JP2006060007A - Ignition coil for internal combustion engine - Google Patents

Ignition coil for internal combustion engine Download PDF

Info

Publication number
JP2006060007A
JP2006060007A JP2004240198A JP2004240198A JP2006060007A JP 2006060007 A JP2006060007 A JP 2006060007A JP 2004240198 A JP2004240198 A JP 2004240198A JP 2004240198 A JP2004240198 A JP 2004240198A JP 2006060007 A JP2006060007 A JP 2006060007A
Authority
JP
Japan
Prior art keywords
primary
coil
case
ignition coil
cylindrical
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2004240198A
Other languages
Japanese (ja)
Inventor
Eiji Kawaguchi
栄二 河口
Hiroyuki Kimura
裕幸 木村
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Diamond Electric Manufacturing Co Ltd
Original Assignee
Diamond Electric Manufacturing Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Diamond Electric Manufacturing Co Ltd filed Critical Diamond Electric Manufacturing Co Ltd
Priority to JP2004240198A priority Critical patent/JP2006060007A/en
Publication of JP2006060007A publication Critical patent/JP2006060007A/en
Pending legal-status Critical Current

Links

Images

Abstract

<P>PROBLEM TO BE SOLVED: To provide an ignition coil which has a long life and high reliability, has versatility such as mounting of an ignition coil on various kinds of engines which are easy to assemble and highly reliable and can obtain output of optimal ignition performance. <P>SOLUTION: A space is provided to the lower part of a portion wherein a primary voltage input engages with a case. In a case lower end, an outer diameter end projects in an axial direction to a high voltage tower side. An annular recess whose diameter is smaller than the outer diameter of a tube is formed circumferentially in an outer circumference of the tube of a case positioned short of an axial direction from a tip of the outer diameter end part. A projection is provided to a part of an outer enclosure circumferential direction of an umbrella part below the upper housing of the case to project in the direction to an upper housing. A projection is provided also to a rain cover in close contact with the umbrella part to project in the direction to an upper housing to fit it. A vent hole is provided to the projection. The outer diameter of the upper end of a plug boot and the inner diameter of a case lower end are made the same diameter, and the upper end of the plug boot is made to get into under the inner diameter side of the case lower end. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、点火プラグに高電圧を供給する特にエンジンヘッドのプラグホール内に収容される円筒型内燃機関用点火コイルに関する。    The present invention relates to an ignition coil for a cylindrical internal combustion engine that supplies a high voltage to an ignition plug, and particularly accommodated in a plug hole of an engine head.

近時の自動車用内燃機関に用いられる点火コイルには、小型化と、地球環境を考慮した希薄燃焼のエンジンに対応する為の高出力化という相反する要求がある。   The ignition coil used in a recent automobile internal combustion engine has conflicting demands for downsizing and higher output to cope with a lean combustion engine considering the global environment.

なかでも、エンジンの点火プラグに高電圧を直接供給する円筒型内燃機関用点火コイルは、エンジンヘッドのプラグホール内にその一部分または大部分を収納するため、エンジンヘッド上のスペースが縮小できることと、高電圧を点火プラグに直接供給するためハイテンションケーブルのような点火プラグに伝導する線が必要ないため電装品に悪影響がある点火時のノイズの発生が小さいことと、点火エネルギーの点火プラグへの伝搬損失も少ないことなどの利点から多くのエンジンに使用されている。   Among them, the cylindrical internal combustion engine ignition coil that directly supplies a high voltage to the ignition plug of the engine accommodates a part or most of the ignition coil in the plug hole of the engine head, so that the space on the engine head can be reduced, In order to supply high voltage directly to the spark plug, there is no need for a conducting wire to the spark plug such as a high tension cable, so there is less noise during ignition that adversely affects the electrical components, and the ignition energy to the spark plug It is used in many engines because of its advantages such as low propagation loss.

従来例を図4乃至図6に沿って説明する。図4は従来の技術を適用した内燃機関用円筒型点火コイルの外観を表す斜視図であり、図5は図4の縦断面図であり、図6は従来の技術を適用した内燃機関用円筒型点火コイルの1次ボビンとケースの組み付け方向を表す図である。   A conventional example will be described with reference to FIGS. 4 is a perspective view showing the appearance of a cylindrical ignition coil for an internal combustion engine to which the conventional technique is applied, FIG. 5 is a longitudinal sectional view of FIG. 4, and FIG. 6 is a cylinder for the internal combustion engine to which the conventional technique is applied. It is a figure showing the assembly direction of the primary bobbin of a type | mold ignition coil, and a case.

図4乃至図6によれば、本発明の実施例は、上部に大きな開口と、円筒形下部にも開口を有し、電気的絶縁特性が良好なポリフェニレンサルファイド(以下「PPS」と表記)の難燃性絶縁樹脂材により形成された円筒形のケース111と、ポリブチレンテレフタレート(以下「PBT」と表記)により形成された1次ボビン114に1次銅線を巻き廻した1次コイル115と、一端から一端まで複数のフランジによりセクションを設け、各セクションには積層巻きを施した2次ボビン116に2次銅線を巻き廻した2次コイル117と、珪素鋼板等で形成された中心鉄芯118とを有する内燃機関用円筒型点火コイル100であって、前記ケース111の大きな開口を有する上部収納部111bに前記1次コイル115へ電源電圧を供給する1次電圧入力部112を装着し、場合によっては前記上部収納部111bに1次電流をオン−オフするイグナイタ113を収納する。また、前記2次ボビン116の軸方向端部付近に存在する低圧部と高圧部には、当該部分に集中してピッチの狭いセクションを有する複数のフランジを設けることで、使用時の応力によるボビンのクラックや破壊を防止できる。また前記ケース111の円筒部分下端には後述する1次ボビンの係合突起114tと嵌合する穴111dを設ける。上記において上部収納部111bは端子収納ケースを形成しており、前記イグナイタ113の端子1次コイル115との電気的接続は、当該イグナイタ113を上部収納部111bに装着するだけで位置決め等が終了し、配線の引き回しや特別な接続工程を必要としないものとなっている。   4 to 6, the embodiment of the present invention is a polyphenylene sulfide (hereinafter referred to as “PPS”) having a large opening at the top and an opening at the bottom of the cylindrical shape, and having good electrical insulation characteristics. A cylindrical case 111 formed of a flame-retardant insulating resin material, and a primary coil 115 in which a primary copper wire is wound around a primary bobbin 114 formed of polybutylene terephthalate (hereinafter referred to as “PBT”) A section is provided by a plurality of flanges from one end to one end, and a secondary coil 117 in which a secondary copper wire is wound around a secondary bobbin 116 having a laminated winding in each section, and a central iron formed of a silicon steel plate or the like A cylindrical ignition coil 100 for an internal combustion engine having a core 118 and supplying a power supply voltage to the primary coil 115 to an upper housing part 111b having a large opening of the case 111. A primary voltage input portion 112 is attached, optionally on the primary current in the upper housing part 111b - for accommodating the igniter 113 to be turned off. In addition, the low pressure part and the high pressure part existing in the vicinity of the axial end part of the secondary bobbin 116 are provided with a plurality of flanges having a narrow-pitch section concentrated on the part, so that the bobbin due to stress during use is provided. Can be prevented from cracking and breaking. Further, a hole 111d for fitting with an engaging projection 114t of a primary bobbin described later is provided at the lower end of the cylindrical portion of the case 111. In the above, the upper storage portion 111b forms a terminal storage case, and the electrical connection between the igniter 113 and the terminal primary coil 115 is completed by simply attaching the igniter 113 to the upper storage portion 111b. Thus, no wiring routing or special connection process is required.

また前記中心鉄芯118と当該中心鉄芯118と同軸的に前記2次コイル117とを、前記1次コイル115内に配置し、これらの外側に円筒形状に形作られその円周の一部に切り欠き部を有する外装鉄芯119を通常2枚配置する場合もある。このとき外装鉄芯119の切り欠き部を180°の間隔で互い違いに配置する。尚、前記中心鉄芯118両端には、2次ボビン116に2次銅線を巻き廻した2次コイル117内に鉄芯の磁束の飽和を抑制するために1次コイル115で発生する磁束と反対方向の磁束を発生させる永久磁石121を両端に装着し点火エネルギーを増加させる場合もある。これらを1次コイルアッセンブリ110という。   In addition, the central iron core 118 and the secondary coil 117 coaxially with the central iron core 118 are disposed in the primary coil 115, and are formed in a cylindrical shape outside of the primary coil 115 and part of the circumference thereof. In some cases, two external iron cores 119 having notches are usually arranged. At this time, the cutout portions of the outer iron core 119 are alternately arranged at intervals of 180 °. At both ends of the central iron core 118, a magnetic flux generated in the primary coil 115 in order to suppress saturation of the magnetic flux of the iron core in the secondary coil 117 in which a secondary copper wire is wound around the secondary bobbin 116, A permanent magnet 121 that generates a magnetic flux in the opposite direction may be attached to both ends to increase ignition energy. These are referred to as a primary coil assembly 110.

また前記1次ボビン114底部は、2次コイル117で発生した高電圧を図示しない点火プラグに供給する高圧タワー部114aを有し、当該高圧タワー部114a内側底部に2次高圧端子122を備え、当該高圧タワー部114a外周面114uには絶縁注型材の液漏れを防止するOリング141を装着し、当該外周面114uの先端部には、180°の等間隔で径方向外方に突出する2個の鍵状の係合突起114tを形成している。ここで前記高圧タワー部114aはケース111に装着時に当該ケースの端部から突き出す構成となっている。   The bottom of the primary bobbin 114 has a high voltage tower 114a for supplying a high voltage generated by the secondary coil 117 to a spark plug (not shown), and has a secondary high voltage terminal 122 on the inner bottom of the high voltage tower 114a. An O-ring 141 for preventing leakage of the insulating casting material is mounted on the outer peripheral surface 114u of the high-pressure tower 114a, and the tip of the outer peripheral surface 114u protrudes radially outward at equal intervals of 180 °. A plurality of key-like engagement protrusions 114t are formed. Here, the high-pressure tower 114 a is configured to protrude from the end of the case when the case 111 is mounted.

次に上述した1次コイルアッセンブリ110を前記ケース111に組つける際には、前記ケース111上部開口より挿入し前記1次ボビン114の高圧タワー部114a周辺に設けられた2個の係合突起114tとケース111の前記穴111dとを嵌合すると同時に、前記1次電圧入力部112と前記1次コイルアッセンブリ110と電気的に接続される。さらに前記2次高圧端子122は導電性のスプリング23と電気的に接続され、前記高圧タワー部114aにはプラグホール等の金属部に高電圧がリークしないように電気絶縁性に優れたゴム等で成形されたプラグブーツ125を装着し前記スプリング23を覆う。また前記ケース111の上部収納部111bの下方には、前記ケースの胴体である筒部の径を急激に拡径し、急激に小径する傘部を設けている。点火コイル100を図示しないエンジンヘッドに装着する場合には、図示しないプラグホールと、外大気とをシールする弾性変形可能なゴム等で成形されたレインカバー126を、前記ケース111の円筒部分に装着し、上部収納部111bの下方の傘部に密着させて配置する。またレインカバー126には、点火コイル100装着時にプラグホールと連通する空気抜き孔127が設けられ、点火コイル100装着後のプラグホール内の高温水蒸気を外大気に排出する。また前記ケース111上部の開口から絶縁注型材を注入充填して硬化させ、絶縁封止する。   Next, when the above-described primary coil assembly 110 is assembled to the case 111, the two engaging protrusions 114t provided around the high-voltage tower 114a of the primary bobbin 114 are inserted from the upper opening of the case 111. The primary voltage input unit 112 and the primary coil assembly 110 are electrically connected at the same time as the holes 111d of the case 111 are fitted together. Further, the secondary high voltage terminal 122 is electrically connected to a conductive spring 23, and the high voltage tower portion 114a is made of rubber or the like having excellent electrical insulation so that a high voltage does not leak into a metal portion such as a plug hole. A molded plug boot 125 is attached to cover the spring 23. Further, below the upper storage portion 111b of the case 111, there is provided an umbrella portion that rapidly increases the diameter of the cylindrical portion that is the body of the case and rapidly decreases in diameter. When the ignition coil 100 is mounted on an engine head (not shown), a rain cover 126 formed of an elastically deformable rubber or the like that seals a plug hole (not shown) and the outside air is mounted on the cylindrical portion of the case 111. And placed in close contact with the umbrella portion below the upper storage portion 111b. The rain cover 126 is provided with an air vent hole 127 that communicates with the plug hole when the ignition coil 100 is mounted, and discharges high-temperature water vapor in the plug hole after the ignition coil 100 is mounted to the outside atmosphere. Further, an insulating casting material is injected and filled from the opening at the top of the case 111 and cured to be insulated and sealed.

点火コイル100動作時には前記1次電圧入力部112より1次電流を入力し、前記1次コイル115に通電し、1次コイル115で発生した磁気エネルギーは、前記中心鉄芯118と前記外装鉄芯119を伝搬し、1次コイル115と2次コイル117の巻き数比に応じた高電圧が2次コイル117で発生する。発生した高電圧は2次コイル117から2次高圧端子122を通り前記スプリング123を通してスプリング123に接続されている図示しない点火プラグに送りこまれる。   When the ignition coil 100 is in operation, a primary current is input from the primary voltage input unit 112, the primary coil 115 is energized, and the magnetic energy generated in the primary coil 115 is generated by the central iron core 118 and the exterior iron core. 119 is propagated and a high voltage corresponding to the turn ratio of the primary coil 115 and the secondary coil 117 is generated in the secondary coil 117. The generated high voltage is sent from the secondary coil 117 through the secondary high voltage terminal 122 to the spark plug (not shown) connected to the spring 123 through the spring 123.

このよう点火コイル100は、高電圧出力部が隔離され、1次コイル115のような電気的に低電圧になる部材から高電圧出力部は離れているので、良好な絶縁特性が保たれるため、信頼性の高い点火コイル100を提供できる。   In this way, the ignition coil 100 is isolated from the high voltage output portion, and the high voltage output portion is separated from the electrically low voltage member such as the primary coil 115, so that good insulation characteristics are maintained. The ignition coil 100 with high reliability can be provided.

また、点火コイル100は、エンジンに組み付けられるが、図示しないコイルカバーとして、点火コイルを全体を覆い雨水などの液滴からの直接保護を行う。
特開2003-257755号
In addition, the ignition coil 100 is assembled to the engine, but as a coil cover (not shown), the ignition coil 100 is entirely covered so as to directly protect against raindrops and the like.
JP2003-257755A

しかしながら、上記先行技術においては、点火コイルは、前記ケース111上部の開口から絶縁注型材を注入充填して硬化させ、絶縁封止するが、ケース111と前記1次コイル115へ電源電圧を供給する1次電圧入力部112との勘合溝隙間を縫って絶縁注型材が漏れだし絶縁注型材が、階下へタレる問題が生じる。ここで、ケース111と1次電圧入力部112の勘合溝部分を2重やそれ以上の多重にして、1次電圧入力部112の勘合溝隙間をシールすることによって、絶縁注型材の漏れだしを防止してもよいが構造が複雑になるため、成形金型に費やす費用が多大になったり、組立工数が増え、作業時間を要するために円滑な製造工程を圧迫する。またエンジンルーム内の経年の膨張と収縮を繰り返す冷熱ストレスにより、ケース111下端の割れが生じてしまう問題があるが、ケース111下端の肉厚を厚くしケース111下端の強度を補うが、ケース111下端の肉厚が太いと、ケース111成形の際に射出圧力がケース111下端まで到達出来ずにケース111下端の内部にボイドが生じる。ボイドが生じると、ケース111下端において良好な絶縁を保てなくなり、絶縁不良によるリーク不具合に至る場合がある。また上記従来の点火コイルが搭載されるエンジンヘッドには、点火コイルを覆う図示しないコイルカバーを設けて防滴、防塵しているが、多種多様なエンジンヘッドに点火コイル100を搭載する場合、このようなコイルカバーを不要にする場合もあり、この場合、雨水などの液適が取付面に直接滴下し、その水滴の跳ね返りに対して、レインカバー126の空気抜き孔127より液適が進入する場合がある。またPBTは、耐熱性が良好で、機械強度の高いバランスのとれた樹脂材料であるが、オゾン雰囲気中や、水蒸気雰囲気中での連続使用では加水分解等が起こり、雰囲気の連続使用環境でPBTにヒビが入る問題がある。図のような従来のケース111と1次ボビン114の構造では、プラグホールに点火コイル100が装着されたときに、ケース111と1次ボビン114はプラグホールの内部の雰囲気中に曝されている。プラグホール内部に水滴が進入した場合、エンジン始動による高温により、プラグホール内部が高温水蒸気雰囲気になる場合がある。このような環境下において1次ボビン114がPBTであるので、経時劣化として、1次ボビン114が加水分解してしまいボロボロになってしまう。このような状態になると、良好な対絶縁性能を保てなくなり、絶縁不良によるリークに至る場合がある。   However, in the above-described prior art, the ignition coil is injected and filled with an insulating casting material from the opening above the case 111 and cured and insulated and sealed, but the power supply voltage is supplied to the case 111 and the primary coil 115. There arises a problem that the insulating casting material leaks by sewing the gap between the mating groove with the primary voltage input unit 112 and the insulating casting material sags downstairs. Here, the fitting groove part of the case 111 and the primary voltage input part 112 is doubled or more multiplexed, and the gap of the fitting groove of the primary voltage input part 112 is sealed, thereby leaking the insulating casting material. Although it may be prevented, since the structure becomes complicated, the cost for the molding die becomes large, the number of assembling steps increases, and the work time is required. In addition, there is a problem that the lower end of the case 111 is cracked by the thermal stress that repeatedly expands and contracts over time in the engine room, but the thickness of the lower end of the case 111 is increased to compensate for the strength of the lower end of the case 111. If the thickness of the lower end is thick, the injection pressure cannot reach the lower end of the case 111 when forming the case 111, and a void is generated inside the lower end of the case 111. If a void is generated, good insulation cannot be maintained at the lower end of the case 111, which may lead to a leak failure due to poor insulation. In addition, the engine head on which the conventional ignition coil is mounted is provided with a coil cover (not shown) that covers the ignition coil to prevent drip and dust. However, when the ignition coil 100 is mounted on various engine heads, Such a coil cover may be unnecessary. In this case, liquid suitability such as rainwater drops directly on the mounting surface, and liquid suitability enters from the air vent hole 127 of the rain cover 126 against the splash of the water droplet. There is. PBT is a well-balanced resin material with good heat resistance and high mechanical strength. However, hydrolysis or the like occurs in continuous use in an ozone atmosphere or in a steam atmosphere, and PBT is used in a continuous environment of the atmosphere. There is a problem of cracks. In the structure of the conventional case 111 and the primary bobbin 114 as shown in the figure, when the ignition coil 100 is mounted on the plug hole, the case 111 and the primary bobbin 114 are exposed to the atmosphere inside the plug hole. . When water droplets enter the plug hole, the inside of the plug hole may become a high-temperature steam atmosphere due to the high temperature caused by the engine start. Since the primary bobbin 114 is PBT in such an environment, the primary bobbin 114 is hydrolyzed and worn out as deterioration over time. In such a state, good insulation performance cannot be maintained, and leakage due to poor insulation may occur.

そこで本発明は上記課題を鑑みて、エンジンのプラグホール内に装着され、点火プラグに高電圧を供給する円筒型内燃機関用点火コイルにおいて、長寿命でかつ信頼性の高く、また組立しやすく、多種多様なエンジンに点火コイルを搭載するなど汎用性のある、最良の点火性能の出力を得れる、点火コイルを提供することを目的とする。   Therefore, in view of the above problems, the present invention is a cylindrical internal combustion engine ignition coil that is mounted in a plug hole of an engine and supplies a high voltage to an ignition plug, and has a long life, high reliability, and easy assembly. An object of the present invention is to provide an ignition coil capable of obtaining the output of the best ignition performance with versatility such as mounting the ignition coil in various engines.

上記課題を解決するため、本発明は、請求項1では、中心鉄芯と、前記中心鉄芯と同軸的に配置される1次ボビンに1次巻き線を巻き廻した1次コイルと、2次ボビンに2次巻き線を巻き廻した2次コイルと、点火コイルの1次コイルに流れる1次電流をオンオフ制御するイグナイタと、1次電流をイグナイタに供給する1次電流入力部と、前記1次コイルと2次コイルとを収容する円筒型ケースと、で構成され、前記1次ボビンは、2次コイルで発生する高電圧を点火プラグに供給する高圧タワー部の外周から形成され、当該高圧タワー部を前記円筒型ケースに収容して突き出した円筒型内燃機関用点火コイルにおいて、前記1次電圧入力部が前記円筒型ケースと勘合する箇所の外周面に枠を設け、当該枠は1次電圧入力部が前記円筒型ケースと勘合する面より、下部を広く大きく設けたことを特徴とする内燃機関用円筒型点火コイルとする。また請求項2では、中心鉄芯と、前記中心鉄芯と同軸的に配置される1次ボビンに1次巻き線を巻き廻した1次コイルと、2次ボビンに2次巻き線を巻き廻した2次コイルと、点火コイルの1次コイルに流れる1次電流をオンオフ制御するイグナイタと、1次電流をイグナイタに供給する1次電流入力部と、前記1次コイルと2次コイルとを収容する円筒型ケースと、で構成され、前記1次ボビンは、2次コイルで発生する高電圧を点火プラグに供給する高圧タワー部の外周から形成され、当該高圧タワー部を前記円筒型ケースに収容して突き出した円筒型内燃機関用点火コイルにおいて、前記ケース下端は、前記高圧タワー側に外径端部が軸方向に突出し、当該外径端部先端より、軸方向手前に位置する前記ケースの円筒の外周には、円筒外径より径小の円環状凹部が周方向に形成され、当該円環状凹部には、前記ケース外周方向に対し等間隔に突出するリブを形成したことを特徴とする請求項1または請求項2に記載の内燃機関用円筒型点火コイルとする。また請求項3では、中心鉄芯と、前記中心鉄芯と同軸的に配置される1次ボビンに1次巻き線を巻き廻した1次コイルと、2次ボビンに2次巻き線を巻き廻した2次コイルと、点火コイルの1次コイルに流れる1次電流をオンオフ制御するイグナイタと、1次電流をイグナイタに供給する1次電流入力部と、前記1次コイルと2次コイルとを収容する円筒型ケースと、で構成され、前記1次ボビンは、2次コイルで発生する高電圧を点火プラグに供給する高圧タワー部の外周から形成され、当該高圧タワー部を前記円筒型ケースに収容して突き出した円筒型内燃機関用点火コイルにおいて、前記ケースの前記上部収納部の下方の傘部の外郭周方向一部に、前記上部収納部方向に突出するように凸部を設け、エンジンのプラグホールと点火コイルのシールを行う前記傘部に密着するレインカバーも、これに合わせるよう前記上部収納部方向に突出するように凸部を設け、レインカバーの凸部にプラグホールと連通する空気抜き孔を設けたことを特徴とする請求項1乃至請求項3に記載の内燃機関用円筒型点火コイルとする。また請求項4では、中心鉄芯と、前記中心鉄芯と同軸的に配置される1次ボビンに1次巻き線を巻き廻した1次コイルと、2次ボビンに2次巻き線を巻き廻した2次コイルと、点火コイルの1次コイルに流れる1次電流をオンオフ制御するイグナイタと、1次電流をイグナイタに供給する1次電流入力部と、前記1次コイルと2次コイルとを収容する円筒型ケースと、で構成され、前記1次ボビンは、2次コイルで発生する高電圧を点火プラグに供給する高圧タワー部の外周から形成され、当該高圧タワー部を前記円筒型ケースに収容して突き出した円筒型内燃機関用点火コイルにおいて、点火プラグと勘合するプラグブーツが前記ケースと勘合する側の外径を小径化し、前記ケース下端の外径を内径と同径とし、ケースとプラグブーツの組み付けの際に、プラグブーツの上端一部をケース下端の内径側に潜り込ませたことを特徴とする請求項1乃至請求項3に記載の内燃機関用円筒型点火コイルとする。また請求項5では、前記イグナイタを収容する前記ケースの大きな開口を有する上部収納部と、で構成したことを特徴とする請求項1乃至請求項4に記載の内燃機関用円筒型点火コイルとする。また請求項6では、請求項1乃至5を少なくとも2つ以上組み合わせたことを特徴とする内燃機関用円筒型点火コイルとする。   In order to solve the above-described problems, the present invention provides, in claim 1, a central iron core, a primary coil in which a primary winding is wound around a primary bobbin disposed coaxially with the central iron core, and 2 A secondary coil in which a secondary winding is wound around a secondary bobbin, an igniter that controls on / off of a primary current that flows through the primary coil of the ignition coil, a primary current input unit that supplies primary current to the igniter, A cylindrical case that accommodates the primary coil and the secondary coil, and the primary bobbin is formed from an outer periphery of a high-voltage tower section that supplies a high voltage generated by the secondary coil to the spark plug. In the ignition coil for a cylindrical internal combustion engine, in which the high voltage tower portion is accommodated and protruded in the cylindrical case, a frame is provided on the outer peripheral surface of the portion where the primary voltage input portion is engaged with the cylindrical case. The secondary voltage input section is From the surface to be fitted with the scan, the internal combustion engine for cylindrical ignition coil, characterized in that provided increased wide bottom. According to a second aspect of the present invention, a central coil, a primary coil in which a primary winding is wound around a primary bobbin disposed coaxially with the central core, and a secondary winding in a secondary bobbin are wound. A secondary coil; an igniter that controls on / off of a primary current flowing through the primary coil of the ignition coil; a primary current input unit that supplies the primary current to the igniter; and the primary coil and the secondary coil. The primary bobbin is formed from the outer periphery of a high-pressure tower portion that supplies a high voltage generated by a secondary coil to the ignition plug, and the high-pressure tower portion is accommodated in the cylindrical case. In the cylindrical internal combustion engine ignition coil projecting, the lower end of the case has an outer diameter end projecting in the axial direction toward the high-pressure tower, and the case lower end is positioned in front of the outer diameter end. On the outer periphery of the cylinder, the cylinder 3. An annular recess having a diameter smaller than the diameter is formed in the circumferential direction, and ribs protruding at equal intervals with respect to the outer periphery direction of the case are formed in the annular recess. It is set as the cylindrical ignition coil for internal combustion engines of description. According to a third aspect of the present invention, a central coil, a primary coil in which a primary winding is wound around a primary bobbin disposed coaxially with the central core, and a secondary winding in a secondary bobbin are wound. A secondary coil; an igniter that controls on / off of a primary current flowing through the primary coil of the ignition coil; a primary current input unit that supplies the primary current to the igniter; and the primary coil and the secondary coil. The primary bobbin is formed from the outer periphery of a high-pressure tower portion that supplies a high voltage generated by a secondary coil to the ignition plug, and the high-pressure tower portion is accommodated in the cylindrical case. In the cylindrical internal combustion engine ignition coil projecting, a convex portion is provided in a part of the outer circumferential direction of the umbrella portion below the upper storage portion of the case so as to protrude toward the upper storage portion. Plug hole and ignition carp The rain cover that is in close contact with the umbrella part that seals is also provided with a convex part so as to protrude in the direction of the upper storage part so as to match this, and an air vent hole that communicates with the plug hole is provided in the convex part of the rain cover. A cylindrical ignition coil for an internal combustion engine according to any one of claims 1 to 3. According to a fourth aspect of the present invention, a central coil, a primary coil in which a primary winding is wound around a primary bobbin arranged coaxially with the central core, and a secondary winding in a secondary bobbin are wound. A secondary coil; an igniter that controls on / off of a primary current flowing through the primary coil of the ignition coil; a primary current input unit that supplies the primary current to the igniter; and the primary coil and the secondary coil. The primary bobbin is formed from the outer periphery of a high-pressure tower portion that supplies a high voltage generated by a secondary coil to the ignition plug, and the high-pressure tower portion is accommodated in the cylindrical case. In the protruding cylindrical internal combustion engine ignition coil, the plug boot that engages with the spark plug has a smaller outer diameter on the side that engages with the case, and the outer diameter of the lower end of the case is the same as the inner diameter. Pair of boots During attaching, the internal combustion engine for cylindrical ignition coil of claim 1 to claim 3, characterized in that was submerge a portion the upper end of the plug boot on the inner diameter side of the case bottom. The cylindrical ignition coil for an internal combustion engine according to any one of claims 1 to 4, further comprising: an upper storage portion having a large opening of the case for storing the igniter. . A sixth aspect of the present invention provides a cylindrical ignition coil for an internal combustion engine, which is a combination of at least two of the first to fifth aspects.

上記本発明の構成をすることで、簡単な構造で、漏れだしタレた絶縁注型材が階下まで到達できないようにすることができる。ケース11下端部の良好な絶縁を保持でき、絶縁不良によるリークが発生しない。またレインカバー26の空気抜き孔27位置を上方向に上げ変更することで、液適の進入の可能性低くする。また1次ボビン14はプラグブーツ25内へ完全に覆われるので、高温水蒸気雰囲気や、オゾン等の環境下のプラグホール内において加水分解してしまう問題は発生しない。よって、良好な絶縁性能を継続的に保つことができる。したがって、長寿命でかつ信頼性の高く、また組立しやすく、信頼性の高い、多種多様なエンジンに点火コイル1を搭載するなどの汎用性のある、最良の点火性能の出力を得れる、点火コイルを提供することができる。   With the above-described configuration of the present invention, it is possible to prevent the leaked and insulative cast material from reaching the downstairs with a simple structure. Good insulation at the lower end of the case 11 can be maintained, and leakage due to poor insulation does not occur. Further, by raising and changing the position of the air vent hole 27 of the rain cover 26 in the upward direction, the possibility of liquid entry is reduced. Further, since the primary bobbin 14 is completely covered in the plug boot 25, there is no problem of hydrolysis in the plug hole under a high-temperature steam atmosphere or an environment such as ozone. Therefore, good insulation performance can be continuously maintained. Therefore, it has long life, high reliability, easy assembly, high reliability, versatility such as mounting the ignition coil 1 on various engines, etc. A coil can be provided.

作用Action

上記解決手段を用いると、1次電圧入力部12がケース11と勘合する箇所の外周面に枠12wを設け、当該枠12wは、1次電圧入力部12がケース11と勘合する面より、下部が広く大きく設けられるので、前記枠12wと1次電圧入力部12が勘合したとき、1次電圧入力部12とケース11と勘合しない空間Bを設定することができる。これより、従来発生していたケース111と1次電圧入力部112の勘合溝隙間を縫って絶縁注型材が漏れだしタレた絶縁注型材が、前記空間Bに許容され、保持されることで、簡単な構造で、漏れだしタレた絶縁注型材が階下まで到達できないようにすることができる。またケース11下端は、高圧タワー14a側に外径端部が軸方向に突出し、当該外径端部先端より、軸方向手前に位置するケース11の円筒の外周には、円筒外径より径小の円環状凹部Cが周方向に形成されており、また円環状凹部Cには、ケース11外周方向に対し等間隔に突出するリブ11fを形成したので、ケース11下端部分の肉厚は薄肉形状となり、ケース11成形の際に射出圧力がケース11下端まで到達することが出来き、従来発生していたケース11下端部分のボイドが生じない。また、ケース11の円環状凹部Cに形成されたリブ11fにより、ケース11下端の補強効果を奏するので、ケース11下端強度を向上することができる。よって、これの相乗効果でケース11の良好な絶縁状態を保持でき、絶縁不良によるリークが発生しない。また、前記ケース11の大きな開口を有する上部収納部11bの下方の傘部11hの外郭周方向一部に、上部収納部11b方向に突出するように凸部Aを設け、前記傘部11hに密着するレインカバー26も、これに合わせるよう上部収納部11b方向に突出するように凸部Aを設け、凸部Aに空気抜き孔27を設ける。このように、レインカバー26の空気抜き孔27位置を傘部11hの外周面高さ位置より上方向に設定することで、より液適の進入の可能性を低くする。また、プラグブーツ25の上端の外径を小径化し、ケース11下端の内径と同径としたので、ケース11とプラグブーツ25の組み付けの際には、プラグブーツ25の上端をケース11下端の内径側に潜り込ませることができる。これより、1次ボビン14はプラグブーツ25内へ完全に覆われるので、高温水蒸気雰囲気や、オゾン等の環境下のプラグホール内において、PBTで構成された1次ボビン14が加水分解しボロボロになってしまう問題は発生しない。よって、良好な絶縁性能を継続的に保つことができる。   When the above solution is used, a frame 12w is provided on the outer peripheral surface of the portion where the primary voltage input unit 12 engages with the case 11, and the frame 12w is lower than the surface where the primary voltage input unit 12 engages with the case 11. Therefore, when the frame 12w and the primary voltage input unit 12 are fitted together, a space B that does not fit the primary voltage input unit 12 and the case 11 can be set. As a result, the insulating casting material that has leaked when the insulating casting material leaks by sewing the fitting groove gap between the case 111 and the primary voltage input portion 112 that has occurred in the past is allowed and held in the space B. With a simple structure, it is possible to prevent leaking and dripping insulation casting material from reaching the downstairs. Further, the lower end of the case 11 has an outer diameter end projecting in the axial direction toward the high-pressure tower 14a, and the outer periphery of the cylinder of the case 11 positioned axially in front of the outer diameter end is smaller than the outer diameter of the cylinder. The annular recess C is formed in the circumferential direction, and the rib 11f protruding at equal intervals with respect to the outer peripheral direction of the case 11 is formed in the annular recess C. Therefore, the thickness of the lower end portion of the case 11 is thin. Thus, the injection pressure can reach the lower end of the case 11 when the case 11 is molded, and the void at the lower end portion of the case 11 which has been generated conventionally does not occur. Moreover, since the rib 11f formed in the annular recessed part C of the case 11 has a reinforcing effect on the lower end of the case 11, the lower end strength of the case 11 can be improved. Therefore, a good insulation state of the case 11 can be maintained by this synergistic effect, and leakage due to poor insulation does not occur. Further, a convex portion A is provided in a part of the outer circumferential direction of the umbrella portion 11h below the upper storage portion 11b having a large opening of the case 11 so as to protrude in the direction of the upper storage portion 11b, and is closely attached to the umbrella portion 11h. The rain cover 26 to be provided is also provided with a convex portion A so as to protrude in the direction of the upper storage portion 11b so as to match this, and an air vent hole 27 is provided in the convex portion A. Thus, by setting the air vent hole 27 position of the rain cover 26 upward from the outer peripheral surface height position of the umbrella portion 11h, the possibility of entering liquid is further reduced. Further, since the outer diameter of the upper end of the plug boot 25 is reduced to the same diameter as the inner diameter of the lower end of the case 11, when the case 11 and the plug boot 25 are assembled, the upper end of the plug boot 25 is set to the inner diameter of the lower end of the case 11. You can dive into the side. As a result, the primary bobbin 14 is completely covered in the plug boot 25, so that the primary bobbin 14 composed of PBT is hydrolyzed and tattered in the plug hole in an environment such as a high-temperature steam atmosphere or ozone. There will be no problem. Therefore, good insulation performance can be continuously maintained.

次に本発明の技術を適用した実施例と背景技術による点火コイルの相違する部分のみを説明する。本発明による実施例は、図1乃至図3に沿って説明する。図1は本発明の技術を適用した内燃機関用円筒型点火コイルの外観を表す斜視図であり、図2は図1の縦断面図であり、図3は図2の高圧タワー部の断面図である。   Next, only different portions of the ignition coil according to the embodiment of the present invention and the background art will be described. An embodiment according to the present invention will be described with reference to FIGS. 1 is a perspective view showing the appearance of a cylindrical ignition coil for an internal combustion engine to which the technology of the present invention is applied, FIG. 2 is a longitudinal sectional view of FIG. 1, and FIG. 3 is a sectional view of a high-pressure tower portion of FIG. It is.

図1乃至図3によれば、本発明の実施例は、上部に大きな開口と、円筒形下部にも開口を有した円筒形のケース11と、1次ボビン14に1次銅線を巻き廻した1次コイル15と、2次ボビン16に2次銅線を巻き廻した2次コイル17と、珪素鋼板等で形成された中心鉄芯18とを有する内燃機関用円筒型点火コイルであって、前記ケース11の大きな開口を有する上部収納部11bに前記1次コイル15へ電源電圧を供給する1次電圧入力部12を装着し、前記上部収納部11bに1次電流をオン−オフするイグナイタ13を収納する。また、前記ケース11の円筒部分先端内周側には後述する1次ボビン14の係合突起14tと嵌合する窪み11dを設ける。また上部収納部11bは端子収納ケースを形成しており、前記イグナイタ13の端子1次コイル15との電気的接続は、当該イグナイタ13を上部収納部11bに装着するだけで位置決め等が終了し、配線の引き回しや特別な接続工程を必要としないものとなっている。   1 to 3, according to the embodiment of the present invention, a primary copper wire is wound around a cylindrical case 11 having a large opening in the upper part and an opening in the cylindrical lower part, and a primary bobbin 14. A cylindrical ignition coil for an internal combustion engine having a primary coil 15, a secondary coil 17 in which a secondary copper wire is wound around a secondary bobbin 16, and a central iron core 18 formed of a silicon steel plate or the like. A primary voltage input unit 12 for supplying a power supply voltage to the primary coil 15 is mounted on the upper housing part 11b having a large opening of the case 11, and an igniter for turning on and off the primary current to the upper housing part 11b. 13 is stored. Further, a hollow 11d that fits with an engaging protrusion 14t of a primary bobbin 14 described later is provided on the inner peripheral side of the cylindrical portion tip of the case 11. The upper storage portion 11b forms a terminal storage case, and the electrical connection between the igniter 13 and the terminal primary coil 15 is completed by simply mounting the igniter 13 on the upper storage portion 11b. There is no need for wiring routing or special connection processes.

また前記1次ボビン14底部は、2次コイル17で発生した高電圧を図示しない点火プラグに供給する高圧タワー部14aを有し、当該高圧タワー部14a内側底部に2次高圧端子22を備え、当該高圧タワー部14a外周面14uには絶縁注型材の液漏れを防止するOリング41を装着し、当該外周面14uの先端部には、180°の等間隔で径方向外方に突出する2個の鍵状の係合突起14tを形成している。ここで前記高圧タワー部14aはケース11に装着時に当該ケース11の端部から突き出す構成となっている。またケース11の下端は高圧タワー部14aの付け根より軸方向高圧タワー部14a側に外径端部が突出し、当該外径端部先端より手前に位置するケース11の円筒の外周には、円筒外径より径小の円環状凹部Cが周方向に形成されており、また円環状凹部Cには、等間隔に突出するリブ11fが形成されている。これより、高圧タワー部14aの付け根には、ケース11の下端を覆いとする空間Bができる。上記において、ケース11は、1次電圧入力部12がケース11と勘合する箇所のケース11側外周面に下部が広く大きく設けられた枠12wを設け、当該枠12wは、1次電圧入力部12がケース11と勘合する面より、下部が広く大きく設けられる。また、ケース11下端部分は、ケース11下端部分の肉厚を薄肉形状とし、ケース11外周方向に対し等間隔に配置され、ケース11外周面より突出した補強用のリブ11fをケース11に成形した。また、前記ケース11の上部収納部11bの下方の傘部11hの外郭周方向一部に、上部収納部11b方向に突出するように凸部を設ける。さらに前記傘部11hに密着するレインカバー26も、これに合わせるよう上部収納部11b方向に突出するように凸部Aを設け、凸部Aには、点火コイルをエンジンに組み付け後にプラグホール内部と外大気を連通する空気抜き孔27を設ける。またプラグホール等の金属部に高電圧がリークしないように電気絶縁性に優れたゴム等で成形されたプラグブーツ25は、ケース11下端と勘合するプラグブーツ26の上端の外径を小径化し、ケース11下端の内径と同径とした構造とする。これより、ケース11とプラグブーツ26の組み付けの際には、プラグブーツ26の上端をケース11下端の内径側の付け部の空間Bに潜り込ませることができる。最後に前記ケース11上部の開口から絶縁注型材を注入充填して硬化させ、絶縁封止する。   The bottom of the primary bobbin 14 has a high voltage tower 14a for supplying a high voltage generated by the secondary coil 17 to a spark plug (not shown), and a secondary high voltage terminal 22 is provided on the inner bottom of the high voltage tower 14a. An O-ring 41 that prevents leakage of the insulating casting material is attached to the outer peripheral surface 14u of the high-pressure tower 14a, and the tip of the outer peripheral surface 14u protrudes radially outward at equal intervals of 180 °. A plurality of key-like engaging projections 14t are formed. Here, the high-pressure tower portion 14 a protrudes from the end portion of the case 11 when the case 11 is mounted. The lower end of the case 11 has an outer diameter end protruding from the base of the high pressure tower portion 14a toward the axial high pressure tower portion 14a, and the outer periphery of the cylinder of the case 11 positioned in front of the distal end of the outer diameter end An annular recess C having a diameter smaller than the diameter is formed in the circumferential direction, and ribs 11f protruding at equal intervals are formed in the annular recess C. Thus, a space B covering the lower end of the case 11 is formed at the base of the high-pressure tower portion 14a. In the above case, the case 11 is provided with a frame 12w having a large lower portion on the outer peripheral surface on the case 11 side where the primary voltage input unit 12 engages with the case 11, and the frame 12w is provided with the primary voltage input unit 12. Is wider and larger than the surface mating with the case 11. Further, the lower end portion of the case 11 has a thin thickness at the lower end portion of the case 11 and is arranged at equal intervals in the outer peripheral direction of the case 11, and reinforcing ribs 11 f protruding from the outer peripheral surface of the case 11 are formed on the case 11. . Further, a convex portion is provided on a part of the outer circumferential direction of the umbrella portion 11h below the upper storage portion 11b of the case 11 so as to protrude in the direction of the upper storage portion 11b. Further, the rain cover 26 that is in close contact with the umbrella portion 11h is also provided with a convex portion A so as to protrude in the direction of the upper storage portion 11b so as to match this, and the convex portion A is connected to the inside of the plug hole after the ignition coil is assembled to the engine. An air vent hole 27 that communicates with the outside atmosphere is provided. Further, the plug boot 25 formed of rubber or the like excellent in electrical insulation so as not to leak a high voltage to a metal part such as a plug hole is reduced in the outer diameter of the upper end of the plug boot 26 to be fitted with the lower end of the case 11, The structure is the same as the inner diameter of the lower end of the case 11. Thus, when the case 11 and the plug boot 26 are assembled, the upper end of the plug boot 26 can be inserted into the space B of the attaching portion on the inner diameter side of the lower end of the case 11. Finally, an insulating casting material is injected and filled from the opening in the upper part of the case 11 and cured to be insulated and sealed.

点火コイル1動作時には前記1次電圧入力部12より1次電流を入力し、前記1次コイル15に通電し、1次コイル15で発生した磁気エネルギーは、前記中心鉄芯18と前記外装鉄芯19を伝搬し、1次コイル15と2次コイル17の巻き数比に応じた高電圧が2次コイル17で発生する。発生した高電圧は2次コイル17から2次高圧端子22を通り前記スプリング23を通してスプリング23に接続されている図示しない点火プラグに送りこまれる。   When the ignition coil 1 is operated, a primary current is input from the primary voltage input unit 12, the primary coil 15 is energized, and the magnetic energy generated in the primary coil 15 is generated by the central iron core 18 and the outer iron core. 19, a high voltage corresponding to the turn ratio of the primary coil 15 and the secondary coil 17 is generated in the secondary coil 17. The generated high voltage is sent from the secondary coil 17 through the secondary high voltage terminal 22 through the spring 23 to a spark plug (not shown) connected to the spring 23.

先の実施例において、ケースの1次電圧入力部とが勘合する箇所のケース側外周面に下部に、広く大きく設けられた枠12wを設け空間Bを設けたが、空間Bのみならず同時に1次電圧入力部側面においても広く枠を設けてもよい。これより、1次電圧入力部との勘合溝隙間を縫って絶縁注型材が漏れだした絶縁注型材が、階下へタレる際の樹脂を広く大きく設けられた下部の枠の空間に導くガイド溝空間としての役割を果たし、他の部品への樹脂タレを極力抑えることができる。 In the previous embodiment, the space B is provided in the lower part of the case-side outer peripheral surface where the primary voltage input portion of the case is fitted, and the space B is provided in the lower part. A wide frame may be provided also on the side surface of the secondary voltage input unit. The guide groove that guides the resin when the insulating casting material leaks through the gap between the primary voltage input portion and the primary voltage input section to the lower frame provided with a large and large resin when sagging downstairs. It plays a role as a space and can suppress resin sagging to other parts as much as possible.

本発明の技術を適用した内燃機関用円筒型点火コイルの外観を表す斜視図である。It is a perspective view showing the appearance of the cylindrical ignition coil for internal-combustion engines to which the technology of the present invention is applied. 図1の縦断面図である。It is a longitudinal cross-sectional view of FIG. 図2の高圧タワー部の断面図である。It is sectional drawing of the high voltage | pressure tower part of FIG. 従来の技術を適用した内燃機関用円筒型点火コイルの外観を表す斜視図である。It is a perspective view showing the external appearance of the cylindrical ignition coil for internal combustion engines to which the prior art is applied. 図4の縦断面図である。It is a longitudinal cross-sectional view of FIG. 従来の技術を適用した内燃機関用円筒型点火コイルの1次ボビンとケースの組み付け方向を表す図である。It is a figure showing the assembly | attachment direction of the primary bobbin and case of the cylindrical ignition coil for internal combustion engines to which the prior art is applied.

符号の説明Explanation of symbols

1 点火コイル
11 ケース
11b 上部収納部
11d 窪み
11f リブ
11h 傘部
12 1次電圧入力部
12w 枠
13 イグナイタ
14 1次ボビン
14a 高圧タワー部
14t 1次ボビンの係合突起
15 1次コイル
16 2次ボビン
17 2次コイル
18 中心鉄芯
19 外装鉄芯
21 永久磁石
22 2次高圧端子
23 スプリング
25 プラグブーツ
26 レインカバー
27 空気抜き孔
41 Oリング
A 凸部
B 空間
C 円環状凹部
100 点火コイル
110 1次コイルアッセンブリ
111 ケース
111b 上部収納部
111d 穴
112 1次電圧入力部
113 イグナイタ
114 1次ボビン
114a 高圧タワー部
114t 1次ボビンの係合突起
114u 外周面
115 1次コイル
116 2次ボビン
117 2次コイル
118 中心鉄芯
119 外装鉄芯
121 永久磁石
122 2次高圧端子
123 スプリング
125 プラグブーツ
126 レインカバー
127 空気抜き孔
141 Oリング
DESCRIPTION OF SYMBOLS 1 Ignition coil 11 Case 11b Upper storage part 11d Depression 11f Rib 11h Umbrella part 12 Primary voltage input part 12w Frame 13 Igniter 14 Primary bobbin 14a High voltage tower part 14t Primary bobbin engagement protrusion 15 Primary coil 16 Secondary bobbin 17 Secondary coil 18 Central iron core 19 Exterior iron core 21 Permanent magnet 22 Secondary high voltage terminal 23 Spring 25 Plug boot 26 Rain cover 27 Air vent hole 41 O-ring A Protrusion B Space C Toroidal recess 100 Ignition coil 110 Primary coil Assembly 111 Case 111b Upper housing part 111d Hole 112 Primary voltage input part 113 Igniter 114 Primary bobbin 114a High-voltage tower part 114t Primary bobbin engagement protrusion 114u Outer peripheral surface 115 Primary coil 116 Secondary bobbin 117 Secondary coil 118 Center Iron core 119 Exterior iron core 121 Permanent magnet 122 secondary high-voltage terminal 123 spring 125 plug boot 126 rain cover 127 vent 141 O-ring

Claims (6)

中心鉄芯と、前記中心鉄芯と同軸的に配置される1次ボビンに1次巻き線を巻き廻した1次コイルと、2次ボビンに2次巻き線を巻き廻した2次コイルと、点火コイルの1次コイルに流れる1次電流をオンオフ制御するイグナイタと、1次電流をイグナイタに供給する1次電流入力部と、前記1次コイルと2次コイルとを収容する円筒型ケースと、で構成され、前記1次ボビンは、2次コイルで発生する高電圧を点火プラグに供給する高圧タワー部の外周から形成され、当該高圧タワー部を前記円筒型ケースに収容して突き出した円筒型内燃機関用点火コイルにおいて、前記1次電圧入力部が前記円筒型ケースと勘合する箇所の外周面に枠を設け、当該枠は1次電圧入力部が前記円筒型ケースと勘合する面より、下部を広く大きく設けたことを特徴とする内燃機関用円筒型点火コイル。   A central iron core, a primary coil in which a primary winding is wound around a primary bobbin disposed coaxially with the central iron core, and a secondary coil in which a secondary winding is wound around a secondary bobbin; An igniter that controls on / off of a primary current that flows through the primary coil of the ignition coil, a primary current input unit that supplies the primary current to the igniter, and a cylindrical case that houses the primary coil and the secondary coil; The primary bobbin is formed from the outer periphery of a high-pressure tower portion that supplies a high voltage generated by the secondary coil to the spark plug, and the high-pressure tower portion is accommodated in the cylindrical case and protrudes. In the ignition coil for an internal combustion engine, a frame is provided on an outer peripheral surface of a portion where the primary voltage input portion is engaged with the cylindrical case, and the frame is lower than a surface where the primary voltage input portion is engaged with the cylindrical case. Wide and large Cylindrical ignition coil for an internal combustion engine according to claim. 中心鉄芯と、前記中心鉄芯と同軸的に配置される1次ボビンに1次巻き線を巻き廻した1次コイルと、2次ボビンに2次巻き線を巻き廻した2次コイルと、点火コイルの1次コイルに流れる1次電流をオンオフ制御するイグナイタと、1次電流をイグナイタに供給する1次電流入力部と、前記1次コイルと2次コイルとを収容する円筒型ケースと、で構成され、前記1次ボビンは、2次コイルで発生する高電圧を点火プラグに供給する高圧タワー部の外周から形成され、当該高圧タワー部を前記円筒型ケースに収容して突き出した円筒型内燃機関用点火コイルにおいて、前記ケース下端は、前記高圧タワー側に外径端部が軸方向に突出し、当該外径端部先端より、軸方向手前に位置する前記ケースの円筒の外周には、円筒外径より径小の円環状凹部が周方向に形成され、当該円環状凹部には、前記ケース外周方向に対し等間隔に突出するリブを形成したことを特徴とする請求項1または請求項2に記載の内燃機関用円筒型点火コイル。   A central iron core, a primary coil in which a primary winding is wound around a primary bobbin disposed coaxially with the central iron core, and a secondary coil in which a secondary winding is wound around a secondary bobbin; An igniter that controls on / off of a primary current that flows through the primary coil of the ignition coil, a primary current input unit that supplies the primary current to the igniter, and a cylindrical case that houses the primary coil and the secondary coil; The primary bobbin is formed from the outer periphery of a high-pressure tower portion that supplies a high voltage generated by the secondary coil to the spark plug, and the high-pressure tower portion is accommodated in the cylindrical case and protrudes. In the ignition coil for an internal combustion engine, the lower end of the case has an outer diameter end projecting in the axial direction toward the high-pressure tower side, and the outer periphery of the cylinder of the case located in front of the outer diameter end in the axial direction is Annulus smaller than the outer diameter of the cylinder The cylindrical part for an internal combustion engine according to claim 1 or 2, wherein a concave part is formed in a circumferential direction, and the annular concave part is formed with a rib protruding at equal intervals with respect to the outer peripheral direction of the case. Ignition coil. 中心鉄芯と、前記中心鉄芯と同軸的に配置される1次ボビンに1次巻き線を巻き廻した1次コイルと、2次ボビンに2次巻き線を巻き廻した2次コイルと、点火コイルの1次コイルに流れる1次電流をオンオフ制御するイグナイタと、1次電流をイグナイタに供給する1次電流入力部と、前記1次コイルと2次コイルとを収容する円筒型ケースと、で構成され、前記1次ボビンは、2次コイルで発生する高電圧を点火プラグに供給する高圧タワー部の外周から形成され、当該高圧タワー部を前記円筒型ケースに収容して突き出した円筒型内燃機関用点火コイルにおいて、前記ケースの前記上部収納部の下方の傘部の外郭周方向一部に、前記上部収納部方向に突出するように凸部を設け、エンジンのプラグホールと点火コイルのシールを行う前記傘部に密着するレインカバーも、これに合わせるよう前記上部収納部方向に突出するように凸部を設け、レインカバーの凸部にプラグホールと連通する空気抜き孔を設けたことを特徴とする請求項1乃至請求項3に記載の内燃機関用円筒型点火コイル。   A central iron core, a primary coil in which a primary winding is wound around a primary bobbin disposed coaxially with the central iron core, and a secondary coil in which a secondary winding is wound around a secondary bobbin; An igniter that controls on / off of a primary current that flows through the primary coil of the ignition coil, a primary current input unit that supplies the primary current to the igniter, and a cylindrical case that houses the primary coil and the secondary coil; The primary bobbin is formed from the outer periphery of a high-pressure tower portion that supplies a high voltage generated by the secondary coil to the spark plug, and the high-pressure tower portion is accommodated in the cylindrical case and protrudes. In the internal combustion engine ignition coil, a convex portion is provided in a part of the outer circumferential direction of the umbrella portion below the upper storage portion of the case so as to protrude toward the upper storage portion, and the plug hole of the engine and the ignition coil Before sealing The rain cover that is in close contact with the umbrella portion is also provided with a convex portion so as to protrude in the direction of the upper storage portion so as to match this, and an air vent hole communicating with the plug hole is provided in the convex portion of the rain cover. A cylindrical ignition coil for an internal combustion engine according to any one of claims 1 to 3. 中心鉄芯と、前記中心鉄芯と同軸的に配置される1次ボビンに1次巻き線を巻き廻した1次コイルと、2次ボビンに2次巻き線を巻き廻した2次コイルと、点火コイルの1次コイルに流れる1次電流をオンオフ制御するイグナイタと、1次電流をイグナイタに供給する1次電流入力部と、前記1次コイルと2次コイルとを収容する円筒型ケースと、で構成され、前記1次ボビンは、2次コイルで発生する高電圧を点火プラグに供給する高圧タワー部の外周から形成され、当該高圧タワー部を前記円筒型ケースに収容して突き出した円筒型内燃機関用点火コイルにおいて、点火プラグと勘合するプラグブーツが前記ケースと勘合する側の外径を小径化し、前記ケース下端の外径を内径と同径とし、ケースとプラグブーツの組み付けの際に、プラグブーツの上端一部をケース下端の内径側に潜り込ませたことを特徴とする請求項1乃至請求項3に記載の内燃機関用円筒型点火コイル。   A central iron core, a primary coil in which a primary winding is wound around a primary bobbin disposed coaxially with the central iron core, and a secondary coil in which a secondary winding is wound around a secondary bobbin; An igniter that controls on / off of a primary current that flows through the primary coil of the ignition coil, a primary current input unit that supplies the primary current to the igniter, and a cylindrical case that houses the primary coil and the secondary coil; The primary bobbin is formed from the outer periphery of a high-pressure tower portion that supplies a high voltage generated by the secondary coil to the spark plug, and the high-pressure tower portion is accommodated in the cylindrical case and protrudes. In an internal combustion engine ignition coil, the plug boot that engages with the spark plug has a reduced outer diameter on the side that engages with the case, the outer diameter of the lower end of the case is the same as the inner diameter, and the case and the plug boot are assembled. , Plastic An internal combustion engine for cylindrical ignition coil of claim 1 to claim 3, characterized in that allowed submerge boots some upper inner diameter side of the case bottom. 前記イグナイタを収容する前記ケースの大きな開口を有する上部収納部と、で構成したことを特徴とする請求項1乃至請求項4に記載の内燃機関用円筒型点火コイル。   5. The cylindrical ignition coil for an internal combustion engine according to claim 1, comprising: an upper storage portion having a large opening of the case for storing the igniter. 請求項1乃至5を少なくとも2つ以上組み合わせたことを特徴とする内燃機関用円筒型点火コイル。   A cylindrical ignition coil for an internal combustion engine, wherein at least two or more of claims 1 to 5 are combined.
JP2004240198A 2004-08-20 2004-08-20 Ignition coil for internal combustion engine Pending JP2006060007A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2004240198A JP2006060007A (en) 2004-08-20 2004-08-20 Ignition coil for internal combustion engine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2004240198A JP2006060007A (en) 2004-08-20 2004-08-20 Ignition coil for internal combustion engine

Publications (1)

Publication Number Publication Date
JP2006060007A true JP2006060007A (en) 2006-03-02

Family

ID=36107229

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2004240198A Pending JP2006060007A (en) 2004-08-20 2004-08-20 Ignition coil for internal combustion engine

Country Status (1)

Country Link
JP (1) JP2006060007A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009267052A (en) * 2008-04-24 2009-11-12 Diamond Electric Mfg Co Ltd Ignition system of internal combustion engine
JP2009267166A (en) * 2008-04-25 2009-11-12 Diamond Electric Mfg Co Ltd Ignition coil for internal combustion engine
US7673623B2 (en) 2006-04-11 2010-03-09 Mitsubishi Electric Corporation Ignition coil device
JP2015156447A (en) * 2014-02-21 2015-08-27 株式会社デンソー Ignition coil for internal combustion engine

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7673623B2 (en) 2006-04-11 2010-03-09 Mitsubishi Electric Corporation Ignition coil device
US8061337B2 (en) 2006-04-11 2011-11-22 Mitsubishi Electric Corporation Ignition coil device
JP2009267052A (en) * 2008-04-24 2009-11-12 Diamond Electric Mfg Co Ltd Ignition system of internal combustion engine
JP2009267166A (en) * 2008-04-25 2009-11-12 Diamond Electric Mfg Co Ltd Ignition coil for internal combustion engine
JP2015156447A (en) * 2014-02-21 2015-08-27 株式会社デンソー Ignition coil for internal combustion engine

Similar Documents

Publication Publication Date Title
JP4805008B2 (en) Double opening ignition coil device
JP4410198B2 (en) Ignition device for internal combustion engine
JP2009048784A (en) Discharge lamp socket
EP0843394B1 (en) Ignition device for internal combustion engine
JP2007250642A (en) Compact and lightweight plug top direct-coupled ignition coil device
JP2006060007A (en) Ignition coil for internal combustion engine
JP4338476B2 (en) Ignition coil device for internal combustion engine
JP2006179597A (en) Ignition coil for internal combustion engine
JP4920561B2 (en) Ignition coil for internal combustion engine
KR100689174B1 (en) Stick-type ignition coil and terminal assembly therefor
JP2005191533A (en) Thin diameter ignition coil
JP2001167953A (en) Ignition coil
JP2008115846A (en) Ignition coil for internal combustion engine
JP4262930B2 (en) Ignition coil for internal combustion engine
JP2008240608A (en) Ignition coil for internal combustion engine
US6880539B2 (en) Ignition apparatus for an internal combustion engine and a manufacturing method therefor
JP2008166649A (en) Ignition coil for internal combustion engine
JP2019062040A (en) Ignition coil for internal combustion engine
JP2003257756A (en) Cylindrical ignition coil for internal combustion engine
JP5294211B2 (en) Ignition coil for internal combustion engine
JP2006049478A (en) Ignition coil for internal combustion engine
JP2009170538A (en) Ignition device, and manufacturing method thereof
JP4701108B2 (en) Ignition coil for internal combustion engine
JP2008159642A (en) Ignition coil for internal combustion engine
JP2003309027A (en) Internal-combustion engine ignition coil