Antenna support device capable of being installed quicklyTechnical Field
The invention relates to the field of communication related equipment, in particular to an antenna bracket device capable of being installed quickly.
Background
In modern life, along with the development of science and technology day by day, people's communication is also more and more convenient, and people's communication all is with signalling for the basic station and carry out the communication, and the basic station sends communication signal to the external world through communication antenna, and current communication antenna is comparatively troublesome when the installation, especially in urban area, needs the staff to scramble the wire pole, and this kind of mounting means causes personnel's injury easily.
Disclosure of Invention
The invention aims to solve the problems and designs an antenna bracket device capable of being installed quickly.
The technical scheme of the invention is that the antenna support device capable of being quickly installed comprises an annular base, wherein the annular base is movably installed on a telegraph pole, a lifting fixing device is arranged on the annular base, an antenna fixing device is arranged on the outer side of the lifting fixing device, and a controller is arranged outside the annular base;
the lifting fixing device comprises three large electric telescopic rods which are fixedly arranged on the inner side of the upper surface of the annular base and are uniformly distributed, a fixing sleeve ring is arranged at the upper end of each large electric telescopic rod, a small electric telescopic rod I, a small electric telescopic rod II and a small electric telescopic rod III are uniformly distributed on the inner side surface of each fixing sleeve ring, a pressure sensor I is arranged at the telescopic end of each small electric telescopic rod, an arc-shaped fixing plate I is arranged on the upper side surface of each pressure sensor I, an anti-skidding wear-resistant pad I is arranged on the inner side surface of each arc-shaped fixing plate I, a pressure sensor II is arranged at the telescopic end of each arc-shaped fixing plate II, an anti-skidding wear-resistant pad II is arranged on the inner side surface of each arc-shaped fixing plate II, a pressure sensor III is arranged at the telescopic end of each, the inner side surface of the annular base is uniformly provided with three pulley seats, pulley shafts are arranged on the pulley seats, pulleys are arranged on the pulley shafts and are connected with a telegraph pole in a sliding manner, the inner side surface of the annular base is uniformly provided with three small electric telescopic rods, the three small electric telescopic rods are distributed with the three pulley seats in a crossed manner, four telescopic ends of the three small electric telescopic rods are provided with four pressure sensors, the four pressure sensors are provided with four arc-shaped fixed plates, and the inner side surfaces of the four arc-shaped fixed plates are provided with four anti-skidding wear-resistant pads;
the antenna fixing device comprises a square frame support fixedly arranged on the outer side of the upper surface of the annular base, eight electric telescopic rods are uniformly distributed and arranged on the square frame support and divided into four groups, four groups of electric telescopic rods are arranged on four edges of the square frame support, the telescopic ends of the eight electric telescopic rods face the outer side of the square frame support, a first fixed cross rod is arranged at the telescopic end of each group of electric telescopic rods, four lifting electric telescopic rods are arranged at four corners of the upper surface of the square frame support, an annular support is arranged above the four lifting electric telescopic rods, and a second fixed cross rod is arranged on four edges;
the signal receiving end of the controller is electrically connected with the first pressure sensor, the second pressure sensor, the third pressure sensor and the fourth pressure sensor, and the power output end of the controller is electrically connected with the large electric telescopic rod, the first small electric telescopic rod, the second small electric telescopic rod, the third small electric telescopic rod, the fourth small electric telescopic rod, the electric telescopic rod and the lifting electric telescopic rod.
And a horizontal sensor is arranged on the upper surface of the annular base and is electrically connected with a signal receiving end of the controller.
The fixed cover ring is characterized in that an infrared distance measuring sensor is arranged on the inner side surface of the fixed cover ring and is electrically connected with a signal receiving end of the controller.
The antenna is fixed through the first fixed cross rod and the second fixed cross rod.
The electric telescopic rod is used for adjusting the installation angle of the antenna.
The lifting electric telescopic rod is used for adjusting and installing the antennas with different heights.
The whole device is made of stainless steel.
And a PLC system is arranged in the controller.
And the controller is provided with a capacitive display screen, a control button and a switch button.
The controller is provided with an electricity utilization interface, and the electricity utilization interface is electrically connected with an external power supply.
According to the antenna support device capable of being installed quickly, which is manufactured by the technical scheme, the antenna is installed and adjusted by the antenna fixing device, and then the antenna is lifted above the telegraph pole by the lifting fixing device, so that the antenna can be installed at a required height simply and quickly, and meanwhile, an installer does not need to climb the telegraph pole.
Drawings
Fig. 1 is a schematic structural view of a quick-mountable antenna mounting apparatus according to the present invention;
FIG. 2 is an enlarged view of a portion of the lift fixture of the present invention;
FIG. 3 is a top view of a quick-mount antenna mounting assembly of the present invention;
FIG. 4 is a top view of the antenna fixture of the present invention;
FIG. 5 is a schematic view of the controller of the present invention;
in the figure, 1, a ring-shaped base; 2. a controller; 3. a large electric telescopic rod; 4. a fixed collar; 5. a first small electric telescopic rod; 6. a small electric telescopic rod II; 7. a small electric telescopic rod III; 8. a first pressure sensor; 9. a first arc-shaped fixing plate; 10. a first anti-skid wear-resistant pad; 11. a second pressure sensor; 12. a second arc-shaped fixing plate; 13. a second anti-skid wear-resistant pad; 14. a third pressure sensor; 15. an arc-shaped fixing plate III; 16. a third anti-skid wear-resistant pad; 17. a pulley seat; 18. a pulley shaft; 19. a pulley; 20. a small electric telescopic rod IV; 21. a fourth pressure sensor; 22. an arc-shaped fixing plate IV; 23. a fourth antiskid wear-resistant pad; 24. a square frame support; 25. an electric telescopic rod; 26. fixing a first cross bar; 27. lifting the electric telescopic rod; 28. an annular support; 29. fixing a second cross bar; 30. a level sensor; 31. an infrared ranging sensor; 32. a PLC system; 33. a capacitive display screen; 34. a control button; 35. a switch button; 36. an electrical interface.
Detailed Description
The invention will be described in detail with reference to the accompanying drawings, and as shown in fig. 1-5, a fast-installable antenna support device includes anannular base 1, theannular base 1 is movably installed on a telegraph pole, a lifting fixing device is arranged on theannular base 1, an antenna fixing device is arranged outside the lifting fixing device, and acontroller 2 is arranged outside theannular base 1; the lifting fixing device comprises three large electrictelescopic rods 3 which are fixedly arranged on the inner side of the upper surface of anannular base 1 and are uniformly distributed, afixing lantern ring 4 is arranged at the upper end of each large electrictelescopic rod 3, a small electric telescopic rod I5, a small electric telescopic rod II 6 and a small electric telescopic rod III 7 are uniformly distributed on the inner side surface of eachfixing lantern ring 4, a pressure sensor I8 is arranged at the telescopic end of each small electric telescopic rod I5, an arc-shaped fixing plate I9 is arranged on each pressure sensor I8, an anti-skidding wear-resistant pad I10 is arranged on the inner side surface of each arc-shaped fixing plate I9, a pressure sensor II 11 is arranged at the telescopic end of each small electric telescopic rod II 6, an arc-shaped fixing plate II 12 is arranged on each pressure sensor II 11, an anti-skidding wear-resistant pad II 13 is arranged on the inner side surface of each arc-shaped, the inner side surface of the arc-shaped fixing plate III 15 is provided with an anti-skid wear-resistant pad III 16, the inner side surface of theannular base 1 is uniformly provided with threepulley seats 17,pulley shafts 18 are arranged on thepulley seats 17,pulleys 19 are arranged on thepulley shafts 18, thepulleys 19 are in sliding connection with telegraph poles, the inner side surface of theannular base 1 is uniformly provided with three small electric telescopic rods IV 20, the three small electric telescopic rods IV 20 and the threepulley seats 17 are in cross distribution, the telescopic ends of the three small electric telescopic rods IV 20 are provided with pressure sensors IV 21, the pressure sensors IV 21 are provided with arc-shaped fixing plates IV 22, and the inner side surface of the arc-shaped fixing plates IV 22 is provided with anti; the antenna fixing device is characterized in that asquare frame support 24 is arranged on the outer side of the upper surface of a fixedannular base 1, eight electrictelescopic rods 25 are uniformly distributed and arranged on thesquare frame support 24, the eight electrictelescopic rods 25 are divided into four groups, four groups of electrictelescopic rods 25 are arranged on four edges of thesquare frame support 24, the telescopic ends of the eight electrictelescopic rods 25 face the outer part of thesquare frame support 24, a first fixedcross rod 26 is arranged at the telescopic end of each group of electrictelescopic rods 25, four lifting electrictelescopic rods 27 are arranged at four corners of the upper surface of thesquare frame support 24, anannular support 28 is arranged above the four lifting electrictelescopic rods 27, and a; the signal receiving end of thecontroller 2 is electrically connected with the first pressure sensor, the second pressure sensor, the third pressure sensor and the fourth pressure sensor, and the power output end of thecontroller 2 is electrically connected with the large electric telescopic rod, the first small electric telescopic rod, the second small electric telescopic rod, the third small electric telescopic rod, the fourth small electric telescopic rod, the electric telescopic rod and the lifting electric telescopic rod; ahorizontal sensor 30 is arranged on the upper surface of theannular base 1, and thehorizontal sensor 30 is electrically connected with a signal receiving end of thecontroller 2; an infrareddistance measuring sensor 31 is arranged on the surface of the inner side of thefixed lantern ring 4, and the infrareddistance measuring sensor 31 is electrically connected with a signal receiving end of thecontroller 2; the antenna is fixed through a firstfixed cross bar 26 and a secondfixed cross bar 29; the electrictelescopic rod 25 is used for adjusting the installation angle of the antenna; the lifting electrictelescopic rod 27 is used for adjusting and installing antennas with different heights; the whole device is made of stainless steel; aPLC system 32 is arranged in thecontroller 2; thecontroller 2 is provided with acapacitive display screen 33, acontrol button 34 and aswitch button 35; thecontroller 2 is provided with anelectric interface 36, and theelectric interface 36 is electrically connected with an external power supply.
The lifting fixing device is characterized by comprising three large electric telescopic rods which are fixedly arranged on the inner side of the upper surface of an annular base and are uniformly distributed, a fixing sleeve ring is arranged at the upper end of each large electric telescopic rod, a small electric telescopic rod I, a small electric telescopic rod II and a small electric telescopic rod III are uniformly distributed on the inner side surface of the fixing sleeve ring, a pressure sensor I is arranged at the telescopic end of the small electric telescopic rod I, an arc-shaped fixing plate I is arranged on the pressure sensor I, an anti-skidding wear-resistant pad I is arranged on the inner side surface of the arc-shaped fixing plate I, a pressure sensor II is arranged at the telescopic end of the small electric telescopic rod II, an arc-shaped fixing plate II is arranged on the inner side surface of the arc-shaped fixing plate II, a pressure sensor III is arranged at the telescopic end of the small electric telescopic rod III, an arc-shaped, the inner side surface of the annular base is uniformly provided with three pulley seats, pulley shafts are arranged on the pulley seats, pulleys are arranged on the pulley shafts and are connected with a telegraph pole in a sliding manner, the inner side surface of the annular base is uniformly provided with three small electric telescopic rods, the three small electric telescopic rods are distributed with the three pulley seats in a crossed manner, four telescopic ends of the three small electric telescopic rods are provided with four pressure sensors, the four pressure sensors are provided with four arc-shaped fixed plates, and the inner side surfaces of the four arc-shaped fixed plates are provided with four anti-skidding wear-resistant pads; the antenna fixing device is characterized in that a square frame support is arranged on the outer side of the upper surface of a fixed annular base, eight electric telescopic rods are uniformly distributed and arranged on the square frame support and divided into four groups, four groups of electric telescopic rods are arranged on four edges of the square frame support, the telescopic ends of the eight electric telescopic rods face the outer part of the square frame support, a first fixed cross rod is arranged at the telescopic end of each group of electric telescopic rods, four lifting electric telescopic rods are arranged at four corners of the upper surface of the square frame support, an annular support is arranged above the four lifting electric telescopic rods, and a second fixed cross; through above-mentioned device, use antenna fixing device to install and adjust the antenna, reuse lift fixing device with the antenna rise to the wire pole top, can be simple quick install the antenna to the height that needs, do not need installer climbing wire pole again simultaneously, this device simple structure, convenient operation.
In the embodiment, an electric interface on a controller is connected with an external power supply, a switch button on the controller is controlled to start equipment, an antenna is arranged on a first fixed cross rod and a second fixed cross rod, the angle of the antenna is adjusted through an electric telescopic rod after the antenna is arranged, when a small or large antenna needs to be arranged, the height of the second fixed cross rod is adjusted through a lifting electric telescopic rod and is adjusted to a proper height, the antenna is arranged, after the antenna is arranged, a controller controls a fourth small electric telescopic rod to fix a device, controls a fourth large electric telescopic rod to extend upwards, controls the large electric telescopic rod to stop working after extending to a certain height, controls a first small electric telescopic rod, a second small electric telescopic rod and a third small electric telescopic rod to work simultaneously, fixes a first arc-shaped fixed plate, a second arc-shaped fixed plate and a third arc-shaped fixed plate to a telegraph, at the moment, the small electric telescopic rod is controlled to contract, the large electric telescopic rod is controlled to contract simultaneously, the large electric telescopic rod contracts to drive the annular base to ascend, the annular base ascends to a certain height, the device is fixed by controlling the electric telescopic rod, the operation is repeated for a plurality of times, when the annular base ascends to the certain height, the controller control device stops running, the controller controls the small electric telescopic rod I, the small electric telescopic rod II, the small electric telescopic rod III and the small electric telescopic rod IV to extend, the device is fixed, the controller detects whether the device is fixed stably through the pressure sensor, when the pressure detected by the pressure sensor reaches a set value, the controller controls the corresponding device to stop working, the controller detects the levelness of the device through the level sensor, and when the levelness is lower than the set value, the controller adjusts the levelness through adjusting the large electric telescopic rod, the controller prevents the fixed lantern ring from extending out of the telegraph pole by detecting the infrared distance measuring sensor.
The technical solutions described above only represent the preferred technical solutions of the present invention, and some possible modifications to some parts of the technical solutions by those skilled in the art all represent the principles of the present invention, and fall within the protection scope of the present invention.