1. Field of the Invention
The present invention relates to a display device.
2. Description of the Related Art
The basic structure of a display device includes a surface light source device (backlight device), a display panel (liquid crystal panel, etc.), an electric circuit unit, a structural unit supporting these, and an exterior unit. Commercially used display devices include devices having a transparent front surface plate, which is installed on the display surface of the display panel and provides protection from external shocks and/or infiltration of rain water. In order to suppress decline in the visibility of the display image due to the installation of the front surface plate, the display device disclosed in Japanese Patent Application Publication No. 2012-88606 proposes a structure in which a transparent adhesive is disposed in the gap between the display panel and the front surface plate. Furthermore, in the display device disclosed in Japanese Patent Application Publication No. 2012-34289, a structure in which a front surface plate is supported on the housing of the display device is proposed.
The middle chassis 107 is provided about the periphery of the display panel 103A in order to fix the optical sheet 103B. The light source 103C and the optical sheet 103B, and the light guide plate 103D, are accommodated by a back chassis 108. An installation frame 102 is bonded by double-sided adhesive tape (not illustrated) to the periphery of the front surface plate 101. An installation member 110 for fixing the back chassis 108 and the installation frame 102 is provided. The display panel 103A is held due to the front surface plate 101 being supported by the installation member 110.
In the prior art technology disclosed in Japanese Patent Application Publication No. 2012-34289, the installation frame 102 for fixing the front surface plate 101 is positioned to the outside of the backlight unit, which includes the light source 103C, a heat dispersing member 106, the middle chassis 107, and a back chassis 108. Since the components which constitute the backlight unit and the components which fix the front surface plate 101 are separate bodies, then the fixing segment is situated to the outside of the image display region on the display panel 103A, and therefore the frame width W becomes greater. It is desirable for the frame width W to be made smaller, from the viewpoint of the compactification and/or the design properties of the device. Furthermore, since the components constituting the backlight unit and the components used to fix the front surface plate are separate bodies, then the number of components is increased, the structure becomes more complicated, and the cumulative error resulting from the assembly from the front surface plate 101 to the light source 103C becomes greater.
The present invention was devised in view of the abovementioned problems, an object thereof being to provide a display device whereby the frame width of a display device can be reduced by means of a simple structure.
The present invention is a display device, including:
a display panel; a front surface plate fixed to a display surface of the display panel; a light source disposed on a rear surface side of the display panel; and a frame accommodating the light source, wherein the front surface plate is larger than the display panel, the frame has a first surface which opposes, from the rear surface side, a peripheral edge portion of the front surface plate that is not fixed to the display surface of the display panel, and the front surface plate is fixed to the first surface of the frame.
According to the present invention, it is possible to provide a display device in which the frame width of the display device can be reduced, by means of a simple structure.
Further features of the present invention will become apparent from the following description of exemplary embodiments with reference to the attached drawings.
A first embodiment of a display device according to the present invention is described below.
The display device 1 is configured such that the whole of the display panel unit 2 is visible when viewed from the front surface, and there is an image display region D in which an image is displayed, in substantially the central portion of the display panel unit 2. The image display region D is the image display region of the display panel, which is described below. A light shielding printed region 2a is present on the rear surface of the display panel unit 2, to the outside of the image display region D. The display panel unit 2 uses blue sheet glass or strengthened glass as a front surface plate, which is described below, and the front surface plate transmits the image on the display panel which is positioned inside same. An observer is able to observe an image displayed on the liquid crystal panel, via the front surface plate. In the range of the display panel unit 2 positioned to the outside of the image display region D, the front surface plate is made of glass and therefore, by providing the light shielding printed region 2a, the interior thereof is made so as to not be visible. Furthermore, by providing the light shielding printed region 2a, it is possible to impart design properties and improve the external appearance.
The structure of the display device 1 is now described in detail on the basis of
A panel holder 3 is disposed on the rear surface side of the display panel unit 2. The panel holder 3 has a frame shape overall, and is configured by a top edge 3T, a left edge 3L, a right edge 3R and a bottom edge 3B. The panel holder 3 is made of resin and the four edges thereof are configured independently. This is because when the dimensions are large, it becomes difficult to form the holder by extrusion molding. Since the optical sheet 4 positioned on the rear surface side is held by the panel holder 3, the distance between the display panel unit 2 and the optical sheet 4 is maintained. The optical sheet 4 is a sheet-shaped component, and the material thereof is polyethylene terephthalate (PET) or polycarbonate (PC), the thickness is several tenths of a mm, and the sheet has flexible properties. The optical sheet 4 is held by the panel holder 3.
The light guide plate 5 and the reflection sheet 6 are disposed on the rear surface side of the optical sheet 4. The chassis 7 which holds these members from the rear surface side is disposed on the rear surface side of the optical sheet 4, the light guide plate 5 and the reflection sheet 6. The chassis 7 is fixed to the display panel unit 2. The upper section of the display device 1 is covered by the case 8.
The display panel unit 2 is as shown in
The front surface plate 2G is made of blue sheet glass or strengthened glass. The front surface plate 2G is fixed to the display panel module 2PM which is disposed on the rear surface side thereof. In the present embodiment, the front surface plate 2G is bonded to the display panel module 2PM by the transparent adhesive 2Aa shown in
The display panel module 2PM is configured by a display panel 2P, an electric cable 2F and a drive substrate 2D. In the first embodiment, the display panel 2P is a liquid crystal panel. However, the panel is not limited to being a liquid crystal panel, provided that the panel is a transmissive display panel which displays an image by adjusting the transmissivity of light from the light source. As shown in FIG. 5, the display panel 2P comprises a front surface-side color filter substrate 2CF and a rear surface-side TFT substrate 2TFT. The color filter substrate 2CF is configured by bonding an upper polarization plate (not illustrated) to the front surface (viewing side) of a glass substrate having a color filter formed on one surface thereof. The TFT substrate 2TFT is configured by bonding a lower polarization plate (not illustrated) to the rear surface (the side opposite to the viewing side) of a glass substrate having electrical wiring formed on one surface thereof. The display panel 2P has a structure in which the two substrates are placing facing each other, liquid crystals are sealed in between the two substrates, the periphery thereof is sealed, and an electric cable 2F, which is described below, is connected to the terminal portions of the glass substrates.
The electric cable 2F is a flexible printed circuit (FPC) that electrically connects the terminal portion of the display panel 2P and the drive substrate 2D described below, and an integrated circuit (IC) is mounted near the center thereof.
The drive substrate 2D is an electric circuit which supplies image signals and power to the display panel 2P, and is configured by wiring and elements.
The frame unit 2FR is formed by processing a metal plate, typically a steel plate, etc., in a pressing process, or the like. The frame unit 2FR has a frame shape overall, and is configured by four independent edges: a top edge 2T, a left edge 2L, a right edge 2R and a bottom edge 2B. The frame unit 2FR accommodates a light source, which is described below. The frame unit 2FR has a first surface which is substantially parallel to the front surface plate 2G and opposes the rear surface side of the peripheral edge portion of the front surface plate 2G which is not bonded to the display panel module 2PM, and the front surface plate 2G is bonded to the first surface of the frame unit 2FR by a double-sided tape 2Ab. By this means, the frame unit 2FR holds the front surface plate 2G. The details are described below.
The path of the light is now described with reference to
The chassis 7 is made from steel plate, or the like, of which substantially the center portion is formed in a recess shape by squeezing, and includes a peripheral edge section 7a and a bottom section 7b. The bottom section 7b presses the reflection sheet 6, thereby holding the reflection sheet 6 from the rear surface side.
The case 8 is disposed so as to cover the drive substrate 2D of the display panel module 2PM. The case 8 is fixed to the chassis 7 by screws (not illustrated). The case 8 is also formed from a steel plate, etc., by pressing, or the like. The case 8 disperses heat from the drive substrate 2D. Furthermore, the case 8 has a shielding effect which suppresses unwanted radiation from the drive substrate 2D.
The holding structure of the front surface plate 2G is described now with reference to
On the other hand, in the bottom edge 2B, the end portions of the first surface 2Ba and the third surface 2Bc face towards the backlight, and a space which faces towards the backlight is formed in which the second surface 2Bb is a bottom surface, and the first surface 2Ba and the third surface 2Bc are wall surfaces. In the display device 1 according to the first embodiment, this shape is used to dispose the panel holder 3B, the light source substrate 2PCB and the heat sink 2HB on the inside of the U-shape. Therefore, the light source 2LED is mounted so as to face towards the backlight, and constitutes an edge light type of backlight.
According to the first embodiment, rather than the front surface plate 2G being installed on the chassis, or the like, using separate members, a configuration is adopted in which the front surface plate 2G is bonded directly to the frame unit 2FR which includes the light source. Therefore, it is possible to make the size of the front surface plate substantially the same as that of the frame unit 2FR (the size of the backlight unit), and the frame width can be reduced.
Furthermore, in the configuration of the first embodiment, it is possible to adopt a simple structure in which the light source is fixed directly to the frame unit which is bonded to the front surface plate. Consequently, the cumulative error from the display panel to the light source can be reduced.
Below, a second embodiment of the present invention is described.
Similarly to the first embodiment, in the display device 12, a display panel unit 22 is situated on the front surface, and a light shielding printed region 22a is disposed in the peripheral edge portion of the rear surface thereof. Furthermore, an image display region D is formed in substantially the center portion thereof.
As illustrated in the exploded perspective view in
In
Holes 2Dh which are provided in the drive substrate 2D oppose bosses 72c which are provided in the chassis 72 when in an assembled state. The drive substrate 2D is fixed to the chassis 72 by fixing the holes 2Dh and the bosses 72c by screws (not illustrated).
A flange section 72F which is curved in the rear surface direction is formed in the peripheral edge portion of the chassis 72. Furthermore, a plurality of holes 72h is provided in the flange section 72F.
On the other hand, in each edge of the frame, for instance, in the bottom edge 22B, there is a first surface 22Ba which is a surface that is substantially parallel to the front surface plate 2G, and a second surface 22Bb perpendicular to the first surface 22Ba, and holes 22h are provided in the second surface 22Bb.
The holes 22h in the edges of the frame and the holes 72h in the chassis 72 are located at the same positions when in an assembled state, and the holes 72h in the chassis 72 are tapped so as to engage with screws. As shown in
In
As indicated above, in the first embodiment, the cross-sectional shape of the frame is a substantially U-shape, but the cross-sectional shape is not limited to being a U-shape and may also be substantially L-shaped, as in the second embodiment.
Below, a third embodiment of the present invention is described.
Similarly to the first embodiment, in the display device 13, a display panel unit 23 is situated on the front surface, and a light shielding printed region 23a is disposed in the peripheral edge portion of the rear surface thereof. Furthermore, an image display region D is formed in substantially the center portion thereof.
The third embodiment has a structure in which the panel holder 3 according to the first embodiment is omitted, and the functions thereof are provided by the frame. In the first embodiment, as shown in
A case is envisaged where the lower edge 2B of the frame in
According to the third embodiment, the frame which accommodates the light source and the panel holder which holds the light guide plate, the optical sheet and the reflection sheet, from the front surface side, are configured as a unified body. Accordingly, the structure of the front surface plate 2G and the display panel 2P on the front surface side, and the backlight where the light source 2LED is disposed, on the rear surface side, is further simplified, and cumulative error caused by assembly can be suppressed.
While the present invention has been described with reference to exemplary embodiments, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.
This application claims the benefit of Japanese Patent Application No. 2014-169478, filed on Aug. 22, 2014, which is hereby incorporated by reference herein in its entirety.
Number | Date | Country | Kind |
---|---|---|---|
2014-169478 | Aug 2014 | JP | national |