JP2010183682A - Wiring panel device - Google Patents

Wiring panel device Download PDF

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JP2010183682A
JP2010183682A JP2009023132A JP2009023132A JP2010183682A JP 2010183682 A JP2010183682 A JP 2010183682A JP 2009023132 A JP2009023132 A JP 2009023132A JP 2009023132 A JP2009023132 A JP 2009023132A JP 2010183682 A JP2010183682 A JP 2010183682A
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wiring
panel
power
storage groove
housing portion
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JP2009023132A
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JP5167162B2 (en
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Takashi Sakuma
崇 佐久間
Shinji Adachi
真治 足立
Katsuhiko Kimura
克彦 木村
Keisuke Yoshikawa
啓介 吉川
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Panasonic Electric Works Co Ltd
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Panasonic Electric Works Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a wiring panel device enabling easy wiring work and inconspicuous installation of wire. <P>SOLUTION: The wiring panel device 1 comprises a panel body 3 which is arranged in a building and constitutes a building face such as a wall and a ceiling, and a function panel 2 having a prescribed electric function part 2a is detachably mounted on one surface in the thickness direction of the panel body 3. An accommodation groove 4 for high-energy wiring and an accommodation groove 5 for low-energy wiring are formed at a region which is covered with the function panel 2 on one surface of the panel body 3, and a high-energy wiring including a power supply line for feeding power to the electric function part 2a is accommodated in the accommodation groove 4 for the high-energy wiring which is extended to the other end side from one end side of the panel body 3 along the longitudinal side of the panel body 3. Also, the low-energy wiring which includes a control signal line for transmitting a control signal to the electric function part 2a is accommodated in the accommodation groove 5 for the low-energy wiring. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本願発明は、建物内に設置されて天井又は壁を構成する配線パネル装置に関するものである。   The present invention relates to a wiring panel device that is installed in a building and forms a ceiling or a wall.

従来、図10(a)(b)に示すように、壁110に配設された電気器具100に、電力線や小勢力配線などの電線120を配線する場合、壁110の裏側に配線された電線120を、壁110に設けた通線孔111から表側に導出して電気器具100に接続した後、この電気器具100を壁110に適宜の取付手段を用いて取り付けていた。   Conventionally, as shown in FIGS. 10 (a) and 10 (b), when an electric wire 120 such as a power line or a small force wiring is wired to the electric appliance 100 arranged on the wall 110, the electric wire wired on the back side of the wall 110. 120 was led out from the through hole 111 provided in the wall 110 to the front side and connected to the electric appliance 100, and then the electric appliance 100 was attached to the wall 110 using appropriate attachment means.

また、図11(a)(b)に示すように、電気器具101への配線を壁110に露出配線する場合は、壁110の表面に、天井付近から電気器具101の取付位置にかけて配線ダクト112を配設し、この配線ダクト112の内部に電力線や小勢力配線などの電線120を通して、電気器具101に電線120を接続していた(例えば、特許文献1参照)。   11A and 11B, when the wiring to the electric appliance 101 is exposed on the wall 110, the wiring duct 112 is formed on the surface of the wall 110 from the vicinity of the ceiling to the mounting position of the electric appliance 101. The electric wire 120 is connected to the electric appliance 101 through the electric wire 120 such as a power line or a small force wiring inside the wiring duct 112 (see, for example, Patent Document 1).

特開平11−234848号公報JP-A-11-234848

上述した前者の配線方法では、電線120を通すための通線孔111を壁110に開ける必要があり、孔開け作業の手間がかかるという問題があった。また壁110の裏側に先行配線された電線120を通線孔111から表側に引き出して、電気器具100に接続した後、電線120の余長分を通線孔111の内側に押し込みながら、電気器具100を壁110に取り付ける必要があるので、配線作業に手間がかかるという問題があった。   In the former wiring method described above, there is a problem that it is necessary to open the through-hole 111 for passing the electric wire 120 in the wall 110, which takes time and labor for the hole-opening operation. In addition, after the electric wire 120 wired in advance on the back side of the wall 110 is pulled out from the through hole 111 to the front side and connected to the electric appliance 100, the extra length of the electric wire 120 is pushed into the inner side of the electric wire hole 111. Since it is necessary to attach 100 to the wall 110, there is a problem that it takes time and labor for wiring work.

一方、後者の配線方法では、壁110の表側から配線作業が行えるので、前者の配線方法に比べて配線作業の手間が少なくて済むが、電線120を通すための配線ダクト112が壁110の表面に露出しているので、外観の見栄えが悪いという問題があった。   On the other hand, in the latter wiring method, wiring work can be performed from the front side of the wall 110, so that the labor of wiring work can be reduced as compared with the former wiring method. However, the wiring duct 112 for passing the electric wire 120 is provided on the surface of the wall 110. There was a problem that the appearance was not good.

本発明は上記問題点に鑑みて為されたものであり、その目的とするところは、配線作業が容易で、電線を目立たないように配線できる配線パネル装置を提供することにある。   The present invention has been made in view of the above-mentioned problems, and an object of the present invention is to provide a wiring panel device that allows easy wiring work and wiring without making the wires conspicuous.

上記目的を達成するために、請求項1の発明は、建物の内部に設置されて壁、天井のような造営面を構成する矩形板状のパネル本体を備え、パネル本体の厚み方向における一表面には、所定の電気機能部を備えた機能パネルが着脱自在に取り付けられ、パネル本体の一表面において機能パネルで覆われる部位には、電気機能部に給電するための電源線を含む強電系配線が収納される強電系配線用収納溝と、電気機能部への制御信号を送信する制御信号線を含む小勢力配線が収納される小勢力配線用収納溝とが、それぞれ、パネル本体の一辺に沿ってパネル本体の一端側から他端側まで設けられ、パネル本体において両収納溝が延びる方向の端部には、両収納溝が延びる方向と直交する方向の一端側から他端側まで、両収納溝に連通して、両収納溝の内部に収納される強電系配線及び小勢力配線を通すための配線収容部が設けられたことを特徴とする。   In order to achieve the above object, the invention according to claim 1 is provided with a rectangular plate-like panel body that is installed inside a building and forms a construction surface such as a wall or a ceiling, and one surface in the thickness direction of the panel body. Is a detachable attachment of a functional panel having a predetermined electrical function part, and a portion of the panel body covered with the function panel includes a power line for supplying power to the electrical function part. A storage groove for high-power wiring in which the power is stored and a storage groove for small power wiring in which a small power wiring including a control signal line for transmitting a control signal to the electrical function unit is stored on one side of the panel body. Along one end of the panel body from the other end to the other end. In the panel body, both ends of the storage grooves extend from one end to the other end in a direction perpendicular to the direction in which both storage grooves extend. Communicate with the storage groove Wherein the wire accommodating portion for passing a strong electric system wires and small force lines are accommodated inside the grooved.

請求項2の発明は、請求項1の発明において、配線収容部内に、機能パネルの電気機能部を制御する制御装置が配置されることを特徴とする。   The invention of claim 2 is characterized in that, in the invention of claim 1, a control device for controlling an electric function part of the function panel is arranged in the wiring housing part.

請求項3の発明は、請求項2の発明において、制御装置には、強電系配線用収納溝に臨む位置に電源線を接続する第1の電線接続手段が設けられるとともに、小勢力配線用収納溝に臨む位置に小勢力配線を接続する第2の電線接続手段が設けられたことを特徴とする。   According to a third aspect of the present invention, in the second aspect of the present invention, the control device is provided with first electric wire connecting means for connecting the power supply line at a position facing the high-voltage wiring storage groove, and the small power wiring storage. A second electric wire connecting means for connecting the small force wiring is provided at a position facing the groove.

請求項4の発明は、請求項3の発明において、制御装置及び配線収容部に、第1及び第2の電線接続手段をそれぞれ強電系配線用収納溝、小勢力配線用収納溝に臨ませた状態で、制御装置の配置位置を位置決めする位置決め手段が設けられたことを特徴とする。   According to a fourth aspect of the present invention, in the third aspect of the present invention, the control device and the wiring housing portion have the first and second electric wire connecting means facing the high power wiring housing groove and the small force wiring housing groove, respectively. In this state, positioning means for positioning the arrangement position of the control device is provided.

請求項5の発明は、請求項2乃至4の何れか1つの発明において、配線収容部は、並設された他の配線パネル装置の配線収容部に連通し、制御装置に接続される強電系配線および小勢力配線のうち少なくとも何れか一方が、配線収容部を通して、他の配線パネル装置の配線収容部に配置された制御装置に送り配線されることを特徴とする。   According to a fifth aspect of the present invention, in the invention according to any one of the second to fourth aspects, the wiring housing portion communicates with a wiring housing portion of another wiring panel device arranged in parallel and is connected to the control device. At least one of the wiring and the small force wiring is sent and wired through a wiring housing portion to a control device arranged in a wiring housing portion of another wiring panel device.

請求項6の発明は、請求項1乃至5の何れか1つの発明において、強電系配線用収納溝及び小勢力配線用収納溝のうち、少なくとも何れか一方の収納溝には、内部に収納された配線を保持する電線保持手段が設けられたことを特徴とする。   According to a sixth aspect of the present invention, in any one of the first to fifth aspects of the present invention, at least one of the high power wiring storage groove and the small force wiring storage groove is housed inside. An electric wire holding means for holding the wiring is provided.

請求項1の発明によれば、壁、天井のような造営面を構成するパネル本体には、機能パネルが取着される一表面において、機能パネルで覆われる部位に強電系配線用収納溝と小勢力配線用収納溝とが設けられているので、機能パネルを外して強電系配線用収納溝及び小勢力配線用収納溝を露出させた状態で、機能パネルの電気機能部に配線を接続したり、配線の余長分を収納溝に収納する作業が行えるから、配線作業が容易に行え、またパネル本体に孔を開ける作業が要らないので、配線作業が簡略化できるという効果がある。しかも、強電系配線用収納溝及び小勢力配線用収納溝は機能パネルで覆われる部位に設けられているので、各収容溝内に収納された配線を機能パネルで隠すことができ、外観の見栄えが向上するという利点がある。さらに、強電系配線を収納する強電系配線用収納溝と、小勢力配線を収納する小勢力配線用収納溝とが別々に設けられているので、強電系配線と小勢力配線とを分離して配線することができ、絶縁性が向上するという効果がある。しかも、強電系配線用収納溝及び小勢力配線用収納溝は、パネル本体の一辺に沿って、パネル本体の一端側から他端側まで設けられているので、機能パネルにおいて電気機能部の位置を自由に設計できるという利点がある。そのうえ、強電系配線用収納溝及び小勢力配線用収納溝内にそれぞれ収納される強電系配線及び小勢力配線を配線収容部に収めることができるので、パネル本体の端部で強電系配線及び小勢力配線の余長分を纏まりよく収納することができる。   According to the first aspect of the present invention, the panel main body constituting the construction surface such as a wall or ceiling has a high-voltage wiring storage groove in a portion covered with the functional panel on one surface to which the functional panel is attached. Since there is a small force wiring storage groove, connect the wiring to the electrical function part of the function panel with the functional panel removed and the high power wiring storage groove and small power wiring storage groove exposed. In addition, since the work for storing the extra length of the wiring in the storage groove can be performed, the wiring work can be easily performed, and the work for opening a hole in the panel body is not required, so that the wiring work can be simplified. In addition, the high-power wiring storage grooves and the small power wiring storage grooves are provided in the portions covered with the functional panels, so that the wirings stored in the respective storage grooves can be hidden by the functional panels, and the appearance is improved. Has the advantage of improving. Furthermore, since the storage groove for the high-power wiring that stores the high-power wiring and the storage groove for the small-power wiring that stores the low-power wiring are provided separately, the high-power wiring and the small power wiring are separated. Wiring can be performed, and there is an effect that insulation is improved. In addition, the high-power wiring storage groove and the small force wiring storage groove are provided from one end side to the other end side of the panel body along one side of the panel body. There is an advantage that it can be designed freely. In addition, since the high power wiring and the small power wiring stored in the high power wiring storage groove and the small power wiring storage groove can be accommodated in the wiring housing portion, the strong power wiring and the small power wiring can be accommodated at the end of the panel body. The surplus length of the power wiring can be stored together.

請求項2の発明によれば、配線収容部に制御装置が収容されるので、制御装置と電気機能部との間を接続する強電系配線および小勢力配線を、配線収容部から強電系配線用収納溝および小勢力配線用収納溝にそれぞれ通して収納することができる。   According to the invention of claim 2, since the control device is housed in the wiring housing portion, the high-power wiring and the small force wiring connecting the control device and the electric function portion are connected from the wiring housing portion to the high-power wiring. It can be stored through the storage groove and the small force wiring storage groove.

請求項3の発明によれば、強電系配線用収納溝及び小勢力配線用収納溝に第1、第2の電線接続手段を臨ませた状態で制御装置が配線収容部に収納されているので、強電系配線および小勢力配線を制御装置に接続する作業が容易に行えるという効果がある。   According to the invention of claim 3, since the control device is housed in the wiring housing portion with the first and second electric wire connecting means facing the housing groove for high-power wiring and the housing groove for small force wiring. There is an effect that the work of connecting the high-power wiring and the small force wiring to the control device can be easily performed.

請求項4の発明によれば、位置決め手段によって制御装置の位置が決められるので、制御装置が動いて、制御装置に接続された強電系配線や小勢力配線に張力が加わるのを防止することができる。   According to the fourth aspect of the present invention, since the position of the control device is determined by the positioning means, it is possible to prevent the control device from moving and applying tension to the high-power wiring and the small force wiring connected to the control device. it can.

請求項5の発明によれば、配線パネル装置の配線収容部は、並設された他の配線パネル装置の配線収容部に連通しているから、配線収容部内に収納された制御装置から、他の配線パネル装置の配線収容部に収納された制御装置に対して送り配線をすることができ、送り配線を行うことで全体の配線長を短くして、配線のコストを低減できるという効果がある。   According to invention of Claim 5, since the wiring accommodating part of a wiring panel apparatus is connected to the wiring accommodating part of the other wiring panel apparatus arranged in parallel, it is different from the control apparatus accommodated in the wiring accommodating part. The feed wiring can be performed with respect to the control device housed in the wiring housing portion of the wiring panel device, and the overall wiring length can be shortened by performing the feed wiring, thereby reducing the cost of wiring. .

請求項6の発明によれば、配線の位置が決まるので、配線長の設計や施工が正確に行えるという利点がある。   According to the invention of claim 6, since the position of the wiring is determined, there is an advantage that the design and construction of the wiring length can be performed accurately.

本実施形態の内装パネルの分解斜視図である。It is a disassembled perspective view of the interior panel of this embodiment. 同上の配線パネル装置の施工状態を示す正面図である。It is a front view which shows the construction state of a wiring panel apparatus same as the above. 同上の内装パネルの施工状態を示す正面図である。It is a front view which shows the construction state of an interior panel same as the above. 同上の配線パネル装置を示し、(a)は要部の正面図、(b)は上側から見た断面図、(c)は要部の側面図である。The wiring panel apparatus same as the above is shown, (a) is a front view of the main part, (b) is a sectional view seen from above, and (c) is a side view of the main part. 同上の配線パネル装置に、機能パネルを取り付ける前の状態を示す平面図である。It is a top view which shows the state before attaching a functional panel to the wiring panel apparatus same as the above. (a)〜(d)は同上の組立工程の説明図である。(A)-(d) is explanatory drawing of an assembly process same as the above. 同上の全体構成図である。It is a whole block diagram same as the above. 同上の配線パネル装置に、異種の機能パネルを取り付ける前の状態を示す平面図である。It is a top view which shows the state before attaching a different function panel to the wiring panel apparatus same as the above. (a)〜(d)は同上の組立工程の説明図である。(A)-(d) is explanatory drawing of an assembly process same as the above. 従来の配線器具の取付状態を示し、(a)は外観斜視図、(b)は断面図である。The attachment state of the conventional wiring apparatus is shown, (a) is an external appearance perspective view, (b) is sectional drawing. 従来の別の配線器具の取付状態を示し、(a)は外観斜視図、(b)は断面図である。The attachment state of another conventional wiring apparatus is shown, (a) is an external appearance perspective view, (b) is sectional drawing.

以下に、本発明に係る配線パネル装置を、建物の壁を構成する内装パネルに適用した一実施形態を図1〜図8に基づいて説明する。尚、以下の説明では特にことわりがないかぎり、図2に示す向きにおいて上下左右の方向を規定し、図2中の正面を前面という。   Below, one Embodiment which applied the wiring panel apparatus which concerns on this invention to the interior panel which comprises the wall of a building is described based on FIGS. In the following description, unless otherwise specified, the vertical and horizontal directions are defined in the orientation shown in FIG. 2, and the front in FIG.

図1は内装パネルPNの分解斜視図であり、この内装パネルPNは、配線パネル装置1と機能パネル2とを主要な構成として備えている。   FIG. 1 is an exploded perspective view of an interior panel PN. The interior panel PN includes a wiring panel device 1 and a function panel 2 as main components.

機能パネル2は、厚みが約15mmの矩形板状であって、室内側の面(前面)には所定の機能を有する電気機能部2aが設けられ、電気機能部2aに給電線や信号線を接続する接続端子(図示せず)が背面側に設けられている。なお電気機能部2aとしては、シート状のヒータを用いた暖房器具や、平板状の導光板と導光板の一端側の入射面に配置されたLEDとを用いた面発光源からなる照明器具や、平面上のスピーカを備えた音場形成部などがある。図示例では電気機能部2aを前面の一部に設けているが、機能パネル2の前面の略全体に電気機能部2aを設けてもよい。   The functional panel 2 has a rectangular plate shape with a thickness of about 15 mm, and an electric function unit 2a having a predetermined function is provided on the indoor side surface (front surface). A power supply line and a signal line are provided to the electric function unit 2a. A connection terminal (not shown) to be connected is provided on the back side. In addition, as the electric function part 2a, the lighting fixture which consists of a surface light source using the heating appliance using a sheet-like heater, the flat light guide plate, and LED arrange | positioned at the entrance plane of the one end side of a light guide plate, There is a sound field forming unit equipped with a speaker on a plane. In the illustrated example, the electrical function unit 2a is provided on a part of the front surface, but the electrical function unit 2a may be provided on substantially the entire front surface of the function panel 2.

配線パネル装置1は、建物の壁(躯体面)20に固定されて、造営面(壁)を構成するパネル本体3を備える。パネル本体3は、不燃性及び絶縁性を有する合成樹脂材料の押し出し成型により形成され、縦長の矩形板状であって、厚み方向における一表面(室内側の面、前面)には、適宜の取付手段を用いて機能パネル2が着脱自在に取り付けられる。そして、パネル本体3の一表面において、機能パネル2で覆われる部位には1本の強電系配線用収納溝4と3本の小勢力配線用収納溝5とが、左右方向に並べて所定の間隔で設けられている。強電系配線用収納溝4と小勢力配線用収納溝5とは、パネル本体3の一辺(長辺)に沿ってパネル本体3の一端側から他端側にかけて、すなわち施工状態における上端側から下端側にかけて設けられており、強電系配線用収納溝4には、電気機能部2aに給電するための電源線を含む強電系配線が収納され、小勢力配線用収納溝5には、電気機能部2aへの制御信号を送信する制御信号線を含む小勢力配線が収納される。尚、本実施形態では強電系配線用収納溝4が左端に設けられ、3本の小勢力配線用収納溝5がその右側に並べて設けられている。またパネル本体3の前面には、両収納溝4,5を間にして左右両側に、両収納溝4,5に比べて深さが浅い補強用の溝3aが複数形成されており、複数の溝3aを設けることで、パネル本体3の強度を高めている。   The wiring panel device 1 includes a panel main body 3 that is fixed to a wall (frame surface) 20 of a building and constitutes a construction surface (wall). The panel body 3 is formed by extrusion molding of a non-flammable and insulating synthetic resin material, is a vertically long rectangular plate, and is appropriately attached to one surface in the thickness direction (interior side surface, front surface). The function panel 2 is detachably attached using the means. On one surface of the panel body 3, one strong electrical wiring storage groove 4 and three small force wiring storage grooves 5 are arranged in the left-right direction at a predetermined interval at a portion covered with the functional panel 2. Is provided. The storage groove 4 for high electrical wiring and the storage groove 5 for small force wiring are arranged from one end side to the other end side of the panel body 3 along one side (long side) of the panel body 3, that is, from the upper end side to the lower end in the construction state. The high-power wiring storage groove 4 stores a high-power wiring including a power line for supplying power to the electric function unit 2a, and the small force wiring storage groove 5 stores the electric function unit. A small force wiring including a control signal line for transmitting a control signal to 2a is accommodated. In the present embodiment, the high-power wiring storage groove 4 is provided at the left end, and the three small force wiring storage grooves 5 are provided side by side on the right side thereof. Further, on the front surface of the panel body 3, a plurality of reinforcing grooves 3a having a shallower depth than the both storage grooves 4 and 5 are formed on both the left and right sides with both storage grooves 4 and 5 therebetween. By providing the groove 3a, the strength of the panel body 3 is increased.

またパネル本体3において、強電系配線用収納溝4及び小勢力配線用収納溝5が延びる方向の端部(本実施形態では上端部及び下端部の両端部)には、両収納溝4,5が延びる方向と直交する方向(つまりパネル本体3の短辺方向)の一端側から他端側まで配線収容部6,6が設けられている。各配線収容部6は、細長い矩形板状の板金の上下両側部を前方に折り曲げ加工することで、前面および左右両側面が開口した略箱形に形成されており、パネル本体3の端面に一体的に連結されている。そして、各配線収容部6には、パネル本体3の強電系配線用収納溝4及び小勢力配線用収納溝5に対応する部位に切欠7が形成され、配線収容部6の内部と強電系配線用収納溝4及び小勢力配線用収納溝5とが切欠7を通して連通しており、両収納溝4,5の内部に収納される強電系配線及び小勢力配線が配線収容部6内に通されるようになっている。すなわち、強電系配線用収納溝4及び小勢力配線用収納溝5内にそれぞれ収納される強電系配線及び小勢力配線を配線収容部6に収めることができるので、パネル本体3の端部で強電系配線及び小勢力配線の余長分を纏まりよく収納することができる。   Further, in the panel body 3, both the storage grooves 4, 5 are provided at the ends in the direction in which the high-power wiring storage grooves 4 and the small force wiring storage grooves 5 extend (both ends of the upper end portion and the lower end portion in this embodiment). Wiring accommodating portions 6 and 6 are provided from one end side to the other end side in the direction orthogonal to the direction in which the wire extends (that is, the short side direction of the panel body 3). Each wiring accommodating portion 6 is formed in a substantially box shape in which the front and left and right side surfaces are opened by bending the upper and lower side portions of an elongated rectangular plate-shaped metal plate forward, and is integrated with the end surface of the panel body 3. Connected. Each wiring housing portion 6 is formed with a notch 7 in a portion corresponding to the high power wiring housing groove 4 and the small force wiring housing groove 5 of the panel body 3, and the inside of the wiring housing portion 6 and the high power wiring The storage groove 4 and the small force wiring storage groove 5 communicate with each other through the notch 7, and the high-power wiring and the small force wiring stored in both the storage grooves 4 and 5 are passed through the wiring housing 6. It has become so. That is, since the high-power wiring and the small power wiring housed in the high-power wiring housing groove 4 and the small-power wiring housing groove 5 can be stored in the wiring housing portion 6, the high-power wiring is stored at the end of the panel body 3. The extra lengths of the system wiring and the small power wiring can be stored together.

各配線収容部6の底壁には、左右両側部に長孔状の取付孔8が設けられており、配線収容部6,6が一体的に固定されたパネル本体3を躯体面20の所定位置に取り付け、躯体面20に埋め込まれたアンカーボルト(図示せず)を配線収容部6の取付孔8に通し、取付孔8から露出するアンカーボルトにナット(図示せず)を螺着することで、配線パネル装置1が躯体面20に取り付けられるようになっている。なおパネル本体3の上側に取り付けられた配線収容部6には、前面側の開口を覆う矩形板状の廻り縁カバー10aが、パネル本体3の下側に取り付けられた配線収容部6には、前面側の開口を覆う矩形板状の巾木カバー10bが、それぞれ着脱自在に取り付けられており、これらのカバー10a,10bによって配線収容部6の内部に収容された配線を隠して、外観の見栄えを良くしている。   The bottom wall of each wiring housing portion 6 is provided with elongated mounting holes 8 on both left and right sides, and the panel body 3 to which the wiring housing portions 6 and 6 are integrally fixed is attached to a predetermined part of the housing surface 20. An anchor bolt (not shown) embedded in the housing surface 20 is passed through the mounting hole 8 of the wiring housing 6 and a nut (not shown) is screwed onto the anchor bolt exposed from the mounting hole 8. Thus, the wiring panel device 1 is attached to the housing surface 20. In addition, the wiring housing part 6 attached to the upper side of the panel body 3 has a rectangular plate-shaped surrounding edge cover 10a covering the opening on the front side, and the wiring housing part 6 attached to the lower side of the panel body 3 has A rectangular plate-like baseboard cover 10b covering the opening on the front side is detachably attached. The covers 10a and 10b conceal the wiring housed in the wiring housing portion 6 so that the appearance looks good. Is improving.

また上側の配線収容部6には、図1及び図5に示すように、内装パネルPNの外側から電源線L1や制御信号線L2を内部に導入するための通線孔9a,9bが左右両側に設けられており、通線孔9aを通して配線収容部6内に導入された電源線L1が強電系配線用収納溝4内に収納され、通線孔9bを通して配線収容部6内に導入された制御信号線L2が小勢力配線用収納溝5内に収納されるようになっている。ここで、電源線L1を導入するための通線孔9aは配線収容部6の左側、制御信号線L2を導入するための通線孔9bは配線収容部6の右側に開口しており、通線孔9aから導入された電源線L1は、左側にある強電系配線用収納溝4内に収納され、通線孔9bから導入された制御信号線L2は、強電系配線用収納溝4に対して右側にある小勢力配線用収納溝5内に収納されるから、配線収容部6の内部でも電源線L1と制御信号線L2を分離して収納することができ、絶縁性を確保することができる。   Further, as shown in FIGS. 1 and 5, the upper wiring housing 6 has through holes 9a and 9b for introducing the power supply line L1 and the control signal line L2 from the outside of the interior panel PN. The power line L1 introduced into the wiring housing portion 6 through the through hole 9a is housed in the high-power wiring housing groove 4 and introduced into the wiring housing portion 6 through the through hole 9b. The control signal line L2 is accommodated in the small force wiring accommodation groove 5. Here, the through hole 9a for introducing the power supply line L1 is opened on the left side of the wiring housing portion 6, and the through hole 9b for introducing the control signal line L2 is opened on the right side of the wiring housing portion 6. The power supply line L1 introduced from the wire hole 9a is accommodated in the high-power wiring storage groove 4 on the left side, and the control signal line L2 introduced from the through-hole 9b is connected to the high-power wiring storage groove 4 Therefore, the power supply line L1 and the control signal line L2 can be separated and housed in the wiring housing portion 6 to ensure insulation. it can.

また下側の配線収容部6には、図5に示すように、機能パネル2の電気機能部2aを制御する制御装置11が収納されている。   Further, as shown in FIG. 5, a control device 11 that controls the electric function part 2 a of the function panel 2 is housed in the lower wiring housing part 6.

制御装置11には、強電系配線用収納溝4に臨む位置に第1の電線接続手段として、電源線L1が接続される電源入力端子12aと、電気機能部2aに給電するための電源線L3が接続される電源出力端子12bとが設けられる。ここで、電源入力端子12aおよび電源出力端子12bはそれぞれ従来周知の速結端子により構成される。また制御装置11には、小勢力配線用収納溝5に臨む位置に、第2の電線接続手段として、図示しないコントローラからの制御信号線L2が接続される制御線接続部13aと、電気機能部2aからの制御信号線L4が接続される制御線接続部13bとが設けられている。なお、制御線接続部13a,13bは、例えば制御信号線L2,L4の端部に設けたプラグが着脱自在に接続されるソケットにより構成される。   The control device 11 includes a power supply input terminal 12a to which a power supply line L1 is connected as a first electric wire connecting means at a position facing the high power wiring storage groove 4, and a power supply line L3 for supplying power to the electrical function unit 2a. Are connected to the power output terminal 12b. Here, each of the power supply input terminal 12a and the power supply output terminal 12b is configured by a conventionally known fast connection terminal. The control device 11 includes a control line connecting portion 13a to which a control signal line L2 from a controller (not shown) is connected as a second electric wire connecting means at a position facing the small force wiring storage groove 5, and an electric function portion. And a control line connecting portion 13b to which the control signal line L4 from 2a is connected. The control line connecting portions 13a and 13b are constituted by sockets to which plugs provided at the end portions of the control signal lines L2 and L4 are detachably connected, for example.

このように、制御装置11は配線収容部6内に配置されるので、制御装置11と電気機能部2aとの間を接続する強電系配線および小勢力配線を、配線収容部6から強電系配線用収納溝4および小勢力配線用収納溝5にそれぞれ通して収納することができる。そして、制御装置11には、強電系配線用収納溝4及び小勢力配線用収納溝5に臨む位置に第1、第2の電線接続手段が設けられているので、両収納溝4,5に第1、第2の電線接続手段を臨ませた状態で制御装置11が配線収容部6に収納されるから、強電系配線および小勢力配線を制御装置11に接続する作業が容易に行える。   Thus, since the control apparatus 11 is arrange | positioned in the wiring accommodating part 6, the strong electric system wiring and small power wiring which connect between the control apparatus 11 and the electric function part 2a are connected from the wiring accommodating part 6 to the strong electric system wiring. It can be stored through the storage groove 4 and the small force wiring storage groove 5 respectively. Since the control device 11 is provided with the first and second electric wire connecting means at the positions facing the high-power wiring storage groove 4 and the small force wiring storage groove 5, Since the control device 11 is accommodated in the wiring accommodating portion 6 with the first and second electric wire connection means facing, the work of connecting the high voltage system wiring and the small force wiring to the control device 11 can be easily performed.

制御装置11では、電源線L1から電源入力端子12aに入力された電源を、左右両側部に設けた送り配線端子14,14に供給するとともに、電源部15で電気機能部2aに対応した電圧に変換して電源出力端子12bに出力する。また制御装置11では、制御部16が、制御線接続部13aに接続された制御信号線L2を介して外部のコントローラと通信を行うことで制御信号を受信し、受信した制御信号に基づいて電気機能部2aに制御信号を出力して、電気機能部2aの動作を制御する。また制御部16には電源部15から動作電源が供給されるようになっている。尚、本実施形態では制御装置11を電気機能部2aと別に設けているが、電気機能部2aに制御装置11の機能を内蔵させてもよく、この場合は電気機能部2aに、電源線L1及び制御信号線L2を直接接続すればよい。   The control device 11 supplies the power input from the power supply line L1 to the power input terminal 12a to the feed wiring terminals 14 and 14 provided on both the left and right sides, and at the power supply unit 15 generates a voltage corresponding to the electric function unit 2a. It converts and outputs to the power supply output terminal 12b. Moreover, in the control apparatus 11, the control part 16 receives a control signal by communicating with an external controller via the control signal line L2 connected to the control line connection part 13a, and is electrically based on the received control signal. A control signal is output to the functional unit 2a to control the operation of the electrical functional unit 2a. The control unit 16 is supplied with operating power from the power supply unit 15. In the present embodiment, the control device 11 is provided separately from the electric function unit 2a. However, the function of the control device 11 may be built in the electric function unit 2a. In this case, the power line L1 is provided in the electric function unit 2a. The control signal line L2 may be directly connected.

ここで、図6(a)〜(d)を参照して内装パネルPNの組立手順を説明する。先ず、図6(a)に示すようにパネル本体3に配線収容部6,6が一体的に連結された配線パネル装置1を躯体面に固定した状態で、下側の配線収容部6に制御装置11を取り付け、通線孔9a,9bを通して上側の配線収容部6に導入した電力線および情報配線(図示せず)を強電系配線用収納溝4および小勢力配線用収納溝5内に収容して制御装置11に接続する。次に機能パネル2からの電源線および制御信号線(図示せず)を制御装置11に接続し、これら電源線および制御信号線をそれぞれ強電系配線用収納溝4および小勢力配線用収納溝5内に収容した状態で、機能パネル2をパネル本体3の前面側に取り付け(図6(b)参照)、上下両側の配線収容部6,6に廻り縁カバー10aおよび巾木カバー10bをそれぞれ取り付けることで(図6(c)参照)、内装パネルPNの組立が完了する(図6(d)参照)。   Here, the assembly procedure of the interior panel PN will be described with reference to FIGS. First, as shown in FIG. 6 (a), the wiring panel device 1 in which the wiring housing portions 6 and 6 are integrally coupled to the panel body 3 is fixed to the housing surface, and the lower wiring housing portion 6 is controlled. A power line and information wiring (not shown) introduced into the upper wiring accommodating portion 6 through the through holes 9a and 9b are accommodated in the high-power wiring accommodating groove 4 and the small force wiring accommodating groove 5 with the device 11 attached. To the control device 11. Next, a power supply line and a control signal line (not shown) from the function panel 2 are connected to the control device 11, and the power supply line and the control signal line are connected to the high power wiring storage groove 4 and the small force wiring storage groove 5, respectively. The functional panel 2 is attached to the front side of the panel main body 3 (see FIG. 6B) while being housed in the interior, and the surrounding edge cover 10a and the baseboard cover 10b are respectively attached to the upper and lower wiring housing portions 6 and 6. Thus (see FIG. 6C), the assembly of the interior panel PN is completed (see FIG. 6D).

而して、壁、天井のような造営面を構成するパネル本体3には、機能パネル2が取着される一表面において、機能パネル2で覆われる部位に強電系配線用収納溝4と小勢力配線用収納溝5とが設けられているので、機能パネル2を外して両収納溝4,5を露出させた状態で、両収納溝4,5内に配線を収納したり、電気機能部2aに配線を接続したり、配線の余長分を収納溝に収納する作業が行えるから、配線作業が容易に行え、またパネル本体3に孔を開ける作業が要らないので、配線作業が簡略化できる。しかも、強電系配線用収納溝4及び小勢力配線用収納溝5は機能パネル2で覆われる部位に設けられているので、各収容溝4,5内に収納された配線を機能パネル2で隠すことができ、外観の見栄えが向上する。さらに、強電系配線を収納する強電系配線用収納溝4と、小勢力配線を収納する小勢力配線用収納溝5とが別々に設けられているので、強電系配線と小勢力配線とを分離して配線することができ、絶縁性が向上するという効果もある。また躯体面20に取り付けられた配線パネル装置1に対して機能パネル2を容易に着脱できるから、所望の電気機能部2aを有する機能パネル2を、配線パネル装置1に取り付けることで所望の機能を得ることができ、また機能パネル2の交換や電気的な点検作業にも容易に対応できるという利点もある。また、パネル本体3は矩形板状に形成され、強電系配線用収納溝4および小勢力配線用収納溝5は、それぞれ、パネル本体3の一辺に沿ってパネル本体3の一端側から他端側まで設けられているので、機能パネル2において電気機能部2aの位置を自由に設計できるという利点がある。   Thus, the panel main body 3 constituting the construction surface such as a wall or a ceiling has a strong electrical wiring storage groove 4 and a small area on the surface covered with the functional panel 2 on one surface to which the functional panel 2 is attached. Since the power wiring storage groove 5 is provided, with the functional panel 2 removed and the storage grooves 4 and 5 exposed, the wiring can be stored in the storage grooves 4 and 5, Since wiring can be connected to 2a and the extra length of wiring can be stored in the storage groove, wiring work can be performed easily, and there is no need to open a hole in the panel body 3, thus simplifying the wiring work. it can. In addition, since the high-power wiring storage groove 4 and the small force wiring storage groove 5 are provided in portions covered by the functional panel 2, the wiring stored in the respective storage grooves 4 and 5 is hidden by the functional panel 2. Can improve the appearance of the appearance. In addition, the high power wiring storage groove 4 for storing the high power wiring and the small power wiring storage groove 5 for storing the small power wiring are provided separately, so that the high power wiring and the small power wiring are separated. Thus, there is an effect that the insulation can be improved. Further, since the functional panel 2 can be easily attached to and detached from the wiring panel device 1 attached to the housing surface 20, the desired function can be obtained by attaching the functional panel 2 having the desired electric function part 2a to the wiring panel device 1. There is also an advantage that it can be easily obtained and can be easily adapted to replacement of the function panel 2 and electrical inspection work. Moreover, the panel main body 3 is formed in a rectangular plate shape, and the high-power wiring storage groove 4 and the small force wiring storage groove 5 are respectively arranged from one end side to the other end side of the panel main body 3 along one side of the panel main body 3. Therefore, there is an advantage that the position of the electric function part 2a can be designed freely in the function panel 2.

なお図4(c)に示すように、配線収容部6の上片及び下片の内面に、左右方向に延びる突条6aを突設するとともに、制御装置11の上下両側面に突条6aが嵌合する凹溝11aを設けてもよい。この場合、突条6aが凹溝11aに嵌合することによって、制御装置11の配置位置が位置決めされるので、第1及び第2の電線接続手段をそれぞれ強電系配線用収納溝4、小勢力配線用収納溝5に臨ませた状態で、制御装置11の配置位置を位置決めすることができるから、制御装置11が動いて、制御装置11に接続された強電系配線や小勢力配線に張力が加わるのを防止することができる。ここにおいて、突条6aおよび凹溝11aから制御装置11を位置決めする位置決め手段が構成される。   As shown in FIG. 4C, protrusions 6 a extending in the left-right direction are provided on the inner surfaces of the upper and lower pieces of the wiring housing portion 6, and the protrusions 6 a are provided on both upper and lower side surfaces of the control device 11. A recessed groove 11a to be fitted may be provided. In this case, since the protrusion 6a is fitted into the concave groove 11a, the arrangement position of the control device 11 is positioned. Therefore, the first and second electric wire connecting means are respectively connected to the high-power wiring storage groove 4 and the small force. Since the arrangement position of the control device 11 can be positioned in a state where it faces the storage groove 5 for wiring, the control device 11 moves and tension is applied to the high-voltage wiring and the small force wiring connected to the control device 11. It can be prevented from joining. Here, positioning means for positioning the control device 11 is constituted by the protrusion 6a and the groove 11a.

また強電系配線用収納溝4及び小勢力配線用収納溝5の少なくとも何れか一方、或いはその両方に、内部に収納される配線に引掛係止する弾性係止片(図示せず)を設けることも好ましく、収納溝内の配線に電線保持手段としての弾性係止片が引っ掛け係止することで、配線の位置が決まるので、配線長の設計や施工が正確に行えるという利点がある。   Further, an elastic locking piece (not shown) for hooking and locking the wiring housed inside is provided in at least one of or both of the high-power wiring housing groove 4 and the small force wiring housing groove 5. Also, since the position of the wiring is determined by hooking and locking the elastic locking piece as the electric wire holding means on the wiring in the storage groove, there is an advantage that the wiring length can be designed and constructed accurately.

次に、図2、図3及び図7を参照して複数枚(例えば3枚)の内装パネルPN1,PN2,PN3を連設して使用する形態について説明を行う。図7はこの場合のシステム構成を示し、建物内に別置きされた住宅分電盤30および管理装置31からそれぞれ電源線L1および制御信号線L2が部屋R内に設置された3枚の内装パネルPN1〜PN3に接続され、住宅分電盤30から各内装パネルPN1〜PN3の制御装置11に対して電源が供給されるとともに、管理装置31と各内装パネルPN1〜PN3の制御装置11との間で制御信号線L2を介して通信を行うことによって、各制御装置11が、管理装置31からの制御信号を受け取り、受信した制御信号に基づいて対応する電気機能部2aの動作を制御している。各制御装置11は、管理装置31からの制御信号に応じて対応する電気機器部2aの動作を制御しているので、管理装置31により複数の電気機能部2aを連系して動作させることができ、例えば各内装パネルPN1〜PN3の電気機器部2aとして照明機能を有するものと、暖房機能を有するものと、音場形成機能を有するものとを使用する場合には、例えば就寝時に照明を暗めにし、温度を一定に制御するとともに、心地よい音楽を鳴動させることで、快適な就寝環境を実現することができる。   Next, a form in which a plurality of (for example, three) interior panels PN1, PN2, and PN3 are connected and used will be described with reference to FIGS. FIG. 7 shows the system configuration in this case, and three interior panels in which the power supply line L1 and the control signal line L2 are installed in the room R from the residential distribution board 30 and the management device 31 separately installed in the building, respectively. Connected to PN1 to PN3, power is supplied from the residential distribution board 30 to the control devices 11 of the interior panels PN1 to PN3, and between the management device 31 and the control devices 11 of the interior panels PN1 to PN3. By performing communication via the control signal line L2, each control device 11 receives a control signal from the management device 31 and controls the operation of the corresponding electrical function unit 2a based on the received control signal. . Since each control device 11 controls the operation of the corresponding electrical equipment unit 2a in accordance with a control signal from the management device 31, the management device 31 can operate the plurality of electrical function units 2a in an interconnected manner. For example, when using an appliance having an illumination function, an appliance having a heating function, and an appliance having a sound field forming function as the electrical equipment part 2a of each of the interior panels PN1 to PN3, for example, darken the illumination at bedtime. In addition, by controlling the temperature to be constant and sounding comfortable music, a comfortable sleeping environment can be realized.

図2及び図3は3枚の内装パネルPN1〜PN3が連設された状態を示しており、各々の内装パネルPN1〜PN3の配線パネル装置1には、下側の配線収容部6に制御装置11が収納されている。そして、左端に位置する配線パネル装置1には、躯体面20に設けた壁裏配線取り出し孔21と通線孔9aとを介して上側の配線収容部6内に電源線L1が導入され、この電源線L1が強電系配線用収納溝4に挿入されて、下側の配線収容部6内に配置された制御装置11に接続される。また各配線パネル装置1の制御装置11の間は、下側の配線収容部6内に配線された送り配線L5,L5を介して電源が送り配線されている。一方、右端に位置する配線パネル装置1には、躯体面20に設けた壁裏配線取り出し孔22と通線孔9bとを介して上側の配線収容部6に小勢力配線L2が導入される。右側2つの配線パネル装置1には、上側の配線収容部6に分岐器18が配置されており、分岐器18で分岐された分岐配線L6は右端の配線パネル装置1の小勢力配線用収納溝5を通して、下側の配線収容部6に収容された制御装置11に接続されている。また分岐器18で分岐された分岐配線L7は連設された他の配線パネル装置1の配線収容部6に送られ、再び分岐器18で分岐されたのち、分岐配線L8,L8がそれぞれ小勢力配線用収納溝5を通して下側の配線収容部6に収容された制御装置11に接続されている。そして、各配線パネル装置1の制御装置11と機能パネル2の電気機能部2aとの間は電源線および制御信号線を介してそれぞれ接続されており、制御装置11から電気機能部2aに電源が供給されるとともに、制御装置11が電気機能部2aの動作を制御するようになっている。   2 and 3 show a state in which three interior panels PN1 to PN3 are connected in series, and the wiring panel device 1 of each of the interior panels PN1 to PN3 includes a control device in the lower wiring housing portion 6. 11 is stored. Then, the power supply line L1 is introduced into the upper wiring accommodating portion 6 through the back wall wiring hole 21 provided in the housing surface 20 and the through hole 9a in the wiring panel device 1 located at the left end. The power line L1 is inserted into the high-power wiring housing groove 4 and connected to the control device 11 disposed in the lower wiring housing portion 6. Further, between the control devices 11 of the respective wiring panel devices 1, power is sent and wired via feed wires L 5 and L 5 wired in the lower wiring housing portion 6. On the other hand, in the wiring panel device 1 positioned at the right end, the small force wiring L2 is introduced into the upper wiring accommodating portion 6 through the backside wiring extraction hole 22 and the through hole 9b provided in the housing surface 20. In the two right side wiring panel devices 1, a branching device 18 is arranged in the upper wiring housing portion 6, and the branch wiring L6 branched by the branching device 18 is a small power wiring housing groove of the rightmost wiring panel device 1. 5 is connected to the control device 11 accommodated in the lower wiring accommodating portion 6. Further, the branch wiring L7 branched by the branching device 18 is sent to the wiring accommodating portion 6 of the other wiring panel device 1 connected in series, and after branching again by the branching device 18, the branch wirings L8 and L8 are respectively reduced in force. The wiring housing groove 5 is connected to a control device 11 housed in the lower wiring housing portion 6. The control device 11 of each wiring panel device 1 and the electrical function unit 2a of the function panel 2 are connected via a power supply line and a control signal line, respectively, and power is supplied from the control device 11 to the electrical function unit 2a. While being supplied, the control device 11 controls the operation of the electric function unit 2a.

このように複数枚の内装パネルPN1〜PN3が連設されると、各配線パネル装置1の上下両側の配線収容部6が互いに連通するので、配線収容部6を通して強電系配線、小勢力配線をそれぞれ送り配線することができ、送り配線を行うことで全体の配線長を短くして、配線のコストを低減できる。また本実施形態では上側の配線収容部6を通して小勢力配線を送り配線するとともに、下側の配線収容部6を通して強電系配線を送り配線しており、強電系配線および小勢力配線を送り配線する経路を上下に分けているので、絶縁性を向上させることができる。尚、上述の実施形態とは逆に、上側の配線収容部6を通して強電系配線を送り配線し、下側の配線収容部6を通して小勢力配線を送り配線してもよい。   When a plurality of interior panels PN1 to PN3 are connected in this way, the wiring housing portions 6 on the upper and lower sides of each wiring panel device 1 communicate with each other, so that the high-voltage wiring and the small power wiring can be routed through the wiring housing portion 6. Each of the wirings can be routed. By performing the feeding wiring, the entire wiring length can be shortened, and the wiring cost can be reduced. Further, in the present embodiment, the small force wiring is fed through the upper wiring housing portion 6 and the high power wiring is fed through the lower wiring housing portion 6, so that the strong power wiring and the small power wiring are fed. Since the path is divided into upper and lower sides, the insulation can be improved. In contrast to the above-described embodiment, the high-power wiring may be fed through the upper wiring housing portion 6 and the small force wiring may be fed through the lower wiring housing portion 6.

ところで、上述の形態では1枚の配線パネル装置1に1つの機能パネル2が取り付けられているが、図8及び図9に示すように1枚の配線パネル装置1に複数枚(例えば2枚)の機能パネル2を取り付けるとともに、配線パネル装置1の配線収容部6内に各々の機能パネルを制御する制御装置11を収容することもでき、異なる機能を有する複数の機能パネル2を配線パネル装置1に取り付けて使用することができる。   By the way, in the above-described embodiment, one functional panel 2 is attached to one wiring panel device 1, but a plurality of (for example, two) one wiring panel device 1 as shown in FIGS. The control panel 11 for controlling each functional panel can be accommodated in the wiring accommodating portion 6 of the wiring panel device 1, and a plurality of functional panels 2 having different functions can be accommodated in the wiring panel device 1. Can be used attached to.

尚、上記の実施形態では配線パネル装置を、壁を構成する内装パネルに適用した形態について説明を行ったが、本発明に係る配線パネル装置を、部屋の天井を構成する内装パネルに適用してもよいことは言うまでもない。   In the above embodiment, the embodiment in which the wiring panel device is applied to the interior panel constituting the wall has been described. However, the wiring panel device according to the present invention is applied to the interior panel constituting the ceiling of the room. Needless to say.

1 配線パネル装置
2 機能パネル
2a 電気機能部
3 パネル本体
4 強電系配線用収納溝
5 小勢力配線用収納溝
6 配線収容部
10a 廻り縁カバー
10b 巾木カバー
11 制御装置
PN 内装パネル
L1 強電系配線
L2 小勢力配線
DESCRIPTION OF SYMBOLS 1 Wiring panel apparatus 2 Functional panel 2a Electrical functional part 3 Panel main body 4 Storage groove for high power wiring 5 Storage groove for small force wiring 6 Wiring housing part 10a Circumference cover 10b Skirting cover 11 Control device PN Interior panel L1 Strong power wiring L2 small force wiring

Claims (6)

建物の内部に設置されて壁、天井のような造営面を構成する矩形板状のパネル本体を備え、
パネル本体の厚み方向における一表面には、所定の電気機能部を備えた機能パネルが着脱自在に取り付けられ、
パネル本体の一表面において機能パネルで覆われる部位には、電気機能部に給電するための電源線を含む強電系配線が収納される強電系配線用収納溝と、電気機能部への制御信号を送信する制御信号線を含む小勢力配線が収納される小勢力配線用収納溝とが、それぞれ、パネル本体の一辺に沿ってパネル本体の一端側から他端側まで設けられ、
パネル本体において両収納溝が延びる方向の端部には、両収納溝が延びる方向と直交する方向の一端側から他端側まで、両収納溝に連通して、両収納溝の内部に収納される強電系配線及び小勢力配線を通すための配線収容部が設けられたことを特徴とする配線パネル装置。
It has a rectangular plate-like panel body that is installed inside a building and forms a construction surface such as a wall or ceiling.
On one surface in the thickness direction of the panel main body, a functional panel having a predetermined electric function part is detachably attached,
In the part covered with the functional panel on one surface of the panel body, there is a storage groove for the high-power wiring that stores the high-power wiring including the power line for supplying power to the electric function section, and a control signal to the electric function section. A small force wiring storage groove for storing a small force wiring including a control signal line to be transmitted is provided from one end side to the other end side of the panel body along one side of the panel body, respectively.
At the end of the panel body in the direction in which both the storage grooves extend, from one end side to the other end side in the direction orthogonal to the direction in which both storage grooves extend, the both storage grooves communicate with each other and are stored in both storage grooves. A wiring panel device characterized in that a wiring housing portion is provided for passing a high-power wiring and a small power wiring.
配線収容部内に、機能パネルの電気機能部を制御する制御装置が配置されることを特徴とする請求項1記載の配線パネル装置。   The wiring panel device according to claim 1, wherein a control device for controlling an electric function portion of the functional panel is disposed in the wiring housing portion. 制御装置には、強電系配線用収納溝に臨む位置に電源線を接続する第1の電線接続手段が設けられるとともに、小勢力配線用収納溝に臨む位置に小勢力配線を接続する第2の電線接続手段が設けられたことを特徴とする請求項2記載の配線パネル装置。   The control device is provided with a first electric wire connecting means for connecting the power line at a position facing the high-power wiring housing groove, and a second power cable connecting the small power wiring at a position facing the small power wiring housing groove. 3. The wiring panel device according to claim 2, further comprising electric wire connecting means. 制御装置及び配線収容部に、第1及び第2の電線接続手段をそれぞれ強電系配線用収納溝、小勢力配線用収納溝に臨ませた状態で、制御装置の配置位置を位置決めする位置決め手段が設けられたことを特徴とする請求項3記載の配線パネル装置。   Positioning means for positioning the control device in the state where the first and second electric wire connecting means face the storage groove for high-power wiring and the storage groove for small force wiring respectively in the control device and the wiring housing portion The wiring panel device according to claim 3, wherein the wiring panel device is provided. 配線収容部は、並設された他の配線パネル装置の配線収容部に連通し、制御装置に接続される強電系配線および小勢力配線のうち少なくとも何れか一方が、配線収容部を通して、他の配線パネル装置の配線収容部に配置された制御装置に送り配線されることを特徴とする請求項2乃至4の何れか1つに記載の配線パネル装置。   The wiring housing portion communicates with the wiring housing portion of another wiring panel device arranged in parallel, and at least one of the high-power wiring and the small force wiring connected to the control device passes through the wiring housing portion, 5. The wiring panel device according to claim 2, wherein the wiring panel device is sent and wired to a control device disposed in a wiring housing portion of the wiring panel device. 強電系配線用収納溝及び小勢力配線用収納溝のうち、少なくとも何れか一方の収納溝には、内部に収納された配線を保持する電線保持手段が設けられたことを特徴とする請求項1乃至5の何れか1つに記載の配線パネル装置。   2. The electric wire holding means for holding the wiring accommodated therein is provided in at least one of the high power wiring storage groove and the small force wiring storage groove. The wiring panel device according to any one of 1 to 5.
JP2009023132A 2009-02-03 2009-02-03 Wiring panel device Expired - Fee Related JP5167162B2 (en)

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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5890017U (en) * 1981-12-09 1983-06-18 松下電工株式会社 Panel power supply structure
JPH08322132A (en) * 1995-05-25 1996-12-03 Matsushita Electric Works Ltd Indoor wiring structure

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5890017U (en) * 1981-12-09 1983-06-18 松下電工株式会社 Panel power supply structure
JPH08322132A (en) * 1995-05-25 1996-12-03 Matsushita Electric Works Ltd Indoor wiring structure

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