Display stand

The display stand's dual assembly forms address the challenge of integrating peripheral devices with display devices, providing convenience and stability in both floor-standing and wall-mounted setups.

JP7780306B2Active Publication Date: 2025-12-04SHARP KK
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Patent Information

Application Number
JP2021178536
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-11-01
Publication Date
2025-12-04
Estimated Expiration
2041-11-01

AI Technical Summary

Technical Problem

Existing display devices can be wall-mounted, but peripheral devices like external speakers require a separate stand, limiting convenience when used together.

Method used

A display stand comprising a first member and a second member that can be assembled in two forms: one where the directions align and another where they intersect, allowing for both floor-standing and wall-mounted configurations, with the second form accommodating peripheral devices.

Benefits of technology

Enables convenient use of display devices with peripheral devices in both configurations without needing separate stands, enhancing stability and allowing space for peripheral devices even in wall-mounted scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a stand for a display device that can be more convenient when a display device is used with a peripheral apparatus.SOLUTION: The stand for a display device includes: a first member extending in a first direction; and a second member extending in a second direction, the second member being freely attached to the first member or removed from the first member. The first member and the second member can be assembled in two manners of a first assembly manner in which the second direction is parallel to the first direction and a second assembly manner in which the second direction intersects with the first direction.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a stand for a display device. [Background technology]

[0002] Conventionally, there are known display devices such as television receivers (hereinafter also referred to as "televisions") that can be selectively used in a floor-standing state where the display device is placed on a surface such as the floor or a desk, or in a wall-mounted state where the display device is hung on a wall or the like. For example, Patent Document 1 discloses a display device that can be selectively used in a floor-standing state or a wall-mounted state. The display device disclosed in Patent Document 1 supports the display device body with a stand by inserting a support member of the stand into an insertion hole in the display device body when placed on the floor, and inserts the support member into the insertion hole to block the insertion hole and prevent foreign objects from entering when hung on a wall. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2009-047921 Summary of the Invention [Problem to be solved by the invention]

[0004] However, when the display device disclosed in Patent Document 1 is used together with peripheral devices, the display device can be wall-mounted, but the peripheral devices cannot be wall-mounted together with the display device. For example, when external speakers such as a sound bar are used together with the display device, the display device can be wall-mounted, but the external speakers cannot be wall-mounted. Therefore, a separate stand or the like is required to place the external speakers.

[0005] The present disclosure has been made in view of the above-mentioned problems, and an object of the present disclosure is to provide a display stand that can improve convenience when using a display device together with peripheral devices. [Means for solving the problem]

[0006] A stand for a display device in one form of the present disclosure comprises a first member extending in a first direction and a second member configured to be detachable from the first member and extending in a second direction, and the first member and the second member can be assembled in two forms: a first assembly form in which the second direction is a direction along the first direction, and a second assembly form in which the second direction intersects with the first direction. [Brief explanation of the drawings]

[0007] [Figure 1] 1 is a perspective view showing a first assembly state of a stand for a display device according to an embodiment. [Figure 2] FIG. 2 is a perspective view showing a second assembly state of the display stand according to the embodiment. [Figure 3A] FIG. 2 is a top view of the first member of FIG. 1. [Figure 3B] FIG. 2 is a right side view of the first member of FIG. 1. [Figure 3C] FIG. 2 is a bottom view of the first member of FIG. 1. [Figure 3D] FIG. 2 is a rear view of the first member of FIG. 1. [Figure 4A] FIG. 2 is a top view of the second member of FIG. 1. [Figure 4B] FIG. 2 is a right side view of the second member of FIG. 1. [Figure 4C] FIG. 2 is a bottom view of the second member of FIG. 1. [Figure 4D] FIG. 2 is a front view of the second member of FIG. 1. [Figure 4E] FIG. 2 is a rear view of the second member of FIG. 1. [Figure 5] 10A to 10C are diagrams showing an assembly method for a first assembly mode of the display stand. [Figure 6] 10A and 10B are diagrams showing a method of attaching the display stand in the first assembly mode to the display device. [Figure 7] 10A and 10B are diagrams showing a method of attaching the display stand in the first assembly mode to the display device. [Figure 8]10A and 10B are diagrams showing an assembly method of the second assembly mode of the display stand. [Figure 9] 10A and 10B are diagrams showing a method of attaching the display stand to the display device in the second assembly mode. [Figure 10] FIG. 10 is a diagram showing a state in which the display stand in the second assembly form is attached to the display device. [Figure 11] 10 is a diagram showing a state in which a peripheral device is placed on the display stand in the second assembly form attached to the display device. FIG. [Figure 12] FIG. 10 is a perspective view showing a modified example of the display stand. [Figure 13] FIG. 10 is a perspective view showing another modified example of the display stand. DETAILED DESCRIPTION OF THE INVENTION

[0008] Hereinafter, embodiments of the present disclosure will be described with reference to the drawings. In the drawings, identical or equivalent components are denoted by the same reference numerals, and redundant descriptions of identical or equivalent components will be omitted as appropriate.

[0009] FIG. 1 is a perspective view showing a first assembly form of a display device stand 1 according to one embodiment. FIG. 2 is a perspective view showing a second assembly form of the display device stand 1 according to one embodiment. In this specification, the "display device stand 1" will also be simply referred to as the "stand 1." The stand 1 according to this embodiment is connected to a display device such as a television or a monitor. The display device to which the stand 1 is connected is a display device that can be used in two states: a floor-standing state and a wall-mounted state. The stand 1 according to this embodiment can take different forms depending on whether the display device is used in a floor-standing state or a wall-mounted state. Specifically, the stand 1 is used in the first assembly form shown in FIG. 1 when the display device is used in a floor-standing state, and is used in the second assembly form shown in FIG. 2 when the display device is used in a wall-mounted state. In other words, the stand 1 can be assembled in two forms: a first assembly form and a second assembly form.

[0010] 1 and 2, the stand 1 according to this embodiment includes a first member 10 and a second member 20. The first member 10 and the second member 20 may be configured to be detachable with a fixing member such as a screw.

[0011] FIG. 3A is a top view of the first member 10 of FIG. 1. FIG. 3B is a right side view of the first member 10 of FIG. 1. FIG. 3C is a bottom view of the first member 10 of FIG. 1. FIG. 3D is a rear view of the first member 10 of FIG. 1. As shown in FIGS. 1, 2, and 3A to 3D, in this embodiment, the first member 10 is a member whose outer shape is roughly prism-shaped. The first member 10 extends in a first direction D1. As shown in FIGS. 3A to 3C, the first direction D1 is the direction from the front surface 11 toward the back surface 12 of the first member 10.

[0012] The first member 10 has a first protrusion 15 at one end in the first direction D1 that protrudes in a direction intersecting the first direction D1. In the present embodiment, as shown in FIG. 3B , the first member 10 has the first protrusion 15 at an end on the front surface 11 side. Specifically, in the present embodiment, the first member 10 has the first protrusion 15 that protrudes toward the lower surface 14 side of the first member 10. In the present embodiment, the first protrusion 15 protrudes in a direction perpendicular to the first direction D1. In the first member 10, the first protrusion 15 is provided at an end opposite to the end on the side that is joined to the second member 20 when the first member 10 and the second member 20 are assembled (in the present embodiment, the end on the back surface 12 side). A specific assembly method will be described later.

[0013] 3B, the first member 10 has a second protrusion 16 at the end on the rear surface 12 side that protrudes in a direction intersecting the first direction D1. Specifically, in this embodiment, the first member 10 has a second protrusion 16 that protrudes toward the upper surface 13 side. In this embodiment, the second protrusion 16 protrudes in a direction perpendicular to the first direction D1. In this embodiment, the second protrusion 16 protrudes in the opposite direction to the protrusion direction of the first protrusion 15.

[0014] The first member 10 has through holes 17 that penetrate in the up-down direction in the second protruding portion 16. In this embodiment, as shown in FIGS. 3A and 3C , the first member 10 has three through holes 17. However, the number of through holes 17 is not limited to three. The first member 10 may have one or more through holes 17. The through holes 17 are screw holes for fixing the first member 10 to another member (for example, the second member 20 or a display device) by screwing. If the first member 10 and another member can be fixed by a method other than screwing, the first member 10 does not need to have the through holes 17.

[0015] The first member 10 has blind holes 18 extending in the first direction D1 on the back surface 12. That is, the blind holes 18 are blind holes extending from the back surface 12 toward the front surface 11. In this embodiment, as shown in FIG. 3D , the first member 10 has three blind holes 18. Specifically, the first member 10 according to this embodiment has two blind holes 18 on the lower surface 14 side of the back surface 12 and one blind hole 18 on the upper surface 13 side. However, the number of blind holes 18 is not limited to three. The first member 10 may have one or more blind holes 18. At least some of the blind holes 18 may function as screw holes for fixing the first member 10 to another member by screws. At least some of the blind holes 18 may be used for positioning when fixing another member to the first member 10. In this embodiment, as will be described later, one blind hole 18 provided on the upper surface 13 side functions as a screw hole, and the two blind holes 18 provided on the lower surface 14 side are used for positioning.

[0016] If the first member 10 and the other member can be fixed by a method other than screw fastening, or if the positioning of the first member 10 and the other member is performed by a method other than screw fastening, the first member 10 does not need to have a blind hole 18.

[0017] FIG. 4A is a top view of the second member 20 of FIG. 1. FIG. 4B is a right side view of the second member 20 of FIG. 1. FIG. 4C is a bottom view of the second member 20 of FIG. 1. FIG. 4D is a front view of the second member 20 of FIG. 1. FIG. 4E is a rear view of the second member 20 of FIG. 1. The second member 20 is detachable from the first member 10. As shown in FIGS. 1, 2, and 4A to 4E, in this embodiment, the second member 20 is a member having an outer shape that is approximately prism-shaped. The second member 20 extends in a second direction D2. As shown in FIGS. 4A to 4C, the second direction D2 is a direction from the front surface 21 to the rear surface 22 of the second member 20.

[0018] As shown in Figures 4A and 4C, a cavity 30 may be formed in the second member 20. The cavity 30 is a space formed by the material constituting the second member 20 having a generally rectangular columnar shape, and the material constituting the second member 20 is not present in the cavity 30. In this embodiment, the cavity 30 is formed as a hole that extends in the second direction D2 and penetrates in the up-down direction. Forming the cavity 30 in the second member 20 can improve the workability when fixing the second member 20 to another member. Details will be described later.

[0019] 4B, the second member 20 has a third protrusion 25 at an end on the rear surface 22 side that protrudes in a direction intersecting the second direction D2. Specifically, in this embodiment, the second member 20 has a third protrusion 25 that protrudes toward the lower surface 24 side of the second member 20. In this embodiment, the third protrusion 25 protrudes in a direction perpendicular to the second direction D2.

[0020] As shown in FIGS. 4A to 4D , the second member 20 has, on its front surface 21, protrusions 26 that protrude from the front surface 21. In this embodiment, the second member 20 has two protrusions 26. The two protrusions 26 are formed at positions corresponding to the positions of the two blind holes 18 provided on the underside 14 of the first member 10. That is, the two protrusions 26 are formed at positions that will be inserted into the two blind holes 18 when the back surface of the first member 10 and the front surface of the second member 20 are joined to assemble the first member 10 and the second member 20 in the first assembly configuration. Therefore, the two protrusions 26 are used for positioning the first member 10 and the second member 20 when assembling them in the first assembly configuration.

[0021] The number of protrusions 26 provided on the second member 20 does not necessarily have to be two. The second member 20 may have one or three or more protrusions 26 depending on the number of blind holes 18 provided in the first member 10. Furthermore, the positions of the protrusions 26 provided on the second member 20 do not necessarily have to be the positions shown in this embodiment. It is sufficient that the second member 20 has the protrusions 26 at positions corresponding to the positions of the blind holes 18 provided in the first member 10.

[0022] As shown in FIG. 4D , the second member 20 has a through-hole 27 penetrating in the second direction D2 on the front surface 21. In this embodiment, as shown in FIG. 4D , the second member 20 has one through-hole 27. The through-hole 27 is a screw hole for fixing the second member 20 to another member (e.g., the first member 10 or a display device) by screwing. The through-hole 27 is formed in the back surface 12 of the first member 10 at a position corresponding to the position of one blind hole 18 formed on the top surface 13. That is, the through-hole 27 is formed in a position that coincides with the one blind hole 18 when the back surface 12 of the first member 10 and the front surface 21 of the second member 20 are joined to assemble the first member 10 and the second member 20 in the first assembly configuration. A user of the stand 1 can assemble the first member 10 and the second member 20 in the first assembly configuration by inserting one screw into the through-hole 27 and the blind hole 18.

[0023] The number of through holes 27 in the second member 20 is not limited to one. The second member 20 may have one or more through holes 27. If the second member 20 and another member can be fixed by a method other than screw fastening, the second member 20 does not have to have a through hole 27. Furthermore, the position of the through hole 27 in the second member 20 does not necessarily have to be the position shown in this embodiment. The second member 20 may have a through hole 27 at a position corresponding to the position of the blind hole 18 provided in the first member 10.

[0024] The second member 20 has blind holes 28 extending in the second direction D2 on the back surface 22. That is, the blind holes 28 are blind holes extending from the back surface 22 toward the front surface 21. In this embodiment, as shown in FIG. 4E , the second member 20 has three blind holes 28. Specifically, the second member 20 has two blind holes 28 on the upper surface 23 side of the back surface 22 and one blind hole 28 on the lower surface 24 side. The blind holes 28 are formed at positions corresponding to the positions of the three through holes 17 formed in the second protrusion 16 of the first member 10. That is, the three blind holes 28 are formed at positions that coincide with the three through holes 17 when the tip surface 16A of the second protrusion 16 of the first member 10 is coupled to the back surface 22 of the second member 20 to assemble the first member 10 and the second member 20 in the second assembly form. A user of the stand 1 can assemble the first member 10 and the second member 20 in the second assembly form by fastening a screw through the blind hole 28 and into the through-hole 17.

[0025] The number of blind holes 28 in the second member 20 is not limited to three. The second member 20 may have blind holes 28 in a number corresponding to the number of through holes 17 provided in the first member 10. If the second member 20 and another member can be fixed by a method other than screw fastening, the second member 20 does not have to have blind holes 28. Furthermore, the positions of the blind holes 28 in the second member 20 do not necessarily have to be the positions shown in this embodiment. The second member 20 may have blind holes 28 at positions corresponding to the positions of the through holes 17 provided in the first member 10.

[0026] Next, a method for assembling the stand 1 according to this embodiment and a method for attaching the stand 1 to a display device will be described.

[0027] First, a description will be given of the case where the display device is used in a floor-standing state. When using the display device in a floor-standing state, the user assembles the stand 1 into the first assembly form and attaches the stand 1 in the first assembly form to the bottom of the display device.

[0028] 5 is a diagram showing an assembly method for the stand 1 in a first assembly form. In the first assembly form, the stand 1 is assembled so that the second direction D2 of the second member 20 is aligned with the first direction D1 of the first member 10. In the first assembly form, the stand 1 may also be assembled so that the first direction D1 and the second direction D2 of the first member 10 coincide with each other. In this embodiment, the stand 1 is described as being assembled so that the first direction D1 and the second direction D2 of the first member 10 coincide with each other in the first assembly form.

[0029] In this embodiment, as shown in FIG. 5 , the rear surface 12 of the first member 10 and the front surface 21 of the second member 20 are joined together. At this time, the two protrusions 26 of the second member 20 are inserted into blind holes 18 formed in the rear surface 12 of the first member 10, thereby positioning the first member 10 and the second member 20 during assembly. Also, as shown in FIG. 5 , in the first assembled configuration, the stand 1 according to this embodiment is joined together so that the top surface 13 of the first member 10 and the top surface 23 of the second member 20 face the same direction (upward in FIG. 5 ). Therefore, the first protrusion 15 of the first member 10 and the third protrusion 25 of the second member 20 are positioned in the same direction (downward in FIG. 5 ). Conversely, the second protrusion 16 of the first member 10 is positioned in the opposite direction (upward in FIG. 5 ) to the first protrusion 15 and the third protrusion 25.

[0030] With the rear surface 12 of the first member 10 and the front surface 21 of the second member 20 joined together, a screw 41 is passed from the rear surface 12 side of the first member 10 through the through hole 27 in the front surface 21 of the second member 20 and fastened into the blind hole 18 formed in the rear surface 12 of the first member, thereby fixing the first member 10 and the second member 20 together with the screw. In this way, the stand 1 can be assembled in the first assembly form.

[0031] When fastening with screws, the cavity 30 formed in the second member 20 makes it easier to insert the screws, and therefore it is easier to fasten the screws through the through holes 27 into the blind holes 18. In other words, the cavity 30 improves the workability of assembly.

[0032] 6 and 7 are diagrams showing a method for attaching the stand 1 in the first assembly form to the display device 50. The stand 1 in the first assembly form, assembled by the method described with reference to FIG. 5, is attached to the bottom of the display device 50 by fastening with screws. Specifically, as shown in FIG. 6, a screw 42 is passed through the through hole 17 from the bottom surface 14 side of the first member 10, and as shown in FIG. 7, the tip surface 16A of the second protrusion 16 of the first member 10 is brought into contact with the bottom of the display device 50, and the screw 42 is fastened in a blind hole formed in the display device 50. This allows the stand 1 in the first assembly form to be attached to the display device 50.

[0033] The stand 1 in the first assembly form may be attached to the display device 50 in multiple locations. For example, the stand 1 in the first assembly form may be attached to one location on each side of the display device 50 when viewed from the front, that is, two locations in total. The display device 50 to which multiple stands 1 in the first assembly form are attached can be used in a floor-standing state by placing it on a placement surface. At this time, the tip surface 15A of the first protrusion 15 and the tip surface 25A of the third protrusion 25 come into contact with the placement surface and support the display device 50.

[0034] Next, a case where the display device is used in a wall-mounted state will be described. When using the display device in a wall-mounted state, the user assembles the stand 1 into the second assembly form and attaches the stand 1 in the second assembly form to the bottom of the display device.

[0035] Fig. 8 is a diagram showing an assembly method for the second assembly form of the stand 1. In the second assembly form, the stand 1 is assembled so that the first direction D1 of the first member 10 and the second direction D2 of the second member 20 intersect. In this embodiment, as shown in Fig. 8, the first member 10 and the second member 20 are assembled so that the first direction D1 and the second direction D2 are perpendicular to each other.

[0036] Specifically, as shown in FIG. 8 , the rear surface 22 of the second member 20 is joined to the rear surface 12 side of the lower surface 14 of the first member 10. In this way, in the second assembly configuration, the first member 10 is joined to the second member 20 so that the first protrusion 15 protrudes in the direction in which the second member 20 is arranged. That is, in the second assembly configuration, the first member 10 is joined to the second member 20 so that the protruding direction of the first protrusion 15 coincides with the direction in which the second member 20 is arranged relative to the first member 10. At this time, the first member 10 and the second member 20 are joined so that the blind hole 28 of the second member 20 coincides with the through hole 17 of the first member 10. In this state, a screw 43 is passed through the through hole 17 from the upper surface 13 side of the first member 10 (the lower side in FIG. 8 ) and fastened into the blind hole 28 formed in the rear surface 22 of the second member 20. In this way, the stand 1 can be assembled in the second assembly configuration. The screws 43 may be the same as the screws 42 used when attaching the stand 1 to the display device 50 in the first assembly form.

[0037] FIG. 9 is a diagram showing a method for attaching the stand 1 in the second assembly form to the display device 50. The stand 1 in the second assembly form, assembled by the method described with reference to FIG. 8, is attached to the bottom of the display device 50 by fastening with screws. Specifically, the front surface 21 of the second member 20 is brought into contact with the bottom of the display device 50. At this time, positioning may be performed by inserting the protrusion 26 into a blind hole formed in the display device 50. Then, as shown in FIG. 9, a screw 44 is passed through the through hole 27 from the rear surface 22 side and fastened into the blind hole formed in the display device 50. This allows the stand 1 in the second assembly form to be attached to the display device 50 as shown in FIG. 10. The screw 44 may be the same as the screw 41 used when assembling the first assembly form.

[0038] Like the stand 1 in the first assembly form, the stand 1 in the second assembly form may be attached to a plurality of locations on the display device 50. For example, the stand 1 in the second assembly form may be attached to two locations in total, one on each side when viewed from the front of the display device 50.

[0039] 10, when the stand 1 in the second assembly form is attached to the display device 50, the first member 10 and the second member 20 constituting the stand 1 are located below and in front of the display device 50. Therefore, even when the display device 50 is hung on a wall, the stand 1 does not come into contact with the wall, and does not interfere with the use of the display device 50 in the wall-mounted state.

[0040] Furthermore, when the stand in the second assembly form is attached to the display device 50 and the display device 50 is hung on a wall, the first member 10 is positioned approximately horizontally in front of the display device 50. Therefore, a peripheral device to be used with the display device 50 can be placed on the underside 14 of the first member 10. For example, as shown in FIG. 11 , a peripheral device 51 such as an external speaker can be placed on the stand 1 in the second assembly form. In this case, the first protrusion 15 of the first member 10 functions as a fall prevention mechanism that prevents the peripheral device 51 placed on the stand 1 from falling off. In other words, the first protrusion 15 can prevent the peripheral device 51 from slipping off the front side of the display device 50.

[0041] The peripheral device 51 is not limited to an external speaker, but may be any device used together with the display device 50. For example, the peripheral device 51 may be an external speaker such as a sound bar or a sound system, a recorder, a camera, a network media player, a game console, or other device not shown here.

[0042] In the above embodiment, the wider the left-right width of the underside 14 of the first member 10, the wider the left-right width of the stand 1 that supports the display device 50 when the display device 50 is used in a floor-standing state, making it easier to support the display device 50 more stably. Also, the wider the left-right width of the underside 14 of the first member 10, the wider the area available for placing the peripheral device 51 when the display device 50 is used in a wall-mounted state, making it easier to place the peripheral device 51 more stably.

[0043] Furthermore, in the above embodiment, a non-slip member with a high friction coefficient may be attached to the surface of the first member 10 in the direction in which the first protrusion 15 protrudes (the lower surface 14 in the above embodiment). If a non-slip member is attached to the lower surface 14, it becomes even easier to prevent the peripheral device 51 placed on the lower surface 14 from falling off when the display device 50 is used in a wall-mounted state.

[0044] As described above, the stand 1 according to this embodiment includes the first member 10 and the second member 20. The first member 10 and the second member 20 can be assembled in two configurations: a first assembly configuration in which the second direction D2 is aligned with the first direction D1; and a second assembly configuration in which the second direction D2 intersects with the first direction D1. Specifically, the stand 1 is assembled in the first assembly configuration when the display device 50 is used in a floor-standing state, and in the second assembly configuration when the display device 50 is used in a wall-mounted state. In the second assembly configuration, the stand 1 is assembled so that the second direction D2 intersects with the first direction D1, allowing a peripheral device 51 to be placed on the first member 10 of the stand 1 attached to the display device 50. Therefore, even when the display device 50 is used together with a peripheral device in a wall-mounted state, there is no need to secure a separate space for placing the peripheral device. Therefore, the stand 1 can improve the convenience of using the display device 50 together with the peripheral device 51.

[0045] The shapes of the first member 10 and the second member 20 constituting the stand 1 and the manner in which the first member 10 and the second member 20 are assembled are not limited to the above-described embodiment. The shapes and assembly manner of the first member 10 and the second member 20 can be any shapes and assembly manner that can exhibit the functions described in this specification.

[0046] Fig. 12 is a perspective view showing a modified example of the stand 1. Fig. 12 shows the stand 1 in the modified example assembled into a first assembly form. That is, in the stand 1 shown in Fig. 12, the first direction D1 in which the first member 10 extends and the second direction D2 in which the second member 20 extends coincide with each other.

[0047] In the modified example shown in FIG. 12 , the third protrusion 25 of the second member 20 is longer than in the above embodiment. Furthermore, in the above embodiment, the rear surface 12 of the first member 10 and the front surface 21 of the second member 20 are joined together in the first assembly configuration. However, in the modified example shown in FIG. 12 , the tip surface 16A of the second protrusion 16 of the first member 10 is joined to the front surface 21 side of the underside 24 of the second member 20. In this case, as shown in FIG. 12 , for example, the second member 20 has a through-hole 29 penetrating it in the vertical direction. The user can configure the stand 1 in the first assembly configuration and attach the stand 1 in the first assembly configuration to the display device 50 by passing a screw through the through-hole 17 of the first member 10 and the through-hole 29 of the second member 20 and fixing it to a blind hole in the bottom of the display device 50.

[0048] Fig. 13 is a perspective view showing another modified example of the stand 1. Fig. 12 shows the stand 1 in another modified example assembled into a second assembly form. That is, in the stand 1 shown in Fig. 13, the first direction D1 in which the first member 10 extends and the second direction D2 in which the second member 20 extends intersect.

[0049] In the above embodiment, it has been described that the lower surface 14 of the first member 10 and the rear surface 22 of the second member 20 are joined in the second assembly configuration. However, in a modified example shown in FIG. 13 , the rear surface 12 of the first member 10 and the lower surface 24 of the second member 20 are joined. In this case, the second member 20 may have a through-hole that penetrates it in the vertical direction. The user can construct the stand 1 in the second assembly configuration as shown in FIG. 13 by passing a screw through the through-hole of the second member 20 and fixing it into the blind hole 18 of the first member 10. The stand 1 in the second assembly configuration according to this modified example can be attached to the display device 50 in the same manner as in the above embodiment.

[0050] In the above embodiment, the stand 1 is described as being configured to include two detachable members, the first member 10 and the second member 20. However, the stand 1 may be configured as a non-detachable member. In this case, the stand 1 may be configured as a single member. For example, the stand 1 configured as a single member may be configured to be deformable between a shape corresponding to the first assembly form of the above embodiment and a shape corresponding to the second assembly form of the above embodiment. In this case, the stand 1 may be provided with a member such as a hinge at the center in the extension direction, and may be configured to be deformable by rotation of the hinge.

[0051] Although the present disclosure has been described based on the drawings and embodiments, it should be noted that those skilled in the art can easily make various modifications and alterations based on the present disclosure. Therefore, it should be noted that these modifications and alterations are included in the scope of the present disclosure. For example, each component can be rearranged so as not to be logically inconsistent, and multiple components can be combined or divided into one. [Explanation of symbols]

[0052] 1 Display stand 10 First member 11,21 Front 12,22 Back 13,23 Top surface 14,24 Bottom side 15 1st protrusion 15A,16A,25A tip surface 16 Second protrusion 17, 27, 29 Through holes 18,28 Bottomed hole 20 Second member 25 Third protrusion 26 Protrusion 30 cavities 41, 42, 43, 44 Bis 50 Display device 51 Peripheral Equipment

Claims

1. a first member extending in a first direction and including, at one end side in the first direction, a protruding portion protruding in a direction intersecting the first direction; a second member configured to be detachably attached to an end side of the first member opposite to the one end side in the first direction and extending in a second direction; Equipped with The first member and the second member can be assembled in two configurations: a first assembly configuration in which the second direction is a direction along the first direction; and a second assembly configuration in which the second direction intersects with the first direction. Stand for display device.

2. 2. The display stand according to claim 1, wherein in the second assembly form, the first member is coupled to the second member so that the protruding direction of the protrusion coincides with the direction in which the second member is arranged relative to the first member.

3. The display stand according to claim 1 , wherein the first member includes a non-slip member on a surface facing the protruding portion.

4. The display stand according to claim 1 , wherein the second member has a cavity extending in the second direction.

5. one of the first member and the second member has a through hole and the other has a bottomed hole; The first member and the second member are assembled by fastening a screw through the through hole to the blind hole. A stand for a display device according to any one of claims 1 to 4.

Citation Information

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