JP2011135917A - Mirror cabinet illuminating device - Google Patents

Mirror cabinet illuminating device Download PDF

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JP2011135917A
JP2011135917A JP2009295842A JP2009295842A JP2011135917A JP 2011135917 A JP2011135917 A JP 2011135917A JP 2009295842 A JP2009295842 A JP 2009295842A JP 2009295842 A JP2009295842 A JP 2009295842A JP 2011135917 A JP2011135917 A JP 2011135917A
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light emitting
mirror cabinet
emitting unit
led
door
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Ichiro Kikuchi
一郎 菊地
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Toto Ltd
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Toto Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a mirror cabinet illuminating device which permits a storage space to be increased by making the rear side of the illuminating device installed on the top capable of being stored and ease of use to be improved. <P>SOLUTION: The mirror cabinet illuminating device is installed on the top of a mirror cabinet of a washstand. The illuminating device has a plane luminous portion, and a storage portion is provided on the rear side of the illuminating device. The mirror cabinet illuminating device makes the plane luminous portion into a door of the storage portion. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は、洗面化粧台のミラーキャビネット照明装置に関する発明である。   The present invention relates to a mirror cabinet lighting device for a vanity.

従来、洗面化粧台は、洗面ボウル及び水栓を備えた洗面キャビネットとその上部に取り付けられるミラーキャビネットより構成され、ミラーキャビネットの上部には照明装置が設置されている。洗面キャビネットおよびミラーキャビネットには洗面用具や化粧品などを収納するための収納部があり、収納量が多く使い勝手のよいものが望まれている。   Conventionally, a bathroom vanity is composed of a bathroom cabinet equipped with a bathroom bowl and a faucet and a mirror cabinet attached to the upper part of the bathroom cabinet, and a lighting device is installed on the upper part of the mirror cabinet. The wash cabinet and the mirror cabinet have a storage section for storing a wash tool, cosmetics, etc., and a large amount of storage and easy to use is desired.

このような洗面化粧台では、使い勝手を向上させ収納量を増やすために、ミラーキャビネットの鏡と、壁面に固定される基体の間を収納空間とし、様々な取り合い上の工夫がなされている。(例えば、特許文献1参照。)   In such a vanity table, in order to improve usability and increase the amount of storage, various spaces have been devised for storing space between the mirror of the mirror cabinet and the base fixed to the wall surface. (For example, refer to Patent Document 1.)

しかしながら、ミラーキャビネットの鏡と基体の間の収納空間は、洗面や化粧の際の鏡の使い勝手上、あまり大きくすることも出来ないため、収納量には限界があった。   However, the storage space between the mirror and the base of the mirror cabinet cannot be made too large for the convenience of using the mirror for washing or makeup, so the storage capacity is limited.

特開2008−136507号公報JP 2008-136507 A

本発明は、上記問題を解決するためになされたもので、本発明の課題は、ミラーキャビネットの収納空間を増やし使い勝手を向上させることである。   The present invention has been made to solve the above problems, and an object of the present invention is to increase the storage space of the mirror cabinet and improve the usability.

上記の課題を解決するために、請求項1記載の発明によれば、洗面化粧台のミラーキャビネットの上部に設置されるミラーキャビネット照明装置であって、前記照明装置は平面状発光部を有し、前記照明装置の裏側には収納部が設けられ、前記平面状発光部が収納部の扉であることを特徴とするがミラーキャビネット照明装置が提供される。
これによれば、照明装置が収納部の扉を兼ねることにより、収納空間を増大させることが可能となる。
In order to solve the above-described problems, according to the invention described in claim 1, a mirror cabinet lighting device installed on an upper part of a mirror cabinet of a vanity, wherein the lighting device has a planar light emitting unit. A mirror cabinet lighting device is provided, wherein a storage portion is provided on the back side of the lighting device, and the planar light emitting portion is a door of the storage portion.
According to this, since the lighting device also serves as the door of the storage unit, the storage space can be increased.

請求項2記載の発明によれば、ミラーキャビネット上部の収納部の縁部に線状にLED素子を配置した発光部を設置し、収納部の扉を兼ねる導光板部に線上に配置したLEDからの光を誘導して発光させる構造とすることで扉部分の発熱を抑える。   According to the second aspect of the present invention, the light emitting unit in which the LED elements are linearly arranged at the edge of the storage unit at the upper part of the mirror cabinet is installed, and the light guide plate unit also serving as the door of the storage unit is arranged on the line. Heat generation at the door is suppressed by using a structure that induces and emits light.

請求項3記載の発明によれば、前記のミラーキャビネット照明装置に置いて、ミラーキャビネット上部の収納部の扉を兼ねる平面状発光部を開いた時には、LED発光部への通電を遮断することで電力の節減ができる。   According to invention of Claim 3, when it puts on the said mirror cabinet illuminating device and the planar light emission part which doubles as the door of the accommodating part of a mirror cabinet upper part is opened, it cuts off electricity supply to an LED light emission part. Power can be saved.

請求項4記載の発明によれば、前記のミラーキャビネット照明装置に置いて、ミラーキャビネット上部の収納部の扉を兼ねる導光板部を開いた時には、収納部の縁に線状に配置したLED発光部の一部のみ通電を行うようにすることで、前記収納部の扉を開けた場合には収納部内部を照らすことができると同時に電力の節減もできる。   According to the fourth aspect of the present invention, when the light guide plate part serving also as the door of the storage part at the top of the mirror cabinet is opened in the mirror cabinet lighting device, the LED light emission arranged linearly on the edge of the storage part By energizing only a part of the part, when the door of the storage part is opened, the inside of the storage part can be illuminated and at the same time power can be saved.

本発明によれば、ミラーキャビネット上部に設置した平面状の照明装置の裏側に収納部を設けることで、鏡と基体の間の収納空間の収納量と使い勝手を損ねることなく、収納量を増やしたミラーキャビネットを提供することが出来る。   According to the present invention, the storage amount is increased without impairing the storage amount and the usability of the storage space between the mirror and the base by providing the storage portion on the back side of the flat lighting device installed at the upper part of the mirror cabinet. Mirror cabinet can be provided.

本発明の第一の実施例における洗面化粧台の斜視図The perspective view of the bathroom vanity in the 1st example of the present invention. 本発明の第一の実施例の照明部分の構成を示す断面図Sectional drawing which shows the structure of the illumination part of 1st Example of this invention. 本発明の第二の実施例の照明部分の構成を示す断面図Sectional drawing which shows the structure of the illumination part of 2nd Example of this invention. 本発明の第一の実施例の電気的構成を示す回路図The circuit diagram which shows the electrical constitution of 1st Example of this invention 本発明の第二の実施例の電気的構成を示す回路図The circuit diagram which shows the electrical constitution of the 2nd Example of this invention

図1に、本発明の第一実施例における洗面化粧台の斜視図を示す。 ミラーキャビネット16は、洗面化粧台15の上部に備え付けられている。
ミラーキャビネット16は箱状の基体1に鏡2をとりつけた構造となっており、基体1の鏡2裏側部分に、鏡裏収納部3を設けている。
また、ミラーキャビネット上部には平面状発光部5が備えられており、その裏側には発光部裏収納部4が設けられている。
In FIG. 1, the perspective view of the vanity stand in the 1st Example of this invention is shown. The mirror cabinet 16 is provided on the upper part of the vanity table 15.
The mirror cabinet 16 has a structure in which a mirror 2 is attached to a box-shaped base 1, and a mirror back storage 3 is provided on the back side of the mirror 1 of the base 1.
In addition, a planar light emitting unit 5 is provided at the upper part of the mirror cabinet, and a light emitting unit back storage unit 4 is provided on the back side thereof.

図2(a)に第一の実施例における発光部裏収納部4と平面状発光部5の断面構造を示す。
平面状発光部5は導光板17と、その端部に設けられたLED発光部6より構成されている。
線状に配置したLED発光部6は収納部4の扉を兼ねる導光板17の端面に設置される。導光板17は、LED発光部6からの光を端面より取り込み、反射と拡散により前方へ照射する。これにより、導光板17全体から光が放射され、平面状発光部5全体が発光することとなる。
FIG. 2A shows a cross-sectional structure of the light emitting unit back housing 4 and the planar light emitting unit 5 in the first embodiment.
The planar light-emitting unit 5 is composed of a light guide plate 17 and an LED light-emitting unit 6 provided at the end thereof.
The LED light emitting unit 6 arranged in a line is installed on the end surface of the light guide plate 17 that also serves as the door of the storage unit 4. The light guide plate 17 takes in the light from the LED light emitting unit 6 from the end face, and irradiates it forward by reflection and diffusion. As a result, light is emitted from the entire light guide plate 17 and the entire planar light emitting unit 5 emits light.

図2(b)に第一の実施例における平面状発光部6を移動させ、収納部4を開放した状態の断面構造を示す。
平面状発光部6はその上側の一辺において、基材1とヒンジなどによって回動可能に取り付けられている。これにより、平面状発光部6は起立状態から略水平状態へ上方に回動可能となり、収納部4の扉として機能する。
本実施例では上側の一辺を回転軸とした上下回動の扉としたが、左右の一辺を回転軸とした左右開きの扉とすることもできる。
FIG. 2B shows a cross-sectional structure in a state where the planar light emitting portion 6 in the first embodiment is moved and the storage portion 4 is opened.
The planar light emitting unit 6 is rotatably attached to the upper side by a base material 1 and a hinge or the like. Thereby, the planar light emitting unit 6 can be rotated upward from the standing state to the substantially horizontal state, and functions as a door of the storage unit 4.
In this embodiment, the door is pivoted up and down with the upper side as the rotation axis, but can be a left and right door with the left and right sides as the rotation axis.

扉開閉検知手段7は扉を兼ねる平面状発光部5の開閉状態を検知するもので、平面状発光部5の開閉状態に応じて電気的H/L信号をLED通電切替手段8に出力する。LED通電切替手段8は扉開閉検知手段7からの電気的H/L信号を受けて、線状に配置したLED発光部6の全部もしくは一部に通電または通電の遮断を行う。
扉開閉検知手段7は平面状発光部5に取り付けられたマグネット9と収納部4に取り付けられらた磁気検出回路10により構成されている。平面状発光部5が閉じている時には、マグネット9と磁気検出回路10が接近しているので、磁気検出回路10は磁気を検知してLED通電切替手段8に通電の信号を出力される。こうしてLED発光部6が発光し、LED発光部6の光は平面状発光部5から前方に照射される。
The door opening / closing detection means 7 detects the open / closed state of the planar light emitting unit 5 that also serves as a door, and outputs an electrical H / L signal to the LED energization switching means 8 in accordance with the open / closed state of the planar light emitting unit 5. The LED energization switching means 8 receives the electrical H / L signal from the door opening / closing detection means 7 and energizes or interrupts the energization or energization of all or part of the LED light emitting units 6 arranged linearly.
The door opening / closing detection means 7 includes a magnet 9 attached to the planar light emitting unit 5 and a magnetic detection circuit 10 attached to the storage unit 4. When the planar light emitting unit 5 is closed, the magnet 9 and the magnetic detection circuit 10 are close to each other, so the magnetic detection circuit 10 detects magnetism and outputs an energization signal to the LED energization switching means 8. Thus, the LED light emitting unit 6 emits light, and the light from the LED light emitting unit 6 is irradiated forward from the planar light emitting unit 5.

平面状発光部5を開いた時は、マグネット9と磁気検出回路10が離れるので、磁気検出回路10は磁気を検知しなくなり、LED通電切替手段8には非通電の信号を出力される。こうしてLED発光部6が消灯する。   When the planar light emitting unit 5 is opened, the magnet 9 and the magnetic detection circuit 10 are separated from each other, so that the magnetic detection circuit 10 does not detect magnetism, and a non-energized signal is output to the LED energization switching means 8. Thus, the LED light emitting unit 6 is turned off.

図3は、発光部裏収納部4と扉を兼ねる平面状発光部5の断面構造を示す第二の実施例である。扉を兼ねる平面状発光部5に取り付けられたマグネット9と収納部4に取り付けられらた磁気検出回路10により扉開閉検知手段7を構成している。平面状発光部5は線状に配置されたLED発光部6と導光板17が別体として構成される。このとき、LED発光部6は収納部4に取り付けられており、扉を兼ねる平面上発光部5は導光板のみで構成されている。
こうすることにより、扉として機能する導光板17を開閉させる際に、LED発光部6は動かないので、LED発光部6へ通電する電線が屈曲させる必要がなくなり、屈曲による電線が破断する危険を低減させることができる。
FIG. 3 is a second embodiment showing a cross-sectional structure of the planar light-emitting portion 5 that also serves as the door and the light-emitting portion back storage portion 4. A door opening / closing detection means 7 is constituted by a magnet 9 attached to the planar light emitting portion 5 which also serves as a door and a magnetic detection circuit 10 attached to the storage portion 4. The planar light emitting unit 5 includes a LED light emitting unit 6 and a light guide plate 17 arranged in a line as separate bodies. At this time, the LED light-emitting part 6 is attached to the storage part 4, and the planar light-emitting part 5 that also serves as a door is composed of only a light guide plate.
By doing so, when the light guide plate 17 that functions as a door is opened and closed, the LED light emitting unit 6 does not move, so there is no need to bend the electric wire that is energized to the LED light emitting unit 6, and there is a risk of the electric wire breaking due to the bending. Can be reduced.

また、LED発光部6は収納部4に発光部が内側を向くように設置されており、扉を兼ねる平面状発光部5が閉じているときはLED発光部6のLED素子の全て点灯し、扉が開いているときはLED発光部6のLED素子の一部のみが点灯するようにしている。
このように構成することで平面状発光部5を開いたときにも収納部4の内部に光を照射することが可能となり、収納物の確認がし易くなる。また、LED素子を取り付ける放熱板を収納部4の外面、とくに上面に取り付けることでLED素子からの熱を効率よく放熱することができる。
In addition, the LED light emitting unit 6 is installed in the storage unit 4 so that the light emitting unit faces inward, and when the planar light emitting unit 5 that also serves as a door is closed, all the LED elements of the LED light emitting unit 6 are lit. When the door is open, only a part of the LED elements of the LED light emitting unit 6 is lit.
With this configuration, it is possible to irradiate light inside the storage unit 4 even when the planar light emitting unit 5 is opened, and it is easy to check the stored items. Moreover, the heat from a LED element can be efficiently radiated by attaching the heat sink which attaches an LED element to the outer surface of the accommodating part 4, especially an upper surface.

図4は本発明の電気的構成を示す回路ブロック図の一実施例である。本回路は、ホール素子、増幅器、出力トランジスタなどより構成される磁気検出回路10、トランジスタによるLED通電切替手段8、LED発光部6より構成されている。LED発光部6は複数のLEDが直列接続されたLEDユニット11が複数個並列に接続され、電源13とLED通電切替手段8のトランジスタのコレクタとの間に設置されている。   FIG. 4 is an embodiment of a circuit block diagram showing the electrical configuration of the present invention. This circuit includes a magnetic detection circuit 10 including a Hall element, an amplifier, an output transistor, and the like, LED conduction switching means 8 using a transistor, and an LED light emitting unit 6. The LED light emitting unit 6 includes a plurality of LED units 11 each having a plurality of LEDs connected in series, and is connected between a power source 13 and a collector of a transistor of the LED energization switching unit 8.

スイッチ12が閉じ、収納部4の扉が閉じている時は、扉に取り付けられたマグネットが磁気検出回路10のホール素子に接近するので磁気検出回路10の出力トランジスタQ1の出力はHとなって、LED通電切替手段8のトランジスタQ2をONさせ、トランジスタQ2のコレクタに接続されたLED発光部6に通電が行われてLED発光部6は発光する。一方、収納部4の扉が開いて時は、扉に取り付けられたマグネットが磁気検出回路10のホール素子から離れるので磁気検出回路10の出力トランジスタQ1の出力はLとなって、LED通電切替手段8のトランジスタQ2をOFFさせ、トランジスタQ2のコレクタに接続されたLED発光部6は通電が遮断されLED発光部6は消灯する。   When the switch 12 is closed and the door of the storage unit 4 is closed, the magnet attached to the door approaches the Hall element of the magnetic detection circuit 10, so that the output of the output transistor Q1 of the magnetic detection circuit 10 is H. Then, the transistor Q2 of the LED energization switching means 8 is turned on, and the LED light emitting unit 6 connected to the collector of the transistor Q2 is energized, and the LED light emitting unit 6 emits light. On the other hand, when the door of the storage unit 4 is opened, the magnet attached to the door is separated from the Hall element of the magnetic detection circuit 10, so that the output of the output transistor Q1 of the magnetic detection circuit 10 becomes L, and the LED energization switching means The transistor Q2 in FIG. 8 is turned off, the LED light emitting unit 6 connected to the collector of the transistor Q2 is deenergized and the LED light emitting unit 6 is turned off.

図5は本発明の電気的構成を示す回路ブロック図の別の実施例である。本回路も、ホール素子、増幅器、出力トランジスタなどより構成される磁気検出回路10、トランジスタによるLED通電切替手段8、LED発光部6より構成されている。LED発光部6は複数のLEDが直列接続されたLEDユニット11が複数個で構成されている。複数のLEDユニットの一部は並列に接続され、電源12とLED通電切替手段8のトランジスタのコレクタとの間に設置されているが、残りのLEDユニットは電源13に直接接続されており、スイッチ12を閉じている間は常時点灯する状態となっている。   FIG. 5 is another embodiment of a circuit block diagram showing the electrical configuration of the present invention. This circuit is also composed of a magnetic detection circuit 10 composed of a Hall element, an amplifier, an output transistor, and the like, an LED energization switching means 8 using a transistor, and an LED light emitting unit 6. The LED light emitting unit 6 includes a plurality of LED units 11 in which a plurality of LEDs are connected in series. Some of the plurality of LED units are connected in parallel, and are installed between the power source 12 and the collector of the transistor of the LED energization switching means 8, but the remaining LED units are directly connected to the power source 13, and the switch While 12 is closed, it is always on.

スイッチ12が閉じ、収納部4の扉が閉じている時は、扉に取り付けられたマグネットが磁気検出回路10のホール素子に接近するので磁気検出回路10の出力トランジスタQ1の出力はHとなって、LED通電切替手段8のトランジスタQ2をONさせ、トランジスタQ2のコレクタに接続されたLEDユニットに通電が行われてLED発光部6は全てのLEDユニットが発光する。一方、収納部4の扉が開いて時は、扉に取り付けられたマグネットが磁気検出回路10のホール素子から離れるので磁気検出回路10の出力トランジスタQ1の出力はLとなって、LED通電切替手段8のトランジスタQ2をOFFさせ、トランジスタQ2のコレクタに接続されたLEDユニットは通電が遮断され、LED発光部6はスイッチ12がONの間は常時通電されているLEDユニットのみ発光となる。   When the switch 12 is closed and the door of the storage unit 4 is closed, the magnet attached to the door approaches the Hall element of the magnetic detection circuit 10, so that the output of the output transistor Q1 of the magnetic detection circuit 10 is H. Then, the transistor Q2 of the LED energization switching means 8 is turned on to energize the LED unit connected to the collector of the transistor Q2, and the LED light emitting unit 6 emits light from all the LED units. On the other hand, when the door of the storage unit 4 is opened, the magnet attached to the door is separated from the Hall element of the magnetic detection circuit 10, so that the output of the output transistor Q1 of the magnetic detection circuit 10 becomes L, and the LED energization switching means The LED unit connected to the collector of the transistor Q2 is turned off, and the LED light emitting unit 6 emits light only to the LED unit that is always energized while the switch 12 is on.

1…基体、2…鏡、3…鏡裏収納部、4…ミラーキャビネット上部収納部、5…平面上発光部、6…LED発光部、7…扉開閉検知手段、8…LED通電切替手段、9…マグネット、10…磁気検出回路、11…LEDユニット、12…スイッチ、13…電源、14…ヒートシンク、15…洗面化粧台、16…ミラーキャビネット、17…導光板、
DESCRIPTION OF SYMBOLS 1 ... Base | substrate, 2 ... Mirror, 3 ... Mirror back storage part, 4 ... Mirror cabinet upper storage part, 5 ... Planar light emission part, 6 ... LED light emission part, 7 ... Door opening / closing detection means, 8 ... LED electricity supply switching means, DESCRIPTION OF SYMBOLS 9 ... Magnet, 10 ... Magnetic detection circuit, 11 ... LED unit, 12 ... Switch, 13 ... Power supply, 14 ... Heat sink, 15 ... Vanity, 16 ... Mirror cabinet, 17 ... Light guide plate,

Claims (4)

洗面化粧台のミラーキャビネットの上部に設置されるミラーキャビネット照明装置であって、
前記照明装置は平面状発光部を有し、
前記照明装置の裏側には収納部が設けられ、
前記平面状発光部が収納部の扉であることを特徴とするミラーキャビネット照明装置。
A mirror cabinet lighting device installed on top of a mirror cabinet of a vanity,
The lighting device has a planar light emitting unit,
A storage part is provided on the back side of the lighting device,
The mirror cabinet lighting device, wherein the planar light emitting unit is a door of a storage unit.
請求項1記載のミラーキャビネット照明装置において、
前記平面状発光部は、平面状の導光板と、
前記導光板の端部に配置したLED発光部から構成したことを特徴とするミラーキャビネット照明装置。
In the mirror cabinet lighting device according to claim 1,
The planar light emitting unit includes a planar light guide plate,
A mirror cabinet lighting device comprising an LED light emitting portion disposed at an end of the light guide plate.
請求項1または2記載のミラーキャビネット照明装置において、
前記平面状発光部を開いたときには、LED発光部の発光を休止するようにしたことを特徴とするミラーキャビネット照明装置。
In the mirror cabinet lighting device according to claim 1 or 2,
The mirror cabinet lighting device, wherein when the planar light emitting unit is opened, the light emission of the LED light emitting unit is suspended.
請求項2記載のミラーキャビネット照明装置において、
前記導光板を開いたときには、前記LED光源の一部のみを発光させることを特徴とするミラーキャビネット照明装置。
In the mirror cabinet lighting device according to claim 2,
When the light guide plate is opened, only a part of the LED light source emits light.
JP2009295842A 2009-12-25 2009-12-25 Mirror cabinet illuminating device Pending JP2011135917A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2009295842A JP2011135917A (en) 2009-12-25 2009-12-25 Mirror cabinet illuminating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2009295842A JP2011135917A (en) 2009-12-25 2009-12-25 Mirror cabinet illuminating device

Publications (1)

Publication Number Publication Date
JP2011135917A true JP2011135917A (en) 2011-07-14

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Family Applications (1)

Application Number Title Priority Date Filing Date
JP2009295842A Pending JP2011135917A (en) 2009-12-25 2009-12-25 Mirror cabinet illuminating device

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013128727A (en) * 2011-12-22 2013-07-04 Konica Minolta Inc Radiographic imaging apparatus

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013128727A (en) * 2011-12-22 2013-07-04 Konica Minolta Inc Radiographic imaging apparatus

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