WO2011010492A1 - 照明装置、及び表示装置 - Google Patents
照明装置、及び表示装置 Download PDFInfo
- Publication number
- WO2011010492A1 WO2011010492A1 PCT/JP2010/056320 JP2010056320W WO2011010492A1 WO 2011010492 A1 WO2011010492 A1 WO 2011010492A1 JP 2010056320 W JP2010056320 W JP 2010056320W WO 2011010492 A1 WO2011010492 A1 WO 2011010492A1
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- WIPO (PCT)
- Prior art keywords
- light
- guide plate
- light emitting
- light guide
- emitting diode
- Prior art date
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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
- G02B6/0081—Mechanical or electrical aspects of the light guide and light source in the lighting device peculiar to the adaptation to planar light guides, e.g. concerning packaging
- G02B6/0086—Positioning aspects
- G02B6/009—Positioning aspects of the light source in the package
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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
- G02B6/0081—Mechanical or electrical aspects of the light guide and light source in the lighting device peculiar to the adaptation to planar light guides, e.g. concerning packaging
- G02B6/0083—Details of electrical connections of light sources to drivers, circuit boards, or the like
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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
- G02B6/0081—Mechanical or electrical aspects of the light guide and light source in the lighting device peculiar to the adaptation to planar light guides, e.g. concerning packaging
- G02B6/0086—Positioning aspects
- G02B6/0091—Positioning aspects of the light source relative to the light guide
Definitions
- the present invention relates to an illuminating device, and more particularly to an illuminating device including a plurality of light emitting diodes provided in a straight line and a light guide plate into which light from these light emitting diodes is incident, and a display device using the same.
- liquid crystal display devices have been widely used in liquid crystal televisions, monitors, mobile phones and the like as flat panel displays having features such as thinness and light weight compared to conventional cathode ray tubes.
- a liquid crystal display device includes an illumination device (backlight) that emits light and a liquid crystal panel that displays a desired image by serving as a shutter for light from a light source provided in the illumination device. It is.
- an edge light type or a direct type is provided in which a linear light source composed of a cold cathode fluorescent tube or a hot cathode fluorescent tube is arranged on the side or the lower side of the liquid crystal panel.
- the cold cathode fluorescent tube as described above contains mercury and it is difficult to recycle the discarded cold cathode fluorescent tube. Therefore, an illumination device using a light emitting diode (LED) that does not use mercury as a light source has been developed and put into practical use.
- LED light emitting diode
- a conventional illumination device for example, as described in Patent Document 1 below, one light-emitting diode and light from the light-emitting diode are incident, and planar illumination light is converted into liquid crystal.
- a light guide plate that emits light is provided on the panel.
- the light emitting diode is mounted on the mounting substrate, and a protruding portion is formed on the mounting substrate below the light emitting diode.
- a mounting groove is provided on the bottom surface of the frame (frame) on which the light guide plate is placed, and the protruding portion is fitted to the mounting portion to efficiently guide the light of the light emitting diode. It was supposed to be able to enter the light plate.
- FIG. 8 is a diagram for explaining a problem in the conventional lighting device.
- a conventional liquid crystal display device 50 includes a liquid crystal panel 51 and a conventional illumination device 52 that is provided on the non-display surface side of the liquid crystal panel 51 and emits illumination light to the liquid crystal panel 51.
- a conventional illumination device 52 a plurality of light emitting diodes 53 arranged in a straight line along a direction perpendicular to the paper surface of FIG.
- a light guide plate 54 that emits light to the side, and a reflection sheet 55 and an optical sheet 56 provided on the opposite side of the light guide plate 54 from the liquid crystal panel 51 and on the liquid crystal panel 51 side, respectively.
- the conventional lighting device 52 is provided with a frame 57 so that each part of the lighting device 52 is accommodated. That is, in the frame 57, the reflection sheet 55, the light guide plate 54, and the optical sheet 56 are installed on the bottom surface 57a between the side surfaces 57b and 57c facing each other. A mounting substrate 58 on which a plurality of light emitting diodes 53 are mounted is attached to the side surface 57b via a double-sided tape 59. Further, in the frame 57, a groove portion 57d is provided between the bottom surface 57a and the side surface 57b, and an end portion of the mounting substrate 58 is disposed inside the groove portion 57d. Further, the frame 57 is integrally assembled to a plastic chassis 58 to which the liquid crystal panel 51 is attached.
- the groove portion 57d is provided between the bottom surface 57a and the side surface 57b, so that the assembly accuracy between the light emitting diode 53 and the light guide plate 54 may be lowered. It was. That is, in the conventional lighting device 52, the provision of the groove portion 57d increases the distance between the light emitting diode 53 and the light guide plate 54 in the facing direction (the left-right direction in FIG. 8) facing each other. The assembly accuracy between the light emitting diode 53 and the light guide plate 54 may be lowered.
- the light emitting surface of the light emitting diode 53 (the rightmost surface in FIG. 8) is located at a predetermined position with respect to the light incident surface of the light guide plate 54 (the leftmost surface in FIG. 8).
- the light emitting diode 53 and the light guide plate 54 are assembled in a state of being displaced in the vertical direction in FIG.
- the light emitting diode 53 and the light guide plate 54 are arranged in the frame 57 in a state where the assembly accuracy is lowered, as shown by three arrows in FIG.
- the amount of light reflected by the liquid crystal partly increased, luminance unevenness occurred in the illumination light emitted toward the liquid crystal panel 51 side, and the light emission quality deteriorated.
- the light emitting diode 53 depends on the assembly accuracy of the light emitting diode 53 and the light guide plate. Is not properly incident on the light guide plate 54, the light is likely to be reflected in an inappropriate direction at the end 55a, and the illumination light is likely to be uneven in brightness, resulting in a reduction in light emission quality. It became easy to generate.
- the light emitting diode and the light guide plate In addition to the above description, in the case of using the lower surface of the light guide plate as a reflection surface or the bottom surface of the frame as the reflection surface instead of providing the reflection sheet 55, in the conventional lighting device, the light emitting diode and the light guide plate When the assembly accuracy is poor, the amount of light reflected unnecessarily by these reflecting surfaces partially increases, and as in the case where the reflective sheet 55 is provided, luminance unevenness occurs in the illumination light, resulting in light emission. The quality declined.
- the present invention provides an illumination device excellent in light emission quality and capable of performing alignment between the light emitting diode and the light guide plate with high accuracy even when the number of light emitting diodes is increased, and a lighting device using the same. It is an object to provide a display device.
- a lighting device includes a light emitting diode, A mounting substrate in which a plurality of the light emitting diodes are linearly provided; A light incident surface on which light from the light emitting diode is incident; and a light emitting surface that emits light incident from the light incident surface.
- the light incident from the light incident surface is directed in a predetermined propagation direction.
- a light guide plate that emits light from the light emitting surface while guiding,
- a frame having a side surface to which the mounting substrate is attached and a bottom surface on which the light guide plate is placed;
- the frame is provided between the side surface and the bottom surface on the opposite side of the light guide plate from the bottom surface, and is provided with a groove in which an end portion of the mounting substrate is disposed.
- the groove portion is provided with a support portion for supporting the light guide plate.
- the mounting substrate is used as a frame. Easy to install.
- the support part which supports a light-guide plate is installed in the groove part. Therefore, unlike the conventional example, even when the number of light emitting diodes is increased, the alignment between the light emitting diodes and the light guide plate can be performed with high accuracy. As a result, it is possible to prevent uneven brightness from occurring in the illumination light emitted to the outside, and an illumination device having excellent light emission quality can be configured.
- the plurality of light emitting diodes may be arranged on the mounting substrate in a linearly mounted manner so as to face the light incident surface of the light guide plate, and inside the groove portion.
- a wiring portion is provided on the end portion side of the mounting portion, and a predetermined wiring pattern is formed.
- the light emitting diodes can be reliably arranged with high accuracy with respect to the light guide plate.
- a reflection sheet that reflects light incident from the light incident surface toward the light emitting surface is provided between the light guide plate and the bottom surface.
- the light use efficiency of the light-emitting diode can be reliably improved.
- an elastic support member may be used as the support portion.
- the supporting member has elasticity, the light emitting diode and the light guide plate can be easily aligned with high accuracy.
- a bent portion in which an end portion of the reflection sheet is bent into a predetermined shape so as to be supported in a state where elasticity is applied to the light guide plate. May be used.
- the bent portion of the reflection sheet supports the light guide plate in a state where elasticity is imparted, the light emitting diode and the light guide plate can be easily aligned with high accuracy.
- the support portion has thermal conductivity.
- the heat dissipation of the heat generated in the light emitting diode can be improved.
- the display device of the present invention is characterized by using any one of the lighting devices described above.
- an illuminating device excellent in light emission quality that can perform alignment of the light emitting diode and the light guide plate with high accuracy even when the number of light emitting diodes is increased is used. Therefore, a display device with high luminance and excellent display quality can be easily configured even when the size is increased (the screen is enlarged).
- an illumination device excellent in light emitting quality capable of highly accurately aligning the light emitting diodes and the light guide plate, and a display device using the same is provided.
- FIG. 1 is a diagram for explaining an illumination device and a liquid crystal display device according to a first embodiment of the present invention.
- FIG. 2 is a perspective view showing the configuration of the frame shown in FIG.
- FIG. 3 is a plan view showing a specific configuration of the mounting board shown in FIG.
- FIG. 4 is a perspective view showing a specific configuration of the support member shown in FIG.
- FIG. 5 is a diagram illustrating an illumination device and a liquid crystal display device according to the second embodiment of the present invention.
- FIG. 6 is a side view showing a specific configuration of the reflecting sheet shown in FIG.
- FIG. 7A and FIG. 7B are side views showing a specific configuration of a modification of the reflecting sheet shown in FIG.
- FIG. 8 is a diagram for explaining a problem in the conventional lighting device.
- FIG. 1 is a diagram for explaining an illumination device and a liquid crystal display device according to a first embodiment of the present invention.
- FIG. 2 is a perspective view showing the configuration of the frame shown in FIG.
- FIG. 3 is a plan view showing a specific configuration of the mounting board shown in FIG.
- FIG. 4 is a perspective view showing a specific configuration of the support member shown in FIG.
- the liquid crystal display device 1 of the present embodiment is provided with a liquid crystal panel 2 as a display unit for displaying information, and an illumination device 3 for irradiating the liquid crystal panel 2 with illumination light. 2 and the illumination device 3 are integrated as a transmissive liquid crystal display device 1.
- the liquid crystal panel 2 includes a CF (Color Filter) substrate 4 and an active matrix substrate 5 constituting a pair of substrates, and polarizing plates 6 and 7 provided on the outer surfaces of the CF substrate 4 and the active matrix substrate 5, respectively. ing.
- a liquid crystal layer (not shown) is sandwiched between the CF substrate 4 and the active matrix substrate 5.
- the CF substrate 4 and the active matrix substrate 5 are made of a transparent transparent resin such as a flat transparent glass material or an acrylic resin. Resin films such as TAC (triacetyl cellulose) or PVA (polyvinyl alcohol) are used for the polarizing plates 6 and 7 and correspond to cover at least the effective display area of the display surface provided in the liquid crystal panel 2. It is bonded to the CF substrate 4 or the active matrix substrate 5.
- the active matrix substrate 5 constitutes one of the pair of substrates.
- pixel electrodes and TFTs are formed according to a plurality of pixels included in the display surface of the liquid crystal panel 2.
- a thin film transistor (not shown) is formed between the liquid crystal layer and the like.
- the active matrix substrate 5 is connected to a control device (not shown) for controlling the driving of the liquid crystal panel 2 and operates the liquid crystal layer in units of pixels to drive the display surface in units of pixels. Thus, a desired image is displayed on the display surface.
- the CF substrate 4 constitutes the other of the pair of substrates, and a color filter, a counter electrode, and the like are formed between the CF substrate 4 and the liquid crystal layer (not shown). .
- the liquid crystal mode and pixel structure of the liquid crystal panel 2 are arbitrary. Moreover, the drive mode of the liquid crystal panel 2 is also arbitrary. That is, as the liquid crystal panel 2, any liquid crystal panel that can display information can be used. Therefore, the detailed structure of the liquid crystal panel 2 is not shown in FIG.
- the illuminating device 3 receives a plurality of light emitting diodes 8 arranged in a straight line along a direction perpendicular to the paper surface of FIG. 1 and the light from the light emitting diodes 8, and transmits the light to the liquid crystal panel 2 side.
- the optical sheet 11 includes a predetermined optical sheet such as a lens sheet or a diffusion sheet.
- the lighting device 3 is provided with a frame 12 made of metal, for example, so that each part of the lighting device 3 is accommodated. That is, in the frame 12, the reflection sheet 10, the light guide plate 9, and the optical sheet 11 are installed on the bottom surface 12a between the side surfaces 12b and 12c facing each other. Further, a mounting substrate 14 on which the light emitting diode 8 is mounted is attached to the side surface 12b via a double-sided tape 15 having thermal conductivity, for example. On the mounting substrate 14, as will be described in detail later, a plurality of light emitting diodes 8 are linearly arranged and a predetermined wiring pattern is formed.
- the frame 12 is integrally assembled to the plastic chassis 13 to which the liquid crystal panel 2 is attached.
- the frame 12 is provided with a protrusion 12d on the outer surface of the side surface 12b.
- the protrusion 12d is adapted to engage with a notch 13a provided on the plastic chassis 13 side. That is, in the liquid crystal display device 1, the frame 12 and the plastic chassis 13 are integrated by engaging the protrusion 12 d and the notch 13 a. Further, when the frame 12 and the plastic chassis 13 are integrated as described above, the liquid crystal panel 2 and the lighting device 3 are integrated in a desired assembled state.
- the frame 12 includes a flat bottom surface 12a, a side surface 12c formed to stand on the bottom surface 12a on one side of the bottom surface 12a, and the bottom surface 12a.
- a side surface 12b formed to face the side surface 12c on the side is provided.
- the frame 12 is provided with a groove 12e formed between the side surface 12b and the bottom surface 12a on the side opposite to the light guide plate 9 (lower side in FIG. 1) than the bottom surface 12a.
- one end portion and the other end portion are provided between the side surface 12f extending to the opposite side of the side surface 12c so as to be continuous with the other side of the bottom surface 12a, and the side surface 12b and the side surface 12f.
- the groove 12e is formed by a space surrounded by the side surfaces 12b and 12f and the lower surface 12g. Further, in the groove portion 12e, the dimension between the bottom surface 12a and the lower surface 12g is determined based on the size of the mounting substrate 14, and a wiring portion described later provided at the end of the mounting substrate 14 is connected to the groove portion 12e. It can be placed inside.
- a plurality of, for example, eight light emitting diodes 8 are mounted on the surface of the mounting substrate 14 in a state of being arranged linearly. That is, on the mounting substrate 14, a plurality of light emitting diodes 8 are arranged inside the mounting portion 14 a and the groove portion 12 e that are linearly mounted so as to face the light incident surface 9 a (FIG. 1) of the light guide plate 9. In this way, a wiring portion 14b is provided on the end portion side of the mounting portion 14a and on which a predetermined wiring pattern having a plurality of wirings 17 is formed.
- the mounting part 14a and the wiring part 14b are provided in the mounting substrate 14, in the illuminating device 3 of this embodiment, even when the number of the light-emitting diodes 8 is increased, The light emitting diode 8 can be reliably arranged with high accuracy.
- Each light-emitting diode 8 includes, for example, a 3-in-1 type that integrates red (R), green (G), and blue (B) RGB light-emitting diodes, or one that uses a blue diode and a yellow phosphor. It is used.
- Each light emitting diode 8 is of a top view type, and the light emitting surface of each light emitting diode 8 is a rectangular plane shown in FIG. 3, and the light emitting surface is a light guide plate. 9 is disposed opposite to the light incident surface 9a. Further, in the lighting device 3 of the present embodiment, as illustrated in FIG.
- the light emitting diodes 8 connected in series by the wiring 17 are used as one set of light emitting diode groups, and two sets of light emitting diode groups are arranged in parallel. It is connected to the.
- a wiring (not shown) provided on the flexible circuit board 18 is electrically connected to the wiring 17 so that power is supplied to the light emitting diode 8 from a power source (not shown).
- the light guide plate 9 is opposed to the light emitting surface of the light emitting diode 8, a light incident surface 9 a on which light of the light emitting diode 8 is incident, and a light emitting diode incident from the light incident surface 9 a.
- 8 has a light emitting surface 9b that emits light of 8 and guides light of the light emitting diode 8 that has entered from the light incident surface 9a in a predetermined propagation direction (right direction in FIG. 1), and light from the light emitting surface 9b. Is emitted to the liquid crystal panel 2 side.
- the light incident from the light incident surface 9 a is reflected to the light emitting surface 9 b side inside the light guide plate 9 by the reflection sheet 10 provided between the bottom surface 12 a of the frame 12. It is like that.
- the light guide plate 9 is disposed on the bottom surface 12a of the frame 12 with its end portion protruding toward the groove 12e. Moreover, the reflection sheet 10 has an end portion extending toward the groove 12e. And in the illuminating device 3 of this embodiment, the light-guide plate 9 is comprised so that it may be supported by the supporting member 16 as a support part installed in the groove part 12e.
- the support member 16 is configured by a prismatic member having an upper surface 16a, a side surface 16b, and a lower surface 16c.
- the side surface 16 b and the lower surface 16 c are installed in the groove 12 e with the side surface 12 f and the lower surface 12 g in contact with the side surface 12 f and the lower surface 12 g, respectively.
- the light guide plate 9 is supported by contacting the reflection sheet 10 below.
- the support member 16 is made of a material having elasticity, such as rubber or foam material, and the guide member 9 is guided in the groove 12e in a state where elasticity is given to the light guide plate 9.
- the light plate 9 is supported.
- the height dimension (dimension of the up-down direction of FIG. 1) of the support member 16 is adjusted.
- the light emitting surface of the light emitting diode 8 and the light incident surface 9a of the light guide plate 9 are arranged to face each other at a desired position, and the light emitting diode 8 and the light guide plate 9 are assembled with high accuracy.
- the groove 12e in which the end of the mounting substrate 14 is disposed is provided in the frame 12, so that the light emitting diode 8 provided on the mounting substrate 14 is installed. Even when the number is increased, the mounting substrate 14 can be easily attached to the frame 12. Moreover, in the illuminating device 3 of this embodiment, the support member (support part) 16 which supports the light-guide plate 9 is installed in the groove part 12e.
- the illuminating device 3 of this embodiment since the support member 16 is contact
- the light emitting diode 8 and the light guide plate 9 can be easily aligned with high accuracy. Even when the reflective sheet 10 comes into contact with the light emitting diode 8, the support member 16 is elastically deformed, so that a physical force due to the contact with the reflective sheet 10 is applied to the light emitting diode 8, and the light emitting diode 8. Can be prevented from being damaged.
- the illumination device 3 excellent in light emission quality that can perform alignment between the light emitting diodes 8 and the light guide plate 9 with high accuracy even when the number of the light emitting diodes 8 is increased is used. Therefore, even when the size is increased (the screen is enlarged), the liquid crystal display device (display device) 1 having high luminance and excellent display quality can be easily configured.
- the support member 16 may support the light guide plate 9 by being in contact with each other.
- FIG. 5 is a diagram illustrating an illumination device and a liquid crystal display device according to the second embodiment of the present invention.
- FIG. 6 is a side view showing a specific configuration of the reflecting sheet shown in FIG.
- the main difference between the present embodiment and the first embodiment is that the reflection is performed so that the light guide plate can be supported in a state where elasticity is provided instead of the support member. This is a point using a bent portion obtained by bending the end portion of the sheet into a predetermined shape.
- symbol is attached
- the reflection sheet 20 abuts the bottom surface of the light guide plate 9 (the surface facing the light emitting surface 9 b), and the inside of the light guide plate 9.
- a main body portion 20a that reflects light on the side and a bent portion 20b in which an end portion on the groove portion 12e side is bent in a U-shaped cross section are provided.
- the bent portion 20 b is installed in the groove portion 12 e and constitutes a support portion that supports the light guide plate 9.
- the reflective sheet 20 is made of a synthetic resin having elasticity such as PET (polyethylene terephthalate) resin.
- PET polyethylene terephthalate
- the bent portion 20 b abuts the end portion of the light guide plate 9 protruding toward the groove 12 e, so that the light guide plate 9 is made elastic in a state where elasticity is given to the light guide plate 9. It comes to support. That is, as shown in FIG. 6, the bent portion 20b is bent at a 90 ° angle with respect to the main body portion 20a, and the bent portion 20b1 is bent at a 90 ° angle.
- the bent portion 20b is configured to support the light guide plate 9 in a state where the portion 20b2 is in contact with the lower surface 12g of the frame 12.
- the present embodiment can achieve the same operations and effects as the first embodiment. Moreover, in this embodiment, since the bending part 20b of the reflection sheet 20 supports the light guide plate 9 in a state where elasticity is imparted, the highly accurate alignment between the light emitting diode 8 and the light guide plate 9 can be easily performed. Can do. Even when the reflective sheet 20 comes into contact with the light emitting diode 8, the bending portion 20 b is elastically deformed, so that a physical force due to the contact with the reflective sheet 20 is applied to the light emitting diode 8, and the light emitting diode 8. Can be prevented from being damaged.
- the reflection sheet 30 shown in FIG. 7A or the reflection sheet 40 shown in FIG. 7B can be used.
- the reflection sheet 30 is in contact with the bottom surface of the light guide plate 9 (opposite surface of the light emitting surface 9 b) and reflects the light toward the inner side of the light guide plate 9.
- the bending part 30b which bent the edge part by the side of the groove part 12e in the cross-section L-shape is provided.
- the bent portion 30 b is installed in the groove portion 12 e and constitutes a support portion that supports the light guide plate 9.
- the reflective sheet 30 is made of a synthetic resin having elasticity such as a PET (polyethylene terephthalate) resin.
- the bent portion 30 b abuts on the end portion of the light guide plate 9 protruding toward the groove portion 12 e, so that the light guide plate 9 is made elastic with respect to the light guide plate 9. It comes to support. That is, as shown in FIG. 7A, the bent portion 30b has a portion 30b1 bent at an angle of 90 ° with respect to the main body portion 30a, and the bent portion 30b is an end of the portion 30b2.
- the light guide plate 9 is supported in a state where the portion is in contact with the lower surface 12 g of the frame 12.
- the reflection sheet 40 is in contact with the bottom surface of the light guide plate 9 (opposite surface of the light emitting surface 9 b) and reflects the light toward the inner side of the light guide plate 9.
- a bent portion 40b obtained by bending the end portion on the groove portion 12e side into a cross-sectional frame shape.
- the bent portion 40 b is installed in the groove portion 12 e and constitutes a support portion that supports the light guide plate 9.
- the reflective sheet 40 is made of a synthetic resin having elasticity such as a PET (polyethylene terephthalate) resin.
- the bent portion 40b is brought into contact with the end portion of the light guide plate 9 protruding toward the groove 12e, so that the light guide plate 9 is provided with elasticity with respect to the light guide plate 9. It comes to support. That is, as shown in FIG. 7B, the bent portion 40b has a portion 40b1 bent at an angle of 90 ° with respect to the main body portion 40a and an angle of 90 ° with respect to the portion 40b1. A bent portion 40b2 and a portion 40b3 bent at an angle of 90 ° with respect to the portion 40b1 are provided.
- the bent portion 40b includes a portion 40b2 and a portion 40b3, which are the lower surface 12g and the side surface 12f of the frame 12. The light guide plate 9 is supported while being in contact with each other.
- the lighting device of the present invention is not limited to this, and an image using light of a light emitting diode is used.
- the present invention can be applied to various display devices including a non-light emitting display unit that displays information such as characters.
- the illumination device of the present invention can be suitably used for a transflective liquid crystal display device or a projection display device using a liquid crystal panel as a light valve.
- the frame of the present invention may be any frame as long as it is formed between the side surface and the bottom surface on the opposite side of the light guide plate from the bottom surface and provided with a groove portion in which the end portion of the mounting substrate is disposed.
- a groove portion may be provided between each of the two side surfaces and the bottom surface, a mounting substrate may be attached to each side surface, and each of the two side surfaces of the light guide plate facing each other may be used as the light incident surface.
- surroundings of the bottom face may be enclosed may be sufficient.
- the mounting substrate on the mounting substrate, four light emitting diodes connected in series are set as one set of light emitting diode groups, and two sets of light emitting diode groups are connected in parallel.
- the mounting substrate of the present invention may be any light emitting diode provided in a straight line, and the number of light emitting diodes installed and the connection method are not limited to those described above.
- the lighting device of the present invention is not limited to any configuration as long as the support portion installed in the groove portion supports the light guide plate.
- the lower surface of the light guide plate may be used as a reflection surface, or the bottom surface of the frame may be used as a reflection surface.
- the case where a reflective sheet is used as in the above embodiment is preferable in that the light use efficiency of the light emitting diode can be improved with certainty.
- the support portion of the present invention is installed in the groove portion and supports the light guide plate. There is no limitation as long as there is.
- the case where a material having thermal conductivity is used for the support as in the above embodiment is preferable in that it can improve the heat dissipation of the heat generated in the light emitting diode, and the ambient temperature of the light emitting diode can be easily set. This is also preferable in that the lifetime of the light-emitting diode can be increased.
- the present invention uses a plurality of light emitting diodes that emit light of a plurality of colors that can be mixed with white. If it is a thing, it will not be limited at all. Specifically, a so-called four-in-one (4in1) type light emitting diode in which RGBW light emitting diodes are integrated is used, two types of light emitting diodes that emit yellow light and blue light are used, A light emitting diode using a diode and a yellow phosphor can also be used. Also, three light emitting diodes in which RGB light emitting diodes are configured separately from each other can be used.
- the present invention relates to an illumination device excellent in light emission quality capable of performing alignment of a light emitting diode and a light guide plate with high accuracy even when the number of light emitting diodes is increased, and a display device using the same. Useful.
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Abstract
Description
複数の前記発光ダイオードが直線状に設けられた実装基板と、
前記発光ダイオードの光が入光される入光面、及び前記入光面から入光された光を発光する発光面を有し、前記入光面から入光された光を所定の伝搬方向に導きつつ、前記発光面から光を出射する導光板と、
前記実装基板が取り付けられる側面、及び前記導光板が載置される底面を有するフレームを備え、
前記フレームには、前記側面と前記底面との間で当該底面よりも前記導光板とは反対側に形成されるとともに、前記実装基板の端部が配置される溝部が設けられ、
前記溝部には、前記導光板を支持する支持部が設置されていることを特徴とするものである。
図1は、本発明の第1の実施形態にかかる照明装置及び液晶表示装置を説明する図である。図2は、図1に示したフレームの構成を示す斜視図である。図3は、図1に示した実装基板の具体的な構成を示す平面図である。図4は、図1に示した支持部材の具体的な構成を示す斜視図である。
図5は、本発明の第2の実施形態にかかる照明装置及び液晶表示装置を説明する図である。図6は、図5に示した反射シートの具体的な構成を示す側面図である。図において、本実施形態と上記第1の実施形態との主な相違点は、支持部材の代わりに、導光板に対して、弾力性が付与された状態で、支持可能となるように、反射シートの端部を所定の形状に折り曲げた折り曲げ部を用いた点である。なお、上記第1の実施形態と共通する要素については、同じ符号を付して、その重複した説明を省略する。
2 液晶パネル
3 照明装置
8 発光ダイオード
9 導光板
9a 入光面
9b 発光面
10、20、30、40 反射シート
20b、30b、40b 折り曲げ部(支持部)
12 フレーム
12a 底面
12b 側面
12e 溝部
14 実装基板
14a 実装部
14b 配線部
16 支持部材(支持部)
Claims (7)
- 発光ダイオードと、
複数の前記発光ダイオードが直線状に設けられた実装基板と、
前記発光ダイオードの光が入光される入光面、及び前記入光面から入光された光を発光する発光面を有し、前記入光面から入光された光を所定の伝搬方向に導きつつ、前記発光面から光を出射する導光板と、
前記実装基板が取り付けられる側面、及び前記導光板が載置される底面を有するフレームを備え、
前記フレームには、前記側面と前記底面との間で当該底面よりも前記導光板とは反対側に形成されるとともに、前記実装基板の端部が配置される溝部が設けられ、
前記溝部には、前記導光板を支持する支持部が設置されている、
ことを特徴とする照明装置。 - 前記実装基板には、前記複数の発光ダイオードが前記導光板の入光面に対向するように直線状に実装された実装部、及び前記溝部の内部に配置されるように前記実装部の前記端部側に設置され、所定の配線パターンが形成された配線部が設けられている請求項1に記載の照明装置。
- 前記導光板と前記底面との間には、前記入光面から入光された光を前記発光面側に反射する反射シートが設けられている請求項1または2に記載の照明装置。
- 前記支持部として、弾力性を有する支持部材が用いられている請求項1~3のいずれか1項に記載の照明装置。
- 前記支持部として、前記導光板に対して、弾力性が付与された状態で、支持可能となるように、前記反射シートの端部を所定の形状に折り曲げた折り曲げ部が用いられている請求項3に記載の照明装置。
- 前記支持部は、熱伝導性を有している請求項1~5のいずれか1項に記載の照明装置。
- 請求項1~6のいずれか1項に記載の照明装置を用いたことを特徴とする表示装置。
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EP10802113.0A EP2431653A4 (en) | 2009-07-23 | 2010-04-07 | LIGHTING DEVICE AND DISPLAY DEVICE |
BR112012001484A BR112012001484A2 (pt) | 2009-07-23 | 2010-04-07 | dispositivo de iluminação e dispositivo de exibição. |
CN2010800322240A CN102472450A (zh) | 2009-07-23 | 2010-04-07 | 照明装置和显示装置 |
US13/382,987 US8678634B2 (en) | 2009-07-23 | 2010-04-07 | Illuminating device and display device |
JP2011523579A JP5368562B2 (ja) | 2009-07-23 | 2010-04-07 | 照明装置、及び表示装置 |
RU2012106607/07A RU2491472C1 (ru) | 2009-07-23 | 2010-04-07 | Осветительное устройство и дисплейное устройство |
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PCT/JP2010/056320 WO2011010492A1 (ja) | 2009-07-23 | 2010-04-07 | 照明装置、及び表示装置 |
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US (1) | US8678634B2 (ja) |
EP (1) | EP2431653A4 (ja) |
JP (1) | JP5368562B2 (ja) |
CN (1) | CN102472450A (ja) |
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US20120188790A1 (en) | 2012-07-26 |
CN102472450A (zh) | 2012-05-23 |
BR112012001484A2 (pt) | 2019-09-24 |
EP2431653A4 (en) | 2013-10-30 |
JPWO2011010492A1 (ja) | 2012-12-27 |
US8678634B2 (en) | 2014-03-25 |
RU2491472C1 (ru) | 2013-08-27 |
EP2431653A1 (en) | 2012-03-21 |
JP5368562B2 (ja) | 2013-12-18 |
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