The present invention relates to a display apparatus.
Patent document 1 discloses display apparatus having a direct light type backlight. This display apparatus comprises a display panel, a diffusion plate positioned at the rear of the display panel, and a light source portion arranged at the rear of the diffusion plate. The display panel, the diffusion plate, and the light source portion are arranged inside a housing. The housing comprises a backlight chassis (back chassis) holding the light source portion, and a cabinet rear divided body arranged at the rear of the back chassis at a distance from the back chassis.
Patent Document 1: WO2016/006025 A1
A display apparatus having a direct light type backlight such as the display apparatus disclosed in Patent Document 1 needs to be provided with a cabinet rear divided body outer to the back chassis, so that achieving a further thinning of the display apparatus having the direct light type backlight is not easy.
The problem to be solved by the present invention is further thinning of the display apparatus having the direct type backlight.
According to one aspect of the present invention, a display apparatus is provided, the display apparatus comprising a housing, a display panel, and a diffusion plate and a light source portion arranged at a region defined by the housing and the display panel, wherein the diffusion plate comprises a first surface facing a surface opposite to a display surface of the display panel, and a second surface being a surface opposite to the first surface; wherein the housing comprises a first portion provided with an aperture being blocked by the display panel and a second portion comprising an inner surface facing the second surface, the second portion being made of a resin, and the light source portion being arranged at the inner surface of the second portion; and wherein an outermost shell of the display apparatus is formed by the housing and the display panel.
The present invention makes it possible to achieve further thinning of a display apparatus having a direct light type backlight.
Embodiments of the present invention will be described below with reference to the attached drawings.
The liquid crystal display apparatus 1 comprises a housing 2 and a liquid crystal panel 6. As shown most clearly in
With reference to
With reference to
As shown most clearly in
The liquid crystal panel 6 is arranged so as to close the aperture 3a of the bezel 3. For example, as shown in
In
The frame 61 can have a frame shape in which the rectangular aperture 61a is formed in a manner similar to the bezel 3, or the frame 61 can consist of three sides defining the aperture 61a.
The optical sheet 7 is arranged adjacent to the liquid crystal panel 6 at the rear of the liquid crystal panel 6. The diffusion plate 8 is arranged adjacent to the optical sheet 7 at the rear of the optical sheet 7. The diffusion plate 8 comprises a front surface (a first surface) 8a facing a surface opposite to the display surface of the display panel 6, and a rear surface (a second surface) 8b being a surface opposite to the front surface 8a. The reflection sheet 9 is arranged at the rear of the diffusion plate 8. The reflection sheet 9 comprises a rectangular-plate shaped flat portion 9a and an inclined portion 9b upstanding from the peripheral edge of the flat portion 9a. The diffusion plate 8 is arranged such that the diffusion plate 8 closes an aperture 4a opening frontward of the back chassis 4.
The light source substrates 10 is arranged adjacent to the flat portion 9a at the rear of the flat portion 9a. LED assembly units 12 are mounted to the light source substrates 10. Each of the LED assembly units 12 comprises a plurality of LEDs (one example of a light source) 13 and a plurality of lenses 14 corresponding to the respective plurality of LEDs 13. Each of the LED assembly units 12 is arranged such that it passes through a window hole 9c (also see
The attaching plate 11 is arranged adjacent to the light source substrates 10 at the rear of the light source substrates 10. With reference to also
As described previously, the housing 2 and the liquid crystal panel 6 form the outermost shell of the liquid crystal display apparatus 1. The liquid crystal display apparatus 1 does not comprise a member (for example, a cabinet rear divided body) further covering the entirety of the back chassis 4, making it possible to realize thinning of the liquid crystal display apparatus 1. The light source substrates 10 are arranged at the inner surface 41a of the main body 41 of the back chassis 4 and, as described previously, the back chassis 4 is made of a resin having high thermal conductivity.
Next, with mainly reference to
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The surface area of the outer surface 41b of the main body 41 of the back chassis 4 is drastically increased by the fins 411 compared to the case in which the outer surface 41b is merely a flat surface. Moreover, also the surface area of the frame body 44 (the frame members 42, 43) is drastically increased by the fins 421, 431. The fins 411, 421, 431 being provided over the substantial entirety of the back chassis 4 caused the back chassis 4 to be cooled to the extent beyond expectations even at the time of operation of the liquid crystal display apparatus 1.
Moreover, as shown, the fins 411 extending in the up-down direction cause air in the vicinity of the outer surface 41b to be warmed up and expand by heat dissipated from the outer surface 41b. Buoyancy causes expanded air to rise in the groove 412, causing cool air in the surrounding to flow in toward the fins 411. Such flow of air causes warmed up air and cool air to be exchanged. Therefore, the back chassis 4 is cooled more effectively and receives heat inside the housing 2 effectively.
The outer surface 41b of the main body 41 of the back chassis 4 having the features as described above makes it possible to dissipate heat generated inside the housing 2 out of the housing 2.
Normally, the chimney effect taking place in the space between the back chassis and the cabinet rear divided body causes the liquid crystal display apparatus having the direct light type backlight to dissipate heat within the housing out of the housing. According to the present Embodiment, the above-described back chassis 4 can realize heat dissipation to the extent such that the chimney effect is not needed. Therefore, the liquid crystal display apparatus 1 according to the present Embodiment does not require the cabinet rear divided body, thus making it possible to realize further thinning.
With reference to
With continuing reference to
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The long hole 42c formed at the frame member 42 has a shape extending in the longitudinal direction (left-right direction shown) of the frame member 42. Therefore, if the back chassis 4 thermally expands or shrinks in the left-right direction, the constraint of thermal expansion or shrinkage due to the screw 51 interfering with an end portion of the long hole 42c does not occur until the amount of expansion or shrinkage increases to some extent. In other words, connection of the bezel 3 and the back chassis 4 by the screw 51 allows, to some extent, thermal expansion and shrinkage in the left-right direction of the back chassis 4. The long hole 43c formed at the frame member 43 has a shape extending in the longitudinal direction (up-down direction shown) of the frame member 43. Therefore, if the back chassis 4 thermally expands or shrinks in the up-down direction, the constraint of thermal expansion or shrinkage due to the screw 51 interfering with an end portion of the long hole 43c does not occur until the amount of expansion or shrinkage increases to some extent. In other words, connection of the bezel 3 and the back chassis 4 by the screw 51 allows, to some extent, thermal expansion and shrinkage in the up-down direction of the back chassis 4.
In this way, connection of the bezel 3 and the back chassis 4 by the screw 51 allows, to some extent, thermal expansion and shrinkage in the up-down direction and left-right direction of the back chassis 4 by the long holes 42c, 43c formed at the frame members 42 and 43, respectively. As a result, deformation such as warpage of the back chassis 4 caused by thermal expansion or shrinkage of the main body 41 can be prevented or suppressed.
The connection of the bezel 3 and the back chassis 4 by the screw 51 can also be realized by providing the bezel 3 with a long hole and providing the back chassis 4 with a screw hole.
With reference to
Connection of the main body 41 and the frame member 42 by the screw 52 will be described. A plurality of cylindrical portions 42d protruding rearward are formed at the frame member 42, and each of the cylindrical portions 42d is provided with a screw hole (second screw hole) 42e. Moreover, a long hole (second long hole) 41e is formed at the main body 41. The long hole 41e has a shape extending in the direction (left-right direction) along the horizontal direction at the time of use and penetrates in the thickness direction at a position corresponding to each of the cylindrical portions 42d (in other words, a position corresponding to each of the screw holes 42e). The cylindrical portion 42d is inserted into the long hole 41e and the tip of the screw 52 (second screw) is screwed into the screw hole 42e, in other words, the tip of the screw 52 inserted into the long hole 41e is screwed into the screw hole 42e to connect the main body 41 and the frame member 42.
The dimension in the short direction of the long hole 41e is set to be slightly greater than the outer diameter of the cylindrical portion 42d to an extent such that a minimum gap needed for inserting the cylindrical portion 42d into the long hole 41e is maintained. The dimension in the longitudinal direction of the long hole 41e is set to be sufficiently greater than the outer diameter of the cylindrical portion 42d. Connection of the main body 41 and the frame member 43 by the screw 52 is the same as the connection of the main body 41 and the frame member 42, except for the long hole 41 e formed at the main body 41 having a shape extending in the up-down direction. In other words, the cylindrical portion 43d of the left frame member 43 is inserted into the long hole 41e and the tip of the screw 52 is screwed into the screw hole 43e to connect the main body 41 and the frame member 43.
A gap C is provided between the main body 41 and the frame body 44. Moreover, the long holes 41e for connecting the main body 41 to the frame member 42 among the long holes 41e formed at the main body 41 each have a shape extending in the left-right direction. Thus, if the main body 41 thermally shrinks in the left-right direction, the constraint of thermal shrinkage due to the screw 52 interfering with an end portion of the long hole 41e does not occur until the amount of shrinkage increases to some extent. Moreover, if the main body 41 thermally expands, the constraint of thermal expansion due to the main body 41 interfering with the frame body 44 does not occur until the amount of expansion reaches the dimension of the gap C. In other words, connection of the main body 41 and the frame member 42 by the screw 52 allows, to some extent, thermal expansion and shrinkage in the left-right direction of the main body 41. Moreover, the long holes 41e for connecting the main body 41 to the frame member 43 among the long holes 41e formed at the main body 41 each have a shape extending in the up-down direction. Therefore, if the main body 41 thermally expands or shrinks in the up-down direction, the constraint of thermal expansion or shrinkage due to the screw 52 interfering with an end portion of the long hole 42e does not occur until the amount of expansion or shrinkage increases to some extent. In other words, connection of the main body 41 and the frame member 43 by the screw 52 allows, to some extent, thermal expansion and shrinkage in the up-down direction of the main body 41.
In this way, providing a gap C between the main body 41 and the frame body 44 as well as forming a long hole 41e at the main body 41 for connecting the main body 41 and the frame body 44 by the screw 52 allows, to some extent, thermal expansion and shrinkage in the up-down direction and the left-right direction of the main body 41. As a result, deformation such as warpage of the main body 41 caused by thermal expansion or shrinkage can be prevented or suppressed.
Connection of the main body 41 and the frame body 44 by the screw 52 can also be realized by providing the frame members 42, 43 with a long hole and providing the main body 41 with a screw hole.
With reference to
With reference to
With continuing reference to
The long hole 5c formed at the flat plate portion 5a of the reinforcing plate 5 has a shape extending in the left-right direction. While the reinforcing plate 5 made of a metal has a greater thermal expansion coefficient than that of the main body 41 of the back chassis 4 being made of a resin, the difference in the amount of thermal expansion or shrinkage caused by the difference in the thermal expansion coefficient between the reinforcing plate 5 and the main body 41 is absorbed by the long hole 5c to some extent. As a result, an occurrence of deformation such as warpage of the main body 41 of the back chassis 4 caused by thermal expansion or shrinkage of the reinforcing plate 5 can be prevented or suppressed. In this way, attachment of the reinforcing plate 5 to the main body 41 of the back chassis 4 by the screw 53 allows, to some extent, thermal expansion and/or shrinkage in the left-right direction of the reinforcing plate 5.
Next, with primary reference to
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The width of the engaging hole 42f being indicated with a letter W1 in
For Embodiments 2 and 3 below, structures and functions not mentioned in particular are the same as for Embodiment 1. Moreover, in the drawings of these Embodiments, the same letter is affixed for the same element in Embodiment 1.
Preferred Embodiments of the present invention are shown below.
A display apparatus according to one aspect of the present invention comprises a housing, a display panel, a diffusion plate arranged at a region defined by the housing and the display panel, and a light source portion arranged at the region defined by the housing and the display panel, wherein the diffusion plate has a first surface facing a surface opposite to a display surface of the display panel, and a second surface being a surface opposite to the first surface, wherein the housing comprises a first part having an aperture being closed by the display panel and a second part having an inner surface facing the second surface, the second part being made of a resin, and the light source portion being arranged at the inner surface of the second portion, and wherein an outermost shell of the display apparatus is formed by the housing and the display panel.
The inner surface of the second part of the housing faces the second surface of the diffusion plate, and the light source portion is arranged at the inner surface of the second part. In this way, the display apparatus is a display apparatus having a direct light type backlight. The housing comprising the second part having the inner surface at which the light source portion is arranged constitutes the outermost shell of the display apparatus together with the display panel. Therefore, the display apparatus does not require a cabinet rear divided body provided in the display apparatus having a direct light type backlight. Accordingly, further thinning of the display apparatus can be realized.
A plurality of fins can be provided in an outer surface of the second portion, the plurality of fins being oriented in one direction.
The light source portion is arranged at the inner surface of the second portion being a portion of the housing constituting the outermost shell of the display apparatus. While the second portion is made of a resin, the fins can be provided in the second part to improve the property of dissipating heat generated in the light source portion. Moreover, a highly heat dissipating resin (a resin in which powder of carbon or a metal such as aluminum/copper, etc. is mixed) can be used to further improve the property of dissipating heat generated in the light source portion.
One of the first part and the second part can have a first long hole and the other of the first part and the second part can have a first screw hole, and a tip of a first screw inserted into the first long hole can be screwed into the first screw hole to connect the first part and the second part.
This configuration makes it possible to prevent or suppress deformation of the first part, the deformation being caused by thermal expansion or shrinkage.
The second part can comprise a main body comprising the inner surface and a frame body surrounding a peripheral edge of the main body, one of the main body and the frame body can have a second long hole and the other of the main body and the frame body can have a second screw hole, and the a of the second screw inserted into the second long hole can be screwed into the second screw hole to connect the main body and the frame body.
This configuration makes it possible to prevent or suppress deformation of the main body of the first part, the deformation being caused by thermal expansion or shrinkage.
The display apparatus can further comprise a reinforcing member attached to the inner surface of the second part.
The above-described configuration makes it possible to improve the strength of the second part.
The reinforcing member can have a third long hole and the first part can have a third screw hole, and a tip of a third screw inserted into the third long hole can be screwed into the third screw hole to attach the reinforcing member to an inner surface of the first part.
This configuration allows, to some extent, thermal expansion and shrinkage of the reinforcing member in the longitudinal direction of the third long hole.
The display apparatus can further comprise an attaching member arranged at the inner surface of the second part, and the light source portion can be fixed to the attaching member.
More specifically, the attaching member can comprise an engaging piece, and the engaging piece can engage a hole wall of an engaging hole provided in the second part to fix the attaching member to the second part.
This configuration allows thermal expansion and shrinkage of the attaching plate.
Alternatively, the attaching member can be fixed to the second part by screwing.
The light source portion can be fixed to the inner surface of the second part.
Filing Document | Filing Date | Country | Kind |
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PCT/JP2017/008603 | 3/3/2017 | WO | 00 |