Automatic assembly line type cellphone online testing method and system

An on-line test and flow-through technology, applied in measuring devices, telephone communications, instruments, etc., can solve problems such as low test efficiency, high manpower and time costs, and complicated communication process control

Active Publication Date: 2016-11-09
广东每通测控科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] In the prior art, most of the above-mentioned test items are directly judged manually by naked eyes, or are judged by half-manual and half-instrument methods, resulting in inaccurate test results
[0004] At the same time, at present, independent testing equipment is also used to test different test items separately. The cost of manpower and time is high, and the degree of automation is low, which also leads to defects such as low test efficiency and high labor cost.
[0005] Simultaneously, existing method that adopts test equipment to test mobile phone function, because the operating system or version number that it adopts is different among various mobile phones to be tested, makes the communication between the test equipment and the mobile phone to be tested It becomes a weak link in multi-functional testing, and it is impossible to make multiple tests tightly together and continuously, and it is also impossible to centralize multiple tests in one testing device
[0006] Due to the different operating systems, transmission control methods and error handling methods of various smart phones, the control of the communication process is complicated and not universal, which greatly increases the difficulty of signal and data transmission during the test process. Processes and equipment cannot be continuous and integrated

Method used

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  • Automatic assembly line type cellphone online testing method and system
  • Automatic assembly line type cellphone online testing method and system
  • Automatic assembly line type cellphone online testing method and system

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0075] In this embodiment, on the No. 1 test platform 2, the key-press test, the double-click wake-up function test, the NFC card mode test, the flashlight test and the OTG function test are sequentially performed on the mobile phone to be tested. Specifically: in the step (2), a driving assembly 21 is provided on the upper end of the No. 1 test bench 2 and above the upper conveying track 6, the driving assembly 21 includes a horizontal cylinder 211 and a vertical cylinder 212, and An NFC card reader 24 and a first photoelectric sensor 25 are arranged below the conveying track 6. The NFC card reader 24 is set on the No. 1 test bench 2 through the first adjustment mechanism. On the USB plug-in mechanism 9 of No. 1 test bench 2 and being positioned at the upper conveying track 6 front ends, an OTG function test board 26 is arranged, and an electronic switch is arranged on this OTG function test board 26; Described step (4) specifically includes The following steps:

[0076] (4....

Embodiment 2

[0083] In this embodiment, when the mobile phone 80 to be tested after carrying out the function test on the No. 1 test platform 2, carry out the No. 2 test platform 3 along with the test vehicle 8, and carry out the FM test on the No. 2 test platform 3 successively for the mobile phone to be tested. , Headphone button test, electroacoustic transmission test, electronic compass test, NFC reading mode test, photosensitive test, touch screen self-test test and screen brightness test. Specifically: in the step (2), the No. 2 test bench 3 is provided with an FM transmitter 31, an earphone jack 32 and a first area array light source board 33, and the earphone jack 32 is positioned at the upper delivery track 6- side, and its upper end is located above the upper delivery track 6, and is symmetrically arranged on the USB plug-in mechanism 9; on the second test bench 3 and below the upper delivery track 6, a second photoelectric sensor is arranged, and the upper delivery track 6 An NF...

Embodiment 3

[0095] In the present embodiment, when the mobile phone 80 to be tested after carrying out the functional test on the second test platform 3, carry out the No. 3 test platform 4 along with the test vehicle 8, and the indicator lights on the mobile phone to be tested are carried out successively on the No. 3 test platform 4. Test, Gravity Test, Gyroscope Test, Infrared Test, Hall Device Test, Diversity Antenna Test and Bluetooth Test. Specifically: in the step (2), a second area array light source board 41 is provided on the No. 3 test bench 4, and the second area array light source board 41 is connected to the No. On the platform 4, and the second area array light source board 41 is located directly above the upper conveying track 6, and the lower end surface of the second area array light source board 41 is provided with a sensor, a gray card and a magnet; There is an antenna platelet, and this antenna platelet is arranged on No. 3 test bench 4 by the 3rd adjusting mechanism;...

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PUM

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Abstract

The invention discloses an automatic assembly line type cellphone online testing method, and the method comprises the following steps: (1), implanting testing software in a plurality of to-be-tested cellphones; (2), preparing an automatic assembly line type cellphone online testing system; (3), enabling the to-be-tested cellphones to be placed on a testing carrier, wherein the to-be-tested cellphones is driven by the upper conveying rail to move to a testing machine bench along with the testing carrier; (4), enabling a PC to transmit an AT instruction to built-in testing software in the to-be-tested cellphones through a testing communication model, enabling a PLC to drive the testing machine bench to carry out one operation for the to-be-tested cellphones according to the content of the AT instruction, and enabling the testing software to test the functions of the to-be-tested cellphones; (6), taking out the to-be-tested cellphones after the detection is finished, enabling the testing carrier to move to the lower end of a feeding bench along with a lower conveying rail, and enabling a front end lifting platform to lift the testing carrier back to the feeding bench. The method is quick and accurate in testing instruction transmission, improves the testing efficiency, is quick and precise in testing, and reduces the testing time.

Description

technical field [0001] The invention relates to a mobile phone testing method, in particular to an automatic flow-type mobile phone online testing method and a system thereof. Background technique [0002] At present, due to the multiple functions of smart phones, after the assembly of the mobile phone is completed, various functions of the mobile phone need to be tested, including physical button test, virtual button test, double-click wake-up function test, NFC card mode test, mobile phone flashlight Test, OTG function test, FM test, headphone button test, electroacoustic transmission test, electronic compass test, NFC reading mode test, photosensitive test, touch screen self-test test, screen brightness test, etc., to ensure that the performance of the mobile phone meets the product quality requirements . [0003] In the prior art, most of the above-mentioned test items are judged manually by naked eyes, or by half-manual and half-instrument methods, resulting in inaccur...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01D21/02H04M1/24
CPCG01D21/02H04M1/24
Inventor 刘翥李炎林张恒
Owner 广东每通测控科技股份有限公司
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