WO2011129170A1 - 照明装置 - Google Patents
照明装置 Download PDFInfo
- Publication number
- WO2011129170A1 WO2011129170A1 PCT/JP2011/056054 JP2011056054W WO2011129170A1 WO 2011129170 A1 WO2011129170 A1 WO 2011129170A1 JP 2011056054 W JP2011056054 W JP 2011056054W WO 2011129170 A1 WO2011129170 A1 WO 2011129170A1
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- WO
- WIPO (PCT)
- Prior art keywords
- light
- led
- chassis
- led module
- guide plate
- Prior art date
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21S—NON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
- F21S8/00—Lighting devices intended for fixed installation
- F21S8/04—Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures
- F21S8/06—Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures by suspension
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21S—NON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
- F21S8/00—Lighting devices intended for fixed installation
- F21S8/04—Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21S—NON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
- F21S8/00—Lighting devices intended for fixed installation
- F21S8/02—Lighting devices intended for fixed installation of recess-mounted type, e.g. downlighters
- F21S8/026—Lighting devices intended for fixed installation of recess-mounted type, e.g. downlighters intended to be recessed in a ceiling or like overhead structure, e.g. suspended ceiling
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V13/00—Producing particular characteristics or distribution of the light emitted by means of a combination of elements specified in two or more of main groups F21V1/00 - F21V11/00
- F21V13/02—Combinations of only two kinds of elements
- F21V13/04—Combinations of only two kinds of elements the elements being reflectors and refractors
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V5/00—Refractors for light sources
- F21V5/04—Refractors for light sources of lens shape
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V7/00—Reflectors for light sources
- F21V7/0025—Combination of two or more reflectors for a single light source
- F21V7/0033—Combination of two or more reflectors for a single light source with successive reflections from one reflector to the next or following
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V7/00—Reflectors for light sources
- F21V7/04—Optical design
- F21V7/05—Optical design plane
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- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/0001—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
- G02B6/0011—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
- G02B6/0013—Means for improving the coupling-in of light from the light source into the light guide
- G02B6/0015—Means for improving the coupling-in of light from the light source into the light guide provided on the surface of the light guide or in the bulk of it
- G02B6/002—Means for improving the coupling-in of light from the light source into the light guide provided on the surface of the light guide or in the bulk of it by shaping at least a portion of the light guide, e.g. with collimating, focussing or diverging surfaces
- G02B6/0021—Means for improving the coupling-in of light from the light source into the light guide provided on the surface of the light guide or in the bulk of it by shaping at least a portion of the light guide, e.g. with collimating, focussing or diverging surfaces for housing at least a part of the light source, e.g. by forming holes or recesses
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V29/00—Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
- F21V29/50—Cooling arrangements
- F21V29/502—Cooling arrangements characterised by the adaptation for cooling of specific components
- F21V29/507—Cooling arrangements characterised by the adaptation for cooling of specific components of means for protecting lighting devices from damage, e.g. housings
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V7/00—Reflectors for light sources
- F21V7/0008—Reflectors for light sources providing for indirect lighting
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V7/00—Reflectors for light sources
- F21V7/0091—Reflectors for light sources using total internal reflection
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21Y—INDEXING 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
- F21Y2103/00—Elongate light sources, e.g. fluorescent tubes
- F21Y2103/30—Elongate light sources, e.g. fluorescent tubes curved
- F21Y2103/33—Elongate light sources, e.g. fluorescent tubes curved annular
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21Y—INDEXING 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
- F21Y2113/00—Combination of light sources
- F21Y2113/10—Combination of light sources of different colours
- F21Y2113/13—Combination of light sources of different colours comprising an assembly of point-like light sources
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21Y—INDEXING 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
- F21Y2115/00—Light-generating elements of semiconductor light sources
- F21Y2115/10—Light-emitting diodes [LED]
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/0001—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
- G02B6/0011—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
- G02B6/0033—Means for improving the coupling-out of light from the light guide
- G02B6/0035—Means for improving the coupling-out of light from the light guide provided on the surface of the light guide or in the bulk of it
- G02B6/0045—Means for improving the coupling-out of light from the light guide provided on the surface of the light guide or in the bulk of it by shaping at least a portion of the light guide
- G02B6/0046—Tapered light guide, e.g. wedge-shaped light guide
Definitions
- the present invention relates to an illumination device including a light source and a light control member that controls the direction of light emitted from the light source.
- LEDs light emitting diodes
- various lighting devices have been proposed that include LEDs having characteristics such as small size, low power consumption, and long life as a light source instead of conventional light sources (for example, see Patent Document 1).
- the lighting fixture disclosed in Patent Document 1 includes a fixture main body 1010, a semiconductor light emitting element (light source) 1021 disposed on outer edges 1014 and 1015 of the fixture main body 1010, and a light emitting direction of the semiconductor light emitting element 1021.
- a lens body 1030 that is disposed to face and controls light of the semiconductor light emitting element 1021 mainly in a parallel direction, a reflector 1040 that faces the semiconductor light emitting element 1021 and is inclined toward a substantially central portion of the fixture body 1010, and a semiconductor
- a globe 1050 covering the light emitting element 1021 and the reflector 1040 is provided (see FIG. 39).
- the instrument body 1010 has a rectangular plate shape, and an adapter 1012 that engages with the hooking ceiling 1011 is provided at a substantially central portion.
- the lighting fixture according to Patent Document 1 is attached to the fixture mounting surface A in the fixture main body 1010 by engaging the adapter 1012 with a hook ceiling 1011 provided on the fixture mounting surface A such as a ceiling surface of a house. Used as a ceiling light.
- the light emitted from the semiconductor light emitting element 1021 when the lighting device is turned on is emitted by the lens body 1030 in a substantially parallel direction, that is, toward the inclined portion of the reflector 1040, and further reflected by the reflector 1040 to be reflected in the globe. Incident at 1050.
- the semiconductor light emitting element 1021 that is a light source is disposed on the outer edge portions 1014 and 1015 of the fixture body 1010 that holds the light source, and thus the outer edge portions 1014 and 1015 of the fixture body 1010.
- a load is applied to the semiconductor light emitting element 1021 that is a light source and wiring connected to the semiconductor light emitting element 1021.
- the lighting fixture according to Patent Document 1 is configured to be held by the attached member at the center of the fixture body 1010.
- This invention is made
- a lighting device is held by a device main body, and a plurality of light sources that irradiate light toward an outer edge portion of the device main body, and a light control member that controls and illuminates the light from the plurality of light sources. It is characterized by comprising.
- a plurality of light sources that are held by the apparatus main body and irradiate light toward the outer edge of the apparatus main body, and a light control member that illuminates by controlling the direction of the light from the plurality of light sources, It has. Since the light source is not installed at the outer edge of the lighting device, the moment acting on the device main body holding the light source can be reduced compared to the case where the light source is installed at the outer edge of the lighting device. It is possible to suppress deformation such as bending.
- the illumination device is characterized in that the light control member is a light guide member having a hole, and the light source is provided so that light enters the light control member from a peripheral surface of the hole. To do.
- a light guide member having a hole is used as a light control member, and the light source is provided so that light enters the light control member from the peripheral surface of the hole.
- a part of the light from the light source incident from the peripheral surface of the hole in the center of the light control member spreads toward the outer edge of the light control member while totally reflecting the inside of the light control member. It is possible to emit light brightly up to a portion, and to perform substantially uniform surface light emission.
- the illuminating device is characterized in that an inclined surface that is inclined in a direction intersecting a light emitting direction of the light source is provided on an outer edge portion of the light control member.
- an inclined surface that is inclined in a direction intersecting the light emitting direction of the light source is provided on the outer edge of the light control member.
- a light guide plate when used as the light control member, when the angle from the light source incident on the light guide plate from the side to the surface of the light guide plate is small, it is totally reflected, by providing the inclined surface.
- the angle between the light and the inclined surface of the light guide plate can be made larger than the angle at which the light is totally reflected, and a part of the light from the light source is external to the illumination device from the inclined surface provided on the outer edge of the light control member.
- the lighting device is mounted on the ceiling, part of the light from the light source can be emitted toward the ceiling, and even when the total luminous flux is low, the user can feel the entire room bright. it can.
- the light control member has a plate shape, and a plurality of reflection portions that irregularly reflect the light from the light source are provided on one surface, and the plurality of reflection portions are in perspective from the light source. Accordingly, an area for irregularly reflecting light from the light source is set to be large or small.
- an area for irregularly reflecting the light from the light source according to the distance from the light source has a plurality of reflecting portions that irregularly reflect the light from the light source on one surface of the plate-shaped light control member. It is provided to be large and small. The intensity of light decreases as the distance from the light source increases. However, since the area of the reflection part that is diffusely reflected by incidence of light from the light source increases, the amount of light irregularly reflected by the reflection part is reduced at the outer edge of the light control member. Can also be adequately secured. That is, a sufficient amount of light can be emitted from the surface on the opposite side of the one surface from substantially the entire surface from the center to the outer edge of the light control member, so that substantially uniform surface emission can be performed.
- the illuminating device according to the present invention is characterized in that the light control member is formed so that the wall thickness decreases according to the distance from the light source.
- the light control member is formed so that the thickness decreases according to the distance from the light source. Loss of light that does not enter the light control member because the thickness of the hole side of the light control member on which the light source is disposed opposite to the light source is sufficiently thicker than the dimension of the light source. Can be reduced, and the light utilization efficiency of the entire lighting device, so-called device efficiency, can be improved.
- FIG. 1 is a schematic exploded perspective view of a lighting device according to Embodiment 1.
- FIG. 2 is a schematic rear view of the lighting device according to Embodiment 1.
- FIG. 4 is a schematic cross-sectional view taken along line IV-IV in FIG. 3.
- FIG. 3 is a diagram showing an arrangement of main parts of the lighting apparatus according to Embodiment 1.
- 3 is a schematic diagram of an LED module of the lighting apparatus according to Embodiment 1.
- FIG. 3 is a partial enlarged cross-sectional view of a main part in the lighting apparatus according to Embodiment 1.
- FIG. 6 is a schematic external view of a lighting device according to Embodiment 2.
- FIG. 10 is a partial enlarged cross-sectional view of a main part in the illumination device according to Embodiment 2.
- FIG. 10 is a partial enlarged cross-sectional view of a main part in the lighting apparatus according to Embodiment 3.
- 6 is a schematic cross-sectional view of a lighting device according to Embodiment 4.
- FIG. It is a figure which shows arrangement
- FIG. 6 is a schematic external perspective view of a lighting apparatus according to Embodiment 5.
- FIG. FIG. 10 is a schematic exploded perspective view of a lighting apparatus according to Embodiment 5.
- FIG. 6 is a schematic cross-sectional view of a lighting device according to Embodiment 5.
- FIG. 10 is a schematic cross-sectional view of a central portion of a lighting device according to Embodiment 5.
- FIG. 10 is a schematic diagram of an LED module of a lighting device according to Embodiment 5. It is explanatory drawing of reflection of the light from the LED module in the illuminating device which concerns on Embodiment 5.
- FIG. It is explanatory drawing of reflection of the light from the LED module in the illuminating device which concerns on Embodiment 5.
- FIG. It is explanatory drawing of reflection of the light from the LED module in the illuminating device which concerns on Embodiment 5.
- FIG. 10 is a schematic cross-sectional view of a lighting device according to Embodiment 6.
- FIG. 10 is a schematic partial enlarged cross-sectional view of a lighting apparatus according to Embodiment 6.
- FIG. 10 is a schematic partial enlarged cross-sectional view of a lighting apparatus according to Embodiment 7.
- FIG. 10 is a schematic partial enlarged cross-sectional view of a lighting device according to Embodiment 8. It is a schematic diagram which shows the example of the other LED module applicable in this invention.
- FIG. 10 is a schematic cross-sectional view of a lighting device according to Embodiment 9.
- FIG. 10 is a schematic partial enlarged cross-sectional view of a lighting device according to Embodiment 9.
- FIG. 10 is a schematic partial enlarged cross-sectional view of a lighting device according to Embodiment 9. FIG.
- FIG. 10 is a schematic perspective view of a lens used in an illumination apparatus according to Embodiment 9.
- FIG. 20 is a schematic cross-sectional view showing an example of another lens applicable in the ninth embodiment. It is explanatory drawing of the permite
- FIG. 1 is a schematic external perspective view of lighting apparatus 100 according to Embodiment 1 of the present invention.
- FIG. 2 is a schematic exploded perspective view of lighting apparatus 100 according to Embodiment 1.
- FIG. 3 is a schematic rear view of the lighting device 100 according to the first embodiment. 4 is a schematic cross-sectional view taken along line IV-IV in FIG.
- reference numeral 1 denotes a chassis as a device body having a disk shape and holding a light source to be described later.
- the chassis 1 has a circular hole 11 in the center, and an electric wire that connects between a power supply unit and a light source described later is inserted into the hole 11.
- the chassis 1 is made of a metal such as iron or aluminum, and also has a function as a heat sink that dissipates heat from a heating element such as a light source.
- the chassis 1 is provided with four through holes 12 in the circumferential direction so as to be aligned with the mounting position of the light source holding portion described later.
- the chassis 1 is provided with a screw hole 13 so as to be aligned with the mounting position of the light source holding portion.
- FIG. 5 is a diagram illustrating an arrangement of main parts of the illumination device 100 according to the first embodiment.
- FIG. 6 is a schematic diagram of the LED module 2 of the illumination device 100 according to the first embodiment.
- the LED module 2 includes a rectangular plate-shaped LED substrate 21, a plurality of daylight color LEDs 22 that are mounted in a row along the long side of the LED substrate 21, and emit daylight color light. And a plurality of light bulb color LEDs 23 that emit light of a light bulb color.
- the daylight color LED 22 and the light bulb are arranged so that the light emitting portions of the daylight color LED 22 and the light bulb color LED 23 (the portions of the LED element and the sealing resin, which are indicated by circles in the drawing) are positioned substantially in a straight line.
- the color LEDs 23 are arranged almost alternately.
- the daylight color LED 22 and the light bulb color LED 23 are, for example, surface-mounted LEDs that include an LED element, a sealing resin that seals the LED element, and phosphors are dispersed, and an input terminal and an output terminal.
- the LED substrate 21 is made of metal such as iron or aluminum, and also serves as a heat conductor that conducts heat from the daylight color LED 22 and the light bulb color LED 23 to the light source holding unit 3.
- the LED substrate 21 is more preferably made of iron having a thermal expansion coefficient close to that of the resin of the daylight color LED 22 and the light bulb color LED 23.
- the daylight color LED 22 and the light bulb color LED 23 are arranged on the LED substrate 21 so that the distance between the adjacent light bulb color LED 23 or the daylight color LED 22 is substantially the same. It is more desirable that the distance from the light bulb color LED 23 or the daylight color LED 22 adjacent from the center to the end is gradually increased. This is because, in the case where a plurality of LED modules 2 are arranged in a polygonal shape as in the present embodiment, the boundary between adjacent LED modules 2 is prevented from becoming dark, and the luminance is increased according to the circumferential position. This is because the light from the LED module 2 is emitted more uniformly so as not to cause a difference. When the LED modules are arranged in a circular shape (ring shape) using a flexible substrate or the like, it is preferable to arrange the LED modules so that the intervals between adjacent LEDs are substantially the same as in this embodiment. desirable.
- the light emitting portions of the daylight color LED 22 and the light bulb color LED 23 are positioned substantially in a straight line, so that the light from the LED module 2 is compared with the case where they are arranged in parallel. Opposite the peripheral surface 4a of the hole of the control member so as to reduce the amount of light that does not enter the light control member that controls the orientation, and the light emitting portion of the LED module 2 is disposed within the thickness of the peripheral surface 4a It is possible to improve the light utilization efficiency of the entire lighting device, so-called device efficiency.
- 1st connection part 25 is provided in the both ends of the circuit pattern for the power supply which connects the some daylight color LED22 in series.
- the 2nd connection part 24 is provided in the both ends of the circuit pattern for the power supply which connects the some light bulb color LED23 in series.
- connection between the plurality of LED modules 2 is made by connecting the electric wires 69, which are jumper cables, between the first connection portions 25 and the second connection portions 24 to the connection portions 24 and 25 by soldering or the like.
- the electric wires 69 which are jumper cables
- eight LED modules 2 are divided into two groups, and each group is formed by connecting four LED modules 2 in series by electric wires 69.
- the some LED module 2 connects between the 1st connection part 25 and the 2nd connection part 24 of the LED module 2 of the one end part of each group, and the power supply part mentioned later by the electric wire 66.
- the power supply unit is connected.
- the light source holding part 3 has a U-shape with a flat cross-sectional shape, a rectangular plate-like holding board part 31 to which the LED module 2 is held and attached, and the holding board part
- a fixed plate portion 32 that is connected to the holding plate portion 31 on one side of the long side 31 at a substantially right angle and is fixed to the chassis 1, and a length of the fixed plate portion 32 opposite to the holding plate portion 31.
- a support plate portion 33 provided in parallel to face the holding plate portion 31 from a part of the side is provided.
- the light source holding unit 3 is made of metal such as aluminum, and also serves as a heat conductor that conducts heat from the LED module 2 that is a heating element to the chassis 1 that also serves as a heat sink.
- the non-mounting surface of the LED substrate 21 (the surface opposite to the surface on which the daylight color LED 22 and the light bulb color LED 23 are mounted) so that the longitudinal direction of the LED substrate 21 is the longitudinal direction of the holding plate portion 32.
- the LED module 2 is fixed with screws or the like.
- a through hole 34 is provided at the approximate center in the longitudinal direction of the fixed plate portion 32. Screw holes are respectively provided at both ends in the longitudinal direction of the fixed plate portion 32.
- the light source holding part 3 is substantially equally arranged in the circumferential direction so that the holding plate part 31 faces the outer edge of the chassis 1 and the holding plate part 31 forms a regular octagonal peripheral wall.
- the screw 15 is screwed into the screw hole provided in the fixing plate portion 32 and the screw hole 13 provided in the chassis 1 in a state where it is placed on the one surface 1a of the chassis 1. It is fixed to.
- the LED module 2 is held so that the LED substrate 21 is substantially orthogonal to the radial direction of the chassis 1, and as shown in FIG.
- the chassis 1 is arranged in an octagonal shape. When the LED module 2 is turned on, the light from the LED module 2 is emitted radially toward the outer edge of the lighting device 100 (chassis 1).
- FIG. 7 is a partial enlarged cross-sectional view of the main part of lighting apparatus 100 according to Embodiment 1.
- the light guide plate 4 is in the shape of a disc having a regular octagonal hole that matches the arrangement shape of the LED module 2 in the center.
- the light guide plate 4 is made of a material having high light transmittance, for example, acrylic resin.
- the light guide plate 4 is preferably thicker than the dimensions of the light emitting portions of the daylight color LED 22 and the light bulb color LED 23 of the LED module 2.
- it is desirable that the light guide plate 4 is disposed on the chassis 1 so that the optical axis of the LED module 2 is positioned at the approximate center in the thickness direction of the light guide plate 4.
- Light that does not enter the light guide plate 4 by making the thickness of the light guide plate 4 thicker than the size of the light emitting portion of the LED and / or by aligning the optical axis of the LED module 2 with the center position of the light guide plate 4 in the thickness direction.
- the amount of light can be reduced, and the light utilization efficiency of the entire lighting device, so-called device efficiency, can be improved.
- the light guide plate 4 is arranged on two regular octagonal lines that are substantially concentric with each other so that each LED module 2 faces the peripheral surface 4a of the hole with an appropriate distance.
- the module 2 and the light guide plate 4 are arranged on one surface 1a of the chassis 1 so that they are located respectively.
- the light guide plate 4 and each LED module 2 are arranged such that each LED module 2 is parallel to the peripheral surface 4a of the hole of the light guide plate 4 with substantially the same interval.
- the distance between the LED module 2 and the peripheral surface 4a of the hole of the light guide plate 4 is such that the heat generated in the LED module 2 is such that the light from the LED module 2 has a certain extent and enters the peripheral surface 4a. It is desirable to set appropriately so as not to be transmitted to the light guide plate 4.
- a plurality of reflective dots 41 are printed on one surface 4c of the light guide plate 4 as reflective portions that diffusely reflect light from the LED module 2.
- the reflective dot 41 has a circular shape, and is provided so that the area from which the light from the LED module 2 is irregularly reflected according to the distance from the LED module 2, that is, the area of the reflective dot 41 in this embodiment is large or small. It is. More specifically, the reflective dots 41 printed on the one surface 4c of the light guide plate 4 are printed by arranging the patterns printed in a circular shape closer to the LED module 2 and densely arranging them.
- the reflective dots 41 are formed on the one surface 4c of the light guide plate 4 by printing such as silk screen printing using a paint mixed with an appropriate amount of a diffusing material.
- the light incident on the light guide plate 4 from the LED module 2 repeats total reflection while spreading toward the outer edge portion of the light guide plate 41 when the reflection dot 41 is not provided, and directly from the outer edge portion of the light guide plate 41 to the light guide plate. 4 is emitted in a direction along the plane of 4, but by providing the reflective dots 41, as shown by arrows in FIG. 7, the reflective dots 41 are irregularly reflected, and a part of the light 4 d on the other surface of the light guide plate 4. The light is emitted from the light source, so that substantially uniform surface light emission can be performed.
- the region between the adjacent LED modules 2 is not darkened. It is desirable to change the pattern of the reflective dots 41 from other areas. For example, the area of each dot in the region between adjacent LED modules 2 is increased and / or the number of dots is increased.
- an inclined surface 4e that is inclined in a direction intersecting with the light emitting direction of the LED module 2 is formed over the entire circumference.
- the light from the LED module 2 that has entered from the peripheral surface 4a of the light guide plate 4 is totally reflected when the angle formed with the surface of the light guide plate 4 is small.
- the angle formed with the inclined surface 4e can be larger than the total reflection angle, and as shown by arrows in FIG. 7, a part of the light from the LED module 2 is applied to the outer edge of the light guide plate 4.
- the light can be emitted from the provided inclined surface 4e to the outside of the lighting device 100.
- a reflective sheet 5 is interposed between the chassis 1 and the light guide plate 4.
- the reflection sheet 5 has a disk shape having a regular octagonal hole that matches the arrangement shape of the LED module 2 at the center.
- the reflection sheet 5 is made of a material having a high light reflectance such as PET (polyethylene terephthalate).
- PET polyethylene terephthalate
- the reflection sheet 5 is provided with the screw holes 51 aligned with the screw holes 13 of the chassis 1, in other words, aligned with the mounting position of the light source holding unit 3.
- the reflection sheet 5 is placed on one surface 1 a of the chassis 1 in advance so that the screw holes 51 are aligned with the screw holes 13 of the chassis 1 when the light source holding unit 3 is attached to the chassis 1. It is attached to the chassis 1 together with the holding part 3.
- the light irregularly reflected by the reflective dots 41 of the light guide plate 4 is partially reflected in the later-described diffuser plate and reenters the light guide plate 4 from one surface 4c of the light guide plate 4 to form one surface 4c of the incident light.
- the light having a large angle is emitted from the one surface 4c of the light guide plate 4 without being reflected on the one surface 4c, and the emitted light is reflected on the other surface 4d side in the reflection sheet 5.
- a rectangular board-shaped control board 7 is attached to one surface 1a of the chassis 1 surrounded by the light source holding part 3 via a control board support part (not shown).
- electronic components such as a control microcomputer and a light control circuit component are mounted.
- the control board 7 is electrically connected to the power supply unit via the electric wire 68.
- a diffusion plate 8 is provided on the other surface 4 d of the light guide plate 4.
- the diffuser plate 8 has a disk shape having a regular octagonal hole that matches the arrangement shape of the LED module 2 at the center.
- the diameter of the diffusion plate 8 is substantially the same as the diameter of the other surface 4 d of the light guide plate 4.
- the diffusion plate 8 is made of milky white resin to which a diffusion material is added.
- a part of the light irregularly reflected by the reflection dots 41 of the light guide plate 4 has a large angle with the other surface 4d of the light guide plate 4, and thus is emitted from the other surface 4d without being totally reflected.
- the light emitted from the other surface 4d is diffused and transmitted through the diffusion plate 8, and is emitted toward the opposite side (for example, the floor surface) of the attached member such as the ceiling to the outside of the lighting device 100.
- Light emitted from the side of the other surface 4d of the light guide plate 4 to the outside of the lighting device 100 is diffused in the diffusion plate 8 and illuminates the entire room substantially uniformly.
- the chassis 1 provided with the LED module 2, the light source holding unit 3, the light guide plate 4, the reflection sheet 5, and the diffusion plate 8 has a disk shape via the cushion 90 and the top plate reflection sheet 55.
- An eggplant center cover 9 is attached.
- the center cover 9 has four through holes in the circumferential direction so that the through holes 91 are aligned with the through holes 12 provided in the chassis 1, in other words, are aligned with the mounting position of the light source holding unit 3. It is provided.
- the top plate reflection sheet 55 has a disc shape having a regular octagonal hole matched with the arrangement shape of the LED module 2 at the center.
- the top plate reflection sheet 55 has a slightly smaller diameter than the center cover 9, and the regular octagonal hole of the top plate reflection sheet 55 is a regular octagon formed by the support plate portions 33 of the plurality of light source holding portions 3. It is formed to be smaller than the shape.
- the top plate reflection sheet 55 is made of a material having a high light reflectance such as PET (polyethylene terephthalate).
- the top plate reflection sheet 55 is provided on the opposite side of the reflection sheet 5 with respect to the light guide plate 4, the light is emitted from the LED module 2 and reflected by the peripheral surface 4 a of the light guide plate 4, so that it does not enter the light guide plate 4.
- the light is reflected by the top plate reflection sheet 55 in the direction of the light guide plate 4, the reflection sheet 5, the diffusion plate 8, etc., so that the light utilization efficiency as a whole lighting device, so-called device efficiency can be improved. it can.
- the cushion 90 has substantially the same shape as the top plate reflection sheet 55.
- the cushion 90 and the top plate reflection sheet 55 are temporarily fixed to the center cover 9 with an adhesive or the like, for example.
- the center cover 9 is formed on the light source holding part 3 and the diffusion plate 8 in a state where the through hole 91 of the center cover 9 is aligned with the through hole 12 of the chassis 1 and the through hole 34 of the fixing plate part 32 of the light source holding part 3. It is mounted and integrated with the chassis 1 and the light source holding part 3 using the fastening member 14.
- the chassis 1 and the center cover 9 have a function as a holding member that holds the LED module 2, the light source holding unit 3, the light guide plate 4, the reflection sheet 5, the diffusion plate 8, and the like.
- bolts and nuts are used as the fastening members 14, and the bolts are inserted into the through holes 91, 34, 12 from the center cover 9 side, and the other surface of the chassis 1 (one surface 1 a
- the light source holding part 3, the light guide plate 4, the reflection sheet 5, the diffusion plate 8 and the like to which the LED module 2 is attached are interposed between the chassis 1 and the center cover 9 by screwing into a nut disposed on the opposite surface). It is clamped and integrated.
- the cushion 90 inserted between the center cover 9 and the light source holding part 3 and the diffusion plate 8 is compressed according to the fastening force of the fastening member, the light source holding part 3, the chassis 1 and the center cover 9, A force is applied to the members such as the light guide plate 4 and the diffusion plate 8 substantially uniformly in the circumferential direction, and is stably held. Further, a sealed cavity is formed by the chassis 1, the light source holding unit 3, the light guide plate 4, the diffusion plate 8 and the center cover 9. Since the LED module 2 as the light source is accommodated in the cavity, the LED module 2 portion can be sealed.
- the fastening member 14 is not limited to bolts and nuts.
- FIG. 8 is a diagram illustrating an example of an attachment state of the lighting device 100 according to Embodiment 1 to the ceiling 110 as a member to be attached.
- the power supply unit 6 that supplies power to the LED module 2 is attached to an attached body such as a hooked ceiling body provided on the ceiling 110 as an attached member via the adapter 16 (see FIG. (Not shown) is detachably attached.
- the adapter 16 has a flat cylindrical shape and is connected to the power supply unit 6 and a hooking blade that engages with an engagement hole of a mounted body such as a hooking sealing body provided on the mounted member on one end side. Connector.
- the adapter 16 is electrically and mechanically connected to the mounted body by engaging the hooking blade with the engaging hole of the mounted body. Since the adapter 16 is known per se, detailed description thereof is omitted.
- the power supply unit 6 includes a casing having a flat bottomed cylindrical shape partially provided with a circular hole, a power supply board accommodated in the casing, and mounted on the power supply board.
- a rectifier circuit that rectifies the current supplied from the (AC power supply), an electronic component such as a transformer that converts the rectified voltage into a predetermined voltage, and a power supply board support section that holds the power supply board in the casing.
- the adapter 16 is attached to the attached body by attaching the adapter 16 to the circular hole provided in the casing of the power supply unit 6 and engaging the adapter 16 with the attached body provided on the ceiling 110.
- the power supply unit 6 is attached to the ceiling 110 which is a member to be attached.
- the power supply part 6 is electrically connected to a to-be-attached body by connecting the connector of the adapter 16 and the connector of the power supply part 6.
- FIG. Further, the LED module 2 described above is connected to the power supply unit 6 via an electric wire 66.
- the power supply board 7 is connected to the power supply unit 6 through an electric wire 68.
- the control board 7 is attached to the chassis 1, but may be provided inside the casing of the power supply unit 6.
- the illuminating device 100 according to the present embodiment shown in FIG. 8 is a so-called pendant light of the type that is suspended from the ceiling 110 by the hanger 17.
- the LED module 2 is provided in the central portion of the chassis 1 (lighting device) and is not installed at the outer edge of the lighting device 100.
- the distance between the mounting position and the LED module 2 can be shortened, and the moment acting on the chassis 1 can be reduced as compared with the case where the LED module 2 is installed on the outer edge of the chassis 1 (illumination device). Therefore, the deformation of the chassis 1 can be suppressed, and the reliability of the lighting device 100 can be improved.
- the power supply unit 6 is arranged on the ceiling surface 110a above the central part of the chassis 1, the electric wires connecting the power supply unit 6 and the LED module 2 can be concentrated on the central part side of the chassis 1, and the chassis 1 can be further reduced, the deformation of the chassis 1 can be suppressed, and the reliability of the lighting device 100 can be improved.
- the LED module 2 as a light source is provided in an octagonal annular shape at the center of the chassis 1 (illumination device), and light is emitted radially toward the outer edge of the chassis 1.
- the area where the light source is installed can be reduced, and the light source necessary for making the light emitted from the light guide plate 4 as the light control member uniform.
- the number of can be reduced.
- the intensity of the light source is adjusted without increasing the number of light sources even when the lighting device is enlarged. A uniform illumination is possible only with this.
- the lighting device 100 attached to the ceiling 110 has the power supply unit 6 connected to an AC power source via an adapter 16 and a mounted body such as a hooking ceiling body.
- an alternating current is supplied to the power supply unit 6, power of a predetermined voltage and current is supplied from the power supply unit 6 to the LED module 2, and the LED module having the daylight color LED 22 and the light bulb color LED 23. 2 lights up.
- the LED module 2 provided in the central portion of the illuminating device 100 has an outer edge portion of the light guide plate 4 that is a light control member that controls the direction of light from the LED module 2.
- it is provided so as to emit light toward the outer edge of the lighting device 100 (chassis 1), faces the peripheral surface 4 a of the hole of the light guide plate 4, and passes through the light guide plate 4. Illuminated.
- the outer edge portion of the lighting device 100 can emit light brightly, and substantially uniform surface light emission is achieved. It can be carried out.
- the reflective dot 41 is provided so that the area where the light from the LED module 2 is irregularly reflected, that is, the area of the reflective dot 41 in this embodiment, is large or small according to the distance from the LED module 2.
- the light intensity decreases as the distance from the LED module 2 increases.
- the area of the reflective dot 41 that is diffusely reflected by the incident light from the LED module 2 increases, the amount of light irregularly reflected by the reflective dot 41 is introduced.
- a sufficient amount can be secured even at the outer edge of the optical plate 4. That is, a sufficient amount of light can be emitted from the other surface 4d over substantially the entire surface from the center portion to the outer edge portion of the light guide plate 4, and substantially uniform surface light emission can be performed.
- the lighting device 100 when the lighting device 100 is attached to the ceiling 110, the light emitted from the inclined surface 4e illuminates the ceiling surface 110a, the wall surface of the room, and the like.
- the light emitted from the inclined surface 4e illuminates the ceiling surface 110a, the wall surface of the room, and the like.
- the user can feel the entire room bright.
- the number of LEDs to be used can be reduced. Since the number of LEDs can be reduced, cost can be reduced and power consumption can be saved.
- the thickness of the lighting device 100 in the thickness direction of the light guide plate 4 can be reduced to reduce the thickness of the lighting device 100 and reduce the cost. be able to.
- FIG. 9 is a schematic external view of lighting apparatus 200 according to Embodiment 2.
- FIG. FIG. 10 is a partial enlarged cross-sectional view of a main part of lighting apparatus 200 according to Embodiment 2.
- the illumination device 200 according to the present embodiment is configured to increase the emission of light above the illumination device 200 as compared with the illumination device 100 according to the first embodiment.
- the chassis 101 as the apparatus main body has a disk shape having a diameter substantially the same as that of the center cover 9.
- the chassis 101 has a circular hole in the center, and electric wires 66 and 68 that connect between the power supply unit 6, the LED module 2, and the control board are inserted into the hole.
- the chassis 101 is made of a metal such as iron or aluminum, and also has a function as a heat sink that radiates heat from a heating element such as the LED module 2.
- a diffusion plate 85 is interposed between the chassis 101 and the light guide plate 4 instead of the reflection sheet 5 of the first embodiment.
- the diffusing plate 85 has substantially the same shape as that of the reflection sheet 5 of the first embodiment, and has a disc shape having a regular octagonal hole that matches the arrangement shape of the LED module 2 at the center.
- the diffusion plate 85 is provided so that the screw holes are aligned with the screw holes of the chassis 101, in other words, aligned with the mounting position of the light source holding unit 3.
- the diffusing plate 85 is placed on one surface of the chassis 101 in advance so that the screw holes are aligned with the screw holes of the chassis 101 when the light source holder 3 is attached to the chassis 101, and together with the light source holder 3 by screws. It is attached to the chassis 101.
- the chassis 101 is fastened by the light source holder 3 and the center cover 9 and the fastening member 14, and the light source holder in which the LED module 2 is attached between the chassis 101 and the center cover 9.
- the unit 3, the light guide plate 4, the diffusion plate 85, the diffusion plate 8 and the like are sandwiched and integrated. Since the other configuration is the same as that of the first embodiment shown in FIGS. 7 and 8, the same reference numerals as those in FIGS. 7 and 8 are attached to corresponding components, and detailed description of the configuration is omitted. To do.
- the LED module 2 is not installed at the outer edge portion of the illumination device 200, so that the chassis is similar to the illumination device 100 according to the first embodiment.
- the force acting on 101 can be reduced, the deformation of the chassis 101 can be suppressed, and the reliability of the lighting device 200 can be improved.
- the outer edge part of the light-guide plate 4 from the LED module 2 provided in the center part of the illuminating device 200, in other words, the outer edge part of the illuminating device 200 (chassis 101).
- the reflective dot 41 is provided on one surface 4c of the light guide plate 4 so as to emit light toward the surface, and the area of the reflective dot 41 that irregularly reflects the light from the LED module 2 according to the distance from the LED module 2 are provided so as to be large and small, as in the illumination device 100 according to Embodiment 1, substantially uniform surface light emission can be performed from the center portion of the light guide plate 4 to the outer edge portion.
- the inclined surface 4e which inclines in the direction which cross
- a diffusion plate 85 is provided on the side of the one surface 4 c of the light guide plate 4. The light irregularly reflected by the reflective dots 41 of the light guide plate 4 is partially reflected by the diffuser plate 8 and incident on one surface 4c of the light guide plate 4 as indicated by arrows in FIG.
- a part of the light having a large angle with the one surface 4 c is emitted from the one surface 4 c of the light guide plate 4 without being reflected by the one surface 4 c, and the emitted light is diffused by the diffusing plate 85 to the outside of the illumination device 200.
- the light emitted from the diffusion plate 85 illuminates the ceiling surface 110a.
- the light emitted from the inclined surface 4e illuminates the ceiling surface 110a, the wall surface of the room, and the like.
- the amount of light emitted above the lighting device 200 can be increased, and the ceiling surface 110a, the room It is possible to illuminate the wall surface of the room more brightly, and to make the user feel the entire room brighter.
- the chassis 101 has substantially the same diameter as the center cover 9, but the shape and dimensions of the chassis 101 are not limited to this. That is, the amount of light emitted above the lighting device 200 decreases according to the size of the area covered by the chassis 101 of the one surface 4c of the light guide plate 4, so that the arrangement above and below the desired lighting device is increased. What is necessary is just to determine the shape and size of the chassis according to the light ratio.
- the amount of light emitted above the illumination device 200 is increased by making the diameter of the chassis 101 smaller than the diameter of the chassis 1 of the first embodiment.
- the transmittance on the side of the one surface 4c of the light guide plate 4 is configured to be a transmittance according to the amount of light desired to be emitted upward.
- the chassis 101 may be made of a material having a transmittance corresponding to the amount of light desired to be emitted upward.
- an opening / closing mechanism that opens and closes like a louver may be provided on one surface 4c of the light guide plate 4 so as to change an area through which light is transmitted.
- the opening / closing mechanism for example, a material whose shape changes by applying a voltage, liquid crystal, or the like may be used, or the opening / closing mechanism may be configured to open and close mechanically.
- FIG. 11 is a partial enlarged cross-sectional view of a main part of lighting apparatus 300 according to Embodiment 3.
- the reflective dots 41 are over substantially the entire area of the one surface 4 c of the light guide plate 4.
- a reflection layer 105 formed by applying paints made of different materials by printing or the like is formed on one surface 4 c of the light guide plate 4.
- the reflective layer 105 is appropriately provided so as to have the same function as the reflective sheet 5 of the first embodiment.
- a diffusion layer 108 formed by coating a resin containing an appropriate amount of a diffusion material over substantially the entire other surface 4d of the light guide plate 4 is introduced. It is formed on the other surface 4d of the optical plate 4.
- the diffusion layer 108 is appropriately provided so as to have the same function as the diffusion plate 8 of the first and second embodiments.
- the chassis 101 is fixed to the light source holding part 3 and the center cover 9 by a fastening member, and the light source holding part in which the LED module 2 is attached between the chassis 101 and the center cover 9. 3.
- the light guide plate 4 and the like are sandwiched and integrated. Since other configurations are the same as those of the first embodiment shown in FIG. 7, the same reference numerals as those in FIG. 7 are given to corresponding components, and detailed description of the configurations is omitted.
- the central portion side of the light guide plate is provided by a holding member having a chassis and a center cover 9. Since it is clamped with a predetermined fastening force, the reflection sheet, the diffusion plate and the like and the light guide plate are held in close contact with each other. On the other hand, since the outer edge portion side of the light guide plate is separated from the position held by the fastening member, there is a possibility that a gap is generated between the light guide plate and the reflection sheet, the diffusion plate or the like.
- the reflective layer 105 and the diffusion layer 108 are formed on the light guide plate 4 by printing, coating, or the like, the reflective layer 105 and the diffusion layer are not fixed separately by an adhesive, a fixing member, or the like. 108 can be brought into close contact with the light guide plate 4. As a result, by fastening the chassis 101, the light source holding part 3, and the center cover 9 with the fastening members, the constituent members can be held without causing a gap between the members constituting the lighting device 300.
- each member constituting the lighting device can be held in close contact, and the reliability of the lighting device 300 can be improved.
- the center portion of the lighting device is closed by the chassis and the center cover 9, but the center portion of the chassis and the center cover 9 is circular. You may comprise so that a hole may be provided and the outer shape of an illuminating device may become what is called a donut shape.
- a so-called pendant light the user is more open when the center portion is hollow. Is more preferable.
- FIG. 12 is a schematic cross-sectional view of a lighting device 400 according to Embodiment 4, which is an application example to a so-called ceiling light, which is a type of lighting device attached to a mounted member such as a ceiling.
- the illumination device 400 according to Embodiment 4 has a configuration in which a power supply unit and an adapter are accommodated in a cavity surrounded by the chassis, the light source holding unit, and the center cover of the illumination device 100 according to Embodiment 1.
- a chassis 201 as an apparatus main body has a disk-shaped base 211 having a circular hole in the center, and a wide ring parallel to the base 211 and connected in a direction intersecting the outer edge of the base 211. And an annular portion 212.
- the chassis 201 is made of a metal such as iron or aluminum, and also has a function as a heat sink that dissipates heat from a heating element such as a light source.
- the adapter 16 is attached to the circular hole in the base 211 of the chassis 201.
- the adapter 16 is electrically and mechanically connected to the mounted body by engaging the hooking blade with the engaging hole of the mounted body such as the hooking sealing body provided on the mounted member such as the ceiling 110.
- the adapter 16 is attached to the attached body and attached, and at the same time, the chassis 201 is attached to the ceiling 110, which is the attached member.
- FIG. 13 is a diagram illustrating an arrangement of main parts of the illumination device 400 according to the fourth embodiment.
- the LED module 2 as a light source is attached to the base portion 211 of the chassis 201 so as to surround the periphery of the adapter 16 via the light source holding portion 3 in the radial direction.
- the annular portion 212 of the chassis 201 is provided with a light guide plate 4 as a light control member that controls the direction of light emitted from the LED module 2.
- a reflective sheet 5 is interposed between the chassis 201 and the light guide plate 4.
- the base 211 of the chassis 201 surrounded by the light source holding unit 3 is rectified by a C-shaped power supply board and a rectifier circuit that is mounted on the power supply board and rectifies current supplied from an AC power supply (AC power supply).
- a power supply unit 6 having an electronic component such as a transformer for converting the obtained voltage into a predetermined voltage is provided via a power supply substrate support unit.
- a rectangular control board 7 is provided via a control board support unit.
- electronic components such as a control microcomputer and a light control circuit component are mounted.
- the power supply unit 6 is electrically connected to the LED module 2 via an electric wire 66.
- the LED modules 2 are electrically connected by an electric wire 69 as a jumper cable.
- the power supply unit 6 is electrically connected to the control board 7 via an electric wire 68.
- the control unit 6 and the control substrate 7 are accommodated in a cavity formed by the base 211 of the chassis 201 and the light source holding unit 3, and the cavity is closed by the substrate cover 60.
- the substrate cover 60 includes a disc-shaped lid portion having a circular hole in the center, and an annular portion provided in parallel with the lid portion.
- the center cover 9 is attached to the chassis 201 to which the LED module 2, the power supply unit 6, the control board 7, and the board cover 60 are attached.
- the other configuration is the same as that of the first embodiment shown in FIGS. 4 and 5, and thus the same reference numerals as those in FIGS. 4 and 5 are attached to the corresponding structural members, and detailed description of the configuration is omitted. To do.
- the LED module 2 of the above embodiment includes a daylight color LED 22 and a light bulb color LED 23 having different color temperatures, so that the light emitting portions of the daylight color LED 22 and the light bulb color LED 23 are positioned on a substantially straight line.
- the LED modules 21 are mounted in a row along the long side of the LED substrate 21, applicable LED modules are not limited to this.
- light sources having different color temperatures daylight color LEDs 22 and light bulb color LEDs 23
- FIG. 14 is a schematic diagram showing an example of another LED module 102 applicable in the present invention.
- the LED module 102 includes a rectangular plate-shaped LED substrate 121, a plurality of daylight color LEDs 22 that are mounted in a row along the long side of the LED substrate 121, and emit daylight color light.
- a plurality of light bulb colored LEDs 23 that emit light of a light bulb color are mounted in parallel along the long side of the LED substrate 121 in parallel with the LEDs 22.
- the LED substrate 121 is made of a metal such as iron or aluminum, and also serves as a heat conductor that conducts heat from the daylight color LED 22 and the light bulb color LED 23 to the light source holding unit 3.
- the LED substrate 121 is more preferably made of iron having a thermal expansion coefficient close to that of the resin of the daylight color LED 22 and the light bulb color LED 23.
- connection part 25 is provided in the both ends of the circuit pattern for power supply (not shown) which connects the some daylight color LED22 in series.
- the 2nd connection part 24 is provided in the both ends of the circuit pattern (not shown) for the power supply which connects the some light bulb color LED23 in series.
- the first connection portions 25 and the second connection portions 24 are soldered to the connection portions 24 and 25 with the electric wires 69 that are jumper cables. This is done by connecting by attaching.
- a method of condensing light from the LED on the peripheral surface of the light guide plate by providing a condensing lens close to the light emitting portion of the LED, the thickness of the light guide plate Without changing, the optical axis of one LED (for example, daylight color LED 22) is provided so that the center of the light guide plate in the thickness direction coincides, and the light from the other LED (bulb color LED 23) is reflected to reflect the light of the light guide plate.
- one LED for example, daylight color LED 22
- FIGS. 15 and 16 are schematic views showing examples of other light guide plates applicable in the present invention.
- the light guide plate shown in FIGS. 15 and 16 is formed so that the thickness decreases according to the distance from the LED module 102, and the thickness closer to the LED module 102 is the daylight color of the LED module 102. By making it thicker than the space
- the light guide plate 104 shown in FIG. 15 has a disk shape having a regular octagonal hole that matches the arrangement shape of the LED module 102 at the center.
- the light guide plate 104 includes a peripheral surface 104a of the hole parallel to the LED substrate 121 of the LED module 102, an outer peripheral surface 104b parallel to the peripheral surface 104a, one surface 104c connecting the peripheral surface 104a and the outer peripheral surface 104b, and the like. 104d.
- the light guide plate 104 is formed such that its thickness continuously decreases from the central portion toward the outer edge portion by inclining one surface 104c of the light guide plate 104 outward.
- the light guide plate 204 shown in FIG. 16 has a disc shape having a regular octagonal hole that matches the arrangement shape of the LED module 102 at the center.
- the light guide plate 204 includes a peripheral surface 204a parallel to the LED substrate 121 of the LED module 102, an outer peripheral surface 204b parallel to the peripheral surface 204a, one surface 204c connecting the peripheral surface 204a and the outer peripheral surface 204b, and the like.
- the light guide plate 204 is continuously thin from the center portion toward the outer edge portion by inclining the one surface 204c and the other surface 204d of the light guide plate 204 toward each other from the center portion toward the outer edge portion. It is formed so that
- These light guide plates 104 and 204 are attached to the chassis so that the surfaces 104c and 204c are on the chassis side.
- reflective dots are formed on one surface 104c and 204c of the light guide plate.
- the light guide plates 104 and 204 are formed so that the thickness decreases according to the distance from the LED module 102, the LED module 102 is disposed oppositely, and the light from the LED module 102 is Since the thickness of the peripheral surfaces 104a and 204a of the light guide plates 104 and 204 on which the light enters is larger than the interval between the light emitting portions of the daylight color LED 22 and the light bulb color LED 23 of the LED module 102, the light guide plate 104, The amount of light that does not enter 204 can be reduced, and the light utilization efficiency of the entire lighting device, so-called device efficiency, can be improved.
- the light sources having different color temperatures are arranged in parallel, it is possible to secure the interval between the adjacent LEDs rather than arranging them in a row, and the heat generated by the LEDs can be reduced. It becomes easy to transmit to the chassis via the light source holding part 3. And while ensuring the space
- These light guide plates 104 and 204 can also be used for the LED module 2.
- the light guide plate By forming the light guide plate so that the thickness decreases according to the distance from the LED module, the light emitted from the LED module and incident from the peripheral surface of the light guide plate and one surface of the light guide plate and / or the other Since the angle formed by the surface varies depending on the radial position of the light guide plate, it is possible to widen the light distribution emitted from the illumination device without using the diffusion plate.
- the angle between the incident light and the one surface 204c and / or the other surface 204d of the light guide plate 204 is small on the central portion side of the light guide plate 204, so that the light is totally reflected. More light.
- the angle formed between the incident light and the one surface 204c and / or the other surface 204d of the light guide plate 204 is large, so that more light is transmitted without being totally reflected.
- the intensity of the light emitted from the LED module becomes low and high according to the distance from the LED module, and the surface 204c is provided with reflective dots that diffusely reflect the light.
- a rectangular plate-shaped LED substrate is used, but a flexible substrate may be used.
- 17 and 18 are explanatory diagrams of the flexible substrate 221 applicable in the present invention.
- the flexible substrate 221 has a rectangular sheet shape with flexibility as shown in FIG.
- the flexible substrate 221 has a plurality of rectangular LED attachment regions to which the LEDs are attached, and includes a connection portion 26 connected to the power supply portion 6 at one end in the longitudinal direction.
- daylight color LEDs 22 and light bulb color LEDs 23 are mounted in each LED mounting region.
- the flexible substrate 221 has four LED mounting areas as shown in FIG. 17, and two flexible substrates 221 are used when applied to the lighting device described above. .
- the flexible substrate 221 on which the daylight color LED 22 and the light bulb color LED 23 are mounted is along the light source holding portion 3 (only half of the regular octagon is shown in the figure) arranged in a substantially regular octagon. It is bonded to the light source holding part 3 in a bent state.
- a fixing region by screws or the like is not necessary, so that a space between adjacent LEDs can be secured, and heat generated by the LEDs can be transmitted to the chassis via the light source holding unit 3. Becomes easy.
- the flexible substrate 221 it becomes easy to arrange the LED modules in a circular shape (annular shape), the intervals between adjacent LEDs can be made substantially the same, and uneven emission is reduced. can do.
- a through hole is provided as a regular octagonal hole that matches the arrangement shape of the LED module in the center of the light guide plate, but the hole may not be a through hole, for example, It may be a recess.
- the hole may be formed so as to have a circumferential surface that is opposed to the LED module so that the LED module can emit light toward the outer edge of the light guide plate.
- the chassis functions as a holding member that holds the LED module, the light source holding unit, the light guide plate, the reflection sheet, the diffusion plate, and the like, and dissipates heat from a heating element such as the LED module.
- the holding member and the heat sink may be provided separately.
- the reflective dot is provided as the reflective portion, but the present invention is not limited to this, and it is sufficient that the light can be irregularly reflected.
- a ring-shaped groove may be provided concentrically with the light guide plate, and the groove width and / or depth of the groove may be changed according to the distance from the light source.
- it may replace with a reflective dot and may provide a hemispherical recessed part.
- the light guide plate is used as a light control member for controlling the direction of light from the light source.
- the present invention is not limited to this, and a lens, a reflection member, or the like may be used.
- a light control member other than the light guide plate will be described.
- FIG. 19 is a schematic external perspective view of lighting apparatus 500 according to Embodiment 5.
- FIG. 20 is a schematic exploded perspective view of lighting apparatus 500 according to Embodiment 5.
- FIG. 21 is a schematic cross-sectional view of lighting apparatus 500 according to Embodiment 5.
- FIG. 22 is a schematic cross-sectional view of the central portion of lighting apparatus 500 according to Embodiment 5, and is a partially enlarged view of FIG.
- reference numeral 501 denotes a chassis as a device main body for holding a light source to be described later.
- the chassis 501 includes a disk-shaped base portion 511 having a circular hole in the center, a continuous portion 512 provided in a direction intersecting the outer edge portion of the base portion 511, and an outer edge portion of the continuous portion 512.
- An annular part 513 having a wide annular shape parallel to the base part 511 and a peripheral wall part 514 standing on the annular part 513 are provided.
- the chassis 501 is made of metal such as iron or aluminum, and also has a function as a heat sink that dissipates heat from a heating element such as a light source.
- the adapter 516 is attached to the attachment hole of the base 511 of the chassis 501.
- the adapter 516 has a flat columnar shape, and is connected to one end of a hook blade that engages with an engagement hole of a mounted body such as a hook sealing body provided on the mounted member, and a power supply unit. Connector.
- the adapter 516 is electrically and mechanically connected to the mounted body by engaging the hooking blade with the engaging hole of the mounted body.
- FIG. 23 is a diagram showing an arrangement of main parts of the illumination device 500 according to Embodiment 5.
- FIG. 24 is a schematic diagram of the LED module 502 of the lighting apparatus 500 according to the fifth embodiment.
- the LED module 502 includes a rectangular plate-shaped LED substrate 521, a plurality of daylight color LEDs 522 that are mounted in a row along the long side of the LED substrate 521, and emit daylight color light.
- a plurality of light bulb colored LEDs 523 that emit light bulb colors are mounted in parallel along the long side of the LED substrate 521 in parallel with the LEDs 522.
- the daylight color LED 522 and the light bulb color LED 523 are, for example, surface mounted LEDs each including an LED element, a sealing resin in which the LED element is sealed and phosphors are dispersed, and an input terminal and an output terminal.
- the LED substrate 521 is made of a metal such as iron or aluminum, and also serves as a heat conductor that conducts heat from the daylight color LED 522 and the light bulb color LED 523 to the light source holding unit 503.
- the LED substrate 521 is more preferably made of iron having a thermal expansion coefficient close to that of the resin of the daylight color LED 522 and the light bulb color LED 523.
- the daylight color LEDs 522 are arranged on the LED substrate 521 so that the intervals between the adjacent daylight color LEDs 522 are substantially the same, but are adjacent from the center in the longitudinal direction of the LED substrate 521 toward the end. It is more desirable that the daylight color LEDs 522 are arranged so that the intervals between the daylight color LEDs 522 gradually become denser. The same applies to the light bulb color LED 523. This is because, as in the present embodiment, when a plurality of LED modules 502 are arranged in a polygonal shape, the boundary portion between adjacent LED modules 502 is prevented from being darkened, and the luminance is increased according to the circumferential position.
- the LED module 502 is emitted more uniformly so as not to cause a difference.
- the LED modules are arranged in a circular shape (ring shape) using a flexible substrate or the like, it is preferable to arrange the LED modules so that the intervals between adjacent LEDs are substantially the same as in this embodiment. desirable.
- the light source holding part 503 having a U-shaped cross section is erected on a rectangular plate-like holding plate part 532 to which the LED module 502 is attached, and one side of the long side of the holding plate part 532, and a base part 511 of the chassis 501.
- a power supply cover that is provided in parallel to the fixing portion 531 that is fixed to the fixing plate 531 and on the other side of the long side of the holding plate portion 532 (opposite side of the fixing portion 531) facing the fixing portion 531 and covers the power supply portion described later
- the LED module 502 has a reflection sheet in a state where the longitudinal direction of the LED substrate 521 is the longitudinal direction of the holding plate portion 532 and the daylight color LED 522 is attached to the holding portion 533 side (attached to the chassis 501). It is fixed on the non-mounting surface (surface opposite to the surface on which the daylight color LED 522 and the light bulb color LED 523 are mounted) of the LED substrate 521 so as to be on the side farther from 504.
- the light source holding unit 503 is made of a metal such as aluminum, and also serves as a heat conductor that conducts heat from the LED module 502 that is a heating element to the chassis 501 that also serves as a heat sink.
- the chassis 501 is provided with a reflection sheet 504 as a reflection part that reflects light from the LED module 502.
- the reflection sheet 504 includes a disc portion 541 having an octagonal hole that matches the arrangement shape of the LED module 502 at the center, and a peripheral wall portion 542 that is erected on the outer peripheral edge of the disc portion 541. .
- the disc portion 541 is gently curved from the center portion toward the outer edge portion so that the one surface 541a side is concave.
- the reflection sheet 504 is made of resin, and is subjected to surface processing so as to be easily diffusely reflected.
- the reflection sheet 504 is attached to the chassis 501 so that the convex side, in other words, the surface opposite to the one surface 541a is on the chassis 501 side.
- the peripheral wall portion 542 of the reflection sheet 504 is opposed to the LED module 502 with a separation, and the inner peripheral surface 542a of the peripheral wall portion 542 is opposed to the LED module 502 with a separation in the light emitting direction. It becomes a surface.
- a top plate reflection sheet 505 is provided as another reflection unit that reflects light from the LED module 502 to the reflection sheet 504 side.
- the top plate reflection sheet 505 is made of a disk-shaped resin having an octagonal hole that matches the arrangement shape of the LED module 502 at the center, and is subjected to surface processing so that it is easily diffusely reflected.
- the top plate reflection sheet 505 is attached to the opposite side with respect to the LED module 502 of the reflection sheet 504 by being fixed to the inner surface of the holding portion 533 of the light source holding portion 503.
- a base 511 of the chassis 501 surrounded by the light source holding unit 503 has a C-shaped power supply board 561 and a rectifier circuit that is mounted on the power supply board 561 and rectifies current supplied from an AC power supply (AC power supply).
- a power supply unit 506 having an electronic component 562 such as a transformer for converting the rectified voltage into a predetermined voltage is provided via a power supply substrate support unit 563.
- the power board support portion 563 has a semi-annular shape in plan view, and is attached to the peripheral edge portion of the attachment hole of the base portion 511 of the chassis 501.
- An engagement recess 563 a that engages with the adapter 516 is formed on the inner surface of the power supply substrate support portion 563.
- a holding part 563b for holding the power supply board 561 of the power supply part 506 is provided on the outer surface of the power supply board support part 563.
- the power supply unit 506 holds the power supply board 561 on the base 511 of the chassis 501 by holding the power supply board 561 between the engaging claw 534 of the light source holding part 503 and the holding part 563b of the power supply board support part 563.
- An insulating sheet 564 is held between the power supply unit 506 and the base 511 of the chassis 501 by the light source holding unit 503 and the power supply substrate support unit 563.
- a rectangular plate-shaped control board 507 is provided via a control board support part 573.
- electronic components such as a control microcomputer and a light control circuit component are mounted.
- the control board support portion 573 has an engagement recess 573a that engages with the adapter 516 on the inner surface, and a cylindrical support tube 573b that supports the control board 507 on the outer surface.
- the control board 507 is held by the base 511 of the chassis 501 by supporting the control board 507 by the engaging claw 535 of the light source holding part 503 and the support cylinder 573b of the control board support part 573. Note that a receiving unit 575 for receiving a signal from the remote controller is attached to the control board 507.
- the LED module is obtained.
- the power supply unit 506, and the control board 507 can be integrated, and a compact unit can be formed.
- the power supply unit 506 is electrically connected to the LED module 502 via electric wires 566 and 567.
- the LED modules are electrically connected by an electric wire 569 as a jumper cable. Further, the power supply unit 506 is electrically connected to the control board 507 via an electric wire 568.
- the controller 506 and the control board 507 are accommodated in a cavity formed by the base 511 of the chassis 501 and the light source holding part 503, and the cavity is closed by the board cover 560.
- the substrate cover 560 includes a disc-shaped lid portion 560a having a circular hole in the center, a peripheral wall portion 560b standing on the inner edge of the lid portion 560a, and the opposite side of the lid portion 560a of the peripheral wall portion 560b. To an annular portion 560c provided in parallel to the lid portion 560a.
- the chassis 501 to which the LED module 502, the power supply unit 506, the control board 507, and the board cover 560 are attached is provided with the light diffusing ring cover 508 that covers the LED module 502 and the reflection sheet 504.
- the ring cover 508 includes a disc-shaped annular portion 581 having a circular hole in the center, and a peripheral wall portion 582 erected on the outer peripheral edge of the annular portion 581.
- the ring cover 508 is attached to the peripheral wall portion 514 of the chassis 501 at the peripheral wall portion 582.
- a center cover 509 as a disk-shaped power supply cover is detachably attached to the inner peripheral edge of the annular portion 581 of the ring cover 508.
- the center cover 509 includes an annular light transmitting portion 591 and an opaque portion 592 provided on the inner peripheral edge of the light transmitting portion 591.
- the cover 592 is provided with a circular hole for receiving a signal from the remote controller, and a cover 590 is fitted into the circular hole.
- the lighting device main body assembled as described above is attached to the adapter 516 so that the other surface 511b side of the base 511 of the chassis 501 is the attached member side, and is connected to the connector of the adapter 516 and the power supply unit 506. After connecting the connector, the center cover 509 is attached to the lighting device body.
- the lighting device main body can be attached to and detached from the attached member such as the ceiling by removing the center cover 509. Since the ring cover 508 and the like do not need to be removed, the sealing of the light source portion is maintained. .
- LED module 502 is not installed at the outer edge of chassis 501 (illumination apparatus), the LED from the center of chassis 501 that is a mounting position on a member to be mounted such as a ceiling is provided.
- the distance of the module 502 can be shortened, and the moment acting on the chassis 501 can be reduced as compared with the case where the LED module 502 is installed on the outer edge of the chassis 501, thereby suppressing deformation of the chassis 501.
- the reliability of the lighting device 500 can be improved.
- the power supply unit 506 is arranged in the center portion of the chassis 501, electric wires and the like connecting the power supply unit 506, the power supply unit 506, and the LED module 502 can be concentrated on the center portion side of the chassis 501, and the chassis 501 The acting moment can be further reduced, the deformation of the chassis 501 can be suppressed, and the reliability of the lighting device 500 can be improved.
- the power supply unit 506 is connected to the AC power supply via the attached body such as the adapter 516 and the hooking sealing body. In this state, when the power is turned on, an alternating current is supplied to the power supply unit 506, power of a predetermined voltage and current is supplied from the power supply unit 506 to the LED module 502, and the LED module having the daylight color LED 522 and the light bulb color LED 523. 502 lights up.
- the lighting device 500 light is emitted from the LED module 502 in the direction from the center to the outer edge of the lighting device 500, in other words, from the center to the outer edge of the chassis 501, and the reflection sheet 504 or the top plate reflection sheet 505 is emitted. Is reflected by the reflection sheet 504 or the top plate reflection sheet 505 and irradiated mainly in the direction intersecting the light emitting direction of the LED module 502 (direction intersecting the ceiling surface 110a of the ceiling 110). 25 to 27 are explanatory diagrams of light reflection from the LED module 502 in the lighting apparatus 500 according to the fifth embodiment.
- a part of the light emitted from the LED module 502 is specularly reflected on one surface 541a of the disc portion 541 of the reflection sheet 504 as indicated by arrows in FIG.
- the other part of the light emitted from the LED module 502 is incident on the inner peripheral surface 542a of the peripheral wall portion 542 of the reflecting sheet 504 that is separated and opposed in the light emitting direction of the LED module 502 at a substantially right angle. It is irregularly reflected on the peripheral surface 542a, that is, reflected in multiple directions.
- the peripheral wall portion 542 of the reflection sheet 504 has a predetermined height (H) higher than the optical axis of the daylight white LED 522 of the LED module 502, as shown in FIG.
- This predetermined height (H) is appropriately set according to the light distribution characteristics of the LED module 502 so that light is sufficiently irradiated from the lighting device 500 toward the direction intersecting the ceiling surface 110a (indoor living space). It is set.
- the light emission direction of the LED module 502 is changed from the center of the lighting device 500 to the outer edge, in other words, from the center of the chassis 501 to the outer edge, and the irradiation direction of the lighting device 500 is the LED module. Since the light intersects with the light emitting direction 502, the light emitted from the LED module 502 can be reduced in the light directly incident on the ring cover 508 and emitted to the outside of the illumination device 500. Direct light from 502 can be reduced from entering the user's eyes, and glare can be reduced.
- the daylight color LED 522 that is a light source having a high color temperature is arranged on the side farther from the reflective sheet 4 than the light bulb color LED 523 that is a light source having a low color temperature.
- the amount of light from the daylight color LED 522 that is easy to be reflected by the reflection sheet 504 in the vicinity of the LED module 502 and emitted to the outside of the lighting device 500 can be reduced. Since it is possible to reduce the emission of daylight-colored light with high light intensity, it is possible to further reduce glare and further reduce unevenness in illuminance to obtain substantially uniform illumination light.
- a space (gap) through which light passes is provided between the outer edge of the reflection sheet 504 and the ring cover 508, and further, the LED module 502. And an outer edge portion of the light diffusing ring cover 508 covering the reflection sheet 504, more specifically, between the annular portion 581 of the ring cover 508 and the peripheral wall portion 582 standing on the outer peripheral edge of the annular portion 581.
- the connecting portion is provided with an inclined portion 583 which is inclined toward the reflection sheet 504 so that the angle formed with the optical axis of the daylight color LED 522 becomes the predetermined angle ⁇ 1.
- the peripheral portion of the center cover 509 as a power supply cover that covers the power supply unit 506 provided at the center of the chassis 501 is an annular light transmitting portion 591.
- the translucent part 591 of the center cover 509 has an outer diameter larger than that of the top plate reflection sheet 505.
- a part of the light from the LED module 502 is incident on the translucent part 591 which is the peripheral part of the center cover 509 in a state where the incident angle is large. That is, it reflects in multiple directions.
- a part of the light irregularly reflected by the light transmitting portion 591 is further reflected by the ring cover 508 and emitted to the outside of the illumination device 500. In this way, part of the light from the LED module 502 is emitted in multiple directions at the peripheral edge of the center cover 509, so that the boundary portion between the center cover 509 and the ring cover 508 can be made inconspicuous.
- an LED is used as the light source. Even in a highly directional LED, the provision of the reflection sheet 504 described above allows light from the LED module 502 to be reflected in multiple directions, so that substantially uniform illumination light with little illuminance unevenness can be obtained.
- FIG. 29 is a schematic cross-sectional view of lighting apparatus 600 according to Embodiment 6.
- FIG. 30 is a schematic partial enlarged cross-sectional view of lighting apparatus 600 according to Embodiment 6, and is an explanatory diagram of light reflection from LED module 502 in lighting apparatus 600 according to Embodiment 6.
- FIG. In the present embodiment the shape of the reflection sheet 604 is different from that of the lighting apparatus 500 of the fifth embodiment, and the top plate reflection sheet 605, the chassis 601 and the ring cover 608 are changed according to the shape of the reflection sheet 604. The shape is different.
- light from the LED module 502 can be reflected in multiple directions by the reflection sheet 604, and The outer edge portion and the central portion can be brightened, and substantially uniform illumination light with little illuminance unevenness can be obtained.
- Specular reflection member 555 such as a mirror is attached to light source holding portion 503.
- the specular reflection member 555 is formed by forming a plate-like member having an octagonal hole in the center in the shape of a partial conical shell, with the one surface 555a facing outward so that the one surface 555a side that is the reflection surface is convex. It is tilted.
- the specular reflection member 555 is on the side where the light bulb color LED 523 of the LED module 502 is mounted (the side opposite to the long side on which the top plate reflection sheet 505 is provided) so that the one surface 555a side is the LED module 502 side. It is fixed to the holding plate portion 532 of the light source holding portion 503 along the long side.
- the specular reflection member 555 is not limited to a mirror, and may be a member capable of performing specular reflection. Since the other configuration is the same as that of the fifth embodiment shown in FIG. 25, the same reference numerals as those in FIG.
- a part of the light emitted from the LED module 502 is emitted toward the chassis 501 in the vicinity of the LED module 502, and as shown by an arrow in FIG.
- the light is reflected from one surface 555 a of the reflecting member 555 and emitted toward the outer edge of the lighting device 800.
- part of the light emitted from the LED module 502 toward the chassis 501 in the vicinity of the LED module 502 is reflected by the chassis 501 as indicated by a two-dot chain line in FIG. Then, the light enters the ring cover 508 in the vicinity of the LED module 502 and is emitted outside the illumination device 800 while diffusing inside the ring cover 508.
- the light intensity becomes low / high according to the length / shortness of the distance from the LED module 502, when the specular reflection member 555 is not provided, the light is emitted from the vicinity of the LED module 502 to the outside of the lighting device 800. Since the light having high light intensity is included in the light to be emitted, by providing the specular reflection member 555, the light having high light intensity can be reflected in the direction of the outer edge portion of the lighting device 800.
- the LED module 702 includes a rectangular plate-shaped LED board 721, a plurality of daylight color LEDs 522 that emit daylight light, and are mounted in a row along the long side of the LED board 721. It is mounted between the daylight color LEDs 522 and includes a plurality of light bulb color LEDs 523 that emit light of a light bulb color.
- the LED module 702 is different from the LED module 502 in that the daylight color LED 522 and the light bulb color LED 523 have a light emitting portion (a portion of the LED element and the sealing resin, which is indicated by a circle in the drawing) and the daylight color.
- the daylight color LEDs 522 and the light bulb color LEDs 523 are arranged substantially alternately so that the light emitting portions of the LEDs 522 and the light bulb color LEDs 523 are positioned on a substantially straight line.
- the daylight color LED 522 and the light bulb color LED 523 are mounted on the LED substrate 721 so that the light emitting part side is on the inside, as shown in FIG. 33, other LEDs are bypassed without making the wiring length so long. Thus, a circuit pattern can be formed and wiring becomes easy.
- the chassis 701 that holds the light source and the reflecting portion is a disc having a circular hole in the center.
- the chassis 701 is made of a metal such as iron or aluminum, and also has a function as a heat sink that dissipates heat from a heating element such as a light source.
- the LED module 702 is attached to one surface 701a of the chassis 701 so as to surround the periphery of the adapter 516 in the radial direction via the light source holding portion 503.
- the LED module 702 is the same as the LED module 702 described with reference to FIG. 33 in the eighth embodiment, and thus detailed description thereof is omitted.
- the chassis 701 is provided with a reflection sheet 704 as a reflection part that reflects light from the LED module 702.
- the reflection sheet 704 is made of a resin having a disk shape having an octagonal hole matched with the arrangement shape of the LED module 502 in the center, and the surface 704a is subjected to surface processing so that it is easily diffusely reflected.
- the reflection sheet 704 is attached to one surface 701a of the chassis 701 so that the surface opposite to the one surface 704a is on the chassis 701 side.
- the lens 556 has a curved surface portion symmetrical with respect to a plane perpendicular to the LED substrate 721 formed by connecting a line (optical axis) passing through the optical center of the daylight white LED 522 and the light bulb color LED 523 of the LED module 702.
- a light reflection surface that has a light incident surface 556a on which light emitted from the white LED 522 and the light bulb color LED 523 is incident and a curved surface portion that is symmetrical with respect to a surface perpendicular to the LED substrate 721, and reflects light incident on the light incident surface 556a.
- the lens 556 is attached to the LED substrate 721 of the LED module 702 on the bottom surface 556b side so as to cover the light emitting direction of the daylight white LED 522 and the light bulb color LED 523 mounted on the LED substrate 721 of the LED module 702.
- the daylight white LED 522 and the light bulb color LED 523 are arranged such that the light emitting surfaces of the day white LED 522 and the light bulb color LED 523 are positioned on the plane including the edge of the light incident surface 556a or on the lens 556 side from the plane. .
- the chassis 701 is provided with a light diffusing ring cover 708 that covers the LED module 702 and the reflection sheet 704.
- the ring cover 708 has a circular hole in the center and is curved so that the one surface 708a side is concave from the center to the outer edge, and the angle formed between the one surface 708a and the direction of the optical axis of the LED is It is formed so as to continuously increase from the central portion toward the outer edge portion. Since other configurations are the same as those of the fifth embodiment shown in FIGS. 21 and 26, the same reference numerals as those in FIGS. 21 and 26 are given to corresponding components, and detailed description of the configurations is omitted. To do.
- the power supply unit 506 is arranged in the central portion of the chassis 701, the electric wires connecting the power supply unit 506, the power supply unit 506, and the LED module 702 can be concentrated on the central portion side of the chassis 701. The acting moment can be further reduced, the deformation of the chassis 701 can be suppressed, and the reliability of the lighting device 900 can be improved.
- the light emitted from the LED module 702 is incident on the light incident surface 556a of the lens 556, as indicated by an arrow in FIG.
- a part of the light exits as it is from the light exit surface 556d in a direction perpendicular to the light exit surface 556d (a direction parallel to the optical axis of the daylight white LED 522 and the light bulb color LED 523), and the other part is reflected by the light reflection surface 556c.
- the light emitted from the lens 556 is incident on the ring cover 708, a part of the incident light is reflected to the chassis 701 side on one surface 708 a of the ring cover 708, and the other part is inside the ring cover 708.
- the light is emitted from the ring cover 708 to the outside of the lighting device 900 while diffusing. Since the ring cover 708 is formed so that the angle between the one surface 708a and the direction of the optical axis of the LED increases continuously from the center toward the outer edge, the light incident on the ring cover 708 On the central portion side of the cover 708, since the incident angle is small, total reflection is likely to occur, and as the incident angle increases toward the outer edge of the ring cover 708, irregular reflection is likely to occur.
- the direction of light emitted from the lens 556 is from the center of the lighting device 900 to the outer edge, in other words, from the center of the chassis 701 to the outer edge, and on the side of the center of the ring cover 708.
- almost no direct light is transmitted through the ring cover 708 on the central portion side of the ring cover 708, in other words, in the vicinity of the LED module 702.
- light that directly enters the ring cover 708 and exits the illumination device 900 in the vicinity of the LED module 702 can be reduced, and direct light from the LED module 702 is reduced from entering the user's eyes. And the glare can be reduced.
- the shape of the lens 556 is a shape that can collect light by bending the light from the daylight white LED 522 and the light bulb color LED 523 in a direction nearly parallel to the optical axis of the daylight white LED 522 and the light bulb color LED 523. That's fine.
- one lens 556 in this embodiment is formed so as to be provided for one LED module 702.
- the present invention is not limited to this, and one lens is provided for each LED. Also good.
- lenses having a truncated cone shape are arranged in parallel by the number of LEDs.
- a lens may be formed by connecting a part of the plurality of truncated cone lenses.
- FIG. 37 is a schematic cross-sectional view showing an example of another lens applicable in the ninth embodiment, which is an example of a lens formed by connecting a part of a plurality of truncated cone-shaped lenses.
- FIG. 37 is a schematic cross-sectional view of the lens 557 cut along a plane perpendicular to the LED substrate 721 formed by connecting the optical axes of the daylight white LED 522 and the light bulb color LED 523 of the LED module 702.
- the lens 557 is disposed on the LED substrate 721 of the LED module 702 on the bottom surface 557b side so as to cover the light emission direction of the daylight white LED 522 and the light bulb color LED 523 mounted on the LED substrate 721 of the LED module 702. To be used. Even when the lens 557 is used, the same effect as the lens 556 can be obtained.
- FIG. 38 is an explanatory diagram of protrusions provided on the reflection sheet 804. According to the direction from the center to the outer edge of the illuminating device, in other words, according to the direction from the center to the outer edge of the chassis, the protrusion height of the protrusion is increased and the interval between adjacent protrusions is decreased. More specifically, one surface of the reflection sheet 804 on the center side of the chassis is formed with a projection having a gently inclined surface and a large interval between the projections (see FIG. 38A).
- a protrusion having an inclined surface with a larger inclination than the central portion side and having a smaller interval between the protrusions is formed (see FIG. 38B).
- Protrusions having an inclined surface with a large inclination and a further reduced interval between the protrusions are formed (see FIG. 38C).
- the LED substrate is arranged in the chassis so as to have an octagonal shape, but is not limited to this, and may be a polygonal shape other than an octagonal shape or a circular shape.
- the annular shape is not limited to a circular shape, and naturally includes an octagonal shape as in the present embodiment, and further includes a triangular shape and a polygonal shape.
- the respective light sources forming the annular shape may not be provided at equal intervals.
- both the reflection sheet and the top plate reflection sheet are used as the reflection member, but only the reflection sheet may be used.
- the configurations described in the above fifth to ninth embodiments and the configuration in which the protrusions are provided on one surface of the reflection sheet can be used in combination. A small amount of substantially uniform illumination light can be obtained.
- the light source holding part is provided separately from the chassis, but may be provided integrally with the chassis.
- the LED module is provided at the center of the chassis.
- the LED module is not limited to a strict center.
- the adapter is arranged so as to surround the periphery of the adapter in the radial direction. If it is provided so as to emit light toward the part, it is possible to suppress deformation such as bending of the chassis.
- the present invention is not limited thereto, and can be applied to other types of lighting devices such as a light bulb type.
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- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- Non-Portable Lighting Devices Or Systems Thereof (AREA)
- Planar Illumination Modules (AREA)
- Fastening Of Light Sources Or Lamp Holders (AREA)
- Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)
Abstract
Description
(実施の形態1)
図1は、本発明の実施の形態1に係る照明装置100の模式的外観斜視図である。図2は、実施の形態1に係る照明装置100の模式的分解斜視図である。図3は、実施の形態1に係る照明装置100の模式的背面図である。図4は、図3のIV-IV線による模式的断面図である。
図9は、実施の形態2に係る照明装置200の模式的外観図である。図10は、実施の形態2に係る照明装置200における要部の部分拡大断面図である。本実施の形態に係る照明装置200においては、実施の形態1の照明装置100よりも、照明装置200の上方への光の出射を増加させるように構成してある。
図11は、実施の形態3に係る照明装置300における要部の部分拡大断面図である。本実施の形態においては、実施の形態1のシャーシ1と導光板4との間に介挿された反射シート5に代えて、導光板4の一面4cの略全域に亘って反射ドット41とは異なる材料製の塗料を印刷等により塗布してなる反射層105が導光板4の一面4cに形成してある。なお、反射層105は、実施の形態1の反射シート5と同じ機能を有するように適切に設けてある。
また、以上の実施の形態においては、天井等の被取付部材から吊具により吊下げられるタイプの照明装置、所謂ペンダントライトを例に説明したが、天井等の被取付部材に取付けられるタイプの照明装置、所謂シーリングライトにおいても同様に構成することができる。図12は、実施の形態4に係る照明装置400の模式的断面図であり、天井等の被取付部材に取付けられるタイプの照明装置、所謂シーリングライトへの適用例である。実施の形態4に係る照明装置400は、実施の形態1に係る照明装置100のシャーシ、光源保持部及びセンタカバーにより囲まれる空洞内に、電源部及びアダプタを収容した構成となっている。
(実施の形態5)
図19は、実施の形態5に係る照明装置500の模式的外観斜視図である。図20は、実施の形態5に係る照明装置500の模式的分解斜視図である。図21は、実施の形態5に係る照明装置500の模式的断面図である。図22は、実施の形態5に係る照明装置500の中央部の模式的断面図であり、図21の部分拡大図である。
図29は、実施の形態6に係る照明装置600の模式的断面図である。図30は、実施の形態6に係る照明装置600の模式的部分拡大断面図であり、実施の形態6に係る照明装置600におけるLEDモジュール502からの光の反射の説明図である。本実施の形態においては、実施の形態5の照明装置500とは、反射シート604の形状を異ならせており、反射シート604の形状に応じて、天板反射シート605、シャーシ601及びリングカバー608の形状が異なっている。
図31は、実施の形態7に係る照明装置700の模式的部分拡大断面図である。本実施の形態においては、昼光色LED522と電球色LED523に対して各別にLED基板621を設け、これらのLED基板621を光源保持部703の保持板部732に対して傾斜させて取付けている。昼光色LED522の方が電球色LED523よりも反射シート504に向けてより傾斜させてある例である。その他の構成は、図21に示す実施の形態1と同様であるため、対応する構成部材に図21と同一の参照符号を付して、その構成の詳細な説明を省略する。
図32は、実施の形態8に係る照明装置800の模式的部分拡大断面図である。本実施の形態に係る照明装置800は、実施の形態5の照明装置500にLEDモジュール502からの光を鏡面反射する鏡面反射部材555を追加した構成となっている。
図34は、実施の形態9に係る照明装置900の模式的断面図である。図35は、実施の形態9に係る照明装置900の模式的部分拡大断面図である。本実施の形態においては、以上の実施の形態とは異なり、反射シート等の反射部材に加えてレンズを用いている。
2,102 LEDモジュール(光源)
4,104,204 導光板(光制御部材)
41 反射ドット(反射部)
Claims (5)
- 装置本体に保持され、該装置本体の外縁部に向けて光を照射する複数の光源と、
前記複数の光源からの光の向きを制御して照明する光制御部材と
を備えたことを特徴とする照明装置。 - 前記光制御部材は穴を有する導光部材であり、
前記光源は、前記穴の周面から前記光制御部材に光が入射するように設けてあることを特徴とする請求項1に記載の照明装置。 - 前記光制御部材の外縁部には、前記光源の光出射方向と交差する方向に傾斜する傾斜面が設けてあることを特徴とする請求項2に記載の照明装置。
- 前記光制御部材は、板状をなし、一面に前記光源からの光を乱反射する複数の反射部が設けてあり、
該複数の反射部は、前記光源からの遠近に応じて、該光源からの光を乱反射する面積が大小となるように設けてあることを特徴とする請求項2又は3に記載の照明装置。 - 前記光制御部材は、前記光源からの遠近に応じて、肉厚が減増となるように形成してあることを特徴とする請求項2から4の何れか一つに記載の照明装置。
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
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CN2011800184014A CN102844614A (zh) | 2010-04-13 | 2011-03-15 | 照明装置 |
EP11768691.5A EP2559932A4 (en) | 2010-04-13 | 2011-03-15 | Illumination apparatus |
US13/639,413 US8931945B2 (en) | 2010-04-13 | 2011-03-15 | Lighting apparatus |
BR112012026014A BR112012026014A2 (pt) | 2010-04-13 | 2011-03-15 | aparelho de iluminação |
KR1020127028715A KR101417562B1 (ko) | 2010-04-13 | 2011-03-15 | 조명 장치 |
Applications Claiming Priority (2)
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JP2010092538A JP4975136B2 (ja) | 2010-04-13 | 2010-04-13 | 照明装置 |
JP2010-092538 | 2010-04-13 |
Publications (1)
Publication Number | Publication Date |
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WO2011129170A1 true WO2011129170A1 (ja) | 2011-10-20 |
Family
ID=44798549
Family Applications (1)
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PCT/JP2011/056054 WO2011129170A1 (ja) | 2010-04-13 | 2011-03-15 | 照明装置 |
Country Status (7)
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US (1) | US8931945B2 (ja) |
EP (1) | EP2559932A4 (ja) |
JP (1) | JP4975136B2 (ja) |
KR (1) | KR101417562B1 (ja) |
CN (1) | CN102844614A (ja) |
BR (1) | BR112012026014A2 (ja) |
WO (1) | WO2011129170A1 (ja) |
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Also Published As
Publication number | Publication date |
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US8931945B2 (en) | 2015-01-13 |
JP2011222420A (ja) | 2011-11-04 |
EP2559932A1 (en) | 2013-02-20 |
JP4975136B2 (ja) | 2012-07-11 |
CN102844614A (zh) | 2012-12-26 |
BR112012026014A2 (pt) | 2016-06-28 |
EP2559932A4 (en) | 2017-10-11 |
US20130021823A1 (en) | 2013-01-24 |
KR101417562B1 (ko) | 2014-07-09 |
KR20130006497A (ko) | 2013-01-16 |
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