Mounting structure for laser television
By designing the installation structure of the bracket and position adjustment mechanism, the problem of insufficient flexibility in the installation method of laser TV is solved, and the user experience is improved, especially the flexibility of lifting and angle adjustment.
Patent Information
- Application Number
- CN202422530219.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-18
AI Technical Summary
The existing laser TV installation method has limited flexibility, resulting in poor user experience.
An installation structure including a bracket and a first position adjustment mechanism is designed, through which the position of the laser TV relative to the bracket is adjusted to improve the flexibility of the projection direction.
The installation method of laser TV is enhanced and the user experience is improved, especially through lifting and angle adjustment, which achieves more flexible projection direction control.
Smart Images

Figure CN223242486U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of laser televisions, and in particular to a mounting structure for laser televisions. Background Art
[0002] Laser TV is a projection display device that uses laser as a light source. It combines the advantages of television technology and projection technology to provide a large-screen, high-definition viewing experience.
[0003] Existing laser TV installation methods generally include placing it directly on a TV cabinet, embedding it in a TV cabinet, pulling it out of the cabinet, or swinging it into the cabinet. However, these installation methods offer limited flexibility, resulting in a poor user experience. Utility Model Content
[0004] To address at least one of the aforementioned issues, according to one aspect of the present invention, a mounting structure for a laser TV is provided. The mounting structure includes a bracket and a first position adjustment mechanism disposed on the bracket. The first position adjustment mechanism is configured to adjust the position of the laser TV mounted thereon relative to the bracket.
[0005] When using this mounting structure for laser TV, you only need to place or install the bracket at the location where it needs to be installed (such as a cabinet or wall). Then, by adjusting the position of the laser TV relative to the bracket through the first position adjustment mechanism, you can improve the flexibility of the laser TV projection direction, thereby improving the user experience.
[0006] In some embodiments, the bracket is configured to be suspended from a ceiling. Thus, the laser TV can also be suspended through the mounting structure for the laser TV to increase the number of ways to install the laser TV.
[0007] In some embodiments, on the basis of the bracket being provided with a lifting structure, a projection opening for the laser of the laser TV to pass through, and a cover plate capable of covering the projection opening are provided at the bottom of the bracket; and the cover plate and the bracket are arranged so that the cover plate can be magnetically connected to the bracket when covering the projection opening.
[0008] Therefore, when the laser TV is not in use, the cover can be closed on the projection opening, which can prevent dust from contaminating the laser TV and also has the aesthetic effect of hiding the laser TV; moreover, since the cover is magnetically connected to the bracket when covering the projection opening, it is convenient to open or close the cover when the installation structure for the laser TV is hoisted.
[0009] In some embodiments, the end of the cover away from the magnetic connection with the bracket is hinged to the bracket, thereby facilitating the opening or closing of the cover while ensuring the stability of the connection between the cover and the bracket. At the same time, the cover does not need to be stored, making operation convenient.
[0010] In some embodiments, the bracket includes a frame and a base; the base is mounted on the frame via a first motion mechanism, the first motion mechanism being configured to drive the base to move horizontally relative to the frame; a projection opening is disposed on the base, and a cover is magnetically coupled to the base when the cover covers the projection opening; the cover is hingedly coupled to the base at an end distal from the magnetic coupling. Thus, the first motion mechanism allows the horizontal position of the projection opening to be adjusted to prevent the base from obstructing laser light emitted by the laser TV.
[0011] In some embodiments, the first position adjustment mechanism is a universal adjustment mechanism. Thus, when the laser TV is mounted on a bracket via the first position adjustment mechanism, not only can the rotation angle of the laser TV be adjusted by the first position adjustment mechanism, but the laser TV can also be moved relative to the bracket via the first position adjustment mechanism, thereby increasing the flexibility of the laser TV's projection angle.
[0012] In some embodiments, the universal adjustment mechanism includes a vertical position adjustment unit. The vertical position adjustment unit is configured to drive the laser TV to move vertically relative to the bracket, and also to lock the laser TV relative to the bracket at any vertical position. Thus, the vertical position adjustment unit can drive the laser TV to move vertically relative to the bracket.
[0013] In some preferred embodiments, the vertical position adjustment unit is further configured to adjust the angle and direction of the laser TV relative to the bracket. Thus, the universal adjustment mechanism can achieve universal adjustment of the laser TV through the vertical position adjustment unit.
[0014] In some embodiments, the vertical position adjustment unit includes a vertical moving mechanism, which is configured to drive the laser TV to move to any position in the vertical direction at the position where it is connected, and to lock the laser TV relative to the bracket at any position in the vertical direction; at least two sets of vertical moving mechanisms are not located on the same side of the laser TV.
[0015] Thus, the vertical moving mechanism drives the position of the laser TV connected to the vertical moving mechanism to move in the vertical direction; and, since at least two groups of vertical moving mechanisms are not located on the same side of the laser TV, the laser TV can be moved a different distance by each vertical moving mechanism to adjust the tilt angle and tilt direction of the laser TV.
[0016] In some preferred embodiments, at least three sets of vertical movement mechanisms are not aligned and are located outside the laser TV. Because the at least three sets of vertical movement mechanisms are not aligned, not only is the stability of the laser TV after the vertical movement mechanisms have moved it into position guaranteed, but the tilt angle and tilt direction of the laser TV can also be adjusted in three dimensions by each vertical movement mechanism moving the laser TV a different distance. Furthermore, because the at least three sets of vertical movement mechanisms are located outside the laser TV, the stability of the laser TV's movement driven by the vertical position adjustment unit is guaranteed.
[0017] In some embodiments, the universal adjustment mechanism includes a vertical position adjustment unit and further includes a horizontal position adjustment unit. The horizontal position adjustment unit is configured to drive the laser TV to move horizontally relative to the bracket. Thus, the universal adjustment mechanism not only provides universal adjustment of the laser TV but also drives the laser TV to move in both vertical and horizontal directions.
[0018] In some embodiments, the horizontal position adjustment unit is disposed on the bracket and is connected to the laser TV via the vertical position adjustment unit. Thus, both the vertical position adjustment unit and the horizontal position adjustment unit can drive the laser TV to move.
[0019] In some embodiments, the horizontal position adjustment unit includes a second motion mechanism for driving the vertical position adjustment unit to move in a first direction; and a third motion mechanism for driving the second motion mechanism to move in a second direction. Thus, the second and third motion mechanisms can drive the vertical position adjustment unit to move within a plane, thereby driving the laser TV to move within a plane. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic structural diagram of a mounting structure for a laser TV according to one embodiment of the present invention;
[0021] Figure 2 for Figure 1 The enlarged structural diagram of point A of the installation structure for laser TV is shown;
[0022] Figure 3 for Figure 1 The enlarged structural diagram of point B of the installation structure for laser TV is shown;
[0023] Figure 4 for Figure 1 A schematic structural diagram of the installation structure for laser TV from another perspective is shown;
[0024] Figure 5 for Figure 4 The enlarged structural diagram of point C of the installation structure for laser TV is shown;
[0025] Figure 6 for Figure 4 The enlarged structural diagram of point D of the installation structure for laser TV is shown;
[0026] Figure 7 This is a schematic structural diagram of a mounting structure for a laser TV according to one embodiment of the present invention;
[0027] Figure 8 for Figure 7 A schematic cross-sectional structure diagram of the mounting structure for laser TV along the EE direction is shown;
[0028] Figure 9 for Figure 8 The enlarged structural diagram of point F of the installation structure for laser TV is shown;
[0029] Figure 10 for Figure 7 A schematic cross-sectional view of the mounting structure for a laser TV along the GG direction is shown;
[0030] Figure 11 for Figure 10 The enlarged structural diagram of the H position of the mounting structure for laser TV is shown;
[0031] Figure 12 This is a structural schematic diagram of an embodiment of the present invention, in which the cover of the installation structure for a laser TV is opened;
[0032] Figure 13 for Figure 12 An enlarged structural schematic diagram of location I of the mounting structure for laser television is shown. DETAILED DESCRIPTION
[0033] It should be noted that, unless there is any conflict, the embodiments and features in the embodiments of this application can be combined with each other.
[0034] It should also be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply the existence of any such actual relationship or order between these entities or operations. Moreover, the terms "include" and "comprise" include not only those elements, but also other elements that are not explicitly listed, or also include elements inherent to such processes, methods, articles or equipment. In the absence of further restrictions, the elements defined by the statement "include..." do not exclude the presence of other identical elements in the process, method, article or equipment that includes the elements. The terms used in this article are generally terms commonly used by those skilled in the art. If they are inconsistent with commonly used terms, the terms in this article shall prevail.
[0035] Furthermore, for ease of description, spatially relative terms such as "below," "beneath," "lower," "above," and "upper" may be used herein to describe the relationship of one element or component to another (or additional) elements or components as illustrated in the figures. Spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the figures. The device may be otherwise oriented (rotated 90 degrees or at other orientations), and the spatially relative descriptors used herein should be interpreted accordingly.
[0036] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0037] Figures 1 to 13 The figure schematically shows a mounting structure for a laser TV according to an embodiment of the present invention.
[0038] As shown in Figure 1, the mounting structure for the laser TV includes a bracket 20, a second motion mechanism 321, a third motion mechanism 322 and a vertical movement mechanism 311; the third motion mechanism 322 is arranged on the bracket 20, and the third motion mechanism 322 is used to drive the second motion mechanism 321 to reciprocate along the second direction Y; the second motion mechanism 321 is arranged on the third motion mechanism 322, and the second motion mechanism 321 is used to drive the vertical movement mechanism 311 to reciprocate along the first direction X; the vertical movement mechanism 311 is used to drive the laser TV 100 to move in the vertical direction relative to the bracket 20, and can lock the laser TV 100 relative to the bracket 20 when the laser TV 100 moves to any position in the vertical direction relative to the bracket 20; wherein, the vertical movement mechanism 311 drives the laser TV 100 to move in the vertical direction, which does not necessarily mean that the laser The TV 100 moves in a strictly mathematically vertical direction, as long as the sub-direction of the moving direction of the laser TV 100 (the sub-direction of a direction means that when an object moves, the object also moves in the sub-direction, so the sub-direction may also coincide with the direction, that is, the vertical moving mechanism 311 may also drive the laser TV 100 to move in a strictly mathematically vertical direction) is parallel to the strictly mathematically vertical direction; of course, there is also the possibility that the laser TV 100 moves in a strictly mathematically vertical direction; since the first direction X and the second direction Y are not parallel, the first direction X and the second direction Y are used to distinguish the movement direction, and the value range of the angle A between the first direction X and the second direction Y is 0°<A<180°, preferably, A=90°; the first direction X and the second direction Y are not in the same direction as the vertical direction.
[0039] When using this installation structure for laser TV, it is only necessary to place or install the bracket 20 at the location where it needs to be installed (such as a cabinet or wall), and adjust the position of the laser TV 100 relative to the bracket 20 through the second motion mechanism 321, the third motion mechanism 322 and the vertical moving mechanism 311, so as to improve the flexibility of the projection direction of the laser TV 100, thereby improving the user experience.
[0040] As one embodiment of the third motion mechanism 322, Figure 1As shown, the third motion mechanism 322 includes a second guide rail 3221 mounted on the bracket 20, and a mounting plate 3222 that can be moved and locked relative to the second guide rail 3221 in the second direction Y. A mounting guide groove 32211 extending along the second direction Y is integrally formed or machined on the second guide rail 3221. The mounting guide groove 32211 can be, for example, a narrow groove with a width smaller than the bottom of the groove. The second motion mechanism 321 is mounted on the mounting plate 3222. Preferably, the mounting plate 3222 can be locked relative to the second guide rail 3221 when it moves to any position relative to the second guide rail 3221 in the second direction Y. Specifically, a first mounting hole 32221 is integrally formed or processed on the mounting plate 3222. The head of the screw and one of the nut are placed in the narrow groove, and the screw is passed through the first mounting hole 32221. At the same time, the head of the screw and the other of the nut are placed on the side of the mounting plate 3222 away from the second guide rail 3221. When the nut is loosened, the mounting plate 3222 can be moved relative to the second guide rail 3221 along the second direction Y; when the nut is tightened, the mounting plate 3222 is fixed relative to the second guide rail 3221.
[0041] As one embodiment of the second motion mechanism 321, Figure 4 、 Figure 5 、 Figure 10 and Figure 11 As shown, the second motion mechanism 321 includes a first guide rail 3211 mounted on the third motion mechanism 322, and a first slider 3212 adapted to the first guide rail 3211. The first guide rail 3211 is arranged along the first direction X. The vertical motion mechanism 311 is mounted on the first slider 3212. In some preferred embodiments, a first guide slot 32111 is integrally formed or machined into the first guide rail 3211. The first guide slot 32111 is a narrow slot with a width smaller than the slot bottom. The first slider 3212 is adapted to fit within the first guide slot 32111. This allows the weight of the vertical motion mechanism 311, carried by the first slider 3212, to be distributed across the first guide rail 3211. In some specific embodiments, the first guide rail 3211 is mounted on a mounting plate 3222.
[0042] As one embodiment of the vertical moving mechanism 311, Figure 2 、 Figure 10 and Figure 11As shown, the vertical moving mechanism 311 includes an adjusting screw 3111 installed on the second motion mechanism 321, a mounting block 3112 for connecting to the laser TV 100, and a first nut 3113 and a second nut 3114 adapted to the adjusting screw 3111; wherein the adjusting screw 3111 is arranged along the third direction Z, and the third direction Z is the vertical direction; a through hole 31121 for the adjusting screw 3111 to pass through is provided on the mounting block 3112; the first nut 3113 and the second nut 3114 are respectively located on both sides of the mounting block 3112. Therefore, by adjusting the position of the first nut 3113 and the second nut 3114 on the adjusting screw 3111 (rotating the first nut 3113 and the second nut 3114 along the third direction Z), the position of the mounting block 3112 and the laser TV 100 mounted on the mounting block 3112 in the third direction Z can be adjusted. In some specific embodiments, such as Figure 4 and Figure 5 As shown, the adjusting screw 3111 is mounted on the first slider 3212 .
[0043] In some embodiments, the sub-directions of the first direction X are located in the horizontal plane, and the sub-directions of the second direction Y are located in the horizontal plane (since the sub-directions may also coincide with the direction, the first direction X may also be located in the horizontal plane, and the second direction Y may also be located in the horizontal plane). Thus, the second motion mechanism 321 and the third motion mechanism 322 can constitute a horizontal position adjustment unit 32 of an embodiment, such as Figure 1 As shown, the horizontal position adjustment unit 32 can drive the laser TV 100 to move in the horizontal direction via the vertical moving mechanism 311.
[0044] In some preferred embodiments, Figure 1As shown, at least two sets of vertical moving mechanisms 311 are not located on the same side of the laser TV 100. Thus, the laser TV 100 can be moved a different distance by each vertical moving mechanism 311, thereby adjusting the tilt angle and tilt direction of the laser TV 100. Further preferably, at least three sets of vertical moving mechanisms 311 are not located on the same straight line. Thus, the laser TV 100 can be moved a different distance by each vertical moving mechanism 311, thereby adjusting the tilt angle and tilt direction of the laser TV 100 in three dimensions. Specifically, the tilt angle is the angle between the tilt direction and the horizontal plane. The tilt direction can be, for example, an upward or downward tilt of the front side, an upward or downward tilt of the left side, an upward or downward tilt of the left front side, an upward or downward tilt of the right front side, an upward or downward tilt of the left rear side, an upward or downward tilt of the right rear side, etc. Furthermore, since at least three sets of vertical moving mechanisms 311 are neither located on the same straight line nor on the same side of the laser TV 100, the stability of the laser TV 100 after being moved into position by the vertical moving mechanisms 311 can be ensured. In some embodiments, at least three groups of vertical movement mechanisms 311 that are neither located on the same straight line nor on the same side of the laser TV 100 constitute a vertical position adjustment unit 31 of an embodiment. In addition to being able to drive the laser TV 100 to move in the vertical direction relative to the bracket 20, the vertical position adjustment unit 31 can also lock the laser TV 100 relative to the bracket 20 at any position in the vertical direction, and can also adjust the angle and direction of the laser TV 100 relative to the bracket 20. Therefore, the universal adjustment function of the universal adjustment movement mechanism on the laser TV 100 can be realized through the vertical position adjustment unit 31. In some embodiments, such as Figure 1 As shown, the horizontal position adjustment unit 32 and the vertical position adjustment unit 31 together constitute a universal adjustment mechanism of one embodiment, which is the first position adjustment mechanism 30 of the laser TV mounting structure. Thus, the universal adjustment mechanism can achieve three-dimensional position adjustment of the laser TV 100 and universal adjustment of the laser TV 100.
[0045] In some preferred embodiments, Figure 1 As shown, the aforementioned at least three sets of vertical movement mechanisms 311 are all located outside the laser TV 100. Thus, the stability of the movement of the laser TV 100 driven by the vertical position adjustment unit 31 can be ensured.
[0046] In some embodiments, as Figure 1As shown, the mounting plate 3222 is also integrally formed or processed with a second mounting hole 32222 for the mounting screw to pass through. The mounting screw is used to mount the mounting plate 3222 on the ceiling, and the mounting screw constitutes the hanging structure 40 of an embodiment of the present application. Thus, the laser TV 100 can also be hung by the mounting structure for the laser TV to increase the installation method of the laser TV 100. Preferably, the second mounting hole 32222 is a cross hole to facilitate fine-tuning the relative position of the mounting plate 3222 and the hanging structure 40 in the plane. The cross hole constitutes the second position adjustment mechanism of an embodiment of the present application, and the second position adjustment mechanism is provided on the bracket 20 via the third motion mechanism 322. Thus, the flexibility of the position of the bracket 20 installed on the cabinet or wall can be increased by the second position adjustment mechanism. In some preferred embodiments, such as Figure 4 、 Figure 12 and Figure 13 As shown, a projection opening 21 for the laser of the laser TV 100 to pass through and a cover plate 22 capable of covering the projection opening 21 are provided at the bottom of the bracket 20; and the cover plate 22 and the bracket 20 are arranged so that the cover plate 22 can be magnetically connected to the bracket 20 when covering the projection opening 21. In some specific embodiments, such as Figure 12 and Figure 13 As shown, the magnetic connection between the cover plate 22 and the bracket 20 is realized by installing a magnet 23 at a position close to the projection opening 21 of the bracket 20, and the cover plate 22 is made of a ferromagnetic material that can be magnetically attracted by the magnet 23. For example, the cover plate 22 is an iron plate. Therefore, when the laser TV 100 is not in use, the cover plate 22 can be closed on the projection opening 21 (such as Figure 4 As shown), it can prevent dust from contaminating the laser TV 100 and has the aesthetics of hiding the laser TV 100; moreover, since the cover 22 is magnetically connected to the bracket 20 when covering the projection opening 21, it is convenient to open the installation structure for the laser TV when it is hoisted (as shown). Figure 12 and Figure 13 As shown) or covered with the cover plate 22.
[0047] In some embodiments, as Figure 12 and Figure 13 As shown, the end of the cover plate 22 away from the magnetic connection with the bracket 20 is hinged to the bracket 20. In this way, it is easy to open or close the cover plate 22, and the stability of the connection between the cover plate 22 and the bracket 20 can be ensured. At the same time, it is also possible to avoid storing the cover plate 22, which is convenient for operation. Figure 1 、 Figure 12 and Figure 13As shown, a rotation mechanism 60 is also provided to drive the cover plate 22 to rotate. The rotation mechanism 60 can be, for example, a rotation motor, which is mounted on the bracket 20. Preferably, the rotation mechanism 60 drives the hinge shaft 24, which hinges the cover plate 22 and the bracket 20, to rotate via a connecting rod mechanism 70, thereby driving the cover plate 22 to rotate relative to the bracket 20. In some preferred embodiments, in order to ensure that the laser light transmitted by the laser TV is not blocked by the bracket 20, as shown in FIG. Figure 1 、 Figure 4 、 Figure 12 and Figure 13 As shown, the bracket 20 is configured to include a frame 201 and a base plate 202; the base plate 202 is arranged on the frame 201 through a first motion mechanism, and the first motion mechanism is configured to drive the base plate 202 to move in the horizontal direction relative to the frame 201; the projection opening 21 is provided on the base plate 202, and the cover plate 22 can be magnetically connected to the base plate 202 when covering the projection opening 21; the end of the cover plate 22 away from the magnetic connection with the base plate 202 is hinged to the base plate 202. Thus, the position of the projection opening in the horizontal direction can be adjusted by the first motion mechanism to prevent the base plate from blocking the laser transmitted by the laser TV. In some specific embodiments, such as Figure 4 and Figure 6 、 Figure 8 and Figure 9 As shown, the first motion mechanism includes a second guide slot 32212 integrally formed or processed on the second guide rail 3221 and arranged along the second direction Y, and a second slider 32213 adapted in the second guide slot 32212; the second guide rail 3221 is connected to the frame 201; the second slider 32213 is connected to the bottom plate 202 via a connecting rod 25. Thus, the bottom plate 202 can be driven to reciprocate in the second direction Y relative to the frame 201 by the first motion mechanism to prevent the bottom plate 202 from blocking the laser transmitted by the laser TV. Furthermore, in order to improve the flexibility of the connection between the hinge shaft 24 and the bracket 20, as shown in FIG. Figure 1 、 Figure 8 and Figure 9 As shown, the hinge shaft 24 is connected to the bottom plate 202 in the bracket 20 through the connecting rod 25, and the hinge shaft 24 is rotatably provided on the connecting rod 25. Furthermore, when the rotating mechanism 60 is further provided, the rotating mechanism is provided on the bottom plate 202.
[0048] In other embodiments, mounting holes for screws to pass through may be integrally formed or processed directly on the bracket 20 , so that the bracket can be hung on the ceiling by screws passing through the mounting holes on the bracket 20 .
[0049] As another embodiment of the third motion mechanism 322 , the third motion mechanism 322 can be implemented as a linear motor whose base is fixedly mounted on the bracket 20 , and the drive rod of the linear motor is connected to the second motion mechanism 321 to drive the second motion mechanism 321 to move along the second direction Y. Preferably, to ensure the stability of the linear motor drive, a guide rail arranged along the second direction Y and a slider adapted to the guide rail are further provided, and the slider is connected to the second motion mechanism 321 .
[0050] As another embodiment of the third motion mechanism 322 , the third motion mechanism 322 can be implemented as a pneumatic cylinder or an oil cylinder whose cylinder body is fixedly mounted on the bracket 20 , and whose piston rod is connected to the second motion mechanism 321 to drive the second motion mechanism 321 to move along the second direction Y. Preferably, to ensure the stability of the pneumatic cylinder or oil cylinder drive, a guide rail arranged along the second direction Y and a slider adapted to the guide rail are further provided, and the slider is connected to the second motion mechanism 321 .
[0051] As another embodiment of the second motion mechanism 321 , the second motion mechanism 321 can be implemented as a linear motor with a base fixedly mounted on the third motion mechanism 322 , with a drive rod of the linear motor connected to the vertical motion mechanism 311 to drive the vertical motion mechanism 311 to move along the first direction X. Preferably, to ensure the stability of the linear motor drive, a guide rail arranged along the first direction X and a slider adapted to the guide rail are further provided, and the slider is connected to the vertical motion mechanism 311 .
[0052] As another embodiment of the second motion mechanism 321 , the second motion mechanism 321 can be implemented as a pneumatic cylinder or an oil cylinder whose cylinder body is fixedly mounted on the bracket 20 , and whose piston rod is connected to the vertical motion mechanism 311 to drive the vertical motion mechanism 311 to move along the first direction X. Preferably, in order to ensure the stability of the pneumatic cylinder or oil cylinder drive, a guide rail arranged along the first direction X and a slider adapted to the guide rail are further provided, and the slider is connected to the vertical motion mechanism 311 .
[0053] As another embodiment of the vertical movement mechanism 311, the vertical movement mechanism 311 can be implemented as a linear motor with a base fixedly mounted on the second motion mechanism 321. The drive rod of the linear motor is connected to the laser TV 100 to drive the laser TV 100 to move in the vertical direction. Preferably, to ensure the stability of the linear motor drive, a guide rail arranged in the vertical direction and a slider adapted to the guide rail are further provided, and the slider is connected to the laser TV 100.
[0054] As another embodiment of the vertical movement mechanism 311, the vertical movement mechanism 311 can be implemented as an air cylinder or oil cylinder whose cylinder body is fixedly mounted on the second motion mechanism 321, and whose piston rod is connected to the laser TV 100 to drive the laser TV 100 to move in the vertical direction. Preferably, to ensure the stability of the air cylinder or oil cylinder drive, a guide rail arranged in the vertical direction and a slider adapted to the guide rail are further provided, and the slider is connected to the laser TV 100.
[0055] In other embodiments, the connection relationship between the second motion mechanism 321, the third motion mechanism 322, the vertical moving mechanism 311, the bracket 20 and the laser TV 100 can also be adopted in the following manner: for example, the bracket 20, the third motion mechanism 322, the vertical moving mechanism 311, the second motion mechanism 321, and the laser TV 100 are connected in sequence, so that the third motion mechanism 322 drives the vertical moving mechanism 311, the second motion mechanism 321 and the laser TV 100 to move along the second direction Y, and the vertical moving mechanism 311 drives the second motion mechanism 321 and the laser TV 100 to move along the second direction Y. Movement in the vertical direction, the laser TV 100 is driven to move along the first direction X by the second motion mechanism 321; for example, the bracket 20, the vertical movement mechanism 311, the third motion mechanism 322, the second motion mechanism 321, and the laser TV 100 are connected in sequence, the vertical movement mechanism 311 drives the third motion mechanism 322, the second motion mechanism 321 and the laser TV 100 to move in the vertical direction, the third motion mechanism 322 drives the second motion mechanism 321 and the laser TV 100 to move along the second direction Y, and the second motion mechanism 321 drives the laser TV 100 to move along the first direction X. In these embodiments, when the at least three groups of vertical moving mechanisms 311 are neither located on the same straight line nor on the same side of the laser TV 100, the vertical position adjustment unit 31 formed by the at least three groups of vertical moving mechanisms 311 can also adjust the tilt angle and tilt direction of the laser TV 100. Since the vertical moving mechanism 311 drives the second motion mechanism 321 or drives the second motion mechanism 321 and the third motion mechanism 322 to move in the vertical direction, the first direction X and the second direction Y are not fixed.
[0056] In the present invention, connection or installation, unless otherwise specified, refers to a fixed connection. Fixed connections can be implemented as either removable or non-removable connections commonly used in the prior art. Removable connections can be implemented using existing technologies, such as threaded connections or key connections. Non-removable connections can also be implemented using existing technologies, such as welding or gluing.
[0057] The above descriptions are only some embodiments of the present invention. For those skilled in the art, several modifications and improvements can be made without departing from the inventive concept of the present invention, and these all fall within the scope of protection of the present invention.
Claims
1. The mounting structure for laser TV is characterized by: include: Bracket (20); and a first position adjustment mechanism (30) provided on the bracket (20); wherein, The first position adjustment mechanism (30) is configured to adjust the position of the laser television (100) mounted thereon relative to the bracket (20); The bracket (20) is configured to be suspended on a ceiling; The bottom of the bracket (20) is provided with a projection opening (21) for the laser of the laser television (100) to pass through.
2. The mounting structure for laser TV according to claim 1, characterized in that: A cover plate (22) capable of covering the projection opening (21) is provided at the bottom of the bracket (20); The cover plate (22) and the bracket (20) are configured such that the cover plate (22) can be magnetically connected to the bracket (20) when covering the projection opening (21).
3. The mounting structure for laser TV according to claim 2, characterized in that: One end of the cover plate (22) away from the magnetic connection with the bracket (20) is hinged to the bracket (20).
4. The mounting structure for laser TV according to claim 3, characterized in that: The bracket (20) comprises a frame body (201) and a bottom plate (202); The bottom plate (202) is arranged on the frame (201) via a first motion mechanism, and the first motion mechanism is configured to drive the bottom plate (202) to move in a horizontal direction relative to the frame (201); The projection opening (21) is provided on the bottom plate (202), and the cover plate (22) can be magnetically connected to the bottom plate (202) when covering the projection opening (21); One end of the cover plate (22) away from the magnetic connection with the bottom plate (202) is hinged to the bottom plate (202).
5. The mounting structure for a laser TV according to any one of claims 1 to 4, characterized in that: The first position adjustment mechanism (30) is a universal adjustment movement mechanism.
6. The mounting structure for laser TV according to claim 5, characterized in that: The universal adjustment movement mechanism includes a vertical position adjustment unit (31); The vertical position adjustment unit (31) is configured to enable the laser television (100) to move and lock to any position in the vertical direction relative to the bracket (20).
7. The mounting structure for laser TV according to claim 6, characterized in that: The vertical position adjustment unit (31) is further configured to be capable of adjusting the angle and direction of inclination of the laser television (100) relative to the bracket (20).
8. The mounting structure for laser TV according to claim 6, characterized in that: The vertical position adjustment unit (31) includes a vertical movement mechanism (311), and the vertical movement mechanism (311) is configured to enable the laser television (100) to be connected thereto to move to and lock at any position in the vertical direction; At least two groups of vertical movement mechanisms (311) are not located on the same side of the laser television (100).
9. The mounting structure for laser TV according to claim 6, characterized in that: At least three groups of vertical moving mechanisms (311) are not located on the same straight line and are all located outside the laser television (100).
10. The mounting structure for laser TV according to claim 6, characterized in that: The universal adjustment movement mechanism further includes a horizontal position adjustment unit (32); The horizontal position adjustment unit (32) is configured to drive the laser television (100) to move in a horizontal direction relative to the bracket (20).
11. The mounting structure for laser TV according to claim 10, characterized in that: The horizontal position adjustment unit (32) is arranged on the bracket (20) and is connected to the laser television (100) via the vertical position adjustment unit (31).
12. The mounting structure for laser TV according to claim 11, characterized in that: The horizontal position adjustment unit (32) comprises: a second motion mechanism (321) for driving the vertical position adjustment unit (31) to move along a first direction; and a third motion mechanism (322) for driving the second motion mechanism (321) to move along the second direction.