CN112165736A - Communication network base station - Google Patents

Communication network base station Download PDF

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Publication number
CN112165736A
CN112165736A CN202010988066.1A CN202010988066A CN112165736A CN 112165736 A CN112165736 A CN 112165736A CN 202010988066 A CN202010988066 A CN 202010988066A CN 112165736 A CN112165736 A CN 112165736A
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CN
China
Prior art keywords
cavity
wall
antenna
block
base station
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Withdrawn
Application number
CN202010988066.1A
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Chinese (zh)
Inventor
洪小玲
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Jimi Guangzhou Technology Co ltd
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Jimi Guangzhou Technology Co ltd
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Priority to CN202010988066.1A priority Critical patent/CN112165736A/en
Publication of CN112165736A publication Critical patent/CN112165736A/en
Withdrawn legal-status Critical Current

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/08Access point devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B1/00Cleaning by methods involving the use of tools
    • B08B1/20Cleaning of moving articles, e.g. of moving webs or of objects on a conveyor
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q1/00Details of selecting apparatus or arrangements
    • H04Q1/02Constructional details
    • H04Q1/04Frames or mounting racks for selector switches; Accessories therefor, e.g. frame cover
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q1/00Details of selecting apparatus or arrangements
    • H04Q1/02Constructional details
    • H04Q1/11Protection against environment

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Health & Medical Sciences (AREA)
  • Toxicology (AREA)
  • Details Of Aerials (AREA)

Abstract

The invention discloses a communication network base station which comprises a base station, wherein a rain collecting groove with an upward opening is arranged on the end surface of the top of the base station, antenna cavities are arranged in the base station in a left-right through mode, baffle cavities which are symmetrical left and right and have a downward opening are arranged on the top wall in each antenna cavity, a transmission cavity is arranged on the top wall in each baffle cavity, a magnetic induction cavity is arranged on the top wall in each transmission cavity, and a signal cavity is arranged on the inner wall of the right side of each magnetic induction cavity; the base station antenna storage device is simple in structure and convenient and fast to operate, achieves automatic storage protection of the antenna in strong wind days, reduces damage to the base station antenna in severe weather, collects rainwater in rainy days, automatically finishes cleaning of the surface of the antenna when the antenna is stored, and reduces adverse effects of excessive dust on the surface of the antenna on signal transmission.

Description

Communication network base station
Technical Field
The invention relates to the field of communication correlation, in particular to a communication network base station.
Background
The base station, i.e. the public mobile communication base station, is a form of radio station, and refers to a radio transceiver station for information transmission between a mobile telephone terminal and a mobile communication switching center in a certain radio coverage area.
At the present stage, the reference antenna is fixedly installed, and in areas with strong wind days, such as remote mountain areas, the base station antenna is easily damaged in the strong wind days.
Disclosure of Invention
The technical problem to be solved by the invention is to provide a communication network base station, and the problem is solved.
The invention relates to a communication network base station, which comprises a base station, wherein a rain collecting groove with an upward opening is arranged on the top end surface of the base station, an antenna cavity is arranged in the base station in a left-right through manner, baffle plates with a left-right symmetry and a downward opening are arranged on the top wall in the antenna cavity, a transmission cavity is arranged on the top wall in the baffle plate cavity, a magnetic sensing cavity is arranged on the top wall in the transmission cavity, a signal cavity is arranged on the inner wall on the right side of the magnetic sensing cavity, a motor is fixedly arranged on the top wall in the transmission cavity, a spline shaft is connected on the bottom end surface of the motor in a power mode, a first transmission gear is matched on the spline shaft in a spline mode, a spline housing is fixedly arranged on the top end surface of the first transmission gear, a shifting sheet rotating groove with an opening far away from the center of, a shifting piece sliding groove with a forward opening is arranged on the inner wall of the rear side of the spline sleeve, a shifting piece which extends forwards into the shifting piece rotating groove and is connected with the shifting piece rotating groove in a sliding fit manner is arranged in the shifting piece sliding groove in a sliding manner, an electromagnetic spring fixedly connected with the top wall of the shifting piece sliding groove is fixedly arranged on the end surface of the top of the shifting piece, clamping block sliding grooves which are symmetrical up and down and are provided with forward openings are arranged on the inner wall of the rear side of the shifting piece sliding groove, a clamping block is arranged in the clamping block sliding groove in a sliding manner, a clamping block spring fixedly connected with the inner wall of the rear side of the clamping block sliding groove is fixedly arranged on the end surface of the rear side of the clamping block at the upper side, a first pull rope is fixedly connected on the end surface of the rear side of the clamping block at the lower side, baffle screw rods which are symmetrical left and right and extend downwards are rotatably arranged on the bottom wall, the transmission cavity is internally provided with a baffle screw rod, the baffle screw rod is arranged on the transmission cavity, and a third transmission gear matched with an inner meshing tooth socket in the first transmission gear is fixedly arranged on the main screw rod.
Furthermore, a baffle is arranged in the baffle cavity in a sliding manner, a small threaded shaft sleeve is fixedly arranged and arranged on the end face of one side of the baffle close to the center of the main screw rod, the baffle screw rod penetrates through the upper inner wall and the lower inner wall of the baffle cavity downwards and is connected with the upper inner wall and the lower inner wall in a rotating fit manner, the part of the baffle screw rod extending into the baffle cavity downwards penetrates through the small threaded shaft sleeve and is meshed with the small threaded shaft sleeve, a first trapezoidal compression block sliding groove with a forward opening is arranged on the inner wall of the rear side of the baffle cavity, a first trapezoidal compression block sliding groove is arranged in the first trapezoidal compression block sliding groove in a sliding manner, a first trapezoidal compression block spring fixedly connected with the inner wall of the rear side of the first trapezoidal compression block sliding groove is fixedly arranged on the end face of the rear side of the first trapezoidal compression block, the other end of the first trapezoidal compression block is fixedly connected with the top end face of the, the cleaning block cavity is internally provided with a cleaning block fixedly connected with the baffle in a sliding manner, and the top wall in the cleaning block cavity is communicated with a first pipeline.
Furthermore, the main screw rod penetrates through the upper inner wall and the lower inner wall of the antenna cavity downwards and is connected with the upper inner wall and the lower inner wall in a rotating fit manner, the main screw rod extends into the part of the antenna cavity and is vertically symmetrical, a vertically symmetrical large thread shaft sleeve is arranged in the antenna cavity in a sliding manner, the part of the main screw rod extending into the antenna cavity penetrates through the large thread shaft sleeve and is meshed with the large thread shaft sleeve, a horizontally symmetrical antenna is arranged in the antenna cavity in a sliding manner, a vertically symmetrical first hinge block is fixedly arranged on the end surface of one side of the center of the main screw rod close to the antenna, a horizontally symmetrical second hinge block is fixedly arranged on the left end surface and the right end surface of the large thread shaft sleeve, the second hinge block is hinged with the first hinge block through a hinge rod, a pressed block cavity with a downward opening is arranged on the top wall of the antenna cavity, a pressed block is arranged in the pressed block cavity in a sliding manner, and a pressed, fixedly connected with stay cord on the terminal surface of pressed piece left side, be equipped with the trapezoidal pressed piece spout of the preceding second of opening on the antenna chamber rear side inner wall, the trapezoidal pressed piece spout of second slides and is equipped with the trapezoidal pressed piece of second, the trapezoidal pressed piece rear side of second end face on the fixed be equipped with the trapezoidal pressed piece spring of second trapezoidal pressed piece spout rear side inner wall fixed connection, fixedly connected with on the trapezoidal pressed piece bottom terminal surface of second the other end of second stay cord.
Further, the bottom wall in the rain collecting groove is communicated with a second pipeline, a filter screen is fixedly arranged in the second pipeline, the baffle cavity faces the liquid storage cavity which is symmetrically arranged on the inner wall of one side of the center of the main screw rod, the top wall in the liquid storage cavity is communicated with the other end of the second pipeline, the bottom wall in the liquid storage cavity is communicated with the other end of the first pipeline, and the first pipeline is internally fixedly provided with an electromagnetic valve.
Further, the upper inner wall and the lower inner wall of the magnetic induction cavity are rotatably provided with a transmission shaft extending upwards, the transmission shaft is fixedly provided with coils with bilateral symmetry, the left inner wall and the right inner wall of the magnetic induction cavity are fixedly provided with permanent magnets which are bilateral symmetry and matched with the coils, the transmission shaft upwards extends into the outside part and is fixedly provided with three rotating rods, the rotating rods are far away from the end surface of one side of the center of the transmission shaft and are fixedly provided with conical hollow cups, the top wall in the signal cavity is fixedly provided with electromagnets, the electromagnets are electrically connected with the coils through circuits, a signal plate is arranged in the signal cavity in a sliding manner, the end surface of the bottom of the signal plate is fixedly provided with a signal plate spring fixedly connected with the bottom wall in the signal cavity, the end surface of the right side of the signal plate is fixedly provided with a signal block, and, be equipped with the lifting piece spout that the opening is left on the inner wall of signal chamber left side, it extends right and with the lifting piece of signal board bottom terminal surface looks butt to slide to be equipped with in the lifting piece spout, fixedly connected with on the lifting piece top terminal surface the other end of stay cord.
The invention has the beneficial effects that: the base station antenna storage device is simple in structure and convenient and fast to operate, achieves automatic storage protection of the antenna in strong wind days, reduces damage to the base station antenna in severe weather, collects rainwater in rainy days, automatically finishes cleaning of the surface of the antenna when the antenna is stored, and reduces adverse effects of excessive dust on the surface of the antenna on signal transmission.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic structural diagram of an embodiment of the present invention;
3 FIG. 32 3 is 3 a 3 schematic 3 structural 3 diagram 3 at 3 A 3- 3 A 3 in 3 FIG. 31 3 according 3 to 3 an 3 embodiment 3 of 3 the 3 present 3 invention 3; 3
FIG. 3 is a schematic structural diagram at B-B in FIG. 1 according to an embodiment of the present invention;
FIG. 4 is a schematic structural diagram at C-C in FIG. 1 according to an embodiment of the present invention;
FIG. 5 is a schematic structural diagram at D-D in FIG. 1 according to an embodiment of the present invention.
Detailed Description
The invention will now be described in detail with reference to fig. 1-5, wherein for ease of description the orientations described hereinafter are now defined as follows: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
With reference to fig. 1-5, a communication network base station includes a base station 10, a rain collecting channel 11 with an upward opening is disposed on a top end surface of the base station 10, an antenna cavity 35 is disposed in the base station 10 in a left-right through manner, baffle cavities 28 with a left-right symmetry and a downward opening are disposed on a top wall of the antenna cavity 35, a transmission cavity 47 is disposed on a top wall of the baffle cavity 28, a magnetic sensing cavity 14 is disposed on the top wall of the transmission cavity 47, a signal cavity 19 is disposed on a right inner wall of the magnetic sensing cavity 14, a motor 48 is fixedly disposed on the top wall of the transmission cavity 47, a spline shaft 58 is connected to a bottom end surface of the motor 48 in a power connection manner, a first transmission gear 55 is spline-fitted on the spline shaft 58, a spline housing 57 is fixedly disposed on a top end surface of the first transmission gear 55, a plectrum rotating groove 56 with an opening away from a center of the, an inner meshing tooth socket with a downward opening is arranged on the end face of the bottom of the first transmission gear 55, a shifting piece sliding groove 50 with a forward opening is arranged on the inner wall of the rear side of the spline housing 57, a shifting piece 59 which extends forwards into the shifting piece rotating groove 56 and is connected with the shifting piece rotating groove 56 in a sliding manner is arranged in the shifting piece sliding groove 50 in a sliding manner, an electromagnetic spring 49 fixedly connected with the inner top wall of the shifting piece sliding groove 50 is fixedly arranged on the end face of the top of the shifting piece 59, clamping block sliding grooves 51 which are symmetrical up and down and have forward openings are arranged on the inner wall of the rear side of the shifting piece sliding groove 50, a clamping block 53 is arranged in the clamping block sliding groove 51 in a sliding manner, a clamping block spring 52 fixedly connected with the inner wall of the rear side of the clamping block sliding groove 51 is fixedly arranged on the end face of the rear side of the clamping block 53 on the upper side, a first pull rope, the baffle screw rod 29 that is equipped with bilateral symmetry and downwardly extending rotates in transmission chamber 47 on the diapire, fixed being equipped with on the baffle screw rod 29 with the second drive gear 46 of first drive gear 55 looks meshing, it is located two to rotate in transmission chamber 47 on the diapire main screw rod 34 of downwardly extending between the baffle screw rod 29, fixed being equipped with on the main screw rod 34 with in the first drive gear 55 interior meshing tooth's socket matched with third drive gear 54.
Beneficially, a baffle 27 is slidably disposed in the baffle cavity 28, a small threaded shaft sleeve 26 is fixedly disposed on an end surface of the baffle 27 close to one side of the center of the main screw 34, the baffle screw 29 downwardly penetrates through the upper and lower inner walls of the baffle cavity 28 and is connected with the baffle cavity in a rotating fit manner, a portion of the baffle screw 29 downwardly extending into the baffle cavity 28 penetrates through the small threaded shaft sleeve 26 and is meshed with the small threaded shaft sleeve, a first trapezoidal compression block sliding slot 65 with a forward opening is disposed on the inner wall of the rear side of the baffle cavity 28, a first trapezoidal compression block 67 is slidably disposed in the first trapezoidal compression block sliding slot 65, a first trapezoidal compression block spring 66 fixedly connected with the inner wall of the rear side of the first trapezoidal compression block sliding slot 65 is fixedly disposed on the end surface of the rear side of the first trapezoidal compression block 67, and the other end surface of the first pull rope 60 is fixedly connected to the end surface of the top of the first trapezoidal compression block 67, be equipped with left and right symmetry and the decurrent clean piece chamber 31 of opening on the roof in the antenna chamber 35, it is equipped with in the clean piece chamber 31 in the slip with baffle 27 fixed connection's clean piece 32, the intercommunication has first pipeline 30 on the roof in the clean piece chamber 31.
Beneficially, the main screw 34 downwardly penetrates through the upper and lower inner walls of the antenna cavity 35 and is connected with the upper and lower inner walls in a matched manner, the main screw 34 extends into the antenna cavity 35, the upper and lower screw thread of the main screw are vertically symmetrical, the large screw thread shaft sleeve 39 is slidably arranged in the antenna cavity 35, the main screw 34 extends into the antenna cavity 35, the large screw thread shaft sleeve 39 is penetrated through and meshed with the large screw thread shaft sleeve 39, the antenna 33 is slidably arranged in the antenna cavity 35, the antenna 33 is close to the end face of one side of the center of the main screw 34, the first hinge block 36 is vertically symmetrical, the second hinge block 38 is fixedly arranged on the left and right end faces of the large screw thread shaft sleeve 39, the second hinge block 38 is hinged with the first hinge block 36 through the hinge rod 37, the compression block cavity 42 with the downward opening is arranged in the antenna cavity 35, the compression block 40 is slidably arranged in the compression block cavity 42, the fixed compression block spring 43 that is equipped with on the compression block 40 top terminal surface with roof fixed connection in the compression block chamber 42, fixedly connected with stay cord 17 on the compression block 40 left side terminal surface, be equipped with the trapezoidal compression block spout 63 of second that the opening is preceding on the antenna chamber 35 rear side inner wall, it is equipped with the trapezoidal compression block 62 of second to slide in the trapezoidal compression block spout 63 of second, fixedly on the trapezoidal compression block 62 rear side terminal surface of second be equipped with the trapezoidal compression block spring 64 of second that receives trapezoidal compression block spout 63 rear side inner wall fixed connection, fixedly connected with on the trapezoidal compression block 62 bottom terminal surface of second the other end of second stay cord 61.
Beneficially, the bottom wall in the rain collecting groove 11 is communicated with a second pipeline 12, a filter screen is fixedly arranged in the second pipeline 12, the baffle cavity 28 faces the inner wall on one side of the center of the main screw rod 34 and is provided with a liquid storage cavity 45 in bilateral symmetry, the top wall in the liquid storage cavity 45 is communicated with the other end of the second pipeline 12, the bottom wall in the liquid storage cavity 45 is communicated with the other end of the first pipeline 30, and the first pipeline 30 is internally fixedly provided with an electromagnetic valve 44.
Beneficially, the upper inner wall and the lower inner wall of the magnetic induction cavity 14 are rotatably provided with a transmission shaft 24 extending upwards, the transmission shaft 24 is fixedly provided with a bilateral symmetry coil 15, the bilateral symmetry inner wall of the magnetic induction cavity 14 is fixedly provided with a bilateral symmetry permanent magnet 13 matched with the coil 15, the transmission shaft 24 is fixedly provided with three rotating rods 25 upwards extending into the external part, the rotating rods 25 are far away from the end surface of one side of the center of the transmission shaft 24, the top wall in the signal cavity 19 is fixedly provided with an electromagnet 18, the electromagnet 18 is electrically connected with the coil 15 through a circuit, the signal cavity 19 is internally provided with a signal plate 20 in a sliding manner, the end surface of the bottom of the signal plate 20 is fixedly provided with a signal plate spring 21 fixedly connected with the inner bottom wall of the signal cavity 19, the end surface of the right side of the signal plate 20 is fixedly provided with a signal block, and the inner wall of the right side of the signal cavity 19 is, be equipped with the lifting piece spout 16 that the opening is left on the inner wall of signal chamber 19 left side, it is equipped with right extension and with the lifting piece 22 of signal plate 20 bottom terminal surface looks butt to slide in the lifting piece spout 16, fixedly connected with on the lifting piece 22 top terminal surface the other end of stay cord 17.
In an initial state, the large threaded bushings 39 are located at the extreme positions away from each other, the antenna 33 is located at the extreme positions away from each other, the upper large threaded bushing 39 presses the pressure block 40 to tighten the pulling rope 17, the lifting block 22 is located at the middle position, the signal plate 20 is located at the middle position, the signal plate spring 21 is in a stretched state, the pressure block spring 43 is in a compressed state, the second trapezoidal pressure block 62 extends forwards into the antenna cavity 35 under the action of the second trapezoidal pressure block spring 64, the small threaded bushing 26 is located at the upper extreme position to press the first trapezoidal pressure block 67, so that the first trapezoidal pressure block 67 contracts in the first trapezoidal pressure block sliding groove 65 to tighten the first pulling rope 60, the first trapezoidal pressure block spring 66 is in a compressed state, and the pulling piece 59 is located at the lower extreme position under the action of the electromagnetic spring 49, the spline housing 57 and the first transmission gear 55 are located at the lower limit position and are meshed with the third transmission gear 54, and the fixture block 53 at the lower side extends into the plectrum sliding groove 50 under the action of the fixture block spring 52 at the lower side and is abutted against the top end surface of the plectrum 59.
In rainy days, rainwater is collected through the rainwater collection groove 11, filtered through the filter screen and then enters the liquid storage cavity 45 through the second pipeline 12 for storage;
in strong wind, wind blows the hollow cone cup 23 to make the hollow cone cup 23 drive the transmission shaft 24 to rotate rapidly through the rotating rod 25, so that the coil 15 rotates rapidly in the magnetic induction cavity 14 to cut the magnetic induction line to generate current, the electromagnet 18 is energized, so that the electromagnet 18 attracts the signal plate 20 to displace upward, the signal block is connected with the signal receiver at the upper side through signals, the electromagnetic valve 44, the electromagnetic spring 49 and the motor 48 are electrified, the motor 48 is electrified to drive the spline shaft 58 to rotate forwards, thereby driving the first transmission gear 55 to rotate forward, the first transmission gear 55 rotates forward to drive the third transmission gear 54 engaged therewith to rotate forward, thereby driving the main screw rod 34 to rotate forward, the main screw rod 34 rotates forward to drive the large thread shaft sleeves 39 engaged with the main screw rod to move toward the direction of approaching each other, thereby driving the antenna 33 to displace towards the center of the main screw 34 and shrink into the antenna cavity 35 through the second hinge block 38, the hinge rod 37 and the first hinge block 36;
when the large threaded shaft sleeves 39 are abutted with each other, the second trapezoidal compression block 62 is extruded to tighten the second pull rope 61 to make the lower clamping block 53 and the shifting piece 59 be disengaged from abutting, so that the shifting piece 59 drives the spline sleeve 57 and the first transmission gear 55 to move upwards, the first transmission gear 55 is disengaged from the third transmission gear 54, the first transmission gear 55 is engaged with the second transmission gear 46, the first transmission gear 55 rotates forwards to drive the second transmission gear 46 to rotate, the baffle screw 29 is driven to rotate, the baffle screw 29 rotates to drive the small threaded shaft sleeve 26, the baffle 27 and the cleaning block 32 to move downwards, the liquid storage cavity 45/electromagnetic valve 44 is electrified to make water in the liquid storage cavity 45 flow to the surface of the antenna 33 in the antenna cavity 35 through the first pipeline 30, the cleaning block 32 moves downwards to clean the surface of the antenna 33 far away from the center of the main screw 34, the baffle 27 moves downwards to seal the antenna cavity 35, completing the accommodation of the antenna, finishing the extrusion of the first trapezoid pressed block 67 by the downward displacement of the small threaded shaft sleeve 26, so that the first trapezoid pressed block 67 extends into the baffle cavity 28 under the action of the first trapezoid pressed block spring 66 to loosen the first pull rope 60, the fixture block 53 on the upper side extends into the plectrum chute 50 under the action of the fixture block spring 52 on the upper side to abut against the bottom end face of the plectrum 59, and the large threaded shaft sleeves 39 displace towards the mutually approaching direction to enable the pressed block 40 to extend downward into the antenna cavity 35 under the action of the pressed block spring 43 to loosen the pull rope 17, so that the lifting block 22 moves to the lower limit position under the action of gravity;
when the wind power is reduced, the rotation speed of the coil 15 is reduced, the current in the electromagnet 18 is reduced, the magnetic force of the electromagnet 18 is reduced, the signal plate 20 is displaced downwards to the lower limit position under the action of the signal plate spring 21, so that the signal block is in signal connection with the signal receiver on the lower side, the electromagnetic spring 49 and the electromagnetic valve 44 are powered off, the motor 48 drives the spline shaft 58 to rotate reversely, the spline shaft 58 reversely rotates to drive the second transmission gear 46 meshed with the first transmission gear 55 through the first transmission gear 55, so that the small thread shaft sleeve 26, the baffle plate 27 and the cleaning block 32 are driven to displace upwards to return to the initial state, the first trapezoid pressed block 67 is extruded to strain the first pull rope 60, the upper fixture 53 is contracted in the upper fixture sliding groove 51 to be abutted to the pull sheet 59, the pull sheet 59 drives the spline sleeve 57 and the first transmission gear 55 to displace downwards to return to the initial state under the action of the electromagnetic spring 49, thereby make first drive gear 55 and third drive gear 54 mesh mutually, first drive gear 55 reversal drives third drive gear 54 reversal, thereby drive the main screw 34 reversal, main screw 34 reversal drives the big screw shaft cover 39 who meshes with it and restores initial condition towards the extreme position displacement of keeping away from each other, thereby make antenna 33 towards the direction displacement of keeping away from each other and restore initial condition, until big screw shaft cover 39 extrusion receives the taut stay cord 17 of piece 40, make lifting block 22 drive signal board 20 upwards the displacement and restore the intermediate position and cut off the power supply to motor 48.
The above embodiments are merely illustrative of the technical ideas and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims (5)

1. A communication network base station, comprising a base station, characterized by: the rain collecting groove with an upward opening is formed in the end face of the top of the base station, the antenna cavity is arranged in the base station in a left-right through mode, baffle cavities which are symmetrical left and right and have a downward opening are formed in the top wall of the antenna cavity, a transmission cavity is formed in the top wall of the baffle cavity, a magnetic induction cavity is formed in the top wall of the transmission cavity, and a signal cavity is formed in the inner wall of the right side of the magnetic induction cavity; a motor is fixedly arranged on the top wall in the transmission cavity, a spline shaft is in power connection with the end face of the bottom of the motor, a first transmission gear is in spline fit with the spline shaft, a spline sleeve is fixedly arranged on the end face of the top of the first transmission gear, a plectrum rotating groove with an opening far away from the center of the spline shaft is arranged on the annular end face of the spline sleeve far away from the center of the spline shaft, an inner meshing tooth socket with a downward opening is arranged on the end face of the bottom of the first transmission gear, a plectrum sliding groove with a forward opening is arranged on the inner wall of the rear side of the spline sleeve, a plectrum which extends forwards into the plectrum rotating groove and is in sliding fit connection with the plectrum rotating groove is arranged in the plectrum sliding groove in a sliding manner, an electromagnetic spring fixedly connected with the top wall in the plectrum sliding groove is fixedly, the fixture block is characterized in that a fixture block is arranged in the fixture block sliding groove in a sliding mode, a fixture block spring fixedly connected with the inner wall of the rear side of the fixture block sliding groove is fixedly arranged on the end face of the rear side of the fixture block, a first pull rope is fixedly connected onto the end face of the rear side of the fixture block on the upper side, a second pull rope is fixedly connected onto the end face of the rear side of the fixture block on the lower side, baffle screws which are bilaterally symmetrical and extend downwards are rotatably arranged on the bottom wall of the transmission cavity, a second transmission gear meshed with the first transmission gear is fixedly arranged on the baffle screws, a main screw located between the two baffle screws and extending downwards is rotatably arranged on the bottom wall of the transmission cavity, and a third transmission gear matched with the inner meshing tooth groove in.
2. A communications network base station according to claim 1, wherein: the baffle plate is arranged in the baffle plate cavity in a sliding manner, a small threaded shaft sleeve is fixedly arranged and arranged on the end face of one side of the baffle plate close to the center of the main screw rod, the baffle plate screw rod penetrates through the upper inner wall and the lower inner wall of the baffle plate cavity downwards and is connected with the baffle plate cavity in a rotating fit manner, the part of the baffle plate screw rod extending into the baffle plate cavity downwards penetrates through the small threaded shaft sleeve and is meshed with the small threaded shaft sleeve, a first trapezoidal compression block sliding groove with a forward opening is arranged on the inner wall of the rear side of the baffle plate cavity, a first trapezoidal compression block sliding groove is arranged in the first trapezoidal compression block sliding groove in a sliding manner, a first trapezoidal compression block spring fixedly connected with the inner wall of the rear side of the first trapezoidal compression block sliding groove is fixedly arranged on the end face of the rear side of the first trapezoidal compression block, the other end face of the top wall of the first trapezoidal compression block, the cleaning block cavity is internally provided with a cleaning block fixedly connected with the baffle in a sliding manner, and the top wall in the cleaning block cavity is communicated with a first pipeline.
3. A communications network base station according to claim 1, wherein: the main screw rod penetrates through the upper inner wall and the lower inner wall of the antenna cavity downwards and is connected with the upper inner wall and the lower inner wall in a rotating fit manner, the main screw rod extends into the antenna cavity, threads on the part of the main screw rod, which extends into the antenna cavity, penetrate through the large thread shaft sleeve and are meshed with the large thread shaft sleeve, an antenna which is bilaterally symmetrical is arranged in the antenna cavity in a sliding manner, a first hinge block which is bilaterally symmetrical is fixedly arranged on the end surface of one side, close to the center of the main screw rod, of the antenna, a second hinge block which is bilaterally symmetrical is fixedly arranged on the left end surface and the right end surface of the large thread shaft sleeve, the second hinge block is hinged with the first hinge block through a hinge rod, a pressed block cavity with a downward opening is arranged on the top wall in the antenna cavity, a pressed block is arranged in the pressed block cavity in a sliding manner, and a pressed block spring fixedly connected, fixedly connected with stay cord on the terminal surface of pressed piece left side, be equipped with the trapezoidal pressed piece spout of the preceding second of opening on the antenna chamber rear side inner wall, the trapezoidal pressed piece spout of second slides and is equipped with the trapezoidal pressed piece of second, the trapezoidal pressed piece rear side of second end face on the fixed be equipped with the trapezoidal pressed piece spring of second trapezoidal pressed piece spout rear side inner wall fixed connection, fixedly connected with on the trapezoidal pressed piece bottom terminal surface of second the other end of second stay cord.
4. A communications network base station according to claim 1, wherein: the rainwater collecting groove is characterized in that a second pipeline is communicated with the bottom wall in the rainwater collecting groove, a filter screen is fixedly arranged in the second pipeline, the baffle cavity faces the liquid storage cavity symmetrically arranged on the inner wall of one side of the center of the main screw rod, the top wall of the liquid storage cavity is communicated with the other end of the second pipeline, the bottom wall of the liquid storage cavity is communicated with the other end of the first pipeline, and a solenoid valve is fixedly arranged in the first pipeline.
5. A communications network base station according to claim 1, wherein: the magnetic induction cavity is characterized in that a transmission shaft extending upwards is rotatably arranged on the upper inner wall and the lower inner wall of the magnetic induction cavity, coils with bilateral symmetry are fixedly arranged on the transmission shaft, permanent magnets with bilateral symmetry and matched with the coils are fixedly arranged on the left inner wall and the right inner wall of the magnetic induction cavity, three rotating rods are fixedly arranged on the part of the transmission shaft extending upwards into the outside, a conical hollow cup is fixedly arranged on the end surface of one side of the rotating rod away from the center of the transmission shaft, an electromagnet is fixedly arranged on the top wall in the signal cavity, the electromagnet is electrically connected with the coils through a circuit, a signal plate is slidably arranged in the signal cavity, a signal plate spring fixedly connected with the bottom wall in the signal cavity is fixedly arranged on the end surface of the bottom of the signal plate, a signal block is fixedly arranged on the end surface of the right side of the signal plate, a signal receiver with longitudinal symmetry is fixedly, slide in the lifting piece spout be equipped with extend right and with the lifting piece of signal board bottom terminal surface looks butt, fixedly connected with on the lifting piece top terminal surface the other end of stay cord.
CN202010988066.1A 2020-09-18 2020-09-18 Communication network base station Withdrawn CN112165736A (en)

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Application Number Priority Date Filing Date Title
CN202010988066.1A CN112165736A (en) 2020-09-18 2020-09-18 Communication network base station

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Application Number Priority Date Filing Date Title
CN202010988066.1A CN112165736A (en) 2020-09-18 2020-09-18 Communication network base station

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CN202010988066.1A Withdrawn CN112165736A (en) 2020-09-18 2020-09-18 Communication network base station

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112928424A (en) * 2021-02-03 2021-06-08 南京功上杰网络科技有限公司 Device for automatically amplifying concentrated signals of communication antenna manufactured by high-end equipment
CN114143918A (en) * 2021-12-02 2022-03-04 杭州浩威电子科技有限公司 5G micro base station

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112928424A (en) * 2021-02-03 2021-06-08 南京功上杰网络科技有限公司 Device for automatically amplifying concentrated signals of communication antenna manufactured by high-end equipment
CN112928424B (en) * 2021-02-03 2022-07-29 宜宾市天珑通讯有限公司 Device for automatically amplifying concentrated signals of communication antenna manufactured by high-end equipment
CN114143918A (en) * 2021-12-02 2022-03-04 杭州浩威电子科技有限公司 5G micro base station

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Application publication date: 20210101