WO2009107459A1 - 表示装置、テレビ受信装置 - Google Patents
表示装置、テレビ受信装置 Download PDFInfo
- Publication number
- WO2009107459A1 WO2009107459A1 PCT/JP2009/051726 JP2009051726W WO2009107459A1 WO 2009107459 A1 WO2009107459 A1 WO 2009107459A1 JP 2009051726 W JP2009051726 W JP 2009051726W WO 2009107459 A1 WO2009107459 A1 WO 2009107459A1
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- WO
- WIPO (PCT)
- Prior art keywords
- optical sheet
- sheet
- panel
- liquid crystal
- display device
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
-
- 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
- G02F1/133308—Support structures for LCD panels, e.g. frames or bezels
-
- 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
- G02F1/133308—Support structures for LCD panels, e.g. frames or bezels
- G02F1/133317—Intermediate frames, e.g. between backlight housing and front frame
-
- 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
- G02F1/133602—Direct backlight
- G02F1/133604—Direct backlight with lamps
-
- 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
- G02F2201/00—Constructional arrangements not provided for in groups G02F1/00 - G02F7/00
- G02F2201/54—Arrangements for reducing warping-twist
Definitions
- the present invention relates to a display device and a television receiver.
- a backlight device is separately required as a lighting device.
- a backlight device is arranged on the back side (the side opposite to the display surface) of the liquid crystal panel, and has a large number of linear light sources and diffusion arranged on the light emitting side of the linear light sources.
- the thing of the structure which has optical sheets, such as a board, is well-known (refer patent document 1). JP 2007-256385 A
- Patent Document 1 in order to avoid the occurrence of bending and wrinkling in the optical sheet, holes are formed in the four corners of the laminated optical sheets, and the holding member is provided with a predetermined clearance with respect to the holes. An inserted configuration is disclosed. Thereby, even if there is a difference in the expansion / contraction rate of each optical sheet due to temperature change, the expansion / contraction of each optical sheet is allowed.
- the problem in the first place is to suppress the occurrence of bending and wrinkles of the optical sheet caused by fixing each optical sheet with a fixing bracket.
- a clearance is provided between the member and the hole. That is, in the technique disclosed in Patent Document 1, a frame is interposed between the liquid crystal panel and the optical sheet, and as a result, there is a clearance between the liquid crystal panel and the optical sheet. Is intended to hold an optical sheet capable of free thermal expansion while allowing expansion and contraction.
- the optical sheet is subjected to a pressing force due to the weight of the liquid crystal panel.
- the sheet is in a state where it cannot freely thermally expand.
- the holding member and the hole disclosed in Patent Document 1 are formed, the occurrence of bending and wrinkles in the optical sheet cannot be suppressed. That is, since the optical sheet cannot be freely contracted or expanded by the pressing force from the liquid crystal panel, when it is expanded by heat from the light source, bending or wrinkle is generated in the central portion of the sheet.
- the present invention has been made in view of the above problems, and can realize thinning of the device and widening of a display region, and a display device that is less likely to bend or wrinkle in an optical sheet disposed between a light source and a panel.
- the purpose is to provide. It is another object of the present invention to provide a television receiver provided with such a display device.
- a display device includes a light source, a chassis that houses the light source, a display panel that performs display using light from the light source, and the light source and the display panel. And the display panel and the optical sheet are adjacent to each other with no other member interposed therebetween, and the chassis is disposed on the outer edge of the optical sheet.
- a sheet support part for supporting the display panel, and a panel support part for supporting the display panel is arranged on the sheet support part.
- the optical sheet has an outer edge part on the inner side in a plan view.
- It is configured to have a partially cut-out concave portion and a convex portion protruding outward from the concave portion, and the convex portion is supported by the sheet support portion, while the panel support portion is Before passing through the recess Characterized by comprising supporting the display panel.
- the display device and the optical sheet can be reduced in thickness by the configuration in which the display panel and the optical sheet are adjacent to each other without interposing other members therebetween.
- the optical sheet cannot freely expand and contract or expand due to the weight of the display panel. Therefore, in the present invention, an unevenness is formed on the outer edge of the optical sheet, and the convex part of the optical sheet is supported by the sheet support part, while the panel support part formed on the sheet support part is inserted from the concave part of the optical sheet.
- the optical sheet can be freely expanded and contracted or expanded while realizing a reduction in thickness, and the optical sheet can be expanded and contracted or expanded freely even when thermal expansion occurs due to heat generated from the light source. In addition, it is difficult to cause a problem in which bending or wrinkles occur in the central portion of the optical sheet.
- the display panel is supported on the outside of the optical sheet by the panel support part without forming irregularities on the optical sheet, a space for securing the sheet mounting portion is required in addition to the space for providing the projections.
- the frame area which is a non-display area, increases, and the effective display area decreases.
- the light source may have a configuration in which longitudinal linear light sources are arranged in parallel, and the chassis may include the sheet support portion along a longitudinal direction of the light source.
- the sheet support portion is provided along the longitudinal direction of the light source, it is possible to suitably prevent or suppress the occurrence of bending or wrinkling of the sheet in the longitudinal direction.
- the longitudinal direction of the light source is in a shape along the longitudinal direction of the chassis and the longitudinal direction of the optical sheet, it is possible to prevent or suppress the occurrence of bending and wrinkles in the longitudinal direction of the sheet. It becomes possible.
- the display apparatus of this invention WHEREIN:
- the said panel support part shall be screwed with respect to the said sheet
- reliable panel support is realizable by comprising a panel support part by screwing.
- the panel support portion may have a projection main body and a male screw portion connected to the projection main body, and the male screw portion is screwed with the female screw portion. can do.
- the panel support part may be a projection welded to the sheet support part.
- reliable panel support is realizable by forming a projection by welding.
- a projection insertion hole is provided in the reflection sheet, and a projection formed by welding is inserted into the projection insertion hole, so that the panel support portion Can be configured.
- the panel support part may be a resin protrusion bonded to the sheet support part.
- reliable panel support is realizable by forming the resin protrusion by adhesion
- the longitudinal member is disposed outside the outer edge portion of the chassis and extends along the outer edge portion of the chassis.
- the longitudinal member is partially projected inward in a plan view, and the protruding portion May be configured as the panel support.
- reliable panel support is realizable by arrange
- the light source has a configuration in which longitudinal linear light sources are arranged in parallel, and the chassis is provided with a light source covering member that covers an end portion of the light source along a parallel direction of the light source.
- the sheet support portion may be formed on the member, and the panel support portion may be disposed on the sheet support portion.
- the light source covering member is used as a sheet supporting portion, and the panel supporting portion is formed on the sheet supporting portion. It is possible to suitably prevent or suppress the occurrence of sheet bending and wrinkles in the light source arrangement direction.
- the light source covering member is preferably composed of a resin member.
- the surface (upper surface) of the light source covering member is used as a sheet support portion, and the panel support portion formed on the sheet support portion is a sheet support during resin molding. It can be molded in a form protruding from the part.
- the panel support portion can be configured such that the upper surface of the light source covering member partially protrudes, and in this case, a protrusion on a separate member becomes unnecessary, and the number of parts can be reduced. It becomes feasible.
- the optical sheet is a diffusion plate disposed on a sheet support portion of the chassis, and a diffusion sheet and a lens disposed on the diffusion plate and having a smaller thickness than the diffusion plate.
- an optical sheet group including a reflective polarizing sheet in any order.
- a concave portion and a convex portion can be formed on the outer edge portion, respectively, and the configuration according to the present invention can be realized.
- a liquid crystal panel can be exemplified as the display panel.
- Such a display device can be applied as a liquid crystal display device to various uses, for example, a desktop screen of a television or a personal computer, and is particularly suitable as an ultra-thin television receiver.
- the invention's effect it is possible to provide a display device that can realize a thin device and a wide display area, and that is less likely to bend or wrinkle in an optical sheet disposed between a light source and a panel.
- the disassembled perspective view which shows schematic structure of the television receiver which concerns on Embodiment 1 of this invention.
- the disassembled perspective view which shows schematic structure of the liquid crystal display device with which the television receiver of FIG. 1 is provided.
- Sectional drawing which shows the 1st cross-sectional structure along the short side direction of the liquid crystal display device of FIG.
- Sectional drawing which shows the 2nd cross-sectional structure along the short side direction of the liquid crystal display device of FIG.
- FIG. 3 is a schematic diagram illustrating a planar configuration of a diffusion plate included in the liquid crystal display device of FIG. 2.
- the schematic diagram which shows the planar structure of the optical sheet group with which the liquid crystal display device of FIG. 2 is provided.
- Sectional drawing which shows the 1st cross-sectional structure along the short side direction about the liquid crystal display device with which the television receiver of Embodiment 2 is provided.
- Sectional drawing which shows the 2nd cross-sectional structure along the long side direction about the liquid crystal display device with which the television receiver of Embodiment 2 is provided.
- the schematic diagram which shows the planar structure of the diffusion plate with which the liquid crystal display device is provided about the liquid crystal display device with which the television receiver of Embodiment 2 is provided.
- the schematic diagram which shows the planar structure of the optical sheet group with which the liquid crystal display device is provided about the liquid crystal display device with which the television receiver of Embodiment 2 is provided.
- the schematic diagram which shows the planar structure of the diffusion plate with which the liquid crystal display device is provided about the liquid crystal display device with which the television receiver of Embodiment 3 is provided.
- the schematic diagram which shows the planar structure of the optical sheet group with which the liquid crystal display device is provided about the liquid crystal display device with which the television receiver of Embodiment 3 is provided.
- Sectional drawing which shows the modification of a panel support part is provided.
- Sectional drawing which shows the modification of a panel support part Sectional drawing which shows the modification of a panel support part.
- Sectional drawing which shows the modification of a panel support part Sectional drawing which shows the modification of a panel support part.
- SYMBOLS 10 Liquid crystal display device (display device), 11 ... Liquid crystal panel (display panel), 12 ... Backlight device (illumination device), 14 ... Chassis, 15 ... Optical sheet, 15a ... Diffusing plate, 15b ... Optical sheet group, 15c ... lens sheet, 15d, 15e, 15f, 15g ... diffusion sheet, 15h ... reflective polarizing film, 16 ... frame (panel support protrusion, longitudinal member), 17 ... cold cathode tube (light source, linear light source), 20 ... Holder (light source covering member, sheet support portion), 20a ... first surface (sheet support surface, sheet support portion), 20b ... second surface (panel support surface), 20z ... projection (panel support projection), 21b ... folded outer edge Part (sheet support part), 250 ... protrusion (panel support part), 260 ... protrusion (panel support part), 265 ... protrusion (panel support part), TV ... television receiver
- FIG. 1 is an exploded perspective view showing a schematic configuration of the television receiver according to the first embodiment
- FIG. 2 is an exploded perspective view showing a schematic configuration of a liquid crystal display device included in the television receiver of FIG. 1
- FIG. 3 is a liquid crystal shown in FIG. 4 is a cross-sectional view showing a first cross-sectional configuration along the short side direction of the display device
- FIG. 4 is a cross-sectional view showing a second cross-sectional configuration along the short side direction of the liquid crystal display device of FIG. 2
- FIG. FIG. 6 is a schematic diagram showing a planar configuration of an optical sheet group provided in the liquid crystal display device of FIG. 2.
- the television receiver TV includes a liquid crystal display device 10, front and back cabinets Ca and Cb that are accommodated so as to sandwich the liquid crystal display device 10, a power source P, a tuner T, And a stand S.
- the liquid crystal display device (display device) 10 has a horizontally long rectangular shape as a whole and is accommodated in a vertically placed state.
- the liquid crystal display device 10 includes a liquid crystal panel 11 that is a display panel and a backlight device (illumination device) 12 that is an external light source, which are integrated by a frame-like bezel 13 or the like. Is supposed to be retained.
- the liquid crystal panel 11 and the backlight device 12 constituting the liquid crystal display device 10 will be described (see FIGS. 2 to 6).
- the liquid crystal panel (display panel) 11 is configured such that a pair of glass substrates are bonded together with a predetermined gap therebetween, and liquid crystal is sealed between the glass substrates.
- One glass substrate is provided with a switching element (for example, TFT) connected to a source wiring and a gate wiring orthogonal to each other, a pixel electrode connected to the switching element, an alignment film, and the like.
- the substrate is provided with a color filter and counter electrodes in which colored portions such as R (red), G (green), and B (blue) are arranged in a predetermined arrangement, and an alignment film.
- polarizing plates 11a and 11b are disposed outside both substrates (see FIGS. 3 and 4).
- the backlight device 12 is an optical sheet that is attached so as to cover a substantially box-shaped chassis 14 opened on the light emitting surface side (the liquid crystal panel 11 side) and the opening 14 b of the chassis 14. 15 and a frame 16 disposed along the long side of the chassis 14 and interposed between the chassis 14 and the bezel 13. Further, in the chassis 14, a cold cathode tube (light source) 17, a lamp clip 18 for attaching the cold cathode tube 17 to the chassis 14, and a relay responsible for relaying electrical connection at each end of the cold cathode tube 17. A connector 19 and a holder 20 that collectively covers the ends of the cold cathode tube 17 group and the relay connector 19 group are provided.
- the optical sheet 15 side is the light emitting side from the cold cathode tube 17, and in this embodiment, the light emitting side (that is, the liquid crystal panel 11 side) of the optical sheet 15 is the light emitting unit. It has become.
- the chassis 14 is made of metal, has a rectangular bottom plate, and a folded outer edge portion 21 that rises from each side and is folded back in a substantially U shape (a folded outer edge portion 21a in a short side direction and a folded outer edge portion 21b in a long side direction). )).
- the bottom plate of the chassis 14 has a plurality of attachment holes 22 for attaching the relay connector 19 to both ends in the long side direction.
- a fixing hole 14c is formed in the upper surface of the folded outer edge portion 21b of the chassis 14, and the bezel 13, the frame 16, the chassis 14 and the like are integrated with, for example, screws. It is possible to make it.
- the folded outer edge portion 21b can support the optical sheet 15 with the reflection sheet 23 interposed between the inner surface and the inner surface of the folded outer edge portion 21b functions as a sheet support surface (sheet support portion). ing.
- a reflection sheet 23 is disposed on the inner surface side of the bottom plate of the chassis 14 (the surface side facing the cold cathode tube 17).
- the reflection sheet 23 is made of synthetic resin, and the surface thereof is white with excellent light reflectivity.
- the reflection sheet 23 is laid so as to cover almost the entire region along the inside of the bottom plate surface of the chassis 14. As shown in FIG. 3, the long side edge portion of the reflection sheet 23 rises so as to cover the folded outer edge portion 21 b of the chassis 14 and is fixed in a state sandwiched between the chassis 14 and the diffusion plate 15 a. With this reflection sheet 23, it is possible to reflect the light emitted from the cold cathode tube 17 toward the optical sheet 15.
- the cold-cathode tube 17 is a linear light source having an elongated tubular shape, in which the length direction (axial direction) coincides with the long side direction of the chassis 14 and a large number of them are arranged in parallel to each other. It is accommodated in the chassis 14 (that is, in a state of being arranged in parallel) (see FIG. 2).
- the cold cathode tube 17 is slightly lifted from the bottom plate (reflective sheet 23) of the chassis 14, and each end of the cold cathode tube 17 is fitted into the relay connector 19 so as to cover the relay connector 19. 20 is attached.
- the holder 20 is made of a synthetic resin exhibiting white color, and as illustrated in FIG. 2, covers the end portion of the cold cathode tube 17 and has a substantially elongated box shape extending along the short side direction of the chassis 14.
- the holder 20 is arranged in a state of being partially overlapped with the folded outer edge portion 21a in the short side direction of the chassis 14, and forms the side wall of the backlight device 12 together with the folded outer edge portion 21a.
- An insertion pin protrudes from the surface of the holder 20 facing the folded outer edge portion 21a of the chassis 14, and the insertion pin (not shown) is formed in the upper surface of the folded outer edge portion 21a of the chassis 14.
- the holder 20 is attached to the chassis 14.
- the optical sheet 15 is a member that changes the emission characteristics (for example, emission angle, in-plane luminance distribution, etc.) of the light emitted from the cold cathode tube 17, and as shown in FIG. 2, the diffusion plate 15a and the diffusion plate 15a. And an optical sheet group 15b having a smaller thickness.
- the optical sheet group 15b has a configuration in which a lens sheet 15c, diffusion sheets 15d, 15e, 15f, and 15g disposed adjacent to the diffusion plate 15a from the diffusion plate 15a side, and a reflective polarizing film 15h are laminated. is doing.
- the optical sheet 15 is adjacent to the liquid crystal panel 11 with no other member interposed between the optical sheet 15 and the liquid crystal panel 11. Then, as shown in FIG. 5, the diffusion plate 15a constituting the optical sheet 15 has a concave portion 151 having a shape in which a part of the outer edge portion in the long side direction is partially cut out inward in a plan view. , And a convex portion 152 protruding outward from the concave portion 151. Similarly, the optical sheet group 15b (the lens sheet 15c, the diffusion sheets 15d, 15e, 15f, and 15g, and the reflective polarizing film 15h) constituting the optical sheet 15 is also seen in a plan view as shown in FIG.
- a concave portion 161 having a shape in which a part of the outer edge portion in the long side direction is partially cut out inward and a convex portion 162 protruding outward from the concave portion 161 are configured. That is, the diffuser plate 15a and the optical sheet group 15b constituting the optical sheet 15 are configured such that the long side portions thereof have unevenness, and the three concave portions 151 and 161 and the four convex portions 152 are respectively provided on the long side portions. , 162 are provided.
- the diffuser plate 15 a and the optical sheet group 15 b having irregularities on the long side portion, and the liquid crystal panel 11 disposed on the light emitting side of the optical sheet 15 are sandwiched between the chassis 14 and the bezel 13. ing.
- the convex portion 152 of the diffusion plate 15a and the convex portion 162 of the optical sheet group are sheet support portions of the chassis 14 as shown in FIG. It is supported by the folded outer edge portion 21 b and is disposed between the folded outer edge portion 21 b and the liquid crystal panel 11.
- the liquid crystal panel 11 is supported by a projection (panel support portion) 250 formed on the inner surface of the folded outer edge portion 21 b of the chassis 14, and is sandwiched between the projection 250 and the bezel 13. It is arranged in the form.
- a sponge-like buffer member having elasticity is interposed between the liquid crystal panel 11 and the bezel 13.
- the protrusions 250 that support the liquid crystal panel 11 are made of a metal material, are in positions overlapping with the respective concave portions 151 and 161 of the diffusion plate 15a and the optical sheet group 15b, are inserted through the concave portions 151 and 161, and the concave portions 151 are inserted. 161 from the liquid crystal panel 11 side.
- the protrusion 250 has a protrusion main body 250b and a male screw portion 250a connected to the protrusion main body 250b.
- the male screw portion is formed in a hole 14c formed in the folded outer edge portion 21b of the chassis 14. It is fixed by inserting 250a and screwing a female screw (nut) 14d on the back surface side of the folded outer edge portion 21b.
- a coaxial hole is formed in the reflection sheet 23 together with the hole 14d of the chassis 14 so that the male screw portion 250a of the protrusion 250 is inserted.
- the diffusion plate 15a and the optical sheet group 15b are configured to be supported by the chassis 14 at the convex portions 152 and 162, but the concave inner edges of the concave portions 151 and 161 of the folded outer edge portion 21b of the chassis 14 are provided.
- the inner edge portion 210b (the wall portion surrounding the cold cathode tube 17), that is, the concave portion 151, 161 is formed on the inner surface of the folded outer edge portion 21b. The inner edge is slightly supported.
- FIG. 3 referred to in the present embodiment shows a cross-sectional configuration in which the portions where the concave portions 151 and 161 of the diffusion plate 15a and the optical sheet group 15b are formed are cut along the short side direction
- disconnected the part in which the convex part 152,162 of the diffusion plate 15a and the optical sheet group 15b was formed along the short side direction is shown.
- the diffusion plate 15a of the optical sheet 15 is a linear light emitted from the cold cathode tube 17 serving as a linear light source (tubular light source), in which light scattering particles are dispersed and blended with a synthetic resin plate-like member. Has the function of diffusing.
- the thickness of the diffusion plate 15a is 2 mm, and the total light transmittance is about 85%.
- the optical sheet group 15b other than the diffuser plate 15a is sandwiched between the diffuser plate 15a and the liquid crystal panel 11, and as described above, the lens sheet is arranged adjacent to the light emitting side from the diffuser plate 15a.
- 15c, diffusion sheets 15d, 15e, 15f, 15g, and a reflective polarizing film 15h are laminated.
- the lens sheet 15c has a configuration in which linear convex lenses (convex cylindrical lens, lenticular lens) are formed in parallel on the surface (light emitting surface) of a translucent base material made of synthetic resin.
- the longitudinal direction of the lens and the longitudinal direction of the convex lens are arranged in parallel.
- the thickness of the lens sheet 15c is 0.5 mm, and the pitch of the convex lenses is 0.15 mm.
- the diffusion sheets 15d, 15e, 15f, and 15g have a configuration in which a diffusion layer in which light scattering particles are dispersed and mixed is bonded to the surface of a transparent base made of synthetic resin.
- the diffusion sheets 15d, 15e, 15f, and 15g have a thickness of 0.22 mm, and the translucent substrate has a thickness of 0.188 mm.
- the reflective polarizing film 15h is configured to transmit part of the light emitted from the diffusion sheets 15d, 15e, 15f, and 15g and reflect the other part, and to increase the light use efficiency for the pixels of the liquid crystal panel 11. have. In this case, the reflected light is reused by reflection of the reflection sheet 23 and the like.
- a cold cathode is provided in a space (light source accommodation chamber) formed between the reflection sheet 23 disposed on the inner surface side of the chassis 14 and the diffusion plate 15a of the optical sheet 15. Tubes 17 are accommodated in parallel.
- the cold cathode tube 17 used in this embodiment has a tube diameter of 4.0 mm, a distance of 0.8 mm between the cold cathode tube 17 and the reflection sheet 23, a distance of 16.4 mm between adjacent cold cathode tubes 17, and a cold cathode tube.
- the distance between 17 and the diffusion plate 15a is 2.7 mm.
- the backlight device 12 is thinned between the constituent members, and in particular, the distance between the cold cathode tube 17 and the diffusion plate 15a and the distance between the cold cathode tube 17 and the reflection sheet 23 are reduced. .
- both the liquid crystal panel 11 and the optical sheet 15 are not interposed with other members.
- the thickness of the liquid crystal display device 10 (that is, the thickness from the surface of the liquid crystal panel 11 to the back surface of the backlight device 12) is 16 mm, and the thickness of the television receiver TV (that is, from the surface of the front cabinet Ca).
- the thickness reaching the back surface of the back cabinet Cb is 34 mm, and a thin television receiver is realized.
- the backlight device 12 included in the liquid crystal display device 10 includes the diffusion plate 15a and the optical sheet group 15b configured as described above as the optical sheet 15, With the configuration in which the optical sheet 15 and the liquid crystal panel 11 are adjacent to each other without interposing other members, the liquid crystal display device 10 can be thinned. However, when the liquid crystal panel 11 and the optical sheet 15 are adjacent to each other as described above, the optical sheet 15 cannot freely expand or contract due to the pressing force from the liquid crystal panel 11 side due to the weight of the liquid crystal panel 11 or the like. Can be.
- irregularities are formed on the outer edge portion of the optical sheet 15, and the convex portions 151, 161 of the optical sheet 15 are formed at the folded outer edge portion 21b as the sheet support portion.
- the protrusion 250 formed on the folded outer edge portion 21b is inserted from the recesses 151 and 161 of the optical sheet 15, and the liquid crystal panel 11 is supported by the protrusion 250.
- the optical sheet 15 can be freely expanded and contracted or expanded while realizing a reduction in thickness, and the optical sheet 15 can be freely expanded even when thermal expansion due to heat generated from the cold cathode tube 17 occurs. Since it can be expanded and contracted or expanded, it is difficult for bending and wrinkles to occur in the central portion of the optical sheet 15 and the like.
- the liquid crystal display device does not need to separately provide such two spaces (projection formation space and panel mounting space) in parallel, so that the display area is widened.
- FIG. 7 is a cross-sectional view showing a first cross-sectional configuration along the long side direction of the liquid crystal display device
- FIG. 8 is a cross-sectional view showing a second cross-sectional configuration along the long side direction of the liquid crystal display device.
- FIG. 9 is a schematic diagram illustrating a planar configuration of a diffusion plate included in the liquid crystal display device
- FIG. 10 is a schematic diagram illustrating a planar configuration of an optical sheet group included in the liquid crystal display device.
- the diffusion plate 15a constituting the optical sheet 15 in the backlight device 12 has a short side direction in a state of being viewed in a plan view as shown in FIG.
- a concave portion 171 having a shape in which a part of the outer edge portion is partially cut inward, and a convex portion 172 protruding outward from the concave portion 171 are configured.
- the optical sheet group 15b (the lens sheet 15c, the diffusion sheets 15d, 15e, 15f, and 15g, and the reflective polarizing film 15h) constituting the optical sheet 15 is viewed in a plan view as shown in FIG.
- a concave portion 181 having a shape in which a part of the outer edge portion in the short side direction is partially cut inward and a convex portion 182 protruding outward from the concave portion 181 are configured.
- each of the diffusion plate 15a and the optical sheet group 15b constituting the optical sheet 15 has a configuration in which the short side portion has irregularities, and each of the short side portions has two concave portions 171, 181 and three convex portions 172. , 182 are provided.
- the optical sheet 15 composed of the diffusion plate 15a and the optical sheet group 15b is a holder (on a folded outer edge portion 21a formed on the short side portion of the chassis 14 as shown in FIGS. 7 and 8).
- (Light source covering member) 20 and the liquid crystal panel 11 are arranged in a sandwiched manner.
- the holder 20 covers the end of the cold cathode tube 17 and has a long and narrow box shape extending along the short side direction of the chassis 14 as shown in FIG.
- the holder 20 has a stepped surface on which the optical sheet 15 and the liquid crystal panel 11 can be placed, and is arranged in a state of being partially overlapped with a folded outer edge portion 21 a in the short side direction of the chassis 14.
- the side wall of the backlight device 12 is formed together with the folded outer edge portion 21a.
- An insertion pin 24 protrudes from a surface of the holder 20 facing the folded outer edge portion 21a of the chassis 14, and the insertion pin 24 is inserted into an insertion hole 25 formed on the upper surface of the folded outer edge portion 21a of the chassis 14.
- the stepped surface of the holder 20 is composed of three surfaces parallel to the bottom plate surface of the chassis 14, and the short side edge portion of the diffusion plate 15 a is placed on the first surface 20 a at the lowest position.
- an inclined cover 26 that extends toward the bottom plate surface of the chassis 14 extends from the first surface 20a.
- the short side edge portion of the liquid crystal panel 11 is placed on the second surface 20 b of the stepped surface of the holder 20.
- the third surface 20 c at the highest position among the stepped surfaces of the holder 20 is arranged at a position overlapping the folded outer edge portion 21 a of the chassis 14 and is in contact with the bezel 13.
- the optical sheet 15 is adjacent to the liquid crystal panel 11 with no other member interposed between the optical sheet 15 and the liquid crystal panel 11.
- the diffuser plate 15 a and the optical sheet group 15 b having irregularities on the short side portion and the liquid crystal panel 11 disposed on the light emitting side of the optical sheet 15 are sandwiched between the holder 20 and the bezel 13. Yes.
- the convex portion 172 of the diffusion plate 15a and the convex portion 182 of the optical sheet group are sheet support portions of the holder 20 as shown in FIG. It is supported by the first surface 20 a and is disposed between the first surface 20 a and the liquid crystal panel 11.
- the liquid crystal panel 11 is supported by a second surface 20b that is an upper surface of a projection (panel support portion) 20z that is partially projected on the first surface 20a, and the projection 20z.
- the second surface 20b and the bezel 13 are disposed in a sandwiched manner.
- the protrusion 20z in this case is formed in a shape in which the upper surface of the holder 20 is partially protruded, that is, formed by being formed so as to partially protrude from the first surface 20a during the forming process. Further, the protrusion 20z is located at a position overlapping the respective concave portions 171 and 181 of the diffusion plate 15a and the optical sheet group 15b, and is formed so as to pass through the concave portions 171 and 181 and project from the concave portions 171 and 181 to the liquid crystal panel 11 side. Has been.
- FIG. 7 referred to in the present embodiment shows a cross-sectional configuration in which the portions where the concave portions 171 and 181 of the diffusion plate 15a and the optical sheet group 15b are formed are cut along the long side direction
- disconnected the part in which the convex part 172,182 of the diffusion plate 15a and the optical sheet group 15b was formed along the long side direction is shown.
- the backlight device 12 included in the liquid crystal display device 10 includes the diffusion plate 15a and the optical sheet group 15b configured as described above as the optical sheet 15, With the configuration in which the optical sheet 15 and the liquid crystal panel 11 are adjacent to each other without interposing other members, the liquid crystal display device 10 can be thinned. Then, irregularities (concave parts 171 and 181 and convex parts 172 and 182) are formed on the outer edge part of the optical sheet 15, and the convex parts 171 and 181 of the optical sheet 15 are supported by the first surface 20a of the holder 20 as a sheet supporting part.
- the projection 20z formed on the first surface 20a is inserted through the recesses 171 and 181 of the optical sheet 15, and the liquid crystal panel 11 is supported by the projection 20z.
- the liquid crystal display device 10 according to the present embodiment which is thinned so that no other member is interposed between the liquid crystal panel 11 and the optical sheet 15, the pressing force from the liquid crystal panel 11 is difficult to reach the optical sheet 15. It becomes.
- the optical sheet 15 can be freely expanded and contracted or expanded while realizing a reduction in thickness, and the optical sheet 15 can be freely expanded even when thermal expansion due to heat generated from the cold cathode tube 17 occurs. Since it can be expanded and contracted or expanded, it is difficult for bending and wrinkles to occur in the central portion of the optical sheet 15 and the like.
- the mounting portion of the optical sheet 15 is provided in addition to the space for providing the projections 20z.
- a space for sufficiently securing the (support surface) is required, and the frame area, which is a non-display area, increases accordingly, leading to a decrease in the effective display area.
- the liquid crystal display device of this embodiment also has a wide display area because it is not necessary to separately provide such two spaces (projection forming space and panel mounting space) in parallel.
- FIG. 11 is a schematic diagram illustrating a planar configuration of a diffusion plate included in the liquid crystal display device
- FIG. 12 is a schematic diagram illustrating a planar configuration of an optical sheet group included in the liquid crystal display device.
- the television receiver TV is configured so that the diffusion plate 15 a constituting the optical sheet 15 has a short side direction and a plan view as illustrated in FIG. 11.
- the optical sheet group 15b (lens sheet 15c, diffusion sheets 15d, 15e, 15f, 15g, and reflective polarizing film 15h) constituting the optical sheet 15 is also viewed in a plan view as shown in FIG.
- concave portions 161 and 181 each having a part of the outer edge part notched inward, and convex portions 162 and 182 protruding outward from the concave portions 161 and 181. And is configured. That is, the diffuser plate 15a and the optical sheet group 15b constituting the optical sheet 15 are configured such that the short side portion and the long side portion thereof are uneven, and two concave portions 171, 181, 3 are provided in each short side portion. Two convex portions 172 and 182 are provided, and three concave portions 151 and 161 and four convex portions 152 and 162 are provided on each long side portion.
- the optical sheet 15 which consists of these diffusion plates 15a and the optical sheet group 15b is on the folding
- the holder (light source covering member) 20 and the liquid crystal panel 11 are arranged in a sandwiched manner. That is, the optical sheet 15 is adjacent to the liquid crystal panel 11 with no other member interposed between the optical sheet 15 and the liquid crystal panel 11.
- the diffuser plate 15 a and the optical sheet group 15 b having irregularities on the short side portion and the liquid crystal panel 11 disposed on the light emitting side of the optical sheet 15 are sandwiched between the holder 20 and the bezel 13. Yes.
- the convex portion 172 of the diffusing plate 15a and the convex portion 182 of the optical sheet group are the sheet supporting portions of the holder 20 as in FIG. It is supported by one surface 20 a and is disposed between the first surface 20 a and the liquid crystal panel 11.
- the liquid crystal panel 11 is supported by the second surface 20b, which is the upper surface of the projection (panel support portion) 20z formed to partially project on the first surface 20a, as in FIG.
- the second surface 20b and the bezel 13 are disposed in a sandwiched manner.
- the optical sheet 15 composed of the diffusion plate 15a and the optical sheet group 15b is sandwiched between the folded outer edge portion 21b of the chassis 14 and the liquid crystal panel 11 in the long side portion, as in FIGS. It is arranged in a form. That is, the optical sheet 15 is adjacent to the liquid crystal panel 11 with no other member interposed between the optical sheet 15 and the liquid crystal panel 11. Then, the diffuser plate 15a and the optical sheet group 15b having irregularities on the long side part, and the liquid crystal panel 11 disposed on the light emitting side of the optical sheet 15 are formed between the folded outer edge part 21b of the chassis 14 and the bezel 13. Sandwiched between them.
- the convex portion 152 of the diffusion plate 15a and the convex portion 162 of the optical sheet group are folded back as the sheet support portion of the chassis 14 as in FIG. It is supported by the outer edge portion 21 b and is disposed so as to be sandwiched between the folded outer edge portion 21 b and the liquid crystal panel 11.
- the liquid crystal panel 11 is supported by a projection (panel support portion) 250 formed on the inner surface of the folded outer edge portion 21b of the chassis 14 and sandwiched between the projection 250 and the bezel 13 as in FIG. Arranged in a shape.
- the backlight device 12 included in the liquid crystal display device 10 includes the diffusion plate 15a and the optical sheet group 15b configured as described above as the optical sheet 15, With the configuration in which the optical sheet 15 and the liquid crystal panel 11 are adjacent to each other without interposing other members, the liquid crystal display device 10 can be thinned. Then, irregularities (concave parts 171, 181, 151, 161, convex parts 172, 182, 152, 162) are formed on the short side part and the outer edge part of the long side part of the optical sheet 15, and sheet support is provided at the short side part.
- the projection 20z formed on the first surface 20a is inserted from the concave portions 171 and 181 of the optical sheet 15,
- the liquid crystal panel 11 is supported by the protrusion 20z.
- the convex portions 151 and 161 of the optical sheet are supported by the folded outer edge portion 21b of the chassis 14 serving as the sheet support portion, while the protrusion 250 formed on the folded outer edge portion 21b is formed as the concave portion of the optical sheet 15. It is assumed that the liquid crystal panel 11 is supported by the protrusions 250 inserted through 152 and 162.
- the pressing force from the liquid crystal panel 11 is difficult to reach the optical sheet 15. It becomes.
- the optical sheet 15 can be freely expanded and contracted or expanded while realizing a reduction in thickness, and the optical sheet 15 can be freely expanded even when thermal expansion due to heat generated from the cold cathode tube 17 occurs. Since it can be expanded and contracted or expanded, it is difficult for bending and wrinkles to occur in the central portion of the optical sheet 15 and the like.
- the liquid crystal display device of this embodiment also has a wide display area because it is not necessary to separately provide such two spaces (projection forming space and panel mounting space) in parallel.
- the metal protrusions 250 are screwed as the panel support portions through the holes 14b of the chassis 14, but, for example, as shown in FIG. 13, the chassis 14 as the sheet support portion. It can also comprise from the protrusion 260 arranged by welding on the folded outer edge portion 21b. Thus, reliable panel support can be realized even when the protrusions 260 are formed by welding.
- the reflection sheet 23 is provided with a protrusion insertion hole 23b, and a protrusion 260 formed by welding is inserted into the protrusion insertion hole 23b to realize support of the liquid crystal panel 11.
- the metal protrusion 250 is screwed through the hole 14b of the chassis 14 as the panel support portion.
- the protrusion 265 can be disposed by adhesion to the reflection sheet 23, for example.
- a frame 16 interposed between the chassis 14 and the bezel 13 is extended inward to the space between the liquid crystal panel 11 and the chassis 14, and the frame 16 is supported by the panel. It can also be used as a part.
- a part of the frame 16 is arranged on the inner side in the plan view (liquid crystal) so that the longitudinal frame 16 disposed along the outer edge portion 21b of the chassis 14 and extending along the outer edge portion 21b of the chassis 14 serves as a panel support portion. It can be configured such that it protrudes partially on the panel 11 side, and the protruding portion supports the liquid crystal panel 11.
- cold cathode tube is used as the light source in the above embodiment, other discharge tubes such as a hot cathode tube can be used.
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Abstract
Description
特許文献1では、光学シートに撓みやしわが生じることを回避するために、積層された光学シートの四隅にそれぞれ孔を形成し、その孔に対して所定のクリアランスを有した状態で保持部材を挿通した構成が開示されている。これにより、温度変化による各光学シートの伸縮率に格差があっても、各光学シートの伸縮を許容できるものとされている。
上記課題を解決するために、本発明の表示装置は、光源と、前記光源を収容するシャーシと、前記光源からの光を利用して表示を行う表示パネルと、前記光源と前記表示パネルとの間に配された光学シートと、を備え、前記表示パネルと前記光学シートとは、両者の間に他部材が介在しない状態で隣接してなり、前記シャーシは、その外縁部に、前記光学シートを支持するためのシート支持部を有するとともに、当該シート支持部上には前記表示パネルを支持するためのパネル支持部が配されてなり、前記光学シートは、その外縁部が、平面視内側に部分的に切り欠いた形の凹部と、当該凹部よりも外側に突出してなる凸部とを有して構成され、前記凸部が前記シート支持部にて支持される一方、前記パネル支持部は前記凹部内を挿通して前記表示パネルを支持してなることを特徴とする。
このように光源の長手方向に沿ってシート支持部を有する場合、当該長手方向におけるシートの撓みやしわの発生を好適に防止ないし抑制することが可能となる。また、特に光源の長手方向がシャーシの長手方向及び光学シートの長手方向と沿う形となる場合には、シートの長手方向における撓みやしわの発生を防止ないし抑制できるため、一層顕著な効果を奏することが可能となる。
このようにネジ止めによりパネル支持部を構成することにより、確実なパネル支持を実現できる。なお、この場合のパネル支持部は、突起本体と、その突起本体に連接された雄ネジ部とを有するものとすることができ、当該雄ネジ部が雌ネジ部と螺合してなる構成とすることができる。
このように溶接により突起物を形成することにより、確実なパネル支持を実現できる。なお、シート支持部を含むシャーシの内面に反射シート等を配設する場合には、当該反射シートに突起挿通孔を設け、溶接により形成した突起物を突起挿通孔に挿通して、パネル支持部を構成することができる。
このように接着により樹脂突起物を形成することにより、確実なパネル支持を実現できる。
このようにシャーシの外側に長手状部材を配し、その長手状部材を一部内側に突出してパネル支持部を構成することで、確実なパネル支持を実現できる。
このように、光源の配列方向に沿って光源の端部を覆う光源被覆部材を設け、当該光源被覆部材上をシート支持部とするとともに、そのシート支持部上にパネル支持部を形成することで、光源の配列方向におけるシートの撓みやしわの発生を好適に防止ないし抑制することが可能となる。なお、光源被覆部材は樹脂部材より構成することが好ましく、この場合、当該光源被覆部材の表面(上面)をシート支持部とし、当該シート支持部上に形成するパネル支持部は樹脂成形時にシート支持部から突出してなる形で成形することができる。このように、パネル支持部は、光源被覆部材の上面が部分的に突出した形で構成されたものとすることができ、この場合、別部材での突起物が不要となり、部品点数の削減を実現可能となる。
本発明によると、装置の薄型化と表示領域の広域化を実現できるとともに、光源とパネルとの間に配する光学シートにおいて撓みやしわが生じ難い表示装置を提供することが可能となる。
本発明の実施形態1について図面を参照しつつ説明する。
図1は本実施形態1のテレビ受信装置の概略構成を示す分解斜視図、図2は図1のテレビ受信装置が備える液晶表示装置の概略構成を示す分解斜視図、図3は図2の液晶表示装置の短辺方向に沿った第1の断面構成を示す断面図、図4は図2の液晶表示装置の短辺方向に沿った第2の断面構成を示す断面図、図5は図2の液晶表示装置が備える拡散板の平面構成を示す模式図、図6は図2の液晶表示装置が備える光学シート群の平面構成を示す模式図である。
液晶パネル(表示パネル)11は、一対のガラス基板が所定のギャップを隔てた状態で貼り合わせられるとともに、両ガラス基板間に液晶が封入された構成とされる。一方のガラス基板には、互いに直交するソース配線とゲート配線とに接続されたスイッチング素子(例えばTFT)と、そのスイッチング素子に接続された画素電極、さらには配向膜等が設けられ、他方のガラス基板には、R(赤色),G(緑色),B(青色)等の各着色部が所定配列で配置されたカラーフィルタや対向電極、さらには配向膜等が設けられている。なお、両基板の外側には偏光板11a,11bが配されている(図3及び図4参照)。
次に、本発明の実施形態2のテレビ受信装置について説明する。実施形態2のテレビ受信装置は、バックライト装置12が備える光学シート15の構成、及び光学シート15と液晶パネル11の挟持構成が実施形態1とは異なる。それ以外の構成については、概ね実施形態1のテレビ受信装置TVと同様の構成であるため、説明を省略する。図7は液晶表示装置の長辺方向に沿った第1の断面構成を示す断面図、図8は液晶表示装置の長辺方向に沿った第2の断面構成を示す断面図である。また、図9は液晶表示装置が備える拡散板の平面構成を示す模式図、図10は液晶表示装置が備える光学シート群の平面構成を示す模式図である。
次に、本発明の実施形態3のテレビ受信装置について説明する。実施形態3のテレビ受信装置は、バックライト装置12が備える光学シート15の構成、及び光学シート15と液晶パネル11の挟持構成が実施形態1とは異なる。それ以外の構成については、概ね実施形態1のテレビ受信装置TVと同様の構成であるため、説明を省略する。図11は液晶表示装置が備える拡散板の平面構成を示す模式図、図12は液晶表示装置が備える光学シート群の平面構成を示す模式図である。
以上、本発明の実施形態について示したが、本発明は上記記述及び図面によって説明した実施形態に限定されるものではなく、例えば次のような実施形態も本発明の技術的範囲に含まれる。
(1)上記実施形態1では、パネル支持部として金属製の突起250を、シャーシ14の孔14bを介してネジ止めする構成としたが、例えば図13に示すように、シート支持部たるシャーシ14の折返し外縁部21bに溶接により配した突起260から構成することもできる。このように溶接により突起260を形成する場合も、確実なパネル支持を実現できる。なお、この場合、反射シート23には突起挿通孔23bが設けられ、溶接により形成した突起260を突起挿通孔23bに挿通して、液晶パネル11の支持を実現している。
Claims (11)
- 光源と、
前記光源を収容するシャーシと、
前記光源からの光を利用して表示を行う表示パネルと、
前記光源と前記表示パネルとの間に配された光学シートと、を備え、
前記表示パネルと前記光学シートとは、両者の間に他部材が介在しない状態で隣接してなり、
前記シャーシは、その外縁部に、前記光学シートを支持するためのシート支持部を有するとともに、当該シート支持部上には前記表示パネルを支持するためのパネル支持部が配されてなり、
前記光学シートは、その外縁部が、平面視内側に部分的に切り欠いた形の凹部と、当該凹部よりも外側に突出してなる凸部とを有して構成され、
前記凸部が前記シート支持部にて支持される一方、前記パネル支持部は前記凹部内を挿通して前記表示パネルを支持してなることを特徴とする表示装置。 - 前記光源は、長手状の線状光源が並列配置された構成とされ、
前記シャーシは、前記光源の長手方向に沿って前記シート支持部を有することを特徴とする請求の範囲第1項に記載の表示装置。 - 前記パネル支持部は、前記シート支持部に対してネジ止めされてなることを特徴とする請求の範囲第1項又は請求の範囲第2項に記載の表示装置。
- 前記パネル支持部は、前記シート支持部に溶接された突起物であることを特徴とする請求の範囲第1項又は請求の範囲第2項に記載の表示装置。
- 前記パネル支持部は、前記シート支持部に接着された樹脂突起物であることを特徴とする請求の範囲第1項又は請求の範囲第2項に記載の表示装置。
- 前記シャーシの前記外縁部の外側に配され、当該シャーシの外縁部に沿った長手状部材を有し、
前記長手状部材は、その一部が平面視内側に部分的に突出され、その突出部分が前記パネル支持部として構成されていることを特徴とする請求の範囲第1項又は請求の範囲第2項に記載の表示装置。 - 前記光源は、長手状の線状光源が並列配置された構成とされ、
前記シャーシには、前記光源の並列方向に沿って、前記光源の端部を覆う光源被覆部材が配され、その光源被覆部材上に前記シート支持部が形成されるとともに、当該シート支持部上に前記パネル支持部が配されていることを特徴とする請求の範囲第1項から請求の範囲第6項のいずれか1項に記載の表示装置。 - 前記パネル支持部は、前記光源被覆部材の上面が部分的に突出した形で構成されていることを特徴とする請求の範囲第7項に記載の表示装置。
- 前記光学シートが、前記シャーシのシート支持部上に配される拡散板と、前記拡散板上に配され、当該拡散板よりも厚さの小さい拡散シート、レンズシート、反射型偏光シートを順不同で含む光学シート群と、を有してなることを特徴とする請求の範囲第1項から請求の範囲第8項のいずれか1項に記載の表示装置。
- 前記表示パネルが液晶を用いた液晶パネルであることを特徴とする請求の範囲第1項から請求の範囲第9項のいずれか1項に記載の表示装置。
- 請求の範囲第1項から請求の範囲第10項のいずれか1項に記載の表示装置を備えることを特徴とするテレビ受信装置。
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN2009801065392A CN101960366B (zh) | 2008-02-27 | 2009-02-02 | 显示装置和电视接收装置 |
| US12/867,778 US8310627B2 (en) | 2008-02-27 | 2009-02-02 | Display device and television receiver apparatus |
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| Application Number | Priority Date | Filing Date | Title |
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| JP2008-046690 | 2008-02-27 | ||
| JP2008046690 | 2008-02-27 |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2011186342A (ja) * | 2010-03-10 | 2011-09-22 | Sharp Corp | 画像表示装置 |
| WO2014010527A1 (ja) * | 2012-07-12 | 2014-01-16 | シャープ株式会社 | 表示装置、及びテレビ受信装置 |
| US8872998B2 (en) | 2010-03-10 | 2014-10-28 | Sharp Kabushiki Kaisha | Image display apparatus |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| US8068292B2 (en) * | 2009-12-30 | 2011-11-29 | Motorola Mobility, Inc. | Electronic device including a stepped lens |
| JP5039814B2 (ja) * | 2010-07-30 | 2012-10-03 | シャープ株式会社 | 画像表示装置およびその組み立て方法 |
| WO2013024712A1 (ja) * | 2011-08-12 | 2013-02-21 | シャープ株式会社 | 照明装置、表示装置、及びテレビ受信装置 |
| KR101836397B1 (ko) * | 2011-09-19 | 2018-03-09 | 엘지전자 주식회사 | 디스플레이 장치 |
| TWI432850B (zh) * | 2011-12-30 | 2014-04-01 | Au Optronics Corp | 直下式背光模組及使用其之顯示裝置 |
| KR20140018608A (ko) * | 2012-08-02 | 2014-02-13 | 삼성디스플레이 주식회사 | 백라이트 유닛 |
| CN102855823A (zh) * | 2012-08-28 | 2013-01-02 | 李崇 | 具有良好视觉效果的全色led显示屏 |
| CN107850799B (zh) * | 2015-07-28 | 2021-07-30 | 堺显示器制品株式会社 | 显示装置 |
| CN107578701B (zh) * | 2017-10-13 | 2024-06-28 | 惠科股份有限公司 | 一种夹持固定方法及显示装置 |
| US11058163B2 (en) | 2018-02-27 | 2021-07-13 | Levi Strauss & Co. | Automated apparel collection imagery |
| WO2019229948A1 (ja) * | 2018-05-31 | 2019-12-05 | 堺ディスプレイプロダクト株式会社 | 表示装置 |
| WO2021042068A1 (en) | 2019-08-29 | 2021-03-04 | Levi Strauss & Co. | Digital showroom with virtual previews of garments and finishes |
| CN114999314A (zh) * | 2022-04-22 | 2022-09-02 | 鸿富锦精密工业(深圳)有限公司 | 多媒体装置 |
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| WO2007037038A1 (ja) * | 2005-09-29 | 2007-04-05 | Sharp Kabushiki Kaisha | 表示装置用照明装置および表示装置 |
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| KR100840715B1 (ko) * | 2002-05-28 | 2008-06-23 | 삼성전자주식회사 | 백 라이트 어셈블리 및 이를 갖는 액정 표시 장치 |
| JP4664757B2 (ja) * | 2005-07-08 | 2011-04-06 | 株式会社 日立ディスプレイズ | 液晶表示装置およびその照明装置 |
| KR101177909B1 (ko) * | 2005-11-16 | 2012-08-28 | 엘지디스플레이 주식회사 | 액정 표시 장치용 백라이트 어셈블리 및 이를 이용한 액정표시 모듈 |
| CN100529897C (zh) * | 2005-12-07 | 2009-08-19 | 鸿富锦精密工业(深圳)有限公司 | 直下式背光模组 |
| JP2007233251A (ja) * | 2006-03-03 | 2007-09-13 | Mitsubishi Electric Corp | 表示装置 |
| JP2007256385A (ja) | 2006-03-20 | 2007-10-04 | Sharp Corp | 光学シートユニット |
| KR101293128B1 (ko) * | 2006-05-15 | 2013-08-12 | 엘지디스플레이 주식회사 | 액정표시장치모듈 |
| WO2007148444A1 (ja) * | 2006-06-21 | 2007-12-27 | Sharp Kabushiki Kaisha | 光源ユニットおよび表示装置 |
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- 2009-02-02 CN CN2009801065392A patent/CN101960366B/zh not_active Expired - Fee Related
- 2009-02-02 US US12/867,778 patent/US8310627B2/en not_active Expired - Fee Related
- 2009-02-02 WO PCT/JP2009/051726 patent/WO2009107459A1/ja not_active Ceased
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| WO2007037038A1 (ja) * | 2005-09-29 | 2007-04-05 | Sharp Kabushiki Kaisha | 表示装置用照明装置および表示装置 |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2011186342A (ja) * | 2010-03-10 | 2011-09-22 | Sharp Corp | 画像表示装置 |
| US8872998B2 (en) | 2010-03-10 | 2014-10-28 | Sharp Kabushiki Kaisha | Image display apparatus |
| WO2014010527A1 (ja) * | 2012-07-12 | 2014-01-16 | シャープ株式会社 | 表示装置、及びテレビ受信装置 |
Also Published As
| Publication number | Publication date |
|---|---|
| CN101960366B (zh) | 2012-09-05 |
| CN101960366A (zh) | 2011-01-26 |
| US20100309106A1 (en) | 2010-12-09 |
| US8310627B2 (en) | 2012-11-13 |
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