Display device
By setting tracks and movable wire management structures on the border of the display device, the problem that the wires in the input and output equipment are easily pulled and damaged during large-scale operation, effectively storage and preventing wires are achieved, and the service life and operation experience of the equipment are improved.
Patent Information
- Application Number
- CN202111025462.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-09-02
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2041-09-02
AI Technical Summary
The wire management structure of the existing display device cannot effectively avoid the problem of pulling and damage of the wires of the input and output devices during large-scale operation.
A display device is designed, including a track and wire structure arranged on the first frame. The wire structure consists of a storage part, a connecting part and a sliding part. The sliding part is installed inside the display device through a groove structure. The storage part is located outside. The sliding part is connected to the storage part to realize the storage and prevent pulling of the wire.
Through this design, the wires of the input and output devices of the display device can occupy less space on the desktop, and avoid the wires being pulled and damaged during large operation, improving the service life of the device and the user's operating experience.
Smart Images

Figure CN115762331B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a display device, and in particular to a display device with a wire management structure. Background Art
[0002] With the prosperity of the e-sports industry today, there are more and more games on the market, and players' demand for computer equipment is also increasing. Generally, the peripheral input and output devices configured by the computer include mouse, game controller, keyboard, microphone, headphones, etc. The cables of these devices will affect the desktop usage space to varying degrees due to the different placement of the host. If the length of the cable is limited, during the operation, when the input and output devices are moved to a large extent, it is easy to pull off or even damage the cables of the input and output devices. There are currently special structures for cable management, but the positions of most cable management structures are fixed, and the problem of cable pulling will still occur at fixed positions, and the problem of cable being torn to a large extent when operating the input and output devices cannot be avoided. Therefore, it is necessary to design a cable management structure for a display device so that the cables of the input devices of the display device do not affect the desktop space while avoiding cable pulling and damage when the cables are operated to a large extent. Summary of the invention
[0003] In view of the problems in the prior art, the present invention provides a display device to solve the above problems.
[0004] Therefore, the technical problem to be solved by the present invention is to provide a display device, which includes:
[0005] A first frame is provided with a track, wherein the track includes a groove structure; and
[0006] The wire management structure comprises a receiving portion, a connecting portion and a sliding portion, wherein the connecting portion connects the receiving portion and the sliding portion, and the receiving portion is used for passing the wires;
[0007] The sliding part is installed inside the display device through the groove structure, the receiving part is located outside the display device, and the sliding part is linked with the receiving part.
[0008] As an optional technical solution, the groove structure includes a first groove, the first groove runs through the first wall portion of the first frame, the first frame has a first length direction, and the first groove extends along the first length direction.
[0009] As an optional technical solution, the sliding part is a protrusion structure, and the vertical projection of the sliding part on the first wall part completely covers the first groove in the first width direction, and the first width direction is perpendicular to the first length direction, so that the sliding part abuts against the first wall part.
[0010] As an optional technical solution, a vertical projection of the receiving portion on the first wall portion completely covers the first groove in the first width direction.
[0011] As an optional technical solution, the track further includes a second groove parallel to the first groove, and the sliding part is also movably disposed in the second groove.
[0012] As an optional technical solution, the sliding part includes a shaft part and two rollers connected to both ends thereof, and the sliding part is movably arranged in the second groove through the two rollers so that the sliding part can roll freely in the second groove.
[0013] As an optional technical solution, the second groove includes a plurality of protrusions, and the plurality of protrusions are distributed in the second groove at intervals of a preset distance, and the plurality of protrusions are used to slow down the moving speed of the sliding part.
[0014] As an optional technical solution, the storage portion includes a guide portion, a support portion, an elastic portion and a fixed portion, one end of the guide portion is connected to the connecting portion, the other end of the guide portion is connected to the support portion, and the elastic portion is connected between the support portion and the fixed portion.
[0015] As an optional technical solution, the first frame has a first wall portion, a second wall portion and a third wall portion, the first wall portion connects the second wall portion and the third wall portion, the second wall portion is opposite to the third wall portion, and the track is arranged on one of the first wall portion, the second wall portion and the third wall portion.
[0016] As an optional technical solution, the display device includes a main body, a bracket and a base, the main body includes a display screen and the first frame, the bracket connects the main body and the base, and when the base is placed on a supporting surface and the wire passes through the storage portion, the wire is picked up.
[0017] Compared with the prior art, the display device with a cable management structure of the present invention stores and organizes the cables of the input and output devices of the display device by adding a track to the frame of the display device and a cable management structure that can move freely on the track, thereby increasing the utilization of desktop space. The cable management structure of the present invention can move freely to prevent the cables of the input and output devices of the display device from being damaged due to pulling due to excessive operation.
[0018] The present invention is described in detail below with reference to the accompanying drawings and specific embodiments, but is not intended to limit the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a schematic diagram of a display device of the present invention;
[0020] Figure 2 It is a schematic diagram of a part of the interior of a first frame of a display device according to a first embodiment of the present invention;
[0021] Figure 3 It is a schematic diagram of a part of the interior of a first frame of a display device according to a second embodiment of the present invention;
[0022] Figure 4 is a schematic diagram of the interior of a display device according to a third embodiment of the present invention;
[0023] Figure 5 for Figure 4 A partial enlarged schematic diagram of
[0024] Figure 6 It is an enlarged schematic diagram of a storage portion according to a third embodiment of the present invention. DETAILED DESCRIPTION
[0025] In order to provide a further understanding of the purpose, structure, features, and functions of the present invention, the following detailed description is given in conjunction with the embodiments.
[0026] Please refer to Figure 1 as well as Figure 2 , Figure 1 is a schematic diagram of a display device of the present invention; Figure 2 1 is a schematic diagram of the interior of the first frame of the display device of the first embodiment of the present invention. The display device 1 of the present invention includes a first frame A1. In this embodiment, the display device 1 can be placed on a supporting surface (such as a desktop), and the frame of the display device 1 adjacent to the supporting surface can be defined as the first frame A1. A track 200 and a wire management structure 100 are set on the first frame A1, and the wire management structure 100 is slidably connected to the track 200.
[0027] like Figure 2 As shown, the wire management structure 100 includes a storage portion 110, a connecting portion 120 and a sliding portion 130. The connecting portion 120 connects the storage portion 110 and the sliding portion 130. The storage portion 110 is used to allow the wire W to pass through. The track 200 includes a groove structure. In this embodiment, the groove structure includes a first groove 210. The sliding portion 130 is installed inside the display device 1 through the groove structure (the first groove 210 in the first embodiment of the present invention), so that the sliding portion 130 drives the storage portion 110 to move on the track 200. In this embodiment, the storage portion 110 is suspended outside the display device 1.
[0028] like Figure 1 and Figure 2As shown, the first frame A1 extends along the first length direction L, and the track 200 (and the first groove 210) also extends along the first length direction L. The first frame A1 has a first surface a1 and a second surface a2 opposite to each other. The sliding portion 130 is in contact with the first surface a1 and is located inside the display device 1 and can slide in the first length direction L. The storage portion 110 is exposed on the second surface a2 and is located outside the display device 1. The storage portion 110 and the sliding portion 130 can be linked.
[0029] like Figure 1 As described above, the display device 1 includes a body 10, a base 12 and a bracket 11. The body 10 is provided with a display screen and a first frame A1, the bracket 11 connects the body 10 and the base 12, and the base 12 is used to support the bracket 11 and the body 10 and is placed on a supporting surface (e.g., a desktop). Due to the arrangement of the bracket 11 and the base 12, when the wires of the input and output devices pass through the storage portion, the wires will be picked up, thereby facilitating the neatness of the supporting surface.
[0030] The application of the wire management structure 100 to a mouse is used as an example for explanation. The mouse has a wire, USB connection ends at both ends of the wire, and a mouse body. When in use, the USB connection end is connected to the display device 1 or the host, and the mouse body is placed on a bearing surface (such as a desktop). At this time, the wire is lifted up through the storage portion 110 and does not occupy desktop space or only a small part of the space. When the user holds the mouse body and drives it to move, the wire connected to the mouse body also moves, so that the storage portion 110 and the sliding portion move accordingly to avoid excessive pulling of the wire. In this process, the user's large movements can be supported, and the bearing surface (such as a desktop) can be kept clean. The use of other input and output devices is similar to that of the mouse, and will not be repeated. Therefore, the wire management structure 100 that can move back and forth along the first frame A1 of the display device 1 is constituted in the present invention to drive the wire W to move back and forth freely, so as to avoid damage to the input and output devices caused by excessive operation of the user pulling the wire.
[0031] The display device of the present invention solves the problem of organizing and storing the cables of numerous input and output devices, thereby providing users with a simpler desktop space without affecting the operating functions of the input and output devices of the display device. Not only e-sports players can benefit from this, but also office workers who need to use computers for a long time can improve their work efficiency due to the simpler desktop space.
[0032] Please continue to refer to Figure 1 as well as Figure 2In the first embodiment of the present invention, the first groove 210 penetrates the first wall portion S1 of the first frame A1 (in this embodiment, the first wall portion is taken as the first frame facing the side of the table wall portion for explanation, which is not limited to this in actual application), and the connecting portion 120 passes through the first groove 210. Since the sliding portion 130 is installed and restricted inside the display device 1, the two ends of the connecting portion 120 are respectively connected to the storage portion 110 and the sliding portion 130, so that the storage portion 110 is suspended outside the display device 1. In this embodiment, the wire management structure on the display device 1 can move freely along the track 200, and the wires of the input and output devices of the display device 1 pass through the wire management structure, which increases the usable space around the display device 1 on the bearing surface where the display device 1 is placed. The wires move back and forth freely with the wire management structure, which prevents the user from pulling the wires due to excessive operation and causing damage to the input and output devices.
[0033] Please continue to refer to Figure 1 as well as Figure 2 In the first embodiment of the present invention, the sliding portion 130 is a convex block structure, and the vertical projection of the sliding portion 130 on the first wall portion S1 completely covers the first groove 210 in the first width direction F, so that the sliding portion 130 is stuck in the first groove 210, that is, the sliding portion 130 is blocked by the first surface a1 of the first frame A1 on both sides of the first groove 210. Even if the connecting portion 120 rotates in the first groove 210, the cable management structure 100 can still be firmly installed on the first frame A1 of the display device 1 by blocking the sliding portion 130 by the first surface a1 of the first frame A1. The first width direction F is perpendicular to the first length direction L. The display device with the cable management structure of this embodiment has a simple structure and is firmly installed. It can be realized by only setting the first groove at the frame and installing the cable management structure. The cable management structure is set inside the display device. The structure of the cable management structure is only the sliding portion, which occupies a small space inside the display device and will not affect the structure inside the display device.
[0034] In actual applications, the storage portion 110 in the present invention is an annular structure. When the installation is completed, preferably, the plane where the annular structure is located is parallel to the first length direction L, and the vertical projection of the annular structure on the first wall portion S1 completely covers the first groove 210 in the first width direction F, so that the storage portion 110 can interfere with the second surface a2 to abut against each other, and the storage portion 110 is blocked by the first groove 210 outside the display device 1. Therefore, even if the position of the display device changes due to transportation or movement, the wire management structure will not enter the interior of the display device, thereby avoiding affecting the internal structure of the display device and the subsequent arrangement of wires.
[0035] In practical applications, the first groove 210 may include a plurality of protrusions, which are evenly distributed in the first groove 210. The user may set the distance between two adjacent protrusions according to actual needs. Thus, a resistance may be provided to the connection portion 120 within a certain distance, that is, a force is required to make the connection portion 120 pass over the protrusions and continue to move along the first groove 210. In this way, the moving speed of the cable management structure 100 is buffered within a certain distance and the moving speed is reduced, so that when the user exerts greater force, the cable management structure 100 moves too fast and causes trouble to the user.
[0036] Please refer to Figure 1 as well as Figure 3 , Figure 3 1 is a schematic diagram of the interior of the first frame of the display device of the second embodiment of the present invention. The wire management structure of the display device in the second embodiment of the present invention is different from that of the display device in the first embodiment in the structure of the sliding part and the structure of the track. The track 200 in the second embodiment includes at least one second groove 220 in addition to the first groove 210. In this embodiment, two second grooves 220 are used as an example for explanation. The second groove 220 is arranged parallel to the first groove 210, and the two second grooves 220 are distributed on both sides of the first groove 210. In the second embodiment, the sliding part 130 includes a shaft 131 and rollers 132 arranged at both ends of the shaft. The two rollers 132 are respectively rotatably arranged in the corresponding second grooves 220, and the rollers 132 can roll in the second grooves 220, so that the sliding part 130 drives the wire management structure 100 to roll freely back and forth along the first frame A1 in the track 200. In this embodiment, the cable management structure moves in the track in a rolling manner, and the resistance during the movement is smaller, so that the cable management structure moves more smoothly on the display device. In addition, since two rollers 132 are provided, the sliding part 130 can be prevented from deflecting when moving on the track 200, ensuring stable operation.
[0037] In the second embodiment, one end of the connecting portion 120 connected to the sliding portion 130 has an axial hole, which is sleeved on the shaft portion 131. The axial hole and the shaft portion 131 are pivotally connected to allow the sliding portion 130 to roll forward in the second groove 220. In actual operation, the axial hole can also be fixedly connected to the shaft portion 131.
[0038] In the second embodiment, the second groove 220 includes a plurality of protrusions 221, and the protrusions 221 are evenly distributed in the second groove 220, and the distance between two adjacent protrusions 221 is a preset distance set according to the user's habits. Since the sliding portion 130 moves in the second groove 220 in a rolling manner, the rolling manner of the roller 132 in the second groove 220 has less resistance than the sliding manner in the first embodiment. When the user pulls the wire with the same force, the roller 132 drives the wire management structure 100 to move faster than the speed of the sliding portion in the first embodiment. Therefore, the wire management structure in the second embodiment will have the problem of excessively fast roller movement. In this embodiment, a protrusion 21 is added to the second groove 220 within a preset distance, and a resistance is provided to the roller 132 within the preset distance, that is, a force is required to make the roller 132 go over the protrusion 21 and continue to roll along the second groove 220. In this way, the speed of the roller 132 is buffered once within the preset distance and the moving speed is reduced, thereby preventing the roller 132 from moving too fast. The protrusion of this embodiment buffers the cable management structure within the preset distance, preventing the user from moving the cable management structure to an undesirable position due to the cable driving the cable management structure to move too fast during operation.
[0039] In the second embodiment, the second groove 220 is located on the first frame A1. In actual operation, the second groove 220 also includes a bottom, that is, the second groove 220 is a groove structure that does not penetrate the first frame A1. Since the second groove 220 does not penetrate the first frame A1, foreign matter can be reduced from entering the interior of the display device.
[0040] Please continue to refer to Figure 4 Figure 5 as well as Figure 6 , Figure 4 is a schematic diagram of the interior of a display device according to a third embodiment of the present invention; Figure 5 for Figure 4 A partial enlarged schematic diagram of Figure 6 It is an enlarged schematic diagram of the storage portion of the third embodiment of the present invention. The cable management structure of the display device in the third embodiment of the present invention is different from the cable management structure of the display device in the first embodiment only in the structure of the storage portion. In addition to including a guide portion 314 similar to the annular structure in the first embodiment, the storage portion 310 in the third embodiment also includes a support portion 311, an elastic portion 312 and a fixing portion 313 extending from the guide portion 314 along the first direction F1. In this embodiment, the elastic portion 312 is illustrated by taking the example of including two elastic members. The first direction F1 is not parallel to the first length direction L and has a component toward the front of the vertical display device 1. Preferably, the first direction F1 may be parallel to the aforementioned first width direction F.
[0041] In the third embodiment, the annular structure of the storage portion 310 extends a support portion 311 along the first direction F1 toward the user. The support portion 311 is not parallel to the guide portion 314, for example, the support portion 311 is perpendicular to the guide portion 314, and the support portion 311 is used to carry the wire W so that the wire W is lifted and faces the user. The end of the support portion 311 away from the guide portion 314 is connected to one end of the elastic portion 312, and the other end of the elastic portion 312 is connected to the fixing portion 313, that is, the support portion 311 is connected to the fixing portion 313 through the elastic portion 312. In the third embodiment, the wire W passes through the guide portion 314 of the storage portion 310 and is carried by the support portion 311 and fixed by the fixing portion 313. In actual application, the fixing portion 313 is a hollow columnar structure with an opening (i.e., the cross section of the fixing portion 313 may be C-shaped), and the inner diameter of the hollow columnar structure is slightly larger than the diameter of the wire material so that the wire material W can slide in the fixing portion 313, and the opening of the fixing portion 313 is smaller than the diameter of the wire material W, so that the wire material W can be fixed inside the fixing portion 313 after being inserted into the fixing portion 313 from the opening and will not slip off from the opening. In this embodiment, the elastic portion 312 is two spring structures disposed between the supporting portion 311 and the fixing portion 313, and the two spring structures are disposed on both sides of the wire material W to provide buffering and protection for the wire material W. In actual application, the buffer member can be any structure disposed between the supporting portion and the fixing portion and capable of providing elasticity, and is not limited to this embodiment.
[0042] In actual application, the wire W of this embodiment passes through the support portion 311 and the fixing portion 313, and the wire W is supported and lifted by the support portion 311. The fixing portion 313 fixes part of the wire W between the support portion 311 and the fixing portion 313 and is adjacent to the elastic portion 312. Due to the setting of the elastic portion 312, the fixing portion 313 can move relative to the support portion 311, and the elastic portion 312 can be deformed arbitrarily. When the user pulls the wire, the fixing portion 313 drives the elastic portion 312 to deform as the wire W is pulled, providing buffering and protection for the wire W, and making the use of the user more flexible and convenient. In this embodiment, the deformation of the buffer member bears the pulling force on the wire, further providing buffering and protection for the wire.
[0043] The storage portion of the present invention includes an annular structure of any shape, and the size of the hollow part inside the annular structure is larger than the size of the connection end of the wires of various input and output devices, so that the wires of various input and output devices can pass through the storage portion.
[0044] In practical applications, the annular structure of the storage portion of the present invention is further provided with an openable buckle structure, which is used to open the storage portion to place the wires. The openable buckle structure makes the size of the hollow part of the annular storage portion unaffected by the wire connection end (such as the mouse body, the headset body, etc.), and is easy to assemble, so as to be suitable for wires of various types of input and output devices. The size of the annular storage portion can also be further reduced, so that the wires can pass through, and the annular structure size is not too large to affect the appearance of the display device.
[0045] The first frame A1 defined in the present invention is a frame of the display device 1 close to the desktop, and the first wall S1 of the first frame A1 close to the desktop is used as an example for explanation. In practical applications, the first frame A1 has a first wall, a second wall, and a third wall connected to each other, wherein the first wall connects the second wall and the third wall, and the second wall is opposite to the third wall. In practical applications, the track and the cable management structure can be set on any one of the three walls of the first frame A1, such as the first wall close to the desktop, the second wall facing the user, or the third wall facing away from the user.
[0046] In actual applications, according to the needs of users, the track and cable management structure can also be set on a second frame of the display device 1 that is different from the first frame. The second frame can be any one of the two frames adjacent to the first frame A1 and the frames opposite to the first frame A1. The setting method of the second cable management structure on the second frame is similar to the aforementioned embodiment and will not be repeated here.
[0047] In actual applications, the display device needs to be connected to multiple different types of input and output devices at the same time. In order to adapt to the simultaneous connection of multiple different input and output devices, the display device of the present invention can be provided with multiple cable management structures for organizing and storing cables of multiple devices. The multiple cable management structures are provided on the same frame or different frames according to user needs.
[0048] In summary, the display device with a cable management device of the present invention stores and organizes the cables of the input and output devices of the display device by adding a track to the frame of the display device and a cable management structure that can move freely on the track, thereby increasing the utilization of desktop space. The cable management structure of the present invention can move freely to prevent the cables of the input and output devices of the display device from being damaged due to pulling due to excessive operating range.
[0049] Of course, the present invention may have many other embodiments. Without departing from the spirit and essence of the present invention, technicians familiar with the field may make various corresponding changes and deformations based on the present invention, but these corresponding changes and deformations should all fall within the scope of protection of the claims attached to the present invention.
Claims
1. A display device, characterized in that: The display device comprises: A first frame is provided with a track, wherein the track includes a groove structure; and The wire management structure comprises a receiving portion, a connecting portion and a sliding portion, wherein the connecting portion connects the receiving portion and the sliding portion, and the receiving portion is used for passing the wires; The sliding part is installed inside the display device through the groove structure, the storage part is located outside the display device, and the sliding part is linked to the storage part. The storage part includes a guide part, a support part, an elastic part and a fixed part. One end of the guide part is connected to the connecting part, and the other end of the guide part is connected to the support part. The elastic part is connected between the support part and the fixed part. After the wire passes through the guide part of the storage part, it is carried by the support part and fixed by the fixed part, so that when the user pulls the wire, the fixed part drives the elastic part to deform as the wire is pulled to provide buffering and protection for the wire.
2. The display device according to claim 1, wherein: The groove structure includes a first groove, the first groove runs through the first wall portion of the first frame, the first frame has a first length direction, the first groove extends along the first length direction, and the first length direction is the extension direction of the long side of the display device.
3. The display device according to claim 2, wherein: The sliding part is a convex block structure, and a vertical projection of the sliding part on the first wall part completely covers the first groove in a first width direction, and the first width direction is perpendicular to the first length direction, so that the sliding part abuts against the first wall part.
4. The display device according to claim 3, characterized in that A vertical projection of the receiving portion on the first wall portion completely covers the first groove in the first width direction.
5. The display device according to claim 2, wherein: The track further comprises a second groove parallel to the first groove, and the sliding part is movably disposed in the second groove.
6. The display device according to claim 5, characterized in that The sliding part comprises a shaft part and two rollers connected at two ends thereof. The sliding part is movably arranged in the second groove through the two rollers so that the sliding part can roll freely in the second groove.
7. The display device according to claim 5, characterized in that The second groove includes a plurality of protrusions, which are distributed in the second groove at predetermined intervals, and are used to slow down the moving speed of the sliding part.
8. The display device according to claim 1, wherein: The first frame has a first wall portion, a second wall portion and a third wall portion, the first wall portion connects the second wall portion and the third wall portion, the second wall portion is opposite to the third wall portion, and the track is arranged on one of the first wall portion, the second wall portion and the third wall portion.
9. The display device according to claim 1, wherein: The display device comprises a body, a bracket and a base, wherein the body comprises a display screen and the first frame, and the bracket connects the body and the base. When the base is placed on a bearing surface and the wire passes through the storage portion, the wire is lifted.
Citation Information
Patent Citations
Convenient-to-use smart screen
CN112509459A
Wire duct wiring device for machine room wiring
CN213661082U