WO2018133068A1 - Machine de test de téléphone mobile et procédé de test de téléphone mobile - Google Patents

Machine de test de téléphone mobile et procédé de test de téléphone mobile Download PDF

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Publication number
WO2018133068A1
WO2018133068A1 PCT/CN2017/072070 CN2017072070W WO2018133068A1 WO 2018133068 A1 WO2018133068 A1 WO 2018133068A1 CN 2017072070 W CN2017072070 W CN 2017072070W WO 2018133068 A1 WO2018133068 A1 WO 2018133068A1
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WIPO (PCT)
Prior art keywords
tested
product
mobile phone
robot
unit
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PCT/CN2017/072070
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English (en)
Chinese (zh)
Inventor
陈钧
Original Assignee
深圳市梓菡科技有限公司
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Priority to PCT/CN2017/072070 priority Critical patent/WO2018133068A1/fr
Publication of WO2018133068A1 publication Critical patent/WO2018133068A1/fr

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/24Arrangements for testing

Definitions

  • the invention relates to a testing device, in particular to a mobile phone testing machine and a mobile phone testing method.
  • the object of the present invention is to provide a mobile phone testing machine and a mobile phone testing method capable of recycling used mobile phones.
  • a mobile phone testing machine characterized in that it comprises:
  • the loading module is configured to carry a product discharging module, and the discharging module is provided with a data line, and the data line is communicatively connected with the product to be tested, and acquires hardware parameters and software parameters of the product to be tested;
  • a shooting module configured to capture a product to be tested, and obtain appearance data of the product to be tested
  • a robot module for adsorbing the product to be tested and driving the product to be tested to move
  • a labeling module configured to label the product to be tested
  • a receiving module configured to collect and process the tested product to be tested
  • a processor in communication with the discharging module and the shooting module, the processor receiving hardware parameters, software parameters, and appearance data of the product to be tested, and the product to be tested to evaluate.
  • the discharging module comprises:
  • a steering unit connected to the workbench, the steering unit driving the worktable to rotate with a bottom end of the worktable as a rotating shaft;
  • the table is slidably coupled to the longitudinal rail by the steering unit, and the steering unit drives the table to move along the longitudinal rail.
  • the steering unit includes a motor, a worm, the motor drives the worm to rotate, the turbine is coupled to the table, and the turbine rotates the table along the table The bottom end is rotated 45 degrees.
  • the discharging module further includes a data line moving unit and a selecting unit, the data line moving unit is disposed near a bottom end of the working table, and the plurality of the data lines are fixedly disposed on the data.
  • the selecting unit is configured to select a data line that is adapted to the product to be tested, the selecting unit is communicatively coupled to the data line moving unit, and the selecting unit controls the data line moving unit Move to the corresponding data line location and push the data line out.
  • the photographing module includes a camera moving unit and a lifting light source unit, and the camera moving unit and the lifting light source unit move toward or away from the product to be tested.
  • the camera moving unit includes: a camera, a fixed bottom plate, a camera lifting track, and a camera moving seat, wherein the camera is configured to collect appearance data of the product to be tested; and the fixed bottom plate extends along the Y axis.
  • the camera lifting rail is slidably disposed on the fixed bottom plate
  • the camera moving seat is slidably disposed on the camera lifting rail, and the camera is fixedly disposed on the camera moving seat.
  • the camera is a plurality of cameras, and a plurality of cameras are oppositely disposed on both sides of the camera moving seat, and the camera is an industrial camera.
  • the illuminating light source unit includes a light source lifting motor, a light source lifting rail, a light source bracket and a light source, wherein the light source is disposed on the light source bracket, and the light source bracket is slidably disposed on the light source lifting rail
  • the light source lifting motor drives the light source bracket to slide along the light source lifting rail.
  • the light source is rotatably disposed on the light source bracket to adjust an illumination angle of the light source.
  • the robot module comprises:
  • the mechanical hand suction cup is disposed on the robot lifting unit, the machine
  • the robot lifting unit drives the product to be tested to rise and fall;
  • the robot lifting unit is disposed on the robot lateral movement unit, and the robot lateral movement unit drives the robot lifting unit to move laterally.
  • the robotic suction cup includes a plurality of vacuum chucks.
  • the robot module further includes a touch pen, and the touch pen is fixedly disposed on the suction cup of the robot.
  • the robot lifting unit includes a robot lifting motor and a lifting rail.
  • the robot suction cup is slidably disposed on the lifting rail, and the robot lifting motor drives the robot suction cup to move along the lifting rail. motion.
  • the robot module further includes a robot rotation mechanism, the robot rotation mechanism is coupled to the robot suction cup, and the robot suction cup is rotatably disposed on the robot lifting unit, and the robot rotation mechanism drives the The robot sucker rotates.
  • the robot rotation mechanism includes a rotating electric machine and a gear, the rotating electric motor drives the gear to rotate, and the gear is coupled with the mechanical hand suction cup to rotate the mechanical hand suction cup.
  • the receiving module includes a receiving worktable, a receiving lifting rail, a receiving motor and a receiving box, and the receiving workbench is slidably disposed on the receiving lifting rail,
  • the receiving motor drives the receiving workbench to move along the receiving lifting rail, and the receiving workbench transports the mobile phone to be tested into the receiving bin.
  • the billing mechanism is further included, and the billing mechanism is configured to output the required cash for purchasing the product to be tested.
  • the cash dispensing mechanism includes a cash deposit box and a cash dispenser, the cash dispenser is in communication with the processor, and the cash dispenser outputs a corresponding quantity according to the detection of the processor. Cash.
  • a mobile phone testing method includes the steps of:
  • the product to be tested is withdrawn from the mobile phone testing machine; if the evaluation result is agreed, the product to be tested is adsorbed, and the product to be tested is moved to the labeling position;
  • the product to be tested is placed inside the mobile phone testing machine through the discharging module, and the hardware parameters and software parameters of the product to be tested are obtained by inserting the data line. Then, the product to be tested is photographed by the photographing module, and the appearance data of the product to be tested is obtained.
  • the processor evaluates the product to be tested according to the above hardware parameters, software parameters, and appearance data.
  • the robot module adsorbs the product to be tested and drives the product to be tested to move.
  • the robot module moves the product to be tested to the labeling module.
  • the labeling module is used for labeling the product to be tested.
  • the receiving module is used for recycling the tested products to be tested. Therefore, through the above-mentioned mobile phone testing machine, the recycling of used mobile phones can be realized, and the used mobile phones can be processed centrally to avoid environmental pollution. Recycled used mobile phones can be reused to avoid wasting resources.
  • the above mobile phone testing method tests the mobile phone to be tested by using the mobile phone testing machine provided by the present invention.
  • the data line is directly connected to the mobile phone to be tested, and according to the data stored in the mobile phone, the hardware parameters and software parameters of the mobile phone to be tested can be accurately obtained.
  • the evaluation of the product to be tested provides a more accurate basis to ensure the objectivity and accuracy of the evaluation structure so that the parties can finally conclude a transaction.
  • FIG. 1 is a schematic structural diagram of a mobile phone testing machine according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural view of the discharging module according to FIG. 1;
  • FIG. 3 is a schematic structural view of a camera moving unit according to FIG. 1;
  • FIG. 4 is a schematic structural view of a lifting light source unit according to FIG. 1;
  • Figure 5 is a schematic structural view of the manipulator module shown in Figure 1;
  • FIG. 6 is a schematic structural view of the labeling module according to FIG. 1;
  • Figure 7 is a schematic structural view of the receiving module according to Figure 1;
  • Figure 8 is a schematic view showing the structure of the cash dispensing mechanism shown in Figure 1;
  • FIG. 9 is a schematic flowchart diagram of a mobile phone testing method according to an embodiment of the present invention.
  • the reference numerals are as follows: 1. Mobile phone testing machine; 11, box; 12, discharging module; 121, Workbench; 122, steering unit; 123, longitudinal rail; 124, data line moving unit; 125, data line; 13, shooting module; 131, camera moving unit; 132, lifting light source unit; 133, camera; 134, fixed bottom plate 135, camera lifting track; 136, camera moving seat; 137, light source lifting motor; 138, light source lifting rail; 139, light source bracket; 130, light source; 14, robot module; 141, robot suction cup; 142, robot lifting unit; 143, robot lateral movement unit; 144, robot lift motor; 145, lifting rail; 146, transverse rail; 147, lateral drive motor; 148, robot rotation mechanism; 15, labeling module; 151, label tape fixing bracket; , take-up reel; 153, stripping board; 154, suction cup; 155, suction cup pushing mechanism; 16, receiving module; 161, receiving work table; 162, receiving lifting rail; 163, receiving motor
  • the invention provides a mobile phone testing machine for detecting products to be tested.
  • the product to be tested of the mobile phone test machine can be an electronic device such as a mobile phone or a PAD.
  • the mobile phone is taken as an example for explanation.
  • the mobile phone testing machine 1 of the present embodiment includes a box 11 , a discharging module 12 , a shooting module 13 , a robot module 14 , a receiving module 16 , and a processor (not shown).
  • the discharging module 12, the imaging module 13, the robot module 14, the labeling module 15, the receiving module 16, and the processor are all housed in the casing 11.
  • the casing 11 is a rectangular parallelepiped.
  • the box 11 is used to carry the discharging module 12 , the shooting module 13 , the robot module 14 , the receiving module 16 and the processor. And the bottom of the casing 11 is provided with legs 111 for supporting the casing 11.
  • the box 11 integrates the mobile phone testing machine into a single unit, and the mobile phone testing machine can be transported and transported according to the use requirements, thereby enhancing the convenience of using the mobile phone testing machine.
  • the discharging module 12 is used to carry the product to be tested.
  • the discharging module 12 is provided with a data line, and the data line is communicatively connected with the product to be tested, and acquires hardware parameters and software parameters of the product to be tested.
  • the photographing module 13 is configured to photograph the product to be tested, and obtain appearance data of the product to be tested.
  • the robot module 14 is used for adsorbing the product to be tested and driving the product to be tested to move.
  • the labeling module 15 is used for labeling the product to be tested.
  • the receiving module 16 is configured to collect and process the tested products to be tested.
  • the processor is in communication with the discharging module 12 and the shooting module 13.
  • the processor receives hardware parameters, software parameters, and appearance data of the product to be tested, and evaluates the product to be tested.
  • the product to be tested is placed inside the mobile phone testing machine through the discharging module 12, and the hardware parameters and software parameters of the product to be tested are obtained by inserting the data line. Then, the product to be tested is photographed by the photographing module 13 to obtain appearance data of the product to be tested.
  • the processor evaluates the product to be tested according to the above hardware parameters, software parameters, and appearance data.
  • the robot module 14 adsorbs the product to be tested and drives the product to be tested to move.
  • the robot module 14 moves the product to be tested to the labeling module 15.
  • the labeling module 15 is used for labeling the product to be tested.
  • the receiving module 16 is configured to recycle the tested product to be tested. Therefore, through the above-mentioned mobile phone testing machine, the recycling of used mobile phones can be realized, and the used mobile phones can be processed centrally to avoid environmental pollution. Recycled used mobile phones can be reused to avoid wasting resources.
  • the casing 11 is a rectangular parallelepiped.
  • the height direction of the casing 11 is the longitudinal Z-axis direction
  • the length of the casing 11 is the X-axis direction
  • the width direction is the Y-axis direction.
  • the discharging module 12 is disposed in the middle portion of the front surface of the casing 11, which is convenient for the user to put Material operation.
  • the discharge module 12 includes a table 121, a steering unit 122, and a longitudinal rail 123.
  • the work table 121 is used to place the product to be tested.
  • the work table 121 is a square platform that is adapted to the shape of the product to be tested.
  • the discharging module 12 further includes a data line moving unit 124 and a selecting unit (not shown).
  • the data line moving unit 124 is disposed near the bottom end of the table 121.
  • a plurality of data lines 125 are fixedly disposed on the data line moving unit 124.
  • the plug of the data line 125 is evenly arranged at the bottom end of the table 121 to facilitate insertion with the product to be tested.
  • the data lines 125 may be evenly arranged along the moving direction of the data line moving unit 124.
  • the USB terminal of the data line 125 is connected to the processor, and the other end of the data line 125 is connected to the mobile phone. Therefore, the distinction is made according to the type of the data line 125 according to the matching type of the mobile phone of the data line.
  • the data line 125 can be a mobile phone data line that matches the ISO operating system, and a mobile phone data line that matches the A ndroid operating system.
  • the selection unit is for selecting a data line 125 that is adapted to the product to be tested.
  • the selection unit is in communication with the data line moving unit 124, and the selection unit controls the data line moving unit 124 to move to the corresponding data line 125 position and pushes the data line 125 out.
  • the user selects the data line 125 of the corresponding model on the selection unit according to the model of the mobile phone to be tested. Based on the result of the selection unit, the data line moving unit 124 moves to the position of the data line 125 of the corresponding model.
  • the data line moving unit 124 includes a track bearing and an eccentric wheel, and the track bearing moves to the position of the data line 125 of the corresponding model, and then the data line 125 is taken out by the rotation of the eccentric wheel, so that the mobile phone to be tested can be correspondingly
  • the data line 125 is connected.
  • the steering unit 122 is connected to the table 121.
  • the steering unit 122 drives the table 121 to rotate with the bottom end of the table 121 as a rotating shaft.
  • the initial state of the table 121 is an inclined state, which is at an angle of 45 degrees with the horizontal plane, so that the data line 125 is docked with the handset jack. After the handset is placed on the table 121, the user can slide down the tilt angle of the table 121.
  • the data line plug exited by the data line 125 moving unit 124 is also set at 45 degrees, and the data line 125 plug is directly opposite to the mobile phone socket, facilitating the connection between the mobile phone and the data line 125.
  • the steering unit 122 includes a motor, a worm.
  • the motor drives the worm to rotate, the turbine is coupled to the table 121, and the turbine rotating table 121 is rotated 45 degrees along the bottom end of the table 121.
  • the steering unit 122 drives the table 121 to rotate 45 degrees to return the table 121 to the horizontal state.
  • the longitudinal rail 123 extends along the Y axis.
  • the table 121 is slidably coupled to the longitudinal rail 123 by the steering unit 122, and the steering unit 122 drives the table 121 to move along the longitudinal rail 123.
  • the discharging module 12 moves the mobile phone to be tested to the underside of the camera of the shooting module 13 through the vertical rail 123, and the camera samples relevant data.
  • the photographing module 13 is disposed at a middle portion of the box 11 and located at one side of the longitudinal rail 123 of the discharging module 12 .
  • the imaging module 13 includes a camera moving unit 131 and a lifting light source unit 132.
  • the camera moving unit 131 and the lifting light source unit 132 move toward or away from the product to be tested.
  • the camera moving unit 131 further includes a camera 133 , a fixed bottom plate 134 , a camera lifting rail 135 , and a camera moving base 136 .
  • the camera 133 is used to collect appearance data of the product to be tested.
  • the fixed bottom plate 134 is provided with precision parts such as a stepping motor, a timing belt, and a line rail.
  • the fixed bottom plate 134 extends along the Y axis.
  • the camera lifting rail 135 can be slidably disposed on the fixed bottom plate 134, the stepping motor drives the camera lifting rail 135 to move, and the timing belt and the rail track ensure that the camera lifting rail 135 smoothly moves along the Y axis.
  • the camera moving seat 136 can be slidably disposed on the camera lifting rail.
  • the camera lift rail is placed along the Z axis. The camera is fixedly disposed on the camera moving seat 136.
  • the camera has a plurality of cameras and is oppositely disposed on both sides of the camera moving base 136. And the camera is an industrial camera. Industrial cameras have higher pixels and higher resolution, ensuring the camera's shooting. Moreover, the plurality of cameras include a color camera and a black and white camera to more accurately acquire appearance data of the mobile phone from different imaged images.
  • the hoist light source unit 132 includes a light source lifting motor 137 , a light source lifting rail 138 , a light source bracket 139 , and a light source 130 .
  • the light source 130 is disposed on the light source support 139.
  • the light source support 139 is slidably disposed on the light source lifting rail 138.
  • the light source lifting motor 137 drives the light source holder 130 to slide along the light source lifting rail 138.
  • the light source 130 includes four light tubes that are spliced into a frame shape.
  • the light source bracket 139 has a rectangular frame structure, and four light tubes are respectively disposed on the four sides of the light source bracket 139.
  • the four lamps include a left tube, a right tube, a front tube, and a rear tube. Four tubes ensure the light intensity throughout the phone and ensure that the camera's shooting light is sufficient.
  • the light source 130 is rotatably disposed on the light source holder 139 to adjust the illumination angle of the light source.
  • the light source 130 is irradiated onto the mobile phone to be tested at the most appropriate angle, thereby achieving the best shooting effect.
  • the light source 130 can be provided with a bayonet, and when the light source is rotated to an appropriate angle, the light source is fixed by the bayonet, thereby completing the adjustment of the illumination angle of the light source.
  • the photographing module 13 completes the photographing work of the mobile phone to be tested, the appearance data of the mobile phone to be tested is acquired, and then the mobile phone module 14 is required to drive the mobile phone to be tested to move.
  • the robot module 14 includes a robot suction cup 141 , a robot lifting unit 142 , and a robot lateral movement unit 143 .
  • the robot module 14 is disposed in the middle of the casing 11 and is disposed on the other side of the discharging module 12 with respect to the shooting module 13 to facilitate the robot module 14 to suck the photographed mobile phone to be tested.
  • the robot suction cup 141 is used to adsorb the product to be tested.
  • the robotic suction cup 141 includes a plurality of vacuum chucks. A plurality of vacuum chucks are evenly arranged to ensure that the robot suction cup 141 can stably adsorb the mobile phone to be tested.
  • the robot suction cup 141 is disposed on the robot lifting unit 142, and the robot lifting unit 142 drives the product to be tested to move up and down.
  • the robot lifting unit 142 includes a robot lifting motor 144 and a lifting rail 145.
  • the robot suction cup 141 is slidably disposed on the lifting rail 145, and the lifting rail 145 extends along the Z axis.
  • the robot lifting motor 144 drives the robot suction cup 141 to move up and down along the lifting rail 145, so that the mobile phone to be tested moves along the Z axis.
  • the robot lifting unit 142 is disposed in the robot lateral movement unit 143, and the robot lateral movement unit 143 drives the robot lifting unit 142 to move laterally.
  • the robot lateral movement unit 143 includes a lateral rail 146 and a lateral drive motor 147.
  • the transverse rail 146 extends along the X axis.
  • the lateral drive motor 147 drives the robot lift unit 142 to move along the lateral rail 146 to move the handset to be tested along the X axis.
  • the robot module 14 also includes a touch pen (not shown).
  • the touch pen is fixedly provided with a robot suction cup 141. There are four vacuum chucks placed in the four corners of the rectangle. Then the touch pen is placed at the center of the rectangle.
  • the robot lifting unit 142 and the robot lateral moving unit 143 can drive the touch pen to move, so as to complete the touch operation of the mobile phone to be tested, before the robot suction cup 141 is used to touch the mobile phone to be tested.
  • the robot module 14 also includes a robotic rotation mechanism 148.
  • the robot rotating mechanism 148 is coupled to the robot chuck 141, and the robot chuck 141 is rotatably provided to the robot lifting unit 142.
  • the robot rotating mechanism 148 drives the robot suction cup 141 to rotate.
  • the robot rotating mechanism 148 includes a rotating electric machine and a gear. The rotating electric machine drives the gear to rotate, and the gear is coupled with the mechanical suction cup 141 to rotate the mechanical suction cup 141.
  • the robot module 14 will complete the appearance of the mobile phone to be tested, and the mobile phone is sucked by the vacuum suction cup and moved to the labeling module 15.
  • the labeling module 15 is located on the side of the robot module 14, the robot The module 14 rotates the robot suction cup 141 by the robot rotation mechanism 148, thereby driving the mobile phone to be tested to rotate. After the robot rotating mechanism 148 is rotated 90 degrees toward the labeling module 15, the mobile phone to be tested reaches the predetermined position of the labeling of the labeling module 15.
  • the labeling module 15 is disposed on one side of the robot module 14 to facilitate the robot module 14 to transport the mobile phone to be tested into position.
  • the labeling module 15 is used for labeling the product to be tested.
  • the labeling module 15 includes a label tape fixing bracket 151, a take-up reel 152, a peeling plate 153, a suction cup 154, and a suction cup pushing mechanism 155.
  • the label tape fixing bracket 151 is a rotating shaft for fixing the labelled roll paper
  • the take-up tape reel 152 is a roll paper remaining after collecting the peeling label.
  • the stripping plate 153 is used to separate the label on the label tape from the roll paper.
  • the suction cup 154 sucks the label, conveys the label to the predetermined position of the label by the suction cup pushing mechanism 155, and then releases the suction force, so that the label is attached to the mobile phone to be tested.
  • the suction cup pushing mechanism 155 drives the suction cup 154 back.
  • the code set on the label may be in the form of a barcode or a two-dimensional code.
  • the mobile phone testing machine is stored in an encoded form corresponding to the hardware parameters, software parameters and appearance data of the mobile phone to be tested. By calling the code, the hardware parameters, software parameters and appearance data of the corresponding mobile phone can be queried, which is convenient for management and query.
  • the receiving module 16 is disposed at the bottom of the cabinet 11 for collecting the completed mobile phone.
  • the receiving module 16 includes a receiving work table 161, a receiving and lowering guide rail 162, a receiving motor 163, and a receiving box 164.
  • the receiving work table 161 is slidably disposed on the receiving lifting rail 162, and the receiving lifting rail 162 extends along the Z axis.
  • the receiving motor 163 drives the receiving table 161 to move along the receiving lifting rail 162.
  • the robot module 14 moves the mobile phone to the receiving worktable 161 of the receiving module 16, and stores the mobile phone on the receiving worktable 161 through the receiving lifting rail 162.
  • the receiving box 164 has a plurality of boxes, which can be separately binned for the type of the mobile phone to be tested.
  • the mobile phone testing machine 1 further includes a cash dispensing mechanism 17.
  • the dispensing mechanism 17 is used to output the required cash for purchasing the product to be tested.
  • the bill dispensing mechanism 17 includes a cash deposit box 171 and a cash dispenser 172.
  • the banknote cassette 171 is used to store cash.
  • the cash dispenser 172 is in communication with the processor, and the cash dispenser 172 outputs a corresponding amount of cash based on the detection by the processor.
  • the processor is provided inside the casing 11.
  • a variety of test software for testing mobile phones are installed in the processor.
  • the processor can then apply the test software to the mobile phone to be tested, and perform accurate evaluation on the mobile phone to be tested.
  • the invention also provides a mobile phone testing method.
  • a mobile phone testing method includes the following steps:
  • Step S110 providing the above mobile phone testing machine.
  • Step S120 Put the product to be tested into the discharging module, and obtain the hardware parameters and software parameters of the product to be tested by inserting the data line.
  • Step S130 shooting the product to be tested, and obtaining appearance data of the product to be tested.
  • Step S140 according to the hardware parameters of the product to be tested, the software parameters and the appearance data of the product to be tested, and the products to be tested are evaluated.
  • the product to be tested exits the mobile test machine.
  • Step S150 labeling the product to be tested.
  • Step S160 collecting the product to be tested.
  • the above mobile phone testing method tests the mobile phone to be tested by using the mobile phone testing machine provided by the present invention.
  • the data line is directly connected to the mobile phone to be tested, and according to the data stored in the mobile phone, the hardware parameters and software parameters of the mobile phone to be tested can be accurately obtained.
  • the evaluation of the product to be tested provides a more accurate basis to ensure the objectivity and accuracy of the evaluation structure so that the parties can finally conclude a transaction.
  • the recycling of used mobile phones can be realized, and the used mobile phones can be processed centrally to avoid environmental pollution. Recycled used mobile phones can be reused to avoid wasting resources.

Abstract

L'invention concerne une machine de test de téléphone mobile et un procédé de test de téléphone mobile. La machine de test de téléphone mobile comprend un module de décharge conçu pour transporter un produit à tester, un module de photographie, un module de bras de robot, un module de réception et un processeur, le module de décharge étant pourvu d'une ligne de données, et la ligne de données étant en liaison de communication avec le produit à tester, de façon à acquérir un paramètre matériel et un paramètre logiciel du produit à tester ; le module de photographie acquiert des données d'apparence du produit à tester ; le module de bras de robot entraîne le déplacement du produit à tester ; un module d'étiquetage est utilisé pour étiqueter le produit à tester ; et le processeur est en liaison de communication avec le module de décharge et le module de photographie, et le processeur reçoit le paramètre matériel, le paramètre de logiciel et les données d'apparence du produit à tester, et évalue le produit à tester. Au moyen de la machine de test de téléphone mobile et du procédé de test de téléphone mobile, le recyclage de téléphones mobiles mis au rebut peut être réalisé, et les téléphones mobiles utilisés peuvent être traités de manière centralisée de façon à éviter une pollution environnementale. Les téléphones mobiles mis au rebut qui sont recyclés peuvent être réutilisés de façon à éviter le gaspillage de ressources.
PCT/CN2017/072070 2017-01-22 2017-01-22 Machine de test de téléphone mobile et procédé de test de téléphone mobile WO2018133068A1 (fr)

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WO2020191919A1 (fr) * 2019-03-26 2020-10-01 博众精工科技股份有限公司 Dispositif de détection d'apparence et procédé de détection d'apparence d'un produit à détecter
WO2020259069A1 (fr) * 2019-06-28 2020-12-30 宁波舜宇光电信息有限公司 Étage d'objet, dispositif de détection de module de caméra, système de détection comprenant ce dernier et procédé de détection correspondant
US11482067B2 (en) 2019-02-12 2022-10-25 Ecoatm, Llc Kiosk for evaluating and purchasing used electronic devices
US11798250B2 (en) 2019-02-18 2023-10-24 Ecoatm, Llc Neural network based physical condition evaluation of electronic devices, and associated systems and methods
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