A digital device support table
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-16
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]本实用新型的目的在于提供一种数码设备支撑台,解决数码设备放置在放置平台上会与使用者双眼之间错位,影响使用者观察使用的问题
1、本实用新型通过在底板的外侧转动安装旋转环,并在旋转环的外侧安装第一平衡板和第二平衡板,并通过螺栓和第二调节槽调节第二平衡板伸出第一平衡板外侧的长度,从而调节底板外侧的着地范围,进而调节底板放置在地面上的平衡稳定性,避免双手趴扶在放置台上使用iPad、笔记本电脑等数码设备时导致放置台倾斜歪倒,而且,可根据使用位置的空间,转动调节第一平衡板和第二平衡板的角度位置,并调节第二平衡板伸出的长度,便于放置台水平平衡放置在空间较小的位置使用。
Smart Images

Figure CN224622580U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of digital device support, and in particular to a digital device support platform. Background Technology
[0002] Currently, the "iPad" (a tablet computer from Apple Inc. with a rectangular casing and screen) has become a popular touchscreen tablet computer among many consumers. As a digital device, the iPad needs to be used frequently. Placing the iPad on a platform for support so that its screen is directly opposite the user's line of sight allows for comfortable use.
[0003] Existing digital device stands have drawbacks. When using digital devices such as iPads and laptops, users often rest their hands on the platform. External forces such as pushing or pressure can cause the platform to tilt or lean, resulting in instability at the bottom. This can lead to the iPads, laptops, and other digital devices placed on top of the platform tilting, falling, or even causing injury. Furthermore, due to varying user heights, the iPads, laptops, and other digital devices placed on the platform may be misaligned with the user's eyes, affecting their viewing experience. Therefore, this paper proposes a new digital device stand. Utility Model Content
[0004] The purpose of this utility model is to provide a digital device support platform to solve the problem that when digital devices are placed on the platform, they are misaligned with the user's eyes, affecting the user's observation and use.
[0005] To achieve this objective, the present invention adopts the following technical solution: A digital device support stand includes a support mechanism, a balancing component installed at the bottom of the support mechanism, a height adjustment mechanism installed at the top of the support mechanism, a placement component installed at the top of the height adjustment mechanism, and a drive adjustment mechanism installed on the outside of the placement component. The support mechanism includes a base plate, a support column fixed at the top center of the base plate, and a first adjustment groove opened in the middle of the support column. The height adjustment mechanism includes an adjustment column that is slidably inserted into the first adjustment groove, and a locking rod is fixed between the side of the adjustment column and the top of the side of the support column. The placement assembly includes a placement platform fixed to the top of the adjustment column, and a backing plate is hinged to a recessed part on one side of the placement platform.
[0006] Preferably, the base plate is horizontally arranged, the support column is vertically arranged, the first adjustment groove and the adjustment column are both rectangular structures, and the bottom end of the adjustment column is connected to a spring, which is slidably compressed and inserted into the bottom end of the first adjustment groove.
[0007] Preferably, the first adjusting groove has an insertion hole at the top of its side, and the adjusting column has a first positioning hole evenly distributed on one side. The locking rod slides horizontally through the insertion hole, and its inner end is locked into the first positioning hole. The outer end of the locking rod is fixed with a first limiting plate, and a first tension spring is sleeved on the outer end surface of the locking rod. The two ends of the first tension spring are respectively connected between the inner side of the first limiting plate and the outer side of the supporting column.
[0008] Preferably, the balancing assembly includes a rotating ring rotatably mounted on the outer side of the base plate, a first balancing plate evenly fixed on the outer side of the rotating ring, a second adjustment groove opened inside the first balancing plate, a second balancing plate inserted into the second adjustment groove, and a ground block fixed at the outer end of the second balancing plate.
[0009] Preferably, the outer side of the base plate has a rotating groove in the middle, the rotating ring is slidably installed inside the rotating groove and is horizontally set, the first balance plate and the second balance plate are both horizontally set, the bottom end of the ground block is flush with the bottom end of the base plate, and the bottom of both has a rough anti-slip structure.
[0010] Preferably, the outer end of the second adjusting groove has a first connecting hole, which is a threaded hole structure. The surface of the second balance plate has a second positioning hole evenly distributed. The internal thread of the first connecting hole rotates through a bolt, and the bottom end of the bolt abuts and is inserted into the interior of a second positioning hole.
[0011] Preferably, the placement platform is a rectangular structure and is horizontally arranged. A reinforcing plate is fixed between its bottom end and the top side of the adjusting column. A hinge shaft is hinged between the inner end of the backing plate and the top of the placement platform. A first anti-slip pad is adhered to the top surface of the backing plate. A limit frame is fixed to the front end of the top of the placement platform. A second anti-slip pad is adhered to the bottom inside the limit frame.
[0012] Preferably, the drive adjustment mechanism includes an abutment rod hinged to the bottom surface of the support plate, a drive block hinged to the bottom end of the abutment rod, sliding grooves on both sides of the recess at the top of the placement platform, the drive block slidably engaging with the sliding groove, a drive rod slidingly passing through its interior, a push-pull plate fixed to the outer end of the drive rod, and evenly spaced engaging tooth grooves at the bottom end of the drive rod. An insertion block is inserted into the rear end of the bottom of the placement platform, and evenly spaced engaging teeth are fixed to the top of the insertion block, the engaging teeth engaging with the bottom end of the engaging tooth groove.
[0013] Preferably, the bottom surface of the support plate has receiving grooves on both sides, and a hinge rod is fixed to the outer end of the receiving groove. Both ends of the abutment rod have hinge holes. The top end of the abutment rod is slidably inserted into the outer end of the receiving groove, and the hinge rod slides through the hinge hole. The top end of the driving block has a hinge groove, and the bottom end of the abutment rod is slidably inserted into the hinge groove and hinged to the top end of the driving block. The cross-section of the driving block and the sliding groove are both T-shaped structures and are both horizontally arranged.
[0014] Preferably, the outer end of the sliding groove has a second connecting hole, the driving rod slides horizontally through the second connecting hole, the middle of the driving block has a third connecting hole, the inner end of the driving rod slides through the third connecting hole, and a retaining ring is fixed on the inner end surface of the driving rod at a position on both sides of the third connecting hole. The plug-in block is slidably inserted into the recessed groove at the outer end of the bottom of the sliding groove. The bottom ends of the two plug-in blocks are fixed with a second limiting plate. The second limiting plate is horizontally spaced below the placement platform, and its top end is evenly connected with a second tension spring. The second tension spring is vertically connected between the top end of the second limiting plate and the bottom end of the placement platform.
[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. This utility model involves rotating a ring on the outer side of the base plate, and installing a first balance plate and a second balance plate on the outer side of the rotating ring. The length of the second balance plate extending beyond the outer side of the first balance plate is adjusted by bolts and a second adjustment groove, thereby adjusting the contact area of the outer side of the base plate and thus adjusting the balance and stability of the base plate on the ground. This prevents the platform from tilting or falling over when using digital devices such as iPads and laptops while holding them with both hands. Furthermore, the angle and position of the first and second balance plates can be adjusted according to the space available, and the length of the second balance plate extending beyond the second balance plate can also be adjusted, making it easy to place the platform horizontally and evenly in spaces with limited space.
[0016] 2. This utility model involves inserting and installing an adjusting column inside the support column, and using a snap-fit rod to snap the adjusting column and the support column together. In this way, pulling the first limiting plate and the first tension spring outward causes the spring to bounce the adjusting column upward and can be pressed downward, thereby adjusting the height of the top of the adjusting column, and thus adjusting the height of the platform. This makes it convenient for users of different heights to use, and allows digital devices such as iPads and laptops to be placed at an appropriate height for use.
[0017] 3. This utility model features a hinged backing plate installed at the recessed top of the placement platform, and a drive adjustment mechanism installed on the rear side of the backing plate. Thus, digital devices such as iPads and laptops can be stably and securely placed in front of the placement platform and backing plate using the first anti-slip pad, the second anti-slip pad, and the limiting frame. Furthermore, pulling down the second limiting plate and the second tension spring moves the push-pull plate along the sliding groove and the second connecting hole, causing the drive block to move inside the sliding groove via the drive rod. The abutment rod then abuts against the outer end of the bottom surface of the backing plate, thereby adjusting the tilt of the backing plate around the hinge axis. Simultaneously, releasing the second limiting plate causes the second tension spring to move the insertion block upwards, causing the locking teeth to engage at the bottom end of the locking groove, keeping the drive rod and drive block stably positioned on the surface of the placement platform. In this way, rectangular digital devices such as iPads can be tilted in front of the backing plate, and different tilt angles can be adjusted to ensure they are level with the user's eyes for comfortable and accurate observation and use. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the supporting mechanism of this utility model; Figure 3 This is a schematic diagram of the balancing component of this utility model; Figure 4 This is a schematic diagram of the rotating ring and the first balance plate of this utility model. Figure 5 This is a partial structural diagram of the height adjustment mechanism, placement component, and drive adjustment mechanism of this utility model; Figure 6 This is a schematic diagram of the structure of the adjusting column, the placement platform, and the backing plate of this utility model; Figure 7 This is a schematic diagram of the structure of the backing plate and drive adjustment mechanism of this utility model. Figure 8 This is a schematic diagram of the drive rod and push-pull plate of this utility model. Figure 9 This is a schematic diagram of the snap-fit teeth and plug-in block structure of this utility model; Figure 10 This is a schematic diagram of the drive block and abutment rod of this utility model.
[0019] Illustrations: 1. Support mechanism; 11. Base plate; 12. Support column; 13. Rotating groove; 14. First adjusting groove; 15. Insertion hole; 2. Balancing assembly; 21. Rotating ring; 22. First balancing plate; 23. Bolt; 24. Second balancing plate; 25. Grounding block; 26. Second positioning hole; 27. Second adjusting groove; 28. First connecting hole; 3. Component placement; 31. Placement platform; 32. Backing plate; 33. Receiving slot; 34. Limiting frame; 35. Second anti-slip pad; 36. Hinge shaft; 37. First anti-slip pad; 4. Drive adjustment mechanism; 41. Drive rod; 42. Push-pull plate; 43. Abutment rod; 44. Second limit plate; 45. Sliding groove; 46. Second connecting hole; 47. Hinge rod; 48. Drive block; 49. Snap-fit tooth groove; 410. Second tension spring; 411. Insertion block; 412. Retaining ring; 413. Snap-fit tooth; 414. Hinge hole; 415. Hinge groove; 5. Height adjustment mechanism; 51. Adjustment column; 52. First positioning hole; 53. Spring; 54. Snap-fit rod; 55. First tension spring; 56. First limit plate. Detailed Implementation
[0020] To make the utility model's objectives, features, and advantages more apparent and understandable, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described below are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present utility model.
[0021] In the description of this utility model, it should be understood that the terms "upper," "lower," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or there may be a component centrally located at the same time.
[0022] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0023] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 10 This utility model provides a digital device support platform, including a support mechanism 1, a balancing component 2 installed at the bottom of the support mechanism 1, a height adjustment mechanism 5 installed at the top of the support mechanism 1, a placement component 3 installed at the top of the height adjustment mechanism 5, and a drive adjustment mechanism 4 installed on the outside of the placement component 3.
[0024] The support mechanism 1 includes a base plate 11, a support column 12 fixed at the top center of the base plate 11, and a first adjustment groove 14 opened in the middle of the support column 12.
[0025] The base plate 11 is set horizontally, the support column 12 is set vertically, and the first adjustment groove 14 and the adjustment column 51 are both rectangular structures.
[0026] The balancing assembly 2 includes a rotating ring 21 rotatably mounted on the outside of the base plate 11. A first balancing plate 22 is uniformly fixed on the outside of the rotating ring 21. A second adjustment groove 27 is opened inside the first balancing plate 22. A second balancing plate 24 is inserted into the second adjustment groove 27. A land plot 25 is fixed at the outer end of the second balancing plate 24.
[0027] A rotating groove 13 is opened in the middle of the outer side of the base plate 11. The rotating ring 21 is slidably installed inside the rotating groove 13 and is set horizontally. The first balance plate 22 and the second balance plate 24 are both set horizontally. The bottom end of the ground block 25 is flush with the bottom end of the base plate 11, and the bottom of both is a rough anti-slip structure.
[0028] The outer end of the second adjustment groove 27 has a first connecting hole 28, which is a threaded hole structure. The surface of the second balance plate 24 has a second positioning hole 26 evenly distributed. The internal thread of the first connecting hole 28 rotates through a bolt 23, and the bottom end of the bolt 23 abuts and inserts into the interior of a second positioning hole 26.
[0029] The length of the second balance plate 24 extending beyond the first balance plate 22 is adjusted by the bolt 23 and the second adjustment groove 27, so that the ground block 25 extends to different lengths, thereby adjusting the ground contact range of the outer side of the base plate 11, and thus adjusting the balance and stability of the base plate 11 on the ground, so as to prevent the base plate 31 from tilting and falling over when using digital devices such as iPads and laptops while holding the base plate 31 with both hands.
[0030] The height adjustment mechanism 5 includes an adjustment column 51 that is slidably inserted into the first adjustment groove 14, and a locking rod 54 is fixed between the side of the adjustment column 51 and the top of the side of the support column 12.
[0031] A spring 53 is connected to the bottom end of the adjusting column 51. The spring 53 is slidably compressed and inserted into the bottom end of the first adjusting groove 14.
[0032] The first adjusting groove 14 has a plug hole 15 at the top of its side. The adjusting column 51 has a first positioning hole 52 evenly distributed on one side. The locking rod 54 slides horizontally through the plug hole 15 and its inner end is locked into the first positioning hole 52. The outer end of the locking rod 54 is fixed with a first limiting plate 56. The outer end surface of the locking rod 54 is sleeved with a first tension spring 55. The two ends of the first tension spring 55 are respectively connected to the inner side of the first limiting plate 56 and the outer side of the support column 12.
[0033] The adjusting column 51 and the support column 12 are connected by the snap-fit rod 54. When the first limiting plate 56 and the first tension spring 55 are pulled outward, the spring 53 bounces the adjusting column 51 upward and can be pressed down to prevent the adjusting column 51 and the placement platform 31 from falling rapidly and causing large vibrations. This adjusts the height of the top of the adjusting column 51 and thus the height of the placement platform 31, making it convenient for users of different heights to use.
[0034] The placement assembly 3 includes a placement platform 31 fixed to the top of the adjustment column 51, and a backing plate 32 is hinged to a recessed part on one side of the placement platform 31.
[0035] The placement platform 31 has a rectangular structure and is horizontally set. A reinforcing plate 57 is fixed between its bottom end and the top side of the adjusting column 51. A hinge shaft 36 is hinged between the inner end of the backing plate 32 and the top of the placement platform 31. A first anti-slip pad 37 is glued to the top surface of the backing plate 32. A limit frame 34 is fixed to the front end of the top of the placement platform 31. A second anti-slip pad 35 is glued to the bottom inside the limit frame 34.
[0036] The first anti-slip pad 37, the second anti-slip pad 35, and the limiting frame 34 provide a stable and non-slip surface for placing digital devices such as iPads and laptops in front of the placement platform 31 and the backrest 32.
[0037] The drive adjustment mechanism 4 includes an abutment rod 43 hinged to the bottom surface of the support plate 32. A drive block 48 is hinged to the bottom end of the abutment rod 43. Sliding grooves 45 are opened on both sides of the recess at the top of the placement platform 31. The drive block 48 is slidably inserted into the sliding groove 45. A drive rod 41 slides through the drive block 48. A push-pull plate 42 is fixed to the outer end of the drive rod 41. A locking tooth groove 49 is evenly opened at the bottom end of the drive rod 41. A plug-in block 411 is inserted and installed at the rear end of the bottom end of the placement platform 31. A locking tooth 413 is evenly fixed to the top end of the plug-in block 411. The locking tooth 413 engages with the bottom end of the locking tooth groove 49.
[0038] Pull down the second limiting plate 44 and the second tension spring 410, push and pull the push-pull plate 42 along the sliding groove 45 and the second connecting hole 46, drive the drive block 48 to move inside the sliding groove 45 through the drive rod 41, adjust the position of the bottom end of the abutment rod 43, and abut the top end of the abutment rod 43 against the outer end of the bottom surface of the backing plate 32, thereby flipping and adjusting the tilt of the backing plate 32 with the hinge shaft 36 as the center.
[0039] The bottom surface of the backing plate 32 has receiving grooves 33 on both sides. A hinge rod 47 is fixed to the outer end of the receiving groove 33. Both ends of the abutment rod 43 have hinge holes 414. The top end of the abutment rod 43 is slidably inserted into the outer end of the receiving groove 33. The hinge rod 47 slides through the hinge hole 414. The top end of the driving block 48 has a hinge groove 415. The bottom end of the abutment rod 43 is slidably inserted into the hinge groove 415 and hinged to the top end of the driving block 48. The cross-section of the driving block 48 and the sliding groove 45 are both T-shaped structures and are both horizontally arranged.
[0040] The outer end of the sliding groove 45 has a second connecting hole 46. The drive rod 41 slides horizontally through the second connecting hole 46. The middle of the drive block 48 has a third connecting hole 416. The inner end of the drive rod 41 slides through the third connecting hole 416. A retaining ring 412 is fixed on the inner end surface and on both sides of the third connecting hole 416. The plug block 411 is slidably inserted into the recessed groove at the outer bottom of the sliding groove 45. The bottom ends of the two plug blocks 411 are fixed with a second limiting plate 44. The second limiting plate 44 is horizontally spaced below the placement platform 31. The top end of the second limiting plate 44 is evenly connected with a second tension spring 410. The second tension spring 410 is vertically connected between the top end of the second limiting plate 44 and the bottom end of the placement platform 31.
[0041] The second tension spring 410 drives the plug block 411 to move upward, so that the locking teeth 413 engage and lock into the bottom end of the locking tooth groove 49, keeping the drive rod 41 and the drive block 48 stably set at the rear end of the surface of the placement platform 31. In this way, digital devices such as iPads with rectangular plate structures can be tilted in front of the backing plate 32, with the bottom end abutting against the side of the limiting frame 34, and different tilt angles can be adjusted so that they are level with the user's eyes, making it convenient for comfortable and accurate observation and use.
[0042] Working method: When in use, a rotating ring 21 is installed on the outside of the base plate 11, and a first balance plate 22 and a second balance plate 24 are installed on the outside of the rotating ring 21. The length of the second balance plate 24 extending beyond the outside of the first balance plate 22 is adjusted by bolts 23 and the second adjustment groove 27, so that the ground block 25 extends to different lengths, thereby adjusting the ground contact range of the outside of the base plate 11, and thus adjusting the balance and stability of the base plate 11 on the ground, so as to prevent the platform 31 from tilting and falling over when using digital devices such as iPads and laptops while holding them with both hands.
[0043] Furthermore, the angles of the first balance plate 22 and the second balance plate 24 can be adjusted by rotating them according to the space available at the location, and the length of the extended portion of the second balance plate 24 can also be adjusted, making it easier for the placement platform 31 to be placed horizontally and evenly in a space with limited space.
[0044] An adjusting column 51 is inserted and installed inside the support column 12, and the adjusting column 51 and the support column 12 are connected by a snap-fit rod 54. Thus, when the first limiting plate 56 and the first tension spring 55 are pulled outward, the spring 53 bounces the adjusting column 51 upward and can be pressed downward to prevent the adjusting column 51 and the placement platform 31 from falling rapidly and causing large vibrations. This adjusts the height of the top of the adjusting column 51, thereby adjusting the height of the placement platform 31, making it convenient for users of different heights to use, and adjusting the placement of digital devices such as iPads and laptops at an appropriate height for use.
[0045] A backrest plate 32 is hinged to the recessed top of the placement platform 31, and a drive adjustment mechanism 4 is installed on the rear side of the backrest plate 32. In this way, digital devices such as iPads and laptops can be placed in front of the placement platform 31 and the backrest plate 32 in a stable and non-slip manner through the first anti-slip pad 37, the second anti-slip pad 35 and the limiting frame 34.
[0046] Furthermore, by pulling down the second limiting plate 44 and the second tension spring 410, the push-pull plate 42 is moved along the sliding groove 45 and the second connecting hole 46. The drive block 48 is moved inside the sliding groove 45 by the drive rod 41, the position of the bottom end of the abutment rod 43 is adjusted, and the top end of the abutment rod 43 abuts against the outer end of the bottom surface of the backing plate 32, thereby rotating and adjusting the tilt of the backing plate 32 with the hinge shaft 36 as the center.
[0047] At the same time, the second limiting plate 44 is released, and the second tension spring 410 drives the plug block 411 to move upward, so that the locking teeth 413 engage and lock into the bottom end of the locking tooth groove 49, keeping the drive rod 41 and the drive block 48 stably set at the rear end of the surface of the placement platform 31. In this way, digital devices such as iPads with rectangular plate structures can be tilted and placed in front of the backing plate 32, with the bottom end abutting against the side of the limiting frame 34, and different tilt angles can be adjusted so that they are level with the user's eyes, making it convenient for comfortable and accurate observation and use.
[0048] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. A digital device support platform, comprising a support mechanism (1), characterized in that, The bottom end of the support mechanism (1) is equipped with a balancing component (2), the top end of the support mechanism (1) is equipped with a height adjustment mechanism (5), the top end of the height adjustment mechanism (5) is equipped with a placement component (3), and the outside of the placement component (3) is equipped with a drive adjustment mechanism (4). The support mechanism (1) includes a base plate (11), and a support column (12) is fixed at the top center of the base plate (11). A first adjustment groove (14) is opened in the middle of the support column (12). The height adjustment mechanism (5) includes an adjustment column (51) that is slidably inserted into the first adjustment groove (14), and a snap-fit rod (54) is fixed between the side of the adjustment column (51) and the top of the side of the support column (12). The placement assembly (3) includes a placement platform (31) fixed to the top of the adjustment column (51), and a backing plate (32) is hinged to a recess on one side of the placement platform (31).
2. The digital device support platform according to claim 1, characterized in that, The base plate (11) is set horizontally, the support column (12) is set vertically, the first adjustment groove (14) and the adjustment column (51) are both rectangular structures, the bottom end of the adjustment column (51) is connected to a spring (53), and the spring (53) is slidably compressed and inserted into the bottom end of the first adjustment groove (14).
3. A digital device support platform according to claim 1, characterized in that, The first adjustment groove (14) has a plug hole (15) at the top of its side. The first positioning hole (52) is evenly opened on one side of the adjustment column (51). The snap-fit rod (54) slides horizontally through the plug hole (15) and its inner end snaps into the first positioning hole (52). The outer end of the snap-fit rod (54) is fixed with a first limiting plate (56). The outer end surface of the snap-fit rod (54) is sleeved with a first tension spring (55). The two ends of the first tension spring (55) are respectively connected between the inner side of the first limiting plate (56) and the outer side of the support column (12).
4. A digital device support platform according to claim 1, characterized in that, The balancing assembly (2) includes a rotating ring (21) rotatably mounted on the outside of the base plate (11). A first balancing plate (22) is uniformly fixed on the outside of the rotating ring (21). A second adjustment groove (27) is opened inside the first balancing plate (22). A second balancing plate (24) is inserted into the second adjustment groove (27). A land plot (25) is fixed at the outer end of the second balancing plate (24).
5. A digital device support platform according to claim 4, characterized in that, A rotating groove (13) is opened in the middle of the outer side of the base plate (11). The rotating ring (21) is slidably installed inside the rotating groove (13) and is set horizontally. The first balance plate (22) and the second balance plate (24) are both set horizontally. The bottom end of the ground block (25) is flush with the bottom end of the base plate (11), and the bottom of both is a rough anti-slip structure.
6. A digital device support platform according to claim 5, characterized in that, The second adjustment groove (27) has a first connecting hole (28) at the top of its outer end. The first connecting hole (28) is a threaded hole structure. The surface of the second balance plate (24) has a second positioning hole (26) evenly distributed. The internal thread of the first connecting hole (28) rotates through a bolt (23). The bottom end of the bolt (23) abuts against and is inserted into the interior of a second positioning hole (26).
7. A digital device support platform according to claim 1, characterized in that, The placement platform (31) is a rectangular structure and is horizontally arranged. A reinforcing plate (57) is fixed between its bottom end and the top side of the adjusting column (51). The inner end of the backing plate (32) is hinged to the middle of the top of the placement platform (31) with a hinge shaft (36). A first anti-slip pad (37) is glued to the top surface of the backing plate (32). A limit frame (34) is fixed to the front end of the top of the placement platform (31). A second anti-slip pad (35) is glued to the bottom inside the limit frame (34).
8. A digital device support platform according to claim 1, characterized in that, The drive adjustment mechanism (4) includes an abutment rod (43) hinged to the bottom surface of the backing plate (32). A drive block (48) is hinged to the bottom end of the abutment rod (43). Sliding grooves (45) are opened on both sides of the recess at the top of the placement platform (31). The drive block (48) is slidably inserted into the sliding groove (45). A drive rod (41) slides through the drive block (41). A push-pull plate (42) is fixed to the outer end of the drive rod (41). A locking tooth groove (49) is evenly opened at the bottom end of the drive rod (41). A plug-in block (411) is inserted into the rear end of the bottom end of the placement platform (31). A locking tooth (413) is evenly fixed to the top end of the plug-in block (411). The locking tooth (413) engages with the bottom end of the locking tooth groove (49).
9. A digital device support platform according to claim 8, characterized in that, The bottom surface of the backing plate (32) has a receiving groove (33) on both sides. A hinge rod (47) is fixed to the outer end of the receiving groove (33). Both ends of the abutment rod (43) have hinge holes (414). The top end of the abutment rod (43) is slidably inserted into the outer end of the receiving groove (33). The hinge rod (47) slides through the hinge hole (414). The top end of the driving block (48) has a hinge groove (415). The bottom end of the abutment rod (43) is slidably inserted into the hinge groove (415) and hinged to the top end of the driving block (48). The cross-section of the driving block (48) and the sliding groove (45) are both T-shaped structures and are both horizontally arranged.
10. A digital device support platform according to claim 9, characterized in that, The outer end of the sliding groove (45) has a second connecting hole (46). The driving rod (41) slides horizontally through the second connecting hole (46). The middle of the driving block (48) has a third connecting hole (416). The inner end of the driving rod (41) slides through the third connecting hole (416). A retaining ring (412) is fixed on the inner end surface and on both sides of the third connecting hole (416). The plug-in block (411) slides into the recessed groove at the bottom outer end of the sliding groove (45). The bottom ends of the two plug-in blocks (411) are fixed with a second limiting plate (44). The second limiting plate (44) is horizontally spaced below the placement platform (31). A second tension spring (410) is evenly connected to its top end. The second tension spring (410) is vertically connected between the top end of the second limiting plate (44) and the bottom end of the placement platform (31).