JP5360402B2 - Light bulb shaped lamp and lighting equipment - Google Patents

Light bulb shaped lamp and lighting equipment Download PDF

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JP5360402B2
JP5360402B2 JP2009221637A JP2009221637A JP5360402B2 JP 5360402 B2 JP5360402 B2 JP 5360402B2 JP 2009221637 A JP2009221637 A JP 2009221637A JP 2009221637 A JP2009221637 A JP 2009221637A JP 5360402 B2 JP5360402 B2 JP 5360402B2
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light emitting
light
emitting module
globe
base
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JP2011070971A (en
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誠 酒井
雅雄 瀬川
信雄 柴野
潔 西村
光三 小川
征彦 鎌田
敏也 田中
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Toshiba Lighting and Technology Corp
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Toshiba Lighting and Technology Corp
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Priority to JP2009221637A priority Critical patent/JP5360402B2/en
Priority to US12/885,849 priority patent/US8678618B2/en
Priority to CN2010102927606A priority patent/CN102032480B/en
Priority to EP10178363.7A priority patent/EP2302284A3/en
Publication of JP2011070971A publication Critical patent/JP2011070971A/en
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Publication of JP5360402B2 publication Critical patent/JP5360402B2/en
Priority to US14/170,130 priority patent/US8998457B2/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a self-ballasted lamp capable of improving heat radiation while using a light-emitting module with a three-dimensional shape. <P>SOLUTION: The light-emitting module 13 with a three-dimensional shape is formed by arranging a light-emitting section 23 having an LED chip 35 on the surface of a support section 21 with a three-dimensional shape. The light-emitting module 13 with a three-dimensional shape and a globe 14 internally including the light-emitting module 13 are arranged on one end of a base body 12. A filler 15 having a light-transmitting property is filled up between the light-emitting module 13 with a three-dimensional shape and the inside of the globe 14. Heat generated from the LED chip 35 is efficiently heat-conducted to the globe 14 through the filler 15 at the time of lighting, and consequently, heat radiation from an outer surface of the globe 14 can be improved. <P>COPYRIGHT: (C)2011,JPO&amp;INPIT

Description

本発明は、半導体発光素子を用いた発光部を有する電球形ランプ、およびこの電球形ランプを用いた照明器具に関する。   The present invention relates to a light bulb shaped lamp having a light emitting portion using a semiconductor light emitting element, and a lighting fixture using the light bulb shaped lamp.

従来、半導体発光素子としてLEDチップを用いた発光部を有する電球形ランプでは、金属製の基体の一端側に発光部を実装した発光モジュールが取り付けられているとともにこの発光モジュールを覆うグローブが取り付けられ、基体の他端側に絶縁部材を介して口金が取り付けられ、絶縁部材の内側に発光部のLEDチップに電力を供給して点灯させる点灯回路が収容されている。   Conventionally, in a light bulb shaped lamp having a light emitting part using an LED chip as a semiconductor light emitting element, a light emitting module having a light emitting part mounted on one end side of a metal base is attached and a glove covering the light emitting module is attached. A base is attached to the other end side of the base via an insulating member, and a lighting circuit for supplying power to the LED chip of the light emitting unit and lighting it is housed inside the insulating member.

発光モジュールは、一般的に、平板状の基板の一面に発光部を実装した構成で、この基板の他面が基体に面接触して熱伝導可能に取り付けられている。   The light emitting module generally has a configuration in which a light emitting unit is mounted on one surface of a flat substrate, and the other surface of the substrate is attached to the base so as to be thermally conductive.

そして、電球形ランプの点灯時には、主に、発光部のLEDチップが発生する熱が平板状の基板から基体に熱伝導され、この基体の外部に露出する表面から空気中に放熱される。   When the light bulb shaped lamp is turned on, heat generated by the LED chip of the light emitting unit is mainly conducted from the flat substrate to the base, and is radiated from the surface exposed to the outside of the base to the air.

また、発光モジュールとしては、基板の形状を正角錐や立方体としたり、フレキシブル基板を球形に湾曲させるなどして、グローブ内で立体形状に形成し、この立体形状の基板の表面に複数の発光部を配置した電球形ランプがある(例えば、特許文献1、2参照。)。   In addition, as a light emitting module, the shape of the substrate is a regular pyramid or a cube, or the flexible substrate is curved into a spherical shape, and is formed into a three-dimensional shape within a globe, and a plurality of light emitting units are formed on the surface of the three-dimensional substrate There is a light bulb shaped lamp in which is arranged (see, for example, Patent Documents 1 and 2).

特表2002−525814号公報(第7−9頁、図1−2)JP-T-2002-525814 (page 7-9, FIG. 1-2) 特開2003−59305号公報(第2−3頁、図1)JP 2003-59305 A (page 2-3, FIG. 1)

しかしながら、発光モジュールの基板を立体形状とした場合、その発光モジュールの大部分が熱伝導率の低い空気層中に配置され、発光モジュールを支持する一部分のみが基体側に接続されているだけなので、平板状の基板を基体に面接触させて熱伝導させるのに比べて、点灯時に発光部のLEDチップが発生する熱を効率よく基体側に熱伝導することが困難となる。そのため、空気層中に配置される発光部が温度上昇しやすく、LEDチップの寿命が短くなり、また、LEDチップの温度上昇を抑制するために、LEDチップへの入力電力を低減し、光出力を抑制しなければならない問題がある。   However, when the substrate of the light emitting module has a three-dimensional shape, most of the light emitting module is disposed in an air layer with low thermal conductivity, and only a part supporting the light emitting module is connected to the base side. It is difficult to efficiently conduct the heat generated by the LED chip of the light emitting part to the base side efficiently when the flat substrate is brought into surface contact with the base to conduct heat. Therefore, the temperature of the light emitting part arranged in the air layer is likely to rise, the life of the LED chip is shortened, and in order to suppress the temperature rise of the LED chip, the input power to the LED chip is reduced, and the light output There is a problem that must be suppressed.

特に、ミニクリプトンタイプの小形の電球形ランプの場合、基体の寸法が小さく、基体からの十分な放熱性が得られ難いため、発光モジュールの基板が立体形状の場合はもちろん、平板状の場合であっても、基体側への熱伝導だけでは十分な放熱性が得られない問題がある。   Especially in the case of mini krypton type small bulb lamps, the size of the base is small, and it is difficult to obtain sufficient heat dissipation from the base. Even in such a case, there is a problem that sufficient heat dissipation cannot be obtained only by heat conduction to the substrate side.

本発明は、このような点に鑑みなされたもので、放熱性を向上させることができる電球形ランプおよび照明器具を提供することを目的とする。   This invention is made | formed in view of such a point, and it aims at providing the lightbulb-shaped lamp and lighting fixture which can improve heat dissipation.

請求項1記載の電球形ランプは、基体と;半導体発光素子を用いた発光部、および前記基体の一端側に突出して設けられた支持部を有し、少なくとも前記支持部の周方向の表面側に前記発光部が配設された発光モジュールと;前記基体の一端側に前記発光モジュールを覆って設けられたグローブと;前記発光モジュールと前記グローブの内面との間に、前記発光部および前記支持部に接触するように充填された透明なシリコーン樹脂からなる充填材と;前記基体の他端側に設けられた口金と;前記基体と前記口金との間に収容された点灯回路と;を具備し、前記発光モジュールの前記発光部と前記グローブの内面との距離が2mm以下であるものである。 The light bulb shaped lamp according to claim 1 has a base body; a light emitting part using a semiconductor light emitting element, and a support part provided so as to project from one end side of the base part, and at least a surface side in the circumferential direction of the support part A light-emitting module in which the light-emitting unit is disposed; a globe provided on one end of the base so as to cover the light-emitting module; and the light-emitting unit and the support between the light-emitting module and the inner surface of the globe A filler made of a transparent silicone resin filled so as to come into contact with the portion ; a base provided on the other end of the base; and a lighting circuit accommodated between the base and the base And the distance of the said light emission part of the said light emitting module and the inner surface of the said globe is 2 mm or less.

電球形ランプは、例えば、ミニクリプトンタイプの一般照明電球である。   The light bulb shaped lamp is, for example, a mini-krypton type general illumination light bulb.

基体は、例えば、アルミニウムなどの熱伝導性および放熱性がよい金属材料などで形成される。基体の周囲には放熱フィンを形成してもよい。   The base is made of, for example, a metal material having good thermal conductivity and heat dissipation, such as aluminum. Radiating fins may be formed around the substrate.

半導体発光素子は、例えば、LEDチップやELチップなどが含まれる。   Examples of the semiconductor light emitting element include an LED chip and an EL chip.

発光部は、例えば、半導体発光素子がLEDチップの場合、LEDチップが搭載された接続端子付きのSMD(Surface Mount Device)パッケージが用いられる。また、発光部は、基板上にLEDチップを直接配置して実装するCOB(Chip On Board)モジュール方式で構成してもよい。   For example, when the semiconductor light emitting element is an LED chip, an SMD (Surface Mount Device) package with a connection terminal on which the LED chip is mounted is used as the light emitting unit. The light emitting unit may be configured by a COB (Chip On Board) module system in which LED chips are directly arranged and mounted on a substrate.

支持部は、例えば、周面の発光部を配置する面が平面である角柱および角錐などの多面体や、円柱や半球形などの立体形状に形成され、その立体形状はどのような形状でもよいが、グローブの形状に準じる形状であることが好ましい。また、支持部の一端側に発光部が配設されていてもよい。   For example, the support portion is formed in a polyhedron such as a prism and a pyramid having a flat surface on which the light-emitting portion on the peripheral surface is arranged, or a solid shape such as a cylinder or a hemisphere, and the solid shape may be any shape. It is preferable that the shape conforms to the shape of the globe. Moreover, the light emission part may be arrange | positioned at the one end side of the support part.

グローブは、光透過性および光拡散性を有する合成樹脂やガラスで、発光モジュールを内包して覆うようにドーム状に形成されているものを含む。   The globe includes a synthetic resin or glass having a light transmitting property and a light diffusing property, which is formed in a dome shape so as to enclose and cover the light emitting module.

充填材は、例えば、透明なシリコーン樹脂などの透明樹脂が用いられる。   As the filler, for example, a transparent resin such as a transparent silicone resin is used.

口金は、例えば、E17形やE26形などの一般照明電球用のソケットに接続可能なものが含まれる。   Examples of the cap include those that can be connected to a socket for general lighting bulbs such as E17 type and E26 type.

点灯回路は、例えば、定電流の直流電流を出力する電源回路を有し、配線などによって発光モジュールの基板に接続されて半導体発光素子に電力を供給する。   The lighting circuit has, for example, a power supply circuit that outputs a constant direct current, and is connected to the substrate of the light emitting module by wiring or the like to supply power to the semiconductor light emitting element.

光モジュールの発光部とグローブの内面との距離が2mm以下であれば、距離が2mmより大きい場合に比べて、発光部からグローブへの熱伝導性を向上できる。また、組立時にグローブを弾性変形させるなどして、発光モジュールをグローブ内に配置できれば、発光モジュールの発光部とグローブの内面との距離が0mmで接触していても構わない。 If the distance between the light emitting portion and the glove inner surface of the light emission module is 2mm or less, the distance is compared with the case 2mm larger, can improve the thermal conductivity to the glove from the light emitting portion. Further, if the light emitting module can be disposed in the globe by elastically deforming the globe at the time of assembly, the distance between the light emitting part of the light emitting module and the inner surface of the globe may be in contact with 0 mm.

請求項記載の照明器具は、ソケットを有する器具本体と;前記器具本体の前記ソケットに装着される請求項1記載の電球形ランプと;を具備しているものである。 Luminaire according to claim 2 is an instrument body having a socket; those which comprises a; and claim 1 Symbol placement of the light bulb-shaped lamp is mounted on the socket of the fixture body.

請求項1記載の電球形ランプによれば、発光モジュールとグローブの内面との間に透光性を有する充填材を充填するため、点灯時に半導体発光素子が発生する熱をグローブに効率よく熱伝導できて、グローブの外面から効率よく放熱でき、放熱性を向上させることができる。さらに、発光モジュールの発光部とグローブの内面との距離は2mm以下であるため、点灯時に半導体発光素子が発生する熱をグローブに対してより効率よく熱伝導でき、放熱性をより向上させることができる。 According to the light bulb shaped lamp of claim 1, since the light-transmitting filler is filled between the light emitting module and the inner surface of the globe, the heat generated by the semiconductor light emitting element during lighting is efficiently conducted to the globe. It is possible to efficiently dissipate heat from the outer surface of the globe and improve heat dissipation. Furthermore , since the distance between the light emitting part of the light emitting module and the inner surface of the globe is 2 mm or less, the heat generated by the semiconductor light emitting element during lighting can be more efficiently conducted to the globe, and the heat dissipation can be further improved. it can.

請求項記載の照明器具によれば、放熱性のよい電球形ランプを使用した照明器具を提供できる。 According to the lighting fixture of Claim 2, the lighting fixture which uses the lightbulb-shaped lamp with sufficient heat dissipation can be provided.

本発明の一実施の形態を示す電球形ランプの断面図である。It is sectional drawing of the lightbulb-shaped lamp which shows one embodiment of this invention. 同上電球形ランプの側面図である。It is a side view of a bulb-type lamp. 同上電球形ランプの発光モジュールが備えるフレキシブル基板の展開図である。It is an expanded view of the flexible substrate with which the light emitting module of a bulb-type lamp same as the above is provided. 同上電球形ランプを用いた照明器具の断面図である。It is sectional drawing of the lighting fixture using a bulb-type lamp same as the above.

以下、本発明の一実施の形態を、図面を参照して説明する。   Hereinafter, an embodiment of the present invention will be described with reference to the drawings.

図1および図2において、11は例えばミニクリプトンサイズの電球形ランプで、この電球形ランプ11は、基体12、この基体12の一端側(電球形ランプ11のランプ軸方向の一端側)に取り付けられる立体形状の発光モジュール13、基体12の一端側に発光モジュール13を内包して取り付けられたグローブ14、発光モジュール13とグローブ14との間に充填された透光性を有する充填材15、基体12の他端側に取り付けられた絶縁性を有するカバー16、カバー16の他端側に取り付けられた口金17、および基体12と口金17との間であってカバー16の内側に収容された点灯回路18を備えている。   In FIG. 1 and FIG. 2, reference numeral 11 denotes a mini-krypton-sized light bulb shaped lamp, for example. Three-dimensional light-emitting module 13, globe 14 including light-emitting module 13 attached to one end of base 12, light-transmitting filler 15 filled between light-emitting module 13 and glove 14, base Insulating cover 16 attached to the other end of 12, base 17 attached to the other end of cover 16, and lighting housed inside cover 16 between base 12 and base 17 A circuit 18 is provided.

基体12は、熱伝導性の優れた例えばアルミニウムなどの金属材料にて、一端側に向かって拡径する円筒状に形成されている。   The base 12 is made of a metal material having excellent thermal conductivity, such as aluminum, and is formed in a cylindrical shape whose diameter increases toward one end.

また、発光モジュール13は、立体形状の支持部21、この支持部21の表面に沿って配置されるフレキシブル基板22、およびこのフレキシブル基板22に実装される発光部23を備えている。   The light emitting module 13 includes a three-dimensional support portion 21, a flexible substrate 22 arranged along the surface of the support portion 21, and a light emitting portion 23 mounted on the flexible substrate 22.

支持部21は、熱伝導性の優れた例えばアルミニウムなどの金属材料にて形成され、他端側には基体12の一端開口の内縁部に周辺部が嵌合されて熱伝導可能に取り付けられる取付部25が形成されている。支持部21の一端面には平面状の発光部取付面26が形成されているとともに、支持部21のランプ軸を中心とする外周面に複数であって例えば5面の平面状の発光部取付面27が形成され、したがって、支持部21は、グローブ14の形状に準じる多面体の立体形状に形成されている。支持部21の一端側の発光部取付面26と周囲の各発光部取付面27の一端側との間には、グローブ14の内面との干渉を避けるための傾斜面28が形成されている。   The support portion 21 is formed of a metal material such as aluminum having excellent thermal conductivity, and is attached to the other end side so that the peripheral portion is fitted to the inner edge portion of the one end opening of the base 12 so that heat conduction is possible. A portion 25 is formed. A flat light emitting portion mounting surface 26 is formed on one end surface of the support portion 21, and there are a plurality of, for example, five flat light emitting portion mounting portions on the outer peripheral surface centering on the lamp axis of the support portion 21. The surface 27 is formed, and thus the support portion 21 is formed in a polyhedral three-dimensional shape that conforms to the shape of the globe 14. An inclined surface 28 for avoiding interference with the inner surface of the globe 14 is formed between the light emitting portion mounting surface 26 on one end side of the support portion 21 and one end side of each surrounding light emitting portion mounting surface 27.

フレキシブル基板22は、図3の展開図に示すように、1枚で一体に形成され、中央基板部30とこの中央基板部30から放射状に複数の外側基板部31が形成されている。フレキシブル基板22の中央基板部30および各外側基板部31にはそれぞれ発光部23を実装するパッド部32が形成されている。1つの外側基板部31の先端には、基体12と支持部21との間を通じて点灯回路18に接続される接続部33が延設されている。   As shown in the development view of FIG. 3, the flexible substrate 22 is integrally formed as a single piece, and a central substrate portion 30 and a plurality of outer substrate portions 31 are formed radially from the central substrate portion 30. A pad portion 32 for mounting the light emitting portion 23 is formed on each of the central substrate portion 30 and each outer substrate portion 31 of the flexible substrate 22. A connection portion 33 connected to the lighting circuit 18 through the space between the base 12 and the support portion 21 is extended at the tip of one outer substrate portion 31.

発光部23は、半導体発光素子としてのLEDチップ35が搭載された接続端子付きのSMD(Surface Mount Device)パッケージ36が用いられている。このSMDパッケージ36は、パッケージ内に例えば青色光を発するLEDチップ35が配置され、このLEDチップ35がLEDチップ35からの青色光の一部により励起されて黄色光を放射する黄色の蛍光体が混入された例えばシリコーン樹脂などの封止樹脂37で封止されている。したがって、封止樹脂37の表面が発光面38となり、この発光面38から白色系の光が放射される。SMDパッケージ36の裏面には、フレキシブル基板22にはんだ付け接続するための図示しない端子が配置されている。   As the light emitting unit 23, an SMD (Surface Mount Device) package 36 with a connection terminal on which an LED chip 35 as a semiconductor light emitting element is mounted is used. In the SMD package 36, for example, an LED chip 35 that emits blue light is disposed in the package, and the yellow phosphor that emits yellow light when the LED chip 35 is excited by part of the blue light from the LED chip 35. Sealed with a sealing resin 37 such as silicone resin mixed therein. Accordingly, the surface of the sealing resin 37 becomes the light emitting surface 38, and white light is emitted from the light emitting surface 38. On the back surface of the SMD package 36, terminals (not shown) for soldering connection to the flexible substrate 22 are arranged.

そして、複数の発光部23が実装されたフレキシブル基板22は、中央基板部30が支持部21の一端面の発光部取付面26に、各外側基板部31が支持部21の周面の各発光部取付面27に沿って例えば接着剤などで固定して取り付けられることにより、立体形状の発光モジュール13が形成されている。   In the flexible substrate 22 on which the plurality of light emitting units 23 are mounted, the central substrate unit 30 is on the light emitting unit mounting surface 26 on one end surface of the support unit 21, and each outer substrate unit 31 is on each peripheral surface of the support unit 21. The light emitting module 13 having a three-dimensional shape is formed by being fixed and attached along the part attaching surface 27 with, for example, an adhesive.

また、グローブ14は、光透過性および光拡散性を有する例えば合成樹脂やガラスなどの材料で、立体形状の発光モジュール13を内包して覆うようにドーム状に形成されている。グローブ14の他端開口の縁部が基体12に嵌合されて接着剤などで固定されている。   The globe 14 is made of a material such as synthetic resin or glass having light transmittance and light diffusibility, and is formed in a dome shape so as to enclose and cover the three-dimensional light emitting module 13. The edge of the opening of the other end of the globe 14 is fitted to the base 12 and fixed with an adhesive or the like.

発光モジュール13の各発光部23とグローブ14の内面との距離Lは2mm以下となるように、発光モジュール13およびグローブ14が形成されている。   The light emitting module 13 and the globe 14 are formed so that the distance L between each light emitting portion 23 of the light emitting module 13 and the inner surface of the globe 14 is 2 mm or less.

また、充填材15は、例えば透明なシリコーン樹脂などの透明樹脂が用いられ、発光モジュール13の表面とグローブ14の内面との間の隙間に空気層がほとんど存在することなく充填されている。   The filler 15 is made of, for example, a transparent resin such as a transparent silicone resin, and is filled with almost no air layer in the gap between the surface of the light emitting module 13 and the inner surface of the globe 14.

また、カバー16は、例えばPBT樹脂などの絶縁材料により、一端側へ向けて拡径する円筒状に形成されており、一端側が基体12の内側に嵌合され、他端側が基体12から突出されている。   Further, the cover 16 is formed in a cylindrical shape whose diameter is expanded toward one end side by an insulating material such as PBT resin, and one end side is fitted inside the base body 12 and the other end side is projected from the base body 12. ing.

また、口金17は、例えば、E17形などの一般照明電球用のソケットに接続可能なもので、基体12から突出するカバー16の他端に嵌合されてかしめられて固定されるシェル41、このシェル41の他端側に設けられる絶縁部42、およびこの絶縁部42の頂部に設けられるアイレット43を有している。   The base 17 can be connected to, for example, a socket for a general lighting bulb such as E17 type. The shell 41 is fitted into the other end of the cover 16 protruding from the base 12 and fixed by being crimped. An insulating portion 42 provided on the other end side of the shell 41 and an eyelet 43 provided on the top of the insulating portion 42 are provided.

また、点灯回路18は、例えば、発光モジュール13のLEDチップ35に対して定電流を供給する回路であり、回路を構成する複数の回路素子が実装された回路基板を有し、この回路基板がカバー16内に収納されて固定されている。点灯回路18の入力側には、口金17のシェル41およびアイレット43が接続線で電気的に接続されている。点灯回路18の出力側は発光モジュール13のフレキシブル基板22の接続部33と接続されている。   The lighting circuit 18 is, for example, a circuit that supplies a constant current to the LED chip 35 of the light emitting module 13, and includes a circuit board on which a plurality of circuit elements constituting the circuit are mounted. The cover 16 is housed and fixed. On the input side of the lighting circuit 18, the shell 41 and the eyelet 43 of the base 17 are electrically connected by a connection line. The output side of the lighting circuit 18 is connected to the connection portion 33 of the flexible substrate 22 of the light emitting module 13.

また、図4には、電球形ランプ11を使用するダウンライトである照明器具51を示し、この照明器具51は、器具本体52を有し、この器具本体52内にソケット53および反射体54が配設されている。   FIG. 4 shows a lighting fixture 51 that is a downlight using the light bulb shaped lamp 11. The lighting fixture 51 has a fixture main body 52, and a socket 53 and a reflector 54 are provided in the fixture main body 52. It is arranged.

そうして、電球形ランプ11の口金17を照明器具51のソケット53に装着して通電すると、点灯回路18が動作し、発光モジュール13の各発光部23のLEDチップ35に電力が供給され、これらLEDチップ35が発光し、各発光部23の発光面38から放射される光が充填材15およびグローブ14を通じて拡散放射される。   Then, when the base 17 of the light bulb shaped lamp 11 is attached to the socket 53 of the lighting fixture 51 and energized, the lighting circuit 18 operates, and power is supplied to the LED chip 35 of each light emitting unit 23 of the light emitting module 13, These LED chips 35 emit light, and light emitted from the light emitting surface 38 of each light emitting unit 23 is diffused and emitted through the filler 15 and the globe 14.

点灯時において、発光モジュール13の各発光部23のLEDチップ35から発生する熱の一部は、フレキシブル基板22、支持部21、基体12の順に熱伝導されて、基体12の外表面から空気中に放熱される。   At the time of lighting, a part of the heat generated from the LED chip 35 of each light emitting unit 23 of the light emitting module 13 is thermally conducted in the order of the flexible substrate 22, the support unit 21, and the base 12, and from the outer surface of the base 12 to the air Heat is dissipated.

さらに、発光モジュール13の各発光部23のLEDチップ35から発生する熱の他の一部は、発光部23から充填材15に直接的に熱伝導されるとともに、発光部23からフレキシブル基板22および支持部21に熱伝導されてからこれらフレキシブル基板22および支持部21の表面から充填材15に熱伝導され、この充填材15からグローブ14に熱伝導され、グローブ14の外面から空気中に放熱される。このとき、各発光部23からグローブ14までの間に熱伝導率が低い空気層が存在しないため、各発光部23からグローブ14に効率よく熱伝導できる。   Furthermore, the other part of the heat generated from the LED chip 35 of each light emitting unit 23 of the light emitting module 13 is directly conducted from the light emitting unit 23 to the filler 15, and from the light emitting unit 23 to the flexible substrate 22 and After heat conduction to the support part 21, heat is conducted from the surface of the flexible substrate 22 and the support part 21 to the filler 15, heat conduction from the filler 15 to the globe 14, and heat radiation to the air from the outer surface of the globe 14. The At this time, since there is no air layer having a low thermal conductivity between each light emitting unit 23 and the globe 14, heat conduction from each light emitting unit 23 to the globe 14 can be performed efficiently.

このように、立体形状の発光モジュール13とグローブ14の内面との間に透光性を有する充填材15を充填するため、点灯時にLEDチップ35が発生する熱をグローブ14に効率よく熱伝導できて、グローブ14の外面から放熱でき、立体形状の発光モジュール13を用いながら、放熱性を向上させることができる。   As described above, since the light-transmitting filler 15 is filled between the three-dimensional light emitting module 13 and the inner surface of the globe 14, the heat generated by the LED chip 35 during lighting can be efficiently conducted to the globe 14. Thus, heat can be radiated from the outer surface of the globe 14, and heat dissipation can be improved while using the three-dimensional light emitting module 13.

そのため、ミニクリプトンタイプの小形の電球形ランプ11であって、基体12の寸法が小さく、基体12からの十分な放熱性が得られ難くても、グローブ14からの十分な放熱性を確保することができ、LEDチップ35への入力電力を大きくして光出力を向上させることもできる。   Therefore, it is a mini krypton type small bulb-type lamp 11, and the heat dissipation from the globe 14 is ensured even if the size of the base 12 is small and sufficient heat dissipation from the base 12 is difficult to obtain. It is possible to increase the input power to the LED chip 35 and improve the light output.

また、立体形状の支持部21の表面に発光部23を配置した立体形状の発光モジュール13であるため、発光モジュール13の表面積を大きくでき、この発光モジュール13から充填材15へ効率よく熱伝導でき、放熱性をより向上できる。   In addition, since the light emitting module 13 has the light emitting portion 23 disposed on the surface of the three-dimensional support portion 21, the surface area of the light emitting module 13 can be increased, and heat can be efficiently transferred from the light emitting module 13 to the filler 15. , Heat dissipation can be further improved.

また、発光モジュール13の発光部23とグローブ14の内面との距離Lは2mm以下であるため、点灯時にLEDチップ35が発生する熱をグローブ14に対してより効率よく熱伝導でき、放熱性をより向上させることができる。なお、このように、発光モジュール13の発光部23とグローブ14の内面との距離Lが2mm以下であれば、距離Lが2mmより大きい場合に比べて、発光部23からグローブ14への熱伝導性を向上できる。また、組立時にグローブ14を弾性変形させるなどして、発光モジュール13をグローブ14内に配置できれば、発光モジュール13の発光部23の一部とグローブ14の内面との距離が0mmで接触していても構わない。   In addition, since the distance L between the light emitting portion 23 of the light emitting module 13 and the inner surface of the globe 14 is 2 mm or less, the heat generated by the LED chip 35 during lighting can be more efficiently conducted to the globe 14 and the heat dissipation can be improved. It can be improved further. As described above, when the distance L between the light emitting portion 23 of the light emitting module 13 and the inner surface of the globe 14 is 2 mm or less, the heat conduction from the light emitting portion 23 to the globe 14 is greater than when the distance L is greater than 2 mm. Can be improved. Further, if the light emitting module 13 can be disposed in the globe 14 by elastically deforming the globe 14 at the time of assembly, the distance between a part of the light emitting portion 23 of the light emitting module 13 and the inner surface of the globe 14 is in contact with 0 mm. It doesn't matter.

なお、発光部23は、フレキシブル基板22を使用せず、個別の配線基板を介して支持部21の各表面にそれぞれ固着してもよい。また、支持部21の周面に発光部23を直接取り付けてもよい。また、支持部21の内側に収容空間を形成し、この中に点灯回路18を収容してランプ全体の小形化を図ってもよい。   The light emitting unit 23 may be fixed to each surface of the support unit 21 via an individual wiring board without using the flexible substrate 22. Further, the light emitting unit 23 may be directly attached to the peripheral surface of the support unit 21. Further, an accommodation space may be formed inside the support portion 21, and the lighting circuit 18 may be accommodated therein to reduce the size of the entire lamp.

11 電球形ランプ
12 基体
13 発光モジュール
14 グローブ
15 充填材
17 口金
18 点灯回路
21 支持部
23 発光部
35 半導体発光素子としてのLEDチップ
51 照明器具
52 器具本体
53 ソケット
11 Bulb lamp
12 substrate
13 Light emitting module
14 Globe
15 Filler
17 base
18 Lighting circuit
21 Support section
23 Light emitter
35 LED chips as semiconductor light emitting devices
51 Lighting equipment
52 Instrument body
53 Socket

Claims (2)

基体と;
半導体発光素子を用いた発光部、および前記基体の一端側に突出して設けられた支持部を有し、少なくとも前記支持部の周方向の表面側に前記発光部が配設された発光モジュールと;
前記基体の一端側に前記発光モジュールを覆って設けられたグローブと;
前記発光モジュールと前記グローブの内面との間に、前記発光部および前記支持部に接触するように充填された透明なシリコーン樹脂からなる充填材と;
前記基体の他端側に設けられた口金と;
前記基体と前記口金との間に収容された点灯回路と;
を具備し、
前記発光モジュールの前記発光部と前記グローブの内面との距離が2mm以下であることを特徴とする電球形ランプ。
A substrate;
A light-emitting module using a semiconductor light-emitting element, and a light-emitting module that has a support portion provided so as to protrude from one end side of the base, and at least the light-emitting portion is disposed on the circumferential surface side of the support portion;
A glove provided on one end side of the base so as to cover the light emitting module;
A filler made of a transparent silicone resin filled between the light emitting module and the inner surface of the globe so as to be in contact with the light emitting part and the support part ;
A base provided on the other end of the base;
A lighting circuit housed between the base and the base;
Comprising
A light bulb shaped lamp characterized in that a distance between the light emitting part of the light emitting module and the inner surface of the globe is 2 mm or less.
ソケットを有する器具本体と;
前記器具本体の前記ソケットに装着される請求項1記載の電球形ランプと;
を具備していることを特徴とする照明器具。
An instrument body having a socket;
The light bulb shaped lamp according to claim 1, which is mounted on the socket of the appliance body;
The lighting fixture characterized by comprising.
JP2009221637A 2009-09-25 2009-09-25 Light bulb shaped lamp and lighting equipment Expired - Fee Related JP5360402B2 (en)

Priority Applications (5)

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JP2009221637A JP5360402B2 (en) 2009-09-25 2009-09-25 Light bulb shaped lamp and lighting equipment
US12/885,849 US8678618B2 (en) 2009-09-25 2010-09-20 Self-ballasted lamp having a light-transmissive member in contact with light emitting elements and lighting equipment incorporating the same
CN2010102927606A CN102032480B (en) 2009-09-25 2010-09-20 Self-ballasted lamp and lighting equipment
EP10178363.7A EP2302284A3 (en) 2009-09-25 2010-09-22 Self-ballasted lamp and lighting equipment
US14/170,130 US8998457B2 (en) 2009-09-25 2014-01-31 Self-ballasted lamp and lighting equipment having a support portion in contact with an inner circumference of a base body

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