CN215934868U - Automatic testing arrangement of wireless communication equipment - Google Patents

Automatic testing arrangement of wireless communication equipment Download PDF

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Publication number
CN215934868U
CN215934868U CN202122655651.2U CN202122655651U CN215934868U CN 215934868 U CN215934868 U CN 215934868U CN 202122655651 U CN202122655651 U CN 202122655651U CN 215934868 U CN215934868 U CN 215934868U
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China
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wireless communication
communication equipment
dust
collecting pipe
inner cavity
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CN202122655651.2U
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Chinese (zh)
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胡大强
康艳
金圣健
胡家闻
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Hangzhou Uusense Technology Co ltd
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Hangzhou Uusense Technology Co ltd
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Abstract

The utility model discloses an automatic testing device of wireless communication equipment, which comprises a detection table, wherein a wireless communication tester is arranged at the top of the detection table, an installation groove transversely penetrates through the top of the detection table, a transmission mechanism is arranged in the inner cavity of the installation groove, and the outer wall of the installation frame is connected with a servo speed reduction motor. This automatic testing arrangement of wireless communication equipment is when detecting the operation to wireless communication equipment, can realize treating the communication equipment who detects and carry out automatic feeding operation, when making things convenient for the measurement personnel to treat the communication equipment who detects and detect the operation, also make the wireless communication equipment quantity increase that detects, be favorable to detection efficiency's promotion, and this automatic testing arrangement of wireless communication equipment can adsorb the dust removal processing to the dust that is stained with on the surface to be detected wireless communication equipment of treating the in-process that detects wireless communication equipment who detects, avoid the dust to cause the influence to detecting the operation.

Description

Automatic testing arrangement of wireless communication equipment
Technical Field
The utility model relates to the technical field of testing devices, in particular to an automatic testing device of wireless communication equipment.
Background
Wireless communication is a communication method that does not require a physical connection line, and that exchanges information using the characteristic that an electromagnetic wave signal can propagate in a free space. The wireless communication equipment has the greatest advantages of environment, no need of being limited by wires, certain mobility, low construction difficulty and low cost, and can communicate through wireless connection in a mobile state; however, the wireless communication equipment has weak interference resistance, slow transmission rate, limited bandwidth, limited transmission distance and low cost. However, wireless communication is changing corresponding technologies to make transmission rates higher (802,11n rates can reach 100Mbps not lower than wired communication), more stable and more convenient, so wireless communication devices will be a trend. The wireless communication tester can carry out various tests on wireless communication equipment, thereby improving the efficiency and the accuracy of the maintenance of the wireless communication equipment, shortening the time and saving the maintenance cost. However, the existing wireless communication testing device needs to manually feed when detecting wireless communication equipment, and when feeding operation is performed, the wireless communication equipment to be detected needs to be manually carried to a detection table, and then the wireless communication equipment to be detected can be manually placed on the detection table for detection operation, so that the manual feeding mode wastes time and labor, the detection amount is small, and the detection efficiency is reduced.
SUMMERY OF THE UTILITY MODEL
The present invention is directed to an automatic testing apparatus for wireless communication devices, which solves the above problems.
In order to achieve the purpose, the utility model provides the following technical scheme:
an automatic testing device of wireless communication equipment comprises a detection table, wherein a wireless communication tester is arranged at the top of the detection table, a mounting groove is transversely arranged at the top of the detection table in a penetrating manner, a transmission mechanism is arranged in an inner cavity of the mounting groove, a dust suction part is arranged at the position, corresponding to the position of the transmission mechanism, of the top of the detection table, a control panel is further arranged at the top of the detection table, the transmission mechanism comprises a mounting frame, a plurality of groups of rotating rods are transversely and uniformly arranged in an inner cavity of the mounting frame, a conveying roller is fixedly sleeved on the periphery of each group of rotating rods, a conveying belt is commonly sleeved on the peripheries of the plurality of groups of conveying rollers, shaft grooves are arranged at the positions, corresponding to the end parts of each group of rotating rods, the inner cavity of each group of shaft grooves is connected with bearings matched with the end parts of the rotating rods, and the end parts of each group of rotating rods are respectively fixedly inserted into the corresponding bearing inner cavities, the outer wall of the mounting rack is connected with a servo speed reduction motor.
As a further scheme of the utility model: dust collecting component includes the roof, run through on the roof and be equipped with the preformed hole, the inner chamber fixedly connected with dust excluding hood in preformed hole, the inner chamber fixed of dust excluding hood is equipped with the electric fan that admits air, the top intercommunication of dust excluding hood has C type guide duct, the one end that the dust excluding hood was kept away from to C type guide duct is equipped with the collection dirt subassembly, the side all is equipped with electronic hydraulic rod around the roof bottom, and is two sets of electronic hydraulic rod's bottom all is equipped with the foundation, and is two sets of the bottom of foundation all is connected in the top of test table, and is two sets of the foundation symmetry sets up in the preceding rear side of mounting groove top.
As a still further scheme of the utility model: the dust collecting component comprises a collecting pipe, the outer wall of the collecting pipe is provided with first raised threads, the inner cavity of the collecting pipe is provided with a dust blocking component, the bottom end of the collecting pipe is provided with a dust removing net, a first spiral groove matched with the first raised threads for operation is arranged on the side wall of the inner cavity of the C-shaped air guide pipe, the top end of the collecting pipe is movably inserted into the inner cavity of one end of the C-shaped air guide pipe far away from the dust removing cover, and the collecting pipe is movably connected with the inner wall of the C-shaped air guide pipe through the first raised threads.
As a still further scheme of the utility model: hinder dirt part including hindering dirt mouth, the one end of hindering dirt mouth is established to open slot, the other end of hindering dirt mouth is established to open wide mouthful, the bottom of hindering dirt mouth is connected with the go-between, be equipped with the protruding screw thread of second on the lateral wall of go-between, be equipped with the second spiral shell groove with the protruding screw thread cooperation operation of second on the lateral wall of collection pipe inner chamber, just through the protruding screw thread swing joint of second between the inner chamber lateral wall of go-between and collecting pipe, the one end of hindering dirt mouth slot removes dust net dorsad.
As a still further scheme of the utility model: the bottom of dust excluding hood is through bolt fixedly connected with protection network, electric fan, servo gear motor and two sets of admits air all with control panel electric connection.
As a still further scheme of the utility model: an output shaft of the servo speed reduction motor penetrates through the mounting frame and penetrates through one group of the bearings and is fixedly connected with the end parts of the rotating rods in the inner cavities of the bearings.
Compared with the prior art, the utility model has the beneficial effects that:
this wireless communication equipment's automatic testing arrangement is when detecting the operation to wireless communication equipment, under servo gear motor's drive, the transmission belt can realize treating the communication equipment who detects and carry out automatic feeding operation, when making things convenient for the measurement personnel to treat the communication equipment who detects and detect the operation, also make the increase of the wireless communication equipment quantity that detects, be favorable to the promotion of detection efficiency, and this wireless communication equipment's automatic testing arrangement can treat the wireless communication equipment who detects through dust collecting component and adsorb the dust removal processing treating the wireless communication equipment that is stained with attached on the surface, avoid the dust to cause the influence to the detection operation.
Drawings
Fig. 1 is a schematic structural diagram of an automatic testing apparatus for wireless communication devices.
Fig. 2 is a schematic structural diagram of an automatic testing apparatus for wireless communication devices.
Fig. 3 is a schematic structural diagram of a dust collecting assembly in an automatic testing apparatus of a wireless communication device.
Fig. 4 is a schematic structural diagram of a dust-blocking component in an automatic testing device of a wireless communication device.
In the figure: 1. a detection table; 2. a wireless communication tester; 3. a top plate; 4. an electric hydraulic push rod; 5. a bottom pillar; 6. a dust hood; 7. a C-shaped air guide pipe; 8. a dust collection assembly; 9. a control panel; 10. a transport roller; 11. a transfer belt; 12. a mounting frame; 13. a servo deceleration motor; 14. a collection pipe; 15. a dust removal net; 16. a dust-blocking member; 17. a dust blocking nozzle; 18. and (7) connecting rings.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-4, in the embodiment of the present invention, an automatic testing apparatus for wireless communication equipment includes a testing table 1, a wireless communication tester 2 is disposed on the top of the testing table 1, a mounting groove is transversely formed on the top of the testing table 1, a transmission mechanism is disposed in an inner cavity of the mounting groove, a dust collecting component is disposed on the top of the testing table 1 corresponding to the transmission mechanism, a control panel 9 is further disposed on the top of the testing table 1, the transmission mechanism includes a mounting frame 12, a plurality of sets of rotating rods are uniformly disposed in the inner cavity of the mounting frame 12, a transport roller 10 is fixedly sleeved on the outer periphery of each set of rotating rods, a transport belt 11 is commonly sleeved on the outer periphery of each plurality of transport rollers 10, an axial groove is disposed on the inner cavity of the mounting frame 12 corresponding to the end of each set of rotating rods, a bearing matched with the end of each set of axial groove is connected to the inner cavity of each set of rotating rods, and the end of each set of rotating rods is respectively fixed to the inner cavity of the corresponding bearing in an inserting manner, the outer wall of the mounting frame 12 is connected with a servo speed reducing motor 13.
Dust collecting component includes roof 3, run through on the roof 3 and be equipped with the preformed hole, the inner chamber fixedly connected with dust excluding hood 6 of preformed hole, the inner chamber fixation of dust excluding hood 6 is equipped with the electric fan that admits air, the top intercommunication of dust excluding hood 6 has C type guide duct 7, the one end that dust excluding hood 6 was kept away from to C type guide duct 7 is equipped with collection dirt subassembly 8, the front and back side of roof 3 bottom all is equipped with electronic hydraulic rod 4, the bottom of two sets of electronic hydraulic rod 4 all is equipped with foundation 5, the bottom of two sets of foundation 5 all is connected in the top of test table 1, and 5 symmetries of two sets of foundations set up in the preceding rear side of mounting groove top.
The dust collection assembly 8 comprises a collection pipe 14, the outer wall of the collection pipe 14 is provided with a first raised thread, the inner cavity of the collection pipe 14 is provided with a dust blocking component 16, the bottom end of the collection pipe 14 is provided with a dust removal net 15, the side wall of the inner cavity of the C-shaped air guide pipe 7 is provided with a first screw groove matched with the first raised thread for operation, the top end of the collection pipe 14 is movably inserted into the inner cavity of one end of the C-shaped air guide pipe 7, which is far away from the dust removal cover 6, and the collection pipe 14 is movably connected with the inner wall of the C-shaped air guide pipe 7 through the first raised thread.
The dust-proof component 16 comprises a dust-proof nozzle 17, one end of the dust-proof nozzle 17 is arranged to be an open narrow opening, the other end of the dust-proof nozzle 17 is arranged to be an open wide opening, the bottom end of the dust-proof nozzle 17 is connected with a connecting ring 18, a second raised thread is arranged on the side wall of the connecting ring 18, a second thread groove matched with the second raised thread for operation is arranged on the side wall of the inner cavity of the collecting pipe 14, the connecting ring 18 is movably connected with the side wall of the inner cavity of the collecting pipe 14 through the second raised thread, and one end of the narrow opening of the dust-proof nozzle 17 faces away from the dust-removing net 15. The dust in the collecting pipe 14 is blocked by the narrow opening of the dust blocking nozzle 17, so that the dust collected in the collecting pipe 14 is difficult to flow back to the inside of the C-shaped air guide pipe 7. Because the collecting pipe 14 is movably connected with the inner wall of the C-shaped air guide pipe 7 through the first raised threads, and the connecting ring 18 is movably connected with the side wall of the inner cavity of the collecting pipe 14 through the second raised threads, the collecting pipe 14 is convenient to detach from the C-shaped air guide pipe 7, and the dust blocking component 16 is also convenient to detach from the inside of the collecting pipe 14, so that dust collected in the collecting pipe 14 can be poured out conveniently, and the inner wall of the collecting pipe 14 and the dust removing net 15 can be cleaned.
The bottom of the dust hood 6 is fixedly connected with a protective screen through bolts, and the air inlet electric fan, the servo speed reducing motor 13 and the two groups of electric hydraulic push rods 4 are electrically connected with the control panel 9.
The output shaft of the servo speed reducing motor 13 penetrates through the mounting frame 12 and penetrates through one set of bearings and is fixedly connected with the end part of the rotating rod in the inner cavity of the set of bearings.
The working principle is as follows:
when the automatic testing device of the wireless communication equipment is used, a first batch of wireless communication equipment to be detected is placed on the top of the transmission belt 11 by a worker, the transmission belt 11 can realize automatic feeding operation on the first batch of communication equipment to be detected under the drive of the servo deceleration motor 13, when the first batch of wireless communication equipment to be detected is transported to the wireless communication tester 2 by the transmission belt 11, the tester controls the servo deceleration motor 13 to be closed through the control panel 9, then controls the air inlet fan to be opened through the control panel 9, when the air inlet fan works, negative pressure is formed inside the dust hood 6, so that dust adhered to the surface of the wireless communication equipment is guided into the C-shaped air guide pipe 7 through the dust hood 6, then the dust collecting component 8 collects and processes the guided-in dust, and after the dust on the surface of the wireless communication equipment is removed, the detection personnel then carry out the detection operation to wireless communication equipment through wireless communication tester 2, after first batch of wireless communication equipment detected, place the wireless communication equipment that needs the detection of second batch in the top of transmission belt 11 again and carry out the transportation operation, go on in proper order.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the utility model can be made, and equivalents and modifications of some features of the utility model can be made without departing from the spirit and scope of the utility model.

Claims (6)

1. An automatic testing device of wireless communication equipment, including examining test table (1), its characterized in that: the top of the detection table (1) is provided with a wireless communication tester (2), the top of the detection table (1) is transversely provided with a mounting groove in a penetrating manner, an inner cavity of the mounting groove is provided with a transmission mechanism, the top of the detection table (1) is provided with a dust suction component at the position corresponding to the transmission mechanism, the top of the detection table (1) is also provided with a control panel (9), the transmission mechanism comprises a mounting frame (12), the inner cavity of the mounting frame (12) is transversely and uniformly provided with a plurality of groups of rotating rods, the periphery of each group of rotating rods is fixedly sleeved with a transportation roller (10), the periphery of each group of transportation roller (10) is commonly sleeved with a transmission belt (11), the inner cavity of the mounting frame (12) and the position corresponding to the end part of each group of rotating rods are respectively provided with an axial groove, the inner cavity of each group of axial grooves is respectively connected with a bearing matched with the end part of the rotating rods, and the end parts of each group of the rotating rods are respectively inserted and fixed to the corresponding bearing inner cavities, the outer wall of the mounting rack (12) is connected with a servo speed reducing motor (13).
2. The automated testing apparatus of claim 1, wherein: dust absorption part includes roof (3), it is equipped with the preformed hole to run through on roof (3), the inner chamber fixedly connected with dust excluding hood (6) of preformed hole, the inner chamber of dust excluding hood (6) is fixed and is equipped with the electric fan that admits air, the top intercommunication of dust excluding hood (6) has C type guide duct (7), the one end that dust excluding hood (6) was kept away from in C type guide duct (7) is equipped with album dirt subassembly (8), the side all is equipped with electronic hydraulic rod (4) around roof (3) bottom, and is two sets of the bottom of electronic hydraulic rod (4) all is equipped with foundation (5), and is two sets of the bottom of foundation (5) all is connected in the top of detecting platform (1), and is two sets of foundation (5) symmetry sets up in the preceding rear side of mounting groove top.
3. The automated testing apparatus of claim 2, wherein: collection dirt subassembly (8) are including collecting pipe (14), the outer wall of collecting pipe (14) is equipped with first protruding screw thread, the inner chamber of collecting pipe (14) is equipped with hinders dirt part (16), the bottom of collecting pipe (14) is equipped with dust removal net (15), be equipped with the first spiral shell groove with first protruding screw thread cooperation operation on the lateral wall of C type guide duct (7) inner chamber, the top activity plug-in of collecting pipe (14) is connected to the one end inner chamber that dust excluding hood (6) was kept away from in C type guide duct (7), just through first protruding screw thread swing joint between the inner wall of collecting pipe (14) and C type guide duct (7).
4. The automated testing apparatus of claim 3, wherein: hinder dirt part (16) including hindering dirt mouth (17), the one end of hindering dirt mouth (17) is established to open slot, the other end of hindering dirt mouth (17) is established to open wide mouthful, the bottom of hindering dirt mouth (17) is connected with go-between (18), be equipped with the protruding screw thread of second on the lateral wall of go-between (18), be equipped with the second spiral shell groove with the protruding screw thread cooperation operation of second on the lateral wall of collecting pipe (14) inner chamber, just through the protruding screw thread swing joint of second between the inner chamber lateral wall of go-between (18) and collecting pipe (14), the one end of hindering dirt mouth (17) slot removes dust net (15) dorsad.
5. The automated testing apparatus of claim 2, wherein: the bottom of dust excluding hood (6) is through bolt fixedly connected with protection network, electric fan, servo gear motor (13) and two sets of admits air all with control panel (9) electric connection electric motor hydraulic push rod (4).
6. The automated testing apparatus of claim 1, wherein: an output shaft of the servo speed reducing motor (13) penetrates through the mounting frame (12), penetrates through one group of the bearings and is fixedly connected with the end part of the rotating rod in the inner cavity of the group of the bearings.
CN202122655651.2U 2021-11-02 2021-11-02 Automatic testing arrangement of wireless communication equipment Active CN215934868U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122655651.2U CN215934868U (en) 2021-11-02 2021-11-02 Automatic testing arrangement of wireless communication equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122655651.2U CN215934868U (en) 2021-11-02 2021-11-02 Automatic testing arrangement of wireless communication equipment

Publications (1)

Publication Number Publication Date
CN215934868U true CN215934868U (en) 2022-03-01

Family

ID=80404203

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122655651.2U Active CN215934868U (en) 2021-11-02 2021-11-02 Automatic testing arrangement of wireless communication equipment

Country Status (1)

Country Link
CN (1) CN215934868U (en)

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