図2に示すように、扁平の略有底筒状に形成されたヨークハウジング(以下、単にヨークという)4と、該ヨーク4内面に固定された一対のマグネット5(図2参照)と、該ヨーク4内で回転可能に支持されるアーマチャ(電機子)6と、ブラシホルダ7と、一対の給電用ブラシ8とを備えている。   As shown in FIGS. 1 and 2, the motor main body 2 includes a yoke housing (hereinafter simply referred to as a yoke) 4 formed in a flat, substantially bottomed cylindrical shape, and a pair of magnets 5 fixed to the inner surface of the yoke 4. (See FIG. 2), an armature (armature) 6 that is rotatably supported in the yoke 4, a brush holder 7, and a pair of power supply brushes 8.

ブラシホルダ7は、樹脂材料よりなり、ホルダ本体7aと、フランジ部7bと、延出部7cと、コネクタ部7dと、ターミナル支持部7eとが一体形成されている。ホルダ本体7aは、前記ヨーク4の開口部内に略収容されるように形成されている。ホルダ本体7aの中央孔には軸受9が固定され、該軸受9にはアーマチャ6における回転軸10の先端側が回転可能に支持される。尚、回転軸10の先端はヨーク4の外部まで突出し、その突出した部分にはセンサ用マグネット10a(検出用マグネット)が金属プレート10bを介して固定されている。又、ホルダ本体7aにおけるヨーク4の内部側には給電用ブラシ8が保持され、該給電用ブラシ8は前記回転軸10に固定された整流子11に押圧接触されている。   The brush holder 7 is made of a resin material, and a holder body 7a, a flange portion 7b, an extension portion 7c, a connector portion 7d, and a terminal support portion 7e are integrally formed. The holder body 7 a is formed so as to be substantially accommodated in the opening of the yoke 4. A bearing 9 is fixed to the central hole of the holder body 7a, and the tip end side of the rotary shaft 10 of the armature 6 is rotatably supported by the bearing 9. The tip of the rotating shaft 10 protrudes to the outside of the yoke 4, and a sensor magnet 10a (detection magnet) is fixed to the protruding portion via a metal plate 10b. A power supply brush 8 is held on the inner side of the yoke 4 in the holder main body 7 a, and the power supply brush 8 is in press contact with a commutator 11 fixed to the rotating shaft 10.

フランジ部7bは、前記ホルダ本体7aにフランジ状に(回転軸10を軸中心として径方向外側に)延出されている。延出部7cは、フランジ部7bにおけるヨーク4の扁平面4a(図1参照、図1及び図2中、紙面と平行な面)に沿った一方(図1及び図2中、右方)の端部から外部方向(前記径方向外側)に突出して形成され、その先端部にコネクタ部7dが形成されている。このコネクタ部7dは、前記扁平面4aの直交方向(図1及び図2中、紙面直交方向の紙面奥側)から図示しない外部コネクタが嵌着可能に形成されている。又、ターミナル支持部7eは、延出部7cから回転軸10に沿った軸方向に延びるように形成されている。   The flange portion 7b is extended to the holder body 7a in a flange shape (outward in the radial direction with the rotation shaft 10 as an axis center). The extending portion 7c is on one side (the right side in FIGS. 1 and 2) along the flat surface 4a of the yoke 4 in the flange portion 7b (see FIG. 1, in FIG. 1 and FIG. 2, a plane parallel to the paper surface). It is formed so as to protrude from the end portion in the external direction (outside in the radial direction), and a connector portion 7d is formed at the tip portion. The connector portion 7d is formed so that an external connector (not shown) can be fitted from the orthogonal direction of the flat surface 4a (the back side of the paper surface in the direction orthogonal to the paper surface in FIGS. 1 and 2). Further, the terminal support portion 7e is formed so as to extend in the axial direction along the rotation shaft 10 from the extension portion 7c.

又、ブラシホルダ7には、複数のブラシ側ターミナル12とコネクタ側ターミナル13とが埋設(インサート成形)されている。ブラシ側ターミナル12は、ホルダ本体7aにおけるヨーク4の内部側から延出部7cに延びており、該ターミナル12の基端部にはピッグテールを介して前記給電用ブラシ8が電気的に接続される。コネクタ側ターミナル13は、コネクタ部7dから延出部7cに延びており、該ターミナル13の基端部はコネクタ部7dにおいて露出して外部接続端子13aを形成し、コネクタ部7dに前記外部コネクタが嵌着されることで該外部コネクタのターミナルに電気的に接続される。   A plurality of brush side terminals 12 and connector side terminals 13 are embedded in the brush holder 7 (insert molding). The brush side terminal 12 extends from the inside of the yoke 4 in the holder body 7a to the extending portion 7c, and the power supply brush 8 is electrically connected to the base end portion of the terminal 12 through a pigtail. . The connector-side terminal 13 extends from the connector portion 7d to the extending portion 7c, and the base end portion of the terminal 13 is exposed at the connector portion 7d to form an external connection terminal 13a. The external connector is connected to the connector portion 7d. By being fitted, it is electrically connected to the terminal of the external connector.

又、ブラシ側ターミナル12及びコネクタ側ターミナル13の各先端部は、内部接続端子14としてターミナル支持部7eからモータ本体2の軸方向(図2中、下方向)に突出(露出)されている。内部接続端子14は複数本設けられ、前記扁平面4aの直交方向(図2中、紙面直交方向)に沿って並設される。尚、図2では、内部接続端子14が紙面直交方向に並設されるため、1つしか図示されない。   Further, the respective tip end portions of the brush side terminal 12 and the connector side terminal 13 are projected (exposed) as the internal connection terminals 14 from the terminal support portion 7e in the axial direction (downward in FIG. 2) of the motor body 2. A plurality of internal connection terminals 14 are provided, and are arranged side by side along the orthogonal direction of the flat surface 4a (the orthogonal direction in FIG. 2). In FIG. 2, only one internal connection terminal 14 is illustrated because the internal connection terminals 14 are arranged in parallel in the direction perpendicular to the paper surface.

又、ブラシホルダ7において、フランジ部7b、延出部7c及びコネクタ部7dは、コネクタ部7dの外部接続端子13aと対応した部分等を除いて、エラストマよりなる防水部材15にて略覆われる。   Further, in the brush holder 7, the flange portion 7b, the extending portion 7c, and the connector portion 7d are substantially covered with a waterproof member 15 made of an elastomer, except for a portion corresponding to the external connection terminal 13a of the connector portion 7d.

減速部3は、ギヤハウジング21と、ウォーム軸22と、ウォームホイール23と、クラッチ24(図2参照)と、制御回路部材25と、カバー26とを備える。
ギヤハウジング21は、樹脂材料よりなる。ギヤハウジング21は、固定部21aと、ウォーム収容部21bと、ホイール収容部21cと、回路収容部21dとを備える。
The speed reduction unit 3 includes a gear housing 21, a worm shaft 22, a worm wheel 23, a clutch 24 (see FIG. 2), a control circuit member 25, and a cover 26.
The gear housing 21 is made of a resin material. The gear housing 21 includes a fixed portion 21a, a worm accommodating portion 21b, a wheel accommodating portion 21c, and a circuit accommodating portion 21d.

固定部21aは、ヨーク4の開口部に形成されたフランジ部4bと対応した形状に形成されて該フランジ部4bとネジ27にて固定され、該フランジ部4bとともに前記ブラシホルダ7のフランジ部7bを(防水部材15を介して)挟持する。   The fixing portion 21a is formed in a shape corresponding to the flange portion 4b formed in the opening of the yoke 4 and is fixed to the flange portion 4b and the screw 27, and the flange portion 7b of the brush holder 7 together with the flange portion 4b. (Via the waterproof member 15).

ウォーム収容部21bは、前記回転軸10の延長線上で筒状に延びて形成され、その内部にウォーム軸22を回転可能に支持する。又、ウォーム収容部21bの内部におけるモータ本体2側には、ウォーム軸22と回転軸10とを駆動連結するクラッチ24(図2参照)が設けられている。クラッチ24は、回転軸10からの駆動力をウォーム軸22に伝達し、逆にウォーム軸22からの駆動力が回転軸10に伝達されないようウォーム軸22の回転をロックするように作動する。つまり、このクラッチ24は、負荷側から加わる力によるモータ1の回転を防止するために設けられている。   The worm accommodating portion 21b is formed to extend in a cylindrical shape on the extension line of the rotary shaft 10, and supports the worm shaft 22 in a rotatable manner therein. A clutch 24 (see FIG. 2) for drivingly connecting the worm shaft 22 and the rotary shaft 10 is provided on the motor main body 2 side in the worm housing portion 21b. The clutch 24 operates to lock the rotation of the worm shaft 22 so that the driving force from the rotating shaft 10 is transmitted to the worm shaft 22 and conversely, the driving force from the worm shaft 22 is not transmitted to the rotating shaft 10. That is, the clutch 24 is provided to prevent the motor 1 from rotating due to the force applied from the load side.

ホイール収容部21cは、ウォーム収容部21bと直交する方向で扁平の円盤形状に形成され、その内部にウォームホイール23を回転可能に支持する。尚、ウォーム収容部21bとホイール収容部21cとはその内部が一部で連通し、該連通部分でウォーム軸22とウォームホイール23とが歯合される。又、ホイール収容部21cは、前記ウォーム収容部21bに対して(中心として)前記コネクタ部7dの反対側(図1中、左側)に形成されている。又、ホイール収容部21cの扁平面21eは前記ヨーク4の扁平面4aに沿って形成され、ギヤハウジング21全体としては、その扁平面21eの直交方向から見た面がギヤハウジング21の扁平面ということになる。   The wheel accommodating part 21c is formed in a flat disk shape in a direction orthogonal to the worm accommodating part 21b, and supports the worm wheel 23 rotatably therein. The worm accommodating portion 21b and the wheel accommodating portion 21c are partially communicated with each other, and the worm shaft 22 and the worm wheel 23 are engaged with each other at the communicating portion. The wheel accommodating portion 21c is formed on the opposite side (left side in FIG. 1) of the connector portion 7d (as the center) with respect to the worm accommodating portion 21b. Further, the flat surface 21e of the wheel housing portion 21c is formed along the flat surface 4a of the yoke 4, and as a whole of the gear housing 21, the surface viewed from the orthogonal direction of the flat surface 21e is called the flat surface of the gear housing 21. It will be.

回路収容部21dは、前記内部接続端子14と対応した位置であって、その内部に内部接続端子14が配置されるように形成されている。詳しくは、回路収容部21dは、ウォーム収容部21bに対して(中心として)ホイール収容部21cの反対側であって、ウォーム収容部21bとコネクタ部7dとの間(制御回路部材25を除いた構成ではモータ1のデッドスペースとなる部分)に形成されている。回路収容部21dは、その内部がウォーム収容部21bの内部におけるモータ本体2側(前記センサ用マグネット10aと対応した部分)と連通している。又、回路収容部21dには、制御回路部材25を収容すべく制御回路部材25を回転軸10の軸方向に沿った方向から挿入可能とする開口部21fが形成されている。この開口部21fは、その開口方向(開口部21fと直交する方向)が回転軸10の軸方向及びその直交方向に対して傾斜するように設定されている。本実施形態の開口部21fは、ギヤハウジング21の扁平面の直交方向から見てコネクタ部7dとウォーム収容部21bの先端側(モータ本体2の反対側)とを結ぶ傾斜した直線状に形成されている。尚、前記ブラシ側ターミナル12とコネクタ側ターミナル13の各内部接続端子14は、開口部21fの開口方向外側から見て露出する(見える)位置に配置されている。そして、回路収容部21dには、制御回路部材25が略収容される。   The circuit accommodating portion 21d is at a position corresponding to the internal connection terminal 14 and is formed so that the internal connection terminal 14 is disposed therein. Specifically, the circuit housing portion 21d is on the opposite side of the wheel housing portion 21c (as the center) with respect to the worm housing portion 21b, and between the worm housing portion 21b and the connector portion 7d (excluding the control circuit member 25). In the configuration, it is formed in a portion that becomes a dead space of the motor 1. The circuit housing portion 21d communicates with the motor body 2 side (the portion corresponding to the sensor magnet 10a) inside the worm housing portion 21b. In addition, an opening 21 f is formed in the circuit housing portion 21 d so that the control circuit member 25 can be inserted from the direction along the axial direction of the rotary shaft 10 in order to accommodate the control circuit member 25. The opening 21f is set so that the opening direction (direction orthogonal to the opening 21f) is inclined with respect to the axial direction of the rotating shaft 10 and the orthogonal direction. The opening portion 21f of the present embodiment is formed in an inclined straight line connecting the connector portion 7d and the tip side of the worm housing portion 21b (opposite side of the motor body 2) when viewed from the direction orthogonal to the flat surface of the gear housing 21. ing. The internal connection terminals 14 of the brush side terminal 12 and the connector side terminal 13 are arranged at positions where they are exposed (visible) when viewed from the outside in the opening direction of the opening 21f. And the control circuit member 25 is substantially accommodated in the circuit accommodating part 21d.

制御回路部材25は、図2及び図4(a)(b)(c)(d)に示すように、ギヤハウジング21の回路収容部21dに固定される基板支持部材31と、その基板支持部材31に支持された回路基板32とを備えている。   As shown in FIGS. 2 and 4A, 4B, 4C, and 4D, the control circuit member 25 includes a substrate support member 31 fixed to the circuit housing portion 21d of the gear housing 21, and the substrate support member. Circuit board 32 supported by 31.

基板支持部材31は、樹脂材料よりなり、回転軸10の軸方向と平行をなすベース部41を有している。ベース部41は、図4(d)に示すように、回転軸10の軸方向に対して垂直方向に貫通する挿通部42a,42bを有するフレーム状をなしている。尚、ベース部41の長手方向中間部に位置する挿通部42aは、矩形状の孔であり、その下部に位置する挿通部42bは、切り欠き状をなしている。ベース部41の幅方向両側にはそれぞれ、回路収容部21dに圧入される圧入部43が形成されている。また、ベース部41の長手方向上端部(軸方向のモータ本体2側端部)には、前記ブラシホルダ7のターミナル支持部7eと軸方向及びその直交方向に当接する当接部41aが形成されている(図2参照)。   The substrate support member 31 is made of a resin material and has a base portion 41 that is parallel to the axial direction of the rotary shaft 10. As shown in FIG. 4D, the base portion 41 has a frame shape having insertion portions 42 a and 42 b that penetrate in a direction perpendicular to the axial direction of the rotary shaft 10. In addition, the insertion part 42a located in the longitudinal direction intermediate part of the base part 41 is a rectangular-shaped hole, and the insertion part 42b located in the lower part has comprised the notch shape. On both sides in the width direction of the base portion 41, press-fit portions 43 that are press-fitted into the circuit housing portion 21d are formed. In addition, a contact portion 41 a that contacts the terminal support portion 7 e of the brush holder 7 in the axial direction and the direction orthogonal thereto is formed at the upper end in the longitudinal direction of the base portion 41 (end on the motor body 2 side in the axial direction). (See FIG. 2).

ベース部41の長手方向上端部には、図4(a)に示すように、回転軸10の軸方向に対して垂直方向に突出する基板取付脚44(基板取付部)が形成されている。基板取付脚44は、ベース部41の幅方向(図4(a)における紙面直交方向)両端にそれぞれ形成されている。尚、図4(a)(b)では、この一対の基板取付脚44は、基板支持部材31の幅方向(紙面直交方向)に並設されるため、1つしか図示されない。一対の基板取付脚44のうちの一方の先端面44aには、回路基板32を固定するための固定凸部45が形成されている。また、ベース部41の長手方向下端部には、回路基板32の下端を支持する支持凸部46が突出形成されている。   As shown in FIG. 4A, a substrate mounting leg 44 (substrate mounting portion) is formed at the upper end in the longitudinal direction of the base portion 41 so as to protrude in a direction perpendicular to the axial direction of the rotary shaft 10. The board mounting legs 44 are respectively formed at both ends of the base portion 41 in the width direction (direction perpendicular to the paper surface in FIG. 4A). 4A and 4B, only one pair of the substrate mounting legs 44 is illustrated because they are arranged side by side in the width direction of the substrate support member 31 (the direction orthogonal to the paper surface). A fixing convex portion 45 for fixing the circuit board 32 is formed on one end face 44 a of the pair of board mounting legs 44. In addition, a support convex portion 46 that supports the lower end of the circuit board 32 is formed at the lower end in the longitudinal direction of the base portion 41.

回路基板32は、回転軸10の軸方向に対して傾斜した状態で基板支持部材31に支持されている。詳述すると、回路基板32は、その上端部(モータ本体2側の端部)ほど回転軸10の軸線に近づくように傾斜している。回路基板32の上端部(モータ本体2側の端部)には、図4(d)に示すように、幅方向中央から延びる延出部32aが延出形成されており、該延出部32aの先端部には回転検出素子としてのホールIC33が実装されている。即ち、回路基板32は、ホールIC33が前記センサ用マグネット10aに近づくように傾斜した状態で支持されている。尚、延出部32aは、前記ブラシホルダ7に対して非接触となるように構成されている。   The circuit board 32 is supported by the board support member 31 in a state of being inclined with respect to the axial direction of the rotary shaft 10. More specifically, the circuit board 32 is inclined so that the upper end portion thereof (the end portion on the motor body 2 side) approaches the axis of the rotary shaft 10. As shown in FIG. 4D, an extension portion 32a extending from the center in the width direction is formed at the upper end portion (end portion on the motor body 2 side) of the circuit board 32, and the extension portion 32a. A Hall IC 33 as a rotation detecting element is mounted on the tip of the. That is, the circuit board 32 is supported in an inclined state so that the Hall IC 33 approaches the sensor magnet 10a. The extending portion 32a is configured to be in non-contact with the brush holder 7.

ホールIC33は、センサ用マグネット10aと径方向に対向しており、このセンサ用マグネット10a及びホールIC33は、回転軸10の回転情報(回転方向や回転数等)を検出するための回転センサを構成している。ホールIC33は、センサ用マグネット10aの回転に伴う磁界変化を検知し、その検出信号を回路基板32に実装された制御部34に出力するようになっている。   The Hall IC 33 is opposed to the sensor magnet 10a in the radial direction, and the sensor magnet 10a and the Hall IC 33 constitute a rotation sensor for detecting rotation information (rotation direction, rotation speed, etc.) of the rotating shaft 10. doing. The Hall IC 33 detects a change in the magnetic field accompanying the rotation of the sensor magnet 10 a and outputs a detection signal to the control unit 34 mounted on the circuit board 32.

回路基板32は、基板支持部材31の基板取付脚44に対して傾斜した状態で、該基板32の板面垂直方向に組み付けられる。その組付の際には、基板取付脚44の固定凸部45が回路基板32に形成された固定用孔32bに挿入され、その後、固定凸部45を熱かしめすることで回路基板32は基板取付脚44の先端部に固定される。尚、固定用孔32bは、回路基板32の板面に対して垂直に貫通形成されている。また、図4(a)(b)では、固定凸部45の熱かしめ前の状態を図示している。   The circuit board 32 is assembled in the direction perpendicular to the plate surface of the board 32 in a state of being inclined with respect to the board mounting leg 44 of the board support member 31. At the time of the assembly, the fixing projection 45 of the board mounting leg 44 is inserted into the fixing hole 32b formed in the circuit board 32, and then the circuit board 32 is heated by caulking the fixing projection 45. It is fixed to the tip of the mounting leg 44. The fixing hole 32b is formed so as to penetrate perpendicularly to the plate surface of the circuit board 32. 4 (a) and 4 (b) show a state before the heat-caulking of the fixed convex portion 45.

また、基板支持部材31における前記支持凸部46のやや上方には、熱かしめにより回路基板32の下端部と連結される固定部47が形成されている。尚、固定部47は、回路基板32の幅方向両端部にそれぞれ形成されている(図4(a)において1つのみ図示)。   Further, a fixing portion 47 connected to the lower end portion of the circuit board 32 by heat caulking is formed slightly above the support convex portion 46 in the substrate support member 31. The fixing portions 47 are formed at both ends in the width direction of the circuit board 32 (only one is shown in FIG. 4A).

基板取付脚44の先端面44aは、回路基板32の傾斜に対応した傾斜面となっており、回路基板32の板面と当接している。固定凸部45は、基板取付脚44の延出方向から見て円形をなしている。固定凸部45は、基板支持部材31の幅方向(図4(a)(b)における紙面直交方向)から見て、上側の縁部45a(ホールIC33側の縁部)が回路基板32の組み付け方向と平行をなす直線状に形成されるとともに、下側の縁部45b(反ホールIC側の縁部)が基板取付脚44の延出方向と平行をなしている。これにより、基板支持部材31の成形時において、成形金型を基板取付脚44の延出方向に抜く際に、固定凸部45が成形金型に引っかからないように構成されている。つまり、固定凸部45がアンダーカットとならないように構成されている。また、上記したように、固定凸部45の上側の縁部45aが回路基板32の組み付け方向と平行をなす直線状に形成されているため、固定凸部45をアンダーカットとならないように構成しつつも、回路基板32の固定用孔32bに合った好適な形状となっている。   The front end surface 44 a of the board mounting leg 44 is an inclined surface corresponding to the inclination of the circuit board 32, and is in contact with the plate surface of the circuit board 32. The fixed convex portion 45 has a circular shape when viewed from the extending direction of the board mounting leg 44. The fixed convex portion 45 has the upper edge 45a (the edge on the Hall IC 33 side) assembled to the circuit board 32 when viewed from the width direction of the substrate support member 31 (the direction orthogonal to the paper surface in FIGS. 4A and 4B). The lower edge 45 b (the edge on the side opposite to the Hall IC) is parallel to the extending direction of the board mounting legs 44. Thereby, when the substrate support member 31 is molded, the fixed convex portion 45 is not caught by the molding die when the molding die is pulled out in the extending direction of the substrate mounting leg 44. That is, the fixed convex portion 45 is configured not to be undercut. Further, as described above, since the upper edge 45a of the fixed protrusion 45 is formed in a straight line parallel to the assembly direction of the circuit board 32, the fixed protrusion 45 is configured not to be undercut. However, the shape is suitable for the fixing hole 32b of the circuit board 32.

ベース部41の長手方向中間部には、回路基板32側に突出する突出部48が形成されている。その突出部48の先端面は、回路基板32の傾斜に対応した傾斜面となっており、回路基板32と当接している。   A protruding portion 48 that protrudes toward the circuit board 32 is formed at the intermediate portion in the longitudinal direction of the base portion 41. The front end surface of the protrusion 48 is an inclined surface corresponding to the inclination of the circuit board 32, and is in contact with the circuit board 32.

ベース部41における基板取付脚44と突出部48との間には、制御側接続端子51がベース部41に一部インサート成形された状態で設けられている。尚、制御側接続端子51は、基板支持部材31の幅方向に複数並設されている(図4(a)(c)では、手前側のもののみ図示)。制御側接続端子51の先端部51aは、ベース部41から回路基板32側に突出しており、基端部51bはその反対側に突出している。制御側接続端子51の基端部51bは、前記内部接続端子14と例えばTig溶接を用いて接合され、互いに電気的に接続されている。制御側接続端子51の先端部51aは、回路基板32に貫通形成された端子挿通孔32cに挿通され、例えば半田接合により回路基板32と電気的に接続されている。   A control-side connection terminal 51 is provided between the board mounting leg 44 and the protrusion 48 in the base portion 41 in a state in which the control-side connection terminal 51 is partially insert-molded in the base portion 41. Note that a plurality of control side connection terminals 51 are arranged in parallel in the width direction of the substrate support member 31 (in FIGS. 4A and 4C, only the front side is shown). The distal end portion 51a of the control side connection terminal 51 protrudes from the base portion 41 to the circuit board 32 side, and the proximal end portion 51b protrudes to the opposite side. The base end portion 51b of the control side connection terminal 51 is joined to the internal connection terminal 14 by using, for example, Tig welding, and is electrically connected to each other. The distal end portion 51a of the control side connection terminal 51 is inserted into a terminal insertion hole 32c formed through the circuit board 32, and is electrically connected to the circuit board 32 by, for example, solder bonding.

ここで、図4(c)に示すように、回路基板32の端子挿通孔32cは、回路基板32の板面に対して垂直に貫通形成されており、制御側接続端子51の先端部51aには、傾斜部51cが形成されている。傾斜部51cは、制御側接続端子51の先端部51aの上面(ホールIC側を向く面)に形成され、端子挿通孔32cの傾斜(回路基板32の傾斜)に応じた傾斜角度に設定されている。これにより、回路基板32の組み付けの際に、制御側接続端子51の先端部51aが端子挿通孔32cと干渉しないようになっている。   Here, as shown in FIG. 4C, the terminal insertion hole 32 c of the circuit board 32 is formed to penetrate perpendicularly to the plate surface of the circuit board 32, and is formed at the tip 51 a of the control side connection terminal 51. The inclined portion 51c is formed. The inclined portion 51c is formed on the upper surface (the surface facing the Hall IC side) of the tip end portion 51a of the control side connection terminal 51, and is set to an inclination angle corresponding to the inclination of the terminal insertion hole 32c (inclination of the circuit board 32). Yes. Thereby, when the circuit board 32 is assembled, the tip end portion 51a of the control side connection terminal 51 does not interfere with the terminal insertion hole 32c.

回路基板32の両面には、種々の電気部品が実装されている。そのうちの基板支持部材31側の面に実装された電気部品35(リレー等)は、ベース部41の前記挿通部42a,42bに挿通されている。これにより、基板支持部材31と回路基板32とを近づけて構成することが可能となり、制御回路部材25の小型化が可能となっている。また、基板支持部材31と回路基板32とを近づけて構成しつつも、ベース部41を回路基板32の下端部(カバー26側端部)まで延ばしてその下端部を支持することが可能となり、その結果、回路基板32を安定して支持することが可能となっている。   Various electrical components are mounted on both surfaces of the circuit board 32. Among them, the electrical component 35 (relay or the like) mounted on the surface of the board support member 31 is inserted into the insertion portions 42 a and 42 b of the base portion 41. As a result, the substrate support member 31 and the circuit board 32 can be configured close to each other, and the control circuit member 25 can be downsized. In addition, while configuring the board support member 31 and the circuit board 32 close to each other, it is possible to extend the base portion 41 to the lower end portion (end portion on the cover 26 side) of the circuit board 32 and support the lower end portion thereof. As a result, the circuit board 32 can be stably supported.

図3に示すように、制御回路部材25は、モータ本体2と減速部3とが組み付けられた状態で、開口部21fからギヤハウジング21(回路収容部21d)内に回転軸10の軸方向に挿入される。このとき、基板支持部材31の前記圧入部43が回路収容部21dに圧入され、制御回路部材25が固定される。尚、この固定状態において、制御回路部材25の下端部分は開口部21fから外側に突出するようになっている。このように、制御回路部材25がモータ本体2と減速部3との組み付け方向である回転軸10の軸方向に組み付け可能であるため、その制御回路部材25の組み付けが容易となっており、また、制御回路部材25を回転軸10の軸方向以外から組み付けるための特別な組み付け設備が不要となるため、低コスト化にも貢献している。   As shown in FIG. 3, the control circuit member 25 is arranged in the axial direction of the rotary shaft 10 from the opening 21 f into the gear housing 21 (circuit housing portion 21 d) in a state where the motor body 2 and the speed reduction portion 3 are assembled. Inserted. At this time, the press-fit portion 43 of the substrate support member 31 is press-fitted into the circuit housing portion 21d, and the control circuit member 25 is fixed. In this fixed state, the lower end portion of the control circuit member 25 projects outward from the opening 21f. Thus, since the control circuit member 25 can be assembled in the axial direction of the rotary shaft 10 that is the assembly direction of the motor main body 2 and the speed reduction unit 3, the assembly of the control circuit member 25 is facilitated. Since a special assembling facility for assembling the control circuit member 25 from other than the axial direction of the rotary shaft 10 becomes unnecessary, it contributes to cost reduction.

制御回路部材25の固定状態において、複数の制御側接続端子51の基端部51bにブラシ側ターミナル12及びコネクタ側ターミナル13の内部接続端子14がそれぞれ突き当たり、制御側接続端子51の基端部51bと内部接続端子14とが直角に(略L字状に)接触するようになっている。そして、制御側接続端子51の基端部51bと内部接続端子14とは、上記したように例えばTig溶接を用いて接合され、互いが電気的に接続される。   In the fixed state of the control circuit member 25, the brush-side terminal 12 and the internal connection terminal 14 of the connector-side terminal 13 abut against the base end portions 51 b of the plurality of control-side connection terminals 51, respectively. And the internal connection terminal 14 come into contact with each other at a right angle (substantially in an L shape). And the base end part 51b of the control side connection terminal 51 and the internal connection terminal 14 are joined, for example using Tig welding as mentioned above, and are mutually connected electrically.

制御回路部材25の端子接合後においては、ギヤハウジング21(回路収容部21d)の開口部21f周縁に、該開口部21fを閉塞すべく金属製のカバー26がかしめられて固定される。カバー26は、制御回路部材25の開口部21fから外側に突出する部分を収容可能な空間を形成すべく該回路部材25の突出部分に対応させて膨出した形状なしている。このカバー26は、開口部21fを閉塞するだけでなく、制御回路部材25から発生する熱を受け、その熱を外部に放出する役目も担っている。   After the terminal connection of the control circuit member 25, a metal cover 26 is caulked and fixed to the periphery of the opening 21f of the gear housing 21 (circuit housing portion 21d) so as to close the opening 21f. The cover 26 has a shape that bulges in correspondence with the protruding portion of the circuit member 25 so as to form a space that can accommodate a portion protruding outward from the opening 21 f of the control circuit member 25. The cover 26 not only closes the opening 21f, but also has a role of receiving heat generated from the control circuit member 25 and releasing the heat to the outside.

次に、本実施形態の特徴的な作用効果を記載する。
(1)本実施形態では、制御回路部材25は、ギヤハウジング21の回路収容部21dに対し回転軸10の軸方向から挿入され、その制御回路部材25の回路基板32は、ホールIC33をセンサ用マグネット10aに接近させるべく回転軸10の軸方向に対して傾斜した状態で設けられる。このため、回路基板32に実装されたホールIC33がセンサ用マグネット10aと近い位置で対向するように構成しつつも、回路基板32を回路収容部21dに対し容易に組み付けることができる。
Next, characteristic effects of the present embodiment will be described.
(1) In this embodiment, the control circuit member 25 is inserted from the axial direction of the rotating shaft 10 into the circuit housing portion 21d of the gear housing 21, and the circuit board 32 of the control circuit member 25 uses the Hall IC 33 for the sensor. It is provided in a state of being inclined with respect to the axial direction of the rotating shaft 10 so as to approach the magnet 10a. For this reason, the circuit board 32 can be easily assembled to the circuit housing portion 21d while the Hall IC 33 mounted on the circuit board 32 is configured to face the sensor magnet 10a at a position close to the Hall IC 33.

(2)本実施形態では、固定凸部45の下側の縁部45b(反ホールIC側の縁部)が、基板支持部材31の幅方向から見て、基板取付脚44の延出方向と平行をなすため、基板支持部材31の成形金型を基板取付脚44の延出方向に抜く構成の場合に、固定凸部45がアンダーカットとならないように構成することが可能となる。また、固定凸部45の上側の縁部45a(ホールIC33側の縁部)が回路基板32の組み付け方向と平行をなすため、固定凸部45を回路基板32の固定用孔32bに対して好適な形状とすることが可能となる。   (2) In the present embodiment, the lower edge 45 b (the edge on the anti-Hall IC side) of the fixed protrusion 45 is the same as the extending direction of the board mounting legs 44 when viewed from the width direction of the board support member 31. In order to be parallel, when the molding die of the substrate support member 31 is pulled out in the extending direction of the substrate mounting leg 44, the fixed convex portion 45 can be configured not to be undercut. Further, since the upper edge 45a (the edge on the Hall IC 33 side) of the fixed protrusion 45 is parallel to the assembly direction of the circuit board 32, the fixed protrusion 45 is suitable for the fixing hole 32b of the circuit board 32. It becomes possible to make it a simple shape.

(3)本実施形態では、基板支持部材31には、回路基板32における基板支持部材31側の面に実装される電気部品35を挿通可能な挿通部42a,42bが形成される。このため、基板支持部材31と回路基板32とを近づけて構成することが可能となり、その結果、制御回路部材25の小型化が可能となる。また、基板支持部材31における回路基板32を支持する部位(基板取付脚44、支持凸部46、固定部47及び突出部48)のレイアウトの自由度の低下を抑えることが可能となり、その結果、回路基板32を安定して保持することが可能となる。   (3) In the present embodiment, the board support member 31 is formed with insertion portions 42a and 42b through which the electrical component 35 mounted on the surface of the circuit board 32 on the board support member 31 side can be inserted. For this reason, it becomes possible to make the board | substrate support member 31 and the circuit board 32 close, and as a result, size reduction of the control circuit member 25 is attained. In addition, it is possible to suppress a reduction in the degree of freedom in layout of the portions (substrate mounting legs 44, support convex portions 46, fixing portions 47, and protruding portions 48) that support the circuit board 32 in the substrate support member 31, and as a result, It becomes possible to hold the circuit board 32 stably.

(4)本実施形態では、制御側接続端子51の先端部51aには、回路基板32の組み付けの際の端子挿通孔32cとの干渉を回避するための傾斜部51cが形成される。これにより、制御側接続端子51を回転軸10の軸方向に対して垂直に設けることが可能となるため、基板支持部材31を容易に製造することが可能となる。   (4) In the present embodiment, the tip end portion 51 a of the control side connection terminal 51 is formed with an inclined portion 51 c for avoiding interference with the terminal insertion hole 32 c when the circuit board 32 is assembled. As a result, the control-side connection terminal 51 can be provided perpendicular to the axial direction of the rotary shaft 10, so that the substrate support member 31 can be easily manufactured.

尚、本発明の実施形態は、以下のように変更してもよい。
・上記実施形態では、固定凸部45を1つのみ設けたが、複数設けてもよい。また、上記実施形態の固定部47を固定凸部45と略同様な構成としてもよい。
In addition, you may change embodiment of this invention as follows.
-In the said embodiment, although only one fixed convex part 45 was provided, you may provide multiple. In addition, the fixed portion 47 of the above embodiment may be configured substantially the same as the fixed convex portion 45.

・上記実施形態では、回転検出素子にホールIC33を用いたが、これ以外に例えば、磁気抵抗素子等を用いてもよい。
・上記実施形態では、パワーウインドウ装置用のモータ1に具体化したが、これ以外に例えば、サンルーフ装置、スライドドア装置、バックドア装置等、他の装置用のモータに具体化してもよい。
In the above embodiment, the Hall IC 33 is used as the rotation detection element. However, for example, a magnetoresistive element or the like may be used.
In the above-described embodiment, the motor 1 for the power window device is embodied. However, other motors for other devices such as a sunroof device, a slide door device, and a back door device may be embodied.

1…モータ、2…モータ本体、10…回転軸、10a…センサ用マグネット(検出用マグネット)、21…ギヤハウジング、21d…回路収容部、25…制御回路部材、31…基板支持部材、32…回路基板、32b…固定用孔、32c…端子挿通孔、33…回転検出素子としてのホールIC、35…電気部品、41…ベース部、42a,42b…挿通部、44…基板取付部としての基板取付脚、45…固定凸部、45a,45b…縁部、51…制御側接続端子、51a…制御側接続端子の先端部、51c…傾斜部。   DESCRIPTION OF SYMBOLS 1 ... Motor, 2 ... Motor main body, 10 ... Rotary shaft, 10a ... Sensor magnet (detection magnet), 21 ... Gear housing, 21d ... Circuit accommodating part, 25 ... Control circuit member, 31 ... Substrate support member, 32 ... Circuit board, 32b ... Hole for fixing, 32c ... Terminal insertion hole, 33 ... Hall IC as rotation detecting element, 35 ... Electrical component, 41 ... Base part, 42a, 42b ... Insertion part, 44 ... Substrate as board mounting part Mounting legs, 45 ... fixed convex portions, 45a, 45b ... edge portions, 51 ... control side connection terminals, 51a ... tips of control side connection terminals, 51c ... inclined portions.

Claims (6)

回転軸を有するモータ本体と、該モータ本体と一体に組み付けられ、前記回転軸の回転を減速出力する減速ギヤを収容するギヤハウジングとを備えたモータに設けられるものであり、
前記回転軸に一体回転可能に設けられた検出用マグネットと対向配置される回転検出素子が実装された回路基板と、前記ギヤハウジングに設けた回路収容部に対し前記回路基板を支持するための基板支持部材とから構成された制御回路部材であって、
前記回路収容部に前記回転軸の軸方向から挿入可能に構成され、
前記回路基板は、前記回転検出素子を前記検出用マグネットに接近させるべく前記回転軸の軸方向に対して傾斜した状態で前記回路収容部内に配置可能に構成され
前記基板支持部材は、ベース部と、該ベース部から延出される基板取付部とを備え、
前記基板取付部の先端面は、前記回路基板における前記回転軸の軸方向に対する傾斜に対応した傾斜面となっており、該傾斜面が前記回路基板の板面と当接していることを特徴とする制御回路部材。
A motor main body having a rotating shaft, and a gear housing that is assembled integrally with the motor main body and houses a reduction gear that decelerates and outputs the rotation of the rotating shaft;
A circuit board on which a rotation detecting element disposed opposite to a detection magnet provided so as to rotate integrally with the rotating shaft is mounted, and a board for supporting the circuit board with respect to a circuit housing portion provided in the gear housing A control circuit member composed of a support member,
It is configured to be insertable into the circuit housing portion from the axial direction of the rotating shaft,
The circuit board is configured to be disposed in the circuit housing portion in a state where the rotation detection element is inclined with respect to the axial direction of the rotation shaft so as to approach the detection magnet .
The substrate support member includes a base portion and a substrate attachment portion extending from the base portion,
The front end surface of the substrate mounting portion is an inclined surface corresponding to the inclination of the circuit board with respect to the axial direction of the rotating shaft, and the inclined surface is in contact with the plate surface of the circuit board. A control circuit member to perform.
請求項1に記載の制御回路部材において、The control circuit member according to claim 1,
前記基板取付部の前記先端面には、前記回路基板を固定するための固定凸部が形成されていることを特徴とする制御回路部材。A control circuit member, wherein a fixing convex portion for fixing the circuit board is formed on the tip end surface of the board mounting portion.
請求項に記載の制御回路部材において、
前記基板支持部材は、その幅方向から見て前記回転軸の軸方向と平行をなす前記ベース部と、該ベース部から垂直に延出され前記先端前記固定凸部が形成され前記基板取付部とを備え、
前記回路基板は、前記基板取付部に対して傾斜した状態で板面垂直方向に組み付けられ、該回路基板に貫通形成された固定用孔に前記固定凸部が挿入されて固定されるものであって、
前記基板支持部材の幅方向から見て、前記固定凸部における前記回転検出素子側の縁部が前記回路基板の組み付け方向と平行をなすとともに、反回転検出素子側の縁部が前記基板取付部の延出方向と平行をなすように形成されたことを特徴とする制御回路部材。
The control circuit member according to claim 2 ,
The substrate support member, said base portion and said board extending perpendicularly from the base portion Ru said fixing protrusion is formed in the front end face forming a parallel to the axial direction of the rotary shaft as viewed from the width direction With a mounting portion,
The circuit board is assembled in a direction perpendicular to the plate surface in an inclined state with respect to the board mounting portion, and the fixing convex portion is inserted into a fixing hole formed through the circuit board and fixed. And
When viewed from the width direction of the substrate support member, the edge on the rotation detection element side of the fixed convex portion is parallel to the assembly direction of the circuit board, and the edge on the counter rotation detection element side is the substrate mounting portion. A control circuit member formed so as to be parallel to the extending direction.
請求項1〜3のいずれか1項に記載の制御回路部材において、
前記基板支持部材には、前記回路基板における前記基板支持部材側の面に実装される電気部品を挿通可能な挿通部が形成されたことを特徴とする制御回路部材。
In the control circuit member according to any one of claims 1 to 3 ,
The control circuit member, wherein the board support member is formed with an insertion portion through which an electrical component mounted on a surface of the circuit board on the board support member side can be inserted.
請求項1〜のいずれか1項に記載の制御回路部材において、
前記基板支持部材には、前記回路基板に貫通形成された端子挿通孔に挿通され前記回路基板と電気的に接続される接続端子が前記回転軸の軸方向に対して垂直に設けられ、
前記接続端子の先端部には、前記回路基板の組み付けの際の前記端子挿通孔との干渉を回避するための傾斜部が形成されたことを特徴とする制御回路部材。
In the control circuit member according to any one of claims 1 to 4 ,
In the substrate support member, a connection terminal that is inserted through a terminal insertion hole formed through the circuit board and is electrically connected to the circuit board is provided perpendicular to the axial direction of the rotation shaft,
A control circuit member, wherein an inclined portion for avoiding interference with the terminal insertion hole when the circuit board is assembled is formed at a distal end portion of the connection terminal.
回転軸を有するモータ本体と、
前記モータ本体と一体に組み付けられ、前記回転軸の回転を減速出力する減速ギヤを収容するギヤハウジングと、
前記ギヤハウジングに設けた回路収容部内に収容される請求項1〜5のいずれか1項に記載の制御回路部材と
を備えたことを特徴とするモータ。
A motor body having a rotating shaft;
A gear housing that is assembled integrally with the motor body and houses a reduction gear that decelerates and outputs rotation of the rotary shaft;
Motor, wherein the kite and a control circuit member according to claim 1 which is accommodated in the circuit housing portion provided on the gear housing.
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