JP7353477B2 - Lighting equipment, lighting equipment assembly method, and elevator car - Google Patents

Lighting equipment, lighting equipment assembly method, and elevator car Download PDF

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JP7353477B2
JP7353477B2 JP2022522521A JP2022522521A JP7353477B2 JP 7353477 B2 JP7353477 B2 JP 7353477B2 JP 2022522521 A JP2022522521 A JP 2022522521A JP 2022522521 A JP2022522521 A JP 2022522521A JP 7353477 B2 JP7353477 B2 JP 7353477B2
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light emitting
emission direction
case
lighting fixture
side wall
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JPWO2021229877A1 (en
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祐芽 横堀
真行 近藤
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/502Cooling arrangements characterised by the adaptation for cooling of specific components
    • F21V29/503Cooling arrangements characterised by the adaptation for cooling of specific components of light sources
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/70Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks
    • F21V29/74Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks with fins or blades
    • F21V29/77Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks with fins or blades with essentially identical diverging planar fins or blades, e.g. with fan-like or star-like cross-section
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]

Description

本開示は、照明器具、照明器具の組立方法及びエレベータかごに関する。 The present disclosure relates to a lighting fixture, a method of assembling a lighting fixture, and an elevator car.

円筒状の器具本体の内部に収納された発光部及び反射体と、器具本体の外周面及び底面に一体に形成された多数の放熱フィンとを備えた照明器具が開示されている(例えば、特許文献1参照)。発光部を構成する発光モジュールは、固体発光素子としてLED(Light Emitting Diode)チップを実装している。反射体は、発光モジュールに対向して配置され、光を出射方向に向けて反射するとともに、光の配光角を所定の角度に設定する複数の反射部を有する。 A lighting device has been disclosed that includes a light emitting part and a reflector housed inside a cylindrical device main body, and a large number of heat dissipation fins that are integrally formed on the outer peripheral surface and bottom surface of the device main body (for example, the patent (See Reference 1). The light emitting module that constitutes the light emitting section has an LED (Light Emitting Diode) chip mounted thereon as a solid state light emitting element. The reflector is disposed to face the light emitting module, and has a plurality of reflecting parts that reflect light in the emission direction and set the light distribution angle to a predetermined angle.

特開2014-112567号公報Japanese Patent Application Publication No. 2014-112567

しかしながら、特許文献1の技術では、器具本体に対して、発光モジュール及び反射体を光の出射方向側から締結する構造であるが、組み立て時の作業性を確保するために、発光モジュール及び反射体を光の反出射方向側から締結しようとすると、器具本体から延びている放熱フィンの間隔を広げる又は放熱フィンを間引く必要があり、放熱面積の減少によって、発光モジュールの温度が上昇するという課題があった。 However, in the technology of Patent Document 1, the light emitting module and the reflector are fastened to the device body from the light emission direction side, but in order to ensure workability during assembly, the light emitting module and the reflector are If you try to fasten it from the side opposite to the light emission direction, it is necessary to widen the interval between the heat dissipation fins extending from the device body or thin out the heat dissipation fins, which causes the problem that the temperature of the light emitting module increases due to the reduction of the heat dissipation area. there were.

本開示は、上述の課題を解決するためになされたもので、放熱効率を確保できる照明器具、照明器具の組立方法及びエレベータかごを提供することを目的とする。 The present disclosure has been made in order to solve the above-mentioned problems, and aims to provide a lighting fixture, a method of assembling the lighting fixture, and an elevator car that can ensure heat dissipation efficiency.

本開示にかかる照明器具は、光を出射する発光部を有する発光基板と、発光基板が配置される底部、発光基板を収容する筒状の側壁部、及び側壁部の外周面に形成される放熱フィンを有し、発光部から生じる熱を放熱するヒートシンクと、側壁部に収容されるとともに、発光部を囲うように配置され、光を反射する反射部材と、少なくとも一部が側壁部に収容されるケースと、照明器具を設置面の取付穴に固定する取付バネと、を備え、光が出射される方向を出射方向、出射方向の反対方向を反出射方向としたとき、側壁部は、底部よりも反出射方向側に延伸して形成され、発光基板は、底部の出射方向側に配置され、反射部材は、発光基板の出射方向側に配置され、ケースは、反射部材の出射方向側に配置され、底部及びケースを締結する締結部材は、底部の反出射方向側から、反射部材を通して配置され、取付バネは、側壁部の外周面の、底部よりも反出射方向側に締結され、側壁部が延伸する方向と交差する方向に貫通する穴部を有し、ケースは、取付バネの穴部に対応する位置に、ケースの外側方向へ突出する凸部を有し、取付バネの穴部には、凸部が挿入される。 A lighting fixture according to the present disclosure includes a light emitting board having a light emitting part that emits light, a bottom part where the light emitting board is placed, a cylindrical side wall part housing the light emitting board, and a heat radiation formed on the outer peripheral surface of the side wall part. a heat sink that has fins and radiates heat generated from the light emitting section; a reflective member that is housed in the side wall and is arranged to surround the light emitting section and reflects light; and a reflective member that is at least partially housed in the side wall. and a mounting spring for fixing the lighting fixture to the mounting hole on the installation surface, and when the direction in which light is emitted is the emission direction and the opposite direction to the emission direction is the counter-emission direction, the side wall part is the bottom part. The light emitting substrate is placed on the emission direction side of the bottom, the reflecting member is placed on the emission direction side of the light emitting substrate, and the case is formed on the emission direction side of the reflecting member. A fastening member that fastens the bottom and the case is placed through the reflective member from the side opposite to the emission direction of the bottom, and a mounting spring is fastened to the outer peripheral surface of the side wall on the side opposite to the emission direction from the bottom. The case has a convex portion that protrudes toward the outside of the case at a position corresponding to the hole of the mounting spring, and the case has a convex portion that protrudes toward the outside of the case at a position corresponding to the hole of the mounting spring. A convex portion is inserted into .

本開示にかかる照明器具の組立方法は、以下の照明器具の組立方法であって、照明器具は、光を出射する発光部を有する発光基板と、発光基板が配置される底部、発光基板を収容する筒状の側壁部、及び側壁部の外周面に形成される放熱フィンを有し、発光部から生じる熱を放熱するヒートシンクと、側壁部に収容されるとともに、発光部を囲うように配置され、光を反射する反射部材と、少なくとも一部が側壁部に収容されるケースと、を備え、光が出射される方向を出射方向、出射方向の反対方向を反出射方向としたとき、側壁部は、底部よりも反出射方向側に延伸して形成され、発光基板は、底部の出射方向側に配置され、反射部材は、発光基板の出射方向側に配置され、ケースは、反射部材の出射方向側に配置され、底部及びケースを締結する締結部材は、底部の反出射方向側から、反射部材を通して配置され、発光基板、ヒートシンクの底部、反射部材、及びケースのそれぞれの対応する位置には、出射方向側から反射方向側に貫通する通し穴が設けられ、ヒートシンク、発光基板、反射部材及びケースの順に、それぞれの通し穴に反出射方向側から、通し穴に対応する位置に設けられたガイドピンを有する組立治具を挿入して、ヒートシンク、発光基板、反射部材及びケースを組み合わせる工程と、組み合わされたヒートシンク、発光基板、反射部材及びケースの通し穴から、反出射方向側へ組立治具を引き抜く工程と、通し穴から組立治具が引き抜かれ、組み合わされたままのヒートシンク、発光基板、反射部材及びケースの通し穴に、底部の反出射方向側からケースの通し穴へ締結部材を挿入し、底部及びケースを締結し、ヒートシンク、発光基板、反射部材及びケースを固定する工程と、を有するものである。 A method for assembling a lighting device according to the present disclosure is the following method for assembling a lighting device, wherein the lighting device includes a light-emitting board having a light-emitting part that emits light, a bottom portion on which the light-emitting board is arranged, and a bottom portion housing the light-emitting board. a heat sink having a cylindrical side wall portion and a heat radiation fin formed on the outer peripheral surface of the side wall portion to radiate heat generated from the light emitting portion; , comprising a reflective member that reflects light and a case at least partially housed in the side wall, and when the direction in which the light is emitted is the emission direction and the opposite direction to the emission direction is the counter-emission direction, the side wall part is formed by extending in the opposite emission direction from the bottom, the light emitting substrate is placed on the emission direction side of the bottom, the reflective member is placed on the emission direction side of the light emitting substrate, and the case A fastening member that is disposed on the side of the light-emitting substrate, that fastens the bottom and the case is disposed through the reflective member from the side of the bottom in the opposite emission direction, and is provided at corresponding positions of the light-emitting board, the bottom of the heat sink, the reflective member, and the case . , a through hole penetrating from the emission direction side to the counter emission direction side is provided, and the heat sink, the light emitting board, the reflective member, and the case are provided in the order of the through hole from the counter emission direction side at a position corresponding to the through hole. The step of assembling the heat sink, light emitting board, reflective member, and case by inserting an assembly jig with guide pins that have been assembled, and the step of assembling the heat sink, light emitting board, reflective member, and case through the through holes of the assembled heat sink, light emitting board, reflective member, and case toward the counter-emission direction side. The process of pulling out the assembly jig, and the assembly jig is pulled out from the through hole and fastened to the assembled heat sink, light emitting board, reflective member, and through hole of the case from the opposite side of the bottom to the through hole of the case. The method includes the steps of inserting the members, fastening the bottom part and the case, and fixing the heat sink, the light emitting board, the reflective member, and the case.

本開示にかかるエレベータかごは、かご床部、エレベータ天井部、壁部、及び扉部を備えるエレベータかごであって、エレベータ天井に設置される本開示に記載の照明器具を備え、エレベータ天井部は、対向して配置される天井板部及び天井板金を有し、天井板金は、天井板部よりもかご床部側に配置され、天井板部及び天井板金の間には空間部が形成され、照明器具は、天井板金に形成される取付穴から空間部内に設置され、天井板部から突出しないものである。 An elevator car according to the present disclosure is an elevator car that includes a car floor, an elevator ceiling, a wall, and a door, and includes the lighting fixture according to the present disclosure installed on the elevator ceiling, and the elevator car has a car floor. , a ceiling plate portion and a ceiling sheet metal are arranged to face each other, the ceiling plate portion is arranged closer to the car floor than the ceiling plate portion, and a space is formed between the ceiling plate portion and the ceiling sheet metal, The lighting fixture is installed in the space through a mounting hole formed in a ceiling metal plate, and does not protrude from the ceiling plate.

本開示によれば、放熱効率を確保できる。 According to the present disclosure, heat dissipation efficiency can be ensured.

実施の形態1にかかる照明器具を示す分解斜視図。1 is an exploded perspective view showing a lighting fixture according to a first embodiment; FIG. 実施の形態1にかかる照明器具を示す概略模式図。1 is a schematic diagram showing a lighting fixture according to Embodiment 1. FIG. 実施の形態1にかかる照明器具を示す斜視図。1 is a perspective view showing a lighting fixture according to Embodiment 1. FIG. 実施の形態1にかかる照明器具を示す分解斜視図。1 is an exploded perspective view showing a lighting fixture according to a first embodiment; FIG. 実施の形態1にかかる照明器具を示す縦断面模式図。1 is a schematic vertical cross-sectional view showing a lighting fixture according to a first embodiment; FIG. 実施の形態1にかかる照明器具を示す分解斜視図。1 is an exploded perspective view showing a lighting fixture according to a first embodiment; FIG. 実施の形態1にかかる他の照明器具を示す概略模式図。3 is a schematic diagram showing another lighting fixture according to the first embodiment. FIG. 実施の形態2にかかる照明器具を示す分解斜視図。FIG. 2 is an exploded perspective view showing a lighting fixture according to a second embodiment. 実施の形態2にかかる照明器具を示す概略模式図。FIG. 3 is a schematic diagram showing a lighting fixture according to a second embodiment. 実施の形態2にかかる照明器具を示す斜視図。FIG. 3 is a perspective view showing a lighting fixture according to a second embodiment. 実施の形態3にかかる照明器具を示す分解斜視図。FIG. 3 is an exploded perspective view showing a lighting fixture according to a third embodiment. 実施の形態3にかかる照明器具を示す概略模式図。FIG. 3 is a schematic diagram showing a lighting fixture according to a third embodiment. 実施の形態4にかかるエレベータかごを示す概略模式図。FIG. 7 is a schematic diagram showing an elevator car according to a fourth embodiment. 実施の形態4にかかるエレベータかごの天井を示す概略模式図。FIG. 7 is a schematic diagram showing the ceiling of an elevator car according to Embodiment 4;

実施の形態1.
以下に示す図面において、各構成部材の相対的な寸法の関係及び形状等が、実際の照明器具1とは異なる場合がある。また、理解を容易にするために、方向及び位置を表す用語(例えば、「上」、「下」、「右」、「左」、「前」、及び「後」等)を適宜用いる。しかし、これらの表記は、説明の便宜上記載しているだけであり、各構成部材の配置及び向きを限定するものではない。また、以下の図面において、同一の符号を付したものは、同一又はこれに相当するものである。
Embodiment 1.
In the drawings shown below, the relative dimensional relationship, shape, etc. of each component may differ from the actual lighting fixture 1. Further, to facilitate understanding, terms expressing directions and positions (for example, "top", "bottom", "right", "left", "front", "back", etc.) are used as appropriate. However, these notations are only described for convenience of explanation, and do not limit the arrangement and orientation of each component. Furthermore, in the following drawings, the same reference numerals are the same or equivalent.

図1は、実施の形態1にかかる照明器具1を示す分解斜視図である。図2は、実施の形態1にかかる照明器具1を示す概略模式図である。図2において、照明器具1の中心軸L1より紙面左側は、照明器具1を示す縦断面模式図であり、紙面右側は、照明器具1を示す側面図である。図3は、実施の形態1にかかる照明器具1を示す斜視図である。 FIG. 1 is an exploded perspective view showing a lighting fixture 1 according to the first embodiment. FIG. 2 is a schematic diagram showing the lighting fixture 1 according to the first embodiment. In FIG. 2, the left side of the lighting fixture 1 from the center axis L1 in the paper is a schematic vertical cross-sectional view showing the lighting fixture 1, and the right side in the paper is a side view showing the lighting fixture 1. FIG. 3 is a perspective view showing the lighting fixture 1 according to the first embodiment.

図1~3において、対向して配置される取付バネ8(後述する)を結んだ方向をX軸とし、X軸と直交する方向をY軸とする。Z軸は、照明器具1の高さ方向を示す。X軸、Y軸、及びZ軸は、それぞれ直交している。XY平面と照明器具1を設置する設置面(例えば、天井)は水平であり、XZ平面及びYZ平面と照明器具1を設置する設置面とは垂直である。X軸、Y軸、及びZ軸の各矢印の向く方向を正方向とし、それぞれ+X軸、+Y軸、及び+Z軸と示す。X軸、Y軸、及びZ軸の各矢印の向く方向とは反対の方向を負方向とし、それぞれ-X軸、-Y軸、及び-Z軸と示す。これらは、以下の図面においても同様である。以下、光が出射される+Z軸方向を出射方向、出射方向と反対の方向を反出射方向という。 In FIGS. 1 to 3, the direction in which attachment springs 8 (described later) arranged to face each other are connected is defined as the X-axis, and the direction orthogonal to the X-axis is defined as the Y-axis. The Z axis indicates the height direction of the lighting fixture 1. The X-axis, Y-axis, and Z-axis are orthogonal to each other. The XY plane and the installation surface (for example, the ceiling) on which the lighting fixture 1 is installed are horizontal, and the XZ plane and YZ plane and the installation surface on which the lighting fixture 1 is installed are perpendicular. The directions in which the arrows of the X-axis, Y-axis, and Z-axis face are defined as positive directions, and are respectively referred to as +X-axis, +Y-axis, and +Z-axis. The direction opposite to the direction in which the arrows of the X-axis, Y-axis, and Z-axis face is defined as a negative direction, and is referred to as -X-axis, -Y-axis, and -Z-axis, respectively. The same applies to the following drawings. Hereinafter, the +Z-axis direction in which light is emitted will be referred to as the emission direction, and the direction opposite to the emission direction will be referred to as the counter-emission direction.

照明器具1は、発光基板2、ヒートシンク3、反射部材4、及びケース6を備える。照明器具1は、さらに、拡散板5、締結部材7、取付バネ8、及びバネ締結部材9を備える。以下、照明器具1について、詳細を説明する。 The lighting fixture 1 includes a light emitting substrate 2, a heat sink 3, a reflective member 4, and a case 6. The lighting fixture 1 further includes a diffusion plate 5, a fastening member 7, a mounting spring 8, and a spring fastening member 9. The details of the lighting fixture 1 will be explained below.

発光基板2は、発光部20及び基板21を有する。発光部20は、例えば、SMD(Surface Mount Device)である。発光部20は、基板21上に実装される。発光部20は、440nm~480nm程度の青色光を出射するLEDチップ(青色LED)を有する。発光部20は、青色LEDとその補色である黄色蛍光体とを組み合わせることによって、白色発光を行うシングルチップ方式を採用している。発光部20のLEDチップには、黄色蛍光体を分散又は混合した封止部材(図1~3に図示せず)が塗布又は充填される。LEDチップから出射される青色光の一部は、黄色蛍光体を励起して黄色光に変換される。青色光と、青色光から変換された黄色光とが混光して、白色の光が発光部20から出射される。 The light emitting substrate 2 includes a light emitting section 20 and a substrate 21. The light emitting unit 20 is, for example, an SMD (Surface Mount Device). The light emitting section 20 is mounted on the substrate 21. The light emitting unit 20 has an LED chip (blue LED) that emits blue light of approximately 440 nm to 480 nm. The light emitting unit 20 employs a single-chip system that emits white light by combining a blue LED and a yellow phosphor that is its complementary color. The LED chip of the light emitting unit 20 is coated or filled with a sealing member (not shown in FIGS. 1 to 3) in which yellow phosphor is dispersed or mixed. A portion of the blue light emitted from the LED chip excites the yellow phosphor and is converted into yellow light. The blue light and the yellow light converted from the blue light are mixed, and white light is emitted from the light emitting section 20.

基板21は、板状のガラスエポキシ基板である。基板21には、電力供給用の回路パターンが形成される。基板21には、発光部20の他にも、ダイオード(図1に図示せず)等の素子が、必要に応じ実装される。基板21は、ワイヤ及びコネクタを介して電源(図1に図示せず)に接続される。 The substrate 21 is a plate-shaped glass epoxy substrate. A circuit pattern for power supply is formed on the substrate 21 . In addition to the light emitting section 20, elements such as diodes (not shown in FIG. 1) are mounted on the substrate 21 as necessary. The substrate 21 is connected to a power source (not shown in FIG. 1) via wires and connectors.

ヒートシンク3は、底部3a、筒状の側壁部3b、及び放熱フィン3cを備える。底部3aには、発光基板2が配置される。側壁部3bは、底部3aよりも反出射方向側へ延伸している。換言すると、側壁部3bの反出射方向側の端部よりも、底部3aは出射方向側に配置されている。これにより、照明器具1の放熱面積を大きくできる。放熱フィン3cは、側壁部3bの外周面に配置される。放熱フィン3cは、側壁部3bの出射方向側の端部から反出射方向側の端部へ延伸している。放熱フィン3cは板状である。ヒートシンク3は、発光基板2、後述する反射部材4、及び拡散板5を収容する。ヒートシンク3は、さらに、ケース6の少なくとも一部を収容する。ヒートシンク3は、アルミによって形成される。 The heat sink 3 includes a bottom portion 3a, a cylindrical side wall portion 3b, and radiation fins 3c. The light emitting substrate 2 is placed on the bottom 3a. The side wall portion 3b extends further in the opposite direction than the bottom portion 3a. In other words, the bottom portion 3a is located closer to the emission direction than the end of the side wall portion 3b on the side opposite to the emission direction. Thereby, the heat radiation area of the lighting fixture 1 can be increased. The radiation fins 3c are arranged on the outer peripheral surface of the side wall portion 3b. The radiation fins 3c extend from the end of the side wall 3b on the side of the emission direction to the end on the side of the opposite emission direction. The radiation fin 3c is plate-shaped. The heat sink 3 accommodates the light emitting substrate 2, a reflection member 4, which will be described later, and a diffusion plate 5. Heat sink 3 further accommodates at least a portion of case 6. The heat sink 3 is made of aluminum.

反射部材4は、発光基板2の出射方向側に配置される。反射部材4において、光を反射する面を反射面4aとする。反射部材4は、発光部20を囲うように配置される。これにより、反射部材4は、発光部20から出射された光を反射して、光の方向を変換する。反射部材4は、ABS(Acrylonitrile butadiene styrene)樹脂によって形成される。 The reflective member 4 is arranged on the light emitting direction side of the light emitting substrate 2 . In the reflecting member 4, a surface that reflects light is referred to as a reflecting surface 4a. The reflective member 4 is arranged so as to surround the light emitting section 20. Thereby, the reflecting member 4 reflects the light emitted from the light emitting section 20 and changes the direction of the light. The reflective member 4 is made of ABS (acrylonitrile butadiene styrene) resin.

拡散板5は、発光部20から出射された光を拡散し、照射イメージの緩和及び照射面の色むら等を改善する。拡散板5は、発光基板2及び反射部材4の出射方向側に配置される。拡散板5を配置することにより、発光基板2を保護できる。拡散板5はアクリル樹脂によって形成される。 The diffuser plate 5 diffuses the light emitted from the light emitting unit 20 to soften the irradiated image and improve color unevenness on the irradiated surface. The diffuser plate 5 is arranged on the emission direction side of the light emitting substrate 2 and the reflecting member 4. By arranging the diffusion plate 5, the light emitting substrate 2 can be protected. Diffusion plate 5 is made of acrylic resin.

ケース6は、拡散板5を通過した光の方向を変換する。ケース6は、拡散板5の出射方向側に配置される。ケース6は、ABS樹脂によって形成される。 The case 6 changes the direction of the light that has passed through the diffuser plate 5. The case 6 is arranged on the side of the diffusion plate 5 in the emission direction. Case 6 is made of ABS resin.

取付バネ8は、板バネ状である。取付バネ8は、バネ締結部材9によって、ヒートシンク3の側壁部3bの外周面に取り付けられる。照明器具1では、対となる取付バネ8が、対向して側壁部3bの外周面に取り付けられる。バネ締結部材9は、側壁部3bの反出射方向側の端部よりも出射方向側であり、底部3aよりも反出射方向側に配置される。取付バネ8は、ヒートシンク3の側壁部3bの外周面に沿わせるように撓ませた状態で、取付穴に挿入される。取付バネ8は、天井の取付穴に挿入されると、自らの弾性力によって、再び図3に示すような形状に復帰しようとする。そのため、取付バネ8は、取付穴の内面に圧接し、その力により照明器具1が取付穴に固定される。 The attachment spring 8 has a plate spring shape. The attachment spring 8 is attached to the outer peripheral surface of the side wall portion 3b of the heat sink 3 by a spring fastening member 9. In the lighting fixture 1, the pair of attachment springs 8 are attached to the outer circumferential surface of the side wall portion 3b facing each other. The spring fastening member 9 is located closer to the emission direction than the end of the side wall 3b on the side opposite to the emission direction, and is disposed closer to the side opposite to the emission direction than the bottom portion 3a. The attachment spring 8 is inserted into the attachment hole in a bent state so as to follow the outer peripheral surface of the side wall portion 3b of the heat sink 3. When the mounting spring 8 is inserted into the mounting hole in the ceiling, it tries to return to the shape shown in FIG. 3 due to its own elastic force. Therefore, the mounting spring 8 comes into pressure contact with the inner surface of the mounting hole, and the lighting fixture 1 is fixed to the mounting hole by its force.

図2に示すように、発光基板2、ヒートシンク3の底部3a、反射部材4、及び拡散板5は、それぞれ締結部材7が貫通する位置に通し穴又は切り欠き(以下、合わせて「通し穴」という)を有する。発光基板2、ヒートシンク3の底部3a、反射部材4及び拡散板5に形成された通し穴は、反射面4aよりも、反射部材4の外側に設けられる。 As shown in FIG. 2, the light emitting substrate 2, the bottom 3a of the heat sink 3, the reflective member 4, and the diffusion plate 5 each have a through hole or a notch (hereinafter collectively referred to as a "through hole") at a position where the fastening member 7 passes through. ). The through holes formed in the light emitting substrate 2, the bottom 3a of the heat sink 3, the reflecting member 4, and the diffusion plate 5 are provided on the outer side of the reflecting member 4 rather than the reflecting surface 4a.

ケース6は、ボス部6aを有し、ボス部6aにナット6bがインサートされる。ナット6bに締結部材7が挿入されることにより、出射方向側からケース6によって、反出射方向側から締結部材7によって、発光基板2、ヒートシンク3、反射部材4、及び拡散板5が挟み込まれ、固定される。発光基板2、ヒートシンク3、反射部材4、拡散板5、及びケース6は、締結部材7によって締結され、位置決めされる。締結部材7によって、発光基板2の中心軸L1と、反射部材4及びケース6の中心軸とは一致、又はほぼ一致する。締結部材7は、ねじ部材である。締結部材7の頭部の先端は、図2に示すように、側壁部3bの反出射方向側の端部よりも、出射方向側に位置する。すなわち、側壁部3bの反出射方向側の端部が、締結部材7の反出射方向側の端部よりも反出射方向側へ延伸している。 The case 6 has a boss portion 6a, and a nut 6b is inserted into the boss portion 6a. By inserting the fastening member 7 into the nut 6b, the light emitting board 2, heat sink 3, reflective member 4, and diffuser plate 5 are sandwiched by the case 6 from the emission direction side and by the fastening member 7 from the counter-emission direction side, Fixed. The light emitting board 2, heat sink 3, reflection member 4, diffusion plate 5, and case 6 are fastened and positioned by a fastening member 7. Due to the fastening member 7, the central axis L1 of the light emitting board 2 and the central axes of the reflecting member 4 and the case 6 coincide or almost coincide with each other. The fastening member 7 is a screw member. As shown in FIG. 2, the tip of the head of the fastening member 7 is located closer to the emission direction than the end of the side wall 3b on the side opposite to the emission direction. That is, the end of the side wall portion 3b on the side opposite to the emission direction extends further toward the side opposite to the emission direction than the end of the fastening member 7 on the side opposite to the emission direction.

ここで、照明器具1の組立方法について説明する。図4は、実施の形態1にかかる照明器具1を示す分解斜視図である。図5は、実施の形態1にかかる照明器具1を示す縦断面模式図である。図6は、実施の形態1にかかる照明器具1を示す分解斜視図である。 Here, a method for assembling the lighting fixture 1 will be explained. FIG. 4 is an exploded perspective view showing the lighting fixture 1 according to the first embodiment. FIG. 5 is a schematic vertical cross-sectional view showing the lighting fixture 1 according to the first embodiment. FIG. 6 is an exploded perspective view showing the lighting fixture 1 according to the first embodiment.

照明器具1は、図4及び図5に示す組立治具600を用いて組み立てられる。組立治具600は、土台600a、及び土台600aが延在する方向と直交する方向に延伸するガイドピン600bを有する。土台600aは、例えば、板状である。ガイドピン600bは、土台600a上の、発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6のそれぞれの通し穴に対応する位置に設けられる。ガイドピン600bは、照明器具1の組立時に、発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6のそれぞれの通し穴に挿入される。照明器具1においては、発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6がそれぞれ通し穴を3つずつ有しているため、ガイドピン600bを3本とする例を示すが、ガイドピン600bの本数はこれに限定されない。また、ガイドピン600bの本数は、発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6の中心軸を一致させることができれば、通し穴の数よりも少なくてもよい。なお、「中心軸を一致させる」とは、発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6の中心軸が一致している場合及びほぼ一致している場合のいずれも含む。 The lighting fixture 1 is assembled using an assembly jig 600 shown in FIGS. 4 and 5. The assembly jig 600 includes a base 600a and a guide pin 600b extending in a direction perpendicular to the direction in which the base 600a extends. The base 600a is, for example, plate-shaped. The guide pins 600b are provided on the base 600a at positions corresponding to the respective through holes of the light emitting substrate 2, the heat sink 3, the reflective member 4, the diffusion plate 5, and the case 6. The guide pin 600b is inserted into each through hole of the light emitting board 2, heat sink 3, reflective member 4, diffuser plate 5, and case 6 when the lighting fixture 1 is assembled. In the lighting fixture 1, since the light emitting board 2, heat sink 3, reflection member 4, diffuser plate 5, and case 6 each have three through holes, an example is shown in which three guide pins 600b are used. The number of guide pins 600b is not limited to this. Further, the number of guide pins 600b may be smaller than the number of through holes as long as the central axes of the light emitting board 2, heat sink 3, reflective member 4, diffuser plate 5, and case 6 can be aligned. Note that "to make the central axes coincide" includes both cases where the central axes of the light emitting substrate 2, the heat sink 3, the reflective member 4, the diffuser plate 5, and the case 6 are coincident or almost coincident.

まず、発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6のそれぞれの通し穴に、反出射方向側から、組立治具600のガイドピン600bを挿入する。図4に示すように、例えば、組立治具600の土台600aが底面になるように組立治具600を配置する。そして、図4の矢印で示すように、ヒートシンク3、発光基板2、反射部材4、拡散板5及びケース6の順にそれぞれの通し穴にガイドピン600bを挿入しながら、ヒートシンク3、発光基板2、反射部材4、拡散板5及びケース6を積み重ねていけばよい。発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6の通し穴にガイドピン600bが挿入され、発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6が組み合わさった様子を図5に示す。それぞれの通し穴にガイドピン600bを挿入することによって、ガイドピン600bがガイドとなり、発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6の中心軸を一致させることができる。このとき、照明器具1は、ヒートシンク3とケース6とを外周側からクリップ等の仮固定具で挟んでもよいし、又は発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6に、それぞれが組み合わさったときに仮固定できる、例えば、凹凸形状の仮固定部等を設けてもよい。これにより、照明器具1は、後述のように、組立治具600のガイドピン600bがそれぞれの通し穴から引き抜かれたとしても、発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6の中心軸がずれることを抑制できる。 First, the guide pins 600b of the assembly jig 600 are inserted into the respective through holes of the light emitting substrate 2, heat sink 3, reflection member 4, diffuser plate 5, and case 6 from the side opposite to the emission direction. As shown in FIG. 4, for example, the assembly jig 600 is arranged so that the base 600a of the assembly jig 600 is the bottom surface. Then, as shown by the arrows in FIG. 4, while inserting the guide pins 600b into the through holes of the heat sink 3, the light emitting board 2, the reflecting member 4, the diffusion plate 5, and the case 6 in this order, the heat sink 3, the light emitting board 2, What is necessary is just to stack the reflecting member 4, the diffuser plate 5, and the case 6. The guide pin 600b is inserted into the through hole of the light emitting board 2, heat sink 3, reflective member 4, diffuser plate 5, and case 6, and the light emitting board 2, heat sink 3, reflective member 4, diffuser plate 5, and case 6 are combined. is shown in Figure 5. By inserting the guide pins 600b into the respective through holes, the guide pins 600b serve as guides, and the central axes of the light emitting board 2, heat sink 3, reflection member 4, diffuser plate 5, and case 6 can be aligned. At this time, in the lighting fixture 1, the heat sink 3 and the case 6 may be sandwiched between the heat sink 3 and the case 6 from the outer circumferential side with a temporary fixing tool such as a clip, or the light emitting board 2, the heat sink 3, the reflective member 4, the diffuser plate 5, and the case 6, For example, a temporary fixing part having an uneven shape may be provided, which can temporarily fix the parts when combined. As a result, even if the guide pins 600b of the assembly jig 600 are pulled out from their respective through holes, the lighting fixture 1 can be configured to include the light emitting board 2, heat sink 3, reflective member 4, diffuser plate 5, and case 6. It is possible to suppress the central axis of the center axis from shifting.

次に、組み合わさった発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6のそれぞれの通し穴から、反出射方向側へ組立治具600のガイドピン600bを引き抜く。図5に示すように、例えば、組立治具600の土台600aが上面になるように、組み合わさった発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6を配置して、それぞれの通し穴から組立治具600のガイドピン600bを引き抜けばよい。 Next, the guide pin 600b of the assembly jig 600 is pulled out from the respective through holes of the combined light emitting substrate 2, heat sink 3, reflection member 4, diffuser plate 5, and case 6 in the opposite direction. As shown in FIG. 5, for example, the combined light-emitting substrate 2, heat sink 3, reflection member 4, diffuser plate 5, and case 6 are arranged so that the base 600a of the assembly jig 600 is on the top surface, and each The guide pin 600b of the assembly jig 600 may be pulled out from the through hole.

そして、図6に示すように、ヒートシンク3に形成された通し穴から、ケース6の通し穴へ、反出射方向側から締結部材7を挿入して、ヒートシンク3及びケース6を締結し、発光基板2、ヒートシンク3、反射部材4、拡散板5及びケース6を固定する。最後に、取付バネ8をヒートシンク3の側壁部3bに配置し、バネ締結部材9を用いてヒートシンク3に締結する。ここで、取付バネ8には、側壁部3bが延伸する方向と交差する方向に貫通する穴部8aが設けられ、ケース6の外周には、取付バネ8の穴部8aに対応する位置に、ケース6の外側方向へ突出した凸部6cが設けられる。取付バネ8の穴部8aに、ケース6の凸部6cを挿入することにより、照明器具1の使用中に、ボス部6aにインサートされたナット6bが抜けてしまった場合においても、凸部6cによってケース6が取付バネ8に支えられているため、ケース6の落下を抑制できる。 Then, as shown in FIG. 6, the fastening member 7 is inserted from the through hole formed in the heat sink 3 into the through hole of the case 6 from the side opposite to the emission direction, the heat sink 3 and the case 6 are fastened, and the light emitting board is 2. Fix the heat sink 3, reflective member 4, diffuser plate 5, and case 6. Finally, the mounting spring 8 is placed on the side wall 3b of the heat sink 3 and fastened to the heat sink 3 using the spring fastening member 9. Here, the mounting spring 8 is provided with a hole 8a that penetrates in a direction crossing the direction in which the side wall 3b extends, and on the outer periphery of the case 6, a hole 8a of the mounting spring 8 is provided at a position corresponding to the hole 8a of the mounting spring 8. A convex portion 6c protruding toward the outside of the case 6 is provided. By inserting the convex part 6c of the case 6 into the hole 8a of the mounting spring 8, even if the nut 6b inserted into the boss part 6a comes off while the lighting fixture 1 is in use, the convex part 6c can be inserted into the hole 8a of the mounting spring 8. Since the case 6 is supported by the mounting spring 8, the case 6 can be prevented from falling.

このように、照明器具1は、光を出射する発光部20を有する発光基板2と、発光基板2が配置される底部3a、発光基板2を収容する筒状の側壁部3b、及び側壁部3bの外周面に形成される放熱フィン3cを有し、発光部20から生じる熱を放熱するヒートシンク3と、側壁部3bに収容されるとともに、発光部20を囲うように配置され、光を反射する反射部材4と、少なくとも一部が側壁部3bに収容されるケース6と、を備え、光が出射される方向を出射方向、出射方向の反対方向を反出射方向としたとき、側壁部3bは、底部3aよりも反出射方向側に延伸して形成され、発光基板2は、底部3aの出射方向側に配置され、反射部材4は、発光基板2の出射方向側に配置され、ケース6は、反射部材4の出射方向側に配置され、底部3a及びケース6を締結する締結部材7は、底部3aの反出射方向側から、反射部材4を通して配置される。 In this way, the lighting fixture 1 includes a light emitting board 2 having a light emitting part 20 that emits light, a bottom part 3a on which the light emitting board 2 is placed, a cylindrical side wall part 3b that accommodates the light emitting board 2, and a side wall part 3b. A heat sink 3 has heat radiation fins 3c formed on the outer circumferential surface of the heat sink 3, which radiates heat generated from the light emitting part 20, and a heat sink 3, which is housed in the side wall part 3b and is arranged to surround the light emitting part 20, and reflects light. It includes a reflective member 4 and a case 6, at least a part of which is accommodated in the side wall 3b, and when the direction in which light is emitted is an emission direction and the direction opposite to the emission direction is a counter-emission direction, the side wall 3b is , the light emitting board 2 is arranged on the emitting direction side of the bottom part 3a, the reflecting member 4 is arranged on the emitting direction side of the light emitting board 2, and the case 6 is A fastening member 7, which is disposed on the emission direction side of the reflecting member 4 and fastens the bottom portion 3a and the case 6, is disposed through the reflecting member 4 from the opposite emission direction side of the bottom portion 3a.

上述の構成によって、照明器具1は、放熱効率を確保できる。 With the above-described configuration, the lighting fixture 1 can ensure heat dissipation efficiency.

また、照明器具1は、側壁部3bが、底部3aよりも反出射方向側に延伸しているとともに、締結部材7の頭部の先端が、側壁部3bの反出射方向側の端部よりも、出射方向側に位置する。そのため、側壁部3bによって、締結部材7を外部衝撃から保護できる。これにより、照明器具1の点検時に、作業者が誤って照明器具1に接触した場合でも、締結部材7に衝撃が伝わりづらくなる。 Further, in the lighting fixture 1, the side wall portion 3b extends further in the opposite emission direction than the bottom portion 3a, and the tip of the head of the fastening member 7 extends further than the end portion in the opposite emission direction of the side wall portion 3b. , located on the emission direction side. Therefore, the side wall portion 3b can protect the fastening member 7 from external impact. As a result, even if a worker accidentally touches the lighting device 1 when inspecting the lighting device 1, the impact is less likely to be transmitted to the fastening member 7.

また、側壁部3bが底部3aよりも反出射方向側に延伸しているため、取付バネ8を側壁部3bの外周面に取り付ける際に、底部3aよりもバネ締結部材9を反出射方向側に締結できる。これにより、バネ締結部材9が、発光基板2から出射される光を遮ることを抑制できるとともに、照明器具1を小型化できる。 In addition, since the side wall portion 3b extends further in the counter-emission direction than the bottom portion 3a, when attaching the mounting spring 8 to the outer peripheral surface of the side wall portion 3b, the spring fastening member 9 is extended in the counter-emission direction relative to the bottom portion 3a. Can be concluded. Thereby, the spring fastening member 9 can be prevented from blocking the light emitted from the light emitting board 2, and the lighting fixture 1 can be downsized.

また、先に述べたように、特開2014-112567号に記載の照明器具では、発光モジュール及び反射体を光の反出射方向側から締結しようとすると、放熱フィンを間引く必要があり、放熱面積の減少によって、発光モジュールの温度が上昇するという課題があった。この照明器具において、放熱面積を増加させようとすると、放熱フィンを反出射方向側へ延伸させる必要があり、照明器具のZ軸方向の長さ(全長)が長くなる。しかしながら、照明器具1では、底部3aよりも反出射方向側へ延伸した側壁部3bによって放熱効率を確保するとともに、側壁部3b及び放熱フィン3cによって放熱できるため、上述の照明器具と比較して、放熱効率を保ったまま照明器具1の全長を短くすることができる。 Furthermore, as mentioned earlier, in the lighting fixture described in JP-A No. 2014-112567, when trying to connect the light emitting module and the reflector from the side opposite to the light emission direction, it is necessary to thin out the heat dissipation fins, and the heat dissipation area There was a problem in that the temperature of the light emitting module increased due to the decrease in the amount of light. In this lighting fixture, if an attempt is made to increase the heat radiation area, it is necessary to extend the radiation fins in the opposite direction, and the length (total length) of the lighting fixture in the Z-axis direction increases. However, in the lighting fixture 1, heat dissipation efficiency is ensured by the side wall part 3b extending in the opposite direction from the bottom part 3a, and heat can be radiated by the side wall part 3b and the radiation fins 3c. The total length of the lighting fixture 1 can be shortened while maintaining heat radiation efficiency.

また、発光基板2、ヒートシンク3の底部3a、反射部材4、及び拡散板5が、反射部材4の反射面4aよりも反射部材4の外側に、それぞれ締結部材7が貫通するための通し穴を有することにより、発光部20から出射された光が、通し穴によって遮られることなく拡散板5に到達することができる。さらに、反射部材4の反射面4aより内側に部材等を設けていないことから、照明器具1は、発光部20の数又は配置等の自由度が高い。そのため、発光部20の数又は配置等を変更するようなバリエーションの追加があった場合にも、照明器具1は、反射部材4の形状を変える必要がなく、金型費を抑制できるとともに、多様なバリエーションに対応できる。 Further, the light emitting substrate 2, the bottom 3a of the heat sink 3, the reflecting member 4, and the diffusing plate 5 have through holes for the fastening members 7 to pass through, respectively, on the outer side of the reflecting member 4 than the reflecting surface 4a of the reflecting member 4. By having this, the light emitted from the light emitting section 20 can reach the diffusion plate 5 without being blocked by the through hole. Furthermore, since no member or the like is provided inside the reflective surface 4a of the reflective member 4, the lighting fixture 1 has a high degree of freedom in terms of the number and arrangement of the light emitting parts 20. Therefore, even if variations such as changing the number or arrangement of the light emitting parts 20 are added, the lighting fixture 1 does not need to change the shape of the reflective member 4, which can reduce mold costs and provide a variety of It can accommodate various variations.

なお、実施の形態1において、照明器具1は、放熱性を有する放熱部材である熱伝導シート22を有していてもよい。図7は、実施の形態1にかかる他の照明器具1aを示す概略模式図である。図7は、照明器具1aの破線枠内で囲う箇所を拡大して示している。 In addition, in Embodiment 1, the lighting fixture 1 may have the heat conductive sheet 22 which is a heat dissipation member which has heat dissipation property. FIG. 7 is a schematic diagram showing another lighting fixture 1a according to the first embodiment. FIG. 7 shows an enlarged view of the portion of the lighting fixture 1a enclosed within the broken line frame.

熱伝導シート22は、発光基板2とヒートシンクの底部3aとの間に配置される。熱伝導シート22は、高熱伝導且つ柔軟な素材であり、例えば、厚み0.2mm以上2.0mm以下程度の、放熱用シリコーンシートである。また、熱伝導シート22の表面が、粘着性を有していれば、発光基板2の表面及びヒートシンク3の底部3aのそれぞれに密着するため、照明器具1aは、放熱性を向上できる。 The thermally conductive sheet 22 is placed between the light emitting substrate 2 and the bottom 3a of the heat sink. The thermally conductive sheet 22 is a highly thermally conductive and flexible material, and is, for example, a heat dissipating silicone sheet with a thickness of approximately 0.2 mm or more and 2.0 mm or less. Moreover, if the surface of the thermally conductive sheet 22 has adhesiveness, it will come into close contact with the surface of the light emitting substrate 2 and the bottom 3a of the heat sink 3, so that the lighting fixture 1a can improve heat dissipation.

熱伝導シート22は、発光基板2、ヒートシンク3の底部3a、反射部材4、及び拡散板5と同様に、締結部材7が貫通するための通し穴を有する。また、熱伝導シート22は、ケース6のナット6bに締結部材7が挿入されることにより、出射方向側からケース6によって、反出射方向側から締結部材7によって、発光基板2、ヒートシンク3、反射部材4、及び拡散板5とともに挟みこまれ、固定される。 The heat conductive sheet 22 has a through hole through which the fastening member 7 passes, similar to the light emitting substrate 2, the bottom 3a of the heat sink 3, the reflective member 4, and the diffusion plate 5. Further, by inserting the fastening member 7 into the nut 6b of the case 6, the heat conductive sheet 22 is connected to the light emitting board 2, the heat sink 3, and the reflective It is sandwiched and fixed together with the member 4 and the diffusion plate 5.

なお、熱伝導シート22の材料として、放熱用シリコーンシートを示したが、熱伝導シート22の材料は、アクリルを主成分とする材料又は炭素繊維を含む材料等であってもよい。また、熱伝導シート22の材料を、温度上昇に伴い相変化により軟化して密着性が向上する性質を持つ材料とすれば、照明器具1aは、放熱性をさらに向上できる。 Although a heat dissipating silicone sheet is shown as the material of the heat conductive sheet 22, the material of the heat conductive sheet 22 may be a material containing acrylic as a main component, a material containing carbon fiber, or the like. Moreover, if the material of the thermally conductive sheet 22 is a material that has the property of softening due to a phase change as the temperature rises and improving adhesion, the lighting equipment 1a can further improve heat dissipation.

また、熱伝導シート22は、柔軟な素材であるため、発光基板2とヒートシンク3の底部3aとの間に配置されたとき、発光基板2と底部3aとによって押しつぶされる。このとき、発光基板2の反り量を、熱伝導シート22のつぶし代以下になるようにすれば、発光基板2の全面において、ヒートシンク3の底部3aと熱伝導シート22との密着性が確保され、照明器具1aは、放熱性を確保できる。 Furthermore, since the thermally conductive sheet 22 is made of a flexible material, when it is placed between the light emitting substrate 2 and the bottom 3a of the heat sink 3, it is crushed by the light emitting substrate 2 and the bottom 3a. At this time, if the amount of warpage of the light emitting board 2 is set to be less than the crushing margin of the heat conductive sheet 22, the adhesion between the bottom 3a of the heat sink 3 and the heat conductive sheet 22 can be ensured over the entire surface of the light emitting board 2. , the lighting fixture 1a can ensure heat dissipation.

また、実施の形態1において、底部3aに対して、筒状の側壁部3bの全周が、反出射方向側に延伸している例を示したが、側壁部3bの反出射方向側の端部のうち、一部を底部3aよりも反出射方向側へ延伸させてもよい。 Further, in the first embodiment, an example was shown in which the entire circumference of the cylindrical side wall portion 3b extends in the opposite emission direction with respect to the bottom portion 3a, but the end of the side wall portion 3b on the opposite emission direction side has been shown. A part of the portion may extend toward the opposite side of the emission direction than the bottom portion 3a.

また、実施の形態1においては、拡散板5の代わりに、レンズ部材を設けてもよい。レンズ部は、発光部20と対向する位置にレンズを有する、例えば、平板である。レンズ部材を設けることによって、照明器具1は、発光部20から出射された光を集光し、照明器具1の配光を制御できる。 Further, in the first embodiment, a lens member may be provided instead of the diffuser plate 5. The lens section is, for example, a flat plate having a lens at a position facing the light emitting section 20. By providing the lens member, the lighting fixture 1 can condense the light emitted from the light emitting section 20 and control the light distribution of the lighting fixture 1.

実施の形態2.
図8は、実施の形態2にかかる照明器具10を示す分解斜視図である。図9は、実施の形態2にかかる照明器具10を示す概略模式図である。図9において、照明器具10の中心軸L1より紙面左側は、照明器具10を示す縦断面模式図であり、紙面右側は、照明器具10を示す側面図である。図10は、実施の形態2にかかる照明器具10を示す斜視図である。
Embodiment 2.
FIG. 8 is an exploded perspective view showing the lighting fixture 10 according to the second embodiment. FIG. 9 is a schematic diagram showing a lighting fixture 10 according to the second embodiment. In FIG. 9 , the left side of the lighting fixture 10 from the central axis L1 in the paper is a schematic vertical cross-sectional view showing the lighting fixture 10, and the right side of the paper is a side view showing the lighting fixture 10. FIG. 10 is a perspective view showing a lighting fixture 10 according to the second embodiment.

照明器具10は、ヒートシンク30が、板状の放熱フィン30c、及び放熱フィン30cから底部30aに延伸して形成される放熱フィン30d(底部放熱フィン)を有する点で、照明器具1と異なる。放熱フィン30dは、側壁部30bの反出射方向側の端部から底部30aの中心方向へ延伸している。 The lighting fixture 10 differs from the lighting fixture 1 in that the heat sink 30 includes a plate-shaped radiation fin 30c and a radiation fin 30d (bottom radiation fin) extending from the radiation fin 30c to the bottom 30a. The radiation fin 30d extends from the end of the side wall 30b on the side opposite to the emission direction toward the center of the bottom 30a.

さらに、照明器具10は、側壁部30bの反出射方向側の端部の一部が、底部30aよりも反出射方向側に延伸して形成される点で、照明器具1と異なる。底部30aにおいて、締結部材7が配置されている部分には、放熱フィン30dを配置できない。そのため、照明器具10では、締結部材7を挟む放熱フィン30d間の、側壁部30bの反出射方向側の端部を、底部30aよりも反出射方向側へ延伸させる。このとき、側壁部30bの反出射方向側の端部のうち、底部30aも反出射方向側に延伸した端部よりも、締結部材7の頭部の先端は、出射方向側に位置する。また、バネ締結部材9は、側壁部30bの反出射方向側の端部の出射方向側であり、底部30aの反出射方向側に配置される。 Furthermore, the lighting fixture 10 differs from the lighting fixture 1 in that a part of the end portion of the side wall portion 30b on the opposite side of the emission direction is formed to extend further toward the opposite side of the emission direction than the bottom portion 30a. In the bottom portion 30a, the radiation fins 30d cannot be placed in the portion where the fastening member 7 is placed. Therefore, in the lighting fixture 10, the end portion of the side wall portion 30b on the side opposite to the emission direction between the radiation fins 30d sandwiching the fastening member 7 is extended further toward the side opposite to the emission direction than the bottom portion 30a. At this time, the tip of the head of the fastening member 7 is located on the emission direction side with respect to the end portion of the side wall portion 30b on the side opposite to the emission direction, where the bottom portion 30a also extends in the side opposite to the emission direction. Further, the spring fastening member 9 is disposed on the emission direction side of the end portion of the side wall portion 30b on the side opposite to the emission direction, and on the side opposite to the emission direction of the bottom portion 30a.

上述の構成によって、照明器具10は、放熱効率を確保できる。 With the above-described configuration, the lighting fixture 10 can ensure heat dissipation efficiency.

また、照明器具10は、側壁部30bの一部が、底部30aよりも反出射方向側に延伸しているとともに、締結部材7の頭部の先端が、側壁部30bの反出射方向側の端部よりも、出射方向側に位置する。すなわち、締結部材7の反出射方向側の端部が、側壁部30bよりも反出射方向側へ突出していない。そのため、側壁部30bによって、締結部材7を外部衝撃から保護できる。 Further, in the lighting fixture 10, a part of the side wall portion 30b extends in the opposite direction from the bottom portion 30a, and the tip of the head of the fastening member 7 is located at the end of the side wall portion 30b in the opposite direction. It is located on the side of the emission direction than the part. That is, the end portion of the fastening member 7 on the side opposite to the emission direction does not protrude further toward the side opposite to the emission direction than the side wall portion 30b. Therefore, the side wall portion 30b can protect the fastening member 7 from external impact.

また、側壁部30bが底部30aよりも反出射方向側に延伸しているため、取付バネ8を側壁部30bの外周面に取り付ける際に、底部30aよりもバネ締結部材9を反出射方向側に締結できる。これにより、バネ締結部材9が、発光基板2から出射される光を遮ることを抑制できるとともに、照明器具1を小型化できる。 Furthermore, since the side wall portion 30b extends further in the counter-output direction than the bottom portion 30a, when attaching the mounting spring 8 to the outer peripheral surface of the side wall portion 30b, the spring fastening member 9 is extended in the counter-output direction relative to the bottom portion 30a. Can be concluded. Thereby, the spring fastening member 9 can be prevented from blocking the light emitted from the light emitting board 2, and the lighting fixture 1 can be downsized.

また、締結部材7を挟む放熱フィン30d間の側壁部30bの反出射方向側の端部を、底部30aよりも反出射方向側へ延伸させて形成することにより、放熱効率を確保できる。 Further, by forming the end portion of the side wall portion 30b on the side opposite to the radiation direction between the radiation fins 30d that sandwich the fastening member 7 to extend further toward the side opposite to the radiation direction than the bottom portion 30a, heat radiation efficiency can be ensured.

また、照明器具10は、底部30aに放熱フィン30dを形成することにより、放熱効率をさらに向上できる。 Moreover, the lighting fixture 10 can further improve heat radiation efficiency by forming the radiation fins 30d on the bottom portion 30a.

また、照明器具1は、底部30aよりも反出射方向側へ延伸した側壁部30bによって放熱効率を確保するとともに、側壁部30b及び放熱フィン30cによって放熱できるため、先に述べた特開2014-112567号に記載の照明器具と比較して、放熱効率を保ったまま照明器具1の全長を短くすることができる。 Furthermore, the lighting fixture 1 ensures heat dissipation efficiency by the side wall portion 30b extending in the opposite emission direction than the bottom portion 30a, and can dissipate heat by the side wall portion 30b and the heat dissipation fins 30c. Compared to the lighting equipment described in the above, the total length of the lighting equipment 1 can be shortened while maintaining heat dissipation efficiency.

実施の形態3.
図11は、実施の形態3にかかる照明器具100を示す分解斜視図である。図12は、実施の形態3にかかる照明器具100を示す概略模式図である。図12において、照明器具100の中心軸L1より紙面左側は、照明器具100を示す縦断面模式図であり、紙面右側は、照明器具100を示す側面図である。図11及び図12において、図1及び図2と同じ符号を付した構成は、同一又は対応する構成を示しているため、詳細な説明は省略する。以下、照明器具100において、照明器具1、1a及び10と異なる点の詳細を説明する。
Embodiment 3.
FIG. 11 is an exploded perspective view showing the lighting fixture 100 according to the third embodiment. FIG. 12 is a schematic diagram showing a lighting fixture 100 according to the third embodiment. In FIG. 12, the left side of the lighting fixture 100 from the central axis L1 in the paper is a schematic vertical cross-sectional view showing the lighting fixture 100, and the right side in the paper is a side view showing the lighting fixture 100. In FIG. 11 and FIG. 12, components designated by the same reference numerals as those in FIGS. 1 and 2 indicate the same or corresponding components, and therefore detailed description thereof will be omitted. Hereinafter, in the lighting fixture 100, details of differences from the lighting fixtures 1, 1a, and 10 will be explained.

照明器具100において、発光基板200は、発光部201及び基板202を有する。ここで、基板202に形成された通し穴を通し穴202aと記す。発光部201は、例えばCOB(Chip On Board)である。すなわち、発光部201は、440nm~480nm程度の青色光を出射するLEDチップ(青色LED)が、基板202に直接、多数個実装されており、黄色蛍光体を分散又は混合した封止部材(図11及び図12に図示せず)が塗布又は充填されている。LEDチップから出射される青色光の一部は、黄色蛍光体を励起して黄色光に変換される。青色光と、青色光から変換された黄色光とが混光して、白色の光が発光部201から出射される。 In the lighting fixture 100, the light emitting board 200 has a light emitting section 201 and a board 202. Here, the through hole formed in the substrate 202 is referred to as a through hole 202a. The light emitting unit 201 is, for example, a COB (Chip On Board). That is, in the light emitting unit 201, a large number of LED chips (blue LEDs) that emit blue light of about 440 nm to 480 nm are mounted directly on a substrate 202, and a sealing member (see Fig. 11 and 12) is applied or filled. A portion of the blue light emitted from the LED chip excites the yellow phosphor and is converted into yellow light. The blue light and the yellow light converted from the blue light are mixed, and white light is emitted from the light emitting unit 201.

照明器具100の反射部材400は、出射方向側から反出射方向側へ延在する筒状の通し穴400aの一端にボス部400bを有し、他端にボス部400cを有する点で、反射部材4と異なる。ボス部400bは、後述するレンズ500側に形成され、ボス部400cは、発光基板200側に形成される。ボス部400bは、レンズ500の通し穴500aと組み合わさり、ボス部400cは、発光基板200の通し穴202aと組み合わさる。これにより、発光基板200の中心軸とレンズ500の中心軸とは、反射部材400によって位置決めされる。 The reflective member 400 of the lighting fixture 100 has a boss portion 400b at one end of a cylindrical through hole 400a extending from the emission direction side to the counter-emission direction side, and a boss portion 400c at the other end. Different from 4. The boss portion 400b is formed on the lens 500 side, which will be described later, and the boss portion 400c is formed on the light emitting substrate 200 side. The boss portion 400b is combined with the through hole 500a of the lens 500, and the boss portion 400c is combined with the through hole 202a of the light emitting substrate 200. Thereby, the central axis of the light emitting substrate 200 and the central axis of the lens 500 are positioned by the reflecting member 400.

照明器具100は、拡散板5の代わりに、レンズ500、例えばフレネルレンズを有する点で、照明器具1、1a及び10と異なる。レンズ500は、反射部材400の出射方向側に配置される。反射部材400とレンズ500は、例えば、アクリル樹脂によって形成される。 Lighting fixture 100 differs from lighting fixtures 1, 1a, and 10 in that it includes a lens 500, such as a Fresnel lens, instead of diffuser plate 5. The lens 500 is arranged on the side of the reflection member 400 in the emission direction. The reflective member 400 and the lens 500 are made of, for example, acrylic resin.

上述の構成によって、照明器具100は、放熱効率を確保できる。 With the above-described configuration, the lighting fixture 100 can ensure heat dissipation efficiency.

また、実施の形態3においては、発光部201を有するため、発光部20と比較して、光を発する部分の面積が大きく、1つの発光部201で大光量を発することができる。 Furthermore, in the third embodiment, since the light emitting section 201 is included, the area of the light emitting part is larger than that of the light emitting section 20, and one light emitting section 201 can emit a large amount of light.

また、所望の光学性能を実現するため、発光部201とレンズ500との中心軸が一致していることが必要であるが、実施の形態3においては、反射部材400の通し穴400aに設けられたボス部400b及びボス部400cが、発光部201の中心軸とレンズ500の中心軸とを一致させるための位置決め部としての役割を有する。そのため、通し穴及び位置決め部を別々に設ける場合と比較して、照明器具100は、大型化を抑制でき、所望の光学性能を実現することができる。 Furthermore, in order to achieve the desired optical performance, it is necessary that the central axes of the light emitting section 201 and the lens 500 coincide; The boss portions 400b and 400c serve as positioning portions for aligning the central axis of the light emitting portion 201 and the central axis of the lens 500. Therefore, compared to the case where the through hole and the positioning part are provided separately, the lighting fixture 100 can suppress the increase in size and can achieve desired optical performance.

また、実施の形態3においては、レンズ500を有することにより、発光部201から出射された光を集光し、照明器具100の配光を制御できる。さらに、照明器具100は、レンズ500が配置されることにより、発光基板200を保護できる。 Furthermore, in the third embodiment, by including the lens 500, the light emitted from the light emitting section 201 can be condensed and the light distribution of the lighting fixture 100 can be controlled. Furthermore, the lighting fixture 100 can protect the light emitting substrate 200 by disposing the lens 500.

実施の形態4.
図13は、実施の形態4にかかるエレベータかご2000を示す概略模式図である。図14は、実施の形態4にかかるエレベータかご2000の天井(以下、「エレベータ天井部210」という)を示す概略模式図である。エレベータかご2000は、エレベータ天井部210と、かご床部211と、壁部212と、扉部213とを備える。
Embodiment 4.
FIG. 13 is a schematic diagram showing an elevator car 2000 according to the fourth embodiment. FIG. 14 is a schematic diagram showing the ceiling of elevator car 2000 (hereinafter referred to as "elevator ceiling section 210") according to the fourth embodiment. The elevator car 2000 includes an elevator ceiling 210, a car floor 211, a wall 212, and a door 213.

エレベータ天井部210は、天井板部210aと天井板金210bとを有する。天井板部210a及び天井板金210bは、対向して配置される。天井板部210a及び天井板金210bの間には、空間部が形成される。天井板金210bは、かご床部211側に配置される。照明器具1は、天井板部210a及び天井板金210bの間の空間部に設置される。図14に示すように、空間部のZ軸方向の高さhは狭い方が望ましく、例えば50mm程度である。照明器具1は、天井板金210bに開けられた取付穴220に挿入され、取付バネ8が弾性力によって開こうとする力で、取付穴220に支えられている。天井板金210bは、上述の設置面に相当するものである。 The elevator ceiling section 210 has a ceiling plate section 210a and a ceiling metal plate 210b. The ceiling plate portion 210a and the ceiling metal plate 210b are arranged to face each other. A space is formed between the ceiling plate part 210a and the ceiling metal plate 210b. The ceiling sheet metal 210b is arranged on the car floor section 211 side. The lighting fixture 1 is installed in a space between the ceiling plate part 210a and the ceiling metal plate 210b. As shown in FIG. 14, the height h of the space in the Z-axis direction is desirably narrow, for example, about 50 mm. The lighting fixture 1 is inserted into a mounting hole 220 made in the ceiling metal plate 210b, and is supported by the mounting hole 220 by the force of the mounting spring 8 that tends to open due to its elastic force. The ceiling metal plate 210b corresponds to the above-mentioned installation surface.

例えば、特開2014-112567号に記載の照明器具を、本開示の空間部内に設置する場合、空間部に対して器具全長が収まりきらないおそれがあるため、天井板部に照明器具が貫通するための穴を開ける必要がある。また、エレベータかごの点検時には、作業者が天井板部上で作業を行うため、天井板部から突出した照明器具に、作業者が直接接触しないように、照明器具にカバーを施し、保護する必要がある。 For example, when installing the lighting fixture described in JP-A No. 2014-112567 in the space of the present disclosure, there is a risk that the entire length of the fixture will not fit in the space, so the lighting fixture may penetrate the ceiling panel. You need to make a hole for it. Additionally, when inspecting elevator cars, workers work on the ceiling panel, so it is necessary to protect the lighting fixtures by covering them so that workers do not come into direct contact with the lighting fixtures that protrude from the ceiling panel. There is.

しかしながら、照明器具1は、全長を短くすることできるため、天井板部210aから照明器具1が突出することなく、エレベータかご2000の空間部に照明器具1を設置できる。 However, since the overall length of the lighting fixture 1 can be shortened, the lighting fixture 1 can be installed in the space of the elevator car 2000 without the lighting fixture 1 protruding from the ceiling plate portion 210a.

また、天井板部210aから突出することなく照明器具1を設置できるため、天井板部210aに照明器具1を通す穴を開ける必要がなく、照明器具1を覆うカバーを配置する必要もない。これにより、作業者が天井板部210aで作業を行う際の作業性を向上できる。 In addition, since the lighting fixture 1 can be installed without protruding from the ceiling plate portion 210a, there is no need to make a hole through the lighting fixture 1 in the ceiling plate portion 210a, and there is no need to arrange a cover to cover the lighting fixture 1. Thereby, the work efficiency when the worker works on the ceiling plate portion 210a can be improved.

さらに、側壁部3bが、底部3aよりも反出射方向側に延伸し、締結部材7の頭部を保護できるため、作業者が天井板部210aで作業を行う際の作業性を向上できる。 Further, since the side wall portion 3b extends in the opposite direction than the bottom portion 3a and can protect the head of the fastening member 7, it is possible to improve workability when an operator works on the ceiling plate portion 210a.

なお、実施の形態4において、照明器具1を取付バネ8によって天井板金210bに固定する例を示したが、例えば固定用の金具を使用して天井板金210bにビス止めされる等、固定方法が異なるものでもよい。 In addition, in Embodiment 4, an example was shown in which the lighting fixture 1 is fixed to the ceiling metal plate 210b by the mounting spring 8. It can be different.

また、実施の形態4において、エレベータかご2000に照明器具1を設置する例を示したが、照明器具1a、10又は100でもよい。 Further, in the fourth embodiment, an example was shown in which the lighting fixture 1 is installed in the elevator car 2000, but the lighting fixture 1a, 10, or 100 may be installed.

なお、本開示において、基板21としてガラスエポキシ基板を用いた例を示したが、アルミ又は鉄等の金属基板を用いてもよいし、紙フェノール材を用いてもよい。 Note that in this disclosure, an example is shown in which a glass epoxy substrate is used as the substrate 21, but a metal substrate such as aluminum or iron may be used, or a paper phenolic material may be used.

また、本開示において、ヒートシンク3をアルミによって形成する例を示したが、銅等の熱伝導性の良い金属又は合金によって形成してもよい。また、ヒートシンク3は、熱伝導性の良い樹脂材料等によって形成してもよい。 Further, in the present disclosure, an example is shown in which the heat sink 3 is made of aluminum, but it may be made of a metal or alloy with good thermal conductivity such as copper. Further, the heat sink 3 may be formed of a resin material with good thermal conductivity or the like.

また、本開示において、放熱フィン3c及び放熱フィン30cを板状とする例を示したが、これに限られない。 Further, in the present disclosure, an example is shown in which the radiation fins 3c and the radiation fins 30c are plate-shaped, but the present disclosure is not limited to this.

また、本開示において、放熱フィン3cが、側壁部3bの外周面の出射方向側の端部から反出射方向側の端部に延伸している例を示したが、側壁部3bの外周面にどのように形成されていてもよい。また、放熱フィン30cが、側壁部30bの外周面の出射方向側の端部から底部30aに延伸している例を示したが、側壁部30bの外周面にどのように形成されていてもよいし、底部30a上での形状に制約は設けない。 Further, in the present disclosure, an example has been shown in which the radiation fins 3c extend from the end on the emission direction side of the outer circumferential surface of the side wall portion 3b to the end on the counter emission direction side. It can be formed in any way. Furthermore, although an example has been shown in which the radiation fins 30c extend from the end of the outer peripheral surface of the side wall portion 30b on the emission direction side to the bottom portion 30a, the radiation fins 30c may be formed in any manner on the outer peripheral surface of the side wall portion 30b. However, no restrictions are placed on the shape on the bottom portion 30a.

また、本開示において、反射部材4を、ABS樹脂によって形成する例を示したが、例えば、ポリプロピレン、又はPBT(polybutyleneterephtalate)樹脂等を白色に着色した樹脂材料によって形成してもよい。また、反射部材4を、アルミ等の反射率の高い金属等によって形成してもよい。 Further, in the present disclosure, an example is shown in which the reflective member 4 is made of ABS resin, but it may be made of a white colored resin material such as polypropylene or PBT (polybutylene terephthalate) resin, for example. Further, the reflective member 4 may be formed of a metal with high reflectivity such as aluminum.

また、本開示において、拡散板5を、アクリル樹脂によって形成する例を示したが、例えば、ポリカーボネート樹脂等の透明な樹脂材料に、微小な粒子を混ぜ込み、拡散性を持たせた材料によって形成してもよい。また、拡散板5を、例えばアクリル樹脂、ポリカーボネート樹脂、又はガラス等の透明な材料の表面に、微小な凹凸を付与し、拡散性を持たせた材料によって形成してもよい。また、拡散板5を、アクリル樹脂、ポリカーボネート樹脂、又はガラス等の透明な材料で形成し、拡散板5と反射部材4との間、又は拡散板5とケース6との間に、拡散性を有するシートを挟みこむことで、拡散板5を、拡散性を持たせる構成としてもよい。さらに、拡散板5を、アクリル樹脂、ポリカーボネート樹脂、又はガラス等の透明な材料の表面に、拡散性を有する薄膜を載せることによって形成してもよい。 Further, in the present disclosure, an example has been shown in which the diffusion plate 5 is made of acrylic resin, but for example, it may be made of a material made by mixing microparticles into a transparent resin material such as polycarbonate resin to give it diffusivity. You may. Alternatively, the diffusion plate 5 may be formed of a transparent material such as acrylic resin, polycarbonate resin, or glass, which has minute irregularities on its surface to impart diffusivity. Further, the diffuser plate 5 is formed of a transparent material such as acrylic resin, polycarbonate resin, or glass, and the diffusion property is increased between the diffuser plate 5 and the reflective member 4 or between the diffuser plate 5 and the case 6. The diffusion plate 5 may be configured to have diffusive properties by sandwiching a sheet therebetween. Furthermore, the diffusion plate 5 may be formed by placing a diffusive thin film on the surface of a transparent material such as acrylic resin, polycarbonate resin, or glass.

また、本開示において、ケース6をABS樹脂によって形成する例を示したが、例えばポリプロピレン、又はPBT樹脂等を着色した樹脂材料によって形成してもよい。また、ケース6を、アルミ等の反射率の高い金属等によって形成してもよい。さらに、ケース6の表面状態は、平滑でもよいし、光を拡散させるための微小な凹凸を有していてもよい。 Further, in the present disclosure, an example is shown in which the case 6 is made of ABS resin, but it may be made of a colored resin material such as polypropylene or PBT resin, for example. Further, the case 6 may be formed of a metal with high reflectivity such as aluminum. Furthermore, the surface condition of the case 6 may be smooth or may have minute irregularities for diffusing light.

また、本開示において、取付バネ8を板バネ状とする例を示したが、線バネ状であってもよい。 Further, in the present disclosure, an example is shown in which the attachment spring 8 is shaped like a plate spring, but it may also be shaped like a wire spring.

また、本開示において、発光部20及び発光部201としてLEDチップを用いた例を示したが、例えば、LD(Laser Diode)チップであってもよい。また、1つの発光面の面積が大きい発光素子であってもよい。 Further, in the present disclosure, an example is shown in which LED chips are used as the light emitting section 20 and the light emitting section 201, but an LD (Laser Diode) chip may be used, for example. Further, the light emitting element may have one light emitting surface having a large area.

また、本開示において、発光部20を、青色LED及び黄色蛍光体によって白色を発光させるシングルチップ方式とする例を示したが、青色LED、赤色蛍光体、及び緑色蛍光体を混光させるシングルチップ方式としてもよい。さらに、赤色LED、緑色LED、及び青色LEDを混光させるマルチチップ方式としてもよい。 Further, in the present disclosure, an example has been shown in which the light emitting unit 20 is a single-chip system in which white light is emitted by a blue LED and a yellow phosphor, but a single chip in which a blue LED, a red phosphor, and a green phosphor are mixed together is shown. It may also be a method. Furthermore, a multi-chip system may be used in which a red LED, a green LED, and a blue LED are mixed.

また、本開示において、発光基板2のLEDチップの配置には、特に制約を設けるものではない。 Further, in the present disclosure, no particular restrictions are placed on the arrangement of the LED chips on the light emitting substrate 2.

また、本開示において、側壁部3b(側壁部30b)、反射部材4、及びケース6の外形、並びに照明器具1の形状は、円形、楕円形、又は多角形でもよく、特に制約を設けるものではない。 Further, in the present disclosure, the outer shapes of the side wall portion 3b (side wall portion 30b), the reflective member 4, and the case 6, and the shape of the lighting fixture 1 may be circular, elliptical, or polygonal, and there are no particular restrictions. do not have.

また、本開示において、発光基板2と底部3a(底部30a)との間に、熱伝導グリース若しくは熱伝導シート等の熱伝導材、又は接着材を介在させてもよい。使用されるLEDチップ又は回路素子等の耐熱温度、寿命、及び強度等に基づいて、これらの接着材を使用するか否かを決定すればよい。 Further, in the present disclosure, a thermally conductive material such as thermally conductive grease or a thermally conductive sheet, or an adhesive may be interposed between the light emitting substrate 2 and the bottom portion 3a (bottom portion 30a). Whether or not to use these adhesives may be determined based on the heat resistance, lifespan, strength, etc. of the LED chip or circuit element used.

また、本開示において、発明の範囲内において、各実施の形態を自由に組み合わせることや、各実施の形態を適宜、変形、省略することが可能である。 Further, in the present disclosure, it is possible to freely combine the embodiments, and to modify or omit the embodiments as appropriate within the scope of the invention.

1、10、100 照明器具、2、200 発光基板、3、30 ヒートシンク、
4、400 反射部材、5 拡散板、6 ケース、7 締結部材、8 取付バネ、
9 バネ締結部材、20、201 発光部、21、202 基板、22 熱伝導シート、210 エレベータ天井部、211 かご床部、212 壁部、213 扉部、
220 取付穴、500 レンズ、600 組立治具、2000 エレベータかご。
1, 10, 100 lighting equipment, 2, 200 light emitting board, 3, 30 heat sink,
4,400 reflective member, 5 diffuser plate, 6 case, 7 fastening member, 8 mounting spring,
9 spring fastening member, 20, 201 light emitting part, 21, 202 substrate, 22 heat conductive sheet, 210 elevator ceiling, 211 car floor, 212 wall, 213 door,
220 Mounting hole, 500 Lens, 600 Assembly jig, 2000 Elevator car.

Claims (8)

光を出射する発光部を有する発光基板と、
前記発光基板が配置される底部、前記発光基板を収容する筒状の側壁部、及び前記側壁部の外周面に形成される放熱フィンを有し、前記発光部から生じる熱を放熱するヒートシンクと、
前記側壁部に収容されるとともに、前記発光部を囲うように配置され、前記光を反射する反射部材と、
少なくとも一部が前記側壁部に収容されるケースと、
照明器具を設置面の取付穴に固定する取付バネと、
を備え、
前記光が出射される方向を出射方向、前記出射方向の反対方向を反出射方向としたとき、前記側壁部は、前記底部よりも前記反出射方向側に延伸して形成され、
前記発光基板は、前記底部の前記出射方向側に配置され、前記反射部材は、前記発光基板の前記出射方向側に配置され、前記ケースは、前記反射部材の前記出射方向側に配置され、
前記底部及び前記ケースを締結する締結部材は、前記底部の前記反出射方向側から、前記反射部材を通して配置され
前記取付バネは、前記側壁部の外周面の、前記底部よりも前記反出射方向側に締結され、前記側壁部が延伸する方向と交差する方向に貫通する穴部を有し、前記ケースは、前記取付バネの前記穴部に対応する位置に、前記ケースの外側方向へ突出する凸部を有し、
前記取付バネの前記穴部には、前記凸部が挿入される、照明器具。
a light emitting substrate having a light emitting part that emits light;
a heat sink having a bottom portion where the light emitting substrate is placed, a cylindrical side wall portion accommodating the light emitting substrate, and a heat radiation fin formed on an outer peripheral surface of the side wall portion to radiate heat generated from the light emitting portion;
a reflecting member that is housed in the side wall portion, is arranged to surround the light emitting portion, and reflects the light;
a case at least partially accommodated in the side wall;
a mounting spring that fixes the lighting fixture to the mounting hole on the installation surface;
Equipped with
When the direction in which the light is emitted is defined as an emission direction, and the direction opposite to the emission direction is defined as a counter-emission direction, the side wall portion is formed to extend further toward the counter - emission direction than the bottom portion,
The light emitting substrate is disposed on the emission direction side of the bottom, the reflecting member is disposed on the emission direction side of the light emitting substrate, and the case is disposed on the emission direction side of the reflecting member,
A fastening member that fastens the bottom part and the case is arranged from the opposite side of the bottom part in the emission direction through the reflective member ,
The mounting spring is fastened to the outer circumferential surface of the side wall portion on a side opposite to the emission direction from the bottom portion, and has a hole portion that penetrates in a direction intersecting a direction in which the side wall portion extends, and the case includes: a convex portion protruding toward the outside of the case at a position corresponding to the hole of the mounting spring;
The lighting fixture , wherein the convex portion is inserted into the hole of the mounting spring .
前記側壁部は、前記反出射方向側の端部の全周が、前記底部よりも前記反出射方向側に延伸している、
請求項1に記載の照明器具。
The entire circumference of the end portion of the side wall portion on the opposite side of the emission direction extends further toward the opposite side of the emission direction than the bottom portion.
The lighting fixture according to claim 1.
前記ヒートシンクは、前記放熱フィンから前記底部へ延伸して形成される底部放熱フィンを有する、
請求項1に記載の照明器具。
The heat sink has a bottom heat dissipation fin extending from the heat dissipation fin to the bottom.
The lighting fixture according to claim 1.
放熱性を有する放熱部材をさらに備え、
前記放熱部材は、前記発光基板と前記ヒートシンクの前記底部との間に挟まれる、
請求項1~3のいずれか一項に記載の照明器具。
Further comprising a heat dissipating member having heat dissipating properties,
the heat dissipation member is sandwiched between the light emitting substrate and the bottom of the heat sink;
The lighting fixture according to any one of claims 1 to 3.
前記側壁部の前記反出射方向側の端部は、前記締結部材の前記反出射方向側の端部よりも前記反出射方向側へ延伸している、
請求項1~4のいずれか一項に記載の照明器具。
The end portion of the side wall portion on the counter -emission direction side extends further toward the counter-emission direction side than the end portion of the fastening member on the counter- emission direction side.
The lighting fixture according to any one of claims 1 to 4.
前記反射部材の前記出射方向側に配置され、前記ケースの前記反出射方向側に配置され、前記発光部から出射した前記光を拡散させる拡散板を備える、
請求項1~5のいずれか一項に記載の照明器具。
a diffuser plate disposed on the emission direction side of the reflective member, disposed on the opposite emission direction side of the case, and diffusing the light emitted from the light emitting part;
The lighting fixture according to any one of claims 1 to 5.
照明器具の組立方法であって、
前記照明器具は、
光を出射する発光部を有する発光基板と、
前記発光基板が配置される底部、前記発光基板を収容する筒状の側壁部、及び前記側壁部の外周面に形成される放熱フィンを有し、前記発光部から生じる熱を放熱するヒートシンクと、
前記側壁部に収容されるとともに、前記発光部を囲うように配置され、前記光を反射する反射部材と、
少なくとも一部が前記側壁部に収容されるケースと、
を備え、
前記光が出射される方向を出射方向、前記出射方向の反対方向を反出射方向としたとき、前記側壁部は、前記底部よりも前記反出射方向側に延伸して形成され、
前記発光基板は、前記底部の前記出射方向側に配置され、前記反射部材は、前記発光基板の前記出射方向側に配置され、前記ケースは、前記反射部材の前記出射方向側に配置され、
前記底部及び前記ケースを締結する締結部材は、前記底部の前記反出射方向側から、前記反射部材を通して配置され、
前記発光基板、前記ヒートシンクの前記底部、前記反射部材、及び前記ケースのそれぞれの対応する位置には、前記出射方向側から前記反射方向側に貫通する通し穴が設けられ、
前記ヒートシンク、前記発光基板、前記反射部材及び前記ケースの順に、それぞれの前記通し穴に前記反出射方向側から、前記通し穴に対応する位置に設けられたガイドピンを有する組立治具を挿入して、前記ヒートシンク、前記発光基板、前記反射部材及び前記ケースを組み合わせる工程と、
組み合わされた前記ヒートシンク、前記発光基板、前記反射部材及び前記ケースの前記通し穴から、前記反出射方向側へ前記組立治具を引き抜く工程と、
前記通し穴から前記組立治具が引き抜かれ、組み合わされたままの前記ヒートシンク、前記発光基板、前記反射部材及び前記ケースの前記通し穴に、前記底部の前記反出射方向側から前記ケースの前記通し穴へ前記締結部材を挿入し、前記底部及び前記ケースを締結し、前記ヒートシンク、前記発光基板、前記反射部材及び前記ケースを固定する工程と、を有する、
照明器具の組立方法。
A method for assembling a lighting fixture, the method comprising:
The lighting equipment includes:
a light emitting substrate having a light emitting part that emits light;
a heat sink having a bottom portion where the light emitting substrate is placed, a cylindrical side wall portion accommodating the light emitting substrate, and a heat radiation fin formed on an outer peripheral surface of the side wall portion to radiate heat generated from the light emitting portion;
a reflecting member that is housed in the side wall portion, is arranged to surround the light emitting portion, and reflects the light;
a case at least partially accommodated in the side wall;
Equipped with
When the direction in which the light is emitted is defined as an emission direction, and the direction opposite to the emission direction is defined as a counter-emission direction, the side wall portion is formed to extend further toward the counter-emission direction than the bottom portion,
The light emitting substrate is disposed on the emission direction side of the bottom, the reflecting member is disposed on the emission direction side of the light emitting substrate, and the case is disposed on the emission direction side of the reflecting member,
A fastening member that fastens the bottom part and the case is arranged from the opposite side of the bottom part in the emission direction through the reflective member,
Through holes penetrating from the emission direction side to the counter- emission direction side are provided at corresponding positions of the light emitting substrate, the bottom part of the heat sink, the reflection member, and the case,
An assembly jig having a guide pin provided at a position corresponding to the through hole is inserted into the through hole of each of the heat sink, the light emitting board, the reflective member, and the case from the side opposite to the emission direction in this order. a step of combining the heat sink, the light emitting substrate, the reflective member, and the case;
pulling out the assembly jig from the through hole of the combined heat sink, light emitting board, reflective member, and case in the opposite direction;
The assembly jig is pulled out from the through hole, and the through hole of the heat sink, the light emitting board, the reflective member, and the case are inserted into the through hole of the case from the opposite side of the bottom of the case. inserting the fastening member into the hole, fastening the bottom part and the case, and fixing the heat sink, the light emitting board, the reflective member, and the case;
How to assemble lighting equipment.
かご床部、エレベータ天井部、壁部、及び扉部を備えるエレベータかごであって、
前記エレベータ天井部に設置される請求項1~のいずれか一項に記載の照明器具を備え、
前記エレベータ天井部は、対向して配置される天井板部及び天井板金を有し、
前記天井板金は、前記天井板部よりも前記かご床部側に配置され、前記天井板部及び前記天井板金の間には空間部が形成され、前記照明器具は、前記天井板金に形成される取付穴から空間部内に設置され、前記天井板部から突出しない、
エレベータかご。
An elevator car comprising a car floor, an elevator ceiling, a wall, and a door,
comprising the lighting fixture according to any one of claims 1 to 6 installed on the elevator ceiling,
The elevator ceiling part has a ceiling plate part and a ceiling metal plate arranged to face each other,
The ceiling metal plate is disposed closer to the car floor than the ceiling plate part, a space is formed between the ceiling plate part and the ceiling metal plate, and the lighting fixture is formed on the ceiling metal plate. installed in the space through the mounting hole and does not protrude from the ceiling board;
elevator car.
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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011076979A (en) 2009-10-01 2011-04-14 Sharp Corp Mounting auxiliary member, and lighting system
JP2019125556A (en) 2018-01-19 2019-07-25 パナソニックIpマネジメント株式会社 Luminaire

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4749061A (en) * 1987-02-27 1988-06-07 Westinghouse Electric Corp. Elevator cab
US8220970B1 (en) * 2009-02-11 2012-07-17 Koninklijke Philips Electronics N.V. Heat dissipation assembly for an LED downlight

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011076979A (en) 2009-10-01 2011-04-14 Sharp Corp Mounting auxiliary member, and lighting system
JP2019125556A (en) 2018-01-19 2019-07-25 パナソニックIpマネジメント株式会社 Luminaire

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