JP4959516B2 - Power supply structure - Google Patents

Power supply structure Download PDF

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JP4959516B2
JP4959516B2 JP2007296927A JP2007296927A JP4959516B2 JP 4959516 B2 JP4959516 B2 JP 4959516B2 JP 2007296927 A JP2007296927 A JP 2007296927A JP 2007296927 A JP2007296927 A JP 2007296927A JP 4959516 B2 JP4959516 B2 JP 4959516B2
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window plate
male
male connector
power feeding
feeding structure
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JP2009123552A (en
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絵里子 堤
悟朗 中村
建彦 上原
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Yazaki Corp
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Yazaki Corp
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Description

本発明は、窓板の表面に形成された導体パターンへの給電構造に関する。   The present invention relates to a power feeding structure for a conductor pattern formed on the surface of a window plate.

例えば自動車の窓ガラス板には、デフォガ(曇り止め)用の抵抗回路やアンテナ回路や破損検知回路などの導体パターンが形成されている。これらの導体パターンと給電線とを接続するための給電構造が種々提案されている(例えば、特許文献1参照)。   For example, on a window glass plate of an automobile, conductor patterns such as a resistance circuit for defogger (anti-fogging), an antenna circuit, and a damage detection circuit are formed. Various feed structures for connecting these conductor patterns and feed lines have been proposed (see, for example, Patent Document 1).

特許文献1に開示された給電構造は、近年の鉛含有半田に対する規制に対応して、半田付けによらず、窓ガラス板の表面に形成された導体パターンに給電線を電気的に接続するものである。この給電構造では、図4に示すように、窓ガラス板101に設けられた貫通孔102と支持部材103の挿入部104とを嵌合させることにより、機械結合のみで支持部材103を窓ガラス板101に取り付ける。そして、支持部材103の弾性により、本体部105が接続部材106の当接部107を押圧する。それにより、当接部107を窓ガラス板101の表面に形成された導体パターン108に押え付けて保持し、接続部材106に接続した給電線109を、半田付けによらず、導体パターン108に電気的に接続する。
特開2005−19083号公報
The power feeding structure disclosed in Patent Document 1 is to electrically connect a power feeding line to a conductor pattern formed on the surface of a window glass plate without soldering in response to the recent restrictions on lead-containing solder. It is. In this power feeding structure, as shown in FIG. 4, the support member 103 is attached to the window glass plate only by mechanical coupling by fitting the through hole 102 provided in the window glass plate 101 and the insertion portion 104 of the support member 103. Attach to 101. Then, due to the elasticity of the support member 103, the main body portion 105 presses the contact portion 107 of the connection member 106. As a result, the contact portion 107 is pressed against and held by the conductor pattern 108 formed on the surface of the window glass plate 101, and the power supply line 109 connected to the connection member 106 is electrically connected to the conductor pattern 108 without soldering. Connect.
JP 2005-19083 A

上記特許文献1に開示された給電構造では、窓ガラス板101への支持部材103の取り付けのため、窓ガラス板101に貫通孔102を設けており、貫通孔102からの水の浸入が懸念される。上記特許文献1に開示された給電構造では、本体部105と窓ガラス板101との間にOリング110を介装して防水処理を施しているが、部品点数の増加を伴い、給電構造の複雑化を招く。よって、窓ガラス板への貫通孔の形成は避けるのが好ましい。   In the power feeding structure disclosed in Patent Document 1, a through hole 102 is provided in the window glass plate 101 for attaching the support member 103 to the window glass plate 101, and there is a concern that water may enter through the through hole 102. The In the power feeding structure disclosed in Patent Document 1, waterproofing is performed by interposing an O-ring 110 between the main body portion 105 and the window glass plate 101. However, with an increase in the number of parts, Incurs complications. Therefore, it is preferable to avoid the formation of through holes in the window glass plate.

さらに、特許文献1に開示された給電構造では、接続部材106の当接部107と導体パターン103との接合部の外周側に何らの防水処理も施されていない。そのため、窓ガラス板の表面で結露が発生した際などに窓ガラス板の表面を伝って水分が付着する可能性がある。その場合に、接続部材106の腐食などの不都合が発生する虞がある。   Furthermore, in the power feeding structure disclosed in Patent Document 1, no waterproofing is performed on the outer peripheral side of the joint portion between the contact portion 107 of the connection member 106 and the conductor pattern 103. For this reason, when condensation occurs on the surface of the window glass plate, moisture may adhere along the surface of the window glass plate. In that case, there is a possibility that inconvenience such as corrosion of the connecting member 106 may occur.

本発明は、上述した事情に鑑みてなされたものであり、窓板の表面に形成された導体パターンへの給電構造において、導体パターンへの給電および防水を実施することができる給電構造を提供することを目的とする。   The present invention has been made in view of the above-described circumstances, and provides a power feeding structure that can perform power feeding and waterproofing to a conductor pattern in a power feeding structure to a conductor pattern formed on the surface of a window plate. For the purpose.

上記目的は、下記(1)〜(3)に記載の給電構造により達成される。
(1)窓板の表面に形成された導体パターンへの給電構造であって、前記導体パターンに接続される端子を保持した雄コネクタと、前記窓板の表面に設置され、該窓板に対して前記雄コネクタを傾倒可能に支持した支持部材と、給電線に接続される相手側端子を保持した雌コネクタと、前記雌コネクタを傾倒可能に支持したグロメットと、互いに嵌合した状態で傾倒し前記窓板に沿った前記雌雄コネクタを該窓板に係止する係止手段と、を備え、前記雌雄コネクタが前記係止手段に係止された状態で、前記グロメットが前記窓板に密着して該雌雄コネクタを覆うことを特徴とする給電構造。
(2)所定の負荷に抗して前記雄コネクタの傾倒を規制する規制手段を備えていることを特徴とする(1)に記載の給電構造。
(3)前記規制手段が、前記支持部材に設けられ、前記雄コネクタの傾倒方向にあって該雄コネクタに当接する突起であることを特徴とする(2)に記載の給電構造。
The object is achieved by the power feeding structure described in the following (1) to (3).
(1) A power feeding structure to a conductor pattern formed on a surface of a window plate, the male connector holding a terminal connected to the conductor pattern, and installed on the surface of the window plate, The support member that supports the male connector in a tiltable manner, the female connector that holds the mating terminal connected to the power supply line, the grommet that supports the female connector in a tiltable manner, and tilts in a state of being fitted to each other. Locking means for locking the male and female connectors along the window plate to the window plate, and the grommet is in close contact with the window plate in a state where the male and female connectors are locked to the locking means. A power supply structure that covers the male and female connectors.
(2) The power feeding structure according to (1), further comprising a regulation unit that regulates the inclination of the male connector against a predetermined load.
(3) The power feeding structure according to (2), wherein the restricting means is a protrusion provided on the support member and in contact with the male connector in a tilting direction of the male connector.

上記(1)の構成の給電構造によれば、導体パターンに接続される端子を保持した雄コネクタおよびこれを支持する支持部材は、いずれも導体パターンが形成された窓板の表面上に配置されるので、窓板に貫通孔を形成する必要はなく、貫通孔を通しての浸水の懸念がない。さらに、互いに嵌合した雌雄コネクタを覆うグロメットを備えるので、コネクタへの浸水を確実に防止できる。そして、互いに嵌合した雌雄コネクタの窓板への係止に伴ってグロメットが窓板に密着するので、窓板への雌雄コネクタの固定の完了と同時に防水も実施することができる。
上記(2)の構成の給電構造によれば、雌雄コネクタの嵌合時に雄コネクタの傾倒を規制することができ、両者の嵌合を安定して行うことができる。雄コネクタの傾倒を規制する規制手段としては、上記(3)の構成の突起が、簡易な構造で上記効果を得ることができ、好適である。
According to the power feeding structure configured as described in (1) above, the male connector that holds the terminal connected to the conductor pattern and the support member that supports the male connector are both disposed on the surface of the window plate on which the conductor pattern is formed. Therefore, it is not necessary to form a through hole in the window plate, and there is no concern about water immersion through the through hole. Furthermore, since the grommet which covers the male and female connectors fitted to each other is provided, it is possible to reliably prevent water from entering the connector. Since the grommet is brought into close contact with the window plate as the male and female connectors fitted to each other are locked to the window plate, waterproofing can be performed simultaneously with completion of fixing the male and female connectors to the window plate.
According to the power feeding structure having the configuration (2), the inclination of the male connector can be restricted when the male and female connectors are fitted, and the fitting of both can be performed stably. As a restricting means for restricting the inclination of the male connector, the protrusion having the configuration (3) is preferable because the above-described effect can be obtained with a simple structure.

本発明に係る給電構造によれば、窓板の表面に形成された導体パターンへの給電構造において、導体パターンへの給電および防水を実施することができる。   According to the power feeding structure of the present invention, power feeding to the conductor pattern and waterproofing can be performed in the power feeding structure to the conductor pattern formed on the surface of the window plate.

以下、本発明に係る給電構造の好適な実施の形態例を図面に基づいて詳細に説明する。   Hereinafter, preferred embodiments of a power feeding structure according to the present invention will be described in detail with reference to the drawings.

図1は本発明に係る給電構造の一実施形態の斜視図、図2は図1の給電構造の各部の動作を示す斜視図、図3は図2(C)におけるIII-III線断面図である。   1 is a perspective view of an embodiment of a power feeding structure according to the present invention, FIG. 2 is a perspective view showing the operation of each part of the power feeding structure of FIG. 1, and FIG. 3 is a sectional view taken along line III-III in FIG. is there.

図1に示すように、本実施形態の給電構造1は、窓板2の表面に形成された導体パターン3に給電線4を電気的に接続して、導体パターン3に給電するものである。この給電構造1は、導体パターン3に電気的に接続される端子10(図3参照)を保持した雄コネクタ11と、給電線4に接続される相手側端子12(図3参照)を保持した雌コネクタ13と、互いに嵌合した雌雄コネクタ11,13を覆うグロメット14と、を備えている。   As shown in FIG. 1, the power feeding structure 1 of the present embodiment feeds power to the conductor pattern 3 by electrically connecting a power feeding line 4 to the conductor pattern 3 formed on the surface of the window plate 2. The power supply structure 1 has a male connector 11 that holds a terminal 10 (see FIG. 3) that is electrically connected to the conductor pattern 3 and a counterpart terminal 12 (see FIG. 3) that is connected to the power supply line 4. A female connector 13 and a grommet 14 covering the male and female connectors 11 and 13 fitted to each other are provided.

導体パターン3は、窓板2のデフォガ(曇り止め)用の抵抗回路やアンテナ回路や破損検知回路などの一部を構成するものであり、例えば窓板2の表面に銀ペーストをスクリーン印刷し、その後焼成して形成される。導体パターン3には略矩形のランド3aが形成されている。   The conductor pattern 3 constitutes a part of a resistor circuit, an antenna circuit, a breakage detection circuit, etc. for a defogger (anti-fogging) of the window plate 2, for example, a silver paste is screen-printed on the surface of the window plate 2, Thereafter, it is formed by firing. A substantially rectangular land 3 a is formed on the conductor pattern 3.

雄コネクタ11は、略角筒状に形成されたフード部20と、フード部20の後端に連設された端子保持部21とを有している。端子保持部21の両側面には、円柱状の軸部22がそれぞれ突設されている。これら一対の軸部22は、同軸上に配置されている。   The male connector 11 has a hood portion 20 formed in a substantially rectangular tube shape, and a terminal holding portion 21 provided continuously with the rear end of the hood portion 20. On both side surfaces of the terminal holding portion 21, columnar shaft portions 22 are respectively projected. The pair of shaft portions 22 are arranged on the same axis.

本実施形態において、雄コネクタ11の端子保持部21に保持された端子10は、リード線10aを介して導体パターン3に電気的に接続される。端子10に接続したリード線10aは、端子保持部21の後端から導出されており、その一端部を導体パターン3のランド3aに半田付けされて導体パターン3に接続されている。   In the present embodiment, the terminal 10 held by the terminal holding portion 21 of the male connector 11 is electrically connected to the conductor pattern 3 via the lead wire 10a. The lead wire 10 a connected to the terminal 10 is led out from the rear end of the terminal holding portion 21, and one end thereof is soldered to the land 3 a of the conductor pattern 3 and connected to the conductor pattern 3.

給電構造1は、窓板2の表面に設置されて雄コネクタ11を支持する一対の支持部材15をさらに備えている。一対の支持部材15は、雄コネクタ11の端子保持部21を挟むように配置されており、端子保持部21の両側面にそれぞれ突設された軸部23を収容する軸孔30をそれぞれ有している。   The power feeding structure 1 further includes a pair of support members 15 that are installed on the surface of the window plate 2 and support the male connector 11. The pair of support members 15 are arranged so as to sandwich the terminal holding portion 21 of the male connector 11, and each has a shaft hole 30 that accommodates a shaft portion 23 projecting from both side surfaces of the terminal holding portion 21. ing.

雄コネクタ11は、端子保持部21の各軸部23を対応する支持部材15の軸孔30にそれぞれ挿入して、一対の支持部材15により支持されている。このように支持された雄コネクタ11は、軸部23を中心軸として、窓板2に対して略直角に起立した状態から窓板2に沿うように矢印A回りに傾倒可能である。   The male connector 11 is supported by a pair of support members 15 by inserting each shaft portion 23 of the terminal holding portion 21 into the corresponding shaft hole 30 of the support member 15. The male connector 11 supported in this manner can be tilted around the arrow A so as to follow the window plate 2 from a state in which the male connector 11 stands at a substantially right angle with respect to the window plate 2 with the shaft portion 23 as a central axis.

給電構造1は、所定の負荷に抗して雄コネクタ11の矢印A回りの傾倒を規制する規制手段をさらに備えている。本実施形態では、規制手段は、一対の支持部材15の少なくともいずれか一方に設けられた突起16で構成されている。   The power feeding structure 1 further includes a regulation unit that regulates the inclination of the male connector 11 around the arrow A against a predetermined load. In the present embodiment, the restricting means is constituted by a protrusion 16 provided on at least one of the pair of support members 15.

突起16は、雄コネクタ11の端子保持部21の側面に対向する支持部材15の側面に設けられており、窓板2に対して直角に起立した状態にある雄コネクタ11において、その傾倒方向に端子保持部21の先にあって端子保持部21の角に当接する。それにより、雄コネクタ11は矢印A回りの傾倒を規制される。ただし、雄コネクタ11に所定の大きさを超えた負荷が作用した際には、雄コネクタ11は、突起16を乗り越えて傾倒する。   The protrusion 16 is provided on the side surface of the support member 15 facing the side surface of the terminal holding portion 21 of the male connector 11. In the male connector 11 standing upright at a right angle with respect to the window plate 2, At the tip of the terminal holding part 21, it contacts the corner of the terminal holding part 21. Thereby, the male connector 11 is restricted from tilting around the arrow A. However, when a load exceeding a predetermined size acts on the male connector 11, the male connector 11 gets over the protrusion 16 and tilts.

グロメット14は、ゴムなどの防水性の材料からなり略円形の蓋状に成形されたグロメットアウタ40と、合成樹脂などの所定の強度を有する材料からなり略円環状に成形されてグロメットアウタ40の内部に装着されたグロメットインナ41とを有している。雌コネクタ13は、グロメットインナ41に支持されてグロメット14に取り付けられている。   The grommet 14 is made of a waterproof material such as rubber and formed into a substantially circular lid shape. The grommet 14 is formed of a material having a predetermined strength such as a synthetic resin and is formed into a substantially annular shape. It has a grommet inner 41 mounted inside. The female connector 13 is supported by the grommet inner 41 and attached to the grommet 14.

雌コネクタ13の両側面には、円柱状の軸部50がそれぞれ突設されている。これら一対の軸部50は、同軸上に配置されている。グロメットインナ41には、雌コネクタ13を支持する一対の支持部42が設けられている。一対の支持部42は、雌コネクタ13を挟むように配置されており、雌コネクタ13の両側面にそれぞれ突設された軸部50を収容する軸孔43をそれぞれ有している。   On both side surfaces of the female connector 13, cylindrical shaft portions 50 are provided so as to protrude. The pair of shaft portions 50 are arranged on the same axis. The grommet inner 41 is provided with a pair of support portions 42 that support the female connector 13. The pair of support portions 42 are arranged so as to sandwich the female connector 13, and each have a shaft hole 43 that accommodates a shaft portion 50 that protrudes from both side surfaces of the female connector 13.

雌コネクタ13は、各軸部50をグロメットインナ41の対応する支持部42の軸孔43にそれぞれ挿入して、一対の支持部42により支持されている。このように支持された雌コネクタ13は、軸部50を中心軸として、グロメット14に対して略直角に倒立した状態からグロメット14に沿うように矢印B回りに傾倒可能である。軸部50を中心軸とした雌コネクタ13の矢印B回りの回転方向は、軸部23を中心軸とした雄コネクタ11の矢印A回りの回転方向と同じである。尚、雄コネクタ11の傾倒を規制する上記規制手段16と同様に、所定の負荷に抗して雌コネクタ13の矢印B回りの傾倒を規制する規制手段を設けてもよい。   The female connector 13 is supported by a pair of support portions 42 by inserting each shaft portion 50 into the shaft hole 43 of the corresponding support portion 42 of the grommet inner 41. The female connector 13 supported in this manner can be tilted around the arrow B so as to be along the grommet 14 from a state where the female connector 13 is inverted substantially perpendicularly to the grommet 14 with the shaft portion 50 as the central axis. The rotation direction of the female connector 13 around the arrow B with the shaft portion 50 as the central axis is the same as the rotation direction of the male connector 11 around the arrow A with the shaft portion 23 as the central axis. Similar to the restriction means 16 for restricting the inclination of the male connector 11, a restriction means for restricting the inclination of the female connector 13 around the arrow B against a predetermined load may be provided.

グロメットアウタ40には円筒状の管部44が設けられており、雌コネクタ13に保持された相手側端子12に接続している給電線4は、管部44を通してグロメット14の外側に導出されている。   The grommet outer 40 is provided with a cylindrical pipe portion 44, and the feeder 4 connected to the mating terminal 12 held by the female connector 13 is led out of the grommet 14 through the pipe portion 44. Yes.

図2(A)に示すように、窓板2に対して略直角に起立した状態の雄コネクタ11に、グロメット14に対して略直角に倒立した状態の雌コネクタ13が嵌合し、端子10と相手側端子12とが接続される。それにより、相手側端子12、端子10、およびリード線10aを介して導体パターン3と給電線4とが電気的に接続される。   As shown in FIG. 2 (A), the female connector 13 that is upright at a substantially right angle with respect to the grommet 14 is fitted to the male connector 11 that is upright at a substantially right angle with respect to the window plate 2. And the counterpart terminal 12 are connected. Thereby, the conductor pattern 3 and the feeder line 4 are electrically connected via the counterpart terminal 12, the terminal 10, and the lead wire 10a.

次いで、図2(B)に示すように、雌雄コネクタ11,13の嵌合後、窓板2に対する雄コネクタ11の傾倒方向にグロメット14を付勢して、雌雄コネクタ11,13を窓板2に沿うように矢印A回りに傾倒させる。このとき、リード線10aは、適宜変形して雄コネクタ11の傾倒に追従する。   Next, as shown in FIG. 2B, after the male and female connectors 11 and 13 are fitted, the grommet 14 is urged in the tilting direction of the male connector 11 with respect to the window plate 2, so that the male and female connectors 11 and 13 are moved to the window plate 2. Tilt around arrow A so that At this time, the lead wire 10a is appropriately deformed to follow the inclination of the male connector 11.

図2(C)および図3に示すように、給電構造1は、互いに嵌合した状態で傾倒して窓板2に沿った雌雄コネクタ11,13を窓板2に係止する係止手段をさらに備えている。本実施形態において、係止手段は、雄コネクタ11の少なくとも一方の側面に形成された被係止突起17aと、窓板2の表面に設置されて被係止突起17aに係合する係止爪17bとで構成されている。   As shown in FIGS. 2 (C) and 3, the power feeding structure 1 is provided with locking means for tilting in a fitted state and locking the male and female connectors 11 and 13 along the window plate 2 to the window plate 2. It has more. In the present embodiment, the locking means includes a locked projection 17a formed on at least one side surface of the male connector 11, and a locking claw that is installed on the surface of the window plate 2 and engages the locked projection 17a. 17b.

雌雄コネクタ11,13が矢印A回りに傾倒する過程で、雌コネクタ13がグロメット14に対して傾倒可能であることにより、グロメット14は窓板2に対して平行を維持する。そして、雌雄コネクタ11,13が上記係止手段に係止された状態で、グロメット14はグロメットアウタ40の開口縁45を窓板2に密着させて雌雄コネクタ11,13を覆う。   In the process in which the male and female connectors 11 and 13 are tilted around the arrow A, the female connector 13 can be tilted with respect to the grommet 14, so that the grommet 14 is maintained parallel to the window plate 2. In the state where the male and female connectors 11 and 13 are locked to the locking means, the grommet 14 covers the male and female connectors 11 and 13 by bringing the opening edge 45 of the grommet outer 40 into close contact with the window plate 2.

以上説明したように、本実施形態の給電構造1によれば、導体パターン3に接続される端子10を保持した雄コネクタ11およびこれを支持する支持部材15は、いずれも導体パターン3が形成された窓板2の表面上に配置されるので、窓板2に貫通孔を形成する必要はなく、貫通孔を通しての浸水の懸念がない。さらに、互いに嵌合した雌雄コネクタ11,13を覆うグロメット14を備えるので、雌雄コネクタ11,13への浸水を確実に防止できる。そして、互いに嵌合した雌雄コネクタ11,13の窓板2への係止に伴ってグロメット14が窓板2に密着するので、窓板2への雌雄コネクタ11,13の固定の完了と同時に防水も実施することができる。   As described above, according to the power feeding structure 1 of the present embodiment, the male connector 11 that holds the terminal 10 connected to the conductor pattern 3 and the support member 15 that supports the male connector 11 are both formed with the conductor pattern 3. Since it is disposed on the surface of the window plate 2, there is no need to form a through hole in the window plate 2, and there is no fear of flooding through the through hole. Furthermore, since the grommet 14 covering the male and female connectors 11 and 13 fitted to each other is provided, it is possible to reliably prevent the male and female connectors 11 and 13 from being flooded. Since the grommet 14 comes into close contact with the window plate 2 when the male and female connectors 11 and 13 fitted to each other are locked to the window plate 2, the grommet 14 is waterproofed simultaneously with the completion of fixing the male and female connectors 11 and 13 to the window plate 2. Can also be implemented.

さらに、本実施形態の給電構造1によれば、規制手段により雌雄コネクタ11,13の嵌合時に雄コネクタ11の傾倒を規制することができ、両者の嵌合を安定して行うことができる。そして、上記規制手段を、支持部材15に設けられ、雄コネクタ11の傾倒方向にあって雄コネクタ11に当接する突起16で構成しているので、簡易な構造で上記効果を得ることができる。   Furthermore, according to the power feeding structure 1 of the present embodiment, the tilting of the male connector 11 can be regulated by the regulating means when the male and female connectors 11 and 13 are fitted, and the fitting of both can be performed stably. And since the said control means is comprised in the support member 15 and the protrusion 16 in the inclination direction of the male connector 11 and contact | abuts to the male connector 11, the said effect can be acquired with a simple structure.

尚、本発明は、上述した実施形態に限定されるものではなく、適宜、変形、改良、等が可能である。その他、上述した実施形態における各構成要素の形状、寸法、数値、形態、数、配置箇所、等は本発明を達成できるものであれば任意であり、限定されない。   In addition, this invention is not limited to embodiment mentioned above, A deformation | transformation, improvement, etc. are possible suitably. In addition, the shape, size, numerical value, form, number, arrangement location, and the like of each component in the above-described embodiment are arbitrary and not limited as long as the present invention can be achieved.

本発明の給電構造は、例えば自動車等の車両の窓板に限られず、家屋等の建築物の窓板にも適用することができる。また、窓板としては、ガラス板に限られず、アクリル板等の樹脂製のものであってもよい。   The power feeding structure of the present invention is not limited to a window plate of a vehicle such as an automobile, but can be applied to a window plate of a building such as a house. Further, the window plate is not limited to a glass plate, and may be a resin plate such as an acrylic plate.

本発明に係る給電構造の一実施形態の斜視図である。1 is a perspective view of an embodiment of a power feeding structure according to the present invention. (A)〜(C)は図1の給電構造の各部の動作を順次示す斜視図である。(A)-(C) are the perspective views which show sequentially the operation | movement of each part of the electric power feeding structure of FIG. 図2(C)におけるIII-III線断面図である。It is the III-III sectional view taken on the line in FIG. 従来の給電構造を示す分解斜視図である。It is a disassembled perspective view which shows the conventional electric power feeding structure.

符号の説明Explanation of symbols

1 給電構造
2 窓板
3 導体パターン
4 給電線
10 端子
11 雄コネクタ
12 相手側端子
13 雌コネクタ
14 グロメット
15 支持部材
16 突起(規制手段)
17a 被係止突起(係止手段)
17b 係止爪(係止手段)
DESCRIPTION OF SYMBOLS 1 Feed structure 2 Window plate 3 Conductor pattern 4 Feed line 10 Terminal 11 Male connector 12 Opposite terminal 13 Female connector 14 Grommet 15 Support member 16 Protrusion (regulation means)
17a Locked protrusion (locking means)
17b Locking claw (locking means)

Claims (3)

窓板の表面に形成された導体パターンへの給電構造であって、
前記導体パターンに接続される端子を保持した雄コネクタと、
前記窓板の表面に設置され、該窓板に対して前記雄コネクタを傾倒可能に支持した支持部材と、
給電線に接続される相手側端子を保持した雌コネクタと、
前記雌コネクタを傾倒可能に支持したグロメットと、
互いに嵌合した状態で傾倒して前記窓板に沿った前記雌雄コネクタを該窓板に係止する係止手段と、
を備え、
前記雌雄コネクタが前記係止手段に係止された状態で、前記グロメットが前記窓板に密着して該雌雄コネクタを覆うことを特徴とする給電構造。
A power supply structure to a conductor pattern formed on the surface of a window plate,
A male connector holding a terminal connected to the conductor pattern;
A support member installed on the surface of the window plate and supporting the male connector so as to be tiltable with respect to the window plate;
A female connector holding the mating terminal connected to the feeder line;
A grommet that supports the female connector in a tiltable manner;
Locking means for tilting in a state of being fitted to each other and locking the male and female connectors along the window plate to the window plate;
With
A power feeding structure, wherein the grommet is in close contact with the window plate and covers the male and female connectors while the male and female connectors are locked to the locking means.
所定の負荷に抗して前記雄コネクタの傾倒を規制する規制手段を備えていることを特徴とする請求項1に記載の給電構造。   The power feeding structure according to claim 1, further comprising a regulating unit that regulates tilting of the male connector against a predetermined load. 前記規制手段が、前記支持部材に設けられ、前記雄コネクタの傾倒方向にあって該雄コネクタに当接する突起であることを特徴とする請求項2に記載の給電構造。   The power feeding structure according to claim 2, wherein the restricting means is a protrusion provided on the support member and in contact with the male connector in a tilting direction of the male connector.
JP2007296927A 2007-11-15 2007-11-15 Power supply structure Active JP4959516B2 (en)

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JPS6387902U (en) * 1986-11-27 1988-06-08
JPH1140255A (en) * 1997-07-17 1999-02-12 Sumitomo Wiring Syst Ltd Connector holder
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