CN114337856B - Be applied to bluetooth microspur characteristic automation test equipment - Google Patents

Be applied to bluetooth microspur characteristic automation test equipment Download PDF

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Publication number
CN114337856B
CN114337856B CN202111520670.2A CN202111520670A CN114337856B CN 114337856 B CN114337856 B CN 114337856B CN 202111520670 A CN202111520670 A CN 202111520670A CN 114337856 B CN114337856 B CN 114337856B
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turntable
bluetooth
mobile phone
rotating
bluetooth peripheral
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CN114337856A (en
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马长春
杨伟伟
焦丰权
邓乔
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Hangzhou Yonghe Technology Co ltd Xi'an Branch
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Hangzhou Yonghe Technology Co ltd Xi'an Branch
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

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Abstract

The invention discloses automatic testing equipment applied to Bluetooth microspur characteristics, relates to the field of microspur testing, aims at the problems that the current microspur peripheral equipment such as an earphone, a sound box and the like has the microspur found characteristics, the current stage of the microspur spring frame directivity test is a manual test, the manual test consumes time, the test result is inaccurate and unstable, the stability and pressure test cannot be realized and the like, and the like. The invention provides automatic testing equipment applied to Bluetooth micro-distance characteristics, which can effectively shield external electromagnetic interference, improve testing stability and accuracy, and realize the function of measuring the distance between a Bluetooth peripheral and a mobile phone end at the most distant popup frame with different azimuth angles.

Description

Be applied to bluetooth microspur characteristic automation test equipment
Technical Field
The invention relates to the field of automatic testing of bluetooth macro directivity, in particular to automatic testing equipment applied to bluetooth macro characteristics.
Background
The micro-distance directivity test equipment is used for completing an interaction process by simulating a user to use a micro-distance characteristic scene in the shielding cabinet and matching with the mobile phone and the peripheral equipment to measure micro-distance directivity data, so that the distance measurement function of the farthest elastic frame of the peripheral equipment with the Bluetooth micro-distance discovery function in different directions of the mobile phone can be realized. The mobile phone and the peripheral are respectively fixed on the rotary table, the peripheral is controlled to be in a transmitting BLE broadcast-broadcast state table by a command or a simple mechanical arm, the rotary table and the sliding rail control the relative angle change of the mobile phone and the peripheral, and the furthest flick frame distance and angle of the mobile phone and the peripheral are reported, so that an automatic test function is realized.
The current basket tooth peripheral equipment such as headphones and sound boxes is mainly subjected to macro discovery characteristics, manual testing is carried out at the current stage of macro spring frame directivity testing, the manual testing consumes time, the testing result is inaccurate and unstable, stability and pressure testing cannot be achieved, and automatic testing equipment based on a shielding cabinet, a rotary table and a sliding rail is required for achieving macro characteristic directivity automatic testing.
Disclosure of Invention
Object of the invention
In order to solve the technical problems in the background art, the invention provides the automatic testing equipment applied to the Bluetooth micro-distance characteristics, which can effectively shield the external electromagnetic interference, improve the testing stability and accuracy and realize the measurement function of the distance between the Bluetooth peripheral and the mobile phone end at the most far elastic frame with different azimuth angles.
(II) technical scheme
The invention provides automatic testing equipment applied to Bluetooth micro-distance characteristics, which comprises a machine body, a PC end, a mobile phone end and a Bluetooth peripheral, wherein the machine body comprises a left shielding cabinet and a right shielding cabinet, a cavity is formed by communication between the left shielding cabinet and the right shielding cabinet, a rotary table component is arranged in the cavity, the rotary table component comprises an electric translation table, one end of the electric translation table is provided with the Bluetooth peripheral rotary table, the other end of the electric translation table is provided with the mobile phone rotary table, the Bluetooth peripheral is arranged on the Bluetooth peripheral rotary table, the mobile phone end is arranged on the mobile phone rotary table, the rotating directions between the Bluetooth peripheral rotary table and the mobile phone rotary table are opposite, the electric translation table is used for controlling the Bluetooth peripheral rotary table to move towards the mobile phone rotary table, a rotary table control box is further arranged in the machine body, the rotary table control box is used for controlling the Bluetooth peripheral rotary table, the mobile phone rotary table and the electric translation table, a filter interface component is further arranged on the machine body and is electrically connected with the rotary table control box, the PC end is electrically connected with the mobile phone end and the control box through the filter interface component, the left shielding cabinet, the right shielding cabinet, the door and the mobile phone rotary table are respectively hinged to a cabinet door and a software arranged on the left shielding cabinet and the mobile phone and the rotary table, and the position of the computer are used for recording relative positions and the position of the software.
Further, the method comprises the following steps: the electric translation platform comprises a base, a limiting plate, a screw pipe, a screw rod, a limiting block and a third driving piece, wherein the limiting plate is fixedly arranged on the base, the third driving piece is fixedly arranged at one end of the base, the screw rod is arranged along the length direction of the base, one end of the screw rod is fixedly connected with an output shaft of the third driving piece, the other end of the screw rod is rotationally connected with the fixing base, the screw pipe is in meshed transmission with the outer ring threads of the screw rod, the limiting block is sleeved with the outer ring of the limiting plate and the limiting plate in sliding connection, the limiting block is fixedly connected with the screw pipe, and the Bluetooth peripheral turntable is arranged on the limiting block.
Further, the method comprises the following steps: the Bluetooth peripheral turntable comprises a first driving piece, a first rotating rod, a first rotating piece and a first rotating plate, wherein the first rotating piece is fixedly arranged on a limiting block, one end of the first rotating rod is fixedly connected with the first rotating piece, the other end of the first rotating rod is fixedly connected with the first rotating plate, and the first driving piece controls the first rotating rod to drive the first rotating plate to rotate through the first rotating piece.
Further, the method comprises the following steps: the mobile phone turntable comprises a supporting frame, a second driving piece, a second rotating rod and a second rotating plate, wherein the supporting frame is fixedly arranged in the cavity, the second rotating piece is fixedly arranged on the supporting frame, one end of the second rotating rod is fixedly connected with the second rotating piece, the other end of the second rotating rod is fixedly connected with the second rotating plate, and the second driving piece controls the second rotating rod to drive the second rotating plate to rotate through the second rotating piece.
Further, the method comprises the following steps: the filtering interface component comprises an AC power filter, a USB3.0 signal filter, an RJ45 signal filter, an RS232 signal filter and a waveguide tube, wherein the PC end is electrically connected with a mobile phone end in the machine body through the USB3.0 signal filter, the PC end is electrically connected with a turntable control box, the turntable control box is connected with a Bluetooth peripheral turntable, a mobile phone turntable and an electric translation platform in the machine body through the RJ45 signal filter, and the AC power filter is electrically connected with an external power supply.
Further, the method comprises the following steps: the monitoring device is arranged in the cavity, the PC end monitors the states of the mobile phone end and Bluetooth peripheral equipment in the cavity through the monitoring device and records a test data production report, and the PC is electrically connected with the monitoring device in the machine body through the RJ45 signal filter.
Further, the method comprises the following steps: the machine body further comprises a section bar support, a Fu Ma Jiaolun is further arranged at the bottom of the section bar support, and the Fuma caster is used for moving the machine body.
Further, the method comprises the following steps: the left shielding cabinet and the right shielding cabinet are connected through a quick locking hasp, and the quick locking hasp is used for fixing or detaching the left shielding cabinet and the right shielding cabinet.
Further, the method comprises the following steps: and ventilation waveguide windows are arranged on the left shielding cabinet and the right shielding cabinet.
Further, the method comprises the following steps: the novel cabinet is characterized in that a first air supporting rod and a second air supporting rod are further arranged between the left cabinet door and the right cabinet door and used for supporting the left cabinet door and the right cabinet door.
Compared with the prior art, the technical scheme provided by the invention has the following beneficial technical effects:
this device is through installing bluetooth peripheral hardware revolving stage, the cell-phone revolving stage, electronic translation platform, revolving stage control box and left side shielding cabinet and right side shielding cabinet isotructure, wherein the PC end is through USB3.0 signal filter, RJ45 signal filter, RS232 signal filter respectively with the cell-phone end in the organism, revolving stage control box and bluetooth peripheral hardware revolving stage, cell-phone revolving stage and electronic translation platform electric connection, be connected through the supervisory equipment in RJ45 signal filter and the cavity simultaneously, the PC end controls bluetooth peripheral hardware revolving stage and cell-phone revolving stage relative motion respectively, simultaneously control bluetooth peripheral hardware revolving stage orientation cell-phone revolving stage motion through electronic translation platform, at this in-process, the PC end is through bluetooth peripheral hardware and the cell-phone end in supervisory equipment monitoring cavity, and record detected data production report, accomplish the automated test to bluetooth peripheral hardware microspur characteristic. The invention provides automatic testing equipment applied to Bluetooth micro-distance characteristics, which can effectively shield external electromagnetic interference, improve testing stability and accuracy, and realize the function of measuring the distance between a Bluetooth peripheral and a mobile phone end at the most distant popup frame with different azimuth angles.
Drawings
FIG. 1 is a schematic view of the overall planar structure of the present invention;
FIG. 2 is a schematic view of the overall three-dimensional structure of the present invention;
FIG. 3 is a schematic perspective view of a turntable assembly according to the present invention;
fig. 4 is a schematic plan view of a filter interface assembly according to the present invention.
Reference numerals: 1. a body; 11. a left shielding cabinet; 111. a left cabinet door; 112. a first gas strut; 12. a right shielding cabinet; 121. a right cabinet door; 122. a second air strut; 13. a ventilation waveguide window; 14. a filter interface component; 141. an AC power filter; 142. USB3.0 signal filter; 143. an RJ45 signal filter; 144. an RS232 signal filter; 145. a waveguide; 2. monitoring equipment; 3. a turntable assembly; 31. bluetooth peripheral turntable; 311. a first driving member; 312. a first rotating lever; 313. a first rotating member; 314. a first rotating plate; 32. a mobile phone turntable; 321. a second driving member; 322. a second rotating lever; 323. a second rotating member; 324. a second rotating plate; 325. a support frame; 33. an electric translation stage; 331. a limiting plate; 332. a limiting block; 333. a third driving member; 334. a base; 335. a solenoid; 336. a screw; 4. a section bar bracket; 41. fu Ma Jiaolun; 5. a turntable control box; 6. a quick locking hasp; 7. a PC end; 8. a Bluetooth peripheral; 9. and a mobile phone terminal.
Detailed Description
The objects, technical solutions and advantages of the present invention will become more apparent by the following detailed description of the present invention with reference to the accompanying drawings. It should be understood that the description is only illustrative and is not intended to limit the scope of the invention. In addition, in the following description, descriptions of well-known structures and techniques are omitted so as not to unnecessarily obscure the present invention.
As shown in fig. 1-4, the automatic testing device for bluetooth macro characteristics provided by the invention comprises a machine body 1, a PC end 7, a mobile phone end 9 and a bluetooth peripheral 8, wherein the machine body 1 comprises a left shielding cabinet 11 and a right shielding cabinet 12, the left shielding cabinet 11 and the right shielding cabinet 12 are communicated to form a cavity, a turntable assembly 3 is arranged in the cavity, the turntable assembly 3 comprises an electric translation table 33, one end of the electric translation table 33 is provided with a bluetooth peripheral turntable 31, the other end is provided with a mobile phone turntable 32, the bluetooth peripheral 8 is arranged on the bluetooth peripheral turntable 31, the mobile phone end 9 is arranged on the mobile phone turntable 32, the bluetooth peripheral turntable 31 and the mobile phone turntable 32 relatively rotate, the electric translation table 33 is used for controlling the bluetooth peripheral turntable 31 to move towards the mobile phone turntable 32, still be provided with revolving stage control box 5 in the organism 1, revolving stage control box 5 is used for controlling the motion of revolving stage subassembly 3, still be provided with filtering interface subassembly 14 on the organism 1, filtering interface subassembly 14 and revolving stage control box 5 electric connection, PC end 7 is through filtering interface subassembly 14 and cell-phone end 9 and revolving stage control box 5 electric connection, left side shielding cabinet 11 and right side shielding cabinet 12 are last to articulate respectively has left cabinet door 111 and right cabinet door 121, through opening left side shielding door and right shielding door, can place bluetooth peripheral hardware 8 and cell-phone end 9 respectively on bluetooth peripheral hardware revolving stage 31 and cell-phone revolving stage 32, upper computer software is equipped with in the PC end 7, upper computer software is used for controlling the relative motion and the recording position and the angle of bluetooth peripheral hardware revolving stage 31 and cell-phone revolving stage 32.
1-4, the electric translation stage 33 comprises a base 334, a limiting plate 331, a screw tube 335, a screw rod 336, a limiting block 332 and a third driving part 333, wherein the limiting plate 331 is fixedly arranged on the base 334, the third driving part 333 is fixedly arranged at one end of the base 334, the screw rod 336 is arranged along the length direction of the base 334, one end of the screw rod 336 is fixedly connected with an output shaft of the first driving part 311, the other end of the screw rod 336 is rotationally connected with a fixed seat, the screw tube 335 is in meshed transmission with an outer ring thread of the screw rod 336, the limiting block 332 is sleeved between the outer ring of the limiting plate 331 and the limiting plate 331 in sliding connection, the limiting block 332 is fixedly connected with the screw tube 335, and the Bluetooth peripheral turntable 31 is arranged on the limiting block 332;
the PC end 7 is started through the third driving part 333 controlled by the upper computer software, the third driving part 333 is started to drive the output shaft to rotate, the output shaft rotates to further drive the screw 336 to rotate, the screw 336 rotates to drive the screw 335 sleeved on the outer ring of the screw 336 to move, the screw 335 moves to further drive the limiting block 332 to move on the limiting plate 331, and the limiting block 332 moves to drive the Bluetooth peripheral turntable 31 on the limiting block 332 to move towards the direction of the mobile phone turntable 32.
As shown in fig. 1-4, the bluetooth peripheral turntable 31 includes a first driving member 311, a first rotating rod 312, a first rotating member 313 and a first rotating plate 314, the first rotating member 313 is fixedly arranged on a limiting block 332, one end of the first rotating rod 312 is fixedly connected with the first rotating member 313, the other end of the first rotating rod 312 is fixedly connected with the first rotating plate 314, the first driving member 311 controls the first rotating rod 312 to drive the first rotating plate 314 to rotate through the first rotating member 313, the PC end 7 controls the first driving member 311 to start through upper computer software, the first driving member 311 starts to rotate through the first rotating rod 312, the first rotating rod 312 rotates and then drives the first rotating plate 314 to rotate, and the first rotating plate 314 rotates and then drives the bluetooth peripheral 8 on the first rotating plate 314 to rotate.
As shown in fig. 1-4, the mobile phone turntable 32 includes a support frame 325, a second driving member 321, a second rotating member 323, a second rotating rod 322 and a second rotating plate 324, where the support frame 325 is fixedly disposed in the cavity, the second rotating member 323 is fixedly disposed on the support frame 325, one end of the second rotating rod 322 is fixedly connected with the second rotating member 323, the other end of the second rotating rod 322 is fixedly connected with the second rotating plate 324, the second driving member 321 controls the second rotating member 322 to drive the second rotating plate 324 to rotate through the second rotating member 323, the PC end 7 is started through the upper computer software, the second driving member 321 is started to control the second rotating member 322 to rotate through the second rotating member 323, the second rotating rod 322 rotates to drive the second rotating plate 324, and the mobile phone end 9 on the second rotating plate 324 can be driven to rotate through the second rotating plate 324, and the first driving member 311, the second driving member 321 and the third driving member 333 can be specific motors.
As shown in fig. 1-4, the filtering interface assembly 14 includes an AC power filter 141, a USB3.0 signal filter 142, an RJ45 signal filter 143, an RS232 signal filter 144, and a waveguide 145, the pc end 7 is electrically connected to the mobile phone end 9 in the machine body 1 through the USB3.0 signal filter, the pc end 7 is electrically connected to the turntable control box 5, the turntable control box 5 is connected to the bluetooth peripheral turntable 31, the mobile phone turntable 32, and the electric translation stage 33 in the machine body 1 through the RJ45 signal filter 143, the AC power filter 141 is electrically connected to an external power supply, and all control interfaces in the filtering interface assembly 14 can be connected to an existing automation frame.
Through the illustration of fig. 1-4, still be provided with supervisory equipment 2 in the cavity, PC end 7 passes through supervisory equipment 2 and monitors the state of cell-phone end 9 and bluetooth peripheral hardware 8 in the cavity and record test data production report, and the PC passes through RJ45 signal filter 143 electric connection organism 1 inside supervisory equipment 2, and organism 1 still includes section bar support 4, and section bar support 4's bottom still is provided with fuma foot wheel 41, and fu Ma Jiaolun 41 is used for removing organism 1.
Through the illustration of fig. 1-4, connect through quick locking hasp 6 between left shield cabinet 11 and the right shield cabinet 12, quick locking hasp 6 is used for fixed or dismantlement left shield cabinet 11 and right shield cabinet 12, all be provided with ventilation waveguide window 13 on left shield cabinet 11 and the right shield cabinet 12, can ventilate in the organism 1 through setting up ventilation waveguide window 13, can also shield the interference of signal simultaneously, still be provided with first gas stay 112 and second gas stay 122 between left cabinet door 111 and the right cabinet door 121, first gas stay 112 and second gas stay 122 are used for supporting left cabinet door 111 and right cabinet door 121.
Working principle: firstly, the PC end 7 is respectively and electrically connected with the mobile phone end 9, the turntable control box 5, the Bluetooth peripheral turntable 31, the mobile phone turntable 32 and the electric translation table 33 in the machine body 1 through the USB3.0 signal filter 142, the RJ45 signal filter 143 and the RJ45 signal filter 143, meanwhile, the PC end 7 is respectively connected with the monitoring equipment 2 in the cavity through the RJ45 signal filter 143, the PC end 7 respectively controls the Bluetooth peripheral turntable 31 and the mobile phone turntable 32 to move relatively, meanwhile, the electric translation table 33 is used for controlling the Bluetooth peripheral turntable 31 to move towards the mobile phone turntable 32, in the process, the PC end 7 monitors the Bluetooth peripheral 8 and the mobile phone end 9 in the cavity through the monitoring equipment 2, and reports the distance between the mobile phone end 9 and the Bluetooth peripheral 8 on the electric translation table 33 (the electric translation table 33 can be automatically calibrated and reset), the data of the mobile phone turntable 32 and the Bluetooth peripheral turntable 31 can be automatically calibrated and reset) at any time through the filter interface component 14, and records the detected data to generate and derive a report, and complete the automatic test of the microspur characteristics of the Bluetooth peripheral 8.
In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings are merely for convenience in describing the present invention and simplifying the description, and do not indicate or imply that the apparatus or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present invention.
Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include one or more such feature. In the description of the present invention, the meaning of "a plurality" is two or more, unless explicitly defined otherwise.
The foregoing is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art, who is within the scope of the present invention, should make equivalent substitutions or modifications according to the technical scheme of the present invention and the inventive concept thereof, and should be covered by the scope of the present invention.

Claims (10)

1. Be applied to bluetooth microspur characteristic automation test equipment, including organism (1), PC end (7), cell-phone end (9) and bluetooth peripheral hardware (8), its characterized in that:
the machine body (1) comprises a left shielding cabinet (11) and a right shielding cabinet (12), a cavity is formed by communicating the left shielding cabinet (11) with the right shielding cabinet (12), a turntable assembly (3) is arranged in the cavity, the turntable assembly (3) comprises an electric translation table (33), one end of the electric translation table (33) is provided with a Bluetooth peripheral turntable (31), the other end of the electric translation table is provided with a mobile phone turntable (32), the Bluetooth peripheral (8) is arranged on the Bluetooth peripheral turntable (31), the mobile phone end (9) is arranged on the mobile phone turntable (32), the Bluetooth peripheral turntable (31) and the mobile phone turntable (32) are opposite in rotation direction, the electric translation table (33) is used for controlling the Bluetooth peripheral turntable (31) to move towards the mobile phone turntable (32), a turntable control box (5) is further arranged in the machine body (1), the turntable control box (5) is used for controlling the Bluetooth peripheral turntable (31), the mobile phone turntable (32) and the electric translation table (33) to move, the machine body (1) is further provided with a filter interface assembly (14), the filter interface assembly (14) is electrically connected with the turntable (14), the PC end (7) is electrically connected with the mobile phone end (9) and the turntable control box (5) through the filtering interface component (14), a left cabinet door (111) and a right cabinet door (121) are respectively hinged on the left shielding cabinet (11) and the right shielding cabinet (12), upper computer software is installed in the PC end (7), and the upper computer software is used for controlling the relative motion, recording position and angle of the Bluetooth peripheral turntable (31) and the mobile phone turntable (32).
2. An automated bluetooth macro characteristic test apparatus according to claim 1, wherein: the electric translation platform (33) comprises a base (334), a limiting plate (331), a screw tube (335), a screw rod (336), a limiting block (332) and a third driving piece (333), wherein the limiting plate (331) is fixedly arranged on the base (334), the third driving piece (333) is fixedly arranged at one end of the base (334), the screw rod (336) is arranged along the length direction of the base (334), one end of the screw rod is fixedly connected with an output shaft of the third driving piece (333), the other end of the screw rod is rotationally connected with a fixed seat, the screw tube (335) is in threaded engagement transmission with an outer ring of the screw rod (336), the limiting block (332) is sleeved with the outer ring of the limiting plate (331) and is in sliding connection with the limiting plate (331), the limiting block (332) is fixedly connected with the screw tube (335), and the Bluetooth peripheral turntable (31) is arranged on the limiting block (332).
3. An automated bluetooth macro characteristic test apparatus according to claim 2, wherein: the Bluetooth peripheral turntable (31) comprises a first driving piece (311), a first rotating rod (312), a first rotating piece (313) and a first rotating plate (314), wherein the first rotating piece (313) is fixedly arranged on a limiting block (332), one end of the first rotating rod (312) is fixedly connected with the first rotating piece (313), the other end of the first rotating rod is fixedly connected with the first rotating plate (314), and the first driving piece (311) controls the first rotating rod (312) to drive the first rotating plate (314) to rotate through the first rotating piece (313).
4. An automated bluetooth macro characteristic test apparatus according to claim 1, wherein: the mobile phone turntable (32) comprises a support frame (325), a second driving piece (321), a second rotating piece (323), a second rotating rod (322) and a second rotating plate (324), wherein the support frame (325) is fixedly arranged in the cavity, the second rotating piece (323) is fixedly arranged on the support frame (325), one end of the second rotating rod (322) is fixedly connected with the second rotating piece (323), the other end of the second rotating rod is fixedly connected with the second rotating plate (324), and the second driving piece (321) controls the second rotating rod (322) to drive the second rotating plate (324) to rotate through the second rotating piece (323).
5. An automated bluetooth macro characteristic test apparatus according to claim 1, wherein: the filtering interface component (14) comprises an AC power filter (141), a USB3.0 signal filter (142), an RJ45 signal filter (143), an RS232 signal filter (144) and a waveguide tube (145), wherein the PC end (7) is electrically connected with the mobile phone end (9) in the machine body (1) through the USB3.0 signal filter, the PC end (7) is electrically connected with the turntable control box (5), the turntable control box (5) is connected with a Bluetooth peripheral turntable (31), a mobile phone turntable (32) and an electric translation table (33) in the machine body (1) through the RJ45 signal filter (143), and the AC power filter (141) is electrically connected with an external power supply.
6. The automatic test equipment for bluetooth macro characteristics according to claim 5, wherein: the monitoring device is characterized in that monitoring equipment (2) is further arranged in the cavity, the PC end (7) monitors the states of the mobile phone end (9) and the Bluetooth peripheral equipment (8) in the cavity through the monitoring equipment (2) and records a test data production report, and the PC is electrically connected with the monitoring equipment (2) in the machine body (1) through an RJ45 signal filter (143).
7. An automated bluetooth macro characteristic test apparatus according to claim 1, wherein: the machine body (1) further comprises a section bar support (4), a support Ma Jiaolun (41) is further arranged at the bottom of the section bar support (4), and the support Ma Jiaolun (41) is used for moving the machine body (1).
8. An automated bluetooth macro characteristic test apparatus according to claim 1, wherein: the left shielding cabinet (11) and the right shielding cabinet (12) are connected through a quick locking hasp (6), and the quick locking hasp (6) is used for fixing or detaching the left shielding cabinet (11) and the right shielding cabinet (12).
9. An automated bluetooth macro characteristic test apparatus according to claim 1, wherein: and ventilation waveguide windows (13) are arranged on the left shielding cabinet (11) and the right shielding cabinet (12).
10. An automated bluetooth macro characteristic test apparatus according to claim 1, wherein: a first air supporting rod (112) and a second air supporting rod (122) are further arranged between the left cabinet door (111) and the right cabinet door (121), and the first air supporting rod (112) and the second air supporting rod (122) are used for supporting the left cabinet door (111) and the right cabinet door (121).
CN202111520670.2A 2021-12-13 2021-12-13 Be applied to bluetooth microspur characteristic automation test equipment Active CN114337856B (en)

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