A 5G communication antenna test stand

By designing protection and cleaning parts on the 5G communication antenna test stand, the motor drive threaded rod and telescopic bottle jet pipe can be used to protect and clean the antenna body, solving the problems of bad weather and debris, extending the service life and improving the use effect.

CN118431713BActive Publication Date: 2025-06-13DINGJIAN (SHENZHEN) COMM TECH CO LTD
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Patent Information

Application Number
CN202410467456.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-12
Publication Date
2025-06-13
Estimated Expiration
2043-10-12

AI Technical Summary

Technical Problem

The existing 5G communication antenna test stand is likely to cause damage to the antenna body in bad weather, and is easily contaminated with dust and bird droppings during use, which affects the use effect and is inconvenient to clean.

Method used

A 5G communication antenna test rack was designed, equipped with a protective part and a cleaning part. The upward movement of the antenna body is achieved by driving the threaded rod by the motor, hidden in the protective cover for protection; the antenna body is cleaned by using telescopic bottles and jet pipes.

Benefits of technology

Effectively protect the antenna body in bad weather to extend its service life; at the same time, clean the antenna body during normal use and improve the use effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a 5G communication antenna test stand, which relates to the technical field of antenna test stands and includes: a base; a lifting part is installed on the base. When the antenna body is hidden inside the protective cover, at this time, one end of the upper part of the third mounting block is in elastic contact with the bottom end face of the telescopic bottle. At this time, the telescopic bottle is in a telescopic state, and the air injection pipe is in a state of jetting air. Then, by squeezing the telescopic bottle, the air injection pipe starts to jet air. At this time, the gas ejected from the air injection pipe can clean the antenna body, ensuring the use effect of the antenna body, and solving the problem that when there are bad weather conditions during testing, the antenna body is easily damaged, which will affect the test results at this time and also increase the maintenance cost; after being used for a period of time, sundries such as dust and bird droppings will adhere to the antenna body, affecting the use effect of the antenna body, and the position of the antenna body is relatively high, making it inconvenient to clean.
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Description

Technical Field

[0001] The present invention relates to the technical field of antenna test stands, and particularly relates to a 5G communication antenna test stand. Background Art

[0002] 5G is the full name of the fifth-generation mobile phone mobile communication standard, also known as the fifth-generation mobile communication technology. During the laying process of 5G, signal transmission tests need to be carried out. Only after passing the tests stably can the usage effect be guaranteed.

[0003] However, for the current 5G communication antenna test stands, when there are bad weather conditions during testing, the antenna body is easily damaged, which will affect the test results at this time and also increase the maintenance cost; after being used for a period of time, sundries such as dust and bird droppings will adhere to the antenna body, affecting the usage effect of the antenna body, and the position of the antenna body is relatively high, making it inconvenient to clean. Summary of the Invention

[0004] In view of this, the present invention provides a 5G communication antenna test stand, which has a protection part and a cleaning part. Through the settings of the protection part and the cleaning part, it can achieve protection in combination with the influence of the weather, and can clean the antenna body while protecting the antenna body. Specifically as follows: In bad weather, control the first motor at this time. The first motor drives the threaded rod to rotate, and then through the drive of the threaded rod, the mounting plate and the antenna body can be moved upward. At this time, the antenna body will be hidden in the protective cover. At this time, the protective cover can achieve the protection of the antenna body in bad weather and ensure the service life of the antenna body;

[0005] During the normal use process, the upward movement space of the protective cover for the antenna body has an impact. At this time, control the third motor to rotate. At this time, through the rotation of the third motor, the angle adjustment of the second mounting block and the protective cover can be achieved. When the angle of the protective cover is adjusted, the impact of the protective cover on the height adjustment of the antenna body will be reduced at this time;

[0006] When the antenna body is hidden inside the protective cover, one end of the upper part of the third mounting block is in elastic contact with the bottom end surface of the telescopic bottle. At this time, the telescopic bottle is in a telescopic state, and the air jet pipe is in a jet state. Then, by squeezing the telescopic bottle, the air jet pipe starts to jet. At this time, the gas ejected from the air jet pipe can clean the antenna body and ensure the usage effect of the antenna body.

[0007] The purpose and effect of a 5G communication antenna test stand of the present invention are achieved by the following specific technical means:

[0008] The present invention provides a 5G communication antenna test stand, which specifically includes: a base; a lifting part is installed on the base.

[0009] Optionally, the lifting part is composed of a sliding rod, a first mounting block, a mounting plate, a first motor, and a threaded rod. The sliding rod is fixed on the base. One end of the upper part of the sliding rod is welded with a first mounting block. A mounting plate is slidably connected to the sliding rod, and an antenna body is mounted on the mounting plate.

[0010] The first mounting block is mounted with a first motor. A threaded rod is mounted on the rotating shaft of the first motor. The threaded rod is threadedly connected to the mounting plate. One end of the lower part of the threaded rod is rotatably connected to the base. When it is necessary to adjust the height of the antenna body for testing, at this time, control the first motor to rotate. By rotating the first motor, the height of the mounting plate can be adjusted, and at the same time, the height of the antenna body is adjusted. At this time, the test range is expanded.

[0011] Optionally, a signal network part is mounted on the mounting plate; the signal network part is composed of a worm gear, a mounting rod, a connecting block, a support rod, a moving block, a signal network arm, an electric telescopic rod, a worm, and a second motor. The worm gear is rotatably connected to the mounting plate. A mounting rod is welded on the worm gear. A connecting block is welded on the mounting rod. The connecting block is a hexagonal structure. Six support rods are welded on the connecting block in a circumferential array.

[0012] A moving block is slidably connected to the mounting rod. Six signal network arms are rotatably connected to the moving block in a circumferential array. The signal network arms are electrically connected to the antenna body. The six support rods are slidably connected to the six signal network arms, and the support rods and the six signal network arms cannot be separated.

[0013] Optionally, an electric telescopic rod is mounted on the mounting rod. The left end of the electric telescopic rod is fixed on the moving block. When the electric telescopic rod expands and contracts, the moving block moves left and right.

[0014] Optionally, a second motor is fixed on the mounting plate. A worm is mounted on the rotating shaft of the second motor. The worm is meshed with the worm gear.

[0015] When it is necessary to adjust the signal network arm, on the one hand, control the second motor to rotate. At this time, the second motor drives the worm to rotate. At this time, the worm drives the worm gear to rotate, and then the angle adjustment of the mounting rod and the signal network arm is realized. When it is necessary to expand the unfolding angle of the signal network arm, control the electric telescopic rod to extend. By extending the electric telescopic rod, the signal network arm can be unfolded. At this time, expanding the unfolding angle of the signal network arm improves the signal reception range of the signal network arm, and at this time, the signal reception range of the antenna body is also expanded. The practicability and adjustability are high.

[0016] Optionally, a protection part is mounted on the first mounting block.

[0017] The protection part is composed of a mounting base, a third motor, a second mounting block and a protective cover. The mounting base is welded to the first mounting block. The third motor is installed on the mounting base. A second mounting block is installed on the rotating shaft of the third motor. A protective cover in the shape of a rectangular box is installed on the bottom end surface of the second mounting block. The protective cover is aligned with the antenna body.

[0018] Optionally, when the mounting plate moves upward by 5m, the antenna body is hidden inside the protective cover. At this time, the antenna body is in an occluded state.

[0019] In bad weather, control the first motor at this time. The first motor drives the threaded rod to rotate. Then, through the drive of the threaded rod, the upward movement of the mounting plate and the antenna body can be realized. At this time, the antenna body will be hidden inside the protective cover. At this time, the protective cover can protect the antenna body in bad weather and ensure the service life of the antenna body.

[0020] During normal use, the protective cover affects the upward movement space of the antenna body. Control the third motor to rotate at this time. Through the rotation of the third motor, the angle adjustment of the second mounting block and the protective cover can be realized. When the angle of the protective cover is adjusted, the protective cover will reduce the influence on the height adjustment of the antenna body.

[0021] Optionally, a cleaning part is installed on the first mounting block.

[0022] The cleaning part is composed of a telescopic bottle, a jet pipe and a third mounting block. The telescopic bottle is fixed to the bottom end surface of the first mounting block. A jet pipe is connected to the telescopic bottle. The jet pipe is located inside the protective cover.

[0023] Optionally, the jet pipe is provided with two air outlet ends, which are respectively located on the left and right sides of the antenna body.

[0024] Optionally, a third mounting block is welded to the top end surface of the mounting plate. The third mounting block is aligned with the telescopic bottle. When the antenna body is hidden inside the protective cover, one end above the third mounting block is in elastic contact with the bottom end surface of the telescopic bottle. At this time, the telescopic bottle is in a telescopic state and the jet pipe is in a jet state. When the antenna body is hidden inside the protective cover, one end above the third mounting block is in elastic contact with the bottom end surface of the telescopic bottle. At this time, the telescopic bottle is in a telescopic state and the jet pipe is in a jet state. Then, by squeezing the telescopic bottle, the jet pipe starts to jet. The gas ejected from the jet pipe can clean the antenna body and ensure the use effect of the antenna body.

[0025] Optionally, the base is in the shape of a circular barrel. The base is a bearing structure for soil and stones. During use, soil or stones can be filled in the base. At this time, the stability of the base can be improved, ensuring the stability of the device and high safety.

[0026] During use, it is convenient to adjust the height of the antenna body and various angles of the signal network arm, expanding the test range, as follows:

[0027] When it is necessary to adjust the height of the antenna body for testing, at this time, control the first motor to rotate. By the rotation of the first motor, the height adjustment of the mounting plate can be realized, and at the same time, the height adjustment of the antenna body is realized, expanding the test range at this time;

[0028] When it is necessary to adjust the signal network arm, on the one hand, control the second motor to rotate. At this time, the second motor drives the worm to rotate. At this time, the worm drives the worm wheel to rotate, thereby realizing the angle adjustment of the mounting rod and the signal network arm. When it is necessary to expand the deployment angle of the signal network arm, control the electric telescopic rod to extend. Through the extension of the electric telescopic rod, the deployment of the signal network arm can be realized. At this time, expanding the deployment angle of the signal network arm improves the signal reception range of the signal network arm, and at this time, the signal reception range of the antenna body is also expanded, with high practicability and adjustability.

[0029] It can achieve protection in combination with the influence of the weather, and can clean the antenna body while protecting the antenna body, as follows: In bad weather, control the first motor at this time. The first motor drives the threaded rod to rotate, and then through the drive of the threaded rod, the upward movement of the mounting plate and the antenna body can be realized. At this time, the antenna body will be hidden in the protective cover. At this time, the protective cover can achieve the protection of the antenna body in bad weather, ensuring the service life of the antenna body; During normal use, the upward movement space of the antenna body is affected by the protective cover. At this time, control the third motor to rotate. At this time, through the rotation of the third motor, the angle adjustment of the second mounting block and the protective cover can be realized. When the angle of the protective cover is adjusted, the influence of the protective cover on the height adjustment of the antenna body will be reduced; When the antenna body is hidden inside the protective cover, one end of the upper part of the third mounting block is in elastic contact with the bottom end face of the telescopic bottle. At this time, the telescopic bottle is in a telescopic state, and the air jet pipe is in a jet state. Then, by squeezing the telescopic bottle, the air jet pipe starts to jet. At this time, the gas ejected from the air jet pipe can clean the antenna body, ensuring the use effect of the antenna body. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.

[0031] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0032] In the drawings:

[0033] Figure 1 is the front view structural schematic diagram of the 5G communication antenna test stand of the present invention.

[0034] Figure 2 It is an axonometric structural schematic diagram of the 5G communication antenna test stand of the present invention.

[0035] Figure 3 It is an axonometric structural schematic diagram of the 5G communication antenna test stand after partial excision.

[0036] Figure 4 It is an axonometric structural schematic diagram of the signal network part of the present invention.

[0037] Figure 5 is the present invention Figure 4 The axonometric structural schematic diagram after rotation.

[0038] Figure 6 is the present invention Figure 5 The enlarged structural schematic diagram at position A.

[0039] Figure 7 It is an axonometric structural schematic diagram of the protection part and the cleaning part of the present invention.

[0040] Figure 8 is the present invention Figure 7 The axonometric split structural schematic diagram.

[0041] List of reference numerals

[0042] 1. Base; 2. Lifting part; 201. Sliding rod; 202. First mounting block; 203. Mounting plate; 204. First motor; 205. Threaded rod; 3. Antenna body; 4. Signal network part; 401. Worm gear; 402. Mounting rod; 403. Connecting block; 404. Support rod; 405. Moving block; 406. Signal network arm; 407. Electric telescopic rod; 408. Worm; 409. Second motor; 5. Protection part; 501. Mounting seat; 502. Third motor; 503. Second mounting block; 504. Protective cover; 6. Cleaning part; 601. Telescopic bottle; 602. Jet pipe; 603. Third mounting block. Detailed implementation manners

[0043] In order to make the objectives, solutions and advantages of the technical solutions of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of the specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the ordinary meanings in the art. The same reference numerals in the drawings represent the same components.

[0044] Please refer to Figures 1 to 8 :

[0045] The present invention provides a 5G communication antenna test stand, including: base 1;

[0046] The lifting part 2 is installed on the base 1.

[0047] Among them, the lifting part 2 is composed of a sliding rod 201, a first mounting block 202, a mounting plate 203, a first motor 204 and a threaded rod 205. The sliding rod 201 is fixed on the base 1. A first mounting block 202 is welded to one end above the sliding rod 201. A mounting plate 203 is slidably connected to the sliding rod 201. An antenna body 3 is installed on the mounting plate 203;

[0048] A first motor 204 is installed on the first mounting block 202. A threaded rod 205 is installed on the rotating shaft of the first motor 204. The threaded rod 205 is threadedly connected to the mounting plate 203. One end below the threaded rod 205 is rotatably connected to the base 1.

[0049] Among them, the base 1 is in the shape of a circular barrel. The base 1 is a bearing structure for soil and stones. During use, soil or stones can be filled in the base 1. At this time, the stability of the base 1 can be improved, ensuring the stability of the device and high safety.

[0050] On the basis of Embodiment 1, as Figure 3 and Figure 4 shown, it further includes: a signal network part 4, and the signal network part 4 is installed on the mounting plate 203;

[0051] The signal network part 4 is composed of a worm gear 401, a mounting rod 402, a connecting block 403, a support rod 404, a moving block 405, a signal network arm 406, an electric telescopic rod 407, a worm 408 and a second motor 409. The worm gear 401 is rotatably connected to the mounting plate 203. A mounting rod 402 is welded to the worm gear 401. A connecting block 403 is welded to the mounting rod 402. The connecting block 403 is in a hexagonal structure. Six support rods 404 are welded to the connecting block 403 in an annular array;

[0052] A moving block 405 is slidably connected to the mounting rod 402. Six signal network arms 406 are rotatably connected to the moving block 405 in an annular array. The signal network arms 406 are electrically connected to the antenna body 3. The six support rods 404 are slidably connected to the six signal network arms 406, and the support rods 404 and the six signal network arms 406 cannot be separated.

[0053] Among them, an electric telescopic rod 407 is installed on the mounting rod 402. The left end of the electric telescopic rod 407 is fixed to the moving block 405. When the electric telescopic rod 407 expands and contracts, the moving block 405 moves left and right.

[0054] Among them, a second motor 409 is fixed on the mounting plate 203. A worm 408 is installed on the rotating shaft of the second motor 409. The worm 408 meshes with the worm gear 401.

[0055] Based on Embodiment 2, as Figure 3 and Figure 7 shown, it further includes: a protection part 5 and a cleaning part 6. The protection part 5 is installed on the first mounting block 202;

[0056] The protection part 5 is composed of a mounting seat 501, a third motor 502, a second mounting block 503 and a protective cover 504. The mounting seat 501 is welded to the first mounting block 202. The third motor 502 is installed on the mounting seat 501. A second mounting block 503 is installed on the rotating shaft of the third motor 502. A protective cover 504 in the shape of a rectangular box is installed on the bottom end face of the second mounting block 503. The protective cover 504 is aligned with the antenna body 3.

[0057] Among them, when the mounting plate 203 moves upward by 5 m, the antenna body 3 is hidden inside the protective cover 504. At this time, the antenna body 3 is in an occluded state.

[0058] Among them, the cleaning part 6 is installed on the first mounting block 202;

[0059] The cleaning part 6 is composed of a telescopic bottle 601, a jet pipe 602 and a third mounting block 603. The telescopic bottle 601 is fixed to the bottom end face of the first mounting block 202. The jet pipe 602 is connected to the telescopic bottle 601. The jet pipe 602 is located inside the protective cover 504.

[0060] Among them, the jet pipe 602 is provided with two air outlet ends, and the two air outlet ends are respectively located on the left and right sides of the antenna body 3.

[0061] Among them, a third mounting block 603 is welded to the top end face of the mounting plate 203. The third mounting block 603 is aligned with the telescopic bottle 601. When the antenna body 3 is hidden inside the protective cover 504, at this time, the upper end of the third mounting block 603 is in elastic contact with the bottom end face of the telescopic bottle 601. At this time, the telescopic bottle 601 is in a telescopic state, and at this time, the jet pipe 602 is in a jet state.

[0062] The specific usage method and function of this embodiment:

[0063] When it is necessary to adjust the height of the antenna body 3 for testing, at this time, control the first motor 204 to rotate. By rotating the first motor 204, the height adjustment of the mounting plate 203 can be realized, and at the same time, the height adjustment of the antenna body 3 is also realized. At this time, the test range is expanded;

[0064] When the adjustment of the signal network arm 406 is required, on the one hand, control the second motor 409 to rotate. At this time, the second motor 409 drives the worm 408 to rotate. At this time, the worm 408 drives the worm wheel 401 to rotate, thereby realizing the angle adjustment of the mounting rod 402 and the signal network arm 406. When the expansion angle of the signal network arm 406 needs to be increased, control the electric telescopic rod 407 to extend. Through the extension of the electric telescopic rod 407, the expansion of the signal network arm 406 can be realized. At this time, increasing the expansion angle of the signal network arm 406 also increases the signal reception range of the signal network arm 406. At this time, the signal reception range of the antenna body 3 is also expanded, with high practicability and adjustability.

[0065] In bad weather, control the first motor 204 at this time. The first motor 204 drives the threaded rod 205 to rotate. Then, through the drive of the threaded rod 205, the upward movement of the mounting plate 203 and the antenna body 3 can be realized. At this time, the antenna body 3 will be hidden in the protective cover 504. At this time, the protection of the antenna body 3 in bad weather can be realized through the protective cover 504, ensuring the service life of the antenna body 3.

[0066] During the normal use process, the upward movement space of the antenna body 3 is affected by the protective cover 504. At this time, control the third motor 502 to rotate. At this time, through the rotation of the third motor 502, the angle adjustment of the second mounting block 503 and the protective cover 504 can be realized. After the angle of the protective cover 504 is adjusted, the influence of the protective cover 504 on the height adjustment of the antenna body 3 will be reduced at this time.

[0067] When the antenna body 3 is hidden inside the protective cover 504, one end of the upper part of the third mounting block 603 is in elastic contact with the bottom end surface of the telescopic bottle 601. At this time, the telescopic bottle 601 is in a telescopic state, and the air spray pipe 602 is in a state of spraying gas. Then, by squeezing the telescopic bottle 601, the air spray pipe 602 starts to spray gas. At this time, the gas ejected from the air spray pipe 602 can clean the antenna body 3, ensuring the use effect of the antenna body 3.

[0068] During the use process, since the base 1 is in the shape of a circular barrel, and the base 1 is a load-bearing structure for soil and stones, soil or stones can be filled in the base 1 during the use process. At this time, the stability of the base 1 can be improved, ensuring the stability of the device and high safety.

Claims

1. A 5G communication antenna test stand, characterized in that, it includes: a base (1); a lifting part (2) is installed on the base (1); the lifting part (2) is composed of a sliding rod (201), a first mounting block (202), a mounting plate (203), a first motor (204) and a threaded rod (205). The sliding rod (201) is fixed on the base (1), and a first mounting block (202) is welded to one end above the sliding rod (201). A mounting plate (203) is slidably connected to the sliding rod (201), and an antenna body (3) is installed on the mounting plate (203). A first motor (204) is installed on the first mounting block (202), a threaded rod (205) is installed on the rotating shaft of the first motor (204), the threaded rod (205) is threadedly connected to the mounting plate (203), and the lower end of the threaded rod (205) is rotatably connected to the base (1); a signal network part (4) is installed on the mounting plate (203); the signal network part (4) is composed of a worm gear (401), a mounting rod (402), a connecting block (403), a support rod (404), a moving block (405), a signal network arm (406), an electric telescopic rod (407), a worm (408) and a second motor (409). The worm gear (401) is rotatably connected to the mounting plate (203), a mounting rod (402) is welded to the worm gear (401), a connecting block (403) is welded to the mounting rod (402), the connecting block (403) is a hexagonal structure, and six support rods (404) are welded to the connecting block (403) in an annular array; a moving block (405) is slidably connected to the mounting rod (402), six signal network arms (406) are rotatably connected to the moving block (405) in an annular array, the six support rods (404) are slidably connected to the six signal network arms (406), and the support rods (404) cannot be separated from the six signal network arms (406); an electric telescopic rod (407) is installed on the mounting rod (402), the left end of the electric telescopic rod (407) is fixed to the moving block (405), and when the electric telescopic rod (407) expands and contracts, the moving block (405) moves left and right; a second motor (409) is fixed on the mounting plate (203), a worm (408) is installed on the rotating shaft of the second motor (409), and the worm (408) meshes with the worm gear (401); a protection part (5) is installed on the first mounting block (202); the protection part (5) is composed of a mounting seat (501), a third motor (502), a second mounting block (503) and a protective cover (504). The mounting seat (501) is welded to the first mounting block (202), a third motor (502) is installed on the mounting seat (501), a second mounting block (503) is installed on the rotating shaft of the third motor (502), and a rectangular box-shaped protective cover (504) is installed on the bottom end surface of the second mounting block (503), and the protective cover (504) is aligned with the antenna body (3); A cleaning part (6) is installed on the first mounting block (202); The cleaning part (6) consists of a telescopic bottle (601), a jet pipe (602) and a third mounting block (603). The telescopic bottle (601) is fixed to the bottom end face of the first mounting block (202). A jet pipe (602) is connected to the telescopic bottle (601), and the jet pipe (602) is located inside the protective cover (504); A third mounting block (603) is welded to the top end face of the mounting plate (203). The third mounting block (603) is aligned with the telescopic bottle (601). When the antenna body (3) is hidden inside the protective cover (504), one end above the third mounting block (603) is in elastic contact with the bottom end face of the telescopic bottle (601) at this time. At this time, the telescopic bottle (601) is in a telescopic state, and the jet pipe (602) is in a jet state; The jet pipe (602) is provided with two air outlet ends, and the two air outlet ends are respectively located on the left and right sides of the antenna body (3).

2. The 5G communication antenna test stand according to claim 1, characterized in that: When the mounting plate (203) moves upward by 5 m, the antenna body (3) is hidden inside the protective cover (504), and at this time the antenna body (3) is in an occluded state.

3. The 5G communication antenna test stand according to claim 1, characterized in that: The base (1) is in the shape of a circular barrel, and the base (1) is a load-bearing structure for soil and stones.

Citation Information

Patent Citations

  • 5G communication antenna test frame

    CN112345804A

  • Use method of satellite communication antenna attitude adjusting device

    CN112448123A