JP5555484B2 - Connection structure of the plug to the wire outlet - Google Patents

Connection structure of the plug to the wire outlet Download PDF

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JP5555484B2
JP5555484B2 JP2009280341A JP2009280341A JP5555484B2 JP 5555484 B2 JP5555484 B2 JP 5555484B2 JP 2009280341 A JP2009280341 A JP 2009280341A JP 2009280341 A JP2009280341 A JP 2009280341A JP 5555484 B2 JP5555484 B2 JP 5555484B2
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plug
grounding
insulating plate
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英明 ▲かせ▼谷
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Description

本願発明は、線状コンセントに対する差し込みプラグの接続構造、並びに、同接続構造に適する差し込みプラグに関するものである。   The present invention relates to a connection structure of an insertion plug to a linear outlet, and an insertion plug suitable for the connection structure.

従来より、特許文献1や2に示すように、電源用の差し込みプラグには、一対の差し込み刃を先端面から突出させたプラグ本体に、凹部や凸部を形成し、この先端面に形成された凹部や凸部によって、差し込み刃間の沿面距離を長くすることにより、差し込み刃間のトラッキングを防止することが提案されている。差し込みプラグのプラグ本体に凹部を形成する場合には、プラグ本体の先端面がコンセントの先端面に当接するまで確実に差し込むことができる。ところが、特許文献2の図5、図6に示されるように、上記の凸部として複数の突条を形成する場合には、突条の先端がコンセントの先端面に当接することとなる。その結果、差し込みプラグの差し込み刃を十分に深く差し込むことができず、コンセントの先端面から差し込み刃が露出してしまうこととなり、埃の堆積などによるトラッキングの原因となるおそれがある。特に、沿面距離を長くするために、突条の高さを高くすればするほど、コンセントの先端面から差し込み刃の露出長さが長くなり、さらに突条の高さを長くすると、差し込み刃がコンセントの刃受けに受容されないという自体が生じるため、突条の突出高さを高くして沿面距離を長くすることには、おのずと限度がある。   Conventionally, as shown in Patent Documents 1 and 2, a plug for power supply has a recess or projection formed in a plug body in which a pair of insertion blades protrudes from the tip surface, and is formed on the tip surface. It has been proposed to prevent tracking between the insertion blades by increasing the creepage distance between the insertion blades by the concave portions or the convex portions. When the recess is formed in the plug body of the plug, it can be surely inserted until the tip surface of the plug body comes into contact with the tip surface of the outlet. However, as shown in FIGS. 5 and 6 of Patent Document 2, when a plurality of protrusions are formed as the above-described convex portions, the tips of the protrusions come into contact with the tip surface of the outlet. As a result, the insertion blade of the insertion plug cannot be inserted sufficiently deep, and the insertion blade is exposed from the front end surface of the outlet, which may cause tracking due to dust accumulation or the like. In particular, as the height of the ridge is increased to increase the creepage distance, the exposed length of the insertion blade increases from the front end surface of the outlet, and when the height of the ridge is further increased, the insertion blade is There is a limit in increasing the creepage distance by increasing the protrusion height of the ridge, because it is unacceptable by the blade receptacle of the outlet.

他方、コンセントにも多くの種類が存在するところ、特許文献3に示すような、線状コンセント或いはレールコンセントと呼ばれるものがある。この種のコンセントは、壁面の陳列棚やショーケース等の照明用電源をとるために用いられることが多く、一度取り付けられてしまうと、陳列棚の背面に隠れて、視認しにくく多くの埃が溜まった状態で使用されていることが見受けられるため、トラッキング防止の手段が必要と考えられるが、有効な解決策が実施されていないのが現状である。   On the other hand, there are many types of outlets, and there are those called linear outlets or rail outlets as shown in Patent Document 3. This type of outlet is often used to provide power for lighting such as wall display shelves and showcases, and once installed, it is hidden behind the display shelves and is difficult to see. Since it can be seen that it is used in the accumulated state, it is considered that a means for preventing tracking is necessary, but at present, no effective solution has been implemented.

特開2001−196124号公報JP 2001-196124 A 特開平10−241775号公報Japanese Patent Laid-Open No. 10-241775 実公平7−18146号公報No. 7-18146

本願発明は、電源プラグとコンセント、特に、電源プラグと線状コンセントとの接続構造にあって、トラッキング防止効果を高めることを目的とする。   The present invention has a connection structure between a power plug and an outlet, in particular, a power plug and a linear outlet, and an object thereof is to enhance the tracking prevention effect.

本願発明は、電源用刃受けを内部に備えた左右一対の電源用受容溝と、接地用刃受けを内部に備えた接地用受容溝とを備え、上記の左右一対の電源用受容溝の間に上記の接地用受容溝が形成され、且つ、これらの受容溝はコンセントケーシングの先端面に開口する3本の前後方向に伸びる溝であると共に、互いに平行に配位されたものである線状コンセントと、プラグ本体の先端面から突出した一対の電源用栓刃と、これらの電源用栓刃の前方又は後方に配置された接地用栓刃とを備えた電源用差し込みプラグとの接続構造において、下記の特徴を備えたものを提供する。The present invention includes a pair of left and right power receiving grooves each having a power blade holder therein, and a ground receiving groove having a ground blade holder therein, and the gap between the pair of left and right power receiving grooves. The above-mentioned receiving grooves for grounding are formed, and these receiving grooves are three grooves extending in the front-rear direction and opened in the front end surface of the outlet casing, and are linearly arranged in parallel to each other. In a connection structure of an outlet, a pair of power plug blades projecting from the front end surface of the plug body, and a power plug having a grounding plug blade disposed in front of or behind the power plug blades The following features are provided.
上記差し込みプラグは上記プラグ本体の先端面より突出した絶縁板を備え、上記一対の電源用受容溝に上記一対の電源用栓刃が受容された状態で、上記接地用受容溝に上記絶縁板と上記の接地用栓刃が受容されたものである。上記絶縁板は、前後方向において、上記一対の電源用栓刃間を結ぶ線分上に位置するものであり、上記絶縁板は、左右方向において、上記一対の電源用栓刃の間の中央に位置するものであり、且つ、上記接地用栓刃の一直線上に位置するものである。さらに、上記絶縁板は、その長さが上記接地用受容溝内の上記接地用刃受けに届く長さであり、少なくとも絶縁板の先端の接地用刃受けに挿入される部分の厚みが、接地用栓刃と略同じかこれより薄いものであることを特徴とする。  The insertion plug includes an insulating plate protruding from the distal end surface of the plug body, and the pair of power plug blades are received in the pair of power receiving grooves, and the insulating plate and the ground receiving groove The grounding plug blade is received. The insulating plate is located on a line segment connecting the pair of power supply blades in the front-rear direction, and the insulating plate is located in the center between the pair of power supply blades in the left-right direction. And located on a straight line of the grounding plug blade. Further, the insulating plate is long enough to reach the grounding blade receiver in the grounding receiving groove, and at least the thickness of the portion inserted into the grounding blade receiver at the tip of the insulating plate is grounded. It is characterized by being substantially the same as or thinner than the blade for use.
また、本願発明は、プラグ本体の先端面から突出した一対の電源用栓刃を備えた電源用差し込みプラグであって、電源用刃受けを内部に備えた左右一対の電源用受容溝と、接地用刃受けを内部に備えた接地用受容溝とを備え、上記の左右一対の電源用受容溝の間に上記の接地用受容溝が形成され、且つ、これらの受容溝はコンセントケーシングの先端面に開口する3本の前後方向に伸びる溝であると共に、互いに平行に配位されたものである線状コンセントに差し込み可能な線状コンセント用差し込みプラグにおいて、下記の特徴を備えたものを提供する。  The present invention also relates to a power plug having a pair of power plug blades projecting from the front end surface of the plug body, and a pair of left and right power supply receiving grooves each having a power blade holder therein, and a ground A grounding receiving groove with a blade receiver inside, and the grounding receiving groove is formed between the pair of left and right power receiving grooves, and these receiving grooves are at the front end surface of the outlet casing. The present invention provides a plug socket for a linear outlet that can be inserted into a linear outlet that is arranged in parallel with each other, and that has three grooves extending in the front-rear direction, and that has the following characteristics. .
上記プラグ本体の先端面より先端方向に突出した絶縁板を備え、上記一対の電源用受容溝に上記一対の電源用栓刃が受容された状態で、上記接地用受容溝に上記絶縁板と上記の接地用栓刃が受容されるものである。上記絶縁板は、前後方向において、上記一対の電源用栓刃間を結ぶ線分上に位置するものであり、また、上記絶縁板は、左右方向において、上記一対の電源用栓刃の間の中央に位置するものであり、且つ、上記接地用栓刃の一直線上に位置するものである。さらに、上記絶縁板は、その長さが上記接地用受容溝内の上記接地用刃受けに届く長さであり、少なくとも絶縁板の先端の接地用刃受けに挿入される部分の厚みが、接地用栓刃と略同じかこれより薄いものであることを特徴とする。  An insulating plate protruding in a distal direction from the distal end surface of the plug body, and the insulating plate and the grounding receiving groove in the state where the pair of power supply blades are received in the pair of power receiving grooves. The grounding blade is acceptable. The insulating plate is positioned on a line connecting the pair of power supply blades in the front-rear direction, and the insulating plate is disposed between the pair of power supply blades in the left-right direction. It is located in the center and is located on a straight line of the grounding plug blade. Further, the insulating plate is long enough to reach the grounding blade receiver in the grounding receiving groove, and at least the thickness of the portion inserted into the grounding blade receiver at the tip of the insulating plate is grounded. It is characterized by being substantially the same as or thinner than the blade for use.
また、上記絶縁板は、上記プラグ本体と別体に形成され、且つ、上記プラグ本体に対して出没可能又は着脱可能であるものとして実施し得る。或いは、上記絶縁板がプラグ本体と一体に設けられ、上記絶縁板の基部に弱め部が設けられ、この弱め部から上記絶縁板の先端側を折り取り可能であるものとして実施することもできる。  In addition, the insulating plate may be formed separately from the plug body and can be inserted into and removed from the plug body. Alternatively, the insulating plate may be provided integrally with the plug body, and a weakened portion may be provided at the base of the insulating plate, and the leading end side of the insulating plate can be folded from the weakened portion.

本願発明は、電源プラグとコンセント、特に、電源プラグと接地用受容溝を備えた線状コンセントとの接続構造にあって、電源プラグの先端面とコンセントの先端面とが当接するまで差し込んで、確実に電源を接続できる状態使用できると同時に、トラッキング防止効果を高めることが可能となったものである。また、本願発明は、接地用受容溝を備えた線状コンセントに対して利用して、確実な電源接続とトラッキング防止を実現し得る電源プラグを提供することができたものである。さらに、請求項3又は4の発明にあっては、接地用受容溝を備えないコンセントにも使用できる電源プラグを提供することができたものである。

The present invention is a connection structure between a power plug and an outlet, in particular, a power outlet and a linear outlet provided with a receiving groove for grounding, and is inserted until the front end surface of the power plug and the front end surface of the outlet are in contact with each other. It can be used in a state in which the power supply can be reliably connected, and at the same time, the tracking prevention effect can be enhanced. In addition, the present invention has been able to provide a power plug that can be used for a linear outlet provided with a grounding receiving groove to realize reliable power connection and prevention of tracking. Furthermore, according to the invention of claim 3 or 4, it is possible to provide a power plug that can also be used for an outlet without a grounding receiving groove.

以下、図面に基づき本願発明の実施の形態を説明する。
図1は本願発明の実施の形態に係る線状コンセントと差し込みプラグとの使用状態の説明図であり、図2は同線状コンセントと差し込みプラグとの接続状態の断面図であり、図3は同差し込みプラグの斜視図であり、図4は同内部構造を示す斜視図である。尚、本願の説明において、前後左右は相対的な位置関係を示すに止まり、絶対的な位置を特定するものではない。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
FIG. 1 is an explanatory diagram of a use state of a linear outlet and an insertion plug according to an embodiment of the present invention, FIG. 2 is a cross-sectional view of a connection state of the linear outlet and the insertion plug, and FIG. FIG. 4 is a perspective view of the plug, and FIG. 4 is a perspective view showing the internal structure. In the description of the present application, front, rear, left, and right only indicate relative positional relationships, and do not specify an absolute position.

まず、図1、図2を参照して、レールコンセント30について説明する。このレールコンセント30は、壁面に設けられた棚やショーケース等における複数の照明器具などの電気器具38に電源を供給するためなどに用いられるもので、ケーシング31とこれから延設されたコード36とを備える。ケーシング31は通常直線状に長く伸ばされたもので、その先端面37には左右一対の電源用受容溝32とその間に配位された接地用受容溝33とが開口している。電源用受容溝32の内部には電源用刃受け34が配位され、接地用受容溝33の内部には接地用刃受け35が配位されている。電源用刃受け34と接地用刃受け35とはケーシング31の長手方向にそって互いに平行に長く伸ばされたもので、それぞれがコード36に接続されて、主電源(図示せず)に接続されることにより、長手方向のどの位置にプラグが差し込まれても電源を供給することができる。   First, the rail outlet 30 will be described with reference to FIGS. 1 and 2. The rail outlet 30 is used for supplying power to an electric appliance 38 such as a plurality of lighting fixtures on a shelf or a showcase provided on a wall surface, and includes a casing 31 and a cord 36 extended therefrom. Is provided. The casing 31 is generally elongated in a straight line, and a pair of left and right power receiving grooves 32 and a grounding receiving groove 33 arranged between the left and right power supply receiving grooves 32 are opened on the front end surface 37 thereof. A power blade receiver 34 is arranged inside the power receiving groove 32, and a ground blade receiver 35 is arranged inside the ground receiving groove 33. The power supply blade receiver 34 and the grounding blade receiver 35 are elongated in parallel with each other along the longitudinal direction of the casing 31, and each is connected to a cord 36 and connected to a main power supply (not shown). As a result, power can be supplied to any position in the longitudinal direction when the plug is inserted.

次に、図2乃至図4を参照して、プラグ10について説明する。このプラグ10は、プラグ本体11と、プラグ本体11の最先端面18から突出して設けられた2本の電源用栓刃12及び1本の接地用栓刃13と、これらにプラグ10内で接続された2本の電源コード15及び1本の接地コード16とを有する。プラグ本体11内には、保持部材14が配位され、この保持部材14に電源用栓刃12及び接地用栓刃13が支持されていると共に電源コード15及び接地コード16に接続されて被覆部17内にインサート成形されている。保持部材14及び被覆部17は非導電性の合成樹脂から形成されている。なお、保持部材14を、被覆部17よりも硬質のもので形成することによって、電源用栓刃12及び接地用栓刃13の保持強度と、コードの柔軟性とを両立させることができる。   Next, the plug 10 will be described with reference to FIGS. The plug 10 is connected to the plug body 11, two power plug blades 12 and one grounding plug blade 13 provided so as to protrude from the most distal surface 18 of the plug body 11, and to the plug 10. Two power cords 15 and one ground cord 16 are provided. A holding member 14 is arranged in the plug body 11, and the power plug blade 12 and the grounding plug blade 13 are supported on the holding member 14 and are connected to the power cord 15 and the ground cord 16 to be covered. 17 is insert-molded. The holding member 14 and the covering portion 17 are made of non-conductive synthetic resin. By forming the holding member 14 to be harder than the covering portion 17, it is possible to achieve both the holding strength of the power plug blade 12 and the grounding plug blade 13 and the flexibility of the cord.

接地用栓刃13は左右方向において左の電源用栓刃12と右の電源用栓刃12との間の中央に位置するものであり、前後方向において電源用栓刃12の後方に位置するが、前方に位置するものであってもよい。
このプラグ10には、プラグ本体11の最先端面18より突出した絶縁板21を備える。この絶縁板21も保持部材14及び被覆部17と同様、非導電性の合成樹脂から形成されているが、他の非導電性の素材によって形成してもよい。
The grounding blade 13 is located in the center between the left power blade 12 and the right power blade 12 in the left-right direction, and is located behind the power blade 12 in the front-rear direction. It may be located forward.
The plug 10 includes an insulating plate 21 that protrudes from the most distal surface 18 of the plug body 11. The insulating plate 21 is also formed of a non-conductive synthetic resin, like the holding member 14 and the covering portion 17, but may be formed of other non-conductive materials.

この絶縁板21は、電源用栓刃12及び接地用栓刃13と平行に形成され、接地用栓刃13と同様、左右方向において左の電源用栓刃12と右の電源用栓刃12との間の中央に位置するものであり、接地用栓刃13の一直線上に配位されている。前後方向においては、絶縁板21は左右一対の電源用栓刃12と上記電源用栓刃間を結ぶ線分上に位置するもので、この例では接地用栓刃13の前方に位置する。接地用栓刃13の前後方向幅は、電源用栓刃12の前後方向幅と等しいかこれよりも長いものとしておき、一対の電源用栓刃12間を結ぶ直線上には絶縁板21が常に位置するようにしておくことが望ましい。   The insulating plate 21 is formed in parallel with the power plug blade 12 and the grounding plug blade 13, and similarly to the grounding plug blade 13, the left power plug blade 12 and the right power plug blade 12 in the left-right direction, Are arranged on the straight line of the grounding plug blade 13. In the front-rear direction, the insulating plate 21 is positioned on a line segment connecting the pair of left and right power plug blades 12 and the power plug blade, and in this example is positioned in front of the grounding plug blade 13. The width in the front-rear direction of the grounding blade 13 is set to be equal to or longer than the width in the front-rear direction of the power plug blade 12, and the insulating plate 21 is always on a straight line connecting the pair of power supply blades 12. It is desirable to be positioned.

絶縁板21の長さ(基端と先端間の距離)は、接地用栓刃13と略等しいものとしておけばよいが、これよりも短くしてもよい。絶縁板21の長さによって、左右の電源用栓刃12間の沿面距離が決定されるため、絶縁板21を長くしておく方が有利であるが、長すぎると、レールコンセント30にプラグ10を差し込んだ際、絶縁板21が接地用受容溝33の底にぶつかって栓刃が刃受けに完全に受容されない場合があるため、最長でも接地用栓刃13と略等しい長さとしておく。他方、絶縁板21を短くしておくことも可能であり、絶縁板21を僅かな長さでも設けることによって、絶縁板21がない場合に比してトラッキング防止性能は向上する。従って、絶縁板21の長さは、プラグ10をレールコンセント30に差し込んだ際、接地用刃受け35に達するものでなくてもよく、少なくとも接地用受容溝33内に挿入されるものであればよい。   The length of the insulating plate 21 (the distance between the base end and the tip end) may be substantially equal to that of the grounding plug blade 13, but may be shorter than this. Since the creeping distance between the left and right power plug blades 12 is determined by the length of the insulating plate 21, it is advantageous to make the insulating plate 21 longer, but if it is too long, the plug 10 is connected to the rail outlet 30. Since the insulating plate 21 may hit the bottom of the ground receiving groove 33 when the plug is inserted, the plug blade may not be completely received by the blade receiver. On the other hand, the insulating plate 21 can be shortened. By providing the insulating plate 21 with a small length, the tracking prevention performance is improved as compared with the case where the insulating plate 21 is not provided. Accordingly, the length of the insulating plate 21 does not have to reach the grounding blade receiver 35 when the plug 10 is inserted into the rail outlet 30, and at least as long as it is inserted into the grounding receiving groove 33. Good.

絶縁板21の左右方向の厚みは、接地用栓刃13と略同じか、これより薄いものが望ましい。接地用栓刃13よりも薄くしておくほうが、接地用刃受け35に円滑に差し込むことができる。ただし、絶縁板21を短くして接地用刃受け35に届かない長さとする場合には、接地用受容溝33の幅以下の厚みにしておけばよい。また、絶縁板21を長くした場合には、根本では接地用受容溝33の幅以下の厚みとしておき、先端の接地用刃受け35に挿入される部分のみを薄くして接地用刃受け35に挿入されやすいようにしておけばよい。   The thickness of the insulating plate 21 in the left-right direction is preferably substantially the same as or thinner than the grounding plug blade 13. If the thickness is smaller than that of the grounding plug blade 13, the grounding blade receiver 35 can be smoothly inserted. However, when the insulating plate 21 is shortened to a length that does not reach the grounding blade receiver 35, the thickness may be equal to or smaller than the width of the grounding receiving groove 33. When the insulating plate 21 is lengthened, the thickness is set to be equal to or less than the width of the grounding receiving groove 33 at the base, and only the portion inserted into the grounding blade receiver 35 at the tip is thinned to form the grounding blade receiver 35. It should be easy to be inserted.

このプラグ10は、この例では前記の照明器具38のコード先端に設けられ、レールコンセント30に差し込まれる。この挿入によって、図2に示すように、電源用栓刃12は電源用受容溝32内の電源用刃受け34に受容され、接地用栓刃13は接地用受容溝33内の接地用刃受け35に受容される。このとき、絶縁板21は接地用受容溝33内に挿入され、絶縁板21が長い場合には接地用刃受け35に受容される。このように、絶縁板21は接地用栓刃13と共に、接地用受容溝33内に挿入されるため、プラグ10の差し込み時に絶縁板21が邪魔になることはなく、プラグ10の最先端面18とレールコンセント30の先端面37とが当接するまで、確実に差し込むことができ、安全な電気的接続を維持しつつ、絶縁板21によるトラッキング防止効果を発揮させることができる。   In this example, the plug 10 is provided at the distal end of the cord of the lighting fixture 38 and is inserted into the rail outlet 30. By this insertion, as shown in FIG. 2, the power plug blade 12 is received by the power supply blade receiver 34 in the power supply receiving groove 32, and the grounding plug blade 13 is received by the grounding blade receiver 33 in the ground receiving groove 33. 35. At this time, the insulating plate 21 is inserted into the grounding receiving groove 33, and when the insulating plate 21 is long, it is received by the grounding blade receiver 35. In this way, since the insulating plate 21 is inserted into the grounding receiving groove 33 together with the grounding plug blade 13, the insulating plate 21 does not get in the way when the plug 10 is inserted, and the most advanced surface 18 of the plug 10. Until the end surface 37 of the rail socket 30 comes into contact with the rail outlet 30, the tracking effect of the insulating plate 21 can be exhibited while maintaining a safe electrical connection.

この絶縁板21は、プラグ本体11の被覆部17と一体に形成することもでき、図4に示すように保持部材14と一体に形成することもできるが、被覆部17及び保持部材14とは別体に形成してもよい。   The insulating plate 21 can be formed integrally with the covering portion 17 of the plug body 11 or can be formed integrally with the holding member 14 as shown in FIG. It may be formed separately.

例えば、図5に示すように、絶縁板21をプラグ本体11と別体に形成し、プラグ本体11に上下方向に貫通した取付部22を設け、この取付部22に絶縁板21を差し込むようにしてもよい。その際、取付部22と絶縁板21とは接着してもよいが、樹脂の適当な弾性抵抗をもって強制嵌合させることにより、絶縁板21をプラグ本体11に対して出没可能又は着脱可能にしておくこともできる。このように、出没可能又は着脱可能にすることで、接地用受容溝33のないレールコンセント30に対しても、絶縁板21を凹ませるか取り除くことで、プラグ10をレールコンセント30に差し込むことができる。   For example, as shown in FIG. 5, the insulating plate 21 is formed separately from the plug body 11, a mounting portion 22 penetrating in the vertical direction is provided in the plug body 11, and the insulating plate 21 is inserted into the mounting portion 22. May be. At this time, the mounting portion 22 and the insulating plate 21 may be bonded together, but the insulating plate 21 can be made to appear in and out of the plug body 11 by being forcedly fitted with an appropriate elastic resistance of the resin. It can also be left. In this way, by making the protrusion / removal or detachable, the plug 10 can be inserted into the rail outlet 30 by denting or removing the insulating plate 21 from the rail outlet 30 without the grounding receiving groove 33. it can.

また図6に示すように、前後方向(図6では紙面の手前奥方向)に溝状の取付部22を設け、絶縁板21の基端23を差し込んで着脱可能にしてもよい。その際、図に示すように、基端23は絶縁板21の露出部分よりも大きくしておき、抜け止めとしておくことも望ましい。また、絶縁板21の基部に厚みを薄くした弱め部24を設けておいて、この弱め部24から絶縁板21の先端側を折り取り可能にしておいてもよい。   Further, as shown in FIG. 6, a groove-like attachment portion 22 may be provided in the front-rear direction (in FIG. 6, the front-rear direction in the drawing), and the base end 23 of the insulating plate 21 may be inserted to be removable. At that time, as shown in the figure, it is also desirable that the base end 23 is made larger than the exposed portion of the insulating plate 21 to prevent it from coming off. Further, a weakened portion 24 having a reduced thickness may be provided at the base of the insulating plate 21, and the distal end side of the insulating plate 21 may be foldable from the weakened portion 24.

また、図7及び図8に示すように、プラグ本体11の最先端面18にキャップ25を着脱可能に装着し、このキャップ25に絶縁板21を突出形成させるものであってもよい。このキャップ25には、電源用栓刃12及び/又は接地用栓刃13を挿入することができる挿入穴26を設けておき、キャップ25をプラグ本体11に取り付ければよい。その際、この挿入穴26には、先端方向に伸びる短いスリーブ27を設けて、電源用栓刃12をスリーブ27内に貫通させることで、絶縁効果を高めるようにしてもよい。また、キャップ25の周縁部28に埃除けの突条を設けておいてもよい。   Further, as shown in FIGS. 7 and 8, a cap 25 may be detachably attached to the most distal surface 18 of the plug main body 11, and the insulating plate 21 may be protruded from the cap 25. The cap 25 may be provided with an insertion hole 26 into which the power plug blade 12 and / or the grounding plug blade 13 can be inserted, and the cap 25 may be attached to the plug body 11. At this time, the insertion hole 26 may be provided with a short sleeve 27 extending in the distal direction so that the power plug blade 12 penetrates into the sleeve 27 so as to enhance the insulating effect. Further, a protrusion for dust removal may be provided on the peripheral edge portion 28 of the cap 25.

本願発明の実施の形態に係る線状コンセントと差し込みプラグとの使用状態の説明図。Explanatory drawing of the use condition of the linear outlet and the insertion plug which concerns on embodiment of this invention. 同線状コンセントと差し込みプラグとの接続状態の断面図。Sectional drawing of the connection state of a same-line outlet and an insertion plug. 同差し込みプラグの斜視図。The perspective view of the plug. 同内部構造を示す斜視図。The perspective view which shows the same internal structure. 差し込みプラグへの絶縁板の取付構造の一例を示す説明図。Explanatory drawing which shows an example of the attachment structure of the insulating board to a plug. 差し込みプラグへの絶縁板の取付構造の他の例を示す説明図。Explanatory drawing which shows the other example of the attachment structure of the insulating board to an insertion plug. 差し込みプラグへの絶縁板の取付構造のさらに他の例を示す説明図。Explanatory drawing which shows the further another example of the attachment structure of the insulating board to an insertion plug. 同差し込みプラグの斜視図。The perspective view of the plug.

10 プラグ
11 プラグ本体
12 電源用栓刃
13 接地用栓刃
14 保持部材
15 電源コード
16 接地コード
17 被覆部
18 先端面
21 絶縁板
22 取付部
23 基端
24 弱め部
25 キャップ
26 挿入穴
27 スリーブ
28 周縁部
30 レールコンセント
31 ケーシング
32 電源用受容溝
33 接地用受容溝
34 電源用刃受け
35 接地用刃受け
36 コード
37 先端面
38 照明器具
DESCRIPTION OF SYMBOLS 10 Plug 11 Plug main body 12 Power plug blade 13 Grounding plug blade 14 Holding member 15 Power cord 16 Grounding cord 17 Covering part 18 End surface 21 Insulating plate 22 Mounting part 23 Base end 24 Weak part 25 Cap 26 Insertion hole 27 Sleeve 28 Peripheral portion 30 Rail outlet 31 Casing 32 Receiving groove for power supply 33 Receiving groove for grounding 34 Receiving blade for power supply 35 Blade receiving blade for grounding 36 Code 37 Tip surface 38 Lighting equipment

Claims (4)

電源用刃受けを内部に備えた左右一対の電源用受容溝と、接地用刃受けを内部に備えた接地用受容溝とを備え、上記の左右一対の電源用受容溝の間に上記の接地用受容溝が形成され、且つ、これらの受容溝はコンセントケーシングの先端面に開口する3本の前後方向に伸びる溝であると共に、互いに平行に配位されたものである線状コンセントと、
プラグ本体の先端面から突出した一対の電源用栓刃と、これらの電源用栓刃の前方又は後方に配置された接地用栓刃とを備えた電源用差し込みプラグとの接続構造において、
上記差し込みプラグは上記プラグ本体の先端面より突出した絶縁板を備え、
上記一対の電源用受容溝に上記一対の電源用栓刃が受容された状態で、上記接地用受容溝に上記絶縁板と上記の接地用栓刃が受容されたものであり、
上記絶縁板は、前後方向において、上記一対の電源用栓刃間を結ぶ線分上に位置するものであり、
上記絶縁板は、左右方向において、上記一対の電源用栓刃の間の中央に位置するものであり、且つ、上記接地用栓刃の一直線上に位置するものであり、
上記絶縁板は、その長さが上記接地用受容溝内の上記接地用刃受けに届く長さであり、少なくとも絶縁板の先端の接地用刃受けに挿入される部分の厚みが、接地用栓刃と略同じかこれより薄いものであることを特徴とする差し込みプラグの接続構造。
A pair of left and right power receiving grooves provided with a power blade holder inside, and a ground receiving groove provided with a ground blade holder inside, and the grounding between the pair of left and right power receiving grooves. Receiving grooves are formed, and these receiving grooves are three grooves extending in the front-rear direction that open on the front end surface of the outlet casing, and linear outlets that are arranged in parallel with each other;
In a connection structure between a pair of power plug blades projecting from the front end surface of the plug body and a power plug having a grounding plug blade disposed in front or rear of these power plug blades,
The plug is provided with an insulating plate protruding from the tip end surface of the plug body,
In the state where the pair of power supply blades are received in the pair of power supply receiving grooves, the insulating plate and the grounding blades are received in the grounding reception grooves,
The insulating plate is located on a line segment connecting the pair of power supply blades in the front-rear direction,
The insulating plate is positioned in the center between the pair of power supply blades in the left-right direction, and is positioned on a straight line of the grounding blade.
The insulating plate is long enough to reach the grounding blade receptacle in the grounding receiving groove, and at least the thickness of the portion inserted into the grounding blade receptacle at the tip of the insulating plate is such that the grounding plug is Plug connection structure characterized by being substantially the same as or thinner than the blade.
プラグ本体の先端面から突出した一対の電源用栓刃と、これらの電源用栓刃の前方又は後方に配置された接地用栓刃とを備えた電源用差し込みプラグであって、
電源用刃受けを内部に備えた左右一対の電源用受容溝と、接地用刃受けを内部に備えた接地用受容溝とを備え、上記の左右一対の電源用受容溝の間に上記の接地用受容溝が形成され、且つ、これらの受容溝はコンセントケーシングの先端面に開口する3本の前後方向に伸びる溝であると共に、互いに平行に配位されたものである線状コンセントに差し込み可能な線状コンセント用差し込みプラグにおいて、
上記プラグ本体の先端面より先端方向に突出した絶縁板を備え、
上記一対の電源用受容溝に上記一対の電源用栓刃が受容された状態で、上記接地用受容溝に上記絶縁板と上記の接地用栓刃が受容されるものであり、
上記絶縁板は、前後方向において、上記一対の電源用栓刃間を結ぶ線分上に位置するものであり、
上記絶縁板は、左右方向において、上記一対の電源用栓刃の間の中央に位置するものであり、且つ、上記接地用栓刃の一直線上に位置するものであり、
上記絶縁板は、その長さが上記接地用受容溝内の上記接地用刃受けに届く長さであり、少なくとも絶縁板の先端の接地用刃受けに挿入される部分の厚みが、接地用栓刃と略同じかこれより薄いものであることを特徴とする差し込みプラグ。
A plug for power supply comprising a pair of power plug blades protruding from the front end surface of the plug body, and a grounding plug blade disposed in front of or behind the power plug blades ,
A pair of left and right power receiving grooves provided with a power blade holder inside, and a ground receiving groove provided with a ground blade holder inside, and the grounding between the pair of left and right power receiving grooves. Receiving grooves are formed, and these receiving grooves are three grooves extending in the front-rear direction that open on the front end surface of the outlet casing, and can be inserted into linear outlets that are arranged in parallel to each other. In a plug for a straight wire outlet,
Provided with an insulating plate protruding in the tip direction from the tip surface of the plug body,
In the state where the pair of power supply blades are received in the pair of power supply receiving grooves, the insulating plate and the grounding blades are received in the grounding reception grooves,
The insulating plate is located on a line segment connecting the pair of power supply blades in the front-rear direction,
The insulating plate is positioned in the center between the pair of power supply blades in the left-right direction, and is positioned on a straight line of the grounding blade.
The insulating plate is long enough to reach the grounding blade receptacle in the grounding receiving groove, and at least the thickness of the portion inserted into the grounding blade receptacle at the tip of the insulating plate is such that the grounding plug is An insertion plug characterized by being substantially the same as or thinner than the blade.
上記絶縁板は、上記プラグ本体と別体に形成され、且つ、上記プラグ本体に対して出没可能又は着脱可能であることを特徴とする請求項2記載の線状コンセント用差し込みプラグ。 3. The plug for a linear outlet according to claim 2, wherein the insulating plate is formed separately from the plug main body, and can be inserted into and removed from the plug main body. 上記絶縁板がプラグ本体と一体に設けられ、
上記絶縁板の基部に弱め部が設けられ、この弱め部から上記絶縁板の先端側を折り取り可能であることを特徴とする請求項2記載の線状コンセント用差し込みプラグ。

The insulating plate is provided integrally with the plug body,
The wire plug plug according to claim 2, wherein a weakened portion is provided at a base portion of the insulating plate, and a distal end side of the insulating plate can be folded from the weakened portion.

JP2009280341A 2009-12-10 2009-12-10 Connection structure of the plug to the wire outlet Expired - Fee Related JP5555484B2 (en)

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