WO2006100744A1 - 導光板および光源ユニット並びにディスプレイパネルユニットおよび電子機器 - Google Patents
導光板および光源ユニット並びにディスプレイパネルユニットおよび電子機器 Download PDFInfo
- Publication number
- WO2006100744A1 WO2006100744A1 PCT/JP2005/005028 JP2005005028W WO2006100744A1 WO 2006100744 A1 WO2006100744 A1 WO 2006100744A1 JP 2005005028 W JP2005005028 W JP 2005005028W WO 2006100744 A1 WO2006100744 A1 WO 2006100744A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- light
- plate member
- light guide
- protrusion
- guide plate
- 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
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- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/0001—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
- G02B6/0011—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
- G02B6/0013—Means for improving the coupling-in of light from the light source into the light guide
- G02B6/0023—Means for improving the coupling-in of light from the light source into the light guide provided by one optical element, or plurality thereof, placed between the light guide and the light source, or around the light source
- G02B6/0028—Light guide, e.g. taper
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/0001—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
- G02B6/0011—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
- G02B6/0033—Means for improving the coupling-out of light from the light guide
- G02B6/0035—Means for improving the coupling-out of light from the light guide provided on the surface of the light guide or in the bulk of it
- G02B6/0036—2-D arrangement of prisms, protrusions, indentations or roughened surfaces
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/0001—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
- G02B6/0011—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
- G02B6/0033—Means for improving the coupling-out of light from the light guide
- G02B6/0035—Means for improving the coupling-out of light from the light guide provided on the surface of the light guide or in the bulk of it
- G02B6/0038—Linear indentations or grooves, e.g. arc-shaped grooves or meandering grooves, extending over the full length or width of the light guide
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/0001—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
- G02B6/0011—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
- G02B6/0033—Means for improving the coupling-out of light from the light guide
- G02B6/0035—Means for improving the coupling-out of light from the light guide provided on the surface of the light guide or in the bulk of it
- G02B6/0045—Means for improving the coupling-out of light from the light guide provided on the surface of the light guide or in the bulk of it by shaping at least a portion of the light guide
- G02B6/0046—Tapered light guide, e.g. wedge-shaped light guide
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/0001—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
- G02B6/0011—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
- G02B6/0033—Means for improving the coupling-out of light from the light guide
- G02B6/0058—Means for improving the coupling-out of light from the light guide varying in density, size, shape or depth along the light guide
- G02B6/0061—Means for improving the coupling-out of light from the light guide varying in density, size, shape or depth along the light guide to provide homogeneous light output intensity
-
- 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
- G02B6/0066—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 characterised by the light source being coupled to the light guide
- G02B6/0068—Arrangements of plural sources, e.g. multi-colour light sources
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- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/0001—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
- G02B6/0011—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
- G02B6/0066—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 characterised by the light source being coupled to the light guide
- G02B6/0073—Light emitting diode [LED]
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- 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
- G02F1/133504—Diffusing, scattering, diffracting elements
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- 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
- G02F1/133606—Direct backlight including a specially adapted diffusing, scattering or light controlling members
-
- 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
- Light guide plate Light guide plate, light source unit, display panel unit, and electronic device
- the present invention relates to an electronic device such as a mobile phone terminal device, and particularly relates to a light guide plate, a light source unit, and a display panel unit incorporated in such an electronic device.
- a mobile phone terminal device incorporates a liquid crystal display (LCD) panel unit that divides a display screen.
- LCD liquid crystal display
- the light guide plate faces the surface of the LCD panel.
- Plural rows of prisms are formed on the surface of the light guide plate.
- a light guide member faces the end surface of the light guide plate. For example, a pair of light sources face each other on the side of the light guide member.
- Light emitted from the light source enters the light guide plate by the action of the light guide member.
- the incident light is directed toward the LCD panel by the action of the prism of the light guide plate.
- the emitted light is emitted toward the outside of the mobile phone terminal device by the action of a reflector attached to the back of the LCD panel. In this way, text and graphics are displayed on the display screen.
- a so-called dark line is generated on the light guide plate based on a processing error of the light guide member.
- the dark line causes uneven brightness on the LCD panel display screen.
- the light guide plate is arranged between the user's eyes and the LCD panel, uneven brightness of the display screen must be avoided.
- Patent Document 1 Japanese Unexamined Patent Publication No. 2003-141918
- Patent Document 2 Japanese Patent Laid-Open No. 11 232918
- Patent Document 3 Japanese Patent Laid-Open No. 10-227918
- Patent Document 4 Japanese Patent Laid-Open No. 10-48629
- the present invention has been made in view of the above circumstances, and an object thereof is to provide a light guide plate, a light source unit, a display panel unit, and an electronic device that can realize a luminance distribution as uniform as possible. To do.
- an incident surface defined on an end surface of the light transmissive plate member and a plurality of surfaces formed on the surface of the light transmissive plate member at positions away from the incident surface.
- a light guide plate comprising a light scattering structure formed on a surface of a plate member and having a boundary surface that diffusely reflects light is provided.
- the light scattering structure may have polishing marks!
- the polishing mark may be formed based on, for example, sand paper.
- the light scattering structure may include a curved prism that is curved and extends toward a flat region.
- the light scattering structure may include a protrusion that projects the surface force of the light transmitting plate member.
- the light scattering structure includes a first protrusion protruding from the surface of the light transmitting plate member, and a first protrusion protruding from the surface of the light transmitting plate member at a position farther from the flat area than the first protrusion.
- Two protrusions may be provided.
- the boundary surface between the first protrusion and the light transmission plate member may be defined larger in the direction orthogonal to the arbitrary straight line than the boundary surface between the second protrusion and the light transmission plate member.
- the first protrusion is defined to be larger in the direction orthogonal to the arbitrary straight line than the second protrusion, the light is dispersed while spreading widely in the in-plane direction of the light guide plate compared to the second protrusion.
- the first protrusion is also arranged closer to the flat area than the second protrusion.
- a part of the light dispersed by the first protrusion can be guided relatively more to the extended line of the flat region than the second protrusion.
- the light distribution plate can achieve a luminance distribution that is as uniform as possible.
- Such a light guide plate can be used particularly effectively when, for example, the difference in the amount of light between the flat region and a region close to the flat region out of the flat region is relatively large.
- the light scattering structure has a first protrusion protruding from the surface of the light transmission plate member and a light transmission plate member at a position farther from the flat region than the first protrusion, as described above.
- the boundary surface between the first protrusion and the light transmission plate member may be defined to be smaller in the direction perpendicular to the arbitrary straight line than the boundary surface between the second protrusion and the light transmission plate member.
- the first protrusion is smaller than the second protrusion in a direction perpendicular to an arbitrary straight line, so that the light is spread while being spread smaller in the in-plane direction of the light guide plate than the second protrusion.
- the first protrusion is arranged closer to the flat area than the second protrusion. As a result, part of the light scattered by the first protrusion is guided to the extension of the flat region.
- the second protrusion the light is dispersed while spreading widely in the in-plane direction of the light guide plate compared to the first protrusion.
- the light guide plate can achieve as uniform luminance distribution as possible.
- Such a light guide plate can be used particularly effectively when, for example, the difference in the amount of light is relatively large between a flat region and a region other than the flat region that is separated from the flat region force.
- the area of the interface between the first protrusion and the light transmitting plate member is the second protrusion and the light transmission arranged farther from the flat region than the first protrusion. It may be defined larger than the area of the boundary surface of the plate member.
- the first protrusion has a larger boundary area than the second protrusion. Disperses while spreading widely in the in-plane direction. Also, the first protrusion is arranged closer to the flat area than the second protrusion.
- the light distribution plate can achieve a luminance distribution that is as uniform as possible.
- Such a light guide plate can be used particularly effectively, for example, when the difference in the amount of light between the flat region and the region close to the flat region out of the flat region is relatively large.
- the area of the boundary interface between the first protrusion and the light transmission plate member is the second protrusion and the light transmission arranged farther from the flat region than the first protrusion. It may be defined smaller than the area of the boundary surface of the plate member.
- the first protrusion in the first projection, the light is dispersed while being spread smaller in the in-plane direction of the light guide plate than in the second projection.
- the first protrusion is disposed closer to the flat area than the second protrusion. As a result, part of the light scattered by the first protrusion is guided to the linear region.
- the second protrusion light is dispersed while spreading widely in the in-plane direction of the light guide plate compared to the first protrusion. Even if the second protrusion is arranged at a position that is separated by a flat region force compared to the first protrusion, a relatively large amount of light scattered by the second protrusion is guided to the linear region.
- the light guide plate can achieve as uniform a luminance distribution as possible. Such a light guide plate can be used particularly effectively when, for example, the difference in the amount of light between the flat region and the region other than the flat region, which is separated from the flat region force, is relatively large.
- the shapes of the boundary surfaces of the first and second protrusions and the light transmitting plate member may be defined in common.
- the first and second protrusions may be provided with a reference line specific to the shape of the boundary surface across the boundary surface.
- the crossing angle between the reference line of the first protrusion and the arbitrary straight line may be defined to be larger than the crossing angle between the reference line of the second protrusion and the arbitrary straight line.
- the first protrusion is also arranged closer to the flat area than the second protrusion.
- a part of the light dispersed by the first protrusion can be guided more on the extended line of the flat region than the second protrusion.
- the same luminance distribution as possible can be realized in the light guide plate as described above.
- the light scattering structure includes a first projection group including a plurality of first projections projecting from the surface of the light transmission plate member, and a flat region cover that is flatter than the first projection.
- a plurality of second protrusion forces that protrude from the surface force of the light transmitting plate member at a position away from the second protrusion group.
- the protrusions of the first protrusion group may be arranged more densely than the protrusions of the second protrusion group.
- the projections of the first projection group are arranged denser than the projections of the second projection group.
- the first protrusion group is arranged closer to the flat area than the second protrusion group. As a result, more light is dispersed in the first protrusion group than in the second protrusion group. A part of the light dispersed in the first protrusion group can be guided relatively more on the extension line of the flat region than in the second protrusion group.
- the light distribution plate can achieve a luminance distribution that is as uniform as possible.
- the incident surface defined on the end surface of the light transmissive plate member, the plurality of rows of prisms formed on the surface of the light transmissive plate member at a position away from the incident surface, the incident surface, A flat region defined on the surface of the light transmission plate member on an arbitrary straight line between the prisms and a light scattering member disposed on the surface of the light transmission plate member outside the flat region between the incident surface and the prism.
- a light guide plate comprising a plurality of spheres that cause In such a light guide plate, the incident surface force can be scattered by the action of a sphere.
- the light distribution plate can achieve as uniform luminance distribution as possible.
- the light guide plate as described above may be incorporated into a light source unit, for example.
- the light source unit is defined by a light source, a light guide member that reflects light emitted from the light source, outputs an output surface force, a light transmissive plate member that faces the light guide member, and an end surface of the light transmissive plate member.
- a light scattering structure having a boundary surface for irregularly reflecting light.
- the light guide plate can achieve as uniform luminance distribution as possible.
- the light guide plate as described above may be incorporated into a display panel unit, for example, a liquid crystal display (LCD) panel unit.
- the display panel unit is defined by a light source, a light guide member that reflects light emitted from the light source force and outputs an output surface force, a light transmissive plate member that faces the light guide member, and an end surface of the light transmissive plate member. And an incident surface that faces the exit surface of the light guide member, and a plurality of rows of prisms that are formed on the surface of the light transmission plate member at a position away from the incident surface and reflect light emitted from the light guide member.
- the light guide plate as described above may be incorporated in an electronic device such as a mobile phone terminal device.
- the electronic device includes a housing, a light source incorporated in the housing, a light guide member that reflects light emitted from the light source and outputs the light from an output surface, a light transmission plate member that faces the light guide member, light An incident surface that is defined on the end surface of the transmission plate member and faces the exit surface of the light guide member, and is formed on the surface of the light transmission plate member at a position away from the incident surface, and emits light emitted from the light guide member.
- FIG. 1 is a perspective view schematically showing an external appearance of a specific example of an electronic apparatus according to an embodiment of the present invention, that is, a mobile phone terminal device.
- FIG. 2 is an exploded perspective view schematically showing the configuration of the LCD panel unit of the present invention.
- FIG. 3 is a partial plan view schematically showing the configuration of the LCD panel unit of the present invention.
- FIG. 4 is a cross-sectional view taken along line 44 in FIG. 3, and schematically shows the configuration of the LCD panel unit of the present invention.
- FIG. 5 is a graph showing a luminance distribution of an LCD panel unit according to a comparative example.
- FIG. 6 is a graph showing the luminance distribution of an LCD panel unit according to a specific example.
- FIG. 7 is a cross-sectional view corresponding to FIG. 4 for explaining the light scattering structure.
- FIG. 8 is a partial plan view schematically showing a configuration of a light guide plate according to a specific example.
- FIG. 9 is a partial plan view schematically showing a configuration of a light guide plate according to a modification.
- FIG. 10 is a partial plan view schematically showing a configuration of a light guide plate according to another modification.
- FIG. 11 is a partial plan view schematically showing a configuration of a light guide plate according to another modification.
- FIG. 12 is a partial plan view schematically showing a configuration of a light guide plate according to another modification.
- FIG. 13 is a partial plan view schematically showing a configuration of a light guide plate according to another modification.
- FIG. 14 is a partial plan view schematically showing a configuration of a light guide plate according to another modification.
- FIG. 15 is a partial plan view schematically showing a configuration of a light guide plate according to another modification.
- FIG. 16 is a partial plan view schematically showing a configuration of a light guide plate according to another modification.
- FIG. 1 schematically shows an external appearance of a specific example of an electronic apparatus, that is, a mobile phone terminal device 11 according to an embodiment of the present invention.
- This mobile phone terminal device 11 includes a transmitter 12 and a receiver 13 With.
- the handset 13 can rotate relative to the handset 12 about the rotation axis 14.
- the transmitter 12 includes a first casing, that is, a main casing 15.
- the handset 13 includes a second casing, that is, a display casing 16.
- the main body casing 15 and the display casing 16 may be formed from a reinforced resin material cover.
- a printed circuit board (not shown) is incorporated in the main body casing 15.
- processing circuits such as a CPU (Central Processing Unit) and a memory are mounted on the printed circuit board.
- An input button 17 such as an on-hook button, an off-hook button, or a dial key is embedded on the surface of the transmitter 12. The CPU executes various processes according to the operation of the input button 17.
- a liquid crystal display (LCD) panel unit 18 and!, And a flat display panel unit are incorporated on the surface of the display housing 16.
- a window hole, that is, a display opening 19 is defined on the surface of the display housing 16.
- the LCD panel unit 18 exposes a flat display screen in the display opening 19.
- Various texts and graphics are displayed on the display screen of the LCD panel unit 18 in accordance with the processing operation of the CPU.
- the LCD panel unit 18 is configured as a so-called front light type. That is, the LCD panel unit 18 includes a rectangular LCD panel 21.
- the LCD panel 21 constitutes a liquid crystal cell between a pair of glass substrates, for example. Each liquid crystal cell corresponds to a pixel on the display screen.
- Such an LCD panel 21 is configured as a so-called reflection type.
- a reflector 22 is attached to the back of the glass substrate.
- a display control circuit board (not shown) may be disposed on the back surface of the reflection plate 22.
- the LCD panel unit 18 includes a light guide plate 23 that faces the surface of the LCD panel 21 with a flat back surface.
- the light guide plate 23 may be formed of a rectangular light transmission plate member.
- the light guide plate 23 has four end surfaces orthogonal to the back surface. Each end face is a flat surface. One end surface of the light guide plate 23 functions as the incident surface 24.
- each prism 25 extends parallel to the incident surface 24 on the surface of the light guide plate 23.
- the prism 25 is formed in the display screen area of the LCD panel unit 18. In the display screen area, the surface of the light guide plate 23 approaches the back surface as the distance from the incident surface 24 increases. In the region, the thickness of the light guide plate 23 gradually decreases as the distance from the incident surface 24 increases.
- the light guide plate 23 may be made of plastic, and the strength of the resin material may also be molded!
- a flat region 26 is defined on an arbitrary straight line between the incident surface 24 and the prism 25.
- the flat area 26 is arranged outside the display screen area of the LCD panel unit 18.
- a flat surface defined horizontally is defined on the back surface of the light guide plate 23.
- an arbitrary straight line extends in a vertical direction orthogonal to the prism 25, for example.
- the flat region 26 extends in the vertical direction perpendicular to the incident surface 24.
- a light scattering structure 27 disposed between the incident surface 24 and the prism 25 is further formed on the surface of the light guide plate 23.
- the light scattering structure 27 has a boundary surface that diffuses light.
- the light scattering structure 27 is formed outside the flat region 26. Similar to the flat region 26, the light scattering structure 27 is disposed outside the display screen region.
- the light scattering structure 27 has fine polishing marks. In this way, the light scattering structure 27 scatters light incident from the incident surface 24.
- the surface roughness Ra of the light scattering structure 27 may be set to about 0.08 m, for example.
- a light guide member 28 faces the incident surface 24 of the light guide plate 23.
- the light guide member 28 is opposed to the light guide plate 23 at an output surface defined parallel to the incident surface 24 of the light guide plate 23.
- the light guide member 28 includes a reflective surface 29 that faces the incident surface 24 of the light guide plate 23 in the light guide member 28.
- Plural rows of prisms are formed on the reflecting surface 29. The prism extends in the vertical direction perpendicular to the surface of the light guide plate 23. Prism is arranged at a minute interval
- a pair of light sources 31 and 31 are faced to the side surface of the light guide member 28.
- the light guide member 28 is disposed between the light sources 31 and 31.
- an LED (light emitting diode) 32 is incorporated in the light source 31.
- Each LED 32 faces the side surface of the light guide member 28.
- the LED 32 can irradiate, for example, white light toward the side surface of the light guide member 28.
- the light incident straight from the incident surface 24 is directed toward the surface of the LCD panel 21 by the action of the prism 25.
- light incident on the incident surface 24 at a predetermined incident angle is irradiated toward the surface of the LCD panel 21 by the action of the prism 25.
- the light guide plate 23 functions as a so-called surface light source.
- the LED 32 that is, the light source 31, the light guide member 28, and the light guide plate 23 function as the light source unit of the present invention.
- the light incident upon the light scattering structure 27 of the light guide plate 23 is scattered by the action of the light scattering structure 27.
- the light is scattered in the in-plane direction of the light guide plate 23.
- the dispersed light is guided from the flat region 26 to the linear regions 33 and 33 extending in the vertical direction perpendicular to the prism 25.
- the guided light is directed toward the surface of the LCD panel 21 by the action of the prism 25 and is emitted.
- the light emitted from the light guide plate 23 passes through the LCD panel 21.
- the transmitted light is reflected by the reflector 22.
- the reflected light passes through the light guide plate 23 and is irradiated from the display opening 18 to the outside.
- a graphic can be displayed on the display screen of the LCD panel unit 18 by the action of the liquid crystal cell and the color filter of the LCD panel 21.
- the light guide plate 23 As described above, it is only necessary to perform a sanding process outside the flat region 26.
- sandpaper may be used for the sanding process.
- the position of the flat region 26 is specified on the light guide plate 23.
- flat A light guide member 28 is prepared in advance for specifying the position of the carrier region 26. The light emitted from the light guide member 28 is observed.
- the flat area 26 is aligned with an area where there is little emitted light.
- a simulation may be performed in observing the light emitted from the light guide member 28.
- the characteristics of the light emitted from the light guide member 28 are determined based on the accuracy of the prism of the reflecting surface 29. The accuracy of the prism depends on the accuracy of the mold used when manufacturing the light guide member 28. Therefore, as long as the same mold is used, the emitted light from the light guide member 28 can be expected to have the same characteristics.
- the inventor has verified the effect of the LCD panel unit 18 as described above.
- Specific examples and comparative examples were prepared for verification.
- the above-described flat region 26 and the light scattering structure 27 are formed on the light guide plate 23.
- the flat region 26 was arranged in a region with little incident light.
- the formation of the flat region and the light scattering structure was omitted.
- Other configurations were formed in the same manner as the LCD panel unit according to the specific example.
- a light guide plate having a size of 2 inches was used in the specific example and the comparative example.
- the luminance was measured in the specific example and the comparative example.
- the luminance was measured on a straight line defined by a predetermined distance from the incident surface 23 in the display screen area.
- a straight line was defined parallel to prism 25.
- a luminance meter was used for the measurement.
- the human eye reacts sensitively to uneven brightness that occurs in the display screen of the LCD panel unit. Therefore, even if the amount of light in the entire display screen of the LCD panel unit 18 is slightly reduced, the appearance of the display screen of the LCD panel unit 18 can be remarkably improved as compared with the case where uneven brightness occurs.
- the length L of the light scattering structure 27 defined in the direction away from the incident surface 24 is desirably set to be equal to or less than the square root of 3.
- the incident angle oc is defined as an angle intersecting one horizontal plane on the front and back surfaces of the light guide plate 23.
- each curved prism 34 may be configured by a curved line spreading in an arc from the incident surface 24 side toward the prism 25. The curve approaches the entrance surface 24 as the force on the flat region 26 increases.
- the shape of each curved prism 34 may be defined in common in each flat region 26.
- the light incident from the incident surface 24 is scattered by the function of the curved prism 34. Part of the scattered light can be guided to the linear region 33 relatively easily. In the linear region 33, sufficient light is guided to the prism 25. As uniform luminance distribution as possible can be realized on the display screen of the LCD panel unit 18.
- the same reference numerals are assigned to configurations and structures equivalent to those of the above-described embodiment.
- a first resin plate including the prism 25 and a second resin plate including the curved prism 34 may be molded.
- the first and second grease plates may be molded separately based on the mold. Thereafter, the first and second resin plates need only be bonded together.
- the light guide plate 23 is formed.
- the curved shape of the curved prism 34 should be adjusted according to the amount of light in the linear region 33!
- the light scattering structure 27 may include a plurality of protrusions 35, 35... That also protrude the surface force of the light guide plate 23 instead of the prism 34.
- the protrusions 35 may be arranged at equal intervals.
- Each protrusion 35 may protrude from the surface of the light guide plate 23 in, for example, a polygonal pyramid shape.
- each protrusion 35 protrudes into a quadrangular pyramid shape, for example.
- the shape of the boundary surface between each projection 35 and the light guide plate 23 may be defined in common. Since each projection 35 is formed in a quadrangular pyramid shape, the boundary surface is defined as a quadrilateral.
- the protrusion 35 has a first protrusion 36 that also projects the surface force of the light guide plate 23, and a position farther from the flat region 26 than the first protrusion 36.
- the second projection 37 may also be configured such that the surface force of the light guide plate 23 also projects.
- the first protrusion 36 is disposed in the vicinity of the flat region 26.
- the boundary surface between the first protrusion 36 and the light guide plate 23 is defined larger in the direction perpendicular to the flat region 26 than the boundary surface between the second protrusion 37 and the light guide plate 23.
- the area of the boundary surface of the first protrusion 36 is set larger than the area of the boundary surface of the second protrusion 37.
- the boundary surface only needs to be defined smaller in the direction perpendicular to the flat region 26 from the first protrusion 36 toward the second protrusion 37. Similarly, the area of the boundary surface only needs to be set gradually smaller from the first protrusion 36 toward the second protrusion 37.
- the light incident from the incident surface 24 is scattered by the action of the first and second protrusions 36 and 37.
- the first protrusion 36 compared to the second protrusion 37, the light is dispersed while spreading widely in the in-plane direction of the light guide plate 23.
- the first protrusion 36 is arranged closer to the flat region 26 than the second protrusion 37.
- a part of the light dispersed by the first protrusion 36 can be guided relatively more to the linear region 33 than the second protrusion 37.
- a luminance distribution that is as uniform as possible can be realized.
- the light guide plate 23 is formed in the linear region 33 out of the regions other than the linear region 33 and the linear region 33. Recently, the difference in the amount of light between the region and the region is relatively large, and can be used particularly effectively.
- the boundary surface between the first protrusion 36 and the light guide plate 23 is defined to be smaller in the direction parallel to the flat region 26 than the boundary surface between the second protrusion 37 and the light guide plate 23. Also good.
- the shape of the boundary surface between the first and second protrusions 36 and 37 and the light guide plate 23 may be defined in common, for example. That is, the boundary surface between the first and second protrusions 36 and 37 may be defined in a similar shape. In this case, the area of the boundary surface should be set smaller gradually as the first protrusion 36 moves toward the second protrusion 37.
- the light guide plate 23 since a common shape is defined at the boundary surface between the first and second protrusions 36 and 37, the light is dispersed with the same spread in the in-plane direction of the light guide plate 23. Since an area larger than the boundary surface of the second protrusion 37 is set at the boundary surface of the first protrusion 36, much light can be dispersed by the first protrusion 36. Also, the first protrusion 36 is arranged closer to the flat region 26 than the second protrusion 37. As a result, a part of the light dispersed by the first protrusions 36 can be guided relatively more to the linear region 33 than the second protrusions 37. Thus, as described above, the luminance distribution as uniform as possible can be realized on the display screen of the LCD panel unit 18.
- the first protrusion 36 and the second protrusion 37 may be arranged opposite to the arrangement shown in FIG.
- the boundary surface between the first protrusion 38 and the light guide plate 23 may be defined to be smaller in the direction perpendicular to the flat region 26 than the boundary surface between the second protrusion 39 and the light guide plate 23.
- the area of the boundary surface of the first protrusion 38 may be set larger than the area of the boundary surface of the second protrusion 39.
- the boundary surface should be largely defined in the direction perpendicular to the flat region 26 as the force from the first protrusion 38 to the second protrusion 39 increases. Thus, the area of the boundary surface is gradually increased from the first protrusion 38 toward the second protrusion 39.
- the light incident from the incident surface 24 is scattered by the function of the first protrusion 38.
- the light is dispersed while spreading in the in-plane direction of the light guide plate 23.
- the first protrusion 38 is also arranged closer to the flat region 26 than the second protrusion 39. As a result, a relatively large amount of light scattered by the first protrusion 38 can be guided to the linear region 33. That On the other hand, in the second protrusion 39, the light is dispersed while spreading widely in the in-plane direction of the light guide plate 23 compared to the first protrusion 38.
- the reference line 41 across the boundary interface with the light guide plate 23 is defined by each protrusion 35
- the reference line 41 of the first protrusion 42 and The crossing angle oc of the flat region 26 is set larger than the reference line 41 of the second protrusion 43 and the crossing angle ⁇ of the flat region 26.
- the shape of the boundary surface of each protrusion 35 is defined in common, for example.
- Reference line 41 is specific to the shape of the interface. Since the boundary surface is defined by a quadrilateral, the reference line 41 is defined by a diagonal of the quadrilateral.
- the crossing angle ⁇ of the second protrusion 43 may be set to 0 degree. The crossing angle between the reference line 41 and the flat region 26 only needs to be set gradually smaller from the first protrusion 42 toward the second protrusion 43.
- the light incident from the incident surface 24 is scattered by the function of the first and second protrusions 42 and 43.
- the first protrusion 42 diffuses light while spreading toward the linear region 33 in the in-plane direction of the light guide plate 23.
- the first protrusion 42 is disposed close to the flat region 26. As a result, a part of the light scattered by the first protrusions 42 can be guided relatively more to the linear region 33 than the second protrusions 43.
- uniform luminance distribution as possible can be realized on the display screen of the LCD panel unit 18 as described above.
- the light scattering structure 27 includes a first protrusion group 44 composed of a plurality of protrusions 35, and a plurality of light scattering structures 27 at positions farther from the flat region 26 than the first protrusion group 44.
- a second projection group 45 composed of 35 projections.
- the first projection group 44 is disposed in the vicinity of the flat region 26.
- the protrusions 35 of the first protrusion group 44 are arranged denser than the protrusions 35 of the second protrusion group 45. That is, the arrangement density of the protrusions 35 is set larger in the first protrusion group 44 than in the second protrusion group 45.
- each projection 35 If the shape of the interface is defined in common,
- the first and second protrusion groups 44 and 45 scatter light with the same spread in the in-plane direction of the light guide plate 23. Since the projections 35 of the first projection group 44 are arranged more densely than the projections 35 of the second projection group 45, the first projection group 44 emits more light than the second projection group 45. scatter. Also, the first projection group 44 is arranged closer to the flat region 26 than the second projection group 45. As a result, a part of the light dispersed in the first projection group 44 can be guided relatively more to the linear region 33 than in the second projection group 45. As described above, as uniform luminance distribution as possible can be realized on the display screen of the LCD panel unit 18 as described above.
- the protrusion 35 may protrude in a surface force of the light guide plate 23, for example, a hemispherical shape.
- the protrusions 35 may be arranged at equal intervals, for example, as described above.
- the shape of the boundary surface between each projection 35 and the light guide plate 23 may be defined in common. Due to the light scattering structure 27, the light incident from the incident surface 24 is scattered. The light is dispersed in the in-plane direction of the light guide plate 23. A part of the dispersed light can be guided to the linear region 33 relatively easily. As uniform brightness distribution as possible can be realized on the display screen of the LCD panel unit 18.
- the light guide plate 23 a may include a plurality of spheres 46 disposed between the incident surface 24 and the prism 25 instead of the light scattering structure 27.
- the sphere 46 is arranged outside the flat region 26.
- the sphere 46 may be made of a metal sphere having a glossy surface!
- the sphere 46 may be fixed to the surface of the light guide plate 23a based on, for example, a resin adhesive 47.
- the light incident from the incident surface 24 can be scattered by the function of the sphere 46.
- the brightness distribution as uniform as possible can be realized on the display screen of the LCD panel unit 18.
- such a light guide plate 23a is a first sphere disposed close to the flat region 26, and a second sphere disposed on the surface of the light guide plate 23 at a position farther from the flat region 26 than the first sphere. It may be composed of a sphere.
- the first sphere may be defined larger than the second sphere.
- the size of the sphere 46 may be set gradually smaller toward the first sphere force second sphere.
- the light guide plate 23a includes a first sphere group composed of a plurality of spheres 46 and a first sphere group.
- a second sphere group composed of a plurality of spheres 46 arranged away from the flat region 26. That is, the spheres 46 of the first sphere group may be arranged more densely than the spheres 46 of the second sphere group.
- the light scattering structure 27 and the sphere 46 may be disposed on the back surface of the light guide plates 23 and 23a, for example.
- the LCD panel unit 18 as described above can be used for other electronic devices such as a PDA (Personal Digital Assistant), a digital camera, and a personal computer in addition to the mobile phone terminal device 11.
- the light guide plates 23 and 23a as described above can be incorporated into a so-called backlight type LCD panel unit in addition to the front light type.
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- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- Nonlinear Science (AREA)
- Mathematical Physics (AREA)
- Chemical & Material Sciences (AREA)
- Crystallography & Structural Chemistry (AREA)
- Engineering & Computer Science (AREA)
- Microelectronics & Electronic Packaging (AREA)
- Planar Illumination Modules (AREA)
- Liquid Crystal (AREA)
- Optical Elements Other Than Lenses (AREA)
Abstract
Description
Claims
Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/JP2005/005028 WO2006100744A1 (ja) | 2005-03-18 | 2005-03-18 | 導光板および光源ユニット並びにディスプレイパネルユニットおよび電子機器 |
| JP2007509098A JPWO2006100744A1 (ja) | 2005-03-18 | 2005-03-18 | 導光板および光源ユニット並びにディスプレイパネルユニットおよび電子機器 |
| CNA2005800491750A CN101142443A (zh) | 2005-03-18 | 2005-03-18 | 导光板、光源和显示面板单元及电子装置 |
| US11/895,992 US20070297193A1 (en) | 2005-03-18 | 2007-08-27 | Light guiding board and light source and display panel unit and electronic apparatus |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/JP2005/005028 WO2006100744A1 (ja) | 2005-03-18 | 2005-03-18 | 導光板および光源ユニット並びにディスプレイパネルユニットおよび電子機器 |
Related Child Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US11/895,992 Continuation US20070297193A1 (en) | 2005-03-18 | 2007-08-27 | Light guiding board and light source and display panel unit and electronic apparatus |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2006100744A1 true WO2006100744A1 (ja) | 2006-09-28 |
Family
ID=37023441
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2005/005028 Ceased WO2006100744A1 (ja) | 2005-03-18 | 2005-03-18 | 導光板および光源ユニット並びにディスプレイパネルユニットおよび電子機器 |
Country Status (4)
| Country | Link |
|---|---|
| US (1) | US20070297193A1 (ja) |
| JP (1) | JPWO2006100744A1 (ja) |
| CN (1) | CN101142443A (ja) |
| WO (1) | WO2006100744A1 (ja) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP1876481A1 (en) * | 2006-07-04 | 2008-01-09 | Samsung SDI Co., Ltd. | Light guide member and backlight unit including light guide member and methods of fabricating light guide members and backlight units |
| JP2012237897A (ja) * | 2011-05-12 | 2012-12-06 | Funai Electric Co Ltd | 液晶表示装置および液晶テレビジョン装置 |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR101330937B1 (ko) * | 2007-02-06 | 2013-11-18 | 엘지전자 주식회사 | 이동단말기의 백라이팅 구조물 제조방법, 이동단말기의백라이팅 구조물 및 백라이팅 구조물 구비 이동단말기 |
| CN101424387B (zh) * | 2008-12-17 | 2010-06-02 | 友达光电股份有限公司 | 导光板 |
| US20110044056A1 (en) * | 2009-08-21 | 2011-02-24 | Microsoft Corporation | Light collector for an illumination optic |
| CN102890307A (zh) * | 2012-10-11 | 2013-01-23 | 京东方科技集团股份有限公司 | 导光板、背光模组及显示装置 |
| KR102324866B1 (ko) * | 2015-05-26 | 2021-11-12 | 엘지디스플레이 주식회사 | 백라이트유닛과 액정표시장치 및 이의 구동방법 |
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| JP2001281458A (ja) * | 2000-03-31 | 2001-10-10 | Enplas Corp | 導光板、面光源装置及び液晶ディスプレイ |
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| JP4185721B2 (ja) * | 2002-07-17 | 2008-11-26 | アルプス電気株式会社 | 照明装置及び液晶表示装置 |
| JP2004253317A (ja) * | 2003-02-21 | 2004-09-09 | Minebea Co Ltd | 面状照明装置 |
| TWI310471B (en) * | 2004-05-25 | 2009-06-01 | Au Optronics Corp | Backlight module equipped with brightness convergence function |
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2005
- 2005-03-18 WO PCT/JP2005/005028 patent/WO2006100744A1/ja not_active Ceased
- 2005-03-18 JP JP2007509098A patent/JPWO2006100744A1/ja not_active Withdrawn
- 2005-03-18 CN CNA2005800491750A patent/CN101142443A/zh active Pending
-
2007
- 2007-08-27 US US11/895,992 patent/US20070297193A1/en not_active Abandoned
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| JP2001281458A (ja) * | 2000-03-31 | 2001-10-10 | Enplas Corp | 導光板、面光源装置及び液晶ディスプレイ |
| JP2003021726A (ja) * | 2001-07-09 | 2003-01-24 | Yuka Denshi Co Ltd | 導光体及びこれを用いた面光源装置と液晶ディスプレイ装置 |
| JP2003187620A (ja) * | 2001-12-21 | 2003-07-04 | Alps Electric Co Ltd | 面状発光装置およびこれを備えた液晶表示装置 |
| JP2004006326A (ja) * | 2002-04-22 | 2004-01-08 | Mitsubishi Rayon Co Ltd | 面光源装置及びそれに用いる導光体 |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP1876481A1 (en) * | 2006-07-04 | 2008-01-09 | Samsung SDI Co., Ltd. | Light guide member and backlight unit including light guide member and methods of fabricating light guide members and backlight units |
| US7697813B2 (en) | 2006-07-04 | 2010-04-13 | Samsung Mobile Display Co., Ltd. | Light guide member and backlight unit including light guide member and methods of fabricating light guide members and backlight units |
| US8111969B2 (en) | 2006-07-04 | 2012-02-07 | Samsung Mobile Display Co., Ltd. | Methods of fabricating light guide members and backlight units |
| JP2012237897A (ja) * | 2011-05-12 | 2012-12-06 | Funai Electric Co Ltd | 液晶表示装置および液晶テレビジョン装置 |
Also Published As
| Publication number | Publication date |
|---|---|
| CN101142443A (zh) | 2008-03-12 |
| JPWO2006100744A1 (ja) | 2008-08-28 |
| US20070297193A1 (en) | 2007-12-27 |
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