Mobile equipment testing device
By integrating NFC, charging, and vibration testing modules into the mobile device testing device, and utilizing the rational layout of lifting and transmission modules, the problem of multi-device testing is solved, achieving efficient, compact, and multifunctional testing.
Patent Information
- Application Number
- CN202423321078.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-31
AI Technical Summary
In the existing technology, mobile device testing requires multiple independent testing devices, resulting in high costs and large space requirements. Furthermore, existing integrated devices have complex structures and large sizes.
Design a mobile device testing device that integrates an NFC testing module, a charging testing module, and a vibration testing module onto a single frame. Through the rational layout of the lifting module and the transmission module, multifunctional testing can be achieved, saving space and cost.
It improves testing efficiency, saves testing time and costs, and makes reasonable use of space with a compact structure, facilitating simultaneous multi-functional testing.
Smart Images

Figure CN223597135U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of mobile device detection, and in particular to a mobile device testing device. BACKGROUND
[0002] With the rapid development of science and technology, mobile devices including mobile phones and tablet computers have become increasingly popular. In the production and manufacturing process of mobile devices, the functions of mobile devices need to be tested, and only mobile devices that pass the tests can be shipped to the market.
[0003] The tests on mobile devices include, but are not limited to, mobile device vibration tests, mobile device charging tests, and NFC (Near Field Communication) function tests of mobile devices. Related technologies generally assign each test item to a corresponding test device for corresponding test operations.
[0004] In related technologies, a mobile device often needs multiple test devices, which not only increases the cost of manufacturing test devices, but also occupies test space. CONTENT OF THE UTILITY MODEL
[0005] The present application provides a mobile device testing device to solve the problem that a mobile device needs multiple test devices in related technologies.
[0006] The present application provides a mobile device testing device, which includes a frame body, a conveying module, an NFC testing module, a charging testing module, and a vibration testing module. The conveying module is arranged on the frame body and is used to provide a conveying path in a first direction. The NFC testing module is arranged on the frame body and is used to test the NFC function of a mobile device. The charging testing module is arranged on the frame body and is used to test the charging function of a mobile device. The charging testing module and the NFC testing module are respectively located on opposite sides of the conveying module in a second direction. The vibration testing module is movably arranged on the frame body in a third direction. The vibration testing module can move to the conveying path of the conveying module and is used to test the vibration function of a mobile device.
[0007] The mobile device testing device provided by the present application integrates multiple test modules on one device by arranging the NFC testing module, the charging testing module, and the vibration testing module on the frame body. This can be compatible with the testing of multiple functions of a mobile device, can increase testing efficiency, save testing time, and can save testing costs by integrating multiple test modules on one device.
[0008] In addition, the NFC testing module and the charging testing module in the application are respectively located on two sides of the conveying module, so that the distance between the testing module and the conveying module is closer, and the NFC testing and the charging testing can be simultaneously performed. The vibration testing module is movably arranged, so that the position of the vibration testing module is flexible and variable, and the position can be reasonably changed according to the requirement, thereby avoiding long-time occupation of a position space of the frame body.
[0009] Furthermore, the NFC testing module, the conveying module and the charging testing module are arranged along the second direction in the application, which is equivalent to transversely arranging the three modules on the frame body, and the vibration testing module is movably arranged along the third direction, which is equivalent to vertically arranging the vibration testing module on the frame body. In this way, the horizontal and vertical spaces of the frame body can be reasonably utilized, and a single direction space of the frame body is not occupied, so that the frame body space can be reasonably arranged, the space utilization rate of the frame body is relatively sufficient, and the structure of the testing device is compact.
[0010] In a possible implementation, the lifting module further comprises a lifting frame and a lifting driving structure, an output end of the lifting driving structure can provide reciprocating motion along the third direction, the lifting driving structure is connected to the frame body, and the vibration testing module is connected to the lifting frame.
[0011] In a possible implementation, the lifting module further comprises a transmission structure, the transmission structure is connected to the lifting frame, the transmission structure has a transmission path arranged along the first direction, the vibration testing module is located at one end of the transmission path of the transmission structure, and when the lifting frame moves along the third direction, the end of the transmission structure away from the vibration testing module can be docked with the conveying module.
[0012] In a possible implementation, the lifting module is further provided with a first positioning structure, the first positioning structure comprises a first positioning drive connected to the lifting frame, an output end of the first positioning drive moves along the second direction, and a first positioning member is connected to the output end, so that the first positioning member moves along the second direction to position the article on the transmission structure.
[0013] In a possible implementation, the lifting module further comprises a second positioning structure, the second positioning structure comprises a second positioning drive connected to the lifting frame, an output end of the second positioning drive moves along the third direction, and a second positioning member is connected to the output end of the second positioning drive, the second positioning member is located at the end of the transmission structure along the first direction.
[0014] In a possible implementation, the vibration testing module comprises a vibration fixing frame, a vibration driver, and a vibration testing unit. The vibration fixing frame is connected to the lifting frame. The vibration driver is connected to the vibration fixing frame. An output end of the vibration driver moves in a third direction. The vibration testing unit is connected to the output end of the vibration driver.
[0015] In a possible implementation, the vibration testing unit comprises a testing mounting base, a vibration testing head, and an elastic member. The testing mounting base is mounted to the output end of the vibration driver. The vibration testing head is movably connected to the testing mounting base. The elastic member is arranged between the vibration testing head and the testing mounting base.
[0016] In a possible implementation, the mobile device testing apparatus further comprises a reflow module. The reflow module and the conveying module are arranged at intervals in a third direction. The lifting module is movable between the conveying module and the reflow module. The reflow module comprises a reflow frame and a reflow driving structure. The reflow frame is connected to the frame body. The reflow driving structure is connected to the reflow frame. The reflow driving structure is configured to provide a transmission path in the first direction.
[0017] In a possible implementation, the NFC testing module comprises an NFC testing frame and NFC testing cards. The NFC testing frame is provided with a plurality of testing stations. The NFC testing cards are provided in a plurality of sets. Each of the testing stations is provided with a plurality of NFC testing cards. The NFC testing cards in adjacent testing stations are arranged in a staggered manner.
[0018] In a possible implementation, the charging testing module comprises a charging testing frame and a charging testing box. The charging testing frame is connected to the frame body. The charging testing box is connected to the charging testing frame. The charging testing box is provided with a placing groove. BRIEF DESCRIPTION OF DRAWINGS
[0019] The accompanying drawings, which are incorporated herein and form a part of the specification, illustrate embodiments consistent with the present application and, together with the description, further serve to explain the principles of the application.
[0020] Figure 1 An exploded view of a mobile device testing apparatus according to an embodiment of the present application;
[0021] Figure 2 A structural schematic view of a mobile device testing apparatus according to an embodiment of the present application;
[0022] Figure 3 Another structural schematic view of a mobile device testing apparatus according to an embodiment of the present application;
[0023] Figure 4A structural schematic view of the lifting module provided by the embodiment of the present application;
[0024] Figure 5 Another structural schematic view of the lifting module provided by the embodiment of the present application;
[0025] Figure 6 A structural schematic view of the vibration test module provided by the embodiment of the present application;
[0026] Figure 7 A structural schematic view of the NFC test module provided by the embodiment of the present application;
[0027] Figure 8 A structural schematic view of the charging test module provided by the embodiment of the present application;
[0028] Figure 9 A structural schematic view of the conveying module provided by the embodiment of the present application;
[0029] Figure 10 A structural schematic view of the reflow module provided by the embodiment of the present application;
[0030] Figure 11 A partial structural schematic view of the mobile device test device provided by the embodiment of the present application;
[0031] Figure 12 Another partial structural schematic view of the mobile device test device provided by the embodiment of the present application.
[0032] Explanation of reference signs:
[0033] 10, frame body; 11, base; 12, base table; 13, support;
[0034] 20, conveying module; 21, conveying frame; 211, guide; 22, conveying structure; 23, side pushing structure; 231, side pushing seat; 232, side pushing driving member; 233, side pushing member;
[0035] 30, NFC test module; 31, NFC test frame; 311, support; 312, support plate; 313, limiting member; 32, NFC test card;
[0036] 40, charging test module; 41, charging test frame; 42, charging test box; 421, placing groove;
[0037] 50, vibration test module; 51, vibration fixing frame; 52, vibration driving; 53, vibration test part; 531, test mounting seat; 532, vibration test head; 533, elastic member;
[0038] 60, lifting module; 61, lifting frame; 611, fixing piece; 62, lifting driving structure; 63, transmission structure; 64, first positioning structure; 641, first positioning driving; 642, first positioning piece; 65, second positioning structure; 651, second positioning driving; 652, second positioning piece;
[0039] 70, backflow module; 71, backflow frame; 72, backflow driving structure;
[0040] 80, carrying module; 81, carrying driving structure; 82, carrying manipulator; 821, carrying frame; 822, grabbing piece;
[0041] 90, code scanning module; 91, code scanning fixing seat; 92, code scanning piece.
[0042] The specific embodiments of the present application have been shown and described in the above drawings, and will be described in more detail hereinafter. These drawings and detailed description are not intended to limit the scope of the present application concept in any way, but to illustrate the present application concept to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION
[0043] The exemplary embodiments will be described in detail herein with reference to the attached drawings. The same numbers are used in different drawings to represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all the implementations consistent with the present application. Instead, they only represent examples of apparatuses and methods consistent with some aspects of the present application, as detailed in the appended claims.
[0044] The mobile device testing device provided by the embodiments of the present application can be used to test the functions of the mobile device, and can be used to test the NFC function, the charging function and the vibration function of the mobile device. However, the testing device of the present application is not limited to the above functions, and other functions of the mobile device can be tested according to actual needs. The mobile device of the present application includes but is not limited to mobile phones, tablet computers and other devices.
[0045] As mentioned in the background, the related art often needs multiple test devices to cooperate when testing the functions of the mobile device, which not only increases the cost of testing, but also occupies a large space. In addition, in some related art, although multiple test functions are integrated into one device, these devices are simply mechanically combined together, and the layout between the structures is not considered, which leads to a relatively complex structure and a large size of the device for testing multiple functions of the mobile device in the related art.
[0046] The mobile device testing device provided by the application can perform multifunctional testing on a mobile device, and meanwhile, the layout between structures can be reasonably set, so that the overall structure of the testing device is relatively compact, and the occupied space is relatively small.
[0047] The technical solutions of the application and how the technical solutions of the application solve the above technical problems will be described in detail in specific embodiments. The following specific embodiments can be combined with each other, and the same or similar concepts or processes can not be described again in some embodiments. The embodiments of the application will be described below with reference to the drawings.
[0048] For ease of description, please refer to Figure 1 , Figure 1 The direction indicated by the X axis in the figure represents the first direction, the direction indicated by the Y axis represents the second direction, and the direction indicated by the Z axis represents the third direction. The first direction, the second direction and the third direction are perpendicular to each other.
[0049] In an embodiment, please refer to Figures 1 to 3 The mobile device testing device of the application includes a frame body 10, a transmission module 20, an NFC testing module 30, a charging testing module 40 and a vibration testing module 50. The frame body 10 is the main structure of the testing device of the application, and the actions of the mobile device are all completed on the frame body 10. Meanwhile, the frame body 10 serves as the overall frame of the testing device, and can support the testing modules of the testing device.
[0050] In the application, the frame body 10 can include a base 11, a support 13 and a base platform 12. The base 11 and the base platform 12 are arranged at intervals, and the support 13 is connected between the base 11 and the base platform 12. The base 11 can be a plate structure or a square frame structure, the base platform 12 is a plate structure, and the support 13 can be arranged in a columnar structure. The two ends of the support 13 are respectively connected to the base platform 12 and the base 11. In order to ensure the stability of the frame body 10, a plurality of supports 13 can be arranged between the base platform 12 and the base 11.
[0051] For example, the support 13 and the base platform 12 and the base 11 can be connected by welding, or can be connected by a clamping structure, a buckling structure or a screw.
[0052] For example, the base platform 12, the base 11 and the support 13 can be made of plastic material, or can be made of metal material such as aluminum alloy.
[0053] The end surface of the base 11 facing away from the base 12 is used to abut against a placing platform such as the ground, so as to place the frame 10 on the placing platform. The end surface of the base 11 facing away from the base 12 can also be provided with a plurality of roller structures, which not only support the frame 10, but also facilitate the movement of the frame 10. In addition, when the base 11 is provided with the roller structures, the roller structures can be self-locking rollers, or a retractable stopper can be provided on the base 11. When the retractable stopper is lifted, it can push the frame 10. When the retractable stopper is lowered to abut against the placing platform, the position of the frame 10 can be fixed, and the frame 10 can be moved by the rollers.
[0054] The NFC (Near Field Communication) test module, the transmission module 20, and the charging test module 40 of the present application can be provided on the base 12.
[0055] The transmission module 20 is provided on the frame 10, and the transmission module 20 is used to provide a transmission path in the first direction. The mobile device to be tested can be transmitted along the first direction through the transmission module 20, so as to transmit the mobile device to be tested to a predetermined position.
[0056] The NFC test module 30 is provided on the frame 10, and is used to test whether the NFC function of the mobile device is qualified.
[0057] The charging test module 40 is provided on the frame 10, and is used to test whether the charging function of the mobile device is qualified. It should be noted that the charging test module 40 in the present application can be set to wireless charging for the mobile device. The wireless charging structure is mainly used to wirelessly charge the mobile device, so as to judge the advantages and disadvantages of the wireless charging of the mobile device according to the charging effect.
[0058] In addition, the charging test module 40 and the NFC test module 30 of the present application are respectively located on the opposite sides of the transmission module 20 along the second direction, so that the charging test module 40 and the NFC test module 30 sandwich the transmission module 20.
[0059] The vibration test module 50 is movably provided on the frame 10 along the third direction, and can be moved to the transmission path of the transmission module 20 when the vibration test module 50 moves along the third direction. The mobile device generally has a silent state and a vibration state. When the mobile device is adjusted to vibrate, the internal vibration motor of the mobile device generates vibration to drive the whole mobile device to vibrate. The vibration test module 50 of the present application is used to test whether the vibration function of the mobile device is normal.
[0060] The vibration test module 50 mainly utilizes the movable sensing structure to abut against the surface of the mobile device. When the mobile device vibrates, the sensing structure can capture the vibration information of the surface of the mobile device, including but not limited to the amplitude and frequency when the mobile device vibrates. The sensing structure transmits the vibration information to the data processing module for analysis and processing, so as to determine whether the vibration of the mobile device is normal.
[0061] It should be noted that the conveying module 20 has a conveying starting point and a conveying ending point. The mobile device to be tested is placed on the conveying module 20 from the conveying starting point. The conveying function of the conveying module 20 can convey the mobile device to the conveying ending point along the first direction. The base station 12 is also provided with a through slot penetrating the base station 12 at the conveying ending point of the conveying module 20. The vibration test module 50 is located between the base station 12 and the base 11, and the vibration test module 50 is located at the through slot position of the base station 12. The vibration test module 50 can move back and forth along the third direction between the through slot of the base station 12 and the base 11.
[0062] The mobile device test device of the present application can integrate multiple test modules on one device by arranging the NFC test module 30, the charging test module 40 and the vibration test module 50 on the frame 10. The test device can be compatible with multiple functions of the mobile device, can increase the test efficiency, save the test time, and can save the cost of the device by integrating multiple test modules on one device.
[0063] In addition, the NFC test module 30 and the charging test module 40 in the present application are respectively located on the two sides of the conveying module 20, so that the distance between the test module and the conveying module 20 is closer, and the NFC test and the charging test can be performed at the same time. The vibration test module 50 is movably arranged, so that the position of the vibration test module 50 is flexible and variable, and the position can be reasonably changed according to the demand, so as to avoid occupying a position space of the frame 10 for a long time.
[0064] Furthermore, the NFC test module 30, the conveying module 20 and the charging test module 40 are arranged along the second direction in the present application, which is equivalent to arranging the three modules horizontally on the frame 10. The vibration test module 50 is movably arranged along the third direction, which is equivalent to arranging the vibration test module 50 vertically on the frame 10. In this way, the horizontal and vertical spaces of the frame 10 can be reasonably utilized, and a single direction space of the frame 10 is not occupied, so as to facilitate the reasonable layout of the space of the frame 10, make the space utilization rate of the frame 10 more sufficient, and ensure the compact structure of the test device.
[0065] In some possible implementation manners, referring to Figures 1 to 5The mobile device testing device further comprises a lifting module 60 configured to drive the vibration testing module 50 to move along a third direction. Specifically, the lifting module 60 comprises a lifting frame 61 and a lifting driving structure 62, an output end of the lifting driving structure 62 is configured to perform telescopic or reciprocating movement along the third direction, the lifting driving structure 62 is connected to the frame body 10, and the lifting frame 61 is connected to the output end of the lifting driving structure 62. The vibration testing module 50 can be directly connected to the output end of the lifting driving structure 62, or the vibration testing module 50 can be connected to the output end of the lifting driving structure 62 through the lifting frame 61. In this application, the vibration testing module 50 connected to the lifting frame 61 is taken as an example for description.
[0066] It should be noted that the lifting driving structure 62 can be a linear motor, or a cylinder, or a hydraulic cylinder structure. In this application, the lifting driving structure 62 is not limited, and any driving structure capable of providing linear driving can be used as the lifting driving structure 62.
[0067] In order to ensure the stability of the driving, a guide structure can also be provided, for example, a guide of a sliding rail and a sliding block, or a guide of a polished rod and a sliding block.
[0068] In some possible implementations, the lifting frame 61 can be provided with a support position for supporting the mobile device. When the lifting frame 61 moves along the third direction to be close to the conveying end point of the conveying module 20, the support position on the lifting frame 61 is flush with the conveying plane of the conveying module 20, so that the conveying module 20 can convey the mobile device to the support position on the lifting frame 61. It should be noted that the vibration testing module 50 can be arranged on the lifting frame 61 close to the support position, and the testing head of the vibration testing module 50 is arranged above the support position along the third direction. Because the testing head is movably arranged, the testing head can be moved to have a gap with the support position, and the gap is greater than or equal to the thickness of the mobile device. When the mobile device is moved to the support position, the testing head is lowered to abut against the surface of the mobile device to prepare for testing the vibration of the mobile device.
[0069] For example, the lifting frame 61 comprises fixed members 611 arranged at intervals along the second direction, the fixed members 611 extend along the first direction, and a limiting space is formed between the two fixed members 611 and the support position, which is configured to limit the position of the mobile device to be tested, so as to avoid the position deviation of the mobile device on the support position of the lifting frame 61. In addition, the fixed members 611 can also play a guiding role to guide the mobile device to be arranged on the support position of the lifting frame 61 along the first direction.
[0070] Specifically, the lifting module 60 further comprises a transmission structure 63 connected to the lifting frame 61, the transmission structure 63 is located between the two fixing members 611, and the transmission structure 63 has a transmission path arranged along the first direction, the vibration test module 50 is located at one end of the transmission path of the transmission structure 63, and the end of the transmission structure 63 away from the vibration test module 50 can be docked to the conveying module 20 when the lifting frame 61 moves along the third direction.
[0071] The transmission structure 63 is used for supporting the mobile device to be tested, and the transmission structure 63 is further used for transmitting the mobile device to be tested directly below the vibration test module 50.
[0072] In the present application, when the lifting frame 61 moves along the third direction, the transmission plane of the transmission structure 63 and the conveying plane of the conveying module 20 can be aligned, at this time, the conveying module 20 can convey the mobile device to be tested to the transmission structure 63, and the transmission structure 63 continues to transmit the mobile device along the first direction until the mobile device is transmitted directly below the test head of the vibration test module 50.
[0073] The transmission structure 63 in the present application can be a belt transmission structure 63, a plurality of transmission wheels are rotatably connected to the lifting frame 61, and a transmission belt is wound between the plurality of transmission wheels, the transmission wheels rotate to drive the transmission belt to move, and it should be noted that the rotation shafts of the transmission wheels are parallel to the second direction.
[0074] Alternatively, the transmission structure 63 can also be composed of a plurality of rotating rollers, the plurality of rotating rollers are rotatably connected to the lifting frame 61, the rotation shafts of the plurality of rotating rollers are parallel to the second direction, and the upper surfaces of the plurality of rotating rollers form a support surface and a transmission surface for supporting and conveying the mobile device.
[0075] It should be noted that no matter what kind of transmission structure 63 is used, the transmission structure 63 also has a driving structure for providing driving force, which can drive the transmission wheels to rotate, or the transmission structure 63 can drive the rotating rollers to rotate.
[0076] In the present application, the transmission structure 63 is taken as a plurality of rotating rollers for example, the plurality of rotating rollers have driving rollers and driven rollers, the driving rollers and the driven rollers are arranged at intervals along the first direction, and the rotation shafts of the driving rollers and the driven rollers are parallel to the second direction. The driving structure is a motor structure, the output shaft of the motor is coaxially connected to the driving roller, and the end portions of the driving rollers and the driven rollers are also coaxially connected with transmission wheels, the driving roller and the adjacent driven roller are driven through the cooperation of the transmission wheel and the transmission belt, and the adjacent two driven rollers are also driven through the cooperation of the transmission wheel and the transmission belt.
[0077] The lifting module 60 is further provided with a first positioning structure 64, which is used for positioning the mobile device to be tested on the conveying structure 63 in a second direction. Specifically, the first positioning structure 64 comprises a first positioning drive 641 connected to the lifting frame 61, an output end of the first positioning drive 641 moves in the second direction, and the output end of the first positioning drive 641 is connected with a first positioning piece 642, one end of the first positioning piece 642 away from the first positioning drive 641 extends towards the conveying structure 63, and protrudes the conveying surface of the conveying structure 63 in a third direction. When the first positioning piece 642 moves in the second direction under the drive of the first positioning drive 641, the conveying structure 63 can be clamped between the lifting frames 61, that is, when the conveying structure 63 conveys the mobile device to be tested, by moving the first positioning piece 642 in the second direction, the mobile device can be clamped between the first positioning piece 642 and the fixed piece 611 on one side of the lifting frame 61, so as to position the mobile device.
[0078] When positioning the mobile device to be tested, the mobile device can be positioned between the first positioning piece 642 and the fixed piece 611 by cooperation between the first positioning piece 642 and the fixed piece 611. In other implementable manners, at least two first positioning pieces 642 can be provided, the two first positioning pieces 642 are spaced apart in the second direction, the first positioning structure 64 is further provided with two first positioning drives 641, the output ends of the two first positioning drives 641 can reciprocate in the second direction, and the two first positioning pieces 642 are respectively connected to the output ends of the two first positioning drives 641. The conveying structure 63 is located between the two first positioning pieces 642, and the two first positioning drives 641 can respectively drive the two first positioning pieces 642 to move towards or away from each other. When the conveying structure 63 has the mobile device to be tested, by driving the two first positioning pieces 642 to move towards each other by the first positioning drive 641, the mobile device can be clamped between the two first positioning pieces 642, and then the mobile device is fixed on the conveying structure 63 in the second direction, so that the position of the mobile device is not easy to deviate, which is beneficial to the accuracy of the vibration test.
[0079] It should be noted that the conveying structure 63 of the present application is the cooperation of a plurality of rotating rollers, and a gap is provided between adjacent two rotating rollers. At this time, the two first positioning pieces 642 can be arranged in the gap between the adjacent two rotating rollers, so that the first positioning piece 642 can move along the gap of the rotating rollers.
[0080] The present application can further provide more first positioning pieces 642, which can be divided into two groups. The first positioning pieces 642 in the same group can be spaced apart in the first direction and connected to the output end of the same first positioning drive 641, and the two groups of first positioning pieces 642 are spaced apart in the second direction.
[0081] In some possible implementation, the lifting module 60 further comprises a second positioning structure 65, which is configured to define a limit position of the movement of the mobile device in the first direction, so as to avoid the movement of the mobile device beyond the test range of the vibration test module 50. Specifically, the second positioning structure 65 comprises a second positioning drive 651 connected to the lifting frame 61, an output end of the second positioning drive 651 is movable back and forth along a third direction, and the output end of the second positioning drive 651 is connected with a second positioning member 652, which is located at an end of the transmission structure 63 away from the conveying module 20 along the first direction. When the transmission structure 63 is transmitting the mobile device, the second positioning member 652 can be moved along the third direction by the second positioning drive 651 to block the path of the movement of the mobile device along the first direction, and the mobile device can be transmitted to abut against the second positioning member 652 when the transmission structure 63 is transmitting the mobile device, so as to prevent the mobile device from continuously moving along the first direction and away from the transmission structure 63.
[0082] In the present application, the first positioning drive 641 and the second positioning drive 651 can be linear motor structures, or can be cylinder or hydraulic cylinder structures, which are not limited here.
[0083] In some possible implementation, please refer to Figure 6 The vibration test module 50 comprises a vibration fixing frame 51, a vibration drive 52 and a vibration test part 53. The vibration fixing frame 51 is connected to the lifting frame 61 and can move along the third direction with the lifting frame 61, so as to drive the whole vibration test module 50 to move along the third direction. The vibration drive 52 is connected to the vibration fixing frame 51, and an output end of the vibration drive 52 is movable along the third direction. The vibration drive 52 can provide a driving force, and the vibration test part 53 is connected to the output end of the vibration drive 52, so that the vibration test part 53 can be driven to move along the third direction by the vibration drive 52. When the mobile device is not needed to be tested, the vibration drive 52 drives the vibration test part 53 to move away from the transmission structure 63, so that the vibration test part 53 has a certain spacing relative to the transmission surface of the transmission structure 63. When the transmission structure 63 transmits the mobile device to be located directly below the vibration test part 53, the vibration test part 53 is driven to move towards the mobile device by the vibration drive 52, so that the test head abuts against the mobile device, so as to prepare for the vibration test of the mobile device.
[0084] In some possible implementation, the vibration test part 53 comprises a test mounting base 531, a vibration test head 532 and an elastic member 533. The test mounting base 531 is mounted to the output end of the vibration drive 52, and the vibration test head 532 is movably connected to the test mounting base 531. The vibration drive 52 can drive the test mounting base 531 to move along the third direction, so as to drive the whole vibration test part 53 to move along the third direction.
[0085] The vibration test head 532 of this application may include, for example, an acceleration sensor.
[0086] The end of the vibration test head 532 is connected to a connecting rod (not shown in the figure). The connecting rod is movably connected to the test mounting base 531 in a third direction. An elastic element 533 is disposed between the vibration test head 532 and the test mounting base 531. The elastic element 533 can be, for example, a spring. The spring is sleeved on the connecting rod. One end of the elastic element 533 abuts against the test mounting base 531, and the other end can abut against the vibration test head 532.
[0087] When a mobile device vibrates, it experiences a certain amplitude. Without the elastic element 533, the vibration test head 532, when pressed against the surface of the mobile device and vibrating, returns to its original position solely due to its own gravity, often resulting in a reciprocating frequency that does not match the vibration frequency of the mobile device, thus affecting the accuracy of the test results. The elastic element 533 of this application provides an elastic force to the vibration test head 532. When the vibration test head 532 is pressed against the mobile device and the device vibrates, the elastic element 533 not only uses its elastic force to hold the vibration test head 532 against the surface of the mobile device but also provides a restoring force, allowing the vibration test head 532 to quickly return to its original position.
[0088] See also some of the possible implementation methods. Figures 1 to 3 , Figure 9 As shown, the transmission module 20 includes a transmission frame 21 and a transmission structure 22. The transmission frame 21 is connected to the base 12, and the transmission structure 22 is connected to the transmission frame 21.
[0089] The transmission structure can transport the mobile device under test along the first direction. Specifically, the transmission structure 22 can be a pulley structure or a structure with multiple rotating rollers to transport the mobile device. This application uses a pulley transmission structure 22 as an example for explanation. Specifically, rotating shafts rotatably connected to the transmission frame 21 can be spaced at intervals along the first direction on the transmission frame 21, and a conveyor belt is wound around the rotating shafts. The transmission structure 22 also includes a transmission drive component, which can be a motor. Its output shaft can be directly coaxially connected to the rotating shaft, or it can also have rollers coaxially connected to the rotating shaft. The output end of the transmission drive component is also provided with rollers. The two rollers are driven by a transmission belt, thereby driving the rotating shaft to rotate, and thus driving the conveyor belt to move along the first direction.
[0090] In the present application, the conveying frame 21 is provided with two guide members 211 which are spaced apart along the second direction, the guide members 211 clamping the conveying structure 22 therebetween, and the guide members 211 extend along the first direction. The guide members 211 form a guide space therebetween, which can limit the position of the mobile device on the conveying structure 22, and can also guide the movement direction of the mobile device, so that the mobile device moves along the first direction and is not easy to deviate from the movement direction.
[0091] In addition, in the present application, the conveying frame 21 is further provided with a side pushing structure 23 near one of the guide members 211. The side pushing structure 23 includes a side pushing seat 231, a side pushing driving member 232 and a side pushing member 233. The side pushing seat 231 is fixedly connected to the conveying frame 21. The side pushing driving member 232 is a structure that can provide linear driving, for example, a linear motor, a pneumatic cylinder or a hydraulic cylinder, etc. The output end of the side pushing driving member 232 can move along the second direction. The side pushing member 233 is connected to the output end of the side pushing driving member 232. The guide member 211 near the side pushing member 233 is provided with a gap corresponding to the position of the side pushing member 233 for the side pushing member 233 to pass through. The side pushing driving member 232 can drive the side pushing member 233 to move through the gap and move towards the guide member 211 on the opposite side. By providing the side pushing structure 23, the side pushing driving member 232 drives the side pushing member 233 to move, so that the mobile device on the conveying structure 22 can be clamped between the side pushing member 233 and the guide member 211, so as to position the mobile device on the conveying structure 22.
[0092] In some possible implementation manners, referring to Figure 1 , Figure 10 , Figure 11 and Figure 12 , the mobile device testing apparatus further includes a recycling module 70 for recycling the mobile device after testing. The recycling module 70 and the conveying module 20 are spaced apart along the third direction, and the lifting module 60 can move between the conveying module 20 and the recycling module 70. When the lifting module 60 moves to be flush with the conveying module 20, the conveying module 20 can convey the mobile device to the conveying structure 63 of the lifting module 60. After the vibration testing module 50 performs vibration testing on the mobile device, under the driving of the lifting driving structure 62, the lifting frame 61 moves along the third direction towards the recycling module 70, and when the lifting frame 61 moves to be flush with the recycling module 70, the conveying structure 63 can convey the mobile device on the conveying structure 63 along the first direction to the recycling module 70, and the recycling module 70 can convey the mobile device along a predetermined direction to a recycling position.
[0093] Specifically, the recirculation module 70 includes a recirculation frame 71 and a recirculation drive structure 72. The recirculation frame 71 is connected to the frame 10, and the recirculation drive structure 72 is connected to the recirculation frame 71. The recirculation drive structure 72 is used to provide a transmission path along a first direction. It should be noted that the recirculation drive structure 72 can be a structure using a pulley drive or a structure using multiple drive rollers. In this application, a pulley drive structure is used as an example for illustration.
[0094] For example, the recirculation drive structure 72 includes a driving wheel and a driven wheel spaced apart along a first direction. The driving wheel and the driven wheel are rotatably connected to the recirculation frame 71, and their rotating shafts are parallel to a second direction. The driving wheel and the driven wheel are connected together by a transmission belt. When the driving wheel rotates, it can drive the transmission belt to move. In addition, the recirculation drive structure 72 also includes a drive motor. The output end of the drive motor is coaxially connected to the driving wheel to drive the driving wheel to rotate.
[0095] See also some of the possible implementation methods. Figure 1 and Figure 7 As shown, the NFC test module 30 of this application includes an NFC test rack 31 and NFC test cards 32. The NFC test rack 31 is provided with multiple test stations, and multiple NFC test cards 32 are provided. Each test station is provided with multiple NFC test cards 32, and the NFC test cards 32 in adjacent test stations are staggered.
[0096] The NFC test rack 31 of this application is illustrated using two adjacent test stations as an example. The two test stations are arranged along a second direction, and each test station contains multiple NFC test cards 32, which are arranged along a first direction within the test station. The mobile device to be tested can be placed in the test station, with its back attached to the NFC test card 32. Whether the mobile device can sense the NFC test card 32 determines whether the NFC function of the mobile device is normal.
[0097] It should be noted that the NFC test fixture 31 also includes a bracket 311 and a support plate 312. The bracket 311 is fixedly connected to the base 12, and the support plate 312 is connected to the end of the bracket 311 away from the base 12. The test station is formed on the support plate 312. The test station can be formed by setting a groove, or by setting a spaced protrusion on the support plate 312. The test station is formed between the protrusion and the support plate 312.
[0098] In this application, the support plate 312 is also provided with limiting members 313 at both ends along the first direction. The limiting members 313 are used to limit the position of the mobile device. When the mobile device is placed at the test station, the two ends of the mobile device along the first direction can abut against the limiting members 313.
[0099] In some possible implementation manners, referring to Figure 1 and Figure 8 As shown in the figures, the charging test module 40 comprises a charging test frame 41 connected to the base 12 of the frame body 10 and a charging test box 42 connected to the charging test frame 41, and the charging test box 42 is provided with a placing groove 421 in which the mobile device can be placed, and the bottom of the charging test box 42 is provided with a charging coil for wireless charging of the mobile device.
[0100] In order to facilitate the placing of the mobile device to be tested on the conveying module 20 in the NFC test module 30 or the charging test module 40 for testing, the mobile device testing device provided by the application further comprises a carrying module 80, which comprises a carrying driving structure 81, for example, a linear motor or a pneumatic cylinder or a hydraulic cylinder, which can provide linear motion, and a carrying manipulator 82 connected to the output end of the carrying driving structure 81. It should be noted that the output end of the carrying driving structure 81 can move along the second direction to drive the carrying manipulator 82 to move along the second direction.
[0101] The carrying manipulator 82 can comprise a carrying frame 821 connected to the output end of the carrying driving structure 81, and the carrying frame 821 is provided with a grabbing piece 822 for grabbing the mobile device to be tested on the conveying structure 22.
[0102] The grabbing piece 822 can be a jaw structure or a suction cup structure as in the application, and the suction cup structure has a suction cup connected with a vacuum pump for vacuumizing, and the suction cup can be adsorbed to the surface of the mobile device, and the vacuum pump can vacuumize the suction cup and the mobile device, so that the suction cup and the mobile device are adsorbed together.
[0103] In the application, referring to Figure 1 and Figure 2 The application further comprises a code scanning module 90, which comprises a code scanning fixing seat 91 fixedly connected to the base 12 and a code scanning piece 92 connected to the code scanning fixing seat 91. The code scanning piece 92 can be used for scanning bar codes and two-dimensional codes and the like, and is located directly above the conveying structure 22. The bar code structure is usually attached to the mobile device to be tested, and the information required for testing of the mobile device is stored in the bar code structure. When the mobile device is placed on the conveying structure 22, the bar code on the mobile device can be scanned by the code scanning piece 92 to determine which tests are required for the mobile device to be tested, and then the carrying module 80 can place the mobile device in the corresponding test module for testing according to the scanned information.
[0104] Other embodiments of the application will be apparent to those skilled in the art from consideration of the specification and practice of the application disclosed herein. It is intended that the specification and examples be considered as exemplary only, with the true scope and spirit of the application being indicated by the following claims.
[0105] It is to be understood that the application is not limited to the precise construction hereinafter described and as shown in the attached drawings, and that various changes in form and detail can be made therein without departing from the scope thereof. The scope of the application is limited only by the claims which follow.
Claims
1. A mobile device testing apparatus, characterized in that, include: Frame; A conveying module is mounted on the frame and is used to provide a conveying path along a first direction; An NFC test module, mounted on the frame, is used to test the NFC function of mobile devices; A charging test module is mounted on the frame and is used to test the charging function of the mobile device. The charging test module and the NFC test module are located on opposite sides of the transmission module along the second direction. as well as A vibration testing module is movably mounted on the frame along a third direction. The vibration testing module can be moved to the transmission path of the transmission module to test the vibration function of the mobile device.
2. The mobile device testing apparatus according to claim 1, characterized in that, It also includes a lifting module, which includes a lifting frame and a lifting drive structure. The output end of the lifting drive structure is capable of providing reciprocating motion in a third direction. The lifting drive structure is connected to the frame. The vibration testing module is connected to the lifting frame, and the lifting frame is connected to the output end of the lifting drive structure.
3. The mobile device testing apparatus according to claim 2, characterized in that, The lifting module also includes a transmission structure connected to the lifting frame. The transmission structure has a transmission path arranged along a first direction. The vibration test module is located at one end of the transmission path of the transmission structure. When the lifting frame moves along a third direction, the end of the transmission structure away from the vibration test module can be connected to the transmission module.
4. The mobile device testing apparatus according to claim 3, characterized in that, The lifting module is also provided with a first positioning structure, which includes a first positioning drive connected to the lifting frame. The output end of the first positioning drive moves along a second direction and is connected to a first positioning component, so that the first positioning component moves along the second direction to position the item on the transmission structure.
5. The mobile device testing apparatus according to claim 4, characterized in that, The lifting module further includes a second positioning structure, which includes a second positioning drive connected to the lifting frame. The output end of the second positioning drive moves along a third direction, and the output end of the second positioning drive is connected to a second positioning element, which is located at the end of the transmission structure along the first direction.
6. The mobile device testing apparatus according to claim 2, characterized in that, The vibration testing module includes a vibration mounting frame, a vibration drive, and a vibration testing unit. The vibration mounting frame is connected to the lifting frame, the vibration drive is connected to the vibration mounting frame, the output end of the vibration drive moves in a third direction, and the vibration testing unit is connected to the output end of the vibration drive.
7. The mobile device testing apparatus according to claim 6, characterized in that, The vibration testing unit includes a test mounting base, a vibration test head, and an elastic element. The test mounting base is mounted on the output end of the vibration drive, the vibration test head is movably connected to the test mounting base, and the elastic element is disposed between the vibration test head and the test mounting base.
8. The mobile device testing apparatus according to claim 2, characterized in that, It also includes a return module, wherein the return module and the transmission module are spaced apart along a third direction, and the lifting module is movable between the transmission module and the return module. The return module includes a return frame and a return drive structure, wherein the return frame is connected to the frame body, and the return drive structure is connected to the return frame. The return drive structure is used to provide a transmission path along a first direction.
9. The mobile device testing apparatus according to claim 1, characterized in that, The NFC testing module includes an NFC testing rack and NFC testing cards. The NFC testing rack is equipped with multiple testing stations, and multiple NFC testing cards are provided. Each testing station is equipped with multiple NFC testing cards, and the NFC testing cards in adjacent testing stations are staggered.
10. The mobile device testing apparatus according to claim 1, characterized in that, The charging test module includes a charging test frame and a charging test box. The charging test frame is connected to the frame body, and the charging test box is connected to the charging test frame. The charging test box is provided with a placement slot.