Mobile communication signal tower
By designing the flat and side seat structure of the mobile communication signal tower, combined with the lift plate and motor-driven rotating shaft and arc antenna adjustment, the difficulties of traditional signal tower deployment and maintenance in remote areas and in emergencies are solved, and the effect of rapid deployment and stable signal coverage is achieved.
Patent Information
- Application Number
- CN202510193977.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2025-05-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional fixed communication signal towers are difficult to quickly deploy and maintain in remote areas, temporary activity places and emergencies, resulting in insufficient signal coverage or interruption, affecting communication needs.
A mobile communication signal tower is designed, adopting a flat and side seat structure, providing a stable ground fixation through pins and lifting plates, which facilitates movement and rapid deployment, and adjusts the shaft and arc antenna through the motor drive to optimize signal reception and transmission.
It realizes the rapid deployment and stable fixation of mobile communication signal towers, ensures the continuity and efficiency of signal coverage, and is suitable for communication needs in remote areas and in emergencies.
Smart Images

Figure CN119933436A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of communications, and more particularly to a mobile communication signal tower. Background Art
[0002] In today's highly information-based era, mobile communication technology has become an indispensable part of people's lives and social development. As the key infrastructure of mobile communication networks, communication signal towers are responsible for transmitting and receiving signals, and their performance directly affects the quality of communication. Although traditional fixed communication signal towers have met the communication needs of most areas to a certain extent, they have many limitations. On the one hand, in remote areas and temporary activity venues, due to factors such as complex geographical environment and long construction period, fixed signal towers are difficult to deploy quickly, resulting in insufficient or missing signal coverage, which seriously affects the communication needs of local residents and related staff. On the other hand, when encountering emergencies, fixed signal towers may be damaged, and the repair work often takes a long time, and communication cannot be restored in time, which will cause great inconvenience in key scenarios such as emergency rescue. Summary of the invention
[0003] In order to overcome the deficiencies of the prior art, the present invention provides a mobile communication signal tower, which has the beneficial effect of being easy to move and stably fixing the signal tower on the ground after being moved.
[0004] The technical solution adopted by the present invention to solve the technical problem is:
[0005] A mobile communication signal tower comprises a flat base, wherein pins are fixed at the four corners of the lower side of the flat base, a plurality of lifting plates are arranged on the lower side of the flat base, and each lifting plate is slidably connected to two round rods, a retaining ring is fixed to the lower end of the round rod, and the upper end of the round rod is fixed to the lower side of the flat base, and a compression spring is sleeved on the round rod, and the compression spring is located on the upper side of the lifting plate.
[0006] Side seats are fixed on the left and right sides of the flat seat, two straight grooves are arranged on the side seats, a fixed shaft is fixed in the middle of the side seat, the fixed shaft passes through the two straight grooves, a pin is arranged at each straight groove, a strip groove is arranged on the upper part of the pin, and the fixed shaft passes through the strip groove.
[0007] Circular rings are fixed at the four corners of the upper side of the flat seat, four legs are fixed on the circular seat, a circular seat is fixed at the lower end of each leg, and the four circular seats are respectively inserted on the four circular rings.
[0008] The front and rear sides of the flat seat are both connected with L-shaped plates through screws, and the L-shaped plates block the upper side of the round seat on the corresponding side. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] The present invention is further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0010] Figure 1 A schematic diagram of the structure of a mobile communication signal tower Figure 1 ;
[0011] Figure 2 A schematic diagram of the structure of a mobile communication signal tower Figure 2 ;
[0012] Figure 3 A schematic diagram of the structure of a mobile communication signal tower Figure 3 ;
[0013] Figure 4 Schematic diagram of the flat seat and side seat structure Figure 1 ;
[0014] Figure 5 Schematic diagram of the flat seat and side seat structure Figure 2 ;
[0015] Figure 6 It is a structural schematic diagram of the round seat;
[0016] Figure 7 The structure of the top seat Figure 1 ;
[0017] Figure 8 The structure of the top seat Figure 2 ;
[0018] In the figure: flat seat 101; L-shaped plate 102; circular ring 103; pin 104; lifting plate 105; round rod 106; retaining ring 107;
[0019] Side seat 201; pin 202; fixed shaft 203; strip groove 204; straight groove 205;
[0020] Round seat 301; leg 302; rotating shaft 303; axial edge 304; round seat 305; motor 1 306; bottom frame 307; telescopic rod 1 308; supporting ring 309; annular edge 310; groove 311; round tube 312;
[0021] Top base 401; flat antenna 402; short shaft 403; bracket 404; arc antenna 405; horizontal groove 406; telescopic rod 407; motor 408; motor base 409; T-shaped frame 410; oblique rod 411; collar 412. DETAILED DESCRIPTION
[0022] like Figure 4-5 As shown, this example can achieve the effect of providing a shock absorbing effect for the flat seat 101 and the components on the upper side of the flat seat 101 .
[0023] The mobile communication signal tower includes a flat base 101, and pins 104 are welded at the four corners of the lower side of the flat base 101. A plurality of lifting plates 105 are arranged on the lower side of the flat base 101. Two round rods 106 are slidably connected to each lifting plate 105. A retaining ring 107 is welded at the lower end of the round rod 106. The upper end of the round rod 106 is welded to the lower side of the flat base 101. A compression spring is sleeved on the round rod 106. The compression spring is located on the upper side of the lifting plate 105. The four pins 104 can be inserted into the ground, and then the flat base 101 is set on the ground. As the four pins 104 are inserted into the ground, the plurality of round rods 106 will also be inserted into the ground. At this time, the plurality of lifting plates 105 are in contact with the ground. The lifting plates 105 are in contact with the ground due to the elastic force of the springs, thereby providing a shock-absorbing effect for the flat base 101 and the components on the upper side of the flat base 101.
[0024] like Figure 4-5 As shown, this example can achieve the effect of making the flat seat 101 more stable when placed on the ground.
[0025] Since side seats 201 are welded on both sides of the flat seat 101, two straight grooves 205 are arranged on the side seats 201, and a fixed shaft 203 is welded in the middle of the side seat 201, and the fixed shaft 203 passes through the two straight grooves 205, and a pin 202 is arranged at each straight groove 205, and a strip groove 204 is arranged on the upper part of the pin 202, and the fixed shaft 203 passes through the strip groove 204, and the pin 202 can be rotated on the fixed shaft 203 to an inclined state, and then the pin 202 is nailed into the ground in an inclined state, and different pins 202 have different inclination directions, so that the flat seat 101 is set on the ground more stably.
[0026] like Figure 4-6 As shown, this example can achieve the effect of arranging the round seat 301 and the four legs 302 on the upper side of the flat seat 101 .
[0027] Since circular rings 103 are welded at the four corners of the upper side of the flat seat 101, four legs 302 are welded on the circular seat 301, and a circular seat 305 is welded at the lower end of each leg 302. The four circular seats 305 are respectively inserted into the four circular rings 103. Through the connection between the circular seats 305 and the circular rings 103, the circular seat 301 and the four legs 302 are arranged on the upper side of the flat seat 101.
[0028] like Figure 4-6 As shown, this example can achieve the effect of preventing the round seat 305 from separating from the ring 103.
[0029] Since the front and rear sides of the flat seat 101 are both connected with L-shaped plates 102 by screws, the L-shaped plates 102 block the upper side of the round seat 305 on the corresponding side, and the L-shaped plates 102 prevent the round seat 305 from detaching from the ring 103.
[0030] like Figure 6 As shown, this example can achieve the effect of driving the rotating shaft 303 and the axial edge 304 to rotate.
[0031] Since the bottom ends of the four legs 302 are welded with a base frame 307, the base frame 307 is connected to a motor 1 306 by screws, the output shaft of the motor 1 306 is connected to a rotating shaft 303, and the rotating shaft 303 is provided with an axial ridge 304. The base frame 307 plays a role of reinforcement at the bottom of the four legs 302, and the motor 1 306 can drive the rotating shaft 303 and the axial ridge 304 to rotate.
[0032] like Figure 6 As shown, this example can achieve the effect that the round tube 312 can be raised, lowered and rotated on the round seat 301.
[0033] Since the central gap of the round seat 301 is connected with the round tube 312, and the round tube 312 is slidably connected to the rotating shaft 303 and the axial edge 304, the round tube 312 can be raised and lowered and rotated on the round seat 301, and the rotating shaft 303 and the axial edge 304 can drive the round tube 312 to rotate when they rotate.
[0034] like Figure 6 As shown, this example can achieve the effect of driving the annular edge 310 and the circular tube 312 to rise and fall.
[0035] Since an annular edge 310 is welded to the lower end of the circular tube 312, a telescopic rod 308 is connected to the base frame 307 by screws, and the movable end of the telescopic rod 308 is connected to a supporting ring 309 by screws, and grooves 311 are welded to the left and right ends of the upper side of the supporting ring 309, and the two grooves 311 are respectively inserted on both sides of the annular edge 310. When the telescopic rod 308 is extended or retracted, the supporting ring 309 is driven to rise and fall, and then the two grooves 311 are driven to rise and fall, and then the annular edge 310 and the circular tube 312 are driven to rise and fall, and the rotation of the circular tube 312 is not affected.
[0036] like Figure 6-8 As shown, this example can achieve the effect of adjusting the positions of multiple flat antennas 402.
[0037] Since a collar 412 is sleeved on the upper end of the circular tube 312, a fastening screw is threadedly connected to the collar 412, and the fastening screw is pressed on the circular tube 312, a plurality of inclined rods 411 are welded on the upper side of the collar 412, a top seat 401 is welded on the upper side of the plurality of inclined rods 411, and a plurality of flat antennas 402 are arranged on the edge of the top seat 401, when the circular tube 312 is lifted, lowered and rotated, the top seat 401 and the plurality of flat antennas 402 can be driven to be lifted, lowered and rotated, and the positions of the plurality of flat antennas 402 can be adjusted, so that signals can be received and sent through the plurality of flat antennas 402.
[0038] like Figure 7-8As shown, this example can achieve the effect of rotating and adjusting the position of the arc antenna 405 to better receive and send signals.
[0039] Since the upper side of the top seat 401 is connected to a T-shaped frame 410 by screws, a transverse groove 406 is provided on the T-shaped frame 410, and a short shaft 403 is provided at both ends of the left and right sides of the transverse groove 406 in the front-to-back direction, a bracket 404 is fixed to the front of the short shaft 403, and an arc antenna 405 is connected to the bracket 404, and the left and right ends of the T-shaped frame 410 are connected to telescopic rods 407 by screws, and the movable ends of the two telescopic rods 407 are connected to motor seats 409 by screws, and each motor seat 409 is connected to a motor 408 by screws, and the two motors are connected to the motor seat 409 by screws. The output shafts of the second machine 408 are respectively connected to the two short shafts 403. When the two telescopic rods 407 are extended or retracted, they can respectively drive the two motor seats 409 to move left and right, thereby driving the two motors 408 to move left and right, thereby driving the two brackets 404 and the two arc antennas 405 to move left and right, and adjusting the left and right positions of the two arc antennas 405. The second motor 408 can drive the short shaft 403 to rotate, thereby driving the bracket 404 and the arc antenna 405 to rotate through the short shaft 403, and then rotating and adjusting the position of the arc antenna 405 to better receive and send signals.
Claims
1. A mobile communication signal tower, comprising a flat base (101), characterized in that: Insert pins (104) are fixed at the four corners of the lower side of the flat seat (101), and a plurality of lifting plates (105) are arranged on the lower side of the flat seat (101). Two round rods (106) are slidably connected to each lifting plate (105), a retaining ring (107) is fixed to the lower end of the round rod (106), and the upper end of the round rod (106) is fixed to the lower side of the flat seat (101). A compression spring is sleeved on the round rod (106), and the compression spring is located on the upper side of the lifting plate (105).
2. A mobile communication signal tower according to claim 1, characterized in that: Side seats (201) are fixed on both left and right sides of the flat seat (101), two straight grooves (205) are arranged on the side seat (201), a fixed shaft (203) is fixed in the middle of the side seat (201), the fixed shaft (203) passes through the two straight grooves (205), each straight groove (205) is provided with a pin (202), a strip groove (204) is arranged on the upper part of the pin (202), and the fixed shaft (203) passes through the strip groove (204).
3. A mobile communication signal tower according to claim 2, characterized in that: Circular rings (103) are fixed at the four corners of the upper side of the flat seat (101), four legs (302) are fixed on the circular seat (301), a circular seat (305) is fixed at the lower end of each leg (302), and the four circular seats (305) are respectively inserted into the four circular rings (103).
4. A mobile communication signal tower according to claim 3, characterized in that: The front and rear sides of the flat seat (101) are both connected with L-shaped plates (102) by screws, and the L-shaped plates (102) block the upper side of the round seat (305) on the corresponding side.
5. A mobile communication signal tower according to claim 4, characterized in that: A base frame (307) is fixed at the lower ends of the four legs (302), a motor 1 (306) is fixed on the base frame (307), a rotating shaft (303) is fixed on the output shaft of the motor 1 (306), and an axial ridge (304) is provided on the rotating shaft (303).
6. A mobile communication signal tower according to claim 5, characterized in that: The central gap of the round seat (301) is fitted with a round tube (312), and the round tube (312) is slidably connected to the rotating shaft (303) and the axial edge (304).
7. A mobile communication signal tower according to claim 6, characterized in that: The lower end of the circular tube (312) is fixed with an annular edge (310), the bottom frame (307) is fixed with a telescopic rod (308), the movable end of the telescopic rod (308) is fixed with a supporting ring (309), the left and right ends of the upper side of the supporting ring (309) are fixed with grooves (311), and the two grooves (311) are respectively inserted into the two sides of the annular edge (310).
8. A mobile communication signal tower according to claim 7, characterized in that: The upper end of the circular tube (312) is sleeved with a collar (412), a fastening screw is threadedly connected to the collar (412), the fastening screw is pressed on the circular tube (312), a plurality of inclined rods (411) are fixed on the upper side of the collar (412), a top seat (401) is fixed on the upper side of the plurality of inclined rods (411), and a plurality of flat antennas (402) are arranged on the edge of the top seat (401).
9. A mobile communication signal tower according to claim 8, characterized in that: The upper side of the top seat (401) is connected to a T-shaped frame (410) by screws, and a transverse groove (406) is provided on the T-shaped frame (410). A short axis (403) is provided at both left and right ends of the transverse groove (406) in the front-to-back direction, and a bracket (404) is fixed to the front of the short axis (403), and an arc antenna (405) is fixed to the bracket (404).
10. A mobile communication signal tower according to claim 9, characterized in that: The left and right ends of the T-shaped frame (410) are both fixed with telescopic rods (407), the movable ends of the two telescopic rods (407) are both fixed with motor seats (409), each motor seat (409) is fixed with a motor (408), and the output shafts of the two motors (408) are respectively connected to the two short shafts (403).