This application is the U.S. National Phase under 35 U.S.C. § 371 of International Patent Application No PCT/JP2019/042735, filed on Oct. 31, 2019, which in turn claims the benefit of Japanese Application No. 2019-070889, filed on Apr. 2, 2019, the entire disclosures of which Applications are incorporated by reference herein.
The present disclosure relates to an image display device operable in a transmissive mode and furniture including the image display device.
Patent Literature (PTL) 1 discloses a showcase with a transparent display and a display function. The transparent display is capable of displaying advertising information related to commercial products. By advertising with use of the transparent display in this way, a buyer of a product is capable of viewing the product and advertisement in a superimposed manner.
The present disclosure provides an image display device which can be manufactured efficiently, and furniture including the image display device.
An image display device according to the present disclosure includes: a display panel switchable between an image display mode and a transmissive mode, the image display mode being a mode in which an image is displayed, the transmissive mode being a mode in which the display panel is in a transmissive state where an object behind the display panel is visible in a front view of the display panel; a power line disposed along a periphery of the display panel; and an outer frame disposed along an edge of the display panel, the outer frame including a first housing space for housing the power line and a second housing space for housing the edge of the display panel.
According to the present disclosure, it is possible to provide an image display device which can be manufactured efficiently and furniture including the image display device.
The inventors of the present application have found the following problem in a conventional showcase with a display function. In the conventional showcase with a display function, a transparent display and a drive circuit which drives the transparent display are electrically connected to each other by a flexible tape which is disposed inside a frame. The flexible tape disposed in such a manner may possibly be broken by, for example, contacting the edge of the transparent display at the time of manufacturing of the showcase with the display function. In the case where the flexible tape is broken, the transparent display and the drive circuit need to be reconnected to each other by using a new flexible tape, which leads to a reduced manufacturing efficiency.
The present disclosure has been conceived based on such finding. As a result of intensive studies by the inventors of the present application, the inventors have arrived at an idea of a configuration of an image display device which can be manufactured efficiently.
Hereinafter, embodiments will be described with reference to the drawings, as necessary. Note that unnecessarily detailed descriptions may be omitted. For example, detailed descriptions of already known matters and overlapping description of substantially the same configuration may be omitted. This is to avoid the following description to become unnecessarily redundant, and to facilitate understanding of the person skilled in the art. Note that the drawings are not necessarily precise illustrations.
The inventors of the present application provide the accompanying drawings and the following description so that the person skilled in the art fully understands the present disclosure, and do not intend to limit the subject matter of the claims by this.
Moreover, in the following embodiments, the vertical (top-bottom) direction is represented by a Z-axis, the front-back direction is represented by a Y-axis, and the horizontal (left-right) direction is represented by an X-axis for the sake of description, but these do not limit the orientation of the image display device according to the present disclosure at the time of manufacture or usage. Additionally, in the following descriptions, for example, a positive X-axis indicates the direction of the arrow of the X-axis and a negative X-axis indicates the direction opposite to the positive X-axis. The same applies to the Y-axis and the Z-axis.
Moreover, in the following embodiments, language such as parallel or perpendicular may be used to indicate the relative orientation of two directions, but this includes cases where the orientation is not as exactly stated. For example, “two directions are parallel” includes, in addition to exactly parallel, substantially parallel, that is to say, for example, includes a margin of error of about a few percent, unless otherwise noted.
Hereinafter, Embodiment 1 will be described with reference to the drawings.
[Configuration of Image Display Device]
As illustrated in
(Display Panel)
As illustrated in
Organic EL panel 24 includes front glass plate 28, and organic light-emitting diode (OLED) panel 30 disposed behind front glass plate 28. In the present embodiment, organic EL elements, each of which includes an EL layer and transparent electrodes sandwiching the EL layer, are disposed in a matrix in OLED panel 30. The region of OLED panel 30 where an image (including background image) is not displayed has light transmitting properties to the extent generally referred to as transparent.
Light control panel 26 includes light control sheet 32, first glass plate 34 disposed in front of light control sheet 32, and second glass plate 36 disposed behind light control sheet 32. Light control sheet 32 is a component switchable between a light transmissive state and a light non-transmissive state depending on whether or not a predetermined voltage is applied to light control sheet 32. Light control sheet 32 includes, for example, a liquid crystal layer including liquid crystal molecules having an orientational state changed by presence or absence of an application of voltage, and resin sheets sandwiching the liquid crystal layer.
Display panel 12 configured such that organic EL panel 24 and light control panel 26 are layered, becomes, for example, as illustrated in
(Frame Unit)
As illustrated in
Outer frame 38 is a component which supports display panel 12. Outer frame 38 includes upper plate 42 disposed along the upper edge of display panel 12, lower plate 44 disposed along the lower edge of display panel 12, left plate 46 disposed along the left edge of display panel 12, and right plate 48 disposed along the right edge of display panel 12. Outer frame 38 supports display panel 12 such that display panel 12 tilts slightly rearward. Each of upper plate 42, lower plate 44, left plate 46, and right plate 48 has a plate shape. Each of upper plate 42, lower plate 44, left plate 46, and right plate 48 protrudes forward and rearward relative to display panel 12. Upper plate 42 and lower plate 44 are disposed parallel to each other, and left plate 46 and right plate 48 are disposed parallel to each other.
As illustrated in
First top groove 50 is a groove for housing the upper edge of display panel 12, upper molding portion 68 (to be described later) attached to the upper edge of display panel 12, and power line 20 housed in grooves 82 and 84 (to be described later) of upper molding portion 68. First top groove 50 is disposed along the upper edge of display panel 12. First top groove 50 is recessed upward and extends in the horizontal direction. First top groove 50 ranges from the left edge to the right edge of upper plate 42.
Upper plate 42 houses, within thickness T1 of upper plate 42, the upper edge of display panel 12, upper molding portion 68 attached to the upper edge of display panel 12, and power line 20 housed in grooves 82 and 84 of upper molding portion 68, by housing, in the space within first top groove 50, the upper edge of display panel 12, upper molding portion 68 attached to the upper edge of display panel 12, and power line 20 housed in grooves 82 and 84 of upper molding portion 68. As described above, upper plate 42 includes, within thickness T1 of upper plate 42, a first housing space for housing power line 20 and a second housing space for housing the upper edge of display panel 12. The first housing space and the second housing space are spaces in first top groove 50.
Second top groove 52 is a groove for housing illumination unit 16. Second top groove 52 is recessed upward behind first top groove 50, and extends in the horizontal direction. Second top groove 52 ranges from the left edge to the right edge of upper plate 42. Upper plate 42 houses illumination unit 16 within thickness T1 of upper plate 42 by housing illumination unit 16 in the space within second top groove 52.
Lower plate 44 houses the lower edge of display panel 12 and lower molding portion 70 attached to the lower edge of display panel 12 within thickness T2 (see
As illustrated in
Left plate 46 houses, within thickness T3 of left plate 46, the left edge of display panel 12, left molding portion 72 attached to the left edge of display panel 12, and power line 20 housed in the groove of left molding portion 72 by housing, in the space within left groove 64, the left edge of display panel 12, left molding portion 72 attached to the left edge of display panel 12, and power line 20 housed in the groove of left molding portion 72. As described above, left plate 46 includes, within thickness T3 of left plate 46, a first housing space for housing power line 20 and a second housing space for housing the left edge of display panel 12. The first housing space and the second housing space are spaces within left groove 64.
Right plate 48 houses, within thickness T4 of right plate 48, the right edge of display panel 12, right molding portion 74 attached to the right edge of display panel 12, and power line 20 housed in grooves 98 and 100 of right molding portion 74 by housing, in the space within right groove 66, the right edge of display panel 12, right molding portion 74 attached to the right edge of display panel 12, and power line 20 housed in grooves 98 and 100 of right molding portion 74, As described above, right plate 48 includes, within thickness T4 of right plate 48, a first housing space for housing power line 20 and a second housing space for housing the right edge of display panel 12. The first housing space and the second housing space are spaces within right groove 66.
For the materials of upper plate 42, lower plate 44, left plate 46, and right plate 48, for example, wood can be used. With this, for example, when image display device 10 is used in a room where wooden furniture or the like is placed, loss of interior aesthetic can be prevented. In the present embodiment, upper plate 42 corresponds to an upper outer frame, and lower plate 44 corresponds to a lower outer frame. Moreover, in the present embodiment, each of first top groove 50, left groove 64, and right groove 66 corresponds to an outer frame groove.
As illustrated in
As illustrated in
As illustrated in
As illustrated in
As illustrated in
Each of molding portions 68, 70, 72, and 74 is attached to the edge of display panel 12 by, for example, an adhesive tape. In the present embodiment, each of molding portions 68, 70, 72, and 74 is made of a material having a flexibility greater than the flexibility of upper plate 42, lower plate 44, left plate 46 and right plate 48. For materials of molding portions 68, 70, 72, and 74, for example, ABS resin can be used. Another examples of the materials for molding portions 68, 70, 72, and 74 include thermoplastic resin and elastomer based resin. By using flexible materials for molding portions 68, 70, 72, and 74, it is possible to prevent molding portions 68, 70, 72, and 74 and/or display panel 12 from being broken due to contact between molding portions 68, 70, 72, and 74 and display panel 12. Moreover, in the present embodiment, front wall 78 and back wall 80 correspond to a pair of walls. In a similar manner, front wall 88 and back wall 90 correspond to the pair of walls, and front wall 94 and back wall 96 correspond to the pair of walls. Moreover, in the present embodiment, each of groove 82, groove 84, groove 98, and groove 100 corresponds to an inner frame groove.
(Illumination Unit)
As illustrated in
Illumination unit 16 includes light source unit 102 which emits light and support 104 for attaching light source unit 102 to the bottom surface of upper plate 42. Illumination unit 16 is embedded in second top groove 52. Accordingly, when display panel 12 is turned into a transmissive state, it is possible to prevent the light emitted from illumination unit 16 from directly entering the eyes of the user in front of image display device 10. Light source unit 102 includes substrate 106 elongated in the horizontal direction and a plurality of LED elements 108 mounted on substrate 106. One or more objects 200 placed on lower plate 44 are illuminated by illumination unit 16 configured as above.
(Power Supply Unit)
As illustrated in
(Panel Controller)
As illustrated in
(Power Line)
(Conductive Component)
As illustrated in
[Advantageous Effects, etc.]
As described above, image display device 10 according to the present embodiment includes display panel 12, power line 20, and outer frame 38. Display panel 12 is switchable between an image display mode in which an image is displayed and a transmissive mode in which display panel 12 is in a transmissive state where objects 200 behind display panel 12 are visible in the front view. Power line 20 is disposed along the periphery of display panel 12. Outer frame 38 is disposed along the edge of display panel 12, and includes a first housing space for housing power line 20 and a second housing space for housing the edge of display panel 12.
With this configuration, outer frame 38 includes the first housing space for housing power line 20 and the second housing space for housing the edge of display panel 12. Accordingly, power line 20 and the edge of display panel 12 can be easily housed in outer frame 38. Hence, image display device 10 can be manufactured efficiently. Since power line 20 is housed in outer frame 38, it is possible to prevent power line 20 from being seen by the user.
Moreover, in image display device 10 according to the present embodiment, outer frame 38 (upper plate 42, left plate 46, and right plate 48) includes outer frame grooves (first top groove 50, left groove 64, and right groove 66) within the thickness of outer frame 38. The first housing space and the second housing space are spaces within the outer frame grooves (first top groove 50, left groove 64, and right groove 66).
With this configuration, the first housing space for housing power line 20 and the second housing space for housing the edge of display panel 12 are spaces within the outer frame grooves (first top groove 50, left groove 64, and right groove 66) within the thickness of outer frame 38 (upper plate 42, left plate 46, and right plate 48). Hence, by housing power line 20 and the edge of display panel 12 in the outer frame groove (first top groove 50, left groove 64, and right groove 66), power line 20 and the edge of display panel 12 can be easily housed within the thickness of outer frame 38 (upper plate 42, left plate 46, and right plate 48). This allows image display device 10 to be manufactured more efficiently.
Moreover, in image display device 10 according to the present embodiment, power line 20 extends along the edge of display panel 12. Moreover, image display device 10 further includes inner frame 40 which is separated from outer frame 38 and which is disposed between power line 20 and the edge of display panel 12.
With this configuration, since inner frame 40 is disposed between the edge of display panel 12 and power line 20, it is possible to further prevent power line 20 from being seen by the user, and to prevent power line 20 from being broken due to contact between power line 20 and the edge of display panel 12. This leads to efficient manufacturing of image display device 10. Moreover, since inner frame 40 is separated from outer frame 38, inner frame 40 and power line 20 can be easily arranged before attaching outer frame 38. For example, in a state where display panel 12 is supported by upper plate 42, lower plate 44, and left plate 46, right molding portion 74 can be attached to the right edge of display panel 12 before attaching right plate 48, and then power line 20 can be disposed so as to extend along the right edge of display panel 12. In this way, right molding portion 74 and power line 20 can be arranged before attaching right plate 48. This facilitates work and arrangement of power line 20, leading to more efficient manufacturing of image display device 10.
Moreover, in image display device 10 according to the present embodiment, inner frame 40 includes grooves 82, 84, 98 and 100 for housing power line 20. Grooves 82, 98, 84, and 100 are recessed toward display panel 12, and are disposed along the edge of display panel 12.
With this configuration, by housing power line 20 in grooves 82, 98, 84, and 100, it is possible to further prevent power line 20 from being seen by the user. Moreover, by disposing power line 20 along grooves 82, 98, 84, and 100, power line 20 can be easily disposed so as to extend along the edge of display panel 12, leading to more efficient manufacturing of image display device 10.
Moreover, in image display device 10 according to the present embodiment, inner frame 40 includes front wall 78 and back wall 80, front wall 88 and back wall 90, and front wall 94 and back wall 96 which protrude toward display panel 12 and which are disposed so as to sandwich the edge of display panel 12 in the front and back direction.
With this configuration, by sandwiching display panel 12 between front wall 78 and back wall 80, upper molding portion 68 can be easily attached to the upper edge of display panel 12, leading to more efficient manufacturing of image display device 10. In a similar manner, by sandwiching display panel 12 between front wall 88 and back wall 90, lower molding portion 70 can be easily attached to the lower edge of display panel 12, and by sandwiching display panel 12 between front wall 94 and back wall 96, right molding portion 74 (left molding portion 72) can be easily attached to the right edge (left edge) of display panel 12.
Moreover, in image display device 10 according to the present embodiment, upper molding portion 68, lower molding portion 70, left molding portion 72, and right molding portion 74 are made of materials having flexibility greater than the flexibility of upper plate 42, lower plate 44, left plate 46, and right plate 48.
With this configuration, for example, even if the width of upper molding portion 68 is slightly greater than the width of first top groove 50 of upper plate 42, upper molding portion 68 can be easily housed in first top groove 50 of upper plate 42 by deforming upper molding portion 68. This allows image display device 10 to be manufactured more efficiently. The same also applies to other molding portions 70, 72, and 74.
Moreover, image display device 10 according to the present embodiment further includes conductive component 22 disposed on inner frame 40.
With this configuration, conductive component 22 can be housed in outer frame 38 together with inner frame 40, it is possible to prevent conductive component 22 from being seen by the user.
Moreover, image display device 10 according to the present embodiment further includes: illumination unit 16 which illuminates the region behind display panel 12; and power supply unit 18 which is electrically connected to illumination unit 16 via power line 20 and supplies power to illumination unit 16. Outer frame 38 includes: upper plate 42 which is disposed along the upper edge of display panel 12 and which supports illumination unit 16; and lower plate 44 which is disposed along the lower edge of display panel 12 and which supports power supply unit 18.
With this configuration, one or more objects 200 placed on lower plate 44 can be illuminated by the light emitted by illumination unit 16. Additionally, it is possible to prevent power line 20 connecting power supply unit 18 and illumination unit 16 from being seen by the user.
Hereinafter, Embodiment 2 will be described with reference to the drawings. In the following description, differences from image display device 10 according to Embodiment 1 will be mainly described.
[Configuration of Image Display Device]
Left plate 46a is disposed along the left edge of display panel 12, and connects the left edge of upper plate 42 and the left edge of lower plate 44. Right plate 48a is disposed along the right edge of display panel 12, and connects the right edge of upper plate 42 and the right edge of lower plate 44. Each of left plate 46a and right plate 48a has a plate shape, and protrudes forward and rearward relative to display panel 12. Left plate 46a and right plate 48a are disposed in parallel to each other. Hereinafter, left plate 46a and right plate 48a will be described.
(Left Plate)
(Right Plate)
As illustrated in
As illustrated in
As illustrated in
As illustrated in
As illustrated in
As illustrated in
As illustrated in
First hole 148 is disposed on the top end portion of main body 136 and behind insertion hole 142 into which display panel 12 is inserted, that is, behind display panel 12. First hole 148 is a through hole which is in communication with first hollow portion 138, and penetrates the left-side surface of main body 136. As illustrated in
As illustrated in
As illustrated in
As illustrated in
Bottom lid 146 is attached to the lower edge of main body 136 so as to block first hollow portion 138 and second hollow portion 139 from below. For example, bolt holes are disposed within the thickness of main body 136, and bottom lid 146 is attached to main body 136 using bolts.
(Power Line)
As described above, in image display device 10a according to the present embodiment, outer frame 38a includes a first hollow portion (first hollow portion 122 and first hollow portion 138) within the thickness of outer frame 38a (left plate 46a and right plate 48a). The first housing space is a space within the first hollow portion (first hollow portion 122 and first hollow portion 138).
With this configuration, the first housing space for housing power line 20 is a space within the first hollow portion (first hollow portion 122 and first hollow portion 138) within the thickness of outer frame 38a (left plate 46a and right plate 48a). Accordingly, by housing power line 20 in the space within the first hollow portion (first hollow portion 122 and first hollow portion 138), power line 20 can be easily housed within the thickness of outer frame 38a (left plate 46a and right plate 48a), leading to efficient manufacturing of image display device 10a.
Moreover, in image display device 10a according to the present embodiment, outer frame 36a (left plate 46a and right plate 48a) further includes a communication hole (communication hole 124 and communication hole 140) which places the first hollow portion (first hollow portion 122 and first hollow portion 138) in communication with the back space behind display panel 12.
With this configuration, power line 20 connected to illumination unit 16 and the like disposed in the back space behind display panel 12 can be easily housed in the space within the first hollow portion (first hollow portion 122 and first hollow portion 138) via the communication hole (communication hole 124 and communication hole 140). Hence, image display device 10a can be manufactured more efficiently.
Moreover, in image display device 10a according to the present embodiment, in the front view of display panel 12, the first hollow portion (first hollow portion 122 and first hollow portion 138) extends along the edge of display panel 12. The communication hole (communication hole 124 and communication hole 140) includes a first hole (first hole 132 and first hole 148) and a second hole (second hole 134 and second hole 150). The first hole places one end of the first hollow portion (first hollow portion 122 and first hollow portion 138) in the extension direction in the front view of display panel 12 in communication with the back space. The second hole places the other end of first hollow portion (first hollow portion 122 and first hollow portion 138) in the extension direction in the front view of display panel 12 in communication with the back space.
With this configuration, illumination unit 16 disposed in the vicinity of one end of the first hollow portion (first hollow portion 122 and first hollow portion 138) in the extension direction in the front view of display panel 12 and power line 20 housed in the space within the first hollow portion (first hollow portion 122 and first hollow portion 138) can be easily connected to each other via the first hole (first hole 132 and first hole 148). Moreover, power supply unit 18 disposed in the vicinity of the other end of the first hollow portion (first hollow portion 122 and first hollow portion 138) in the extension direction in the front view of display panel 12 and power line 20 housed in the space within the first hollow portion (first hollow portion 122 and first hollow portion 138) can be easily connected to each other via the second hole (second hole 134 and second hole 150). Hence, image display device 10a can be manufactured more efficiently.
Moreover, in image display device 10a according to the present embodiment, outer frame 38a (left plate 46a and right plate 48a) further includes a second hollow portion (second hollow portion 123 and second hollow portion 139) within the thickness of outer frame 38a (left plate 46a and right plate 48a) and an insertion hole (insertion hole 126 and insertion hole 142) which is in communication with the second hollow portion (second hollow portion 123 and second hollow portion 139) and into which display panel 12 is inserted. The second housing space is a space within the second hollow portion (second hollow portion 123 and second hollow portion 139).
With this configuration, by inserting display panel 12 into the insertion hole (insertion hole 126 and insertion hole 142), the edge of display panel 12 can be easily housed in the space (second housing space) within the second hollow portion (second hollow portion 123 and second hollow portion 139). Hence, image display device 10a can be manufactured more efficiently.
Moreover, in image display device 10a according to the present embodiment, outer frame 38a (left plate 46a and right plate 48a) is made of a resin extruded material or a metal extruded material.
With this configuration, since an increase in cost at the time of mass production of outer frame 38a (left plate 46a and right plate 48a) can be reduced, an increase in cost at the time of mass production of image display device 10a can be reduced.
As described above, embodiments have been described as examples of the technique disclosed in the present application. However, the technique according to the present disclosure is not limited to these examples, and is also applicable to embodiments to which various kinds of modifications, replacements, additions, omissions have appropriately been made. Moreover, each structural element described in the above embodiments may be combined to obtain a new embodiment. Another embodiment will be described below as an example.
For example, as illustrated in
Moreover, for example, image display device 10 or image display device 10a according to the present embodiment may be applied to furniture. Specifically, loss of interior aesthetic can be prevented by integrally forming furniture, such as a shelf, used in a house and image display device 10 or image display device 10a.
In the embodiments described above, the case has been described where display panel 12 includes light control panel 26, but the present disclosure is not limited to such an example. For example, display panel 12b does not have to include a light control panel (see
In Embodiment 1 described above, the case has been described where plate shaped outer frame 38 (upper plate 42, lower plate 44, left plate 46, and right plate 48) is disposed along the edge of display panel 12, but the present disclosure is not limited to such an example. For example, an outer frame having a prism shape or the like may be disposed along the edge of display panel 12.
In Embodiment 2 described above, the case has been described where plate shaped outer frame 38a (upper plate 42, lower plate 44, left plate 46a, and right plate 48a) is disposed along the edge of display panel 12, but the present disclosure is not limited to such an example. For example, an outer frame having a prism shape or the like may be disposed along the edge of display panel 12.
In Embodiment 1 described above, the case has been described where outer frame 38 includes upper plate 42, lower plate 44, left plate 46, and right plate 48, but the present disclosure is not limited to such an example. For example, in the case where power line 20 does not extend along the left edge of display panel 12, outer frame 38 does not have to include left plate 46. The same also applies to upper plate 42, lower plate 44, and right plate 48.
In Embodiment 2 described above, the case has been described where outer frame 38a includes upper plate 42, lower plate 44, left plate 46a, and right plate 48a, but the present disclosure is not limited to such an example. For example, in the case where power line 20 is not housed within the thickness of left plate 46a, outer frame 38a does not have to include left plate 46a. The same also applies to upper plate 42, lower plate 44, and right plate 48a.
In Embodiment 1 descried above, the case has been described where inner frame 40 includes upper molding portion 68, lower molding portion 70, left molding portion 72, and right molding portion 74, but the present disclosure is not limited to such an example. For example, in the case where power line 20 does not extend along the left edge of display panel 12, inner frame 40 does not have to include left molding portion 72. The same also applies to upper molding portion 68, lower molding portion 70, and right molding portion 74.
In Embodiment 2 described above, the case has been described where frame unit 14a includes inner frame 40, but the present disclosure is not limited to such an example. For example, frame unit 14a does not have to include inner frame 40.
In the embodiments described above, the case has been described where power line 20 does not extend along the lower edge of display panel 12, but the present disclosure is not limited to such an example. For example, it may be that a groove is disposed on a main surface of main body 86 of lower molding portion 70 opposite to the other main surface of main body 86 adjacent to the bottom end surface of display panel 12, and power line 20 extends along the lower edge of display panel 12 by housing power line 20 in the groove.
In Embodiment 1 described above, the case has been described where power line 20 extends along the end surface of display panel 12, but the present disclosure is not limited to such an example. For example, power line 20 may extend, on the edge of display panel 12, along the front surface of display panel 12 or back surface of display panel 12.
In the embodiments described above, the case has been described where grooves 82 and 84 are disposed in main body 76 of upper molding portion 68, but the present disclosure is not limited to such an example. For example, a groove for housing power line 20 may be disposed on the front surface of front wall 78 of upper molding portion 68, or may be disposed on the back surface of back wall 80. The same also applies to lower molding portion 70, left molding portion 72, and right molding portion 74.
In the embodiments described above, the case has been described where upper molding portion 68 includes front wall 78, back wall 80, and grooves 82 and 84, but the present disclosure is not limited to such an example. For example, upper molding portion 68 does not have to include front wall 78, back wall 80, and groove 82. The same also applies to lower molding portion 70, left molding portion 72, and right molding portion 74.
In the embodiments described above, the case has been described where power line 20 electrically connects illumination unit 16 and power supply unit 18, but the present disclosure is not limited to such an example. For example, it may be that a loudspeaker and/or a wireless module or the like is disposed in upper plate 42, and power line 20 electrically connects the loudspeaker and/or the wireless module and power supply unit 18.
In the embodiments described above, the case has been described where power supply unit 18 is housed inside lower plate 44, but the present disclosure is not limited to such an example. For example, the power supply unit does not have to be housed inside lower plate 44, but may be disposed outside lower plate 44. In this case, for example, the power supply unit may be housed in a power supply box or the like. Moreover, for example, the power supply unit may be disposed within first hollow portion 122, second hollow portion 123, first hollow portion 138, or second hollow portion 139.
In the embodiments described above, the case has been described where light control panel 26 includes first glass plate 34 disposed in front of light control sheet 32 and second glass plate 36 disposed behind light control sheet 32, but the present disclosure is not limited to such an example. For example, it may be that the light control panel includes, instead of first glass plate 34 and second glass plate 36, a first resin plate disposed in front of the light control sheet and a second resin plate disposed behind the light control sheet.
In the embodiments described above, the case has been described where outer frames 38 and 38a support display panel 12 such that display panel 12 tilts slightly rearward, but the present disclosure is not limited to such an example. For example, the outer frame may support display panel 12 such that display panel 12 does not tilt in the front and back direction.
In Embodiment 1 described above, the case has been described where left groove 64 and right groove 66 extend diagonally in the vertical direction, but the present disclosure is not limited to such an example. For example, the left groove and the right groove may extend in parallel to each other in the vertical direction, instead of extending diagonally in the vertical direction.
In Embodiment 2 described above, the case has been described where insertion hole 126 and insertion hole 142 extend diagonally in the vertical direction, but the present disclosure is not limited to such an example. For example, the insertion holes may extend in parallel to each other in the vertical direction, instead of extending diagonally in the vertical direction.
As described above, embodiments have been described as examples of the technique disclosed in the present disclosure. For this purpose, the accompanying drawings and detailed description are provided.
Accordingly, the structural elements described in the accompanying drawings and detailed description may include not only structural elements which are essential for solving the problem but also structural elements which are not essential for solving the problem but are provided for illustrating the technique. Therefore, the non-essential structural elements described in the attached drawings and/or the detailed description should not be instantly acknowledged to be essential structural elements.
Since the above embodiments are intended to illustrate the technique in the present disclosure, it is possible to make various kinds of modifications, replacements, additions, omissions, and the like within the scope of the claims or an equivalent scope thereof.
The present disclosure is applicable to an image display device, such as a television receiver, a monitor display, or a digital signage.
Number | Date | Country | Kind |
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JP2019-070889 | Apr 2019 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2019/042735 | 10/31/2019 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2020/202622 | 10/8/2020 | WO | A |
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20100201908 | Ishida | Aug 2010 | A1 |
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2015-022059 | Feb 2015 | JP |
2017-513069 | May 2017 | JP |
Entry |
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International Search Report and Written Opinion dated Jan. 28, 2020 in International Application No. PCT/JP2019/042735. |
Number | Date | Country | |
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20210235893 A1 | Aug 2021 | US |