WO2011001718A1 - 表示装置 - Google Patents
表示装置 Download PDFInfo
- Publication number
- WO2011001718A1 WO2011001718A1 PCT/JP2010/054390 JP2010054390W WO2011001718A1 WO 2011001718 A1 WO2011001718 A1 WO 2011001718A1 JP 2010054390 W JP2010054390 W JP 2010054390W WO 2011001718 A1 WO2011001718 A1 WO 2011001718A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- case member
- guide plate
- side portion
- light guide
- display device
- Prior art date
Links
- 229910052751 metal Inorganic materials 0.000 claims description 6
- 239000002184 metal Substances 0.000 claims description 6
- 239000004973 liquid crystal related substance Substances 0.000 description 40
- 230000003287 optical effect Effects 0.000 description 11
- 230000004048 modification Effects 0.000 description 6
- 238000012986 modification Methods 0.000 description 6
- 230000020169 heat generation Effects 0.000 description 5
- XEEYBQQBJWHFJM-UHFFFAOYSA-N Iron Chemical compound [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 description 4
- 239000000463 material Substances 0.000 description 4
- 238000000034 method Methods 0.000 description 4
- 206010037660 Pyrexia Diseases 0.000 description 3
- 230000000694 effects Effects 0.000 description 3
- 239000011521 glass Substances 0.000 description 3
- 239000000758 substrate Substances 0.000 description 3
- 239000000470 constituent Substances 0.000 description 2
- 229910052742 iron Inorganic materials 0.000 description 2
- 238000012545 processing Methods 0.000 description 2
- 230000009467 reduction Effects 0.000 description 2
- 238000003892 spreading Methods 0.000 description 2
- 230000007480 spreading Effects 0.000 description 2
- 229910052782 aluminium Inorganic materials 0.000 description 1
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 1
- 238000013459 approach Methods 0.000 description 1
- 238000013461 design Methods 0.000 description 1
- 238000009792 diffusion process Methods 0.000 description 1
- 230000017525 heat dissipation Effects 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000003825 pressing Methods 0.000 description 1
- 230000008569 process Effects 0.000 description 1
- 239000011347 resin Substances 0.000 description 1
- 229920005989 resin Polymers 0.000 description 1
- 229920002379 silicone rubber Polymers 0.000 description 1
- 229910001220 stainless steel Inorganic materials 0.000 description 1
- 239000010935 stainless steel Substances 0.000 description 1
- 238000003860 storage Methods 0.000 description 1
- 239000010409 thin film Substances 0.000 description 1
Images
Classifications
-
- 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
- G02B6/0081—Mechanical or electrical aspects of the light guide and light source in the lighting device peculiar to the adaptation to planar light guides, e.g. concerning packaging
- G02B6/0085—Means for removing heat created by the light source from the package
-
- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
- G02F1/1335—Structural association of cells with optical devices, e.g. polarisers or reflectors
- G02F1/1336—Illuminating devices
- G02F1/133615—Edge-illuminating devices, i.e. illuminating from the side
Definitions
- the present invention relates to a display device that performs a display operation using light generated by a light emitting element.
- a light source unit using an LED (light emitting diode) as a light source as a light source is known.
- Such a conventional light source unit functions as a backlight unit that illuminates the liquid crystal display panel by being mounted on, for example, a liquid crystal display device that is one of the display devices. That is, the display operation of the liquid crystal display device as the conventional display device is performed using the light generated by the LED.
- the backlight unit includes a direct type and an edge light type, and the conventional backlight unit described below is an edge light type.
- the conventional backlight unit generates a light guide plate 101 that emits planar light toward a liquid crystal display panel (not shown), and light emitted from the light guide plate 101.
- a plurality of LEDs 102 are provided.
- the light guide plate 101 has a substantially rectangular shape when viewed from the thickness direction, and includes a light introduction surface (a surface for introducing light into the inside) 101a formed from predetermined side surfaces and a light emission surface formed from the top surface. (Surface for emitting light introduced into the liquid crystal display panel to the surface) 101b.
- the plurality of LEDs 102 are linearly arranged along the light introduction surface 101 a of the light guide plate 101 so that each light emitting surface faces the light introduction surface 101 a of the light guide plate 101.
- the light generated by the plurality of LEDs 102 is introduced into the light guide plate 101 from the light introduction surface 101 a of the light guide plate 101. Thereafter, the light introduced into the light guide plate 101 becomes planar light and is emitted from the light exit surface 101 b of the light guide plate 101.
- a reflective sheet is disposed on the back surface (surface opposite to the light exit surface 101b) of the light guide plate 101, and an optical sheet is disposed on the light exit surface 101b side of the light guide plate 101.
- a backlight unit has been proposed that can eliminate the various inconveniences described above (for example, see Patent Document 1).
- one side of the plurality of corners of the light guide plate 101 is inclined with respect to the other side.
- the inclined side surface of the light guide plate 101 is a light introduction surface 101a.
- LED102 is arrange
- the conventionally proposed backlight unit a desired effect is obtained by forming the light introduction surface 101a on one corner side of the plurality of corner portions of the light guide plate 101 and disposing the LED 102 there.
- no measures are taken to dissipate heat concentrated on one corner of the light guide plate 101 where the LEDs 102 are arranged. Therefore, in the conventionally proposed backlight unit, there is a problem that the LED 102 is easily deteriorated by its own heat generation, and as a result, the life of the LED 102 is shortened.
- the present invention has been made to solve the above-described problems, and can extend the life of a light-emitting element while suppressing the occurrence of uneven brightness without incurring an increase in cost or an increase in size.
- An object is to provide a display device.
- a display device includes a light guide plate having a plurality of corner portions and light emission disposed on at least one corner portion of the plurality of corner portions of the light guide plate.
- a first case member having an element, a display panel disposed on the light guide plate, a bottom portion on which the light guide plate is placed, and a first side portion surrounding at least a part of the periphery of the light guide plate;
- a second case member having a second side portion surrounding at least a part of the periphery of the light guide plate.
- a light emitting element is attached to the 1st part of the 1st side parts of the 1st case member, and the 1st side of the 1st case member to the 2nd part of the 2nd side parts of the 2nd case member
- the first part of the part is thermally connected.
- the LED in which the generated light travels while spreading radially is provided.
- the LED when used as a light emitting element, light can be spread over substantially the entire area of the light guide plate without increasing the number of light emitting elements used or separating the light emitting elements from the light guide plate. Therefore, the occurrence of uneven brightness can be suppressed without increasing the cost or increasing the size.
- the light emitting element is attached to the first portion of the first side portion of the first case member, and the second side portion of the second case member is provided.
- the second part of the second case member is changed from the first part of the first side part of the first case member. Since heat conduction to the second portion of the two side portions is improved, heat generation of the light emitting element is transmitted from the first portion of the first side portion of the first case member to the second portion of the second side portion of the second case member. Can be made easier. Thereby, the heat generation of the light emitting element can be radiated well, and the light emitting element can be prevented from being deteriorated by its own heat.
- the display device it is possible to extend the life of the light emitting element while suppressing the occurrence of uneven brightness without causing an increase in cost or an increase in size.
- the region surrounded by the first side portion of the first case member has a plurality of first corner portions, and the first side portion first of the first case member is first.
- the portion forms at least one of the plurality of first corners of the first case member.
- the region surrounded by the second side portion of the second case member has a plurality of second corner portions, and the second side portion of the second case member has a second side portion. It is preferable that the second portion forms at least one of a plurality of second corners of the second case member.
- both of the 1st case member By installing the first case member and the second case member so that the position of the first corner and the position of the second corner of the second case member substantially coincide, The first portion of the side portion and the second portion of the second side portion of the second case member can be thermally connected.
- the light guide plate includes a top surface and a back surface, and a side surface connected to the top surface and the back surface, and a corner portion side on which light emitting elements among the plurality of corner portions are disposed.
- the side surface of the first case member is inclined with respect to the other side surface, and the light emitting element is disposed on the first portion of the first side portion of the first case member so as to face the inclined side surface of the light guide plate. It is preferable that it is attached. If comprised in this way, light can be easily spread over the substantially whole area inside a light-guide plate.
- the first portion of the first side portion of the first case member is on the inclined side surface of the light guide plate. It is preferable that it becomes the taper shape along. If comprised in this way, a light emitting element can be easily opposingly arranged with respect to the inclined side surface of a light-guide plate by attaching a light emitting element to the 1st part of the 1st side part of a 1st case member.
- the taper shape is an obliquely inclined shape.
- the first portion of the first side portion of the first case member is tapered along the inclined side surface of the light guide plate, the first portion of the first side portion of the first case member and the second portion of the second case member.
- a heat conduction member is inserted between the second portion of the two side portions, and the first portion of the first side portion of the first case member and the second side portion of the second case member are interposed via the heat conduction member.
- the second portion may be thermally connected. If comprised in this way, the 1st side of the 1st case member will not contact directly the 1st part of the 1st side part of the 1st case member, and the 2nd part of the 2nd side part of the 2nd case member.
- the first portion of the portion and the second portion of the second side portion of the second case member can be thermally connected.
- the 2nd part of the 2nd side part of a 2nd case member is a 1st case member.
- the taper shape may reflect the shape of the first portion of the first side portion. If comprised in this way, since the 1st part of the 1st side part of the 1st case member and the 2nd part of the 2nd side part of the 2nd case member can be faced in parallel, the 1st case member's It becomes suitable when connecting them thermally by making the 1st part of the 1st side part and the 2nd part of the 2nd side part of the 2nd case member contact directly.
- the taper shape is an obliquely inclined shape.
- the second side portion of the second case member has a second shape.
- a protruding portion that protrudes toward the first portion side of the first side portion of the first case member is formed in the two portions, and the first portion of the first side portion of the first case member and the second portion of the second case member.
- the protrusion part formed in the 2nd part of a side part may be thermally connected.
- the second side portion of the second case member has a tapered shape reflecting the shape of the first portion of the first side portion of the first case member
- the second side portion of the second case member is held in a state in which the second portion of the second side portion of the second case member biases the first portion of the first side portion of the first case member. Also good.
- the 1st side part of the 1st case member can be more reliably performed.
- the second portion of the second side portion of the second case member is connected to the upper surface portion, but is separated from other portions of the second side portion. If comprised in this way, it will become possible to displace the 2nd part of the 2nd side part of a 2nd case member by making a boundary with an upper surface part into a fulcrum. Accordingly, the second portion of the second side portion of the second case member can be easily provided with a spring property (a biasing force that biases the first portion of the first side portion of the first case member). it can.
- the second side portion of the second case member has a tapered shape reflecting the shape of the first portion of the first side portion of the first case member
- the second side portion of the second case member may be screwed to the first portion of the first side portion of the first case member. If comprised in this way, the 1st part of the 1st side part of a 1st case member and the 2nd side part of a 2nd case member can be thermally connected easily and reliably.
- the first case member and the second case member are preferably made of metal. If comprised in this way, the heat_generation
- the present invention it is possible to easily obtain a display device capable of extending the life of a light-emitting element while suppressing the occurrence of luminance unevenness without causing an increase in cost or an increase in size. be able to.
- FIG. 1 is an exploded perspective view of a liquid crystal display device according to a first embodiment. It is a top view (figure which omitted a reflective sheet and an optical sheet) of a back light unit with which a liquid crystal display by a 1st embodiment is equipped. It is sectional drawing of the backlight unit with which the liquid crystal display device by 1st embodiment is mounted
- the display device is a liquid crystal display device, and as shown in FIG. 1, a liquid crystal display panel 1 having a display surface 1a, or a back surface of the liquid crystal display panel 1 (a surface opposite to the display surface 1a). ) Side light type backlight unit 2 installed on the side.
- the liquid crystal display panel 1 is an example of the “display panel” in the present invention.
- the liquid crystal display panel 1 of the first embodiment includes a liquid crystal layer (not shown), a pair of glass substrates 11 sandwiching the liquid crystal layer, and a surface of the pair of glass substrates 11 opposite to the liquid crystal layer side. It includes at least two polarizing plates 12 arranged respectively.
- FIG. 1 shows only the polarizing plate 12 on the display surface 1 a side of the liquid crystal display panel 1 out of the two polarizing plates 12.
- a driving circuit 13 for driving a thin film transistor (not shown) formed there is connected to one of the pair of glass substrates 11.
- the backlight unit 2 of the first embodiment includes at least a light guide plate 21, an LED module 22, a reflection sheet 23, and an optical sheet 24, as shown in FIGS.
- the reflection sheet 23 and the optical sheet 24 are not shown in order to make the drawing easy to see.
- the light guide plate 21 is made of a translucent plate-like member, and has a function of converting light introduced into the light into a planar light and emitting it toward the liquid crystal display panel 1 side.
- the light guide plate 21 has a top surface 21a, a back surface 21b which is a surface opposite to the top surface 21a, and a side surface 21c connected to the top surface 21a and the back surface 21b.
- the top surface 21 a of the light guide plate 21 faces the liquid crystal display panel 1 side. That is, the top surface 21a of the light guide plate 21 is a light emitting surface (a surface for emitting light introduced into the surface toward the liquid crystal display panel 1).
- the light guide plate 21 when the light guide plate 21 is viewed from the thickness direction, the light guide plate 21 has a shape (substantially rectangular shape) having four corner portions 21d, and one long side of the four corner portions 21d.
- the side surfaces 21c on the two corners 21d side located at both ends (one end of each of the pair of short sides) are inclined obliquely with respect to the other side surface 21c.
- two inclined side surfaces 21c hereinafter referred to as inclined surfaces 21e
- Each of the two inclined surfaces 21e of the light guide plate 21 has an inclination angle of about 45 ° and is finished to a mirror surface.
- the LED module 22 is obtained by mounting an LED 25 as a light emitting element on an FPC (flexible printed wiring board) 26, and functions as a light source that generates light introduced into the light guide plate 21. That is, the LED module 22 is provided on one long side of the light guide plate 21 so that the light emitting surface of the LED 25 faces the inclined surface 21 e of the light guide plate 21.
- FPC flexible printed wiring board
- two LEDs 25 are used, and are arranged one by one in two regions facing the inclined surface 21e of the light guide plate 21.
- the two LEDs 25 are mounted on the same FPC 26, and the FPC 26 is bent along the side surface 21 c (including two inclined surfaces 21 e) on one long side of the light guide plate 21.
- both end portions of the FPC 26 face each of the two inclined surfaces 21e of the light guide plate 21, and a portion between both end portions of the FPC 26 is a side surface (two inclined surfaces) of the light guide plate 21 that is not inclined. It faces the side surface 21c between the surfaces 21e.
- One LED 25 is mounted on each end of the FPC 26.
- the reflection sheet 23 is disposed on the back surface 21 b of the light guide plate 21 and covers the entire surface of the back surface 21 b of the light guide plate 21.
- the back surface 21 b of the light guide plate 21 becomes a reflection surface, so that light leakage from the back surface 21 b of the light guide plate 21 is suppressed, and light utilization efficiency is improved.
- the optical sheet 24 is disposed on the top surface 21 a of the light guide plate 21 and covers the entire top surface 21 b of the light guide plate 21.
- the optical sheet 24 is formed by superposing a plurality of sheets (such as a diffusion sheet and a prism sheet), and diffuses and collects light emitted from the top surface 21 a of the light guide plate 21.
- the liquid crystal display panel 1 is illuminated by the light diffused and condensed by the optical sheet 24. 1 and 3 show the optical sheet 24 in which three sheets are superimposed, the number of sheets is not particularly limited.
- a frame-shaped plastic frame 3 is installed between the liquid crystal display panel 1 and the backlight unit 2. And the laminated body laminated
- liquid crystal display panel 1 and the backlight unit 2 are sandwiched between the frame 4 on the back surface side and the bezel 5 on the top surface side.
- the frame 4 is an example of the “first case member” in the present invention
- the bezel 5 is an example of the “second case member” in the present invention.
- the frame 4 is made of metal and is obtained by processing a plate material made of aluminum or iron.
- the frame 4 has a bottom portion 4a and side portions 4b erected on the outer periphery of the bottom portion 4a, and a region surrounded by the side portions 4b has a substantially rectangular shape having four corner portions 4c. It is formed as follows. And the area
- the side 4b of the frame 4 is an example of the “first side” of the present invention, and the corner 4c is an example of the “first corner” of the present invention.
- Constituent members (21 to 24) of the backlight unit 2 are accommodated in the accommodating area.
- the reflective sheet 23, the light guide plate 21 and the optical sheet 24 are laminated on the bottom 4a of the frame 4 in this order.
- the rear surface 21b (see FIG. 3) of the light guide plate 21 faces the bottom 4a side of the frame 4, and the side surface 21c (see FIG. 2) including the two inclined surfaces 21e of the light guide plate 21 is on the frame 4 side. It faces the part 4b side.
- the long sides (short sides) of the light guide plate 21 and the frame 4 are parallel to each other, and the positions of the four corner portions 21d of the light guide plate 21 and the positions of the four corner portions 4c of the frame 4 are substantially the same. Match.
- the inclined surfaces 21 e of the light guide plate 21 are arranged one by one on the two corners 4 c side of the four corners 4 c of the frame 4.
- the two portions (first portions) 4d of the side portion 4b of the frame 4 forming the two corners 4c are formed in a tapered shape having an inner surface along the corresponding inclined surface 21e of the light guide plate 21. ing.
- the side 4a (including two portions 4d) on one long side of the frame 4 extends along the side surface 21c (including two inclined surfaces 21e) on one long side of the light guide plate 21. It is bent.
- the LED module 22 is attached to the inner side surface of the side 4b on one long side of the frame 4, whereby one LED 25 is arranged on each of the two portions 4d of the side 4b of the frame 4. And each light emitting surface of the two LEDs 25 is in a state of facing the corresponding inclined surface 21e of the light guide plate 21.
- Each of the other two corners 4c of the frame 4 is formed in a substantially right angle shape.
- the bezel 5 that holds the liquid crystal display panel 1 and the backlight unit 2 together with the frame 4 is obtained by processing a plate material made of stainless steel, iron, or the like.
- the frame-shaped upper surface portion 5a and the upper surface portion 5a And a side portion 5b erected on the outer periphery.
- the region surrounded by the side 5b of the bezel 5 has a substantially rectangular shape having four corners 5c, and each of the four corners 5c of the bezel 5 is formed in a right-angle shape.
- the side 5b of the bezel 5 is an example of the “second side” in the present invention
- the corner 5c is an example of the “second corner” in the present invention.
- the upper surface portion 5 a of the bezel 5 covers the outer edge of the display surface 1 a of the liquid crystal display panel 1.
- the side portion 5 b of the bezel 5 is disposed on the outer surface side of the side portion 4 b of the frame 4, thereby overlapping the side portion 4 b of the frame 4.
- the long sides (short sides) of the bezel 5 and the frame 4 are parallel to each other, and the positions of the four corners 5c of the bezel 5 and the positions of the four corners 4c of the frame 4 substantially coincide with each other. ing.
- the corners 5c of the side portions 5b of the bezel 5 are determined.
- a portion (a portion to which the LED 25 is attached) 4d of the side portion 4b of the frame 4 is thermally connected to a portion (second portion) 5d.
- the heat conduction member 6 is embedded in the triangular gap between the portion 4d of the side portion 4b of the frame 4 and the portion 5d of the side portion 5b of the bezel 5, and the side portion 4b of the frame 4 is
- the heat conducting member 6 is in contact with each of the portion 4d and the portion 5d of the side portion 5b of the bezel 5. That is, the outer surface of the portion 4 d of the side portion 4 b of the frame 4 and the inner side surface of the side portion 5 b of the bezel 5 are thermally connected via the heat conducting member 6.
- a resin-based heat dissipation sheet made of silicon rubber or the like can be considered. Further, as a fixing method of the heat conducting member 6, it may be simply inserted into a triangular gap between the portion 4d of the side portion 4b of the frame 4 and the portion 5d of the side portion 5b of the bezel 5, but the bezel 5 It is more preferable to adhere to the inner surface of the part 5d of the side part 5b with double-sided tape or the like.
- the LED 25 is disposed on the inner surface side of the portion 4d that forms a predetermined corner (the corner where the inclined surface 21e of the light guide plate 21 is disposed) of the side 4b of the frame 4.
- the portion 4d of the side portion 4b of the frame 4 is connected to the bezel 5 Since heat conduction to the side portion 5d is improved, heat generated by the LED 25 can be easily transmitted from the portion 4d of the side portion 4b of the frame 4 to the side portion 5b of the bezel 5.
- fever of LED25 is thermally radiated favorably and it can suppress that LED25 deteriorates with an own heat
- the side surface 21c on the two corners 21d side is inclined, and one LED 25 is provided for each of the two inclined surfaces 21e of the light guide plate 21.
- the light from one LED 25 spreads inside the light guide plate 21 as shown in FIG. 6 and the light from the other LED 25 spreads inside the light guide plate 21 as shown in FIG.
- FIG. 8 light spreads over substantially the entire interior of the light guide plate 21, and the dark region, which is a region where it is difficult for light to reach, is further reduced than in the prior art.
- planar light with reduced luminance unevenness can be emitted from the backlight unit 2.
- the hatched area is a dark area, and the other areas are areas where light spreads.
- the first embodiment it is possible to extend the life of the LED 25 while suppressing the occurrence of luminance unevenness without causing an increase in cost or an increase in size.
- the light guide plate 121 having a shape as shown in FIG. 9 is produced.
- the light from the LED 125 spreads only within about ⁇ 42 ° inside the light guide plate 121, in order to spread the light from the LED 125 over substantially the entire effective light emitting area (the area surrounded by the broken line), the light is guided.
- the light introduction surface 121e of the light plate 121 needs to be greatly separated from the effective light emitting area. For this reason, even if the luminance unevenness can be further reduced, the size is increased.
- the four corners of the frame 4 are formed by using the portion 4d of the side portion 4b of the frame 4 as the attachment portion to which the LED 25 is attached.
- the inclined surface 21e of the light guide plate 21 can be easily LED25 can be arrange
- the portion 5d forming the predetermined corner portion (corner portion where the LED 25 is located) 5c of the side portion 5b of the bezel 5 is replaced with the portion of the side portion 4b of the frame 4 ( Since the portion 4d of the side 4b of the frame 4 and the portion 5d of the side 5b of the bezel 5 are both corners by setting the thermal connection portion to the portion 4d) to which the LED 25 is attached, the frame 4
- the frame 4 By installing the frame 4 and the bezel 5 so that the position of the corner 4c of the frame 4 and the position of the corner 5c of the bezel 5 substantially coincide with each other, the side 4b of the frame 4 and the side of the bezel 5 can be easily arranged.
- the part 5d of the part 5b can be thermally connected.
- the side portion 4b of the frame 4 is formed into a tapered shape having an inner surface along the inclined surface 21e of the light guide plate 21 in the portion 4d of the side portion 4b of the frame 4.
- the heat conducting member 6 is inserted between the portion 4d of the side portion 4b of the frame 4 and the portion 5d of the side portion 5b of the bezel 5, thereby Even if the portion 4d of the portion 4b and the portion 5d of the side portion 5b of the bezel 5 are not in direct contact, the portion 4d of the side portion 4b of the frame 4 and the portion 5d of the side portion 5b of the bezel 5 are thermally connected. can do.
- a metal bezel (second case member) 35 as shown in FIGS. 10 to 12 is used, but such a bezel 35 is used. Except for this, the configuration is the same as in the first embodiment.
- the bezel 35 includes a frame-shaped upper surface portion 35a and a side portion (second side portion) 35b provided upright on the outer periphery of the upper surface portion 35a.
- the region surrounded by the side portion 35b is formed to have a substantially rectangular shape having four corner portions (second corner portions) 35c.
- the long sides (short sides) of the bezel 35 and the frame 4 are parallel to each other, and the four corners 35 c of the bezel 35 are arranged. And the positions of the four corners 4c of the frame 4 substantially coincide with each other.
- the side portion 35 b of the bezel 35 is located on the outer surface side of the side portion 4 b of the frame 4.
- the inclined surfaces 21e of the light guide plate 21 are positioned one by one on the two corners 35c side of the four corners 35c of the bezel 35.
- Two portions 35d of the side portion 35b of the bezel 35 forming each of the corner portions 35c are formed in a tapered shape (a shape along the inclined surface 21e of the light guide plate 21). That is, when the two corners 4c (two corners 35c of the bezel 35) side of the frame 4 where the LED 25 is located are respectively viewed, a portion 4d of the side portion 4b of the frame 4 and a portion 35d of the side portion 35b of the bezel 35 are obtained.
- Both are tapered, and the shape of the portion 35 d of the side portion 35 b of the bezel 35 reflects the shape of the portion 4 d of the side portion 4 b of the frame 4.
- Each of the other two corners 35c of the bezel 35 is formed in a substantially right angle shape.
- the circles protrude toward the part 4d side of the side part 4b of the frame 4.
- a protruding portion 35 e having a shape is formed on a portion 35 d of the side portion 35 b of the bezel 35.
- the protrusion part 35e formed in the part 35d of the side part 35b of the bezel 35 is obtained by, for example, performing a drawing process on a metal plate material constituting the bezel 35.
- 35e is in thermal direct contact with the outer surface of the portion 4d of the side portion 4b of the frame 4 so that the portion 4d of the side portion 4b of the frame 4 and the portion 35d (protrusion portion 35e) of the side portion 35b of the bezel 35 are formed. Thermally connected.
- the portion 35d of the side portion 35b of the bezel 35 is formed into a tapered shape reflecting the shape of the portion 4d of the side portion 4b of the frame 4, so that the side portion of the frame 4 Since the part 4d of 4b and the part 35d of the side part 35b of the bezel 35 face each other in parallel, the part 4d of the side part 4b of the frame 4 and the part 35d of the side part 35b of the bezel 35 are brought into direct contact with each other. It is suitable when connecting them thermally.
- the protrusion 35e that protrudes toward the portion 4d of the side portion 4b of the frame 4 is formed on the portion 35d of the side portion 35b of the bezel 35.
- 4 d of the side portion 4 b of the 4 and the portion 35 d (projecting portion 35 e) of the side portion 35 b of the bezel 35 can be held in direct contact with each other. That is, the thermal connection between the portion 4d of the side portion 4b of the frame 4 and the portion 35d of the side portion 35b of the bezel 35 can be reliably performed.
- the shape of the protruding portion 35e formed on the portion 35d of the side portion 35b of the bezel 35 is not particularly limited.
- a linear protruding portion is used as the bezel 35. You may form in the part 35d of the side part 35b.
- the protruding portion is not formed in the portion 35 d of the side portion 35 b of the bezel 35, and the portion 4 d of the side portion 4 b of the frame 4 and the side portion 35 b of the bezel 35.
- the heat conducting member 36 may be inserted between the portion 35d.
- the protruding portion is not formed in the portion 35 d of the side portion 35 b of the bezel 35, and the side of the bezel 35 with respect to the portion 4 d of the side portion 4 b of the frame 4.
- the part 35d of the part 35b may be fixed with a screw 37, so that the part 4d of the side part 4b of the frame 4 and the part 35d of the side part 35b of the bezel 35 may be forcibly brought into close contact with each other.
- the part 4d of the side part 4b of the frame 4 and the part 35d of the side part 35b of the bezel 35 can be thermally connected easily and reliably.
- a metal bezel (second case member) 45 as shown in FIGS. 15 to 17 is used, but such a bezel 45 is used. Except for this, the configuration is the same as in the first embodiment.
- the bezel 45 has a frame-shaped upper surface portion 45a and a side portion (second side portion) 45b provided upright on the outer periphery of the upper surface portion 45a.
- the region surrounded by the side portion 45b is formed to have a substantially rectangular shape having four corner portions (second corner portions) 45c.
- the long sides (short sides) of the bezel 45 and the frame 4 are parallel to each other, and the four corners 45 c of the bezel 45.
- the positions of the four corners 4c of the frame 4 substantially coincide with each other.
- the side portion 45 b of the bezel 45 is located on the outer surface side of the side portion 4 b of the frame 4.
- the inclined surfaces 21e of the light guide plate 21 are positioned one by one on the two corners 45c side of the four corners 45c of the bezel 45.
- Two portions 45d of the side portion 45b of the bezel 45 forming each of the corner portions 45c are formed in a tapered shape (a shape along the inclined surface 21e of the light guide plate 21). That is, when the two corners 4c (two corners 45c of the bezel 45) side of the frame 4 where the LED 25 is located are respectively viewed, a part 4d of the side part 4b of the frame 4 and a part 45d of the side part 45b of the bezel 45 are obtained.
- Both are tapered, and the shape of the portion 45 d of the side portion 45 b of the bezel 45 reflects the shape of the portion 4 d of the side portion 4 b of the frame 4.
- Each of the other two corners 45c of the bezel 45 is formed in a substantially right angle shape.
- the portion 45d of the side 45b of the bezel 45 is replaced with the upper surface 45a.
- it is separated from other parts (parts other than the part 45d) of the side part 45b. That is, a slit 45f is formed between the portion 45d of the side portion 45b of the bezel 45 and the other portion, and for this reason, the portion 45d of the side portion 45b of the bezel 45 has a boundary with the upper surface portion 45a as a fulcrum. Displaceable.
- the side part of the bezel 45 is inclined in the X direction (inward) in advance, and when the bezel 45 is attached, the portion 45d of the side portion 45b is elastically deformed, so that the side portion 45b of the bezel 45 is moved out of the side portion 4b of the frame 4. Arranged on the side. Accordingly, the portion 45d of the side portion 45b of the bezel 45 is held in a state in which the portion 4d of the side portion 4b of the frame 4 is biased (pressed). As a result, the portion 45d of the side portion 45b of the bezel 45 is It is directly thermally connected to the portion 4d of the side portion 4b.
- the portion 4d of the side portion 4b of the frame 4 and the portion 45d of the side portion 45b of the bezel 45 face each other, and the portion 45d of the side portion 45b of the bezel 45 corresponds to the frame 4
- the portion 45d of the side portion 45b of the bezel 45 becomes difficult to be separated from the portion 4d of the side portion 4b of the frame 4, so that the side portion 4b of the frame 4
- the thermal connection between the portion 4d and the portion 45d of the side portion 45b of the bezel 45 can be performed more reliably.
- the portion 45d of the side portion 45b of the bezel 45 is connected to the upper surface portion 45a, while being separated from the other portion of the side portion 45b (the portion other than the portion 45d), thereby the portion of the side portion 45b of the bezel 45 45d can be displaced using the boundary with the upper surface portion 45a as a fulcrum, so that the portion 45d of the side portion 45b of the bezel 45 is easily springy (the biasing force that biases the portion 4d of the side portion 4b of the frame 4). ).
- a design may be made such that the portion 45d of the side portion 45b of the bezel 45 approaches the inside.
- the protrusion 45 e is formed on the portion 45 d of the side portion 45 b of the bezel 45 and is formed on the portion 45 d of the side portion 45 b of the bezel 45.
- the protruding portion 45e may be brought into direct contact with the outer surface of the portion 4d of the side portion 4b of the frame 4. That is, the configuration of the third embodiment and the configuration of the second embodiment may be combined.
- the LEDs are arranged on each of the two corners of the four corners of the light guide plate.
- the present invention is not limited to this, and the four corners of the light guide plate You may arrange
- one inclined surface was formed with respect to one corner
- this invention is not restricted to this but with respect to one corner
- a plurality of inclined surfaces having different inclination angles may be formed, and the LEDs may be arranged to face each of the plurality of inclined surfaces. That is, the light introduction surface of the light guide plate may have a multi-face structure.
- the configuration of the third embodiment will be described as an example. As shown in FIG. 23, three inclined surfaces (light introduction surfaces) 21e are formed on one corner 21d side of the light guide plate 21, One LED 25 may be arranged to face each of the three inclined surfaces 21e.
- the portion 4d of the side portion 4b of the frame 4 is formed in a shape along the three inclined surfaces 21e of the light guide plate 21, and the portion 45d of the side portion 45b of the bezel 45 is formed as the side portion 4b of the frame 4. It is preferable to form in a shape along the portion 4d.
- Liquid crystal display panel 1a Display surface 2
- Backlight unit 4 Frame (first case member) 4a bottom 4b side (first side) 4c Corner (first corner) 4d part (first part) 5, 35, 45 Bezel (second case member) 5a, 35a, 45a Upper surface part 5b, 35b, 45b Side part (first side part) 5c, 35c, 45c Corner (second corner) 5d, 35d, 45d part (second part) 6, 36
- Heat conduction member 21 Light guide plate 21a Top surface 21b Back surface 21c Side surface 21d Corner portion 21e Inclined surface 25 LED (light emitting element) 35e, 45e Protrusion 37 Screw 45f Slit
Landscapes
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- Liquid Crystal (AREA)
- Planar Illumination Modules (AREA)
- Devices For Indicating Variable Information By Combining Individual Elements (AREA)
Abstract
Description
まず、図1~図5を参照して、第1実施形態による表示装置の構成について説明する。
以下に、図10~図12を参照して、第2実施形態による表示装置の構成について説明する。
以下に、図15~図19を参照して、第3実施形態による表示装置の構成について説明する。
1a 表示面
2 バックライトユニット
4 フレーム(第1ケース部材)
4a 底部
4b 側部(第1側部)
4c 隅部(第1隅部)
4d 部分(第1部分)
5、35、45 ベゼル(第2ケース部材)
5a、35a、45a 上面部
5b、35b、45b 側部(第1側部)
5c、35c、45c 隅部(第2隅部)
5d、35d、45d 部分(第2部分)
6、36 熱伝導部材
21 導光板
21a 天面
21b 裏面
21c 側面
21d 角部
21e 傾斜面
25 LED(発光素子)
35e、45e 突出部
37 ねじ
45f スリット
Claims (12)
- 複数の角部を持つ導光板と、
前記導光板の複数の角部のうちの少なくとも1つの角部側に配置される発光素子と、
前記導光板上に配置される表示パネルと、
前記導光板が載置される底部と、前記導光板の周囲の少なくとも一部を囲む第1側部とを有する第1ケース部材と、
前記表示パネル上に配置される上面部と、前記導光板の周囲の少なくとも一部を囲む第2側部とを有する第2ケース部材とを備え、
前記第1ケース部材の第1側部のうちの第1部分に前記発光素子が取り付けられ、
前記第2ケース部材の第2側部のうちの第2部分に対して前記第1ケース部材の第1側部の第1部分が熱的に接続されることを特徴とする表示装置。 - 前記第1ケース部材の第1側部で囲まれている領域が複数の第1隅部を有しているとともに、前記第1ケース部材の第1側部の第1部分が前記第1ケース部材の複数の第1隅部のうちの少なくとも1つをなしていることを特徴とする請求項1に記載の表示装置。
- 前記第2ケース部材の第2側部で囲まれている領域が複数の第2隅部を有しているとともに、前記第2ケース部材の第2側部の第2部分が前記第2ケース部材の複数の第2隅部のうちの少なくとも1つをなしていることを特徴とする請求項2に記載の表示装置。
- 前記導光板は、天面および裏面と、前記天面および前記裏面に繋がる側面とを有しているとともに、前記複数の角部のうちの前記発光素子が配置される角部側の側面が他の側面に対して斜めに傾斜するように形成されており、
前記発光素子は、前記導光板の傾斜した側面と対向するように、前記第1ケース部材の第1側部の第1部分に取り付けられていることを特徴とする請求項1~3のいずれかに記載の表示装置。 - 前記第1ケース部材の第1側部の第1部分が前記導光板の傾斜した側面に沿ったテーパ形状となっていることを特徴とする請求項4に記載の表示装置。
- 前記第1ケース部材の第1側部の第1部分と前記第2ケース部材の第2側部の第2部分との間に熱伝導部材が挿入され、
前記熱伝導部材を介して、前記第1ケース部材の第1側部の第1部分と前記第2ケース部材の第2側部の第2部分とが熱的に接続されることを特徴とする請求項5に記載の表示装置。 - 前記第2ケース部材の第2側部の第2部分が前記第1ケース部材の第1側部の第1部分の形状を反映したテーパ形状となっていることを特徴とする請求項5に記載の表示装置。
- 前記第2ケース部材の第2側部の第2部分に、前記第1ケース部材の第1側部の第1部分側に突出する突出部が形成されており、
前記第1ケース部材の第1側部の第1部分と前記第2ケース部材の第2側部の第2部分に形成された突出部とが熱的に接続されることを特徴とする請求項7に記載の表示装置。 - 前記第2ケース部材の第2側部の第2部分がバネ性を有しているとともに、前記第2ケース部材の第2側部の第2部分が前記第1ケース部材の第1側部の第1部分を付勢した状態で保持されることを特徴とする請求項7または8に記載の表示装置。
- 前記第2ケース部材の第2側部の第2部分が、前記上面部に繋げられている一方、前記第2側部の他の部分からは分離されていることを特徴とする請求項9に記載の表示装置。
- 前記第2ケース部材の第2側部の第2部分が前記第1ケース部材の第1側部の第1部分にねじ止めされることを特徴とする請求項7に記載の表示装置。
- 前記第1ケース部材および前記第2ケース部材がそれぞれ金属製であることを特徴とする請求項1~11のいずれかに記載の表示装置。
Priority Applications (6)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2010800268621A CN102472437A (zh) | 2009-07-03 | 2010-03-16 | 显示装置 |
RU2012103539/07A RU2012103539A (ru) | 2009-07-03 | 2010-03-16 | Устройство отображения |
US13/377,573 US8672530B2 (en) | 2009-07-03 | 2010-03-16 | Display device |
BR112012000040A BR112012000040A2 (pt) | 2009-07-03 | 2010-03-16 | dispositivo de exibição |
JP2011520810A JP5064602B2 (ja) | 2009-07-03 | 2010-03-16 | 表示装置 |
EP10793889.6A EP2450617A4 (en) | 2009-07-03 | 2010-03-16 | DISPLAY DEVICE |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2009-158536 | 2009-07-03 | ||
JP2009158536 | 2009-07-03 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2011001718A1 true WO2011001718A1 (ja) | 2011-01-06 |
Family
ID=43410802
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP2010/054390 WO2011001718A1 (ja) | 2009-07-03 | 2010-03-16 | 表示装置 |
Country Status (7)
Country | Link |
---|---|
US (1) | US8672530B2 (ja) |
EP (1) | EP2450617A4 (ja) |
JP (1) | JP5064602B2 (ja) |
CN (1) | CN102472437A (ja) |
BR (1) | BR112012000040A2 (ja) |
RU (1) | RU2012103539A (ja) |
WO (1) | WO2011001718A1 (ja) |
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US20140355301A1 (en) * | 2013-05-31 | 2014-12-04 | Samsung Display Co., Ltd. | Display device |
KR20160145099A (ko) * | 2014-05-16 | 2016-12-19 | 메이타쿠 고교 가부시키가이샤 | 발광패널 |
KR101795036B1 (ko) * | 2011-06-10 | 2017-12-01 | 엘지이노텍 주식회사 | 백라이트 유닛 및 이를 포함하는 표시 장치 |
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WO2011132450A1 (ja) * | 2010-04-21 | 2011-10-27 | シャープ株式会社 | バックライト装置および表示装置 |
CN102720972A (zh) * | 2012-07-05 | 2012-10-10 | 苏州茂立光电科技有限公司 | 照明装置 |
KR101981546B1 (ko) * | 2012-09-21 | 2019-05-24 | 삼성디스플레이 주식회사 | 표시 장치 |
CN102998738B (zh) * | 2012-12-11 | 2015-05-27 | 京东方科技集团股份有限公司 | 导光板、含该导光板的背光源和显示装置 |
CN104534307A (zh) * | 2014-12-04 | 2015-04-22 | 江门市侨都和诚照明有限公司 | 一种高光效led平板灯 |
KR102626224B1 (ko) * | 2016-08-31 | 2024-01-17 | 삼성디스플레이 주식회사 | 광 출사 모듈 및 이를 포함하는 표시 장치 |
CN208107825U (zh) * | 2018-05-09 | 2018-11-16 | 京东方科技集团股份有限公司 | 背光源模组和显示装置 |
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Also Published As
Publication number | Publication date |
---|---|
EP2450617A4 (en) | 2014-06-18 |
US20120087151A1 (en) | 2012-04-12 |
JP5064602B2 (ja) | 2012-10-31 |
EP2450617A1 (en) | 2012-05-09 |
BR112012000040A2 (pt) | 2016-03-15 |
CN102472437A (zh) | 2012-05-23 |
JPWO2011001718A1 (ja) | 2012-12-13 |
RU2012103539A (ru) | 2013-08-10 |
US8672530B2 (en) | 2014-03-18 |
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