JP2012248438A - Heat radiation structure of led lighting system - Google Patents

Heat radiation structure of led lighting system Download PDF

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JP2012248438A
JP2012248438A JP2011119803A JP2011119803A JP2012248438A JP 2012248438 A JP2012248438 A JP 2012248438A JP 2011119803 A JP2011119803 A JP 2011119803A JP 2011119803 A JP2011119803 A JP 2011119803A JP 2012248438 A JP2012248438 A JP 2012248438A
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led
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shade
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JP4925150B1 (en
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Yukiharu Hamaguchi
幸春 濱口
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PROBLEM TO BE SOLVED: To obtain a heat radiation structure of an LED lighting system in which light of an LED is reflected to the inner face of a shade by a light reflector and heat of each LED is radiated through the light reflector and a body chassis.SOLUTION: The LED lighting system integrally composed with a lighting fixture includes an LED unit having a plurality of LEDs in a lighting fixture body formed in a case of prescribed shape by a body chassis and a shade, a driving device for driving emission of light of each LED, and a power supply receiving part such as a hooking plug or a cable connector corresponding to the power supply part for supplying power from a rosette or a power supply cable installed on a ceiling or a wall. In the heat radiation structure of the LED lighting system, the light-emitting surface of each LED and the light reflector are installed in the body chassis facing the inner face side of the shade, and the end part of the light reflector is installed in contact with the side face of each LED, or, the contact of the side face of each LED and the end part of the light reflector is provided through a heat conduction member of an insulator.

Description

本発明は、LED(発光ダイオード)照明器具一体の照明装置のシェードが面発光すると共に各LEDの熱を光反射板と本体シャーシを介して放熱するLED照明装置の放熱構造に関する。   The present invention relates to a heat dissipation structure of an LED illumination device that emits surface light from a shade of an illumination device integrated with an LED (light emitting diode) illumination fixture and radiates heat of each LED through a light reflector and a main body chassis.

従来、直管形及び環形の蛍光灯又はLED照明灯は、該照明灯と照明器具が、それぞれ独立した単体商品として販売提供され、また省エネ、長寿命としてLED照明灯は、既設の照明器具に取り付けて使用されるものが提供され、その使用におけるLEDの発熱は、専用の放熱板により放熱させているものである。   Conventionally, straight tube and ring-shaped fluorescent lamps or LED illuminating lamps are sold and provided as independent single products, and the LED illuminating lamps are installed in existing luminaires for energy saving and long life. What is attached and used is provided, and the heat generated by the LED in that use is radiated by a dedicated heat sink.

なお、本願で言う照明管又は照明灯(LEDを使用した管状の物を含む)とは、従来の蛍光灯と言われる管状の直管形又は環形のもので、一般的に言われる電球及び蛍光灯などそのものが光る球のことを指し、また照明器具とは、電源を中継供給するためのプラグ及び電源ケーブルの接続端子などの接続部、筐体及びカバーなど上記照明灯を発光及び保持させるための装置を有し、そのものが光らない物を指して言い、また照明器具一体とは、該照明管又は照明灯と照明器具が一体で分離独立しない照明装置を指し、また照明装置は照明灯と照明器具を有するものを言う。   The term “illuminating tube” or “illuminating lamp” (including a tubular object using an LED) in this application refers to a tubular straight tube or ring-shaped tube called a conventional fluorescent lamp. A luminaire refers to a sphere in which the lamp itself shines, and a luminaire is used to emit and hold the above-mentioned illuminating lamp, such as a plug for connecting and supplying power, a connection portion such as a connection terminal of a power cable, a housing and a cover. The lighting device is a lighting device in which the lighting tube or the lighting lamp and the lighting fixture are not separated and independent, and the lighting device is a lighting device. Says those with lighting fixtures.

また、一般市場で提供されている直管の蛍光灯型のLED照明管は、LEDユニットとその駆動回路が内蔵若しくは外付けされた照明装置或いは照明灯の略形態であるが、該市販されているLED照明管は、既設の照明器具に取り付け或いは該器具の形状に準じて取付け使用されるものであるから、ここで言う照明装置と言わない。   Further, a straight tube fluorescent lamp type LED lighting tube provided in the general market is an illuminating device or an illuminating lamp in which an LED unit and its driving circuit are built in or externally attached. Since the LED lighting tube is attached to an existing lighting fixture or used according to the shape of the fixture, it is not referred to as an illuminating device.

そこで、従来のLED照明装置は、LEDの電流を多く流すパワーLEDを使用して明るさを確保する仕様で、それに伴う発熱対策として放熱板を使用して、白色に発光するLEDの長寿命を確保し、一般的に提供されている。   Therefore, the conventional LED lighting device is a specification that uses a power LED that flows a large amount of LED current to ensure brightness, and uses a heat sink as a countermeasure against heat generation, thereby prolonging the long life of the LED that emits white light. Secured and generally provided.

また、従来の照明装置に関しては、照明灯と照明器具が一体として交換使用するものなく、そこで本出願人が照明器具一体として交換使用する照明器具一体のLED照明装置を発明し、それはLED照明装置が取り付けられる天井又は壁面に対して平行方向に照射光が照射できるように、シェード内の外周側から中央方向に向けて、該シェード内の所定位置にLEDユニットを設けると共に該LEDユニットのLED発光素子が照射する該照射光の対面側に反射部材を設けた「照明器具一体のLED照明装置」がある。(例えば、特許文献1参照) Further, with respect to the conventional lighting device, there is no one in which the illuminating lamp and the lighting fixture are exchanged and used as a whole, and therefore, the present applicant invented a lighting fixture-integrated LED lighting device that is used as a lighting fixture integration. An LED unit is provided at a predetermined position in the shade from the outer peripheral side in the shade toward the center so that irradiation light can be emitted in a direction parallel to the ceiling or wall surface on which the LED is mounted, and LED light emission of the LED unit There is an “LED lighting device integrated with a lighting fixture” in which a reflecting member is provided on the opposite side of the irradiation light emitted from the element. (For example, see Patent Document 1)

また、反射板を放熱に利用する先願技術として、LED10と反射板8とで構成される照明装置で、LEDの光を反射する反射板と、絶縁基板の金属ベース面と面接触し、該金属ベース面後方から前記筐体を挿通して延出する放熱板5とから構成されるとする実施例を示す「LED照明装置」がある。(例えば、特許文献2参照) In addition, as a prior application technique that uses a reflector for heat dissipation, an illumination device composed of the LED 10 and the reflector 8 is in surface contact with the reflector that reflects the light of the LED and the metal base surface of the insulating substrate, There is an “LED illuminating device” showing an embodiment in which the heat sink 5 is inserted and extended from behind the metal base surface. (For example, see Patent Document 2)

特許登録第4676563号公報Patent Registration No. 4676563 実用新案登録第3149696号公報Utility Model Registration No. 3149696

従来のLED照明に使用されるLEDの発熱は、照明光の明るさを得るために定格電流値が大きく、大電流で使用する事による発熱であって、その熱のためLEDが劣化することを防ぐために放熱する専用の放熱板を必要とし、また明るさの改善と、LEDの点光源を面発光させるためには、蛍光管タイプなどのカバーを面発光させる反射板を使用し、このような課題を解決するために電流値と反射板を使用することにより、その明るさと面発光が得られているが、そのための専用の放熱板の高効率放熱とその重量及びコストに課題があり改善が求められていた。   The heat generation of the LED used in the conventional LED lighting has a large rated current value in order to obtain the brightness of the illumination light, and the heat generation due to the use of a large current, the LED deteriorates due to the heat. In order to prevent heat dissipation, a special heat sink is necessary, and in order to improve the brightness and to make the LED point light source emit light, use a reflector such as a fluorescent tube that emits light on the surface. The brightness and surface emission are obtained by using the current value and the reflector to solve the problem, but there is a problem with the high efficiency heat dissipation of the dedicated heat sink and its weight and cost. It was sought after.

そして、その高効率放熱において、放熱板にLEDの熱を伝えるのに、LEDが設けられる基板を介して放熱板に伝える手段が一般的であり、その基板の熱伝導性とコストが課題となっており、それは電子部品の実装に広く使われているガラスエポキシは、熱伝導性の高い金属基板に対して熱伝導が低く、しかしその金属基板では、逆に、ガラスエポキシ基板に比べて加工性が悪く、価格もガラス・エポキシ基板の3倍程度と高いと言う課題があり、LEDから放熱板への高熱伝導性の改善と高い放熱性の要求があった。 In the high efficiency heat dissipation, means for transmitting heat of the LED to the heat radiating plate is generally transmitted to the heat radiating plate through the substrate on which the LED is provided, and the thermal conductivity and cost of the substrate become problems. Glass epoxy, which is widely used for mounting electronic components, has low thermal conductivity with respect to a metal substrate with high thermal conductivity, but on the contrary, the metal substrate is more workable than a glass epoxy substrate. However, there is a problem that the price is about three times as high as that of the glass / epoxy substrate, and there is a demand for improvement in high thermal conductivity from the LED to the heat sink and high heat dissipation.

また、上記LEDの発熱について、LED照明を手掛けるメーカー各社が一般に公表している4万時間の寿命を実現するには、LEDチップの接合部(発光部)温度を約145℃以下に抑えることが求められ、その発光部の温度について、LEDチップの接合部の表面温度が185度では、1000時間程度と急激に寿命時間が低下し、実用に適さない。 In addition, with regard to the heat generation of the LED, in order to realize the life of 40,000 hours publicly disclosed by manufacturers that deal with LED lighting, it is necessary to suppress the temperature of the junction (light emitting part) of the LED chip to about 145 ° C. or less. Regarding the temperature of the light emitting part, when the surface temperature of the joint part of the LED chip is 185 degrees, the lifetime is rapidly reduced to about 1000 hours, which is not suitable for practical use.

そして、LEDのパッケージ温度が10℃下がると寿命が2倍延びるという試験結果があり、例えばLEDの発熱対策として、一般的なガラス・エポキシ基板を使用して、消費電力が1WのパワーLEDを使って基盤裏の発熱温度では70℃前後であり、より放熱効果を求める放熱基板には、上述した熱伝導性が高い金属基板を使うことが多く、一般的には、主材料としてAl(アルミウム)を使った金属板に絶縁層と配線層を積層したものがあり、上述照明に使用されるLEDには、熱に対する課題が多くありその改善が求められていた。 And there is a test result that the lifetime is doubled when the package temperature of the LED is lowered by 10 ° C. For example, as a countermeasure against heat generation of the LED, a power LED with a power consumption of 1 W is used using a general glass epoxy board. The heat generation temperature on the back of the board is around 70 ° C, and the heat dissipation board that requires more heat dissipation often uses the above-mentioned metal substrate with high thermal conductivity. Generally, Al (aluminum) is the main material. There is a laminate in which an insulating layer and a wiring layer are laminated on a metal plate using the LED, and there are many problems with heat in the LED used in the above-described illumination, and improvement thereof has been demanded.

しかして、特許文献1の本出願人が発明した「照明器具一体のLED照明装置」は、天井又は壁などの電源供給部から該照明器具一体の照明装置を着脱交換し、駆動回路及びLEDユニットの基板9からの熱を、熱伝導性支持部材を介して支持本体で放熱させ、またLEDユニットからの照射光を、シェードで乱反射させて面発光させているので、上述した課題のように熱伝導性が低く、その課題の改善が求められていた。   Thus, the “LED lighting device integrated with a lighting fixture” invented by the present applicant of Patent Document 1 is a drive circuit and an LED unit in which the lighting device integrated with the lighting fixture is attached and detached from a power supply unit such as a ceiling or a wall. The heat from the substrate 9 is dissipated by the support body through the heat conductive support member, and the irradiation light from the LED unit is diffusely reflected by the shade to emit surface light. The conductivity is low, and improvement of the problem has been demanded.

なお、本出願人が発明した「照明器具一体のLED照明装置」の上述以外の課題の解決としては、既設の古い照明器具を使い回しして直管型LED照明灯を使用すると、その直管型LED照明灯と照明器具との寿命差から、交互に取替えることとなり、そのことで明るさなどの効率の悪さと、本来持つ寿命が短くなる弊害を改善するために照明器具一体としてそれを交換するもので、また反射板により効率よく該シェードを面発光させると共に天井方向にも反射させ、天井の間接照明としての効果と、またシェードはより広い発光面積で発光させて、部屋全体に明るく配光させるものであります。   In addition, as a solution to the problems other than those described above of the “lighting device-integrated LED lighting device” invented by the present applicant, when a straight tube type LED lighting light is used by rotating an existing old lighting device, the straight tube LED lamps and lighting fixtures will be replaced alternately due to the difference in life, so that the lighting fixtures are replaced as a unit to improve the efficiency of brightness and other problems and shorten the life expectancy. In addition, the reflector efficiently emits light to the surface of the shade and reflects it in the direction of the ceiling. The effect of this is as an indirect lighting of the ceiling, and the shade emits light with a wider light emitting area, and is brightly distributed throughout the room. It is what makes it light.

そして、その課題解決の背景には、近年、直管型LED照明灯が、省エネ、長寿命の4万〜5万時間(約10年)と言うことで提供され、一方、既設の照明器具の寿命は、一般的に10年程度と、またその範囲で使用されており、そのことから古い既設の照明器具に、新しい直管型LED照明灯に途中交換すると、その交換時の既存との寿命差によりその効率の落ちた古い既設の照明器具に影響されて、交換した新しいLED照明灯の効率が本来の性能が出せなかった。 And in the background of solving the problem, in recent years, straight tube type LED lighting has been provided with 40,000 to 50,000 hours (about 10 years) of energy saving and long life, while the existing lighting fixtures The service life is generally about 10 years and within that range. Therefore, if the old existing lighting fixture is replaced with a new straight tube type LED lighting, the service life with the existing one at the time of replacement is changed. Due to the difference, it was affected by the old existing lighting fixtures whose efficiency was lowered, and the efficiency of the new LED lighting lamps replaced could not achieve the original performance.

このようなLED照明灯と照明器具の新旧の混合使用することは、新旧製品の具体的な効率の悪さに差が有ることが、一般的に認識されなく、そもそも従来の照明器具が球を交換して使用することは、その球の寿命が1〜2年程度と極端に短く、その交換の合理性から始まったことであり、これを近年、提供が始まった長寿命の直管型LED照明灯を、古い既設の照明器具に適用して交換することは、照明器具の寿命から考えると、むしろ直管型LED照明灯と照明器具を同時に交換するのが最も効率よく、省エネ、長寿命の観点からも必要で、上述した本出願人が発明した「照明器具一体のLED照明装置」は、上述課題を解決するために成された発明である。 It is generally not recognized that the mixed use of old and new LED lighting and lighting fixtures has a difference in specific inefficiencies between the old and new products. In the first place, conventional lighting fixtures replace balls. The long-life straight tube type LED lighting that has been provided recently in recent years is that the life of the sphere is extremely short, about 1 to 2 years. Considering the life of the luminaire, replacing the lamp by applying it to the old existing luminaire is more efficient when replacing the straight tube type LED illuminator and the luminaire at the same time. The “LED lighting device integrated with a lighting fixture” invented by the present applicant described above is an invention made in order to solve the above-described problems.

さらに、開示される特許文献2の「LED照明装置」は、反射板をLED放熱フィンとして利用することの記載があり、つまり実用新案登録請求の範囲の請求項1に「複数のLEDを配置した金属ベース絶縁基盤と、該絶縁基板を取り付け一端側を開放した筐体と、該筐体の内面に前記LEDを配置した絶縁基板のLED配置面を囲み、該LEDの光を反射する反射板と、前記絶縁基板の金属ベース面と面接触し、該金属ベース面後方から前記筐体を挿通して延出する放熱板5とから構成される。」としており、しかし、LEDの熱は主にLEDチップの接合部(発光部)で発生する熱であるから、その熱を金属ベース絶縁基盤を介して絶縁基板の金属ベース面と面接触させて反射板に伝えられるから、金属ベース絶縁基盤の熱伝導性は放熱をする上で最も大きな要因となり、またその面接触度合にも大きく左右され、そのような金属ベース絶縁基盤を介して放熱する構造は、上述したように熱伝導性による放熱性の課題があり、その改善が求められていた。 Further, the disclosed “LED lighting device” in Patent Document 2 has a description that the reflector is used as the LED heat radiation fin, that is, “a plurality of LEDs are arranged in claim 1 of the utility model registration claim”. A metal-based insulating base; a housing attached with the insulating substrate and having one end open; a reflector that surrounds the LED placement surface of the insulating substrate on which the LED is placed on the inner surface of the housing; , And a heat sink 5 that is in surface contact with the metal base surface of the insulating substrate and extends through the housing from the rear of the metal base surface. ”However, the heat of the LED is mainly. Since it is the heat generated at the junction (light emitting part) of the LED chip, the heat is transmitted to the reflecting plate through the metal base insulating substrate and brought into surface contact with the metal base surface of the insulating substrate. Thermal conductivity is heat dissipation The structure that radiates heat through such a metal-based insulating base has the problem of heat dissipation due to thermal conductivity as described above. There was a need for improvement.

本発明は、上記課題を有効に達成するために、第1の解決手段として、照明器具一体のLED照明装置に、LEDユニットの発光面と光反射板をシェード内面側に向けて本体シャーシに設けると共に該光反射板の端部を各LED側面に当接させて設けたことにより、
LEDの光を光反射板にてシェードを面発光させると共に該LEDの熱を、各LED側面から光反射板を介して本体シャーシに熱伝導させて該本体シャーシで放熱させる事としている。
In order to effectively achieve the above-mentioned problems, the present invention provides, as a first solving means, an LED lighting device integrated with a lighting fixture, and a light emitting surface of the LED unit and a light reflecting plate facing the inner surface of the shade on the main body chassis. And by providing the end of the light reflecting plate in contact with each LED side surface,
The light of the LED is caused to emit light from the shade by the light reflection plate, and the heat of the LED is thermally conducted from the side surface of each LED to the main body chassis via the light reflection plate to be radiated by the main body chassis.

また、第2の解決手段として、各LED側面と光反射板の端部との当接を、変形可能な絶縁体の熱伝導部材を介して設けたことにより、
LEDの熱を、各LED側面から絶縁体の熱伝導部材を介して光反射板に熱伝導させると共に本体シャーシに熱伝導させて該本体シャーシで放熱させる事としている。
Further, as a second solution, by providing the contact between each LED side surface and the end of the light reflecting plate via a heat conductive member of a deformable insulator,
The heat of the LED is conducted from the side surface of each LED to the light reflecting plate through the heat conducting member of the insulator, and is conducted to the main body chassis to be radiated by the main body chassis.

本発明は、上述したそれぞれの手段によって有効な効果が得られるようにしたもので、特に、本体シャーシとシェードにより所定形状の筐体を形成して照明器具本体とすると共に該照明器具本体内に、複数のLED(発光ダイオード)を回路基板上に設けたLEDユニットと、
該照明器具本体に各LEDを発光駆動させる駆動装置と、
天井又は壁面に設けられるローゼット又は電源ケーブルから電源供給する電源供給部に対応する引っ掛けプラグ、プラグ又はケーブル接続端子部などの電源受給部を設けた照明器具一体のLED照明装置において、
LEDユニットの各LEDが発光する光を光反射板によってシェード内面側に反射させると共に各LEDの熱を光反射板を介して本体シャーシから放熱できるように、LEDユニットの発光面と光反射板をシェード内面側に向けて本体シャーシに設けると共に該光反射板の端部を各LED側面に当接させて設けた第1の解決手段により、
LEDユニットの各LEDから発する光をシェード内面側に発光させると共に光反射板にてシェードを面発光させることができ、また該LEDの熱を、各LED側面から直接、光反射板を介して本体シャーシに熱伝導させて該本体シャーシで放熱させるので、専用の放熱板が必要なく、その放熱板の重量とコストが改善できる。
In the present invention, an effective effect can be obtained by each of the above-described means. In particular, a housing having a predetermined shape is formed by a main body chassis and a shade to form a lighting fixture body, and in the lighting fixture body. An LED unit having a plurality of LEDs (light emitting diodes) provided on a circuit board;
A driving device for driving each LED to emit light in the lighting fixture body;
In an LED lighting device integrated with a lighting fixture provided with a power receiving unit such as a hook plug, a plug or a cable connection terminal unit corresponding to a power supply unit that supplies power from a rosette or a power cable provided on a ceiling or a wall surface,
The light emitting surface of the LED unit and the light reflecting plate are arranged so that the light emitted from each LED of the LED unit is reflected to the inner surface of the shade by the light reflecting plate and the heat of each LED can be dissipated from the main body chassis via the light reflecting plate. The first solving means provided on the main body chassis toward the inner surface of the shade and the end of the light reflecting plate is provided in contact with each LED side surface,
The light emitted from each LED of the LED unit can be emitted to the inner surface of the shade and the shade can be surface-emitted by the light reflecting plate, and the heat of the LED can be directly transmitted from the LED side surface via the light reflecting plate. Since the heat is conducted to the chassis and radiated by the main body chassis, a dedicated heat radiating plate is not required, and the weight and cost of the heat radiating plate can be improved.

また、そのLEDの熱に関して、該LEDの発熱は、LEDチップの接合部(発光部)で発生するものであり、その熱によりLEDの寿命が短くなるのは、白色光を得るための蛍光体の劣化に他ならないから、LEDから発する熱と、そのLEDの寿命を決める蛍光体の最も近い位置から放熱することが課題解決となり、よってLEDチップの発光する接合部に近いLEDパッケージの側面から直接、光反射板を介して本体シャーシから放熱することで効率よく放熱でき、その観点から課題の改善をしているので、放熱の効果は大きい。 Regarding the heat of the LED, the heat generated by the LED is generated at the junction (light emitting part) of the LED chip, and the life of the LED is shortened by the heat. The phosphor for obtaining white light Therefore, the problem is to dissipate heat from the LED and heat from the closest position of the phosphor that determines the lifetime of the LED, and therefore directly from the side of the LED package near the LED chip's emitting joint. Since the heat can be radiated efficiently from the main body chassis through the light reflecting plate, and the problem has been improved from that point of view, the heat radiating effect is great.

さらに、LEDユニットからの照射光を、光反射板によりシェード方向に反射させることで、効率よくシェードを面発光させると共に天井方向にも反射させているので、天井を明るくして間接照明としての効果も得られ、また従来の直管型LED照明灯の直管形又は環形はその発光面積が小さく限られているが、本願のシェードの面発光は、より広い発光面積が得られ、部屋全体に明るく配光できる照明器具一体の照明装置として提供できる。   In addition, the light reflected from the LED unit is reflected in the shade direction by the light reflector so that the shade is efficiently surface-emitting and also reflected in the ceiling direction. In addition, the straight tube shape or the ring shape of the conventional straight tube type LED lighting lamp has a small light emitting area, but the surface light emission of the shade of the present application can provide a wider light emitting area, and can be applied to the entire room. It can be provided as a lighting device integrated with a lighting fixture capable of bright light distribution.

しかして、各LED側面と光反射板の端部との当接を、変形可能な絶縁体の熱伝導部材を介して設けた第2の解決手段により、
各LED側面に変形することで密着できる絶縁体の熱伝導部材により、効率よくLEDの熱を光反射板に熱伝導でき、それは各LED側面から直接、絶縁体の熱伝導部材を介して光反射板に熱伝導させると共に本体シャーシに熱伝導することで該本体シャーシから効率よく放熱させ、また絶縁体である熱伝導部材により、LED側面に直接、熱伝導部材を接触させてもLEDに供給する電源からの漏電も無く安全に使用できる。
Thus, the second solution means that the contact between each LED side surface and the end of the light reflecting plate is provided via a heat conductive member of a deformable insulator,
The heat conduction member of the insulator that can be in close contact with each LED side surface can efficiently conduct the heat of the LED to the light reflection plate, which reflects light directly from the LED side surface through the heat conduction member of the insulator. Conducting heat to the plate and conducting heat to the main body chassis efficiently radiates heat from the main body chassis, and supplies heat to the LED even if the heat conducting member is in direct contact with the LED side surface by the heat conducting member that is an insulator. Safe to use without leakage from the power supply.

上述のことから、従来のように高価な金属基板を使用しなくとも、LEDパッケージの側面から直接放熱することで効率よく十分放熱でき、よって安価なガラスエポキシの基板を使用することもできることからコストを省くことができ、さらに熱による劣化を防ぐことで、LEDユニットの長寿命化が図れる。 From the above, even if an expensive metal substrate is not used as in the prior art, it is possible to efficiently and sufficiently dissipate heat by directly dissipating heat from the side surface of the LED package, and thus an inexpensive glass epoxy substrate can be used. The life of the LED unit can be extended by preventing deterioration due to heat.

なお、天井などの電源供給部から直接、照明装置を照明器具一体で交換することで、本来持つ照明装置のLEDユニットの照明効率が最もよく発揮でき、またその本来持つ、寿命も長く保つことができる照明器具一体の照明装置として提供できる。
よって、これらのことから本発明は、実用上著大な効果を奏する。
In addition, by directly exchanging the lighting device with the lighting fixture directly from the power supply unit such as the ceiling, the lighting efficiency of the LED unit of the original lighting device can be exhibited best, and the inherent lifetime can be kept long. It can be provided as a lighting device integrated with a lighting fixture.
Therefore, the present invention has a practically significant effect.

本発明の使用時状態を示す側面断面図である。It is side surface sectional drawing which shows the state at the time of use of this invention. 本発明の実施例の斜視図である。It is a perspective view of the Example of this invention. 本発明のLEDユニット3の要部を拡大した側面断面図である。It is side surface sectional drawing to which the principal part of LED unit 3 of this invention was expanded. 本発明のLED11とコネクション9の取付状態を示す斜視図である。It is a perspective view which shows the attachment state of LED11 and the connection 9 of this invention. 本発明の側面断面図で、光の照射状態を示す想像図である。It is a side sectional view of the present invention and is an imaginary view showing a light irradiation state. 本発明の他の実施例の使用時状態を示す要部の側面断面図である。It is side surface sectional drawing of the principal part which shows the state at the time of use of the other Example of this invention. 本発明のその他の実施例で一部省略した斜視図である。It is the perspective view which abbreviate | omitted partially in the other Example of this invention. 本発明の図7の矢視C-C線断面図である。FIG. 8 is a sectional view taken along the line CC of FIG. 7 according to the present invention. 本発明のその他の実施例で要部の側面断面図である。It is side surface sectional drawing of the principal part in the other Example of this invention.

本体シャーシとシェードにより所定形状の筐体を形成した照明器具本体に、複数のLEDを回路基板上に設けたLEDユニットと各LEDを発光駆動させる駆動装置と、天井又は壁面に設けられるローゼット又は電源ケーブルから電源供給する電源供給部に対応する引っ掛けプラグ、プラグ又はケーブル接続端子部などの電源受給部を設けて照明器具一体のLED照明装置とし、上記LEDユニットの各LEDが発光する光を光反射板によってシェード内面側に反射させると共に各LEDの熱を、光反射板を介して本体シャーシから放熱できるように、LEDユニットの発光面と光反射板をシェード内面側に向けて本体シャーシに設けると共に該光反射板を各LED側面に当接させて設け、又は該LEDユニットの各LED側面と光反射板を、変形可能な絶縁体の熱伝導部材を介して当接させて設けたLED照明装置の提供を実現させた。 An illuminator body in which a housing of a predetermined shape is formed by a body chassis and a shade, an LED unit in which a plurality of LEDs are provided on a circuit board, a driving device for driving each LED to emit light, and a rosette or power source provided on a ceiling or a wall surface A power receiving part such as a hook plug, plug or cable connection terminal part corresponding to the power supply part that supplies power from the cable is provided to form an LED lighting device integrated with a lighting fixture, and the light emitted by each LED of the LED unit is reflected. The LED unit has a light emitting surface and a light reflecting plate facing the inner surface of the shade so that the LED can be reflected from the inner surface of the shade and the heat of each LED can be dissipated from the main body chassis via the light reflector. The light reflecting plate is provided in contact with each LED side surface, or each LED side surface of the LED unit and the light reflecting plate are provided. Through the heat conducting member of a deformable insulating material by contact was achieved to provide a LED lighting device provided.

本発明の第一実施例を図面に基づいて説明すると、図1及び図2において、1はLED照明装置で、該LED照明装置1は、本体シャーシ2にLEDユニット3と光反射板4,4とシェード5をそれぞれ設けて照明器具一体のLED照明装置1としている。   A first embodiment of the present invention will be described with reference to the drawings. In FIGS. 1 and 2, reference numeral 1 denotes an LED illuminating device. The LED illuminating device 1 includes an LED unit 3 and light reflecting plates 4, 4 in a main body chassis 2. And the shade 5 are provided respectively to form the LED lighting device 1 integrated with a lighting fixture.

そこで、該LED照明装置1の本体シャーシ2は、図1に示すように、下向の略コの字状で、該本体シャーシ2と板状の取付シャーシ6とで筐体を形成し、その内部にLEDユニット3を駆動発光させる駆動装置7を内設させると共に該本体シャーシ2と、半透明の乳白色で側面端面が略楕円状に形成されたシェード5を対面接合させて、図1及び図2に示すように所定形状の筐体とした照明器具本体8を形成している。   Therefore, as shown in FIG. 1, the main body chassis 2 of the LED lighting device 1 has a substantially downward U shape, and the main body chassis 2 and the plate-like mounting chassis 6 form a casing. A driving device 7 for driving and emitting the LED unit 3 is installed inside, and the main body chassis 2 and a shade 5 having a semi-transparent milky white side surface formed in a substantially elliptical shape are face-to-face joined to each other. As shown in FIG. 2, a luminaire body 8 is formed as a casing having a predetermined shape.

また、図1に示すように、該取付シャーシ6にLEDユニット3を配置すると共に該LEDユニット3の左右外側に熱伝導部材のコネクション9,9を介して所定形状に形成した光反射板4,4を配置している。   In addition, as shown in FIG. 1, the LED unit 3 is disposed in the mounting chassis 6 and the light reflectors 4 are formed in a predetermined shape on the left and right outer sides of the LED unit 3 via connections 9 and 9 of heat conducting members. 4 is arranged.

そこで、該LEDユニット3は、図3及び図4に示すように、回路基板10上にLED11,11,…を二列に配置すると共に所定仕様のワット数に準じた数をそれぞれ所定間隔で配置し、また回路基板10上と、該LED11,11,…の外側側面に密接させて該コネクション9,9を設けると共に該コネクション9,9を介して光反射板4,4をそれぞれ配置している。   Therefore, as shown in FIGS. 3 and 4, the LED unit 3 has the LEDs 11, 11,... Arranged in two rows on the circuit board 10, and the number according to the wattage of the predetermined specification is arranged at predetermined intervals. In addition, the connections 9 and 9 are provided on the circuit board 10 and in close contact with the outer side surfaces of the LEDs 11, 11,... And the light reflecting plates 4 and 4 are disposed through the connections 9 and 9, respectively. .

該コネクション9は、図3に示すように、形状が略英字のL状で該先端部を折り返すように形成して、その折り返し部分に上記光反射板4の端面部を若干嵌入することで、該光反射板4をそのコネクション9に取付け、そこの接触部分から熱伝導させるようにし、また該コネクション9は軟質プラスチックの絶縁体で、且つ熱伝導性がよい材質で構成されている。   As shown in FIG. 3, the connection 9 is formed in an L shape with a substantially alphabetic shape so that the tip portion is folded back, and the end surface portion of the light reflecting plate 4 is slightly inserted into the folded portion, The light reflection plate 4 is attached to the connection 9 so as to conduct heat from the contact portion. The connection 9 is made of a soft plastic insulator and a material having good heat conductivity.

また、該光反射板4は、図1に示すように側面略山状に形成して、LEDユニット3のLED11,11,…側面に沿うように配置すると共にシェード5に対面させて、取付シャーシ6と、上記コネクション9に該光反射板4の端面部を若干嵌入保持させて設けている。   Further, the light reflection plate 4 is formed in a substantially mountain shape on the side surface as shown in FIG. 1 and is arranged along the side surfaces of the LEDs 11, 11,... Of the LED unit 3 and faces the shade 5. 6 and the connection 9 are provided by slightly fitting and holding the end face portion of the light reflecting plate 4.

しかして、該LED照明装置1は、図1及び図2に示すように、天井12に設けられたローゼット13に、本体シャーシ2の略中央上部に設けられる引っ掛けプラグ14を係止することで天井12に吊設され、またLEDユニット3への電源供給の経路は、上記ローゼット13から引っ掛けプラグ14をへて交流電源を駆動装置7へ供給すると共に該駆動装置7にて直流の所定電圧と電流制限回路により所定電流をLEDユニット3の各LED11,11,…に供給され各LED11,11,…が駆動して発光する。   1 and 2, the LED lighting device 1 is secured to a rosette 13 provided on the ceiling 12 by engaging a hook plug 14 provided substantially at the upper center of the body chassis 2 with the ceiling. The power supply path to the LED unit 3 is suspended from the rosette 13 through the hook plug 14 and supplied with AC power to the driving device 7, and at the driving device 7, a predetermined DC voltage and current are supplied. A predetermined current is supplied to each LED 11, 11,... Of the LED unit 3 by the limiting circuit, and each LED 11, 11,.

そして、各LED11,11,…が発光した光束は、図5に示すように、各LED11,11,…から直接シェード5内部照射される光束(図中矢視A)と、各LED11,11,…から光反射板4,4を介してシェード5内部へ反射照射される光束(図中矢視B)があり、該各光束がシェード5内面と光反射板4,4とで乱反射し、且つシェード5面の乳白色により、各LED11,11,…の点光源が、シェード5の面、全体を明るく面発光させるので、より広い発光面積が得られ、それにより部屋全体に明るく配光でき、またその面発光により、天井にも反射して天井を明るくすることで、間接照明としての効果も得られる。   As shown in FIG. 5, the luminous flux emitted from each LED 11, 11,... Is directly irradiated to the inside of the shade 5 from each LED 11,. There is a light beam (arrow B in the figure) that is reflected and irradiated into the shade 5 through the light reflecting plates 4, 4, and each light beam is irregularly reflected by the inner surface of the shade 5 and the light reflecting plates 4, 4. Because of the milky white color of the surface, the point light source of each LED 11, 11,... Illuminates the surface of the shade 5 and the entire surface brightly, so that a wider light emitting area can be obtained. The effect of indirect illumination is also obtained by brightening the ceiling by reflecting light to the ceiling.

しかして、図6に示す天井埋め込み型の実施例は、上述した第一実施例と構成において略同様で、相違点について、天井12に埋め込まれた本体シャーシ2aと板状のシェード5aで筐体としての照明器具本体8aを形成し、該照明器具本体8aの本体シャーシ2a内部の上面及び側面側にそれぞれ光反射板4,4とLEDユニット3を配置すると共にその本体シャーシ2a上部にLEDユニット3を駆動する駆動回路7を設け、該本体シャーシ2aと、乳白色で形成されたシェード5aを対面接合させて、図6に示すように、所定形状の天井埋め込み型の照明器具本体8aを形成したLED照明装置1aである。なお、図中15は電源ケーブル、16は、電源ケーブル15を接続するプラグである。   Thus, the ceiling-embedded embodiment shown in FIG. 6 is substantially the same in configuration as the first embodiment described above, and the difference between the main body chassis 2a and the plate-like shade 5a embedded in the ceiling 12 is the case. And the light reflecting plates 4 and 4 and the LED unit 3 are arranged on the upper surface and the side surface inside the main body chassis 2a of the main body chassis 2a, and the LED unit 3 is formed on the upper portion of the main body chassis 2a. The drive circuit 7 for driving the LED is provided, and the main body chassis 2a and the shade 5a formed of milky white are face-to-face joined to form a ceiling-embedded lighting fixture main body 8a having a predetermined shape as shown in FIG. It is the illuminating device 1a. In the figure, 15 is a power cable, and 16 is a plug for connecting the power cable 15.

また、図7及び図8に示す他の実施例として、天井吊り下げの丸型の実施例は、上述した第一実施例と構成において略同様で、相違点について、丸型形状とする本体シャーシ2bとシェード5bにより丸型形状の筐体として照明器具本体8bを形成するLED照明装置1bとしている。   Further, as another embodiment shown in FIGS. 7 and 8, the ceiling-suspended round shape embodiment is substantially the same as the above-described first embodiment in configuration, and the difference from the main body chassis having a round shape. The LED lighting device 1b is formed by forming the lighting fixture body 8b as a round-shaped casing by the 2b and the shade 5b.

そして、該LED照明装置1bのLEDユニット3の構成は、図7に示すように4本の該LEDユニット3,3,…を正方形状に配置し、また図7及び図8に示すように、光反射板を各LEDユニット3,3,…の外側に熱伝導部材のコネクション9,9,…を介して光反射板4a,4a,…取付け、また該中心側にも光反射板4b,4b,…を配置している。なお、図示では、熱伝導部材のコネクション9,9,…を介して光反射板4b,4b,…を取り付けていないが、取付けて中心側からも放熱できるようにしても好ましい。 And as for the structure of LED unit 3 of this LED illuminating device 1b, as shown in FIG. 7, four said LED units 3, 3, ... are arrange | positioned in square shape, and as shown in FIG.7 and FIG.8, The light reflecting plates 4a, 4a,... Are attached to the outer sides of the LED units 3, 3,. , ... are arranged. In the figure, the light reflecting plates 4b, 4b,... Are not attached via the heat conducting member connections 9, 9,.

しかして、上述各実施例のLED照明装置1,1a,1bは、天井12のローゼット13又は電源ケーブル15から引っ掛けプラグ14又はプラグ16に電源供給すると共にそこから取付、取外しが行われ、不具合が生じたときは、該LED照明装置1、1a,1bの全体を交換して使用する。 Thus, the LED lighting devices 1, 1a, 1b of the above-described embodiments are supplied with power from the rosette 13 or the power cable 15 of the ceiling 12 to the hook plug 14 or the plug 16 and are attached and detached from there, and there is a problem. When it occurs, the entire LED lighting device 1, 1a, 1b is replaced and used.

また、LED照明装置1,1a,1bを照明として使用するときのLEDユニット3のLED11,11,…の発光熱は、熱伝導部材のコネクション9を介して熱伝導すると共に本体シャーシ2,2bで放熱されることでLED11,11,…の過熱を防止し、それにより寿命延長が図れ、また過熱を抑えるためLED11,11,…に流す電流を駆動装置7により抑えると共にそれによる照度減をLED11,11,…の使用数を増やすことで照度も確保できる。 In addition, when the LED lighting devices 1, 1a, 1b are used as illumination, the emission heat of the LEDs 11, 11,... Of the LED unit 3 is conducted through the connection 9 of the heat conducting member and is also transmitted through the body chassis 2, 2b. The LEDs 11, 11,... Are prevented from being overheated by radiating heat, thereby extending the life of the LEDs 11,..., And the current flowing through the LEDs 11, 11,. Illuminance can also be secured by increasing the number of use of 11,.

なお、図9に示す、光反射板4とコネクション9との構成の他の実施例として、光反射板4とLED11の接触を熱伝導部材のコネクション9に換えて、図9に示すように光反射板4cの端部を曲面に形成した弾発変形部材のコネクション9aを形成させて熱伝導部材とし、該LED11の側面側に光反射板4c端部のコネクション9aを弾発接触させて熱伝導させる実施例で、コネクション9を使用しないのでその分コストも押さえられる。 As another embodiment of the configuration of the light reflecting plate 4 and the connection 9 shown in FIG. 9, the contact between the light reflecting plate 4 and the LED 11 is changed to the connection 9 of the heat conducting member, and the light as shown in FIG. An elastically deformable member connection 9a having a curved end at the reflecting plate 4c is formed as a heat conducting member, and the connection 9a at the end of the light reflecting plate 4c is elastically contacted to the side surface of the LED 11 to conduct heat. In this embodiment, since the connection 9 is not used, the cost can be reduced accordingly.

本発明のLED照明装置は、発熱するLEDの熱を反射板と本体シャーシから効率よく放熱する照明器具一体で交換して使用するLED照明装置として提供できる。   The LED illuminating device of the present invention can be provided as an LED illuminating device that is used by exchanging it with an illuminating device that efficiently dissipates heat of the LED that generates heat from the reflector and the main body chassis.

1,1a,1b LED照明装置
2,2a,2b 本体シャーシ
3 LEDユニット
4,4a,4b,4c 光反射板
5,5a,5b シェード
7 駆動装置
8,8a,8b 照明器具本体
9 コネクション
10 回路基板
11 LED
12 天井
13 ローゼット
14 引っ掛けプラグ
15 電源ケーブル
16 プラグ
DESCRIPTION OF SYMBOLS 1,1a, 1b LED illuminating device 2,2a, 2b Main body chassis 3 LED unit 4,4a, 4b, 4c Light reflector 5,5a, 5b Shade 7 Driving device 8, 8a, 8b Lighting fixture main body 9 Connection 10 Circuit board 11 LED
12 Ceiling 13 Rosette 14 Hook plug 15 Power cable 16 Plug

本発明は、LED(発光ダイオード)照明器具一体の照明装置のシェードが面発光すると共に各LEDの熱を光反射板と本体シャーシを介して放熱するLED照明装置の放熱構造に関する。   The present invention relates to a heat dissipation structure of an LED illumination device that emits surface light from a shade of an illumination device integrated with an LED (light emitting diode) illumination fixture and radiates heat of each LED through a light reflector and a main body chassis.

従来、直管形及び環形の蛍光灯又はLED照明灯は、該照明灯と照明器具が、それぞれ独立した単体商品として販売提供され、また省エネ、長寿命としてLED照明灯は、既設の照明器具に取り付けて使用されるものが提供され、その使用におけるLEDの発熱は、専用の放熱板により放熱させているものである。   Conventionally, straight tube and ring-shaped fluorescent lamps or LED illuminating lamps are sold and provided as independent single products, and the LED illuminating lamps are installed in existing luminaires for energy saving and long life. What is attached and used is provided, and the heat generated by the LED in that use is radiated by a dedicated heat sink.

なお、本願で言う照明管又は照明灯(LEDを使用した管状の物を含む)とは、従来の蛍光灯と言われる管状の直管形又は環形のもので、一般的に言われる電球及び蛍光灯などそのものが光る球のことを指し、また照明器具とは、電源を中継供給するためのプラグ及び電源ケーブルの接続端子などの接続部、筐体及びカバーなど上記照明灯を発光及び保持させるための装置を有し、そのものが光らない物を指して言い、また照明器具一体とは、該照明管又は照明灯と照明器具が一体で分離独立しない照明装置を指し、また照明装置は照明灯と照明器具を有するものを言う。   The term “illuminating tube” or “illuminating lamp” (including a tubular object using an LED) in this application refers to a tubular straight tube or ring-shaped tube called a conventional fluorescent lamp. A luminaire refers to a sphere in which the lamp itself shines, and a luminaire is used to emit and hold the above-mentioned illuminating lamp, such as a plug for connecting and supplying power, a connection portion such as a connection terminal of a power cable, a housing and a cover. The lighting device is a lighting device in which the lighting tube or the lighting lamp and the lighting fixture are not separated and independent, and the lighting device is a lighting device. Says those with lighting fixtures.

また、一般市場で提供されている直管の蛍光灯型のLED照明管は、LEDユニットとその駆動回路が内蔵若しくは外付けされた照明装置或いは照明灯の略形態であるが、該市販されているLED照明管は、既設の照明器具に取り付け或いは該器具の形状に準じて取付け使用されるものであるから、ここで言う照明装置と言わない。   Further, a straight tube fluorescent lamp type LED lighting tube provided in the general market is an illuminating device or an illuminating lamp in which an LED unit and its driving circuit are built in or externally attached. Since the LED lighting tube is attached to an existing lighting fixture or used according to the shape of the fixture, it is not referred to as an illuminating device.

そこで、従来のLED照明装置は、LEDの電流を多く流すパワーLEDを使用して明るさを確保する仕様で、それに伴う発熱対策として放熱板を使用して、白色に発光するLEDの長寿命を確保し、一般的に提供されている。   Therefore, the conventional LED lighting device is a specification that uses a power LED that flows a large amount of LED current to ensure brightness, and uses a heat sink as a countermeasure against heat generation, thereby prolonging the long life of the LED that emits white light. Secured and generally provided.

また、従来の照明装置に関しては、照明灯と照明器具が一体として交換使用するものなく、そこで本出願人が照明器具一体として交換使用する照明器具一体のLED照明装置を発明し、それはLED照明装置が取り付けられる天井又は壁面に対して平行方向に照射光が照射できるように、シェード内の外周側から中央方向に向けて、該シェード内の所定位置にLEDユニットを設けると共に該LEDユニットのLED発光素子が照射する該照射光の対面側に反射部材を設けた「照明器具一体のLED照明装置」がある。(例えば、特許文献1参照) Further, with respect to the conventional lighting device, there is no one in which the illuminating lamp and the lighting fixture are exchanged and used as a whole, and therefore, the present applicant invented a lighting fixture-integrated LED lighting device that is used as a lighting fixture integration. An LED unit is provided at a predetermined position in the shade from the outer peripheral side in the shade toward the center so that irradiation light can be emitted in a direction parallel to the ceiling or wall surface on which the LED is mounted, and LED light emission of the LED unit There is an “LED lighting device integrated with a lighting fixture” in which a reflecting member is provided on the opposite side of the irradiation light emitted from the element. (For example, see Patent Document 1)

また、反射板を放熱に利用する先願技術として、LED10と反射板8とで構成される照明装置で、LEDの光を反射する反射板と、絶縁基板の金属ベース面と面接触し、該金属ベース面後方から前記筐体を挿通して延出する放熱板5とから構成されるとする実施例を示す「LED照明装置」がある。(例えば、特許文献2参照) In addition, as a prior application technique that uses a reflector for heat dissipation, an illumination device composed of the LED 10 and the reflector 8 is in surface contact with the reflector that reflects the light of the LED and the metal base surface of the insulating substrate, There is an “LED illuminating device” showing an embodiment in which the heat sink 5 is inserted and extended from behind the metal base surface. (For example, see Patent Document 2)

特許登録第4676563号公報Patent Registration No. 4676563 実用新案登録第3149696号公報Utility Model Registration No. 3149696

従来のLED照明に使用されるLEDの発熱は、照明光の明るさを得るために定格電流値が大きく、大電流で使用する事による発熱であって、その熱のためLEDが劣化することを防ぐために放熱する専用の放熱板を必要とし、また明るさの改善と、LEDの点光源を面発光させるためには、蛍光管タイプなどのカバーを面発光させる反射板を使用し、このような課題を解決するために電流値と反射板を使用することにより、その明るさと面発光が得られているが、そのための専用の放熱板の高効率放熱とその重量及びコストに課題があり改善が求められていた。   The heat generation of the LED used in the conventional LED lighting has a large rated current value in order to obtain the brightness of the illumination light, and the heat generation due to the use of a large current, the LED deteriorates due to the heat. In order to prevent heat dissipation, a special heat sink is necessary, and in order to improve the brightness and to make the LED point light source emit light, use a reflector such as a fluorescent tube that emits light on the surface. The brightness and surface emission are obtained by using the current value and the reflector to solve the problem, but there is a problem with the high efficiency heat dissipation of the dedicated heat sink and its weight and cost. It was sought after.

そして、その高効率放熱において、放熱板にLEDの熱を伝えるのに、LEDが設けられる基板を介して放熱板に伝える手段が一般的であり、その基板の熱伝導性とコストが課題となっており、それは電子部品の実装に広く使われているガラスエポキシは、熱伝導性の高い金属基板に対して熱伝導が低く、しかしその金属基板では、逆に、ガラスエポキシ基板に比べて加工性が悪く、価格もガラスエポキシ基板の3倍程度と高いと言う課題があり、LEDから放熱板への高熱伝導性の改善と高い放熱性の要求があった。 In the high efficiency heat dissipation, means for transmitting heat of the LED to the heat radiating plate is generally transmitted to the heat radiating plate through the substrate on which the LED is provided, and the thermal conductivity and cost of the substrate become problems. Glass epoxy, which is widely used for mounting electronic components, has low thermal conductivity with respect to a metal substrate with high thermal conductivity, but on the contrary, the metal substrate is more workable than a glass epoxy substrate. However, there is a problem that the price is about three times as high as that of the glass epoxy substrate, and there is a demand for improvement in high thermal conductivity from the LED to the heat sink and high heat dissipation.

また、上記LEDの発熱について、LED照明を手掛けるメーカー各社が一般に公表している4万時間の寿命を実現するには、LEDチップの接合部(発光部)温度を約145℃以下に抑えることが求められ、その発光部の温度について、LEDチップの接合部の表面温度が185度では、1000時間程度と急激に寿命時間が低下し、実用に適さない。 In addition, with regard to the heat generation of the LED, in order to realize the life of 40,000 hours publicly disclosed by manufacturers that deal with LED lighting, it is necessary to suppress the temperature of the junction (light emitting part) of the LED chip to about 145 ° C. or less. Regarding the temperature of the light emitting part, when the surface temperature of the joint part of the LED chip is 185 degrees, the lifetime is rapidly reduced to about 1000 hours, which is not suitable for practical use.

そして、LEDのパッケージ温度が、上記温度の185度より10℃下がると寿命が2倍延びるという試験結果があり、例えばLEDの発熱対策として、一般的なガラス・エポキシ基板を使用して、消費電力が1WのパワーLEDを使って基盤裏の発熱温度では70℃前後であり、より放熱効果を求める放熱基板には、上述した熱伝導性が高い金属基板を使うことが多く、一般的には、主材料としてAl(アルミウム)を使った金属板に絶縁層と配線層を積層したものがあり、上述照明に使用されるLEDには、熱に対する課題が多くありその改善が求められていた。 There is a test result that the life of the LED is doubled when the LED package temperature is 10 ° C. lower than the above temperature of 185 ° C. For example, as a countermeasure against the heat generation of the LED, the power consumption is reduced by using a general glass / epoxy substrate. However, using a 1W power LED, the heat generation temperature on the back of the base is around 70 ° C, and for the heat dissipation board that requires more heat dissipation, the above-mentioned metal substrate with high thermal conductivity is often used. There is a metal plate using Al (aluminum) as a main material in which an insulating layer and a wiring layer are laminated, and the LED used for the above-mentioned lighting has many problems with heat and its improvement has been demanded.

しかして、特許文献1の本出願人が発明した「照明器具一体のLED照明装置」は、天井又は壁などの電源供給部から該照明器具一体の照明装置を着脱交換し、駆動回路及びLEDユニットの基板9からの熱を、熱伝導性支持部材を介して支持本体で放熱させ、またLEDユニットからの照射光を、シェードで乱反射させて面発光させているので、上述した課題のように熱伝導性が低く、その課題の改善が求められていた。   Thus, the “LED lighting device integrated with a lighting fixture” invented by the present applicant of Patent Document 1 is a drive circuit and an LED unit in which the lighting device integrated with the lighting fixture is attached and detached from a power supply unit such as a ceiling or a wall. The heat from the substrate 9 is dissipated by the support body through the heat conductive support member, and the irradiation light from the LED unit is diffusely reflected by the shade to emit surface light. The conductivity is low, and improvement of the problem has been demanded.

なお、本出願人が発明した「照明器具一体のLED照明装置」の上述以外の課題の解決としては、既設の古い照明器具を使い回しして直管型LED照明灯を使用すると、その直管型LED照明灯と照明器具との寿命差から、交互に取替えることとなり、そのことで明るさなどの効率の悪さと、本来持つ寿命が短くなる弊害を改善するために照明器具一体としてそれを交換するもので、また反射板により効率よく該シェードを面発光させると共に天井方向にも反射させ、天井の間接照明としての効果と、またシェードはより広い発光面積で発光させて、部屋全体に明るく配光させるものであります。   In addition, as a solution to the problems other than those described above of the “lighting device-integrated LED lighting device” invented by the present applicant, when a straight tube type LED lighting light is used by rotating an existing old lighting device, the straight tube LED lamps and lighting fixtures will be replaced alternately due to the difference in life, so that the lighting fixtures are replaced as a unit to improve the efficiency of brightness and other problems and shorten the life expectancy. In addition, the reflector efficiently emits light to the surface of the shade and reflects it in the direction of the ceiling. The effect of this is as an indirect lighting of the ceiling, and the shade emits light with a wider light emitting area, and is brightly distributed throughout the room. It is what makes it light.

そして、その課題解決の背景には、近年、直管型LED照明灯が、省エネ、長寿命の4万〜5万時間(約10年)と言うことで提供され、一方、既設の照明器具の寿命は、一般的に10年程度と、またその範囲で使用されており、そのことから古い既設の照明器具に、新しい直管型LED照明灯に途中交換すると、その交換時の既存との寿命差によりその効率の落ちた古い既設の照明器具に影響されて、交換した新しいLED照明灯の効率が本来の性能が出せなかった。 And in the background of solving the problem, in recent years, straight tube type LED lighting has been provided with 40,000 to 50,000 hours (about 10 years) of energy saving and long life, while the existing lighting fixtures The service life is generally about 10 years and within that range. Therefore, if the old existing lighting fixture is replaced with a new straight tube type LED lighting, the service life with the existing one at the time of replacement is changed. Due to the difference, it was affected by the old existing lighting fixtures whose efficiency was lowered, and the efficiency of the new LED lighting lamps replaced could not achieve the original performance.

このようなLED照明灯と照明器具の新旧の混合使用することは、新旧製品の具体的な効率の悪さに差が有ることが、一般的に認識されなく、そもそも従来の照明器具が球を交換して使用することは、その球の寿命が1〜2年程度と極端に短く、その交換の合理性から始まったことであり、これを近年、提供が始まった長寿命の直管型LED照明灯を、古い既設の照明器具に適用して交換することは、照明器具の寿命から考えると、むしろ直管型LED照明灯と照明器具を同時に交換するのが最も効率よく、省エネ、長寿命の観点からも必要で、上述した本出願人が発明した「照明器具一体のLED照明装置」は、上述課題を解決するために成された発明である。 It is generally not recognized that the mixed use of old and new LED lighting and lighting fixtures has a difference in specific inefficiencies between the old and new products. In the first place, conventional lighting fixtures replace balls. The long-life straight tube type LED lighting that has been provided recently in recent years is that the life of the sphere is extremely short, about 1 to 2 years. Replacing a lamp by applying it to an old existing lighting fixture is considered to be the most efficient replacement of a straight tube LED lighting fixture and a lighting fixture at the same time, considering the life of the lighting fixture. The “LED lighting device integrated with a lighting fixture” invented by the present applicant described above is an invention made in order to solve the above-described problems.

さらに、開示される特許文献2の「LED照明装置」は、反射板をLED放熱フィンとして利用することの記載があり、つまり実用新案登録請求の範囲の請求項1に「複数のLEDを配置した金属ベース絶縁基盤と、該絶縁基板を取り付け一端側を開放した筐体と、該筐体の内面に前記LEDを配置した絶縁基板のLED配置面を囲み、該LEDの光を反射する反射板と、前記絶縁基板の金属ベース面と面接触し、該金属ベース面後方から前記筐体を挿通して延出する放熱板5とから構成される。」としており、しかし、LEDの熱は主にLEDチップの接合部(発光部)で発生する熱であるから、その熱を金属ベース絶縁基盤を介して絶縁基板の金属ベース面と面接触させて反射板に伝えられるから、金属ベース絶縁基盤の熱伝導性は放熱をする上で最も大きな要因となり、またその面接触度合にも大きく左右され、そのような金属ベース絶縁基盤を介して放熱する構造は、上述したように熱伝導性による放熱性の課題があり、その改善が求められていた。 Further, the disclosed “LED lighting device” in Patent Document 2 has a description that the reflector is used as the LED heat radiation fin, that is, “a plurality of LEDs are arranged in claim 1 of the utility model registration claim”. A metal-based insulating base; a housing attached with the insulating substrate and having one end open; a reflector that surrounds the LED placement surface of the insulating substrate on which the LED is placed on the inner surface of the housing; , And a heat sink 5 that is in surface contact with the metal base surface of the insulating substrate and extends through the housing from the rear of the metal base surface. ”However, the heat of the LED is mainly. Since it is the heat generated at the junction (light emitting part) of the LED chip, the heat is transmitted to the reflecting plate through the metal base insulating substrate and brought into surface contact with the metal base surface of the insulating substrate. Thermal conductivity is heat dissipation The structure that radiates heat through such a metal-based insulating base has the problem of heat dissipation due to thermal conductivity as described above. There was a need for improvement.

本発明は、上記課題を有効に達成するために、第1の解決手段として、照明器具一体のLED照明装置に、LEDユニットの発光面と光反射板をシェード面側に向けて本体シャーシに設けると共に該光反射板の一方の端部を本体シャーシに当接させると共に他方端を各LED側面に該光反射板の端部に曲形成した弾発変形部を直接、弾発接触させて設けたことにより、
LEDの光を光反射板にてシェードを面発光させると共に該LEDの熱を、各LED側面から光反射板に熱伝導させると共に本体シャーシに熱伝導させて該本体シャーシで放熱させる事としている。
In order to effectively achieve the above-mentioned problems, the present invention provides, as a first solving means, an LED lighting device integrated with a lighting fixture, and a light emitting surface of the LED unit and a light reflecting plate facing the shade surface side on the main body chassis. In addition, one end portion of the light reflecting plate is brought into contact with the main body chassis, and the other end is provided on the side surface of each LED with the elastic deformation portion formed by bending at the end portion of the light reflecting plate . By
The light of the LED is caused to emit light from the shade by the light reflection plate, and the heat of the LED is thermally conducted from the side surface of each LED to the light reflection plate and also conducted to the main body chassis to be radiated by the main body chassis.

本発明は、上述したそれぞれの手段によって有効な効果が得られるようにしたもので、特に、本体シャーシとシェードにより所定形状の筐体を形成して照明器具本体とすると共に該照明器具本体内に、複数のLED(発光ダイオード)を回路基板上に設けたLEDユニットと、
該照明器具本体に各LEDを発光駆動させる駆動装置と、
天井又は壁面に設けられるローゼット又は電源ケーブルから電源供給する電源供給部に対応する引っ掛けプラグ、プラグ又はケーブル接続端子部などの電源受給部を設けた照明器具一体のLED照明装置において、
LEDユニットの各LEDが発光する光を光反射板によってシェード面側に反射できるように、該LEDユニットの発光面と光反射板をシェード面側に向けて本体シャーシに設け、該LEDユニットの各LEDが発光する発光熱を、光反射板を介して本体シャーシから放熱できるように、該光反射板の一方の端部を本体シャーシに当接させると共に他方端の端部に曲形成した弾発変形部を各LEDの側面に直接、弾発接触させて設けた第1の解決手段により、
LEDユニットの各LEDから発する光をシェード内面側に発光させると共に光反射板にてシェードを面発光させることができ、また該LEDの熱を、各LED側面から直接、光反射板を介して本体シャーシに熱伝導させて該本体シャーシで放熱させるので、専用の放熱板が必要なく、その放熱板の重量とコストが改善できる。
In the present invention, an effective effect can be obtained by each of the above-described means. In particular, a housing having a predetermined shape is formed by a main body chassis and a shade to form a lighting fixture body, and in the lighting fixture body. An LED unit having a plurality of LEDs (light emitting diodes) provided on a circuit board;
A driving device for driving each LED to emit light in the lighting fixture body;
In an LED lighting device integrated with a lighting fixture provided with a power receiving unit such as a hook plug, a plug or a cable connection terminal unit corresponding to a power supply unit that supplies power from a rosette or a power cable provided on a ceiling or a wall surface,
Light each LED of the LED unit to emit light so as to be reflected to the shade side by the light reflection plate, provided on the main body chassis toward the light emitting surface and the light reflecting plate of the LED units on the shade side, each of the LED units A bullet that is bent at the end of the other end and abutting one end of the light reflector so that the heat emitted from the LED can be dissipated from the chassis through the light reflector. By the first solution means that the deforming portion is provided in direct contact with the side surface of each LED,
The light emitted from each LED of the LED unit can be emitted to the inner surface of the shade and the shade can be surface-emitted by the light reflecting plate, and the heat of the LED can be directly transmitted from the LED side surface via the light reflecting plate. Since the heat is conducted to the chassis and radiated by the main body chassis, a dedicated heat radiating plate is not required, and the weight and cost of the heat radiating plate can be improved.

また、そのLEDの熱に関して、該LEDの発熱は、LEDチップの接合部(発光部)で発生するものであり、その熱によりLEDの寿命が短くなるのは、白色光を得るための蛍光体の劣化に他ならないから、LEDから発する熱と、そのLEDの寿命を決める蛍光体の最も近い位置から放熱することが課題解決となり、よってLEDチップの発光する接合部に近いLEDパッケージの側面から直接、光反射板を介して本体シャーシから放熱することで効率よく放熱でき、その観点から課題の改善をしているので、放熱の効果は大きい。 Regarding the heat of the LED, the heat generated by the LED is generated at the junction (light emitting part) of the LED chip, and the life of the LED is shortened by the heat. The phosphor for obtaining white light Therefore, the problem is to dissipate heat from the LED and heat from the closest position of the phosphor that determines the lifetime of the LED, and therefore directly from the side of the LED package near the LED chip's emitting joint. Since the heat can be radiated efficiently from the main body chassis through the light reflecting plate, and the problem has been improved from that point of view, the heat radiating effect is great.

さらに、LEDユニットからの照射光を、光反射板によりシェード方向に反射させることで、効率よくシェードを面発光させると共に天井方向にも反射させているので、天井を明るくして間接照明としての効果も得られ、また従来の直管型LED照明灯の直管形又は環形はその発光面積が小さく限られているが、本願のシェードの面発光は、より広い発光面積が得られ、部屋全体に明るく配光できる照明器具一体の照明装置として提供できる。   In addition, the light reflected from the LED unit is reflected in the shade direction by the light reflector so that the shade is efficiently surface-emitting and also reflected in the ceiling direction. In addition, the straight tube shape or the ring shape of the conventional straight tube type LED lighting lamp has a small light emitting area, but the surface light emission of the shade of the present application can provide a wider light emitting area, and can be applied to the entire room. It can be provided as a lighting device integrated with a lighting fixture capable of bright light distribution.

加えて、各LED側面に直接、光反射板の端部に曲形成した弾発変形部を弾発接触させ、または変形することで密着できる絶縁体の熱伝導部材を介して光反射板に熱伝導させることで、効率よくLEDの熱を光反射板から本体シャーシに熱伝導でき、つまり各LED側面から直接、光反射板に熱伝導させると共に本体シャーシに熱伝導することで該本体シャーシから効率よく放熱させ、熱伝導部材を使用しないのでその分コストも押さえられ、また絶縁体である熱伝導部材を使用することで、LED側面に直接、熱伝導部材を接触させてもLEDに供給する電源からの漏電も無く安全に使用できる。 In addition , heat is applied to the light reflecting plate via an insulating heat conducting member that can be brought into close contact with each LED by directly contacting or deforming the elastically deforming portion formed at the end of the light reflecting plate. By conducting the heat, the heat of the LED can be efficiently conducted from the light reflecting plate to the main body chassis . In other words , the heat from the main body chassis can be directly conducted from the side of each LED to the light reflecting plate and conducted to the main body chassis. Power is supplied to the LED even if the heat conduction member is in direct contact with the side of the LED by using a heat conduction member that is an insulator because the heat is dissipated well and the heat conduction member is not used. It can be used safely without any leakage of electricity.

上述のことから、従来のように高価な金属基板を使用しなくとも、LEDパッケージの側面から直接放熱することで効率よく十分放熱でき、よって安価なガラスエポキシの基板を使用することもできることからコストを省くことができ、さらに熱による劣化を防ぐことで、LEDユニットの長寿命化が図れる。 From the above, even if an expensive metal substrate is not used as in the prior art, it is possible to efficiently and sufficiently dissipate heat by directly dissipating heat from the side surface of the LED package, and thus an inexpensive glass epoxy substrate can be used. The life of the LED unit can be extended by preventing deterioration due to heat.

なお、天井などの電源供給部から直接、照明装置を照明器具一体で交換することで、本来持つ照明装置のLEDユニットの照明効率が最もよく発揮でき、またその本来持つ、寿命も長く保つことができる照明器具一体の照明装置として提供できる。
よって、これらのことから本発明は、実用上著大な効果を奏する。
In addition, by directly exchanging the lighting device with the lighting fixture directly from the power supply unit such as the ceiling, the lighting efficiency of the LED unit of the original lighting device can be exhibited best, and the inherent lifetime can be kept long. It can be provided as a lighting device integrated with a lighting fixture.
Therefore, the present invention has a practically significant effect.

本発明の使用時状態を示す側面断面図である。It is side surface sectional drawing which shows the state at the time of use of this invention. 本発明の実施例の斜視図である。It is a perspective view of the Example of this invention. 本発明のLEDユニット3の要部を拡大した側面断面図である。It is side surface sectional drawing to which the principal part of LED unit 3 of this invention was expanded. 本発明のLED11とコネクション9の取付状態を示す斜視図である。It is a perspective view which shows the attachment state of LED11 and the connection 9 of this invention. 本発明の側面断面図で、光の照射状態を示す想像図である。It is a side sectional view of the present invention and is an imaginary view showing a light irradiation state. 本発明の他の実施例の使用時状態を示す要部の側面断面図である。It is side surface sectional drawing of the principal part which shows the state at the time of use of the other Example of this invention. 本発明のその他の実施例で一部省略した斜視図である。It is the perspective view which abbreviate | omitted partially in the other Example of this invention. 本発明の図7の矢視C-C線断面図である。FIG. 8 is a sectional view taken along the line CC of FIG. 7 according to the present invention. 本発明のその他の実施例で要部の側面断面図である。It is side surface sectional drawing of the principal part in the other Example of this invention.

本体シャーシとシェードにより所定形状の筐体を形成した照明器具本体に、複数のLEDを回路基板上に設けたLEDユニットと各LEDを発光駆動させる駆動装置と、天井又は壁面に設けられるローゼット又は電源ケーブルから電源供給する電源供給部に対応する引っ掛けプラグ、プラグ又はケーブル接続端子部などの電源受給部を設けて照明器具一体のLED照明装置とし、上記LEDユニットの各LEDが発光する光を光反射板によってシェード内面側に反射させると共に各LEDの熱を、光反射板を介して本体シャーシから放熱できるように、LEDユニットの発光面と光反射板をシェード内面側に向けて本体シャーシに設けると共に該光反射板を各LED側面に当接させて設け、又は該LEDユニットの各LED側面と光反射板を、変形可能な絶縁体の熱伝導部材を介して当接させて設けたLED照明装置の提供を実現させた。 An illuminator body in which a housing of a predetermined shape is formed by a body chassis and a shade, an LED unit in which a plurality of LEDs are provided on a circuit board, a driving device for driving each LED to emit light, and a rosette or power source provided on a ceiling or a wall surface A power receiving part such as a hook plug, plug or cable connection terminal part corresponding to the power supply part that supplies power from the cable is provided to form an LED lighting device integrated with a lighting fixture, and the light emitted by each LED of the LED unit is reflected. The LED unit has a light emitting surface and a light reflecting plate facing the inner surface of the shade so that the LED can be reflected from the inner surface of the shade and the heat of each LED can be dissipated from the main body chassis via the light reflector. The light reflecting plate is provided in contact with each LED side surface, or each LED side surface of the LED unit and the light reflecting plate are provided. Through the heat conducting member of a deformable insulating material by contact was achieved to provide a LED lighting device provided.

本発明の第一実施例を図面に基づいて説明すると、図1及び図2において、1はLED照明装置で、該LED照明装置1は、本体シャーシ2にLEDユニット3と光反射板4,4とシェード5をそれぞれ設けて照明器具一体のLED照明装置1としている。   A first embodiment of the present invention will be described with reference to the drawings. In FIGS. 1 and 2, reference numeral 1 denotes an LED illuminating device. The LED illuminating device 1 includes an LED unit 3 and light reflecting plates 4, 4 in a main body chassis 2. And the shade 5 are provided respectively to form the LED lighting device 1 integrated with a lighting fixture.

そこで、該LED照明装置1の本体シャーシ2は、図1に示すように、下向の略コの字状で、該本体シャーシ2と板状の取付シャーシ6とで筐体を形成し、その内部にLEDユニット3を駆動発光させる駆動装置7を内設させると共に該本体シャーシ2と、半透明の乳白色で側面端面が略楕円状に形成されたシェード5を対面接合させて、図1及び図2に示すように所定形状の筐体とした照明器具本体8を形成している。   Therefore, as shown in FIG. 1, the main body chassis 2 of the LED lighting device 1 has a substantially downward U shape, and the main body chassis 2 and the plate-like mounting chassis 6 form a casing. A driving device 7 for driving and emitting the LED unit 3 is installed inside, and the main body chassis 2 and a shade 5 having a semi-transparent milky white side surface formed in a substantially elliptical shape are face-to-face joined to each other. As shown in FIG. 2, a luminaire body 8 is formed as a casing having a predetermined shape.

また、図1に示すように、該取付シャーシ6にLEDユニット3を配置すると共に該LEDユニット3の左右外側に熱伝導部材のコネクション9,9を介して所定形状に形成した光反射板4,4を配置している。 Further, as shown in FIG. 1, the light reflecting plate 4 formed into a predetermined shape via a connection 9, 9 of the thermally conductive member to the outside of the left and right of the LED unit 3 with disposing the LED unit 3 to the mounting chassis 6 , 4 are arranged.

そこで、該LEDユニット3は、図3及び図4に示すように、回路基板10上にLED11,11,…を二列に配置すると共に所定仕様のワット数に準じた数をそれぞれ所定間隔で配置し、また回路基板10上と、該LED11,11,…の外側側面に密接させて該コネクション9,9を設けると共に該コネクション9,9を介して光反射板4,4をそれぞれ配置している。   Therefore, as shown in FIGS. 3 and 4, the LED unit 3 has the LEDs 11, 11,... Arranged in two rows on the circuit board 10, and the number according to the wattage of the predetermined specification is arranged at predetermined intervals. In addition, the connections 9 and 9 are provided on the circuit board 10 and in close contact with the outer side surfaces of the LEDs 11, 11,... And the light reflecting plates 4 and 4 are disposed through the connections 9 and 9, respectively. .

該コネクション9は、図3に示すように、形状が略英字のL状で該先端部を折り返すように形成して、その折り返し部分に上記光反射板4の端面部を若干嵌入することで、該光反射板4をそのコネクション9に取付け、そこの接触部分から熱伝導させるようにし、また該コネクション9は軟質プラスチックの絶縁体で、且つ熱伝導性がよい材質で構成されている。   As shown in FIG. 3, the connection 9 is formed in an L shape with a substantially alphabetic shape so that the tip portion is folded back, and the end surface portion of the light reflecting plate 4 is slightly inserted into the folded portion, The light reflection plate 4 is attached to the connection 9 so as to conduct heat from the contact portion. The connection 9 is made of a soft plastic insulator and a material having good heat conductivity.

また、該光反射板4は、図1に示すように、該反射面をシェード5に対面させると共に側面側端面を略山状に形成し、その一方端をLEDユニット3のLED11,11,…側面に沿うように、上記コネクション9に該光反射板4の端面部を若干嵌入保持させて配置すると共に他端を取付シャーシ6に熱伝導できるように接触させて設けている。 Further, as shown in FIG. 1, the light reflecting plate 4 has the reflecting surface facing the shade 5 and the side surface side end surface is formed in a substantially mountain shape, and one end thereof is the LEDs 11, 11,. Along the side surface, the connection 9 is provided with the end face portion of the light reflecting plate 4 fitted and held slightly, and the other end is provided in contact with the mounting chassis 6 so as to conduct heat .

しかして、該LED照明装置1は、図1及び図2に示すように、天井12に設けられたローゼット13に、本体シャーシ2の略中央上部に設けられる引っ掛けプラグ14を係止することで天井12に吊設され、またLEDユニット3への電源供給の経路は、上記ローゼット13から引っ掛けプラグ14をへて交流電源を駆動装置7へ供給すると共に該駆動装置7にて直流の所定電圧と電流制限回路により所定電流をLEDユニット3の各LED11,11,…に供給され各LED11,11,…が駆動して発光する。   1 and 2, the LED lighting device 1 is secured to a rosette 13 provided on the ceiling 12 by engaging a hook plug 14 provided substantially at the upper center of the body chassis 2 with the ceiling. The power supply path to the LED unit 3 is suspended from the rosette 13 through the hook plug 14 and supplied with AC power to the driving device 7, and at the driving device 7, a predetermined DC voltage and current are supplied. A predetermined current is supplied to each LED 11, 11,... Of the LED unit 3 by the limiting circuit, and each LED 11, 11,.

そして、各LED11,11,…が発光した光束は、図5に示すように、各LED11,11,…から直接シェード5面へ照射される光束(図中矢視A)と、各LED11,11,…から光反射板4,4を介してシェード5面へ反射照射される光束(図中矢視B)があり、該各光束がシェード5面と光反射板4,4とで乱反射し、且つシェード5面の乳白色により、各LED11,11,…の点光源が、シェード5面、全体を明るく面発光させることで、より広い発光面積が得られ、それにより部屋全体に明るく配光でき、またその面発光により、天井にも反射して天井を明るくすることで、間接照明としての効果も得られる。 As shown in FIG. 5, the luminous flux emitted from each LED 11, 11,... Is directly irradiated onto the surface of the shade 5 from each LED 11, 11,. ... there is a light beam (arrow B in the figure) that is reflected and irradiated onto the surface of the shade 5 through the light reflecting plates 4 and 4, and each light beam is irregularly reflected by the surface of the shade 5 and the light reflecting plates 4 and 4. The point light source of each LED 11, 11,... Has a light emitting surface area that is brighter by making the entire surface of the shade 5 brighter, thereby providing a brighter light distribution throughout the room. The effect of indirect illumination can be obtained by brightening the ceiling by reflecting the surface light.

しかして、図6に示す天井埋め込み型の実施例は、上述した第一実施例と構成において略同様で、相違点について、天井12に埋め込まれた本体シャーシ2aと板状のシェード5aで筐体としての照明器具本体8aを形成し、該照明器具本体8aの本体シャーシ2a内部の上面及び側面側にそれぞれ光反射板4,4とLEDユニット3を配置すると共にその本体シャーシ2a上部にLEDユニット3を駆動する駆動回路7を設け、該本体シャーシ2aと、乳白色で形成されたシェード5aを対面接合させて、図6に示すように、所定形状の天井埋め込み型の照明器具本体8aを形成したLED照明装置1aである。なお、図中15は電源ケーブル、16は、電源ケーブル15を接続するプラグである。   Thus, the ceiling-embedded embodiment shown in FIG. 6 is substantially the same in configuration as the first embodiment described above, and the difference between the main body chassis 2a and the plate-like shade 5a embedded in the ceiling 12 is the case. And the light reflecting plates 4 and 4 and the LED unit 3 are arranged on the upper surface and the side surface inside the main body chassis 2a of the main body chassis 2a, and the LED unit 3 is formed on the upper portion of the main body chassis 2a. The drive circuit 7 for driving the LED is provided, and the main body chassis 2a and the shade 5a formed of milky white are face-to-face joined to form a ceiling-embedded lighting fixture main body 8a having a predetermined shape as shown in FIG. It is the illuminating device 1a. In the figure, 15 is a power cable, and 16 is a plug for connecting the power cable 15.

また、図7及び図8に示す他の実施例として、天井吊り下げの丸型の実施例は、上述した第一実施例と構成において略同様で、相違点について、丸型形状とする本体シャーシ2bとシェード5bにより丸型形状の筐体として照明器具本体8bを形成するLED照明装置1bとしている。   Further, as another embodiment shown in FIGS. 7 and 8, the ceiling-suspended round shape embodiment is substantially the same as the above-described first embodiment in configuration, and the difference from the main body chassis having a round shape. The LED lighting device 1b is formed by forming the lighting fixture body 8b as a round-shaped casing by the 2b and the shade 5b.

そして、該LED照明装置1bのLEDユニット3の構成は、図7に示すように4本の該LEDユニット3,3,…を正方形状に配置し、また図7及び図8に示すように、光反射板を各LEDユニット3,3,…の外側に熱伝導部材のコネクション9,9,…を介して光反射板4a,4a,…取付け、また該中心側にも光反射板4b,4b,…を配置している。なお、図示では、熱伝導部のコネクション9,9,…を介して光反射板4b,4b,…を取り付けていないが、取付けて中心側からも放熱できるようにしても好ましい。 And as for the structure of LED unit 3 of this LED illuminating device 1b, as shown in FIG. 7, four said LED units 3, 3, ... are arrange | positioned in square shape, and as shown in FIG.7 and FIG.8, The light reflecting plates 4a, 4a,... Are attached to the outer sides of the LED units 3, 3,. , ... are arranged. In the figure, the light reflecting plates 4b, 4b,... Are not attached through the connections 9, 9,.

しかして、上述各実施例のLED照明装置1,1a,1bは、天井12のローゼット13又は電源ケーブル15から引っ掛けプラグ14又はプラグ16に電源供給すると共にそこから取付、取外しが行われ、不具合が生じたときは、該LED照明装置1、1a,1bの全体を交換して使用する。 Thus, the LED lighting devices 1, 1a, 1b of the above-described embodiments are supplied with power from the rosette 13 or the power cable 15 of the ceiling 12 to the hook plug 14 or the plug 16 and are attached and detached from there, and there is a problem. When it occurs, the entire LED lighting device 1, 1a, 1b is replaced and used.

また、LED照明装置1,1a,1bを照明として使用するときのLEDユニット3のLED11,11,…の発光熱は、熱伝導部材のコネクション9を介して熱伝導すると共に本体シャーシ2,2bで放熱されることでLED11,11,…の過熱を防止し、それにより寿命延長が図れ、また過熱を抑えるためLED11,11,…に流す電流を駆動装置7により抑えると共にそれによる照度減をLED11,11,…の使用数を増やすことで照度も確保できる。 In addition, when the LED lighting devices 1, 1a, 1b are used as illumination, the emission heat of the LEDs 11, 11,... Of the LED unit 3 is conducted through the connection 9 of the heat conducting member and is also transmitted through the body chassis 2, 2b. The LEDs 11, 11,... Are prevented from being overheated by radiating heat, thereby extending the life of the LEDs 11,..., And the current flowing through the LEDs 11, 11,. Illuminance can also be secured by increasing the number of use of 11,.

なお、図9に示す、光反射板4とコネクション9との構成の他の実施例として、光反射板4とLED11の接触を熱伝導部材のコネクション9に換えて、図9に示すように光反射板4cの端部を曲面に形成した弾発変形部材のコネクション9aを熱伝導部とし、該LED11の側面側に光反射板4c端部のコネクション9aを弾発接触させて熱伝導させる実施例で、コネクション9を使用しないのでその分コストも押さえられる。 As another embodiment of the configuration of the light reflecting plate 4 and the connection 9 shown in FIG. 9, the contact between the light reflecting plate 4 and the LED 11 is changed to the connection 9 of the heat conducting member, and the light as shown in FIG. The connection 9a of the elastically deformable member in which the end of the reflector 4c is formed into a curved surface is used as a heat conducting portion, and the connection 9a at the end of the light reflecting plate 4c is elastically contacted with the side surface of the LED 11 to conduct heat. In the example, since the connection 9 is not used, the cost can be reduced accordingly.

本発明のLED照明装置は、発熱するLEDの熱を反射板と本体シャーシから効率よく放熱する照明器具一体で交換して使用するLED照明装置として提供できる。   The LED illuminating device of the present invention can be provided as an LED illuminating device that is used by exchanging it with an illuminating device that efficiently dissipates heat of the LED that generates heat from the reflector and the main body chassis.

1,1a,1b LED照明装置
2,2a,2b 本体シャーシ
3 LEDユニット
4,4a,4b,4c 光反射板
5,5a,5b シェード
7 駆動装置
8,8a,8b 照明器具本体
,9a コネクション
10 回路基板
11 LED
12 天井
13 ローゼット
14 引っ掛けプラグ
15 電源ケーブル
16 プラグ
DESCRIPTION OF SYMBOLS 1,1a, 1b LED illuminating device 2,2a, 2b Main body chassis 3 LED unit 4,4a, 4b, 4c Light reflector 5,5a, 5b Shade 7 Drive device 8,8a, 8b Lighting fixture main body 9,9a connection 10 Circuit board 11 LED
12 Ceiling 13 Rosette 14 Hook plug 15 Power cable 16 Plug

Claims (2)

本体シャーシとシェードにより所定形状の筐体を形成して照明器具本体とすると共に該照明器具本体内に、複数のLED(発光ダイオード)を回路基板上に設けたLEDユニットと、
該照明器具本体に各LEDを発光駆動させる駆動装置と、
天井又は壁面に設けられるローゼット又は電源ケーブルから電源供給する電源供給部に対応する引っ掛けプラグ、プラグ又はケーブル接続端子部などの電源受給部を設けた照明器具一体のLED照明装置において、
LEDユニットの各LEDが発光する光を光反射板によってシェード内面側に反射させると共に各LEDの熱を光反射板を介して本体シャーシから放熱できるように、LEDユニットの発光面と光反射板をシェード内面側に向けて本体シャーシに設けると共に該光反射板の端部を各LED側面に当接させて設けたことを特徴とするLED照明装置の放熱構造。
An LED unit in which a housing of a predetermined shape is formed by a main body chassis and a shade to form a lighting fixture body, and a plurality of LEDs (light emitting diodes) are provided on the circuit board in the lighting fixture body;
A driving device for driving each LED to emit light in the lighting fixture body;
In an LED lighting device integrated with a lighting fixture provided with a power receiving unit such as a hook plug, a plug or a cable connection terminal unit corresponding to a power supply unit that supplies power from a rosette or a power cable provided on a ceiling or a wall surface,
The light emitting surface of the LED unit and the light reflecting plate are arranged so that the light emitted from each LED of the LED unit is reflected to the inner surface of the shade by the light reflecting plate and the heat of each LED can be dissipated from the main body chassis via the light reflecting plate. A heat dissipating structure for an LED lighting device, wherein the heat dissipating structure of the LED lighting device is provided on the main body chassis toward the inner surface of the shade, and the end of the light reflecting plate is provided in contact with each LED side surface.
各LED側面と光反射板の端部との当接を、変形可能な絶縁体の熱伝導部材を介して設けた請求項1記載のLED照明装置の放熱構造。 The heat dissipation structure of the LED lighting device according to claim 1, wherein the contact between each LED side surface and the end of the light reflection plate is provided via a heat conductive member of a deformable insulator.
JP2011119803A 2011-05-28 2011-05-28 Heat dissipation structure for LED lighting device Expired - Fee Related JP4925150B1 (en)

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