JP2008039355A - Refrigerator - Google Patents

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Publication number
JP2008039355A
JP2008039355A JP2006218075A JP2006218075A JP2008039355A JP 2008039355 A JP2008039355 A JP 2008039355A JP 2006218075 A JP2006218075 A JP 2006218075A JP 2006218075 A JP2006218075 A JP 2006218075A JP 2008039355 A JP2008039355 A JP 2008039355A
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refrigerator
light emitting
light
emitting diodes
emitting diode
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Sachiko Kanehara
幸子 金原
Takahiro Ueno
孝浩 上野
Toshio Mamiya
寿夫 間宮
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Panasonic Holdings Corp
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Matsushita Electric Industrial Co Ltd
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Priority to JP2006218075A priority Critical patent/JP2008039355A/en
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Abstract

<P>PROBLEM TO BE SOLVED: To solve a problem of degrading visibility of stored objects due to the vertical position relation of the stored objects in a refrigerator according to the directivity of light emitting diodes when using the light emitting diodes emitting wavelength in a visible light range, for illumination in the refrigerator. <P>SOLUTION: A mounting substrate 1 laterally mounted with a plurality of light emitting diodes 2 is disposed in a recess 5 installed in the refrigerator, with a fixed distance from the light emitting parts of the light emitting diodes 2 and frontward by the half of a depth dimension of the refrigerator interior 11, as a lighting system 20 at a top face wall surface in the refrigerator so that a lamp cover 7 covers the whole light emitting parts of the light emitting diodes 2. The formation of shadow in the vertical position relation of the stored objects in the refrigerator can thereby be suppressed to improve the visibility of the stored objects. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、照明装置を庫内に設置した冷蔵庫に関するものである。   The present invention relates to a refrigerator in which a lighting device is installed in a cabinet.

近年、冷蔵庫内照明装置として、従来の白熱灯や電球に変わり、発熱性が低い、赤外波長がでない、低電圧駆動できる等の理由で半導体発行素子を用いるものが提案されている。   In recent years, as a lighting device in a refrigerator, a device using a semiconductor issuance element has been proposed for reasons such as low heat generation, no infrared wavelength, low voltage driving, etc., instead of conventional incandescent lamps and light bulbs.

従来の発光ダイオードを照明装置として利用した冷蔵庫としては、複数の発光ダイオードを正方形に配置し、庫内天面に設置して庫内照射しているものがある(例えば、特許文献1参照)。   As a refrigerator using a conventional light-emitting diode as a lighting device, there is a refrigerator in which a plurality of light-emitting diodes are arranged in a square shape and installed on the top surface of the interior to irradiate the interior (for example, see Patent Document 1).

図6は特許文献1に記載された従来の製氷機の照明装置の斜視図であり、図7は図6の照明装置を製氷機の庫内天面に設置した概念図を示すものである。   FIG. 6 is a perspective view of an illumination device for a conventional ice making machine described in Patent Document 1, and FIG. 7 is a conceptual diagram in which the illumination device of FIG. 6 is installed on the top surface of the ice making machine.

図6の照明装置30において、実装基板1は平板状で、一面または両面に回路パターン(図示せず)が形成され、熱伝導性の良好なエポキシ樹脂系の基板や絶縁金属基板を使用する。白色LED2は砲弾状に形成され、GaN系の青色LEDからの青色光を用いて蛍光材を励起して白色光を得る構造で、電流を通電する2本の通電端子3が導出される。   In the illuminating device 30 of FIG. 6, the mounting substrate 1 has a flat plate shape, a circuit pattern (not shown) is formed on one surface or both surfaces, and an epoxy resin-based substrate or an insulating metal substrate with good thermal conductivity is used. The white LED 2 is formed in a bullet shape, and has a structure in which white light is obtained by exciting a fluorescent material using blue light from a GaN-based blue LED.

断熱板4は、ウレタン等の樹脂により平板状に形成され、複数の挿通孔が並設されて、実装基板1と発光ダイオード2との間に設けられる。ここで、発光ダイオード2は通電端子3が断熱板4の挿通孔に挿通され、実装基板1の回路パターンに半田付けされて実装され、複数個が実装基板1に並設される。尚、発光ダイオード2の発熱量が少ない場合には、断熱板4は廃止しても構わない。   The heat insulating plate 4 is formed in a flat plate shape using a resin such as urethane, and is provided between the mounting substrate 1 and the light emitting diode 2 with a plurality of insertion holes arranged in parallel. Here, the light-emitting diode 2 is mounted with the energization terminal 3 inserted through the insertion hole of the heat insulating plate 4 and soldered to the circuit pattern of the mounting substrate 1, and a plurality of the light-emitting diodes 2 are arranged in parallel on the mounting substrate 1. In addition, when the emitted-heat amount of the light emitting diode 2 is small, you may abolish the heat insulation board 4. FIG.

図7において、照明装置30は、製氷機31の庫内の天面32に配置されている。   In FIG. 7, the lighting device 30 is disposed on the top surface 32 in the warehouse of the ice making machine 31.

以上のように構成された発光ダイオードを照明装置として利用した冷蔵庫について、以下その動作を説明する。   The operation of the refrigerator using the light emitting diode configured as described above as a lighting device will be described below.

まず、冷蔵庫の扉が閉まっている時には、発光ダイオード2への通電は行なわず、庫内は照射されていない。扉が開けられると、機械式スイッチやホールIC等の電子式スイッチで開扉状態と判断され、発光ダイオード2に順方向電流が流れて、白色光が発光されて庫内が照射される。
特開2001−82869号公報
First, when the refrigerator door is closed, the light emitting diode 2 is not energized and the interior is not illuminated. When the door is opened, an electronic switch such as a mechanical switch or a Hall IC determines that the door is open, a forward current flows through the light emitting diode 2, white light is emitted, and the interior is irradiated.
JP 2001-82869 A

しかしながら、上記従来の構成では、照明装置が冷蔵庫の庫内天井面に配置されると、冷蔵庫内に庫内を分割する収納棚がある場合、収納棚の下側の保存物の視認性は、収納棚そのものや収納棚上に置かれた保存物により影が発生することにより悪化する。これは、一般家庭用冷蔵庫のように、複数の収納棚を有する場合においては、収納棚が下段になるほど顕著となる。   However, in the above conventional configuration, when the lighting device is arranged on the ceiling surface in the refrigerator, when there is a storage shelf that divides the interior of the refrigerator in the refrigerator, the visibility of the stored items below the storage shelf is: It is aggravated by shadows caused by the storage shelves themselves or the stored items placed on the storage shelves. In the case of having a plurality of storage shelves as in a general household refrigerator, this becomes more conspicuous as the storage shelves become lower.

本発明は、上記従来の課題を解決するもので、冷蔵庫内の保存物の上下位置関係に関わらず、保存物の視認性を向上させることを目的とした照明装置を有する冷蔵庫を提供することを目的とする。   This invention solves the said conventional subject, and provides the refrigerator which has the illuminating device aiming at improving the visibility of preserved matter irrespective of the vertical position relationship of the preserved matter in a refrigerator. Objective.

上記従来の課題を解決するために、本発明の冷蔵庫は、冷蔵庫内の天面壁面に凹部を設け、可視光線領域内の波長を発光する発光ダイオードを複数個実装した実装基板をその凹部内に配設した照明装置を庫内奥行寸法の1/2より手前に配設したものである。   In order to solve the above-described conventional problems, the refrigerator of the present invention is provided with a recess on the top wall of the refrigerator, and a mounting board on which a plurality of light emitting diodes that emit light in the visible light region are mounted. The disposed lighting device is disposed in front of half of the depth dimension in the cabinet.

これによって冷蔵庫内の照明として、保存物に対して前面から照射することができるので、保存物前面が陰にならず、視認性を更に向上することができる。   Thereby, since it can irradiate from a front with respect to a preservation | save thing as illumination in a refrigerator, a preservation | save thing front surface does not become a shadow, but visibility can further be improved.

また、本発明の冷蔵庫は、照明装置の照明手段である発光ダイオードの照射方向を庫内背面方向に向かって照射するようにしたものである。   Moreover, the refrigerator of this invention irradiates the irradiation direction of the light emitting diode which is an illuminating means of an illuminating device toward the back surface direction in a store | warehouse | chamber.

これによって、照明装置を構成する発光ダイオードの指向特性を利用し、保存物の前面への照射の効果を向上することができる。   Thereby, the effect of irradiating the front surface of the stored item can be improved by utilizing the directivity characteristics of the light emitting diodes constituting the illumination device.

本発明の冷蔵庫は、照明装置を冷蔵庫庫内の天面の手前に配設することにより、保存物の上下位置による影の影響を受けず、庫内の下部においても保存物の視認性を向上することができる。   In the refrigerator of the present invention, the lighting device is arranged in front of the top surface in the refrigerator cabinet, so that it is not affected by shadows due to the vertical position of the stored item, and the visibility of the stored item is improved even in the lower part of the cabinet. can do.

請求項1に記載の発明は、冷蔵庫内の天面壁面に凹部を設け、冷蔵庫内を照射する照明装置として、可視光線領域内の波長を発光する発光ダイオードを複数個実装した実装基板を、前記凹部に配設することにより、冷蔵庫内のスペースを確保できる。   The invention according to claim 1 provides a mounting board on which a plurality of light emitting diodes that emit light having a wavelength in the visible light region are mounted as an illumination device that irradiates the inside of the refrigerator by providing a recess on the top wall surface in the refrigerator. By disposing in the recess, a space in the refrigerator can be secured.

請求項2に記載の発明は、請求項1に記載の発明において、前記実装基板を有した照明装置は、庫内奥行寸法の1/2より手前に配設されることにより、庫内の保存物に対して前面から照射することができるので、保存物前面が陰にならず、視認性を更に向上することができる。   According to a second aspect of the present invention, in the invention according to the first aspect, the lighting device having the mounting substrate is disposed in front of the half of the depth dimension in the storage, thereby preserving the storage in the storage. Since the object can be irradiated from the front surface, the front surface of the stored object is not shaded, and the visibility can be further improved.

請求項3に記載の発明は、請求項1または2に記載の発明において、冷蔵庫内の上下方向に複数の棚を有し、前記実装基板を有した照明装置は、前記棚の前端部よりも前方に位置することにより、各棚上の保存物に対して前面から照射することができるので、保存物前面が陰にならず、視認性を更に向上することができる。   The invention according to claim 3 is the invention according to claim 1 or 2, wherein the lighting device having the plurality of shelves in the vertical direction in the refrigerator and the mounting substrate is more than the front end of the shelf. By locating in front, the stored items on each shelf can be irradiated from the front, so the front of the stored items is not shaded and visibility can be further improved.

請求項4に記載の発明は、請求項1から3のいずれか一項に記載の発明において、照明装置の照明手段である発光ダイオードの照射方向は、庫内背面方向に向かって照射することのより、照明装置を構成する発光ダイオードの指向特性を利用し、保存物の前面への照射の効果を向上することができる。   According to a fourth aspect of the present invention, in the invention according to any one of the first to third aspects, the irradiation direction of the light-emitting diode that is the illuminating means of the illuminating device irradiates toward the interior rear surface direction. Thus, the effect of irradiating the front surface of the stored item can be improved by utilizing the directivity characteristics of the light emitting diodes constituting the illumination device.

以下、本発明の実施の形態について、図面を参照しながら説明するが、従来例または先に説明した実施の形態と同一構成については同一符号を付して、その詳細な説明は省略する。尚、この実施の形態によってこの発明が限定されるものではない。   DESCRIPTION OF EMBODIMENTS Hereinafter, embodiments of the present invention will be described with reference to the drawings. The same reference numerals are given to the same configurations as those of the conventional example or the embodiments described above, and detailed descriptions thereof will be omitted. The present invention is not limited to the embodiments.

(実施の形態1)
以下、本発明の実施の形態1を図1から図5に基づいて説明する。図1は本発明の実施の形態1における冷蔵庫の扉を開けた状態の正面図、図2は同実施の形態における図1のB−B線断面図、図3は同実施の形態における冷蔵庫の照明装置の要部縦断面図、図4は同実施の形態1における発光ダイオードの指向特性図、図5は同実施の形態1における冷蔵庫の照明装置の要部断面図である。
(Embodiment 1)
Embodiment 1 of the present invention will be described below with reference to FIGS. FIG. 1 is a front view of a state in which the door of the refrigerator in the first embodiment of the present invention is opened, FIG. 2 is a sectional view taken along the line BB of FIG. 1 in the same embodiment, and FIG. FIG. 4 is a directional characteristic diagram of the light-emitting diode according to the first embodiment, and FIG. 5 is a principal sectional view of the lighting device of the refrigerator according to the first embodiment.

図1、図2において、断熱材で周囲と断熱して構成されている冷蔵庫本体10は、複数の区画に区分されて貯蔵室を形成しており、最上部は、冷蔵室11であり、その直下に製氷室12と第1の冷凍室13を横並びで配置され、つづいて野菜室15が配置され、最下段には第2の冷凍室14が配置される構成となっている。   In FIG. 1 and FIG. 2, the refrigerator main body 10 configured to be insulated from the surroundings with a heat insulating material is divided into a plurality of compartments to form a storage room, and the uppermost part is a refrigerator compartment 11, The ice making room 12 and the first freezing room 13 are arranged side by side immediately below, followed by the vegetable room 15 and the second freezing room 14 at the bottom.

冷蔵室11は、保存物を重ならず整理して保存するための複数の収納棚17を設け、一部上下に可動できるよう構成されている。最下段には、特定低温室16が設けられている。   The refrigerator compartment 11 is provided with a plurality of storage shelves 17 for organizing and storing stored items without overlapping, and is configured to be partially movable up and down. A specific low temperature chamber 16 is provided at the lowest level.

照明装置20は、冷蔵庫庫内の扉開放側前面から見て、庫内11の奥行寸法の1/2より手前で、収納棚17の先端面より手前の天面壁面に横方向に配設されている。   The illuminating device 20 is disposed in a lateral direction on the top wall surface in front of the front end surface of the storage shelf 17 before ½ of the depth dimension of the interior 11 when viewed from the front side of the door opening in the refrigerator. ing.

図3において、照明装置20について詳細に説明する。   In FIG. 3, the illumination device 20 will be described in detail.

実装基板1は平板状で、一面または両面に回路パターン(図示せず)が形成され、熱伝導性の良好なエポキシ樹脂系の基板や絶縁金属基板を使用される。発光ダイオード2は砲弾状に形成され、GaN系の青色LEDからの青色光を用いて蛍光材を励起して白色光を得る構造で、電流を通電する2本の通電端子3が導出される。断熱板4は、ウレタン等の樹脂により平板状に形成され、複数の挿通孔が並設されて、実装基板1と発光ダイオード2との間に設けられる。ここで、発光ダイオード2は通電端子3が断熱板4の挿通孔に挿通され、実装基板1の回路パターンに半田付けされて実装され、横方向に複数個が実装基板1に並設される。尚、発光ダイオード2の発熱量が少ない場合には、断熱板4は廃止しても構わない。   The mounting substrate 1 has a flat plate shape, a circuit pattern (not shown) is formed on one surface or both surfaces, and an epoxy resin-based substrate or an insulating metal substrate having good thermal conductivity is used. The light-emitting diode 2 is formed in a bullet shape, and has a structure in which white light is obtained by exciting a fluorescent material using blue light from a GaN-based blue LED. The heat insulating plate 4 is formed in a flat plate shape using a resin such as urethane, and is provided between the mounting substrate 1 and the light emitting diode 2 with a plurality of insertion holes arranged in parallel. Here, the light-emitting diode 2 is mounted with the energization terminal 3 inserted through the insertion hole of the heat insulating plate 4 and soldered to the circuit pattern of the mounting substrate 1, and a plurality of the light-emitting diodes 2 are arranged in parallel on the mounting substrate 1. In addition, when the emitted-heat amount of the light emitting diode 2 is small, you may abolish the heat insulation board 4. FIG.

次に横方向に複数個の発光ダイオードが実装された実装基板1は、冷蔵庫天面壁8内に設けられた凹部5に外枠9と一体成型されたスペーサー6によって保持されており、発光ダイオード2の発光部から一定の距離をおいて、ランプカバー7が発光ダイオード2の発光部全体を覆うように冷蔵庫庫内天面壁面に照明装置20として配設されている。   Next, the mounting substrate 1 on which a plurality of light emitting diodes are mounted in the horizontal direction is held by a spacer 6 integrally molded with the outer frame 9 in a recess 5 provided in the refrigerator top wall 8. The lamp cover 7 is disposed as a lighting device 20 on the top wall of the refrigerator cabinet so as to cover the entire light emitting part of the light emitting diode 2 at a certain distance from the light emitting part.

図4は、発光ダイオード2の光の照射方向に関する指向性を示したグラフである。照射方向を垂直方向とすると照射される範囲は線内であり、たとえば照射量1/2では照射角は、Dの如く左右各30°である。   FIG. 4 is a graph showing the directivity of the light emitting diode 2 with respect to the light irradiation direction. Assuming that the irradiation direction is the vertical direction, the irradiation range is within a line. For example, at an irradiation amount of 1/2, the irradiation angle is 30 ° on each of the left and right sides as in D.

図5において、実装基板1、白色LEDである発光ダイオード2は、庫内11の内壁面16に対し、角度Aをなしてスペーサー6によって保持されており、この角度Aは発光ダイオード2の指向性により、庫内を満遍なく照射できるように設定された任意の値であり、冷蔵庫庫内の容積と使用する発光ダイオードによって決められるが、最も光が届きにくい庫内の背面方向に配光されるように設定されている。この角度Aとしては、30°から60°の間が望ましい。特に砲弾型の発光ダイオードを使用する場合は、30°近傍とする。   In FIG. 5, the mounting substrate 1 and the light emitting diode 2 which is a white LED are held by the spacer 6 at an angle A with respect to the inner wall surface 16 of the interior 11, and this angle A is the directivity of the light emitting diode 2. It is an arbitrary value set so that the interior can be illuminated evenly, and is determined by the volume in the refrigerator compartment and the light emitting diode used, but the light is distributed in the rear direction of the interior where the light is hard to reach Is set to The angle A is preferably between 30 ° and 60 °. In particular, when a bullet-type light emitting diode is used, the angle is around 30 °.

以上のように構成された冷蔵庫について、以下その動作、作用を説明する。   About the refrigerator comprised as mentioned above, the operation | movement and an effect | action are demonstrated below.

まず、冷蔵庫の扉が閉まっている時には、発光ダイオード2への通電は行なわず、庫内は照射されていない。扉が開けられると、発光ダイオード2に順方向電流が流れて、白色光が発光される。ここまでは従来例と同様の動作である。   First, when the refrigerator door is closed, the light emitting diode 2 is not energized and the interior is not illuminated. When the door is opened, a forward current flows through the light emitting diode 2 and white light is emitted. Up to this point, the operation is the same as that of the conventional example.

次に、発光ダイオード2から発光された白色光は、ランプカバー7に進光して、庫内が照射されるが、冷蔵庫庫内天面の前方から、発光ダイオードの指向性により設定された照射角度により、庫内背面方向に対して強調され保存物の前面及び側面に配光されることとなる。   Next, the white light emitted from the light emitting diode 2 travels to the lamp cover 7 and irradiates the inside of the cabinet. From the front of the top surface of the refrigerator cabinet, the irradiation is set by the directivity of the light emitting diode. Depending on the angle, it is emphasized with respect to the rear side direction of the inside of the cabinet, and light is distributed to the front and side surfaces of the stored item.

以上のように、本実施の形態においては、照明装置からの白色光を、ランプカバー7を通過させて拡散し、冷蔵庫庫内天面の前方から庫内保存物に向かって照射するので、冷蔵庫庫内の保存物の上下位置関係による影の発生を抑制することが出来、保存物の視認性を向上することができる。   As described above, in the present embodiment, the white light from the lighting device is diffused through the lamp cover 7 and irradiated from the front of the top surface of the refrigerator cabinet toward the stored items in the refrigerator. It is possible to suppress the occurrence of shadows due to the vertical position relationship of the stored items in the warehouse, and it is possible to improve the visibility of the stored items.

また、実装基板1の長さを冷蔵庫庫内に対して横方向に伸長、また縦方向に伸長して複数列にダイオードを実装することにより、一層効果を高めることができる。   Further, by mounting the diodes in a plurality of rows by extending the length of the mounting substrate 1 in the horizontal direction with respect to the inside of the refrigerator cabinet and extending in the vertical direction, the effect can be further enhanced.

また、ランプカバー7に光拡散性を持つ材料を含有することにより、指向性のある発光ダイオードの発光をランプカバー7で拡散させて庫内を照射させるので、食品等の保存物に均一な白色光が当たり視覚的な照射ムラがなくせ、更に照明の演出性を高めることができる。   Moreover, since the lamp cover 7 contains a light diffusing material, the light emitted from the directional light-emitting diode is diffused by the lamp cover 7 to irradiate the inside of the cabinet. Irradiation with light can eliminate uneven illumination, and lighting performance can be further improved.

また、ランプカバー7を、エポキシ、アクリル、ポリカーボネート、ポリエチレン、ポリスチレン、ポリプロピレンなどの透明樹脂のうち、一つの材料もしくは複合材料をベース材として形成することにより、ランプカバー7を自由な形状に成型加工できるので、容易な取り付け設計が可能になり、庫内の最適な任意の位置に照明装置が設置できる。   Further, the lamp cover 7 is formed into a free shape by forming one material or a composite material of transparent resin such as epoxy, acrylic, polycarbonate, polyethylene, polystyrene, and polypropylene as a base material. As a result, an easy mounting design is possible, and the lighting device can be installed at an optimum position in the cabinet.

以上のように、本発明にかかる冷蔵庫は、家庭用又は業務用冷蔵庫に発光ダイオードの照明を適用する場合に実施することはもちろん、扉のある物品貯蔵装置など発光ダイオード照明を適用する幅広い設備機器に応用できるものである。   As described above, the refrigerator according to the present invention is not only implemented when light-emitting diode illumination is applied to household or commercial refrigerators, but also a wide range of equipment that applies light-emitting diode illumination, such as an article storage device with a door. It can be applied to.

本発明の実施の形態1における冷蔵庫の扉を開けた状態の正面図The front view of the state which opened the door of the refrigerator in Embodiment 1 of this invention 同実施の形態における図1のB−B線断面図BB sectional view of FIG. 1 in the same embodiment 同実施の形態における冷蔵庫の照明装置の要部縦断面図The principal part longitudinal cross-sectional view of the illuminating device of the refrigerator in the same embodiment 同実施の形態1における発光ダイオードの指向特性図Directional characteristic diagram of light-emitting diode according to Embodiment 1 同実施の形態1における冷蔵庫の照明装置の要部断面図Sectional drawing of the principal part of the illuminating device of the refrigerator in Embodiment 1 従来の製氷機の照明装置の斜視図A perspective view of a conventional ice making machine lighting device 図6の照明装置を製氷機の庫内天面に設置した概念図Conceptual diagram of the lighting device of FIG. 6 installed on the top of the ice machine

符号の説明Explanation of symbols

1 実装基板
2 発光ダイオード
5 凹部
10 冷蔵庫本体
11 冷蔵室
17 収納棚
20 照明装置
DESCRIPTION OF SYMBOLS 1 Mounting board 2 Light emitting diode 5 Recessed part 10 Refrigerator main body 11 Refrigeration room 17 Storage shelf 20 Illumination device

Claims (4)

冷蔵庫内の天面壁面に凹部を設け、冷蔵庫内を照射する照明装置として、可視光線領域内の波長を発光する発光ダイオードを複数個実装した実装基板を、前記凹部に配設したことを特徴とする冷蔵庫。   A concave board is provided on the top wall surface in the refrigerator, and a mounting board on which a plurality of light emitting diodes emitting light having a wavelength in the visible light region are mounted is disposed in the concave section as an illumination device for irradiating the inside of the refrigerator. Refrigerator. 前記実装基板を有した照明装置は、庫内奥行寸法の1/2より手前に配設されることを特徴とした請求項1に記載の冷蔵庫。   The refrigerator according to claim 1, wherein the lighting device having the mounting substrate is disposed in front of ½ of the interior depth dimension. 冷蔵庫内の上下方向に複数の棚を有し、前記実装基板を有した照明装置は、前記棚の前端部よりも前方に位置することを特徴とした請求項1または2に記載の冷蔵庫。   The refrigerator according to claim 1 or 2, wherein a lighting device having a plurality of shelves in a vertical direction in the refrigerator and having the mounting board is positioned in front of a front end portion of the shelf. 前記照明装置の照明手段である発光ダイオードの照射方向は、庫内背面方向に向かって照射することを特徴とした請求項1から3のいずれか一項に記載の冷蔵庫。   The refrigerator according to any one of claims 1 to 3, wherein an irradiation direction of a light emitting diode that is an illuminating unit of the illuminating device irradiates in a rearward direction in the cabinet.
JP2006218075A 2006-08-10 2006-08-10 Refrigerator Pending JP2008039355A (en)

Priority Applications (1)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011027324A (en) * 2009-07-27 2011-02-10 Hitachi Appliances Inc Refrigerator
JP2011027322A (en) * 2009-07-27 2011-02-10 Hitachi Appliances Inc Refrigerator
JP2013002704A (en) * 2011-06-15 2013-01-07 Toshiba Corp Refrigerator
CN102878745A (en) * 2011-07-14 2013-01-16 三菱电机株式会社 Refrigerator
JP2015007496A (en) * 2013-06-25 2015-01-15 株式会社東芝 Refrigerator
JP2017172965A (en) * 2017-06-05 2017-09-28 三菱電機エンジニアリング株式会社 Storage and electronic refrigerator

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH112488A (en) * 1997-06-11 1999-01-06 Toshiba Corp Refrigerator
JPH11159953A (en) * 1997-11-25 1999-06-15 Matsushita Electric Works Ltd Interior illuminator for refrigerator
JP2002147945A (en) * 2000-11-09 2002-05-22 Nakano Refrigerators Co Ltd Freezing and refrigerating reach-in showcase
JP2003048338A (en) * 2001-08-06 2003-02-18 Mitsumi Electric Co Ltd Printing head for optical printer, and printer
JP2004223094A (en) * 2003-01-24 2004-08-12 Adachi Light Co Ltd Mounting structure of light emitting diode for illumination in game machine
JP2005344975A (en) * 2004-06-01 2005-12-15 Toshiba Corp Refrigerator
JP2006132877A (en) * 2004-11-08 2006-05-25 Toshiba Corp Refrigerator

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH112488A (en) * 1997-06-11 1999-01-06 Toshiba Corp Refrigerator
JPH11159953A (en) * 1997-11-25 1999-06-15 Matsushita Electric Works Ltd Interior illuminator for refrigerator
JP2002147945A (en) * 2000-11-09 2002-05-22 Nakano Refrigerators Co Ltd Freezing and refrigerating reach-in showcase
JP2003048338A (en) * 2001-08-06 2003-02-18 Mitsumi Electric Co Ltd Printing head for optical printer, and printer
JP2004223094A (en) * 2003-01-24 2004-08-12 Adachi Light Co Ltd Mounting structure of light emitting diode for illumination in game machine
JP2005344975A (en) * 2004-06-01 2005-12-15 Toshiba Corp Refrigerator
JP2006132877A (en) * 2004-11-08 2006-05-25 Toshiba Corp Refrigerator

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011027324A (en) * 2009-07-27 2011-02-10 Hitachi Appliances Inc Refrigerator
JP2011027322A (en) * 2009-07-27 2011-02-10 Hitachi Appliances Inc Refrigerator
KR101104177B1 (en) * 2009-07-27 2012-01-12 히타치 어플라이언스 가부시키가이샤 Refrigerator
JP2013002704A (en) * 2011-06-15 2013-01-07 Toshiba Corp Refrigerator
CN102878745A (en) * 2011-07-14 2013-01-16 三菱电机株式会社 Refrigerator
JP2013019657A (en) * 2011-07-14 2013-01-31 Mitsubishi Electric Corp Refrigerator
JP2015007496A (en) * 2013-06-25 2015-01-15 株式会社東芝 Refrigerator
JP2017172965A (en) * 2017-06-05 2017-09-28 三菱電機エンジニアリング株式会社 Storage and electronic refrigerator

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