JP2005227095A - Magnetic variable sensor - Google Patents

Magnetic variable sensor Download PDF

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JP2005227095A
JP2005227095A JP2004035328A JP2004035328A JP2005227095A JP 2005227095 A JP2005227095 A JP 2005227095A JP 2004035328 A JP2004035328 A JP 2004035328A JP 2004035328 A JP2004035328 A JP 2004035328A JP 2005227095 A JP2005227095 A JP 2005227095A
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lead terminal
holder
conversion element
magnetoelectric conversion
slot
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Hideo Tawara
秀男 俵
Shigeki Iwashita
隆樹 岩下
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Sumiden Electronics Ltd
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Sumiden Electronics Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To improve the positional accuracy of a magnetoelectric transducer 1, when covering a resin mold. <P>SOLUTION: In the rotation detection sensor, the magnetoelectric transducer 1 is held by a holder 2, the periphery is subjected to resin mold covering 5, and the rotation of a body B to be detected is detected by the magnetoelectric transducer 1, and the detection signal is transmitted to the outside by a cable 4. An engagement hole 7 is provided at a lead terminal 3, and a nib 10 and an arch section 11 are provided at the holder 2. The lead terminal 3 is inserted into a slot 12 of the arch section 11 from the oblique upper part, the lead terminal 3 is locked to an engagement projection 9; and the nib 10 and is slid on the surface of the holder 2, the thickness direction and the width direction of the lead terminal 3 are positioned, and the magnetoelectric transducer 1 is positioned and fixed at a prescribed position in the fitting recess 8. In this manner, by positioning, locking, and fixing the lead terminal 3 to the holder 2 at least at two locations, the positional accuracy of the magnetoelectric transducer 1, after the resin mold covering 5 can be improved. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

この発明は、自動車の車輪速センサ、エンジン回転数センサなどの回転検出センサ等として使用する磁気変量センサに関するものである。   The present invention relates to a magnetic variable sensor used as a rotation detection sensor such as a wheel speed sensor of an automobile and an engine speed sensor.

例えば、車輪速センサは、この発明の一実施例を示す図1を参照して説明すると、ホールIC、磁気抵抗素子(MR素子)などの磁電変換素子1をホルダー2により保持し、その周囲を樹脂モールド被覆5したものであり、車輪に連動する回転体Bによる磁気変量を前記磁電変換素子1により検出し、その検出信号により前記回転体(車輪)Bの回転数を計測する。
その磁電変換素子1は、一般に、板片状のリード端子3が一体成形されて、ホルダー2に位置決め固定され、前記リード端子3を介して外部へのケーブル4が接続されて、検出信号が制御器に伝達される(特許文献1 図1参照)。
特開2003−307522号公報
For example, a wheel speed sensor will be described with reference to FIG. 1 showing an embodiment of the present invention. A magneto-electric conversion element 1 such as a Hall IC or a magnetoresistive element (MR element) is held by a holder 2 and the periphery thereof is The magnetic variable due to the rotating body B interlocked with the wheel is detected by the magnetoelectric conversion element 1, and the rotational speed of the rotating body (wheel) B is measured based on the detection signal.
The magnetoelectric conversion element 1 is generally formed by integrally forming a plate-like lead terminal 3, positioned and fixed to the holder 2, and connected to the cable 4 to the outside via the lead terminal 3 to control the detection signal. (See Patent Document 1 FIG. 1).
JP 2003-307522 A

従来、その磁電変換素子1のそのホルダー2への位置決め固定は、ホルダー2に嵌合凹部8を形成し、この嵌合凹部8に磁電変換素子1を嵌め込んで行っている。
このとき、磁電変換素子1の寸法バラツキを考慮し、嵌合凹部8に磁電変換素子1を嵌め込めない事態が生じないように、磁電変換素子1より嵌合凹部8を少し大きめに形成している。このため、嵌合凹部8と磁電変換素子1との間には隙間が生じて磁電変換素子1がガタつくこととなる。ガタつけば、上記樹脂モールド被覆5を行なう際、その成形圧により、磁電変換素子1が所要の位置に固定されずに、測定精度に支障が生じる。
Conventionally, the magnetoelectric conversion element 1 is positioned and fixed to the holder 2 by forming a fitting recess 8 in the holder 2 and fitting the magnetoelectric conversion element 1 into the fitting recess 8.
At this time, in consideration of the dimensional variation of the magnetoelectric conversion element 1, the fitting recess 8 is formed slightly larger than the magnetoelectric conversion element 1 so that the situation in which the magnetoelectric conversion element 1 cannot be fitted into the fitting recess 8 does not occur. Yes. For this reason, a gap is generated between the fitting recess 8 and the magnetoelectric conversion element 1, and the magnetoelectric conversion element 1 becomes loose. If rattling is performed, when the resin mold coating 5 is performed, the magnetoelectric conversion element 1 is not fixed at a required position due to the molding pressure, which hinders measurement accuracy.

この問題を解決するために、この発明の発明者は、磁電変換素子1のリード端子3を磁電変換素子1のホルダー2に係止して、その磁電変換素子1をホルダー2に対し位置決めする技術を提案した(特許文献1 図1参照)。   In order to solve this problem, the inventor of the present invention engages the lead terminal 3 of the magnetoelectric conversion element 1 with the holder 2 of the magnetoelectric conversion element 1 and positions the magnetoelectric conversion element 1 with respect to the holder 2. (See Patent Document 1 FIG. 1).

しかしながら、上記提案の技術において、直線板片状のリード端子3(特許文献1 図3参照)とホルダー2との係止は、一箇所又は溝全長のため(特許文献1 図1、図8(a)参照)、その係止状態が不安定で、特に、リード端子3の厚み方向が不安定である。このため、上記樹脂モールド被覆5の成形圧により、そのリード端子3が動いたり、変形したり、最悪では係止が外れる場合が生じ、磁電変換素子1の位置精度が安定しなかった。
この発明は、その樹脂モールド被覆時における磁電変換素子1の位置精度を高めることを課題とする。
However, in the proposed technique, the straight plate piece-like lead terminal 3 (see FIG. 3 of Patent Document 1) and the holder 2 are locked at one place or the entire length of the groove (Patent Document 1 FIG. 1, FIG. 8 ( a), the locking state is unstable, and in particular, the thickness direction of the lead terminal 3 is unstable. For this reason, the lead terminal 3 may be moved or deformed due to the molding pressure of the resin mold coating 5, and in the worst case, the locking may be released, and the position accuracy of the magnetoelectric transducer 1 is not stable.
This invention makes it a subject to raise the positional accuracy of the magnetoelectric conversion element 1 at the time of the resin mold coating.

上記課題を達成するために、この発明は、上述の直線板片状のリード端子を磁電変換素子のホルダーに係止する個所を少なくとも2個所とするとともに、リード端子
の厚み方向及び幅方向それぞれを少なくとも2個所で位置決めするようにしたのである。
In order to achieve the above object, the present invention has at least two places where the above-mentioned straight plate piece-like lead terminal is locked to the holder of the magnetoelectric conversion element, and the thickness direction and width direction of the lead terminal respectively. Positioning was performed at at least two locations.

一般に、直線板片状物は、被取付け部材の表面に沿わせた場合、一箇所の位置決め(係止)では、その厚み方向及び幅方向それぞれに動き易く、このため、2箇所以上で、位置決めすれば、その動きは固定されて安定する。
この安定した固定状態で、樹脂モールド被覆を行なうこととなるため、リード端子と一体の磁電変換素子1も動き難く、樹脂モールド被覆後の位置精度も高いものとなる。
In general, when a linear plate piece is placed along the surface of a member to be attached, it is easy to move in the thickness direction and the width direction at one location (locking). Then, the movement is fixed and stable.
Since the resin mold coating is performed in this stable fixed state, the magnetoelectric conversion element 1 integrated with the lead terminal is also difficult to move, and the positional accuracy after the resin mold coating is high.

この発明は、磁電変換素子に一体のリード端子をホルダーに2箇所以上でその厚み方向及び幅方向それぞれを位置決め係止することにより、その磁電変換素子をそのホルダーに位置決め固定するようにしたので、樹脂モールド被覆後のその磁電変換素子の位置精度の高いものを得ることができる。   In this invention, the lead terminal integrated with the magnetoelectric conversion element is positioned and locked in the thickness direction and the width direction in the holder at two or more locations, so that the magnetoelectric conversion element is positioned and fixed to the holder. It is possible to obtain a highly accurate position of the magnetoelectric conversion element after resin mold coating.

発明の実施の形態BEST MODE FOR CARRYING OUT THE INVENTION

この発明の実施形態としては、磁電変換素子をホルダーにより保持し、その周囲を樹脂モールド被覆し、磁気変量を前記磁電変換素子により検出し、その検出信号をケーブルにより外部に伝達する磁気変量センサにおいて、前記磁電変換素子にケーブルへの直線板片状接続用リード端子を一体に設け、そのリード端子を、ホルダーの表面に沿わせるとともに、そのホルダー表面のリード端子長さ方向の隔った少なくとも2個所で前記ホルダーに係止して、前記リード端子の厚み方向及び幅方向それぞれを少なくとも2個所で位置決めして樹脂モールド被覆した構成を採用できる。   As an embodiment of the present invention, in a magnetic variable sensor that holds a magnetoelectric conversion element by a holder, covers the periphery thereof with a resin mold, detects a magnetic variable by the magnetoelectric conversion element, and transmits the detection signal to the outside by a cable. In addition, the magnetoelectric transducer is integrally provided with a lead terminal for connecting a linear plate piece to the cable, and the lead terminal extends along the surface of the holder and at least two of the holder surface spaced in the length direction of the lead terminal. It is possible to employ a configuration in which the lead terminal is engaged with the holder, the thickness direction and the width direction of the lead terminal are positioned at at least two locations, and resin mold coating is performed.

そのリード端子のホルダーへの係止手段としては、リード端子の沿うホルダー表面にそのリード端子が貫通するスロットを形成するアーチ部を設け、前記スロットの縦幅は前記リード端子の厚み方向が位置決めされる寸法とするとともに、横幅はリード端子の幅方向が位置決めされる寸法として、そのスロットにより構成したり、
上記リード端子の沿うホルダー表面にそのリード端子の幅方向を位置決めする爪を設け、その爪の先端はリード端子幅方向内側に突出状としてリード端子の厚み方向の位置決めを行なって、この爪により構成したり、
上記リード端子に係合孔を形成し、上記ホルダーにはその係合孔に嵌合する係合突起を形成し、その係合突起には抜け止め機構を設けた構成等を採用できる。
As a means for locking the lead terminal to the holder, an arch portion that forms a slot through which the lead terminal penetrates is provided on the surface of the holder along the lead terminal, and the longitudinal width of the slot is positioned in the thickness direction of the lead terminal. The horizontal width is a dimension in which the width direction of the lead terminal is positioned.
A claw for positioning the lead terminal in the width direction is provided on the surface of the holder along the lead terminal, and the tip of the claw is projected inwardly in the lead terminal width direction so that the lead terminal is positioned in the thickness direction. Or
An engagement hole may be formed in the lead terminal, an engagement protrusion that fits into the engagement hole may be formed in the holder, and a retaining mechanism may be provided on the engagement protrusion.

上記アーチ部は、上記リード端子の沿うホルダー表面に連続するホルダー端面に設け、上記スロットのホルダー表面反対側の内面を下向き傾斜としてその傾斜面の端縁でリード端子の厚み方向の位置決めを行なうようにすることができる。このようにすれば、スロットにリード端子を斜め上方から挿し込むことができて、作業性が良い。   The arch portion is provided on a holder end surface continuous with the holder surface along the lead terminal, and the inner surface of the slot opposite to the holder surface is inclined downward so that the lead terminal is positioned in the thickness direction at the end of the inclined surface. Can be. In this way, the lead terminal can be inserted into the slot from obliquely above, and the workability is good.

このスロットの作業性を担保する他の実施形態としては、磁電変換素子をホルダーにより保持し、その周囲を樹脂モールド被覆し、磁気変量を前記磁電変換素子により検出し、その検出信号をケーブルにより外部に伝達する磁気変量センサにおいて、磁電変換素子にケーブルへの直線板片状接続用リード端子を一体に設け、ホルダーの表面に前記リード端子が全長に亘って嵌まるアリ溝を形成し、そのアリ溝の開口するホルダーの端面にそのスロットを形成するアーチ部を設けた構成を採用できる。   As another embodiment for ensuring the workability of the slot, the magnetoelectric conversion element is held by a holder, the periphery thereof is covered with a resin mold, the magnetic variable is detected by the magnetoelectric conversion element, and the detection signal is externally connected by a cable. In the magnetic variable sensor for transmitting to the magneto-electric transducer, a lead plate for connecting the linear plate piece to the cable is integrally provided on the magnetoelectric conversion element, and a dovetail groove is formed on the surface of the holder to fit the lead terminal over the entire length. A configuration in which an arch portion for forming the slot is provided on the end face of the holder where the groove opens can be adopted.

この構成では、アリ溝へのリード端子の嵌合により、リード端子はその厚み方向及び幅方向が確実に位置決めされるため、磁電変換素子のホルダーへの位置決め固定も確実であり、樹脂モールド被覆後のその磁電変換素子の位置精度が高いものとなる。そのリード端子のアリ溝への嵌合時、アーチ部のスロットにリード端子を斜め上方から挿し込むことにより、アリ溝にスムースにリード端子を導き入れることができて、作業性が良い。   In this configuration, the lead terminal is securely positioned in the thickness direction and width direction by fitting the lead terminal into the dovetail groove, so that the positioning of the magnetoelectric conversion element to the holder is also reliable. Therefore, the positional accuracy of the magnetoelectric transducer is high. When the lead terminal is fitted into the dovetail groove, the lead terminal can be smoothly introduced into the dovetail groove by inserting the lead terminal into the slot of the arch portion from obliquely above, and the workability is good.

一実施例を図1乃至図5に示し、この実施例は、車輪速センサPに係り、図1、2に示すようにホールICなどの磁電変換素子1をそのホルダー2に設け、磁電変換素子1のリード端子3にケーブル4を接続した後、それらを樹脂モールド被覆5したものである。図中6は、被覆5と一体成形されたフランジであり、このフランジ6により実施例の車輪速センサPを車体などの固定物に取付ける。   An embodiment is shown in FIGS. 1 to 5, and this embodiment relates to a wheel speed sensor P. As shown in FIGS. 1 and 2, a magnetoelectric conversion element 1 such as a Hall IC is provided in the holder 2, and the magnetoelectric conversion element is provided. After connecting the cable 4 to one lead terminal 3, they are coated with a resin mold 5. In the figure, reference numeral 6 denotes a flange integrally formed with the cover 5, and the wheel speed sensor P of the embodiment is attached to a fixed object such as a vehicle body by the flange 6.

磁電変換素子1は、図3に示すように、その樹脂モールド時に、直線板片状リード端子3をインサート成形して一体化したものであり、そのリード端子3には係合孔7が形成されている。ホルダー2には、磁電変換素子1の嵌合凹部8が形成され、この嵌合凹部8は、磁電変換素子1の成形時の寸法バラツキを考慮し、その磁電変換素子1より少し大きめに形成されて磁電変換素子1が嵌め込めない事態が生じないようにしてある。   As shown in FIG. 3, the magnetoelectric conversion element 1 is formed by integrally molding a linear plate piece lead terminal 3 at the time of resin molding, and an engagement hole 7 is formed in the lead terminal 3. ing. The holder 2 is formed with a fitting recess 8 of the magnetoelectric conversion element 1, and this fitting recess 8 is formed slightly larger than the magnetoelectric conversion element 1 in consideration of dimensional variation during molding of the magnetoelectric conversion element 1. Thus, a situation in which the magnetoelectric conversion element 1 cannot be fitted does not occur.

ホルダー2の表面には、図3に示す、上記リード端子3の係合孔7に嵌合する係合突起9及びリード端子3の側縁に係止する爪10が設けられ、この爪10の先端10aはリード端子3幅方向内側に突出状としてその側縁上面に係止可能となっている。このため、図5鎖線に示すように、リード端子3は、その係合孔7を係合突起9に係止するとともに爪10に係止することにより、その長さ方向2ヵ所で位置決め固定され、この固定により、磁電変換素子1が嵌合凹部8に嵌まって所定位置に位置決め固定される。   On the surface of the holder 2, there are provided an engagement projection 9 that fits into the engagement hole 7 of the lead terminal 3 and a claw 10 that is engaged with the side edge of the lead terminal 3, as shown in FIG. The tip 10a protrudes inward in the width direction of the lead terminal 3 and can be locked to the upper surface of the side edge. For this reason, as shown in the chain line in FIG. 5, the lead terminal 3 is positioned and fixed at two locations in the length direction by locking the engaging hole 7 to the engaging protrusion 9 and the claw 10. By this fixing, the magnetoelectric conversion element 1 is fitted in the fitting recess 8 and is positioned and fixed at a predetermined position.

さらに、上記リード端子3の沿うホルダー2表面に連続するホルダー端面にはアーチ部11が設けられており、そのアーチ部11のスロット12はその横幅w(図4(a)参照)が対のリード端子3、3の外側幅W(図3参照)に設定されているとともに、そのホルダー表面反対側の内面12aが下向き傾斜となって、その傾斜面12aの端縁とホルダー2表面との間隙t(図4(b)参照)がリード端子3の略厚みT(図3)参照)に設定されている。
このため、図5実線で示すように、スロット12にリード端子3を斜め上方から挿し込み、同図鎖線のごとく、リード端子3を、係合突起9及び爪10に係止しつつホルダー2表面に沿わせることにより、リード端子3の厚み方向及び幅方向のそれぞれの位置決めが行なわれて、磁電変換素子1が嵌合凹部8内の所定位置に位置決め固定される。
Further, an arch portion 11 is provided on the end surface of the holder that is continuous with the surface of the holder 2 along which the lead terminal 3 extends, and the slot 12 of the arch portion 11 has a lateral width w (see FIG. 4A) of a pair of leads. The outer width W of the terminals 3 and 3 (see FIG. 3) is set, and the inner surface 12a on the opposite side of the holder surface is inclined downward, and the gap t between the edge of the inclined surface 12a and the surface of the holder 2 (Refer to FIG. 4B) is set to the approximate thickness T of the lead terminal 3 (see FIG. 3).
For this reason, as shown by the solid line in FIG. 5, the lead terminal 3 is inserted into the slot 12 obliquely from above and the surface of the holder 2 is held while the lead terminal 3 is locked to the engaging protrusion 9 and the claw 10 as shown by the chain line in FIG. The lead terminals 3 are positioned in the thickness direction and the width direction, respectively, and the magnetoelectric conversion element 1 is positioned and fixed at a predetermined position in the fitting recess 8.

リード端子3には、ケーブル4の導体4aが半田付け接続される。この接続は、磁電変換素子1のホルダー2への取付け前でも後でもよい。この後、図示しない成形型に磁電変換素子1付のホルダー2等を入れて樹脂モールド被覆5を行って、車輪速センサPを得る。この実施例では、爪10及びアーチ部11により、リード端子3の厚み方向及び幅方向がそれぞれ2箇所で位置決めされる。   A conductor 4a of a cable 4 is soldered to the lead terminal 3. This connection may be before or after attachment of the magnetoelectric conversion element 1 to the holder 2. Then, the wheel speed sensor P is obtained by putting the holder 2 with the magnetoelectric conversion element 1 in a molding die (not shown) and applying the resin mold coating 5. In this embodiment, the claw 10 and the arch portion 11 position the lead terminal 3 in the thickness direction and the width direction at two locations, respectively.

この実施例の車輪速センサPは、図1に示すように、車輪軸に連動された磁石パルサーリングBに対向して取付けられ、その磁石パルサーリングBは、周縁にS極とN極が周方向に交互に連続するように着磁されている。このため、この磁石パルサーリングBの回転により、磁電変換素子1への磁気が変量し、その磁気変量を磁電変換素子1が検出し、その検出信号が、リード端子3、ケーブル4を通して外部の制御器に伝達され、その制御器において、磁石パルサーリングBの回転数、すなわち車輪軸の回転数が検出(計測)される。   As shown in FIG. 1, the wheel speed sensor P of this embodiment is mounted opposite to a magnet pulsar ring B interlocked with a wheel shaft, and the magnet pulsar ring B has an S pole and an N pole around its periphery. It is magnetized so as to continue alternately in the direction. For this reason, the magnetism to the magnetoelectric conversion element 1 is changed by the rotation of the magnet pulser ring B, the magnetic change is detected by the magnetoelectric conversion element 1, and the detection signal is externally controlled through the lead terminal 3 and the cable 4. The rotation number of the magnet pulsar ring B, that is, the rotation number of the wheel shaft is detected (measured) by the controller.

上記係合突起9及び係合孔7は、平面視、円状に限らず、角形、楕円形、などと任意であり、また、図6に示すように、抜け止め9aを設け、その抜け止め9aを無理越えしてリード端子3を嵌合させて抜け止め機能を持つものとし得る。係合突起9をリード端子3側、係合孔7をホルダー2側とし得る。係合突起9に抜け止め機能を持たせれば、この係合突起9と係合孔7との係止によっても厚み方向の位置決めを行うことができる。   The engagement protrusions 9 and the engagement holes 7 are not limited to a plan view and a circular shape, but may be any shape such as a square shape or an oval shape. Further, as shown in FIG. The lead terminal 3 can be fitted by force exceeding 9a and can have a retaining function. The engaging protrusion 9 can be on the lead terminal 3 side, and the engaging hole 7 can be on the holder 2 side. If the engagement protrusion 9 has a retaining function, positioning in the thickness direction can also be performed by locking the engagement protrusion 9 and the engagement hole 7.

さらに、図7(a)に示すように、ホルダー2の表面にリード端子3が全長に亘って嵌まるアリ溝13を形成したものにアーチ部11を設けたり、同図(b)に示すように、爪10のみを設けたものにアーチ部11を設けたものとし得る。爪10は、同図のように、リード端子3のそれぞれの両側側縁が嵌まる構成とすることができる。   Further, as shown in FIG. 7 (a), an arch portion 11 is provided on the surface of the holder 2 in which dovetail grooves 13 into which the lead terminals 3 are fitted over the entire length are formed, or as shown in FIG. 7 (b). Further, the arch portion 11 may be provided on the one provided with only the claw 10. The nail | claw 10 can be set as the structure which each side edge of each lead terminal 3 fits like the figure.

これらの係合突起9、係合孔7及びアーチ部11によるリード端子3の係止固定の各態様において、その係合突起9、係合孔7及びアーチ部11の中から2つの係止手段を適宜に選択することにより、リード端子3が、その長さ方向の隔った2個所で厚み方向及び幅方向に位置決めされてホルダー2に係止することとなって、この発明の効果を発揮できる。   In each aspect of the locking and fixing of the lead terminal 3 by the engaging protrusion 9, the engaging hole 7 and the arch portion 11, two locking means are selected from the engaging protrusion 9, the engaging hole 7 and the arch portion 11. The lead terminal 3 is positioned in the thickness direction and the width direction at two locations separated in the length direction and locked to the holder 2 by appropriately selecting the above, and the effect of the present invention is exhibited. it can.

また、リード端子3の厚み方向及び幅方向のそれぞれの少なくとも2個所での位置決めは、必ずしも同一個所で厚み方向及び幅方向の位置決めの両者を行なう必要はない。すなわち、3個所以上で位置決めするようにしても良い。例えば、図2で示す実施例において、爪10では厚み方向及び幅方向の位置決めを行なうが、係合突起9と係合孔7の係止では幅方向の位置決めのみを行ない、スロット12で厚み方向の位置決めをするようにし得る。このようにすれば、スロット12の幅wはリード端子3の幅Wより広くても良い。   Further, the positioning of the lead terminal 3 in at least two locations in the thickness direction and the width direction does not necessarily need to be performed in the thickness direction and the width direction at the same location. That is, positioning may be performed at three or more locations. For example, in the embodiment shown in FIG. 2, the claw 10 performs positioning in the thickness direction and the width direction, but the engagement projection 9 and the engagement hole 7 only perform positioning in the width direction, and the slot 12 performs the thickness direction. Can be positioned. In this way, the width w of the slot 12 may be wider than the width W of the lead terminal 3.

この実施例において、図8に示すように、磁石14を有するものとし得る。この場合、パルサーリングBには、平歯車状のもの(特許文献1 図9参照)を使用し得る。
なお、この発明においても、磁電変換素子1と嵌合凹部8の間などに、接着剤を介在することもできることは勿論である。
In this embodiment, as shown in FIG. In this case, the pulsar ring B may be a spur gear (see FIG. 9 of Patent Document 1).
In the present invention, it is needless to say that an adhesive may be interposed between the magnetoelectric conversion element 1 and the fitting recess 8.

一実施例の切断正面図Cutting front view of one embodiment 同実施例の切断平面図Cutting plan view of the embodiment 同実施例の分解斜視図Exploded perspective view of the same embodiment 同実施例のホルダーを示し、(a)は右側面図、(b)は切断正面図The holder of the Example is shown, (a) is a right side view, (b) is a cut front view. 同実施例の組立作用図Assembly action diagram of the embodiment 同実施例における係合突起の他例図であり、(a)は平面図、(b)は正面図It is another example figure of the engagement protrusion in the Example, (a) is a top view, (b) is a front view (a)、(b)は他の各実施例の要部斜視図(A), (b) is a principal part perspective view of each other Example. 他の実施例の切断正面図Cutting front view of another embodiment

符号の説明Explanation of symbols

1 磁電変換素子(ホールIC)
2 ホルダー
3 リード端子
4 ケーブル
5 樹脂モールド被覆
6 取付用フランジ
7 係合孔
8 磁電変換素子嵌合凹部
9 係合突起
9a 係合突起の抜け止め
10 嵌合爪
10a 係合突起の抜け止め
11 アーチ部
12 スロット
12a スロットの傾斜面
13 嵌合アリ溝
B パルサーリング
P 車輪速センサ(磁気変量センサ)
1 Magnetoelectric transducer (Hall IC)
2 Holder 3 Lead terminal 4 Cable 5 Resin mold coating 6 Mounting flange 7 Engagement hole 8 Magnetoelectric transducer fitting recess 9 Engagement protrusion 9a Engagement protrusion retaining 10 Fitting claw 10a Engagement protrusion retaining 11 Arch Portion 12 Slot 12a Inclined surface 13 of slot 13 Dovetail groove B Pulsar ring P Wheel speed sensor (magnetic variable sensor)

Claims (6)

磁電変換素子1をホルダー2により保持し、その周囲を樹脂モールド被覆5し、磁気変量を前記磁電変換素子1により検出し、その検出信号をケーブル4により外部に伝達する磁気変量センサPにおいて、
上記磁電変換素子1に上記ケーブル4への接続用直線板片状リード端子3を一体に設け、そのリード端子3を、上記ホルダー2の表面に沿わせるとともに、そのホルダー2表面のリード端子3長さ方向の隔った少なくとも2個所で前記ホルダー2に係止して、前記リード端子3の厚み方向及び幅方向それぞれを少なくとも2個所で位置決めして上記樹脂モールド被覆5したことを特徴とする磁気変量センサ。
In the magnetic variable sensor P that holds the magnetoelectric conversion element 1 by the holder 2, covers the periphery thereof with a resin mold 5, detects the magnetic variable by the magnetoelectric conversion element 1, and transmits the detection signal to the outside through the cable 4,
The magnetoelectric conversion element 1 is integrally provided with a linear plate-like lead terminal 3 for connection to the cable 4, and the lead terminal 3 extends along the surface of the holder 2 and the length of the lead terminal 3 on the surface of the holder 2. The magnetic material is characterized in that it is engaged with the holder 2 at at least two places spaced apart in the vertical direction, and the resin mold coating 5 is formed by positioning the lead terminal 3 in at least two places in the thickness direction and the width direction. Variable sensor.
上記リード端子3の沿うホルダー2表面にそのリード端子3が貫通するスロット12を形成するアーチ部11を設け、前記スロット12の縦幅tは前記リード端子3の厚み方向が位置決めされる寸法Tとするとともに、横幅wはリード端子3の幅方向が位置決めされる寸法Wとして、そのスロット12によりリード端子3のホルダー2への一係止手段を成したことを特徴とする請求項1に記載の磁気変量センサ。   An arch portion 11 that forms a slot 12 through which the lead terminal 3 passes is provided on the surface of the holder 2 along which the lead terminal 3 extends, and the vertical width t of the slot 12 is a dimension T in which the thickness direction of the lead terminal 3 is positioned. In addition, the lateral width w is a dimension W in which the width direction of the lead terminal 3 is positioned, and the slot 12 serves as one locking means for the holder 2 of the lead terminal 3. Magnetic variable sensor. 上記アーチ部11を上記リード端子3の沿うホルダー2表面に連続するホルダー2端面に設け、上記スロット12のホルダー2表面反対側の内面を下向き傾斜としてその傾斜面12aの端縁でリード端子3の厚み方向の位置決めを行なうようにしたことを特徴とする請求項2に記載の磁気変量センサ。   The arch portion 11 is provided on the end surface of the holder 2 continuous with the surface of the holder 2 along which the lead terminal 3 extends, and the inner surface of the slot 12 opposite to the surface of the holder 2 is inclined downward so that the end of the lead terminal 3 is formed at the edge of the inclined surface 12a. 3. The magnetic variable sensor according to claim 2, wherein positioning in the thickness direction is performed. 上記リード端子3の沿うホルダー2表面にそのリード端子3の幅方向を位置決めする爪10を設け、その爪10の先端はリード端子3幅方向内側に突出状としてリード端子3の厚み方向の位置決めを行なって、この爪10により、リード端子3のホルダー2への一係止手段を成したことを特徴とする請求項1乃至3のいずれかに記載の磁気変量センサ。   A claw 10 for positioning the lead terminal 3 in the width direction is provided on the surface of the holder 2 along the lead terminal 3, and the tip of the claw 10 is projected inward in the width direction of the lead terminal 3 to position the lead terminal 3 in the thickness direction. The magnetic variable sensor according to any one of claims 1 to 3, wherein the claw 10 forms one locking means for the lead terminal 3 to the holder 2. 上記リード端子3に係合孔7を形成し、上記ホルダー2にはその係合孔7に嵌合する係合突起9を形成し、その係合突起9には抜け止め機構9aを設けて、リード端子3のホルダー2への一係止手段を成したことを特徴とする請求項1乃至4のいずれかに記載の磁気変量センサ。   An engagement hole 7 is formed in the lead terminal 3, an engagement protrusion 9 is formed in the holder 2 to be fitted in the engagement hole 7, and a retaining mechanism 9 a is provided on the engagement protrusion 9. The magnetic variable sensor according to any one of claims 1 to 4, wherein a means for engaging the lead terminal 3 with the holder 2 is provided. 磁電変換素子1をホルダー2により保持し、その周囲を樹脂モールド被覆5し、磁気変量を前記磁電変換素子1により検出し、その検出信号をケーブル4により外部に伝達する磁気変量センサPにおいて、
上記磁電変換素子1に上記ケーブル4への直線板片状接続用リード端子3を一体に設け、前記ホルダー2の表面に前記リード端子3が全長に亘って嵌まるアリ溝13を形成し、そのアリ溝13の開口するホルダー2の端面にリード端子3が貫通するスロット12を形成するアーチ部11を設け、前記スロット12の横幅wはリード端子3の幅方向が位置決めされる寸法Wとし、スロット12のホルダー2表面反対側の内面を下向き傾斜としてその傾斜面12aの端縁でリード端子3の厚み方向の位置決めを行なうようにしたことを特徴とする請求項2に記載の磁気変量センサ。
In the magnetic variable sensor P that holds the magnetoelectric conversion element 1 by the holder 2, covers the periphery thereof with a resin mold 5, detects the magnetic variable by the magnetoelectric conversion element 1, and transmits the detection signal to the outside through the cable 4,
The magnetoelectric transducer 1 is integrally provided with a lead plate 3 for connecting to the cable 4 with a straight plate piece, and a dovetail groove 13 is formed on the surface of the holder 2 to fit the lead terminal 3 over its entire length. An arch portion 11 that forms a slot 12 through which the lead terminal 3 penetrates is provided on the end face of the holder 2 where the dovetail 13 opens, and the lateral width w of the slot 12 is a dimension W in which the width direction of the lead terminal 3 is positioned. 3. The magnetic variable sensor according to claim 2, wherein the inner surface of the holder 2 opposite to the surface of the holder 2 is inclined downward so that the lead terminal 3 is positioned in the thickness direction at the edge of the inclined surface 12a.
JP2004035328A 2004-02-12 2004-02-12 Magnetic variable sensor Pending JP2005227095A (en)

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