Display apparatus
The display device's innovative stand design with a detachable mounting portion and rotatable connector allows for adjustable height and angle adjustments, enhancing usability and stability while minimizing stand size.
Patent Information
- Application Number
- PCT/KR2024/096827
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-02-01
- Filing Date
- 2024-12-12
- Publication Date
- 2025-08-07
AI Technical Summary
Existing display devices lack versatility in adjusting height and angle, and their stands often require a large size to support the display, increasing the risk of damage and instability.
A display device with a stand that includes a detachable mounting portion and a support portion that can be rotated to a locking or unlocking position, featuring a connector that moves vertically and is fixed or released by rotating, allowing for adjustable height and angle adjustments while minimizing stand size and enhancing stability.
The solution provides a display device with improved usability by allowing for adjustable height and angle adjustments, reducing the risk of stand damage and ensuring stable support with a smaller stand design.
Smart Images

Figure KR2024096827_07082025_PF_FP_ABST
Abstract
Description
display device
[0001] The present disclosure relates to a display device having a stand.
[0002] A display device is a type of output device that converts acquired or stored electrical information into visual information and displays it to the user.
[0003] The display device may include a self-emissive display panel such as an organic light-emitting diode (OLED) or a water-emissive display panel such as a liquid crystal display (LCD).
[0004] The display device may include a display including the above-described display panel and displaying an image, and a stand supporting the display.
[0005] The display device can support additional functions such as Has, which adjusts the height of the display up and down, and Tilt, which tilts the display forward and backward, using the above-mentioned stand.
[0006] According to one aspect of the present disclosure, a display device with improved usability is provided.
[0007] According to one aspect of the present disclosure, a display device including a stand having a relatively small size is provided.
[0008] According to one aspect of the present disclosure, a display device capable of adjusting the height and angle of the display is provided.
[0009] The technical problems to be achieved in this document are not limited to the technical problems mentioned above, and other technical problems not mentioned can be clearly understood by a person having ordinary skill in the technical field to which the present invention belongs from the description below.
[0010] According to one aspect of the present disclosure, a display device includes a display and a stand configured to support the display. The stand includes a mounting portion detachably mountable to the display, and a support portion rotatable in a first direction to a locking position or an unlocking position. When the support portion is in the locking position, movement of the support portion relative to the mounting portion is restricted. When the support portion is in the unlocking position, movement of the support portion relative to the mounting portion is possible. When the support portion is in the locking position, the mounting portion is rotatable in a second direction different from the first direction.
[0011] The mounting portion may include a guide portion extending vertically when mounted on the display. The support portion may include a connector movably coupled to the guide portion when in the unlocked position.
[0012] The above mounting portion may include a fixing portion for fixing the connector in a fixed position when the support portion is in the locking position.
[0013] The support member may further include a base and a leg extending from the base. The connector may further include a connector body on the guide member and a connecting protrusion extending from the connector body toward the leg and configured to connect the connector body and the leg.
[0014] The above first direction may be a direction in which the connector rotates around the central axis of the connecting protrusion.
[0015] The support member may further include a hinge axis extending in a direction intersecting the direction in which the connecting protrusion extends. The second direction may be a direction in which the mounting member rotates about the hinge axis together with the connector when the support member is in the locking position.
[0016] The above guide portion may include a mounting portion and a guide hole located inside the mounting portion. At least a portion of the connector body may be mounted on the mounting portion. The connecting protrusion may penetrate the guide hole.
[0017] The connector body may include a convex portion provided on the edge of the connector body. The connector body may include a concave portion provided to allow the convex portion to be seated. When the convex portion is seated in the concave portion, the connector may be fixed to the fixed position by the fixing portion.
[0018] The stand may include a first stand disposed at one end of the display and a second stand disposed at the other end of the display.
[0019] The fixing member may include a first fixing member that is provided to fix the mounting member at a first height when the support member is in the locking position, and a second fixing member that is provided to fix the mounting member at a second height different from the first height when the support member is in the locking position.
[0020] The above display may include a display panel and a rear cover covering the rear of the display panel. The rear cover may include a mounting groove provided to mount the mounting portion.
[0021] The above mounting portion may include a first magnetic body. The rear cover may include a mounting surface provided to allow the mounting portion to be mounted when the mounting portion is mounted in the mounting groove, and a second magnetic body arranged on the opposite side of the mounting portion with respect to the mounting surface when the mounting portion is mounted in the mounting groove.
[0022] The mounting portion may further include a hook provided at one end of the mounting portion. The rear cover may further include a hook insertion groove provided at one end of the mounting groove. When the mounting portion is mounted in the mounting groove, at least a portion of the hook may be configured to be inserted into the hook insertion groove.
[0023] The mounting portion may include an elastic body provided at an upper end of the hook and configured to press the hook downward when the mounting portion is mounted in the mounting groove. The hook may include an inclined portion provided at a lower end of the hook and configured to guide the hook upward when the mounting portion is mounted in the mounting groove.
[0024] The above-mentioned mounting portion may further include a case that accommodates at least a portion of the hook and a slide portion that is connected to the hook and is provided on an outer surface of the case. The slide portion may be capable of moving up and down with respect to the case together with the hook when the mounting portion is mounted in the mounting groove.
[0025] According to another aspect of the present disclosure, a display device includes a display and a stand configured to support the display. The stand includes a mounting portion that is detachably mountable to the display, the mounting portion including a guide portion extending vertically when mounted on the display, a fixing portion on the guide portion, and a support portion including a connector configured to be movably coupled to the guide portion. The connector is configured to be fixed to the fixing portion or released from the fixing portion by rotating in one direction on the fixing portion.
[0026] The support member may further include a base and a leg extending from the base. The connector may further include a connector body on the guide member and a connecting protrusion extending from the connector body toward the leg, the connecting protrusion being provided to connect the connector body and the leg. The connector may rotate about the central axis of the connecting protrusion.
[0027] When the connector is fixed to the fixed portion, the direction in which the guide portion extends may be parallel to the direction in which the leg extends.
[0028] When the connector is released from the fixing portion, the direction in which the guide portion extends and the direction in which the leg extends can be perpendicular to each other.
[0029] The above fixing part may include a first fixing part disposed at an upper end of the guide part when the mounting part is mounted on the display, and a second fixing part disposed at a lower end of the guide part when the mounting part is mounted on the display.
[0030] The above and other aspects, features and advantages of specific embodiments of the present disclosure will become more apparent from the following description taken in conjunction with the accompanying drawings, in which:
[0031] FIG. 1 is a diagram illustrating a display device according to one or more embodiments.
[0032] Figure 2 is a drawing showing the display device illustrated in Figure 1 from the rear.
[0033] FIG. 3 is a drawing illustrating a stand according to one or more embodiments.
[0034] Figure 4 is an enlarged view of a portion of the stand illustrated in Figure 3.
[0035] Figure 5 is an enlarged drawing showing a state in which some components of the stand illustrated in Figure 3 are disassembled.
[0036] Figure 6 is an enlarged drawing showing a state in which some components of the stand illustrated in Figure 3 are disassembled.
[0037] FIG. 7 is a drawing illustrating a connector according to one or more embodiments.
[0038] FIG. 8A is a front view of a stand according to one or more embodiments.
[0039] FIG. 8b is a front view of a stand according to one or more embodiments.
[0040] FIG. 8c is a front view of a stand according to one or more embodiments.
[0041] Figure 9 is an enlarged view of area A in the stand illustrated in Figure 8a.
[0042] Fig. 10a is a drawing showing a state in which the support is rotated counterclockwise in the stand shown in Fig. 8a.
[0043] Figure 10b is a drawing showing a state in which the support is rotated clockwise in the stand illustrated in Figure 8a.
[0044] Figure 11a illustrates a state in which the support has moved downward in the stand illustrated in Figure 10a.
[0045] Figure 11b illustrates a state in which the support has moved downward in the stand illustrated in Figure 10b.
[0046] Fig. 12a is a drawing showing a state in which the support is rotated clockwise in the stand shown in Fig. 11a.
[0047] Figure 12b is a drawing showing a state in which the support is rotated counterclockwise in the stand illustrated in Figure 11b.
[0048] FIG. 13 is a side view of a stand according to one or more embodiments.
[0049] Fig. 14 is a drawing showing a state in which the mounting part is rotated clockwise in the stand illustrated in Fig. 13.
[0050] Figure 15 is a drawing showing a state in which the mounting part of the stand illustrated in Figure 13 is rotated counterclockwise.
[0051] FIG. 16 is a side view of a stand according to one or more embodiments.
[0052] Fig. 17 is a drawing showing a state in which the mounting part is rotated clockwise in the stand illustrated in Fig. 16.
[0053] Fig. 18 is a drawing showing a state in which the mounting part of the stand illustrated in Fig. 16 is rotated counterclockwise.
[0054] FIG. 19 is an enlarged view of a first hook in a stand according to one or more embodiments.
[0055] Fig. 20 is a side cross-sectional view of the first hook illustrated in Fig. 19.
[0056] Fig. 21 is a side cross-sectional view showing the first hook illustrated in Fig. 20 moved upward.
[0057] FIG. 22 is an enlarged view of a second hook in a stand according to one or more embodiments.
[0058] Figure 23 is a side cross-sectional view of the second hook illustrated in Figure 22.
[0059] Figure 24 is a side cross-sectional view showing the second hook illustrated in Figure 23 moved downward.
[0060] FIG. 25 is a diagram illustrating an exploded view of some components of a display according to one or more embodiments.
[0061] FIG. 26 is a cross-sectional side view of a display device according to one or more embodiments.
[0062] Figure 27 is a drawing showing an enlarged view of area B of Figure 26.
[0063] Figure 28 is an enlarged view of area C of Figure 26.
[0064] FIG. 29 is a diagram illustrating a display device according to one or more embodiments.
[0065] Figure 30 is a drawing showing the display device illustrated in Figure 29 from the rear.
[0066] In connection with the description of the drawings, similar reference numerals may be used for similar or related components.
[0067] The singular form of a noun corresponding to an item may include one or more of said items, unless the relevant context clearly indicates otherwise.
[0068] In this document, each of the phrases "A or B", "at least one of A and B", "at least one of A or B", "A, B, or C", "at least one of A, B, and C", and "at least one of A, B, or C" may include any one of the items listed together in that phrase, or all possible combinations thereof.
[0069] The term “and / or” includes any combination of a plurality of related described elements or any one of a plurality of related described elements. Terms such as “first,” “second,” or “first” or “second” may be used merely to distinguish the element from other related elements and do not limit the elements in any other respect (e.g., importance or order).
[0070] When a component (e.g., a first component) is referred to as being "coupled" or "connected" to another component (e.g., a second component), with or without the terms "functionally" or "communicatively," it means that the component can be connected to the other component directly (e.g., wired), wirelessly, or through a third component.
[0071] The terms “include” or “have” are intended to specify the presence of a feature, number, step, operation, component, part or combination thereof described in this document, but do not preclude the presence or addition of one or more other features, numbers, steps, operations, components, parts or combinations thereof.
[0072] When a component is said to be “connected,” “coupled,” “supported,” or “in contact with” another component, this includes not only cases where the components are directly connected, coupled, supported, or in contact, but also cases where the components are indirectly connected, coupled, supported, or in contact through a third component.
[0073] When we say that a component is "on" another component, this includes not only cases where the component is in contact with the other component, but also cases where there is another component between the two components.
[0074] The terms "part," "module," and "member" may be implemented in hardware or software. Depending on the embodiments, multiple "parts," "modules," or "members" may be implemented as a single component, or a single "part," "module," or "member" may include multiple components.
[0075] Terms such as "~bu", "~gi", "~block", "~absence", and "~module" may refer to a unit that processes at least one function or operation. For example, the terms may refer to at least one piece of hardware such as an FPGA (field-programmable gate array) / ASIC (application specific integrated circuit), at least one piece of software stored in memory, or at least one process processed by a processor.
[0076] The symbols attached to each step are used to identify each step and do not indicate the order of the steps, and the steps may be performed in a different order than stated unless the context clearly indicates a specific order.
[0077] The terms "front," "back," "left," "right," "upper," and "lower" used in the following description are defined based on the drawing, but the shape and position of each component are not limited by the terms. Specifically, as illustrated in FIG. 1, the direction in which the display (100) faces is defined as the front, and based on this, the rear, left and right sides, and upper and lower sides are defined.
[0078] Hereinafter, embodiments according to the present disclosure will be described in detail with reference to the attached drawings.
[0079] FIG. 1 is a diagram illustrating a display device according to one or more embodiments. FIG. 2 is a diagram illustrating the display device illustrated in FIG. 1 from the rear.
[0080] Referring to FIGS. 1 and 2, the display device (1) may include a display (100). The display (100) is a device that displays information, data, and the like in the form of characters, figures, graphs, images, and the like, and may include a television, a monitor, and the like.
[0081] The display (100) may include a display panel (110). The display panel (110) may be configured to display a screen. The display panel (110) may include a self-luminous display panel, such as an organic light-emitting diode (OLED), or a water-luminous display panel, such as a liquid crystal display (LCD). There is no particular limitation on the type of the display panel.
[0082] The display (100) may include a display housing (120). The display housing (120) may form the exterior of the display (100). The display housing (120) may accommodate a display panel (110).
[0083] The display housing (120) may include an outer frame (121). The outer frame (121) may be provided in a box shape with open front and back sides. A display panel (110) may be coupled to the open front side of the outer frame (121). The outer frame (121) and the display panel (110) may be coupled in various ways.
[0084] The display housing (120) may include a rear cover (122). The rear cover (122) may be coupled to the open rear surface of the outer frame (121). Through this configuration, the rear cover (122) may cover the rear surface of the display panel (110). The outer frame (121) and the rear cover (122) may be coupled in various ways.
[0085] The display (100) may include an operating part (130). The operating part (130) may be provided to operate the display (100). For example, the operating part (130) may be provided on the front of the display (100). For example, the operating part (130) may be provided on the lower side of the display panel (110). However, there is no particular limitation on the position of the operating part (130).
[0086] Although not shown in the drawing, the display (100) may include a plurality of optical sheets, a backlight unit that emits light, a control module that controls the internal configuration of the display panel (110), etc. Detailed descriptions are omitted.
[0087] The display device (1) may include a stand (200). The stand (200) may be configured to support the display (100). The stand (200) may be detachably coupled to the lower rear portion of the rear cover (122). Through this configuration, the display (100) may be placed apart from the floor surface on which the display device (1) is mounted.
[0088] The stand (200) may be provided in multiple units. For example, the stand (200) may include a first stand (201) and a second stand (202). For example, the first stand (201) may be disposed at one end of the display (100). For example, the first stand (201) may be detachably coupled to one end of the rear cover (122). For example, the second stand (202) may be disposed at the other end of the display (100). For example, the second stand (202) may be detachably coupled to the other end of the rear cover (122). Although the drawing illustrates two stands (200), the number of stands (200) is not limited thereto.
[0089] The stand (200) can be loaded by the display (100). The greater the load the stand (200) receives, the greater the risk of damage to the stand (200). To prevent the stand (200) from being damaged and to more stably support the display (100), the stand (200) can have a relatively large exterior.
[0090] According to the concept of the present disclosure, since a plurality of stands (200) are provided, the load received by each stand (200) from the display (100) can be reduced. For example, since the first stand (201) and the second stand (202) support the display (100), the load received by each stand (202, 202) can be less than the load received by one stand (200) supporting the display (100). Since the loads received by each of the first stand (201) and the second stand (202) are reduced, each of the first stand (201) and the second stand (202) can stably support the display (100) even if each of them has a relatively small external shape. That is, each of the first stand (201) and the second stand (202) can have a relatively small size.
[0091] FIG. 3 is a drawing illustrating a stand according to one or more embodiments. FIG. 4 is an enlarged drawing of some components of the stand illustrated in FIG. 3. FIG. 5 is an enlarged drawing of some components of the stand illustrated in FIG. 3 in an exploded state. FIG. 6 is an enlarged drawing of some components of the stand illustrated in FIG. 3 in an exploded state. FIG. 7 is a drawing illustrating a connector according to one or more embodiments.
[0092] Hereinafter, the configuration of the stand (200) will be described in detail with reference to FIGS. 3 to 7. Each of the first stand (201) and the second stand (202) may include the configuration of the stand (200) described below.
[0093] The stand (200) may include a supporting part (210). The supporting part (210) may be placed on the floor surface on which the display device (1) is mounted. Hereinafter, the floor surface on which the display device (1) is mounted may be referred to as the floor surface without any specific modifier.
[0094] The support (210) may include a base (211). The base (211) may be placed on a floor surface. The base (211) may extend parallel to the floor surface. Specifically, the base (211) may extend in the front-back direction of the display (100). In the drawing, the base (211) is illustrated as a thin bar shape, but the shape of the base (211) is not limited thereto. For example, the base (211) may have a circular or rectangular shape.
[0095] The support member (210) may include a leg (212). The leg (212) may extend from the base (211). Specifically, the leg (212) may extend upward from the base (211).
[0096] The leg (212) may extend vertically from the base (211). For example, the leg (212) may extend vertically from the center of the base (211). However, the connection between the leg (212) and the base (211) and the extension direction of the leg (212) are not limited thereto. For example, referring to FIGS. 16 to 18, the leg (2120) may extend from one end of the base (211) at an angle to the base (211). This will be described in detail later.
[0097] The support member (210) may include a connector (213). The connector (213) may be coupled to a mounting member (220) to be described later. Specifically, the connector (213) may be movably coupled to a guide member (222) to be described later. By coupling the connector (213) to the mounting member (220), the support member (210) may be connected to the mounting member (220).
[0098] The connector (213) may include a connector body (2131). The connector body (2131) may be provided on a guide portion (222) to be described later. The connector body (2131) may be provided in a substantially flat shape. Details regarding the connector body (2131) will be described later.
[0099] The connector (213) may include a connecting protrusion (2132). The connecting protrusion (2132) may extend from the connector body (2131) toward the leg (212). Specifically, the connecting protrusion (2132) may extend from the center of the connector body (2131) toward the upper end of the leg (212). In other words, the connecting protrusion (2132) may extend from the connector body (2131) toward the hinge body (2141) described below.
[0100] The connecting protrusion (2132) can connect the connector body (2131) and the leg (212). The connecting protrusion (2132) can be connected to a hinge body (2141) to be described later. Specifically, one end of the connecting protrusion (2132) can be connected to the hinge body (2141), and the other end can be connected to the connector body (2131). The connecting protrusion (2132) can be connected to the hinge body (2141), thereby connecting the connector body (2131) and the leg (212).
[0101] The connecting protrusion (2132) may be formed in a roughly cylindrical shape. Through this configuration, the connecting protrusion (2132) can rotate around its central axis while passing through the guide hole (2222) described later. This will be described in detail later.
[0102] The support member (210) may include a hinge (214). The hinge (214) may rotatably connect the connector (213) to the leg (212). That is, the connector (213) may rotate with respect to the leg (212) via the hinge (214). In addition, since the connector (213) is connected to a mounting member (220) to be described later, the mounting member (220) may rotate with respect to the leg (212) together with the connector (213).
[0103] The hinge (214) may include a hinge body (2141). One end of the hinge body (2141) may be connected to one end of a connecting protrusion (2132). The hinge body (2141) may extend in the same direction as the connecting protrusion (2132) extends.
[0104] The hinge body (2141) can be inserted into a hinge body insertion groove (212a) provided at the upper end of the leg (212). The hinge body insertion groove (212a) can be sunken into the inside of the leg (212). The inner diameter of the hinge body insertion groove (212a) can be larger than the outer diameter of the hinge body (2141). Through this configuration, the hinge body (2141) can rotate about a hinge axis (2142) to be described later within a predetermined angular range.
[0105] The hinge (214) may include a hinge axis (2142). The hinge axis (2142) may be a central axis of rotation when the mounting portion (220) rotates together with the connector (213). The hinge axis (2142) may extend in a direction intersecting with the direction in which the connecting protrusion (2132) extends. That is, the hinge axis (2142) may extend in a direction intersecting with the direction in which the hinge body (2141) extends. Accordingly, the hinge body (2141) may rotate about the hinge axis (2142). At this time, the direction in which the hinge body (2141) rotates about the hinge axis (2142) may be the same as the direction in which the mounting portion (220) rotates together with the connector (213) with respect to the leg (212). In other words, the mounting portion (220), the connector (213), and the hinge body (2141) can rotate in the same direction based on the hinge axis (2142). The hinge axis (2142) can be provided in a roughly cylindrical shape.
[0106] The hinge shaft (2142) can be inserted into the first hinge shaft insertion hole (2141a) provided at the other end of the hinge body (2141). The first hinge shaft insertion hole (2141a) can extend in a direction intersecting the direction in which the hinge body insertion groove (212a) is sunken.
[0107] One end of the hinge shaft (2142) can be inserted into a second hinge shaft insertion hole (212b) provided on the inner surface of the hinge body insertion groove (212a). The direction in which the second hinge shaft insertion hole (212b) extends can be the same as the direction in which the first hinge shaft insertion hole (2141a) extends. Through this configuration, the hinge shaft (2142) can be fixed to the leg (212).
[0108] The other end of the hinge shaft (2142) can be inserted into a third hinge shaft insertion hole (212c) provided on the inner surface of the hinge body insertion groove (212a). The third hinge shaft insertion hole (212c) can be provided on the opposite side of the second hinge shaft insertion hole (212b). The direction in which the third hinge shaft insertion hole (212c) extends can be the same as the direction in which the first hinge shaft insertion hole (2141a) extends. Through this configuration, the hinge shaft (2142) can be fixed to the leg (212).
[0109] The hinge (214) may include a hinge bracket (2143). The hinge bracket (2143) may fix the hinge axis (2142). That is, the hinge axis (2142) may be fixed while being inserted into the hinge axis insertion hole (2141a) through the hinge bracket (2143).
[0110] The hinge bracket (2143) may include a first hinge bracket (2143a) and a second hinge bracket (2143b). The first hinge bracket (2143a) may secure one end of the hinge shaft (2142). The second hinge bracket (2143b) may secure the other end of the hinge shaft (2142).
[0111] The first hinge bracket (2143a) can be mounted in the first hinge bracket mounting groove (212d) provided at the upper end of the leg (212). The first hinge bracket mounting groove (212d) can be provided on one side of the hinge body insertion groove (212a). The first hinge bracket mounting groove (212d) can be recessed into the inside of the leg (212). Specifically, the first hinge bracket mounting groove (212d) can be recessed in a direction crossing the direction in which the hinge body insertion groove (212a) is recessed. The first hinge bracket mounting groove (212d) can be in communication with the second hinge shaft insertion hole (212b).
[0112] The second hinge bracket (2143b) can be mounted in the second hinge bracket mounting groove (212e) provided at the upper end of the leg (212). The second hinge bracket mounting groove (212e) can be provided on the other side of the hinge body insertion groove (212a). The second hinge bracket mounting groove (212e) can be recessed into the inside of the leg (212). Specifically, the second hinge bracket mounting groove (212e) can be recessed in a direction crossing the direction in which the hinge body insertion groove (212a) is recessed. The second hinge bracket mounting groove (212e) can be in communication with the third hinge shaft insertion hole (212c).
[0113] The stand (200) may include a mounting part (220). The mounting part (220) may be detachably mounted to the display (100). Specifically, the mounting part (220) may be mounted to the lower rear portion of the rear cover (122). The mounting part (220) may be connected to the support part (210).
[0114] The mounting portion (220) may include a case (221). The case (221) may form the exterior of the mounting portion (220). The case (221) may extend in the vertical direction. The case (221) may accommodate a first magnetic body (224) to be described later. The case (221) may accommodate at least a portion of a first hook (225) to be described later. The case (221) may accommodate at least a portion of a second hook (228) to be described later.
[0115] The mounting portion (220) may include a guide portion (222). For example, the guide portion (222) may be provided at the bottom of the case (221). The guide portion (222) may guide the movement of the connector (213).
[0116] The guide portion (222) can extend in the vertical direction. Specifically, when the mounting portion (220) is mounted on the display (100), the guide portion (222) can extend in the vertical direction. Through this configuration, the connector (213) can be guided by the guide portion (222) and move in the vertical direction.
[0117] The guide portion (222) may include a seating portion (2221). At least a portion of the connector body (2131) may be seated on the seating portion (2221). That is, when at least a portion of the connector body (2131) is seated on the seating portion (2221), the connector (213) may move in the up and down direction.
[0118] The mounting portion (2221) may be formed by being recessed from the front of the case (221). The depth to which the mounting portion (2221) is recessed from the front of the case (221) may be equal to or longer than the length that the connector body (2131) extends. In this case, the direction in which the connector body (2131) extends is the same as the direction in which the connecting protrusion (2132) extends. Through this configuration, when the connector (213) is coupled to the mounting portion (220), no step may be generated on the front of the mounting portion (220).
[0119] The guide portion (222) may include a guide hole (2222). The guide hole (2222) may be provided on the inside of the mounting portion (2221). The guide hole (2222) may be vertically opened in a direction from the front of the case (221) toward the rear of the case (221).
[0120] A connecting protrusion (2132) can penetrate the guide hole (2222). That is, when the connecting protrusion (2132) penetrates the guide hole (2222), the connecting protrusion (2132) can move in the up and down direction. By penetrating the guide hole (2222), the connecting protrusion (2132) can connect the connector body (2131) and the hinge body (2141).
[0121] The mounting portion (220) may include a fixing portion (223). The fixing portion (223) may be provided on the guide portion (222). The fixing portion (223) may fix the connector (213) to the fixing portion (223). That is, the connector (213) may be guided by the guide portion (222) to move up and down, or may be fixed to the fixing portion (223) by the fixing portion (223).
[0122] According to the present disclosure, when the connector (213) moves onto the fixed portion (223), the connector (213) can rotate on the fixed portion (223). As the connector (213) rotates, the connector (213) can be provided to be fixed to the fixed portion (223) or to be released from the fixed portion (223). That is, the connector (213) can be provided to be fixed to the fixed portion (223) or to be released from the fixed portion (223) as it rotates on the fixed portion (223). This will be described in detail later.
[0123] The fixing part (223) may be provided in multiple pieces. When the mounting part (220) is mounted on the display (100), the multiple fixing parts (223) may be arranged along the vertical direction in which the guide part (222) extends. For example, the fixing part (223) may include a first fixing part (2231), a second fixing part (2232), and a third fixing part (2233). For example, when the mounting part (220) is mounted on the display (100), the first fixing part (2231) may be provided at the upper end of the guide part (222). For example, when the mounting part (220) is mounted on the display (100), the second fixing part (2232) may be provided at the lower end of the guide part (222). For example, when the mounting part (220) is mounted on the display (100), the third fixing part (2233) may be provided at the center of the guide part (222). However, although the drawing shows a total of three fixing parts (223), the number of fixing parts (223) is not limited thereto. In addition, the ordinal numbers of the first fixing part (2231), the second fixing part (2232), and the third fixing part (2233) do not limit their configuration.
[0124] The mounting portion (220) may include a first magnetic body (224). The first magnetic body (224) may be accommodated inside the case (221). Through the magnetic force of the first magnetic body (224), the mounting portion (220) may be more stably mounted on the display (100). For example, the first magnetic body (224) may include a magnet. This will be described in detail later.
[0125] The first magnetic body (224) may be placed between the guide portion (222) and the second hook (228) to be described later. However, the position of the first magnetic body (224) is not limited thereto. For example, the first magnetic body (224) may be placed below the guide portion (222). In addition, the first magnetic body (224) may be provided in multiple numbers. For example, some of the plurality of first magnetic bodies (224) may be placed between the guide portion (222) and the second hook (228). For example, some of the plurality of first magnetic bodies (224) may be placed below the guide portion (222). For example, some of the plurality of first magnetic bodies (224) may be placed on both sides of the guide portion (222).
[0126] The mounting portion (220) may include a first hook (225). The first hook (225) may be provided at one end of the mounting portion (220). Specifically, when the mounting portion (220) is mounted on the display (100), the first hook (225) may be provided at the lower end of the mounting portion (220). Through the first hook (225), the mounting portion (220) may be more stably mounted on the display (100). This will be described in detail later.
[0127] The mounting portion (220) may include a second hook (228). The second hook (228) may be provided at the other end of the mounting portion (220). Specifically, when the mounting portion (220) is mounted on the display (100), the second hook (228) may be provided at the upper end of the mounting portion (220). Through the second hook (228), the mounting portion (220) may be more stably mounted on the display (100). This will be described in detail later.
[0128] FIG. 8A is a front view of a stand according to one or more embodiments. FIG. 8B is a front view of a stand according to one or more embodiments. FIG. 8C is a front view of a stand according to one or more embodiments. FIG. 9 is an enlarged view of area A in the stand illustrated in FIG. 8A. FIG. 10A is a view illustrating a state in which the support member of the stand illustrated in FIG. 8A is rotated counterclockwise. FIG. 10B is a view illustrating a state in which the support member of the stand illustrated in FIG. 8A is rotated clockwise. FIG. 11A is a view illustrating a state in which the support member of the stand illustrated in FIG. 10A is moved downward. FIG. 11B is a view illustrating a state in which the support member of the stand illustrated in FIG. 10B is moved downward. FIG. 12A is a view illustrating a state in which the support member of the stand illustrated in FIG. 11A is rotated clockwise. FIG. 12B is a view illustrating a state in which the support member of the stand illustrated in FIG. 11B is rotated counterclockwise.
[0129] Referring to FIGS. 8A to 12B, the support member (210) may be positioned in a locking position (L) or an unlocking position (U). Specifically, the locking position (L) may be a position where movement of the support member (210) relative to the mounting member (220) is restricted. The unlocking position (U) may be a position where movement of the support member (210) relative to the mounting member (220) is possible.
[0130] When the connector (213) is fixed to the fixing member (223), the support member (210) may be in the locking position (L). In other words, the state in which the support member (210) is in the locking position (L) may be a state in which the fixing member (223) fixes the connector (213) to the fixed position so that the support member (210) cannot move in the vertical direction. When the connector (213) is released from the fixing member (223), the support member (210) may be in the unlocking position (U). In other words, the state in which the support member (210) is in the unlocking position (U) may be a state in which the fixing member (223) does not fix the connector (213) so that the support member (210) can move in the vertical direction.
[0131] As described above, the connector (213) can rotate on the fixed part (223). When the connector (213) rotates on the fixed part (223), the connector (213) can rotate together with other components of the support part (210). That is, the rotation of the connector (213) can correspond to the rotation of the support part (210).
[0132] As described above, the connector (213) can be fixed to the fixed portion (223) or released from the fixed portion (223) as it rotates on the fixed portion (223). In other words, as the connector (213) rotates on the fixed portion (223), the support portion (210) can be positioned at the locking position (L) or the unlocking position (U). In other words, as the support portion (210) rotates, it can be positioned at the locking position (L) or the unlocking position (U).
[0133] The support member (210) may be rotatable to a locking position (L) or an unlocking position (U). Specifically, when the connector (213) is placed on the fixing member (223), the support member (210) may be rotatable to a locking position (L) or an unlocking position (U). For example, the support member (210) that was placed in the locking position (L) may be placed in the unlocking position (U) after rotation. For example, the support member (210) that was placed in the unlocking position (U) may be placed in the locking position (L) after rotation.
[0134] The support member (210) can rotate based on the central axis of the connecting protrusion (2132). The direction in which the support member (210) rotates based on the central axis of the connecting protrusion (2132) can be defined as a first direction (A). The first direction (A) can include a first rotation direction (A1) in which the support member (210) rotates counterclockwise based on FIGS. 8A to 12B . The first direction (A) can include a second rotation direction (A2) in which the support member (210) rotates clockwise based on FIGS. 8A to 12B . The first direction (A) can be a direction in which the display device (1) rotates based on a front-back axis in the front-back direction.
[0135] Below, the locking position (L) and unlocking position (U) will be described first. Next, the method by which the connector (213) is fixed to or released from the fixing member (223) will be described.
[0136] Below, the locking position (L) and the unlocking position (U) are defined and described through three fixed parts (2231, 2232, 2233), but there is no limitation on the number of fixed parts (223) or the number of locking positions (L) and unlocking positions (U).
[0137] Referring to FIGS. 8A to 8C, the locking position (L) may be defined as the position of the support member (210) when the connector (213) is fixed to the fixing member (223). Referring to FIG. 8A, the locking position (L) may include the position when the connector (213) is fixed to the first fixing member (2231). Referring to FIG. 8B, the locking position (L) may include the position when the connector (213) is fixed to the second fixing member (2232). Referring to FIG. 8C, the locking position (L) may include the position when the connector (213) is fixed to the third fixing member (2233).
[0138] Referring to FIG. 8A, when the connector (213) is fixed to the first fixing member (2231), the mounting member (220) can be positioned at a first height (H1). That is, when the support member (210) is in the locking position (L), the first fixing member (2231) can be arranged to fix the mounting member (220) at the first height (H1). At this time, the first height (H1) can mean the distance from the bottom surface to the lower surface (221j) of the case (221).
[0139] Referring to FIG. 8b, when the connector (213) is fixed to the second fixing member (2232), the mounting member (220) can be arranged at a second height (H2). That is, when the support member (210) is in the locking position (L), the second fixing member (2232) can be arranged to fix the mounting member (220) at the second height (H2). The second height (H2) can be different from the first height (H). Specifically, the second height (H2) can be greater than the first height (H). In this case, the second height (H2) can mean the distance from the bottom surface to the lower surface (221j) of the case (221).
[0140] Referring to FIG. 8c, when the connector (213) is fixed to the third fixing member (2233), the mounting member (220) can be arranged at a third height (H3). That is, when the support member (210) is in the locking position (L), the third fixing member (2233) can be arranged to fix the mounting member (220) at the third height (H3). The third height (H3) can be different from the first height (H) and the second height (H). Specifically, the third height (H3) can be greater than the first height (H) and can be greater than the second height (H). In this case, the third height (H3) can mean the distance from the bottom surface to the lower surface (221j) of the case (221).
[0141] Referring to FIGS. 8A to 8C, when the connector (213) is fixed to the fixing member (223), the support member (210) may be disposed on the lower side of the mounting member (220). In other words, when the connector (213) is fixed to the fixing member (223), the direction in which the case (221) extends may be parallel to the direction in which the leg (212) extends. In other words, when the connector (213) is fixed to the fixing member (223), the direction in which the guide member (222) extends may be parallel to the direction in which the leg (212) extends. That is, the support member (210) may be disposed on the bottom surface. Specifically, the support member (210) may be disposed on the bottom surface to support the display (100).
[0142] Referring to FIGS. 10A and 10B, the unlocking position (U) may be defined as the position of the support (210) when the connector (213) is released from the fixing portion (223) on the fixing portion (223). In other words, the unlocking position (U) may be defined as the position of the support (210) when the connector (213) is placed on the fixing portion (223) and the connector (213) is released from the fixing portion (223).
[0143] The unlocking position (U) may include the position of the support (210) when the connector (213) is released from the first fixing portion (2231) on the first fixing portion (2231). The unlocking position (U) may include the position of the support (210) when the connector (213) is released from the second fixing portion (2232) on the second fixing portion (2232). The unlocking position (U) may include the position of the support (210) when the connector (213) is released from the third fixing portion (2233) on the third fixing portion (2233). Although FIG. 10A only illustrates the case where the connector (213) is released from the first fixing portion (2231) on the first fixing portion (2231), as described above, the unlocking position (U) is not limited thereto.
[0144] Referring to FIGS. 8A and 10A, the support member (210) positioned at the locking position (L) can be positioned at the unlocking position (U) by rotating in the first rotational direction (A1). In the drawings, only the case where the connector (213) is positioned on the first fixing member (2231) is illustrated, but the present invention is not limited thereto. For example, even when the connector (213) is positioned on the second fixing member (2232) or the third fixing member (2233), the support member (210) positioned at the locking position (L) can be positioned at the unlocking position (U) by rotating in the first rotational direction (A1).
[0145] Referring to FIGS. 8A and 10A, when the support member (210) rotates in the first rotational direction (A1) so that the connector (213) is released from the fixing member (223) on the fixing member (223), the support member (210) can be arranged on the right side of the mounting member (220) with reference to FIG. 10A. In other words, when the connector (213) is released from the fixing member (223), the direction in which the case (221) extends can be orthogonal to the direction in which the leg (212) extends. In other words, when the connector (213) is released from the fixing member (223), the direction in which the guide member (222) extends can be orthogonal to the direction in which the leg (212) extends. That is, the support member (210) can be arranged to be spaced apart from the floor surface.
[0146] Referring to FIGS. 8A and 10B, the support member (210) positioned at the locking position (L) can be positioned at the unlocking position (U) by rotating in the second rotational direction (A2). In the drawing, only the case where the connector (213) is positioned on the first fixing member (2231) is illustrated, but the present invention is not limited thereto. For example, even when the connector (213) is positioned on the second fixing member (2232) or the third fixing member (2233), the support member (210) positioned at the locking position (L) can be positioned at the unlocking position (U) by rotating in the second rotational direction (A2).
[0147] Referring to FIGS. 8A and 10B, when the support member (210) rotates in the second rotational direction (A2) so that the connector (213) is released from the fixing member (223) on the fixing member (223), the support member (210) can be arranged on the left side of the mounting member (220) based on FIG. 10B. In other words, when the connector (213) is released from the fixing member (223), the direction in which the case (221) extends can be orthogonal to the direction in which the leg (212) extends. In other words, when the connector (213) is released from the fixing member (223), the direction in which the guide member (222) extends can be orthogonal to the direction in which the leg (212) extends. That is, the support member (210) can be arranged to be spaced apart from the floor surface.
[0148] Referring to FIGS. 11A and 11B , the support member (210) positioned at the unlocking position (U) may be movable up and down. The support member (210) may be movable upward or downward. In other words, the support member (210) may be movable between different unlocking positions (U). Although FIGS. 11A and 11B only illustrate the support member (210) moving downward, as described above, the support member (210) may be movable in both the up and down directions.
[0149] Referring to FIGS. 11A and 12A, the support (210) that was positioned at the unlocking position (U) can be positioned at the locking position (L) by rotating in the second rotational direction (A2). In other words, the support (210) that was positioned on the right side of the mounting portion (220) with respect to FIG. 12A can be positioned on the lower side of the mounting portion (220) by rotating in the second rotational direction (A2). That is, the support (210) can be positioned on the bottom surface again. Specifically, the support (210) can be positioned on the bottom surface again to support the display (100). In the drawing, only the case where the connector (213) is positioned on the third fixing portion (2233) is illustrated, but the present invention is not limited thereto. For example, even if the connector (213) is placed on the first fixed part (2231) or the second fixed part (2232), the support part (210) placed in the unlocking position (U) can be placed in the locking position (L) as it rotates in the second rotational direction (A2).
[0150] Referring to FIGS. 11B and 12B, the support (210) that was positioned at the unlocking position (U) can be positioned at the locking position (L) by rotating in the first rotational direction (A1). In other words, the support (210) that was positioned on the left side of the mounting portion (220) with respect to FIG. 12B can be positioned on the lower side of the mounting portion (220) by rotating in the first rotational direction (A1). That is, the support (210) can be positioned on the bottom surface again. Specifically, the support (210) can be positioned on the bottom surface again to support the display (100). In the drawing, only the case where the connector (213) is positioned on the third fixing portion (2233) is illustrated, but the present invention is not limited thereto. For example, even if the connector (213) is placed on the first fixed part (2231) or the second fixed part (2232), the support part (210) placed in the unlocking position (U) can be placed in the locking position (L) as it rotates in the first rotational direction (A1).
[0151] Hereinafter, with reference to FIGS. 7 to 12b, the method by which the connector (213) is fixed to or released from the fixing member (223) will be described in detail.
[0152] As described above, the connector (213) can be fixed to the fixed portion (223) or released from the fixed portion (223) by rotating on the fixed portion (223). At this time, the direction in which the connector (213) rotates may be the direction in which it rotates with respect to the central axis of the connecting protrusion (2132). In other words, the direction in which the connector (213) rotates may be the same as the direction in which the support portion (210) rotates with respect to the central axis of the connecting protrusion (2132). That is, the direction in which the connector (213) rotates may be the first direction (A). For example, when the support portion (210) rotates in the first rotational direction (A1), the connector (213) may rotate in the first rotational direction (A1). For example, when the support member (210) rotates in the second rotational direction (A2), the connector (213) can rotate in the second rotational direction (A2).
[0153] The connector (213) may include a convex portion (2131a). The convex portion (2131a) may be provided on the edge of the connector body (2131). The convex portion (2131a) may be provided in a convex shape toward the outside of the connector body (2131). The convex portion (2131a) may be provided so that the central portion of the convex portion (2131a) protrudes the most.
[0154] A plurality of convex portions (2131a) may be provided. For example, the convex portions (2131a) may be provided on both sides of the connector (213) with reference to FIG. 7.
[0155] The connector (213) may include a flat portion (2131b). The flat portion (2131b) may be provided on the edge of the connector body (2131). Specifically, the flat portion (2131b) may be provided on one side of the convex portion (2131a). The flat portion (2131b) may be provided in a flat shape. Through this configuration, the distance from the center of the connector body (2131) to the most protruding center of the convex portion (2131a) may be longer than the distance from the center of the connector body (2131) to the center of the flat portion (2131b).
[0156] A plurality of flat portions (2131b) may be provided. For example, the flat portions (2131b) may be provided on the upper and lower sides of the connector body (2131) with reference to FIG. 7. A pair of flat portions (2131b) may be provided parallel to each other. For example, the convex portions (2131a) and the flat portions (2131b) may be arranged alternately along the edge of the connector body (2131).
[0157] The first fixing member (2231) may include a first concave portion (2231a). The first concave portion (2231a) may be provided such that the convex portion (2131a) is secured thereto. The first concave portion (2231a) may have a shape corresponding to the convex portion (2131a). In other words, the first concave portion (2231a) may be formed by being recessed outward from the securing member (2221). The first concave portion (2231a) may be arranged on one side of the securing member (2221) with respect to the vertical direction in which the guide member (222) extends.
[0158] As described above, at least a portion of the connector body (2131) can be seated on the seating portion (2221). At this time, the convex portion (2131a) of the connector body (2131) can be seated on the first concave portion (2231a). By seating the convex portion (2131a) on the first concave portion (2231a), the connector (213) can be restricted from moving on the guide portion (222). That is, when the convex portion (2131a) is seated on the first concave portion (2231a), the connector (213) can be fixed on the first fixing portion (2231) by the first fixing portion (2231). As a result, by seating the connector (213) on the first fixing portion (2231), the support portion (210) can be placed at the locking position (L).
[0159] The first concave portion (2231a) may be provided in multiple numbers. For example, the first concave portions (2231a) may be arranged on both sides of the mounting portion (2221) based on the vertical direction in which the guide portion (222) extends.
[0160] The first fixed portion (2231) may include a first rotation guide portion (2231b). The first rotation guide portion (2231b) may be provided such that the convex portion (2131a) is secured thereto. The first rotation guide portion (2231b) may have a shape corresponding to the convex portion (2131a). The first rotation guide portion (2231b) may be positioned at an upper end of the securing portion (2221) based on the vertical direction in which the guide portion (222) extends. For example, the first rotation guide portion (2231b) may be a part of the securing portion (2221).
[0161] The first rotation guide portion (2231b) can guide the rotation of the connector body (2131) together with the first concave portion (2231a). Specifically, when the connector (213) moves onto the first fixing portion (2231), the first rotation guide portion (2231b) and the first concave portion (2231a) can guide the connector body (2131) to rotate in the first direction (A). For example, the first rotation guide portion (2231b) and the first concave portion (2231a) can guide the connector body (2131) to rotate in the first rotation direction (A1). For example, the first rotation guide portion (2231b) and the first concave portion (2231a) can guide the connector body (2131) to rotate in the second rotation direction (A2). As the connector body (2131) rotates in the first direction (A), the connecting projection (2132) can also rotate in the first direction (A). That is, the connector (213) can rotate in the first direction (A).
[0162] As described above, when the convex portion (2131a) is seated on the first concave portion (2231a), the connector (213) can be fixed on the first fixing portion (2231) by the first fixing portion (2231). At this time, the connector (213) can rotate in the first direction (A). As the connector (213) rotates in the first direction (A), the convex portion (2131a) can be seated on the seating portion (2221). That is, all parts of the connector body (2131) can be seated on the seating portion (2221). In other words, the connector (213) can be released from being fixed to the first fixing portion (2231). As a result, the connector (213) is released from its fixation with the first fixing member (2231), so that the support member (210), which was originally positioned at the locking position (L), can be positioned at the unlocking position (U).
[0163] All parts of the connector body (2131) of the support member (210) positioned at the unlocking position (U) can be seated on the seat member (2221). At this time, the convex portion (2131a) can be seated on the first rotation guide member (2231b). The connector body (2131) can be guided by the first rotation guide member (2231b) and the first concave portion (2231a) to rotate in the first direction (A). As the connector body (2131) rotates, the convex portion (2131a) can be seated on the first concave portion (2231a). In other words, the connector (213) can be fixed on the first fixing portion (2231). As a result, by fixing the connector (213) on the first fixing portion (2231), the support portion (210), which was originally positioned in the unlocking position (U), can be positioned in the locking position (L).
[0164] When the connector (213) is placed on the first fixing portion (2231), as the connector (213) rotates in the first direction (A), the support portion (210) can be placed in the locking position (L) or the unlocking position (U). In other words, when the connector (213) is placed on the first fixing portion (2231), as the support portion (210) rotates in the first direction (A), the support portion (210) can be placed in the locking position (L) or the unlocking position (U).
[0165] The second fixing member (2232) may include a second concave portion (2232a). The second concave portion (2232a) may be provided so that the convex portion (2131a) is secured thereto. The second concave portion (2232a) may have a shape corresponding to the convex portion (2131a). In other words, the second concave portion (2232a) may be formed by being recessed outward from the securing member (2221). The second concave portion (2232a) may be arranged on one side of the securing member (2221) based on the vertical direction in which the guide member (222) extends.
[0166] As described above, at least a portion of the connector body (2131) can be seated on the seating portion (2221). At this time, the convex portion (2131a) of the connector body (2131) can be seated on the second concave portion (2232a). By seating the convex portion (2131a) on the second concave portion (2232a), the connector (213) can be restricted from moving on the guide portion (222). That is, when the convex portion (2131a) is seated on the second concave portion (2232a), the connector (213) can be fixed on the second fixing portion (2232) by the second fixing portion (2232). As a result, by seating the connector (213) on the second fixing portion (2232), the support portion (210) can be placed at the locking position (L).
[0167] The second concave portion (2232a) may be provided in multiple numbers. For example, the second concave portions (2232a) may be arranged on both sides of the mounting portion (2221) based on the vertical direction in which the guide portion (222) extends.
[0168] The second fixed part (2232) may include a second rotation guide part (2232b). The second rotation guide part (2232b) may be provided so that the convex part (2131a) is secured thereto. The second rotation guide part (2232b) may have a shape corresponding to the convex part (2131a). The second rotation guide part (2232b) may be positioned at the lower end of the securing part (2221) based on the vertical direction in which the guide part (222) extends. For example, the second rotation guide part (2232b) may be a part of the securing part (2221).
[0169] The second rotation guide portion (2232b) can guide the rotation of the connector body (2131) together with the second concave portion (2232a). Specifically, when the connector (213) moves onto the second fixing portion (2232), the second rotation guide portion (2232b) and the second concave portion (2232a) can guide the connector body (2131) to rotate in the first direction (A). For example, the second rotation guide portion (2232b) and the second concave portion (2232a) can guide the connector body (2131) to rotate in the first rotation direction (A1). For example, the second rotation guide portion (2232b) and the second concave portion (2232a) can guide the connector body (2131) to rotate in the second rotation direction (A2). As the connector body (2131) rotates in the first direction (A), the connecting projection (2132) can also rotate in the first direction (A). That is, the connector (213) can rotate in the first direction (A).
[0170] As described above, when the convex portion (2131a) is seated on the second concave portion (2232a), the connector (213) can be fixed on the second fixing portion (2232) by the second fixing portion (2232). At this time, the connector (213) can rotate in the first direction (A). As the connector (213) rotates, the convex portion (2131a) can be seated on the seating portion (2221). That is, all parts of the connector body (2131) can be seated on the seating portion (2221). In other words, the connector (213) can be released from being fixed to the second fixing portion (2232). As a result, the connector (213) is released from its fixation with the second fixing member (2232), so that the support member (210), which was originally positioned at the locking position (L), can be positioned at the unlocking position (U).
[0171] All parts of the connector body (2131) of the support member (210) positioned at the unlocking position (U) can be seated on the seat member (2221). At this time, the convex portion (2131a) can be seated on the second rotation guide member (2232b). The connector body (2131) can be guided by the second rotation guide member (2232b) and the second concave portion (2232a) to rotate in the first direction (A). As the connector body (2131) rotates, the convex portion (2131a) can be seated on the second concave portion (2232a). In other words, the connector (213) can be fixed on the second fixing member (2232). As a result, by fixing the connector (213) on the second fixing member (2232), the support member (210), which was originally positioned in the unlocking position (U), can be positioned in the locking position (L).
[0172] When the connector (213) is placed on the second fixing member (2232), as the connector (213) rotates, the support member (210) can be placed in the locking position (L) or the unlocking position (U). In other words, when the connector (213) is placed on the second fixing member (2232), as the support member (210) rotates, the support member (210) can be placed in the locking position (L) or the unlocking position (U).
[0173] The third fixing member (2233) may include a third concave portion (2233a). The third concave portion (2233a) may be provided so that the convex portion (2131a) may be secured thereto. The third concave portion (2233a) may have a shape corresponding to the convex portion (2131a). In other words, the third concave portion (2233a) may be formed by being recessed outward from the securing member (2221). The third concave portion (2233a) may be arranged on one side of the securing member (2221) based on the vertical direction in which the guide member (222) extends.
[0174] As described above, at least a portion of the connector body (2131) can be seated on the seating portion (2221). At this time, the convex portion (2131a) of the connector body (2131) can be seated on the third concave portion (2233a). By seating the convex portion (2131a) on the third concave portion (2233a), the connector (213) can be restricted from moving on the guide portion (222). That is, when the convex portion (2131a) is seated on the third concave portion (2233a), the connector (213) can be fixed on the third fixing portion (2233) by the third fixing portion (2233). As a result, by seating the connector (213) on the third fixing portion (2233), the support portion (210) can be placed at the locking position (L).
[0175] The third concave portion (2233a) may be provided in multiple numbers. For example, the third concave portions (2233a) may be positioned on both sides of the mounting portion (2221) based on the vertical direction in which the guide portion (222) extends.
[0176] The third concave portion (2233a) can guide the rotation of the connector body (2131). Specifically, when the connector (213) moves onto the third fixing portion (2233), the third concave portion (2233a) can guide the connector body (2131) to rotate in the first direction (A). For example, the third concave portion (2233a) can guide the connector body (2131) to rotate in the first rotational direction (A1). For example, the third concave portion (2233a) can guide the connector body (2131) to rotate in the second rotational direction (A2).
[0177] As described above, when the convex portion (2131a) is seated on the third concave portion (2233a), the connector (213) can be fixed on the third fixing portion (2233) by the third fixing portion (2233). At this time, the connector (213) can rotate in the first direction (A). As the connector (213) rotates, the convex portion (2131a) can be seated on the seating portion (2221). That is, all parts of the connector body (2131) can be seated on the seating portion (2221). In other words, the connector (213) can be released from being fixed to the third fixing portion (2233). As a result, the connector (213) is released from its fixation with the third fixing member (2233), so that the support member (210), which was originally positioned in the locking position (L), can be positioned in the unlocking position (U).
[0178] All parts of the connector body (2131) of the support (210) arranged in the unlocking position (U) can be seated on the seating portion (2221). The connector body (2131) can be guided by the third concave portion (2233a) to rotate in the first direction (A). As the connector body (2131) rotates, the convex portion (2131a) can be seated on the third concave portion (2233a). In other words, the connector (213) can be fixed on the third fixing portion (2233). As a result, by fixing the connector (213) on the third fixing portion (2233), the support (210) that was originally arranged in the unlocking position (U) can be placed in the locking position (L).
[0179] When the connector (213) is placed on the third fixing member (2233), as the connector (213) rotates, the support member (210) can be placed in the locking position (L) or the unlocking position (U). In other words, when the connector (213) is placed on the third fixing member (2233), as the support member (210) rotates, the support member (210) can be placed in the locking position (L) or the unlocking position (U).
[0180] As described above, the connector (213) can be movably coupled to the guide portion (222). For example, when the support portion (210) is in the unlocking position (U), the connector (213) can be guided by the guide portion (222) to move between the first fixing portion (2231) and the second fixing portion (2232). For example, when the support portion (210) is in the unlocking position (U), the connector (213) can be guided by the guide portion (222) to move between the first fixing portion (2231) and the third fixing portion (2233). For example, when the support portion (210) is in the unlocking position (U), the connector (213) can be guided by the guide portion (222) to move between the second fixing portion (2232) and the third fixing portion (2233). As the connector (213) is guided by the guide part (222) and moves in the up-and-down direction, the support part (210) can move in the up-and-down direction.
[0181] According to the concept of the present disclosure, the distance between adjacent fixing portions (223) may be approximately constant. In this case, the distance between adjacent fixing portions (223) is defined as the distance between the centers of each of the adjacent fixing portions (223). For example, the distance between the first fixing portion (2231) and the second fixing portion (2232) may be the same as the distance between the second fixing portion (2232) and the third fixing portion (2233). For example, the distance between adjacent fixing portions (223) may be 15 mm. However, there is no special limitation on the distance between adjacent fixing portions (223).
[0182] Fig. 13 is a side view of a stand according to one or more embodiments. Fig. 14 is a drawing illustrating a state in which the mounting portion of the stand illustrated in Fig. 13 is rotated clockwise. Fig. 15 is a drawing illustrating a state in which the mounting portion of the stand illustrated in Fig. 13 is rotated counterclockwise.
[0183] Referring to FIGS. 13 to 15, the mounting portion (220) can rotate relative to the leg (212). In addition, as described above, the mounting portion (220) can rotate relative to the leg (212) together with the connector (213) and the hinge body (2141) (see FIGS. 3 to 6). Hereinafter, the description will be made on the assumption that the mounting portion (220) rotates together with the connector (213) and the hinge body (2141), and the description of the connector (213) and the hinge body (2141) may be omitted.
[0184] The direction in which the mounting portion (220) rotates with respect to the leg (212) may be a second direction (B) different from the first direction (A). That is, the mounting portion (220) may be capable of rotating in a second direction (B) different from the first direction (A) in which the support portion (210) rotates.
[0185] As described above, the mounting portion (220) can rotate around the hinge axis (2142). That is, the direction in which the mounting portion (220) rotates around the hinge axis (2142) can be defined as the second direction (B). In other words, the direction in which the connector (213) rotates around the hinge axis (2142) can be defined as the second direction (B) (see FIGS. 3 to 6). In other words, the direction in which the hinge body (2141) rotates around the hinge axis (2142) can be defined as the second direction (B).
[0186] The second direction (B) may include a third rotation direction (B1) in which the mounting portion (220) rotates clockwise, based on FIGS. 13 to 15. The second direction (B) may include a fourth rotation direction (B2) in which the mounting portion (220) rotates counterclockwise, based on FIGS. 13 to 15. The second direction (B) may be a direction in which the display device (1) rotates based on the left and right axes in the left and right directions.
[0187] Referring to FIGS. 13 and 14, the mounting portion (220) can rotate in the third rotation direction (B1). For example, when the mounting portion (220) is positioned vertically with respect to the base (211) (see FIG. 13), the maximum angle at which the mounting portion (220) can rotate in the third rotation direction (B1) may be approximately 15 degrees. However, there is no special limitation on the maximum angle at which the mounting portion (220) can rotate in the third rotation direction (B1).
[0188] Referring to FIGS. 13 and 15, the mounting portion (220) can rotate in the fourth rotation direction (B2). For example, when the mounting portion (220) is positioned vertically with respect to the base (211) (see FIG. 13), the maximum angle at which the mounting portion (220) can rotate in the fourth rotation direction (B2) may be approximately 10 degrees. However, there is no special limitation on the maximum angle at which the mounting portion (220) can rotate in the fourth rotation direction (B2).
[0189] The mounting portion (220) can be rotated in the second direction (B) when the support portion (210) is in the locking position (L). However, since the mounting portion (220) rotates based on the hinge axis (2142), the mounting portion (220) can be rotated in the second direction (B) even when the support portion (210) is not in the locking position (L). For example, the mounting portion (220) can be rotated in the second direction (B) even when the support portion (210) is in the unlocking position (U). In this document, the rotation of the mounting portion (220) is described only when the support portion (210) is in the locking position (L), but it is of course possible for the mounting portion (220) to be rotated as described above even when the support portion (210) is not in the locking position (L).
[0190] Fig. 16 is a side view of a stand according to one or more embodiments. Fig. 17 is a drawing illustrating a state in which the mounting portion of the stand illustrated in Fig. 16 is rotated clockwise. Fig. 18 is a drawing illustrating a state in which the mounting portion of the stand illustrated in Fig. 16 is rotated counterclockwise.
[0191] Hereinafter, with reference to FIGS. 16 to 18, a stand (2000) including a support member (2100) different from the support member (210) illustrated in FIGS. 13 to 15 will be described. In describing the stand (2000), components that are substantially the same as the configuration of the stand (200) illustrated in FIGS. 1 to 15 will be assigned the same reference numerals, and a detailed description thereof may be omitted.
[0192] Referring to FIGS. 16 to 18, the support member (2100) may include a leg (2120). The leg (2120) may extend from the base (211). Specifically, the leg (2120) may extend upward from the base (211).
[0193] The leg (2120) may extend obliquely from the base (211). Specifically, the leg (2120) may extend obliquely from the base (211) such that the upper end of the leg (2120) is positioned forward relative to the lower end of the leg (2120). For example, the leg (2120) may extend obliquely from one end of the base (211) that is positioned relatively rearward.
[0194] The mounting portion (220) can rotate with respect to the leg (2120). The direction in which the mounting portion (220) rotates with respect to the leg (2120) may be a second direction (B). The second direction (B) may include a third rotation direction (B1) in which the mounting portion (220) rotates clockwise, based on FIGS. 16 to 18 . The second direction (B) may include a fourth rotation direction (B2) in which the mounting portion (220) rotates counterclockwise, based on FIGS. 16 to 18 .
[0195] Referring to FIGS. 16 and 17, the mounting portion (220) can rotate in the third rotation direction (B1). For example, when the mounting portion (220) is positioned vertically with respect to the base (211) (see FIG. 16), the maximum angle at which the mounting portion (220) can rotate in the third rotation direction (B1) may be approximately 15 degrees. However, there is no special limitation on the maximum angle at which the mounting portion (220) can rotate in the third rotation direction (B1).
[0196] Referring to FIGS. 16 and 18, the mounting portion (220) can rotate in the fourth rotation direction (B2). At this time, since the leg (2120) is arranged at an angle with respect to the base (211), the mounting portion (220) can rotate in the fourth rotation direction (B2) within a wider angle range than when the leg (212) is arranged perpendicularly with respect to the base (211) (see FIGS. 13 to 15). That is, when the mounting portion (220) is arranged perpendicularly with respect to the base (211) (see FIG. 16), the maximum angle at which the mounting portion (220) can rotate in the fourth rotation direction (B2) can be relatively larger. However, there is no special limitation on the maximum angle at which the mounting portion (220) can rotate in the fourth rotation direction (B2).
[0197] FIG. 19 is an enlarged view of a first hook in a stand according to one or more embodiments. FIG. 20 is a side cross-sectional view of the first hook illustrated in FIG. 19. FIG. 21 is a side cross-sectional view of the first hook illustrated in FIG. 20 in an upwardly moved state.
[0198] Referring to FIGS. 19 to 21, the first hook (225) can be mounted in the first hook mounting groove (221a) provided at the lower end of the case (221). At least a portion of the first hook (225) can be accommodated inside the first hook mounting groove (221a). Specifically, the first hook body (2251), the second step portion (2253), and the first protrusion (2255), which will be described later, can be accommodated inside the first hook mounting groove (221a).
[0199] The first hook (225) may include a first hook body (2251). The first hook body (2251) may be accommodated inside the first hook mounting groove (221a). The first hook body (2251) may extend vertically. The length by which the first hook body (2251) extends vertically may be smaller than the length by which the first hook mounting groove (221a) extends vertically. In other words, the volume of the first hook body (2251) may be smaller than the internal volume of the first hook mounting groove (221a). Through this configuration, the first hook (225) may move vertically within a predetermined range when mounted in the first hook mounting groove (221a). Specifically, the first hook (225) may move vertically with respect to the case (221) within a predetermined range when mounted in the first hook mounting groove (221a). Hereinafter, the up-and-down movement of the first hook (225) may be based on the up-and-down movement of the case (221).
[0200] The first hook (225) may include a first stepped portion (2252). The first stepped portion (2252) may be provided at the front lower end of the first hook body (2251). The first stepped portion (2252) may be provided to be stepped from the first hook body (2251). The first stepped portion (2252) may be provided on the lower side of the first hook mounting groove (221a). That is, the first stepped portion (2252) may be provided on the outer side of the case (221).
[0201] The first hook (225) may include a second stepped portion (2253). The second stepped portion (2253) may be provided at the upper rear end of the first hook body (2251). The second stepped portion (2253) may be provided at a step from the first hook body (2251).
[0202] The first hook (225) may include a first inclined portion (2254). The first inclined portion (2254) may be provided at a lower end of the first hook (225). Specifically, the first inclined portion (2254) may be provided at a lower end of the first step portion (2252). The first inclined portion (2254) may be formed by bending from the front side of the first step portion (2252) toward the rear. In other words, the first inclined portion (2254) may be inclined to form an obtuse angle with the front side of the first step portion (2252).
[0203] The first hook (225) may include a first protrusion portion (2255). The first protrusion portion (2255) may be provided at an upper end of the first hook (225). Specifically, the first protrusion portion (2255) may be provided at an upper end of the first hook body (2251). The first protrusion portion (2255) may protrude upward from an upper surface of the first hook body (2251).
[0204] The mounting portion (220) may include a first elastic body (226). The first elastic body (226) may be positioned at the upper end of the first hook (225). Specifically, the first elastic body (226) may be fitted into the first protrusion (2255). For example, the first elastic body (226) may include a spring.
[0205] The mounting part (220) may include a sliding part (227). The sliding part (227) may be provided on the outer surface of the case (221). Specifically, the sliding part (227) may be provided on the lower rear portion of the case (221).
[0206] The slide portion (227) can be connected to the first hook (225). Specifically, the first hook (225) can be connected to the slide portion (227) through a connecting portion (2256) provided at the lower rear portion of the first hook body (2251). At this time, the connecting portion (2256) can pass through a connecting hole (221e) provided at the lower rear portion of the case (221). In addition, the thickness of the connecting portion (2256) can be thinner than the width of the connecting hole (221e). That is, the connecting portion (2256) can be arranged to be spaced apart from at least one of the upper end or the lower end of the connecting hole (221e). Through this configuration, the slide portion (227) can move up and down with respect to the case (221) together with the first hook (225).
[0207] The case (221) may include a first catching portion (221b). The first catching portion (221b) may be provided on the front side of the first hook mounting groove (221a). The first catching portion (221b) may be provided on the upper side of the first step portion (2252) when the first hook (225) is mounted on the first hook mounting groove (221a). Through this configuration, when the first hook (225) moves upward by a predetermined distance, the first step portion (2252) is caught on the first catching portion (221b), thereby limiting further upward movement of the first hook (225).
[0208] The case (221) may include a second catching portion (221c). The second catching portion (221c) may be provided on the lower side of the first hook mounting groove (221a). The second catching portion (221c) may be provided on the lower side of the first hook body (2251) when the first hook (225) is mounted on the first hook mounting groove (221a). Through this configuration, when the first hook (225) moves downward by a predetermined distance, the first hook body (2251) is caught on the second catching portion (221c), thereby limiting further downward movement of the first hook (225).
[0209] The case (221) may include a third catching portion (221d). The third catching portion (221d) may be provided at the inner upper end of the first hook mounting groove (221a). The third catching portion (221d) may be provided at the lower side of the second step portion (2253) when the first hook (225) is mounted on the first hook mounting groove (221a). Through this configuration, when the first hook (225) moves downward by a predetermined distance, the second step portion (2253) is caught by the third catching portion (221d), thereby limiting further downward movement of the first hook (225). That is, when the first hook (225) moves downward a predetermined distance, the second catch (221c) and the third catch (221d) can be arranged to limit further downward movement of the first hook (225).
[0210] According to the idea of the present disclosure, when no additional external force is applied to the slide portion (227) or the first hook (225), the slide portion (227) and the first hook (225) can be forced downward by their own weight and the first elastic body (226). At this time, the first hook (225) moves downward, so that the first hook body (2251) can be seated on the second hook portion (221c), and the second step portion (2253) can be seated on the third hook portion (221d) (see FIG. 20).
[0211] According to the concept of the present disclosure, the first hook (225) can move in the up-and-down direction by sliding the slide portion (227) in the up-and-down direction. For example, when the slide portion (227) receives an upward force, the slide portion (227) can move upward together with the first hook (225). At this time, the first hook (225) moves upward, so that the first step portion (2252) can be seated on the first catch portion (221b). In addition, the first elastic body (226) arranged at the upper end of the first hook (225) can be compressed to press the first hook (225) downward (see FIG. 21). Thereafter, when the force applied to the slide portion (227) is removed, the first hook (225) can move downward due to the force with which the first elastic body (226) pressed the first hook (225) downward. At this time, the maximum distance that the first hook (225) can move in the vertical direction can be determined by the distance between the first step portion (2252) and the first catch portion (221b), the distance between the first hook body (2251) and the second catch portion (221c), and the distance between the second step portion (2253) and the third catch portion (221d).
[0212] According to the concept of the present disclosure, when the mounting portion (220) is mounted in the mounting groove (1221) to be described later, the first hook (225) can automatically move upward by the first inclined portion (2254) of the first hook (225). This will be described in detail later.
[0213] Fig. 22 is an enlarged view of a second hook in a stand according to one or more embodiments. Fig. 23 is a side cross-sectional view of the second hook illustrated in Fig. 22. Fig. 24 is a side cross-sectional view of the second hook illustrated in Fig. 23 in a downwardly moved state.
[0214] Referring to FIGS. 22 to 24, the second hook (228) can be mounted in the second hook mounting groove (221f) provided at the upper end of the case (221). At least a portion of the second hook (228) can be accommodated inside the second hook mounting groove (221f). Specifically, the first hook body (2251), the second step portion (2253), and the first protrusion (2255), which will be described later, can be accommodated inside the first hook mounting groove (221a).
[0215] The second hook (228) may include a second hook body (2281). The second hook body (2281) may be accommodated inside the second hook mounting groove (221f). The second hook body (2281) may extend vertically. The length by which the second hook body (2281) extends vertically may be smaller than the length by which the second hook mounting groove (221f) extends vertically. In other words, the volume of the second hook body (2281) may be smaller than the internal volume of the second hook mounting groove (221f). Through this configuration, the second hook (228) may move vertically within a predetermined range when mounted in the second hook mounting groove (221f). Specifically, the second hook (228) may move vertically with respect to the case (221) within a predetermined range when mounted in the second hook mounting groove (221f). Hereinafter, the up-and-down movement of the second hook (228) may be based on the up-and-down movement of the case (221).
[0216] The second hook (228) may include a third stepped portion (2282). The third stepped portion (2282) may be provided at the front upper end of the second hook body (2281). The third stepped portion (2282) may be provided to be stepped from the second hook body (2281). The third stepped portion (2282) may be provided on the upper side of the second hook mounting groove (221f). That is, the third stepped portion (2282) may be provided on the outer side of the case (221).
[0217] The second hook (228) may include a fourth stepped portion (2283). The fourth stepped portion (2283) may be provided at the rear lower end of the second hook body (2281). The fourth stepped portion (2283) may be provided at a step from the second hook body (2281).
[0218] The second hook (228) may include a second inclined portion (2284). The second inclined portion (2284) may be provided at an upper end of the second hook (228). Specifically, the second inclined portion (2284) may be provided at an upper end of the third stepped portion (2282). The second inclined portion (2284) may be formed by bending from the front side of the third stepped portion (2282) toward the rear. In other words, the second inclined portion (2284) may be inclined to form an obtuse angle with the front side of the third stepped portion (2282).
[0219] The second hook (228) may include a second protrusion portion (2285). The second protrusion portion (2285) may be provided at a lower end of the second hook (228). Specifically, the second protrusion portion (2285) may be provided at a lower end of the second hook body (2281). The second protrusion portion (2285) may protrude downward from the lower surface of the second hook body (2281).
[0220] The mounting portion (220) may include a second elastic body (229). The second elastic body (229) may be positioned at the lower end of the second hook (228). Specifically, the second elastic body (229) may be fitted to the second protrusion (2285). For example, the second elastic body (229) may include a spring.
[0221] The case (221) may include a fourth catching portion (221g). The fourth catching portion (221g) may be provided on the front side of the second hook mounting groove (221f). The fourth catching portion (221g) may be provided on the lower side of the third step portion (2282) when the second hook (228) is mounted on the second hook mounting groove (221f). Through this configuration, when the second hook (228) moves downward by a predetermined distance, the third step portion (2282) is caught by the fourth catching portion (221g), thereby limiting further downward movement of the second hook (228).
[0222] The case (221) may include a fifth catching portion (221h). The fifth catching portion (221h) may be provided on the upper side of the second hook mounting groove (221f). The fifth catching portion (221h) may be provided on the upper side of the second hook body (2281) when the second hook (228) is mounted on the second hook mounting groove (221f). Through this configuration, when the second hook (228) moves upward by a predetermined distance, the second hook body (2281) is caught on the fifth catching portion (221h), thereby limiting further upward movement of the second hook (228).
[0223] The case (221) may include a sixth catching portion (221i). The sixth catching portion (221i) may be provided at the inner lower portion of the second hook mounting groove (221f). The sixth catching portion (221i) may be provided at the lower portion of the fourth step portion (2283) when the second hook (228) is mounted in the second hook mounting groove (221f). Through this configuration, when the second hook (228) moves upward by a predetermined distance, the fourth step portion (2283) is caught by the sixth catching portion (221i), thereby limiting further upward movement of the second hook (228). That is, when the second hook (228) moves upward by a predetermined distance, the fifth catch (221h) and the sixth catch (221i) can be arranged to limit further upward movement of the second hook (228).
[0224] According to the idea of the present disclosure, when no additional external force is applied to the second hook (228), the second hook (228) can be forced upward by the second elastic body (229). At this time, the second hook (228) moves upward, so that the second hook body (2281) can be seated on the fifth hooking portion (221h), and the fourth step portion (2283) can be seated on the sixth hooking portion (221i) (see FIG. 23).
[0225] According to the concept of the present disclosure, when the second hook (228) receives a downward force, the second hook (228) can move downward. At this time, the second hook (228) moves downward, so that the third step (2282) can be seated on the fourth catch (221g). In addition, the second elastic body (229) arranged at the lower end of the second hook (228) can be compressed to press the second hook (228) upward (see FIG. 24). Thereafter, when the force acting on the second hook (228) is removed, the second hook (228) can move upward due to the force with which the second elastic body (229) pressed the second hook (228) upward. At this time, the maximum distance that the second hook (228) can move in the vertical direction can be determined by the distance between the third step (2282) and the fourth catch (221g), the distance between the second hook body (2281) and the fifth catch (221h), and the distance between the fourth step (2283) and the sixth catch (221i).
[0226] According to the concept of the present disclosure, the second hook (228) can automatically move downward by the second inclined portion (2284) of the second hook (228) when the mounting portion (220) is mounted in the mounting groove (1221) described later. This will be described in detail later.
[0227] FIG. 25 is a diagram illustrating a state in which some components of a display are exploded according to one or more embodiments. FIG. 26 is a cross-sectional side view of a display device according to one or more embodiments. FIG. 27 is an enlarged view of area B of FIG. 26. FIG. 28 is an enlarged view of area C of FIG. 26.
[0228] Referring to FIGS. 25 to 28, the rear cover (122) may include a mounting groove (1221). The mounting groove (1221) may be provided to allow a stand (200) to be mounted thereon. Specifically, the mounting groove (1221) may be provided to allow a mounting portion (220) to be mounted thereon.
[0229] The mounting groove (1221) may be provided on the rear side of the rear cover (122). The mounting groove (1221) may be formed by recessing from the rear side of the rear cover (122) toward the inside of the rear cover (122). The mounting groove (1221) may be provided in a shape corresponding to the shape of the mounting portion (220). For example, the mounting groove (1221) may extend in the vertical direction.
[0230] According to the concept of the present disclosure, the height of the mounting portion (220) may vary depending on which fixing portion (223) the connector (213) is fixed to. In addition, when the mounting portion (220) is mounted in the mounting groove (1221), the height of the display (100) may vary depending on the height of the mounting portion (220). The height of the display (100) may refer to the distance from the floor surface to the lower surface of the display (100).
[0231] According to the concept of the present disclosure, the height of the mounting portion (220) can be adjusted regardless of whether the mounting portion (220) is mounted in the mounting groove (1221). That is, even if the mounting portion (220) is mounted in the mounting groove (1221), the height of the mounting portion (220) can be adjusted through rotation of the support portion (210) in the first direction (A) and movement in the up-and-down direction. By adjusting the height of the mounting portion (220), the height of the display (100) can be adjusted.
[0232] The mounting groove (1221) may be provided in multiple numbers. For example, the mounting groove (1221) may include a first mounting groove (1221a) and a second mounting groove (1221b). The first mounting groove (1221a) may be arranged at one end of the rear cover (122). The second mounting groove (1221b) may be arranged at the other end of the rear cover (122). For example, a first stand (201) may be arranged at the first mounting groove (1221a), and a second stand (202) may be arranged at the second mounting groove (1221b). Although two mounting grooves (1221) are illustrated in the drawing, there is no particular limitation on the number of mounting grooves (1221). For example, the number of mounting grooves (1221) may correspond to the number of stands (200).
[0233] The display housing (120) may include a cap (123). The cap (123) may be provided to cover a mounting groove (1221). The cap (123) may be detachably mounted from the rear cover (122). After the cap (123) is detached from the rear cover (122), the stand (200) may be mounted in the mounting groove (1221).
[0234] The cap (123) may include a groove portion (123a) to enable easy separation from the rear cover (122). The groove portion (123a) may be provided at the center of the cap (123). When the cap (123) is mounted on the rear cover (122), a user of the display device (1) can easily separate the cap (123) from the rear cover (122) through a gap formed between the rear cover (122) and the cap (123) through the groove portion (123a).
[0235] The cap (123) may be provided in multiple pieces. For example, the cap (123) may include a first cap (1231) and a second cap (1232). The first cap (1231) may be provided to cover the first mounting groove (1221a). The second cap (1232) may be provided to cover the second mounting groove (1221b). Although two caps (123) are illustrated in the drawing, there is no particular limitation on the number of caps (123). For example, the number of caps (123) may correspond to the number of mounting grooves (1221).
[0236] The rear cover (122) may include a mounting surface (1222) provided to allow the mounting portion (220) to be mounted. The mounting surface (1222) may be provided on the inner side of the mounting groove (1221). The mounting surface (1222) may have a shape corresponding to the front surface of the mounting portion (220). For example, the mounting surface (1222) may extend in the vertical direction. Through this configuration, when the mounting portion (220) is mounted in the mounting groove (1221), the mounting portion (220) may be mounted on the mounting surface (1222).
[0237] The rear cover (122) may include a second magnetic body (1223). The second magnetic body (1223) may be positioned adjacent to the mounting surface (1222). The second magnetic body (1223) may be positioned on the front side of the mounting surface (1222). Specifically, when the mounting portion (220) is mounted in the mounting groove (1221), the second magnetic body (1223) may be positioned on the opposite side of the mounting portion (220) with respect to the mounting surface (1222).
[0238] According to the concept of the present disclosure, when the mounting portion (220) is mounted in the mounting groove (1221), the first magnetic body (224) and the second magnetic body (1223) may be disposed adjacent to each other. At this time, the magnetic forces of the first magnetic body (224) and the second magnetic body (1223) may act as attractive forces to each other. Through the action of such attractive forces, the mounting portion (220) may be more stably mounted in the mounting groove (1221). That is, through the first magnetic body (224) and the second magnetic body (1223), the mounting portion (220) may be more stably mounted on the display (100).
[0239] The rear cover (122) may include a first hook insertion groove (1224). When the mounting portion (220) is mounted in the mounting groove (1221), the first hook insertion groove (1224) may be provided so that at least a portion of the first hook (225) is inserted therein. Specifically, when the mounting portion (220) is mounted in the mounting groove (1221), the first inclined portion (2254) of the first hook (225) may be inserted into the first hook insertion groove (1224). By inserting the first inclined portion (2254) into the first hook insertion groove (1224), the mounting portion (220) may be more stably mounted on the display (100).
[0240] The first hook insertion groove (1224) may be provided at one end of the mounting groove (1221). Specifically, the first hook insertion groove (1224) may be provided at the inner lower end of the mounting groove (1221). The first hook insertion groove (1224) may be recessed downward from the inner lower end of the mounting groove (1221).
[0241] The rear cover (122) may include a second hook insertion groove (1225). When the mounting portion (220) is mounted in the mounting groove (1221), the second hook insertion groove (1225) may be provided so that at least a portion of the second hook (228) is inserted therein. Specifically, when the mounting portion (220) is mounted in the mounting groove (1221), the second inclined portion (2284) of the second hook (228) may be inserted into the second hook insertion groove (1225). By inserting the second inclined portion (2284) into the second hook insertion groove (1225), the mounting portion (220) may be more stably mounted on the display (100).
[0242] The second hook insertion groove (1225) may be provided at the other end of the mounting groove (1221). Specifically, the second hook insertion groove (1225) may be provided at the inner upper end of the mounting groove (1221). The second hook insertion groove (1225) may be recessed upward from the inner upper end of the mounting groove (1221).
[0243] According to the concept of the present disclosure, the length from the upper end of the second inclined portion (2284) to the lower end of the first inclined portion (2254) may be longer than the length of the mounting groove (1221) extending in the vertical direction. On the other hand, the length from the upper surface (221k) of the case (221) to the lower surface (221j) may be equal to or shorter than the length of the mounting groove (1221) extending in the vertical direction. Through this configuration, when the mounting portion (220) is mounted in the mounting groove (1221), the mounting portion (220) may be fixed inside the mounting groove (1221). Hereinafter, the length from the upper end of the second inclined portion (2284) to the lower end of the first inclined portion (2254) may be referred to as the maximum length of the mounting portion (220), and the length by which the mounting groove (1221) extends in the vertical direction may be referred to as the length of the mounting groove (1221).
[0244] Below, with reference to FIGS. 19 to 28, the process of mounting the mounting part (220) in the mounting groove (1221) will be described.
[0245] Referring to Fig. 20, when the mounting portion (220) is separated from the mounting groove (1221), the first inclined portion (2254) may be provided lower than the lower surface (221j) of the case (221). That is, the first inclined portion (2254) may be provided with a step with respect to the lower surface (221j) of the case (221).
[0246] Referring to Fig. 23, when the mounting portion (220) is separated from the mounting groove (1221), the second inclined portion (2284) may be provided above the upper surface (221k) of the case (221). That is, the second inclined portion (2284) may be provided with a step with respect to the upper surface (221k) of the case (221).
[0247] As described above, the maximum length of the mounting portion (220) may be longer than the length of the mounting groove (1221). Through this configuration, when the mounting portion (220) is mounted in the mounting groove (1221), the first inclined portion (2254) can come into contact with the first catch (1226) provided at the lower end of the mounting groove (1221). As the mounting portion (220) moves inwardly into the mounting groove (1221), the first inclined portion (2254) moves upward by the first catch (1226), thereby guiding the first hook (225) upward. That is, the first inclined portion (2254) is provided at the lower end of the first hook (225), thereby guiding the first hook (225) upward. When the first hook (225) is guided upward and moves, the first elastic body (226) can be compressed.
[0248] When the mounting portion (220) is mounted in the mounting groove (1221), the second inclined portion (2284) can come into contact with the second catch (1227) provided at the upper end of the mounting groove (1221). As the mounting portion (220) moves inwardly into the mounting groove (1221), the second inclined portion (2284) moves downward by the second catch (1227), thereby guiding the second hook (228) downward. That is, the second inclined portion (2284) is provided at the upper end of the second hook (228), thereby guiding the second hook (228) downward. When the second hook (228) is guided downward and moves, the second elastic body (229) can be compressed.
[0249] When the mounting portion (220) is mounted in the mounting groove (1221), the first elastic body (226) can press the first hook (225) downward. That is, the first elastic body (226) can press the first hook (225) downward by being positioned at the upper end of the first hook (225). As the first hook (225) is pressed downward and moves, the first inclined portion (2254) can be inserted into the first hook insertion groove (1224).
[0250] When the mounting portion (220) is mounted in the mounting groove (1221), the second elastic body (229) can press the second hook (228) upward. That is, the second elastic body (229) can press the second hook (228) upward by being positioned at the lower end of the second hook (228). As the second hook (228) is pressed upward and moves, the second inclined portion (2284) can be inserted into the second hook insertion groove (1225).
[0251] Hereinafter, with reference to FIGS. 19 to 28, the process of separating the mounting portion (220) from the mounting groove (1221) will be described.
[0252] As described above, the slide portion (227) may be able to move up and down with respect to the case (221) together with the first hook (225). In addition, even when the mounting portion (220) is mounted in the mounting groove (1221), the slide portion (227) may be able to move up and down with respect to the case (221) together with the first hook (225).
[0253] When the slide part (227) moves upward, the first hook (225) can also move upward. As the first hook (225) moves upward, the first inclined part (2254) can be pulled out from the first hook insertion groove (1224). As the first inclined part (2254) is pulled out from the first hook insertion groove (1224), the mounting part (220) can be released from the mounting groove (1221). That is, the mounting part (220) can be separated from the mounting groove (1221). Therefore, the mounting part (220) can be separated from the mounting groove (1221) through the upward movement of the slide part (227).
[0254] According to the concept of the present disclosure, the stand (200) can be coupled to the display housing (120) using only the magnetic force between the first magnetic body (224) and the second magnetic body (1223) and the first and second hooks (225, 228). That is, a separate fastening member such as a screw may not be required when coupling the stand (200) to the display housing (120). Accordingly, coupling the stand (200) to the display housing (120) or separating the stand (200) from the display housing (120) can become easier.
[0255] FIG. 29 is a diagram illustrating a display device according to one or more embodiments. FIG. 30 is a diagram illustrating the display device illustrated in FIG. 29 from the rear.
[0256] Hereinafter, a display device (2) having a plurality of displays (100) will be described with reference to FIGS. 29 and 30. In describing the display device (2), components that are substantially the same as the configuration of the display device (1) illustrated in FIGS. 1 to 28 are assigned the same reference numerals, and a detailed description thereof may be omitted.
[0257] Referring to FIGS. 29 and 30, the display device (2) may include a display (100). The display (100) may include a first display (100a) and a second display (100b).
[0258] The first display (100a) and the second display (100b) may be connected via a display connecting part (1001). Specifically, the display connecting part (1001) may connect one side of the first display (100a) and one side of the second display (100b). The display connecting part (1001) may be positioned at the rear of the display (100). Through this configuration, the display device (2) may display characters, figures, graphs, images, etc. on a wider screen.
[0259] The stand (200) may be provided in multiple units. For example, the stand (200) may include a first stand (201) and a second stand (202). For example, the first stand (201) may be placed at one end of the first display (100a). Specifically, the first stand (201) may be placed at one end provided on the opposite side of one side of the first display (100a). For example, the second stand (202) may be placed at one end of the second display (100b). Specifically, the second stand (202) may be placed at one end provided on the opposite side of one side of the second display (100b). Although the drawing illustrates two stands (200), the number of stands (200) is not limited thereto.
[0260] A display device (1) according to one embodiment includes a display (100) and a stand (200) provided to support the display (100). The stand (200) includes a mounting portion (220) detachably mountable to the display (100), and a support portion (210) rotatable to a locking position (L) in which movement with respect to the mounting portion (220) is restricted and an unlocking position (U) in which movement with respect to the mounting portion (220) is restricted. The mounting portion (220) is rotatable in a second direction (B) different from a first direction (A) in which the support portion (210) rotates to the unlocking position (U) when the support portion (210) is in the locking position (L).
[0261] The above mounting portion (220) may include a guide portion (222) extending in the vertical direction when mounted on the display (100). The support portion (210) may include a connector (213) that is movably coupled to the guide portion (222) when in the unlocking position (U).
[0262] The above mounting portion (220) may include a fixing portion (223) for fixing the connector (213) when the support portion (210) is in the locking position (L).
[0263] The support member (210) may further include a base (211) and a leg (212) extending from the base (211). The connector (213) may further include a connector body (2131) provided on the guide member (222) and a connecting protrusion (2132) extending from the connector body (2131) toward the leg (212), and connecting the connector body (2131) and the leg (212).
[0264] The above first direction (A) may be the direction in which the connector (213) rotates based on the central axis of the connecting protrusion (2132).
[0265] The above support member (210) may further include a hinge axis (2142) extending in a direction intersecting with the direction in which the connecting protrusion (2132) extends. The mounting member (220) may be capable of rotating in a second direction (B) with respect to the hinge axis (2142) together with the connector (213) when the support member (210) is in the locking position (L).
[0266] The above guide portion (222) may include a mounting portion (2221) on which at least a portion of the connector body (2131) is mounted, and a guide hole (2222) provided on the inside of the mounting portion (2221) and through which the connecting protrusion (2132) passes.
[0267] The connector body (2131) may include a convex portion (2131a) provided on the edge of the connector body (2131). The connector body (2131) may include a concave portion (2231a, 2232a, 2233a) provided to allow the convex portion (2131a) to be seated. When the convex portion (2131a) is seated in the concave portion (2231a, 2232a, 2233a), the connector (213) may be fixed by the fixing portion (223).
[0268] The above stand (200) may include a first stand (201) placed at one end of the display (100) and a second stand (202) placed at the other end of the display (100).
[0269] The above fixing part (223) may include a first fixing part (2231) provided to fix the mounting part (220) to a first height (H1) when the support part (210) is at the locking position (L), and a second fixing part (2232) provided to fix the mounting part (220) to a second height (H2) different from the first height (H1) when the support part (210) is at the locking position (L).
[0270] The above display (100) may include a display panel (110) and a rear cover (122) covering the rear of the display panel (110). The rear cover (122) may include a mounting groove (1221) provided to mount the mounting portion (220).
[0271] The above mounting portion (220) may include a first magnetic body (224). The rear cover (122) may include a mounting surface (1222) provided to allow the mounting portion (220) to be mounted when the mounting portion (220) is mounted in the mounting groove (1221), and a second magnetic body (1223) arranged on the opposite side of the mounting portion (220) with respect to the mounting surface (1222) when the mounting portion (220) is mounted in the mounting groove (1221).
[0272] The above mounting portion (220) may further include a hook (225) provided at one end of the mounting portion (220). The rear cover (122) may further include a hook insertion groove (1224) provided at one end of the mounting groove (1221). When the mounting portion (220) is mounted in the mounting groove (1221), at least a portion of the hook (225) may be provided to be inserted into the hook insertion groove (1224).
[0273] The above mounting portion (220) may include an elastic body (226) arranged at an upper end of the hook (225) to press the hook (225) downward when the mounting portion (220) is mounted in the mounting groove (1221). The hook (225) may include an inclined portion (2254) provided at a lower end of the hook (225) to guide the hook (225) upward when the mounting portion (220) is mounted in the mounting groove (1221).
[0274] The above-mentioned mounting portion (220) may further include a case (221) that accommodates at least a portion of the hook (225) and a slide portion (227) that is connected to the hook (225) and provided on the outer surface of the case (221). The slide portion (227) may be able to move up and down with respect to the case (221) together with the hook (225) when the mounting portion (220) is mounted in the mounting groove (1221).
[0275] A display device (1) according to one embodiment includes a display (100) and a stand (200) provided to support the display (100). The stand (200) includes a mounting portion (220) that can be detachably mounted on the display (100), a guide portion (222) that extends in a vertical direction when mounted on the display (100), and a fixing portion (223) provided on the guide portion (222), and a support portion (210) that includes a connector (213) that is movably coupled to the guide portion (222). The connector (213) is provided to be fixed to the fixing portion (223) or to be released from the fixing portion (223) by rotating in one direction on the fixing portion (223).
[0276] The support member (210) may further include a base (211) and a leg (212) extending from the base (211). The connector (213) may further include a connector body (2131) provided on the guide member (222) and a connecting protrusion (2132) extending from the connector body (2131) toward the leg (212), and connecting the connector body (2131) and the leg (212). One direction in which the connector (213) rotates may be a direction in which the connector (213) rotates based on the central axis of the connecting protrusion (2132).
[0277] When the connector (213) is fixed to the fixing member (223), the direction in which the guide member (222) extends may be parallel to the direction in which the leg (212) extends.
[0278] When the connector (213) is released from the fixing member (223), the direction in which the guide member (222) extends and the direction in which the leg (212) extends can be perpendicular to each other.
[0279] The above fixing part (223) may include a first fixing part (2231) that is positioned at the upper end of the guide part (222) when the mounting part (220) is mounted on the display (100), and a second fixing part (2232) that is positioned at the lower end of the guide part (222) when the mounting part (220) is mounted on the display (100).
[0280] According to the invention, the stand can be easily attached and detached from the display using a magnetic body and a hook structure, thereby improving the usability of the display device.
[0281] According to the concept of the present disclosure, two stands can be positioned at each end of the display, thereby reducing the load on each stand. Accordingly, the display device can stably support the display even if the stand has a relatively small size.
[0282] According to the invention, a display device can adjust the height of the display by rotating and vertically moving the support member. In addition, the display device can adjust the angle of the display by using a hinge structure.
[0283] The effects that can be obtained from the present disclosure are not limited to the effects mentioned above, and other effects that are not mentioned can be clearly understood by a person having ordinary skill in the art to which the present disclosure belongs from the description below.
[0284] While the present disclosure has been illustrated and described with reference to one or more embodiments, it will be understood that the one or more embodiments are intended to be illustrative and not restrictive. Those skilled in the art will further appreciate that various changes in form and detail may be made therein without departing from the true spirit and scope of the present disclosure, including the appended claims and their equivalents. Furthermore, it will be understood that any of the embodiments described herein may be used in conjunction with any other embodiment described herein.
Claims
1. Display; and A stand provided to support the above display; The above stand, A mounting part detachably mountable to the above display; and a support member rotatable in a first direction to a locking position or an unlocking position; When the support member is in the locking position, movement of the support member relative to the mounting member is restricted, When the support member is in the unlocked position, movement of the support member relative to the mounting member is possible, A display device in which the mounting portion is rotatable in a second direction different from the first direction when the support portion is in the locking position.
2. In paragraph 1, The above mounting portion includes a guide portion extending in the vertical direction when mounted on the display, A display device including a connector that is movably coupled to the guide portion when the support portion is in the unlocked position.
3. In paragraph 2, A display device wherein the mounting portion includes a fixing portion for fixing the connector to a fixed position when the support portion is in the locking position.
4. In paragraph 3, The above support part, base; and Further comprising a leg extending from the base, The above connector, a connector body on the above guide portion; and A display device further comprising a connecting protrusion extending from the connector body toward the leg and configured to connect the connector body and the leg.
5. In paragraph 4, A display device in which the first direction is the direction in which the connector rotates based on the central axis of the connecting protrusion.
6. In paragraph 4, The above support further includes a hinge axis extending in a direction intersecting the direction in which the connecting protrusion extends, The second direction above is, A display device in which the mounting portion rotates about the hinge axis together with the connector when the support portion is in the locking position.
7. In paragraph 4, The above guide part, anchorage; and Including a guide hole on the inside of the above-mentioned mounting portion, At least a portion of the above connector body is seated in the above mounting portion, The above connecting protrusion is a display device that penetrates the above guide hole.
8. In paragraph 4, The above connector body includes a convex portion provided on the edge of the above connector body, The above connector body includes a concave portion provided to allow the above convex portion to be seated, A display device in which, when the convex portion is seated in the concave portion, the connector is fixed to the fixed position by the fixing portion.
9. In paragraph 1, The above stand, A first stand disposed at one end of the above display; and A display device comprising a second stand disposed at the other end of the display.
10. In paragraph 3, The above fixed part, A first fixing member provided to fix the mounting member at a first height when the support member is in the locking position; and A display device including a second fixing member that is arranged to fix the mounting member at a second height different from the first height when the support member is in the locking position.
11. In paragraph 1, The above display includes a display panel and a rear cover covering the rear of the display panel, A display device in which the rear cover includes a mounting groove provided to mount the mounting portion.
12. In paragraph 11, The above mounting part includes a first magnetic body, The above rear cover, When the above mounting part is mounted in the mounting groove, a mounting surface provided for the mounting part to be mounted; and A display device including a second magnetic body arranged on the opposite side of the mounting portion with respect to the mounting surface when the mounting portion is mounted in the mounting groove.
13. In paragraph 11, The above mounting part further includes a hook provided at one end of the above mounting part, The above rear cover further includes a hook insertion groove provided at one end of the above mounting groove, A display device in which, when the mounting portion is mounted in the mounting groove, at least a portion of the hook is provided to be inserted into the hook insertion groove.
14. In paragraph 13, The above mounting part, When the above mounting part is mounted in the above mounting groove, it includes an elastic body located at the upper end of the hook and configured to press the hook downward, The above hook is, A display device including a sloped portion at the lower end of the hook, which is provided to guide the hook upward when the mounting portion is mounted in the mounting groove.
15. In paragraph 13, The above mounting part, a case accommodating at least a portion of said hook; and It further includes a slide part connected to the above hook and provided on the outer surface of the case, The above slide part, A display device that can move up and down with respect to the case together with the hook when the mounting part is mounted in the mounting groove.
Citation Information
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