Multi-angle adjusting device of antenna and adjusting method thereof
Patent Information
- Application Number
- CN202311550674.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-21
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2043-11-21
AI Technical Summary
立体方向图虽然立体感强,但绘制困难,平面方向图用来描述天线在某指定平面上的方向性
[0022]1、柔性件和挂设网件的配合设置,可进行多角度任意形变,从而对于设置在挂设网件上的天线进行多角度调节,且天线与挂设网件之间的连接位置更加稳定,不会在转动调节位置的过程中,产生位置上的偏移,实际应用效果更好;
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Figure CN117410715B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of antenna adjustment equipment technology, specifically to an antenna multi-angle adjustment device and its adjustment method. Background Technology
[0002] One of the basic functions of a transmitting antenna is to radiate the energy obtained from the feed line into the surrounding space; another basic function is to radiate most of the energy in the desired direction. A vertically placed half-wave dipole has a flat, "donut"-shaped three-dimensional radiation pattern. Although the three-dimensional radiation pattern has a strong sense of three-dimensionality, it is difficult to draw. The planar radiation pattern is used to describe the directivity of the antenna on a specified plane.
[0003] However, existing antennas are difficult to adjust stably at multiple angles during use. When adjusting the angle of the antenna, it is easy to cause positional deviation. In addition, the existing adjustment devices have limited adjustment range and can only adjust according to the set path, resulting in poor performance in actual applications. Summary of the Invention
[0004] To address the shortcomings of existing technologies, the present invention aims to provide an antenna multi-angle adjustment device and method. The flexible component and the mounting mesh are designed to allow for arbitrary deformation at multiple angles, thereby enabling multi-angle adjustment of the antenna mounted on the mounting mesh, and making the connection between the antenna and the mounting mesh more stable.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] An antenna multi-angle adjustment device includes a mounting plate, adjusting bolts, a flexible component, and a hanging net. The mounting plate is evenly provided with adjusting bolts, and the top of the adjusting bolts is connected to the flexible component. The rotation of the adjusting bolts causes the flexible component to deform as a whole. The top of the flexible component is provided with a hanging net, and an antenna is connected to the hanging net.
[0007] Preferably, the hanging netting includes multiple perforated rods and multiple U-shaped rods, which are interconnected to form a flexible covering shape.
[0008] Preferably, an antenna fixing component is provided between the mounting mesh and the antenna;
[0009] The antenna mounting hardware includes an S-shaped clip, a positioning bolt, an abutment plate, and a connecting nut.
[0010] The S-shaped clip is provided with a positioning bolt that passes through two horizontal plates. An abutment plate is rotatably connected to the positioning bolt at the inner end of the S-shaped clip, and a connecting nut is provided on the positioning bolt at the outer end of the S-shaped clip.
[0011] Preferably, the flexible component is configured as a flexible plate-like structure, and the flexible components of the hanging mesh are fixed together with bolts.
[0012] Preferably, the flexible component is configured as a mesh structure, and the hanging mesh component and the flexible component are connected by electric welding.
[0013] Preferably, the bottom of the mounting plate is provided with a driving component to drive its rotation. The driving component includes a motor and a rotating connecting shaft. The rotating connecting shaft is driven to the motor, and the top end of the rotating connecting shaft is fixedly connected to the mounting plate.
[0014] Preferably, the driving component is located at the center of the bottom of the mounting plate, and a rotating support component for supporting the mounting plate is sleeved on the rotating connecting shaft. The rotating support component includes a supporting diagonal rod and a fixing ring. The fixing ring is sleeved on the rotating connecting shaft, and multiple supporting diagonal rods for connecting the mounting plate are evenly fixed on the outer wall of the fixing ring.
[0015] Preferably, the driving component is located at the bottom center of one side of the mounting plate, and a connecting rod is fixed between the mounting plate and the rotating connecting shaft, and the mounting plate rotates around the rotating connecting shaft.
[0016] Preferably, a rotating catch is provided between the adjusting bolt and the flexible component.
[0017] A method for adjusting an antenna multi-angle adjustment device includes the following steps:
[0018] S1. Flexible component shape adjustment: Rotate the adjusting bolt on the mounting plate to drive the flexible component to deform until the flexible component can make large-area contact with the antenna.
[0019] S2. Antenna fixing installation: The antenna is set on the mounting mesh, and the position between the mounting mesh and the antenna is connected and fixed by the antenna fixing parts;
[0020] S3. Antenna Angle Adjustment: The mounting plate and its components are rotated by the drive mechanism. The mounting plate and its components rotate around the rotational connecting shaft on the drive mechanism until the antenna is adjusted to the appropriate position.
[0021] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0022] 1. The combination of flexible components and mounting mesh allows for arbitrary deformation at multiple angles, enabling multi-angle adjustment of the antenna mounted on the mounting mesh. Furthermore, the connection between the antenna and the mounting mesh is more stable, preventing positional shifts during rotation and adjustment, resulting in better practical application performance.
[0023] 2. An electric motor is installed at the bottom of the mounting plate to drive its rotation, which can further expand the adjustment range of the device and make it more widely applicable;
[0024] 3. The connection between the antenna and the mounting mesh is achieved through an antenna fixing component. This structure ensures the antenna's stable position on the mounting mesh, preventing wobbling during rotation and adjustment. It also facilitates installation and disassembly, making the adjustment device suitable for different types of antennas and resulting in better performance in actual use. Attached Figure Description
[0025] The disclosure of this invention is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this invention. In the drawings, the same reference numerals are used to refer to the same parts. Wherein:
[0026] Figure 1 This is a schematic diagram of the antenna multi-angle adjustment device in Embodiment 6 of the present invention;
[0027] Figure 2 This is a schematic diagram of the antenna multi-angle adjustment device according to Embodiment 5 of the present invention;
[0028] Figure 3 This is a schematic diagram of the antenna fixing component of the present invention;
[0029] Figure 4 This is a schematic diagram of the structure of the flexible component in Embodiment 3 of the present invention;
[0030] Figure 5 This is a schematic diagram of the structure of the flexible component in Embodiment 4 of the present invention;
[0031] Figure 6 This is a schematic diagram of the rotating support component in Embodiment 3 of the present invention.
[0032] The diagram shows the following labels: 10, mounting plate; 20, adjusting bolt; 21, rotating clip; 30, flexible component; 40, hanging net component; 41, perforated rod; 42, U-shaped rod; 50, motor; 51, rotating connecting shaft; 60, rotating support component; 61, supporting diagonal rod; 62, fixing ring; 63, connecting rod; 70, antenna fixing component; 71, S-shaped clip; 72, positioning bolt; 73, contact plate; 74, connecting nut. Detailed Implementation
[0033] It is readily understood that, based on the technical solution of this invention, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of the invention. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative examples of the technical solution of this invention and should not be considered as the entirety of the invention or as limitations or restrictions on the technical solution of this invention.
[0034] Example 1
[0035] like Figure 1 As shown, an antenna multi-angle adjustment device includes a mounting plate 10, adjusting bolts 20, a flexible component 30, and a hanging net 40. The mounting plate 10 is evenly provided with adjusting bolts 20. The top of the adjusting bolts 20 is connected to the flexible component 30. The adjustment bolts 20 are rotated to adjust the overall deformation of the flexible component 30. The top of the flexible component 30 is provided with the hanging net 40, and the antenna is connected to the hanging net 40.
[0036] The mounting mesh 40 includes multiple perforated rods 41 and multiple U-shaped rods 42. The perforated rods 41 and multiple U-shaped rods 42 are interconnected to form a shape covering the flexible component 30. This allows the mounting mesh 40 to deform in different directions. When the flexible component 30 deforms, the mounting mesh 40 can also deform accordingly, making it more suitable for antenna placement and connection. This provides better antenna positioning. In addition, the position of the antenna can be adjusted by changing the mounting mesh 40, resulting in a wider range of antenna adjustment.
[0037] Specifically, by rotating the adjusting bolt 20 on the mounting plate 10, the flexible part 30 on the adjusting bolt 20 is deformed accordingly, so that the hanging net 40 and the antenna form multi-point contact, multi-line contact, multi-surface contact, multi-point line contact, multi-point surface structure, and multi-line surface contact, making the connection position between the antenna and the hanging net 40 more stable, and multi-angle adjustment can be achieved, resulting in better practical application effect.
[0038] Example 2
[0039] like Figure 1 As shown, an antenna multi-angle adjustment device includes a mounting plate 10, adjusting bolts 20, a flexible component 30, and a hanging net 40. The mounting plate 10 is evenly provided with adjusting bolts 20. The top of the adjusting bolts 20 is connected to the flexible component 30. The adjustment bolts 20 are rotated to adjust the overall deformation of the flexible component 30. The top of the flexible component 30 is provided with the hanging net 40, and the antenna is connected to the hanging net 40.
[0040] The hanging net component 40 includes multiple perforated rods 41 and multiple U-shaped rods 42, which are interconnected to form the shape of the covering flexible component 30.
[0041] An antenna fixing component 70 is provided between the mounting mesh 40 and the antenna;
[0042] The antenna mounting component 70 includes an S-shaped clip 71, a positioning bolt 72, an abutment plate 73, and a connecting nut 74;
[0043] The S-shaped clip 71 is provided with a positioning bolt 72 that passes through two horizontal plates. The positioning bolt 72 is rotatably connected to the inner end of the S-shaped clip 71, and the positioning bolt 72 is provided with a connecting nut 74 on the outer side of the S-shaped clip 71.
[0044] Specifically, the hanging net component 40 consists of perforated rods 41 and U-shaped rods 42. The perforated rods 41 and U-shaped rods 42 are connected to form a hanging net component 40 that covers the entire area of the flexible component 30. This allows the hanging net component 40 to deform with the deformation of the flexible component 30, making it suitable for multi-angle adjustment of the antenna. At the same time, this hanging net structure 40 allows for easy connection and positioning between the hanging net mechanism 40 and the antenna via the antenna fixing component 70.
[0045] The antenna fixing component 70 includes an S-shaped clip 71, a positioning bolt 72, an abutment plate 73, and a connecting nut 74. Specifically, the S-shaped clip 71 is used to attach the mesh 40 on one side and the antenna connection end on the other side. After the mesh 40 is attached, the positioning bolt 72 passes through the antenna connection end and the S-shaped clip 71. The user rotates the positioning bolt 72, which moves the abutment plate 73 on the positioning bolt 72, causing the abutment plate 73 to press against the mesh 40. After the abutment is adjusted, the connecting nut 74 is used to lock the position of the positioning bolt 72 relative to the S-shaped clip 71, thereby restricting the position of the mesh 40, the antenna, and the antenna fixing component 70.
[0046] Example 3
[0047] like Figure 3-4 As shown, an antenna multi-angle adjustment device includes a mounting plate 10, adjusting bolts 20, a flexible component 30, and a hanging net 40. The mounting plate 10 is evenly provided with adjusting bolts 20. The top of the adjusting bolts 20 is connected to the flexible component 30. The adjustment bolts 20 are rotated to adjust the overall deformation of the flexible component 30. The top of the flexible component 30 is provided with the hanging net 40, and the antenna is connected to the hanging net 40.
[0048] The hanging net component 40 includes multiple perforated rods 41 and multiple U-shaped rods 42, which are interconnected to form the shape of the covering flexible component 30.
[0049] An antenna fixing component 70 is provided between the mounting mesh 40 and the antenna;
[0050] The antenna mounting component 70 includes an S-shaped clip 71, a positioning bolt 72, an abutment plate 73, and a connecting nut 74;
[0051] The S-shaped clip 71 is provided with a positioning bolt 72 that passes through two horizontal plates. The positioning bolt 72 is rotatably connected to the inner end of the S-shaped clip 71, and the positioning bolt 72 is provided with a connecting nut 74 on the outer side of the S-shaped clip 71.
[0052] like Figure 4 As shown, the flexible component 30 is configured as a flexible plate structure, and the hanging mesh component 40 is fixed to the flexible component 30 with bolts. This allows the flexible component 30 to have a greater degree of curvature. The flexible plate structure also allows for more contact points between the flexible component 30 and the hanging mesh component 40, resulting in a better connection between the flexible component 30 and the hanging mesh component 40. It also makes it easier to install the hanging mesh component 40 onto the flexible component 30.
[0053] Example 4
[0054] like Figure 3 and Figure 5 As shown, an antenna multi-angle adjustment device includes a mounting plate 10, adjusting bolts 20, a flexible component 30, and a hanging net 40. The mounting plate 10 is evenly provided with adjusting bolts 20. The top of the adjusting bolts 20 is connected to the flexible component 30. The adjustment bolts 20 are rotated to adjust the overall deformation of the flexible component 30. The top of the flexible component 30 is provided with the hanging net 40, and the antenna is connected to the hanging net 40.
[0055] The hanging net component 40 includes multiple perforated rods 41 and multiple U-shaped rods 42, which are interconnected to form the shape of the covering flexible component 30.
[0056] An antenna fixing component 70 is provided between the mounting mesh 40 and the antenna;
[0057] The antenna mounting component 70 includes an S-shaped clip 71, a positioning bolt 72, an abutment plate 73, and a connecting nut 74;
[0058] The S-shaped clip 71 is provided with a positioning bolt 72 that passes through two horizontal plates. The positioning bolt 72 is rotatably connected to the inner end of the S-shaped clip 71, and the positioning bolt 72 is provided with a connecting nut 74 on the outer side of the S-shaped clip 71.
[0059] like Figure 5 As shown, the flexible component 30 is configured as a mesh structure. The mesh structure of the flexible component 30 has high overall rigidity, and after deformation, it provides better support for the hanging mesh component 40, and can withstand the installation of a heavier antenna. The hanging mesh component 40 and the flexible component 30 are connected by electric welding, which makes the connection position between the hanging mesh component 40 and the flexible component 30 more stable and will not cause positional displacement.
[0060] Example 5
[0061] Based on Example 1, Example 2, Example 3, or Example 4, such as Figure 2 As shown, a drive component is provided at the bottom of the mounting plate 10 to drive its rotation. The drive component includes a motor 50 and a rotating connecting shaft 51. The rotating connecting shaft 51 is connected to the motor 50 for transmission, and the top end of the rotating connecting shaft 51 is fixedly connected to the mounting plate 10.
[0062] The driving component is located at the bottom center of the mounting plate 10. A rotating support 60 supporting the mounting plate 10 is sleeved on the rotating connecting shaft 51. The rotating support 60 includes a supporting inclined rod 61 and a fixing ring 62. The fixing ring 62 is sleeved on the rotating connecting shaft 51. Multiple supporting inclined rods 61 connecting the mounting plate 10 are evenly fixed on the outer wall of the fixing ring 62.
[0063] Specifically, the motor 50 controls the rotation of the rotating connecting shaft 51, which in turn drives the mounting plate 10 connected to the rotating connecting shaft 51 to rotate. During the rotation of the mounting plate 10, the rotating support 60 provides auxiliary limit for the rotation of the mounting plate 10, which makes the rotation adjustment process of the mounting plate 10 more stable and prevents tilting.
[0064] like Figure 6 As shown, the rotating support 60 includes a supporting inclined rod 61 and a fixing ring 62. The fixing ring 62 is sleeved on the rotating connecting shaft 51. Multiple supporting inclined rods 61 that connect to the mounting plate 10 are evenly fixed on the outer wall of the fixing ring 62, so that when the mounting plate 10 rotates, the rotating support 60 will also rotate accordingly.
[0065] In addition, a drive unit is provided at the bottom of the mounting plate 10 to drive its rotation. The drive unit is located at the center of the bottom of the mounting plate 10, which allows the mounting plate 10 to rotate around its bottom center point. The rotation process is smooth and the adjustment range of the antenna is small, making it suitable for antennas that require fine adjustment.
[0066] Example 6
[0067] Based on Example 1, Example 2, Example 3, or Example 4, such as Figure 1 As shown, a drive component is provided at the bottom of the mounting plate 10 to drive its rotation. The drive component includes a motor 50 and a rotating connecting shaft 51. The rotating connecting shaft 51 is connected to the motor 50 for transmission, and the top end of the rotating connecting shaft 51 is fixedly connected to the mounting plate 10.
[0068] The driving component is located at the bottom center of one side of the mounting plate 10. A connecting rod 63 is fixed between the mounting plate 10 and the rotating connecting shaft 51. The mounting plate 10 rotates around the rotating connecting shaft 51.
[0069] Specifically, the motor 50 controls the rotation of the rotating connecting shaft 51, which in turn drives the mounting plate 10 connected to the rotating connecting shaft 51 to rotate. During the rotation of the mounting plate 10, the connecting rod 63 supports the mounting plate 10, making the rotation of the mounting plate 10 more stable.
[0070] A drive unit is provided at the bottom of the mounting plate 10 to drive its rotation. The drive unit is located at the center of the bottom of one side of the mounting plate 10. This structure allows for a wide range of adjustment of the mounting plate 10, making it suitable for a wide range of antenna adjustments.
[0071] A rotating catch 21 is provided between the adjusting bolt 20 and the flexible part 30, which can make the adjusting bolt 20 better adjust the flexible part 30, and prevent wear between the adjusting bolt 20 and the flexible part 30.
[0072] A method for adjusting an antenna multi-angle adjustment device includes the following steps:
[0073] S1. Adjustment of the shape of flexible component 30: Rotate the adjusting bolt 20 on the mounting plate 10 to drive the flexible component 30 to deform until the flexible component 30 can make large-area contact with the antenna.
[0074] S2. Antenna fixed installation: The antenna is set on the mounting mesh 40, and the position between the mounting mesh 40 and the antenna is connected and fixed by the antenna fixing piece 70.
[0075] S3. Antenna angle adjustment: The mounting plate 10 and the components on the mounting plate 10 are rotated by the drive component. The mounting plate 10 and the components on the mounting plate 10 rotate around the rotation connecting shaft 51 on the drive component until the antenna is adjusted to the appropriate position.
[0076] This adjustment method allows for a wider antenna adjustment range, a smooth and orderly adjustment process, and prevents positional shifts.
[0077] The technical scope of this invention is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this invention, and all such modifications and variations should fall within the protection scope of this invention.
Claims
1. A multi-angle antenna adjustment device, characterized in that: The device includes a mounting plate (10), adjusting bolts (20), a flexible component (30), and a hanging net (40). The mounting plate (10) is evenly provided with adjusting bolts (20). The top of the adjusting bolts (20) is connected to the flexible component (30). The adjustment bolts (20) can be rotated to adjust the overall deformation of the flexible component (30). The top of the flexible component (30) is provided with a hanging net (40), and an antenna is connected to the hanging net (40). The hanging net (40) includes multiple perforated rods (41) and multiple U-shaped rods (42), which are interconnected to form the shape of the covering flexible part (30); An antenna fixing component (70) is provided between the mounting mesh (40) and the antenna. The antenna fastener (70) includes an S-shaped clip (71), a positioning bolt (72), an abutment plate (73), and a connecting nut (74). The S-shaped clip (71) is provided with a positioning bolt (72) that passes through two horizontal plates. The positioning bolt (72) is rotatably connected to an abutment plate (73) at the inner end of the S-shaped clip (71). The positioning bolt (72) is provided with a connecting nut (74) at the outer side of the S-shaped clip (71).
2. The antenna multi-angle adjustment device according to claim 1, characterized in that: The flexible component (30) is configured as a flexible plate structure, and the hanging mesh (40) and the flexible component (30) are fixed together by bolts.
3. The antenna multi-angle adjustment device according to claim 1, characterized in that: The flexible component (30) is configured as a mesh structure, and the hanging mesh component (40) and the flexible component (30) are connected by electric welding.
4. The antenna multi-angle adjustment device according to claim 1, characterized in that: The bottom of the mounting plate (10) is provided with a driving component that drives it to rotate. The driving component includes a motor (50) and a rotating connecting shaft (51). The rotating connecting shaft (51) is connected to the motor (50) and the top of the rotating connecting shaft (51) is fixedly connected to the mounting plate (10).
5. The antenna multi-angle adjustment device according to claim 4, characterized in that: The driving component is located at the bottom center of the mounting plate (10). A rotating support (60) supporting the mounting plate (10) is sleeved on the rotating connecting shaft (51). The rotating support (60) includes a supporting diagonal rod (61) and a fixing ring (62). The fixing ring (62) is sleeved on the rotating connecting shaft (51). Multiple supporting diagonal rods (61) connecting the mounting plate (10) are evenly fixed on the outer wall of the fixing ring (62).
6. The antenna multi-angle adjustment device according to claim 4, characterized in that: The driving component is located at the bottom center of one side of the mounting plate (10), and a connecting rod (63) is fixed between the mounting plate (10) and the rotating connecting shaft (51). The mounting plate (10) rotates around the rotating connecting shaft (51).
7. The antenna multi-angle adjustment device according to claim 1, characterized in that: A rotating catch (21) is provided between the adjusting bolt (20) and the flexible part (30).
8. A method for adjusting a multi-angle antenna adjustment device, wherein the method applies a multi-angle antenna adjustment device as described in any one of claims 1-7, characterized in that: Includes the following steps: S1. Adjustment of the shape of the flexible component (30): Rotate the adjusting bolt (20) on the mounting plate (10) to drive the flexible component (30) to deform until the flexible component (30) can make large-area contact with the antenna; S2, Antenna fixed installation: The antenna is set on the mounting mesh (40), and the position between the mounting mesh (40) and the antenna is fixed by the antenna fixing part (70); S3, Antenna Angle Adjustment: The mounting plate (10) and the components on the mounting plate (10) are rotated by the drive component. The mounting plate (10) and the components on the mounting plate (10) rotate around the rotating connecting shaft (51) on the drive component until the antenna is adjusted to the appropriate position.
Citation Information
Patent Citations
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