Integrated test equipment and test system
By designing an integrated testing device that utilizes a rack, testing platform, pressing components, and wireless adapter for automated testing, the problem of high testing costs for remote-controlled products is solved, achieving efficient and low-cost multi-functional testing.
Patent Information
- Application Number
- CN202421351698.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-13
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-06-13
AI Technical Summary
In the existing technology, the testing of remote-controlled products requires manual labor or the use of a three-axis mobile platform and is divided into multiple workstations, resulting in high costs.
An integrated testing device was designed, including a rack, a test platform, a pressing assembly, a plug assembly, and a wireless adapter. By setting up the test platform on the rack and using the pressing assembly to press the product under test, the plug assembly provides electrical connection, and the wireless adapter is used for automated testing, multi-functional testing is achieved.
It improves testing efficiency and accuracy, reduces testing costs, and eliminates the need for a three-axis moving platform, enabling automated multi-functional testing.
Smart Images

Figure CN223526387U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to test equipment technical field, especially relate to an integrated test equipment and test system. BACKGROUND
[0002] Current 3C consumer products tend to the development of intelligent, the function of conventional remote control type product is relatively simple, the functional test of product before finished product delivery mostly adopts manual test or finished product exempts from test form, such as for simple product, part product has test before assembly, and high -end remote control product, the industry usually uses three -axis mobile platform, and is split into multiple work stations and tests, and the cost of investment is high. UTILITY MODEL CONTENT
[0003] The utility model discloses a kind of integrated test equipment, to solve the technical problems that current remote control type product test relies on manual and needs to use three-axis mobile platform and split into multiple work stations and test, lead to need to invest higher cost.
[0004] To achieve the above object, the integrated test equipment provided by the utility model comprises:
[0005] Frame;
[0006] Test platform, the test platform includes bearing table and test needle, the bearing table is located in the frame and is used to place the product to be tested, and the test needle is used to connect the product to be tested to transmit data;
[0007] Pressing assembly, the pressing assembly is slidably connected with the frame, and the pressing assembly cooperates with the test platform to compress the product to be tested;
[0008] Plug assembly, the plug assembly is slidably connected with the frame, and moves towards the product to be tested to electrically connect the product to be tested;And
[0009] Wireless adapter, the wireless adapter is located in the frame and is connected with the product to be tested.
[0010] In an embodiment, the test platform further comprises test driving part and needle seat, the test driving part is located in the frame, the test needle is located in the needle seat, the test driving part is connected with the needle seat, and drives the needle seat to move so that the test needle connects the test point of the product to be tested, and the test needle obtains the voltage and current of the product to be tested through the test point.
[0011] In an embodiment, the bearing table is provided with a containing groove for placing the product to be tested, a through hole is formed in the bottom of the containing groove, the test driving part drives the needle seat so that the test needle passes through the through hole and extends into the containing groove to connect the product to be tested.
[0012] In an embodiment, the integrated testing device further comprises a key testing assembly and an infrared assembly, the key testing assembly is arranged on the pressing assembly and above the product to be tested, the key testing assembly penetrates the pressing assembly and presses the key of the product to be tested, so that the product to be tested generates an infrared signal, and the infrared assembly is arranged on the frame and used for receiving the infrared signal.
[0013] In an embodiment, the key testing assembly comprises a mounting plate, a mounting driving member and a pressing member, the mounting driving member is arranged on the pressing assembly, the mounting driving member is connected with the mounting plate and drives the mounting plate to slide along the pressing assembly, and the pressing member is movably arranged to move towards or away from the key of the product to be tested.
[0014] In an embodiment, the integrated testing device further comprises a camera assembly, the camera assembly is connected with the frame and used for collecting the LED light of the product to be tested.
[0015] In an embodiment, the plug assembly comprises a plug body and a plug driving member, the plug driving member is connected with the frame, the plug body is slidably connected with the frame, and the plug driving member is connected with the plug body and drives the plug body to slide along the frame to be inserted into the socket of the product to be tested; and / or,
[0016] The integrated testing device further comprises an angle gauge, the angle gauge is arranged on the frame and below the bearing table.
[0017] In an embodiment, the integrated testing device further comprises a sound testing assembly, the sound testing assembly comprises a collector, a blocking member and a blocking driving member, the collector is arranged on the frame and used for collecting the sound emitted by the product to be tested, and the blocking driving member is arranged on the pressing assembly, the blocking driving member is connected with the blocking member and drives the blocking member to block the sound receiving port of the product to be tested.
[0018] In an embodiment, the integrated testing device further comprises a sound source assembly, the sound source assembly comprises a sound generator and a moving member, the sound generator is used for emitting sound, the moving member is arranged on the frame, and the moving member is connected with the sound generator and drives the sound generator to move in the direction close to or away from the product to be tested.
[0019] In an embodiment, the pressing assembly comprises a pressing plate and a pressing driving member, the pressing driving member is fixedly connected with the frame, the pressing plate is slidably connected with the frame, the pressing driving member drives the pressing plate to slide up and down along the frame, and the pressing plate is provided with an avoiding port, the key of the product to be tested is arranged opposite to the key testing assembly through the avoiding port.
[0020] In an embodiment, the rack comprises a bottom plate, a top plate and a guide column, one end of the guide column is connected with the top plate, the other end is connected with the bottom plate, the pressing plate is in sliding connection with the guide column, the pressing driving element is arranged on the top plate, the test platform and the plug assembly are arranged on the bottom plate, the bottom plate and the bearing table are both provided with a through hole, and the test needle is movably arranged in the through hole.
[0021] The utility model also provides a test system, test system includes test equipment, shielding box and control box, test equipment is located in shielding box, control box is located outside shielding box, control box with test equipment communication connection, test equipment includes test equipment as above.
[0022] In an embodiment, the control box is further in communication connection with a PC end, and the PC end is used for sending control signals.
[0023] The utility model discloses technical scheme through adopting setting up test platform on the rack, and the product is placed on the bearing table of test platform and is tested, and is compressed with test platform cooperation through pressing assembly to the product to be measured, and the probe is connected with the product to be measured and transmits data, and the plug is electrically connected with the product to be measured and turns on the product to be measured, and adopts wireless adapter communication connection product to be measured and is used for transmitting data and instruction. In this way, the product to be measured is placed on the test platform and can be automatically tested in multiple functions and structures, does not need to rely on a large number of manual division test, and the test efficiency and precision are greatly improved, and simultaneously, the integrated test equipment does not need to use three-axis moving platform, does not need to invest a large amount of cost, and the cost is relatively low. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to the structure shown in these drawings without creating labor.
[0025] Figure 1 The utility model provides an integrated test equipment embodiment structure schematic drawing;
[0026] Figure 2 The utility model provides an integrated test equipment embodiment rack one angle structure schematic drawing;
[0027] Figure 3 The utility model provides an integrated test equipment embodiment rack another angle structure schematic drawing;
[0028] Figure 4The utility model provides a structure schematic drawing of compression assembly of integral type test equipment embodiment provided by the utility model.
[0029] Figure 5 The utility model provides a structure schematic drawing of sound test subassembly of integral type test equipment embodiment provided by the utility model.
[0030] Figure 6 The structure schematic drawing of test system embodiment provided by the utility model.
[0031] Explanation of reference numerals:
[0032] 100, rack, 110, guide column, 120, top plate, 130, bottom plate,
[0033] 200, test platform, 210, bearing table, 211, containing groove, 220, test needle, 230, test driving piece, 240, needle seat,
[0034] 300, compression assembly, 310, compression plate, 311, avoiding mouth, 320, compression driving piece,
[0035] 400, plug assembly, 410, plug body, 420, plug driving piece,
[0036] 500, wireless adapter, 510, infrared subassembly, 520, camera subassembly,
[0037] 600, key test subassembly, 610, mounting plate, 620, mounting driving piece, 630, pressing piece,
[0038] 700, sound test subassembly, 710, collector, 720, plugging piece, 730, plugging driving piece,
[0039] 800, sound source subassembly, 810, sound generator, 820, moving piece,
[0040] 900, test equipment, 910, shielding box, 920, control box.
[0041] The utility model purposes realization, functional characteristics and advantages will be further described with reference to the embodiment. Specific implementation
[0042] The technical scheme in the utility model embodiment will be clearly and completely described below in combination with the drawings in the utility model embodiment, and obviously, the described embodiment is only a part of the embodiment of the utility model, not all the embodiment. Based on the embodiment in the utility model, all other embodiments obtained by the ordinary skill in the art without making the creative labor belong to the range of the utility model protection.
[0043] It should be noted that if the embodiments of the utility model have directionality indication (such as up, down, left, right, front, back, etc.), the directionality indication is only used to explain the relative position relationship, movement condition, etc. between components in a certain posture, if the certain posture changes, then the directionality indication also changes accordingly.
[0044] In addition, if the embodiments of the utility model have the description of "first", "second" and the like, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of indicated technical features. Therefore, the features limited by "first", "second" can be explicitly or implicitly included at least one feature. In addition, "and / or" or "and / or" appears in the whole text, which means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.
[0045] In the prior art, the functional test of the product before the finished product is delivered mostly adopts manual test or finished product exemption test, for example, for simple products, part of the products is tested before assembly, and for high-end remote control products, three-axis mobile platform is usually used in the industry, and is divided into multiple workstations for testing, and the investment cost is high.
[0046] The utility model provides a kind of integrated test equipment.
[0047] Please refer to Figure 1 In an embodiment of the utility model, the integrated test equipment includes: rack 100, test platform 200, compression assembly 300, plug assembly 400 and wireless adapter 500, wherein the test platform 200 includes bearing table 210 and test needle 220, bearing table 210 is arranged in rack 100 and is used to place product to be tested, and test needle 220 is used to connect product to be tested to transmit data;Compression assembly 300 is slidably connected with rack 100, and compression assembly 300 cooperates with test platform 200 to compress product to be tested;Plug assembly 400 is slidably connected with rack 100, and moves towards product to be tested to electrically connect product to be tested;Wireless adapter 500 is arranged in rack 100 and is communicatively connected with product to be tested.
[0048] In the embodiment, the test platform 200, the pressing assembly 300, the plug assembly 400 and the wireless adapter 500 are connected on the rack 100. Specifically, the bearing table 210 of the test platform 200 is used to place the product to be tested, and the test points of the product to be tested are connected through the test pins 220 to transmit data. In the specific implementation process, after the product to be tested is placed on the test platform 200, the test pins 220 are raised to contact the test points, and the voltage and current of the product to be tested are obtained through the test pins 220 to detect whether the voltage and current of the product to be tested are qualified. The pressing assembly 300 is lowered along the rack 100 and is pressed on the product to be tested to ensure the stability of the product to be tested during the test process, to ensure the smooth progress of the test work, and to improve the test accuracy. After the pressing assembly 300 is pressed on the product to be tested, the plug assembly 400 moves towards the product to be tested and is electrically connected to the product to be tested, so that the product to be tested is turned on for test work.
[0049] In the specific implementation process, the plug assembly 400 includes a plug body 410 and a plug driving member 420. The plug driving member 420 is connected with the rack 100, and the plug body 410 is slidingly connected with the rack 100. The plug driving member 420 is connected with the plug body 410 and drives the plug body 410 to slide along the rack 100 to be inserted into the socket of the product to be tested. Specifically, the plug driving member 420 is a driving air cylinder which is fixed on the rack 100. The telescopic rod of the driving air cylinder is connected with the plug body 410. The plug body 410 is also slidingly connected with the rack 100. The driving air cylinder drives the plug body 410 to slide towards the product to be tested through the telescopic rod, and then the plug body 410 is inserted into the socket of the product to be tested. The bearing table 210 is provided with a socket avoiding groove at one end. The plug body 410 is inserted into the socket of the product to be tested through the socket avoiding groove. It can be understood that the plug body 410 is also connected with a power supply. The plug body 410 is matched with the socket of the product to be tested to make the product to be tested conductive. In the embodiment, the Type-C plug assembly 400 is adopted. In addition, by inserting the plug into the socket, whether the product to be tested is normally turned on can be tested to determine whether the socket of the product to be tested is qualified.
[0050] The utility model discloses technical scheme through setting up test platform 200 on rack 100, places the product on the load platform 210 of test platform 200 and tests, and through the compression assembly 300 cooperation with test platform 200 to compress the product to be tested, probe connects the product to be tested and transmits data, plug and the product to be tested electric connection and make the product to be tested, adopt wireless adapter 500 communication connection product to be tested, for transmitting data and instruction, realize automation test. It can be understood that test equipment 900 communication connection has test information receiving end, is used for receiving and analyzing test signal, also sends test instruction etc. In this way, the product to be tested is placed on test platform 200 and can automatically carry out multiple function and structure test, does not need to rely on a large number of artificial division test, and test efficiency and precision are greatly improved, and simultaneously, the integrated test equipment 900 of the utility model does not need to use three -axis mobile platform, and the cost is relatively lower, and does not need to invest a large amount of cost. In the specific implementation process, wireless adapter 500 adopts bluetooth adapter and is connected with product bluetooth.
[0051] The utility model discloses technical scheme combines the same test equipment 900 and tests to carry out the MIC (sound module), button, IR (infrared remote control module), Sensor (sensor module), LED and the multiple function test such as bluetooth, realizes the station compatibility, and realizes the quick stable test through the interreaction of each component, and has obvious advantage in the production cost investment.
[0052] Reference Figure 2 As shown in the specific implementation process, the test platform 200 further includes a test driving member 230 and a needle holder 240, the test driving member 230 is arranged on the rack 100, the test needle 220 is arranged on the needle holder 240, the test driving member 230 is connected with the needle holder 240 and drives the needle holder 240 to move so that the test needle 220 is connected with the test point of the product to be tested, and the test needle 220 obtains the voltage and current of the product to be tested through the test point.
[0053] Specifically, the test driving member 230 drives the needle holder 240 to ascend and descend, so that the test needle 220 on the needle holder 240 approaches the product to be tested and is connected with the test point on the product to be tested. It should be noted that the test driving member 230 can be a cylinder structure or a motor screw block mechanism, and the needle holder 240 can ascend and descend, in the embodiment, the test driving member 230 is a cylinder, the cylinder is fixedly installed on the rack 100 through a connecting plate, the telescopic rod of the cylinder is connected with the needle holder 240 and drives the needle holder 240 to ascend and descend. Further, the rack 100 and the needle holder 240 are guided and limited through a guide structure. Specifically, the guide structure is a structure that a linear bearing slides along a guide rod, the guide rod is connected to a bracket, and the linear bearing is connected to the needle holder 240, the linear bearing is sleeved on the guide rod and slides along the guide rod, thereby guiding and limiting the movement of the needle holder 240.
[0054] It should be noted that the rack 100 is provided with a notch for avoiding the needle holder 240, so that the detection needle can be smoothly lifted and contacted with the product on the bearing table 210. Further, the bearing table 210 is provided with a containing groove 211 for placing the product to be tested, and the bottom of the containing groove 211 is provided with a through hole. The test driving member 230 drives the needle holder 240, so that the test needle 220 passes through the through hole and extends into the containing groove 211 to connect the product to be tested.
[0055] The top of the bearing table 210, i.e. the side facing the pressing assembly 300, is provided with the containing groove 211, and the bottom of the containing groove 211 is provided with a through hole. The needle holder 240 drives the test needle 220 to move through the through hole into the containing groove 211 and be in contact with the product to be tested. In addition, in the embodiment, the test needle 220 is provided in plurality and corresponds to the test points of the product.
[0056] In an embodiment, as shown in FIGS. 9 and 10, the integrated test device 900 further comprises a key test assembly 600 and an infrared assembly 510. The key test assembly 600 is arranged above the product to be tested and passes through the pressing assembly 300 to press the keys of the product to be tested, so that the product to be tested generates an infrared signal. The infrared assembly 510 is arranged on the rack 100 and is used to receive the infrared signal. Figure 2 Figure 3 In the embodiment, the key test assembly 600 is arranged on the top of the pressing assembly 300, and the product to be tested is arranged below the pressing assembly 300. The pressing assembly is provided with an avoiding opening 311 for avoiding the key test assembly 600, so that the key test assembly 600 passes through the avoiding opening 311 to press the keys of the product to be tested for testing. The key test assembly 600 presses the keys of the product, so that the product emits an infrared light signal. The infrared assembly 510 is fixedly arranged on the rack 100 and is located in the stroke of the infrared light signal emitted by the product, so as to receive and decode the infrared light signal. The infrared assembly 510 sends the decoded information to the test information receiving end through the wireless adapter 500.
[0057] In the specific implementation process, the key test assembly 600 comprises a mounting plate 610, a mounting driving member 620 and a pressing member 630. The mounting driving member 620 is arranged on the pressing assembly 300, and the mounting driving member 620 is connected with the mounting plate 610 and drives the mounting plate 610 to slide along the pressing assembly 300. The pressing member 630 is movably arranged to move towards or away from the keys of the product to be tested.
[0058] In the specific implementation process, the key test assembly 600 comprises a mounting plate 610, a mounting driving member 620 and a pressing member 630. The mounting driving member 620 is arranged on the pressing assembly 300, and the mounting driving member 620 is connected with the mounting plate 610 and drives the mounting plate 610 to slide along the pressing assembly 300. The pressing member 630 is movably arranged to move towards or away from the keys of the product to be tested.
[0059] It should be noted that in the embodiment, the pressing assembly 300 is provided with a support slide rail, a sliding block is slidably arranged on the support slide rail, and the bottom surface of the mounting plate 610 is connected to the sliding block near both ends. The mounting drive 620 adopts a cylinder structure and is fixed on the pressing assembly 300, and drives the mounting plate 610 to move. The mounting plate 610 slides on the pressing assembly 300 through the sliding block and the support slide rail, improves the stability of the movement of the mounting plate 610, and ensures the accuracy of the test. The mounting plate 610 moves to drive the pressing member 630 to move. After the product to be tested is placed on the test platform 200, the mounting drive 620 drives the mounting plate 610 to move and drives the pressing member 630 to move above the key of the product to be tested, and the pressing member 630 presses the key of the product to test.
[0060] Further, the pressing member 630 is connected with a thumb cylinder, the thumb cylinder is fixed on the mounting plate 610, and drives the pressing member 630 to lift and press the key. In the specific implementation process, the pressing member 630 and the thumb cylinder are one-to-one corresponding and are each provided with multiple groups to correspond to the keys of the product. According to the test instruction, the corresponding thumb cylinder is driven to act, the corresponding pressing member 630 presses the corresponding key, and whether the product produces the corresponding key effect is detected.
[0061] In an embodiment, referring to Figure 3 The integral test device 900 further includes a camera assembly 520, which is connected with the rack 100 and used to collect the LED light of the product to be tested. The wireless adapter 500 is fixedly installed on the top of the rack 100, facilitating signal transmission. In the specific implementation process, the Bluetooth adapter receives the test instruction of the LED of the power product, and sends it to the receiving command end in the product. The product lights up the LED according to the test instruction, collects the LED light of the product through the camera assembly 520, and analyzes the LED gray value to test the LED. The analysis data information is transmitted to the test information receiving end through Bluetooth. Specifically, in the test process, the camera assembly 520 captures the color and brightness of the 28 LED lights of the product as the test basis.
[0062] It should be noted that the camera assembly 520 in the embodiment is located on the top of the rack 100 and shoots and collects the LED light of the product downward. In addition, the key assembly moves the thumb cylinder to automatically press the combined key into the ship_mode (shipping mode) camera assembly 520 collects the ship_mode light effect to test whether the light effect in this mode meets the requirements.
[0063] In one embodiment, the integrated testing device 900 also includes an angle gauge, which is mounted on the frame 100 and located at the bottom of the support platform 210. Understandably, the bottom of the product under test is in contact with the testing platform 200, and the bottom of the testing platform 200 is in contact with the angle gauge. Thus, the angle gauge can read the horizontal state value of the product's G-Sensor (gravity sensor) for testing and calibration.
[0064] In one embodiment, reference Figure 2 and Figure 5 As shown, the integrated testing equipment 900 also includes a sound testing component 700, which includes a collector 710, a blocking component 720, and a blocking drive component 730. The collector 710 is mounted on the frame 100 and is used to collect the sound emitted by the product under test. The blocking drive component 730 is mounted on the pressing component 300 and is connected to the blocking component 720 and drives the blocking component 720 to block the sound receiving port of the product under test.
[0065] In this embodiment, the sound testing component 700 is used for buzzer testing of the product, that is, to test whether the buzzer sound of the product is normal. The sound testing component 700 is also used to test whether there is sound leakage during product assembly. The collector 710 is used to collect the sound emitted by the product's buzzer. Specifically, the collector 710 is fixed on the frame 100, and the collecting end of the collector 710 passes through the frame 100 and the support platform 210 and is close to the sound-emitting position of the product.
[0066] It should be noted that the product also includes a sound receiving device and a recording device. The product's outer casing also has a microphone hole through which sound passes, and the sound receiving device receives sound through the microphone hole. In this embodiment, the blocking drive 730 is fixed on the pressing assembly 300 and adopts a cylinder structure. The blocking drive 730 is connected to a mounting bracket, which slides along a support rail on the pressing assembly 300 via a slider. Thus, the blocking drive 730 can drive the blocking member 720 to slide along the pressing assembly 300. Further, the mounting bracket is connected to a pressing cylinder, which is connected to the blocking member 720 and drives the blocking member 720 to move up and down. The pressing cylinder also drives the blocking member 720 to descend and block the microphone hole of the product.
[0067] Further, the integrated test device 900 further comprises the sound source assembly 800, the sound source assembly 800 comprises a sound generator 810 and a moving piece 820, the sound generator 810 is used to emit sound, and the moving piece 820 is arranged on the rack 100, and the moving piece 820 is connected with the sound generator 810 and drives the sound generator 810 to move in the direction close to or away from the product to be tested. Specifically, the sound generator 810 is used to emit sound of a specific frequency, and the moving piece 820 adopts a pneumatic cylinder structure, the pneumatic cylinder structure is fixedly connected to the top of the support, and the telescopic rod of the pneumatic cylinder structure is connected with the sound generator 810, so as to drive the sound generator 810 to move and adjust the position.
[0068] During the test, the moving piece 820 drives the sound generator 810 to move to the position directly above the microphone of the product, and emits a 100Hz-7kHz sweep frequency sound, and the device for recording function of the product is recorded and then transmitted to the audio analysis device of the test signal receiving end for analysis. The sound generator 810 emits a 100Hz-7kHz sweep frequency sound, and the device for recording function of the product is recorded and then transmitted to the audio analysis device of the test signal receiving end for analysis, and the test is completed.
[0069] Reference Figure 4 As shown, in the specific implementation process, the pressing assembly 300 comprises a pressing plate 310 and a pressing driving piece 320, the pressing driving piece 320 is fixedly connected with the rack 100, and the pressing plate 310 is slidingly connected with the rack 100. The pressing driving piece 320 drives the pressing plate 310 to slide up and down along the rack 100, the pressing plate 310 is provided with an avoiding opening 311, and the key of the product to be tested is arranged opposite to the key test assembly 600 through the avoiding opening 311.
[0070] The pressing plate 310 is slidingly connected with the rack 100 through a linear bearing, and specifically, the four corners of the pressing plate 310 are fixedly provided with linear bearings. It can be understood that the rack 100 comprises four guide columns 110, and the linear bearings slide along the guide columns 110. The pressing plate 310 is connected with the pressing driving piece 320, the pressing driving piece 320 adopts a pneumatic cylinder structure, the pressing driving piece 320 is fixedly arranged on the top of the rack 100, the telescopic rod of the pressing driving piece 320 faces the pressing plate 310 downward and is connected with the pressing plate 310, so as to drive the pressing plate 310 to ascend and descend, and then press the product. Among them, the key test assembly 600 and the sound test assembly 700 are installed on the pressing plate 310, the support slide rail is provided with two slide rails and is installed on the side of the pressing plate 310 away from the product, and the mounting plate 610 of the key test assembly 600 and the mounting frame of the blocking piece 720 are slidingly supported on the support slide rail.
[0071] In an embodiment, reference Figure 2As shown, the rack 100 includes a bottom plate 130, a top plate 120 and a guide column 110, one end of the guide column 110 is connected with the top plate 120, the other end is connected with the bottom plate 130, a pressing plate 310 is in sliding connection with the guide column 110, a pressing driving element 320 is arranged on the top plate 120, a test platform 200 and a plug assembly 400 are arranged on the bottom plate 130, the bottom plate 130 and the bearing table 210 are both provided with through holes, and the test needle 220 is movably arranged in the through hole.
[0072] The guide column 110 is connected with the top plate 120 and the bottom plate 130 at both ends, and further, a supporting leg is arranged below the bottom plate 130 to lift the bottom plate 130 to a certain height, and the space below the bottom plate 130 can accommodate components such as the test driving element 230. The Bluetooth adapter, the camera assembly 520 and the sound source assembly 800 are mounted on the top plate 120, the infrared assembly 510, the plug assembly 400 and the test platform 200 are mounted on the bottom plate 130, and they cooperate to complete the product test work.
[0073] In addition, it should be noted that the integrated test equipment 900 further includes a gas source control assembly to connect the gas source, the gas source control assembly includes three groups of pressure regulating valves and 26 groups of electromagnetic valves, the first group of 8 electromagnetic valves is used to control the 8 action movements of the pressing assembly 300, the test platform 200, the sound test assembly 700, the sound source assembly 800, the plug assembly 400 and the button test assembly 600. The second group of 4 electromagnetic valves is used to adjust the output force pressure of the 4 thumb air cylinders in the button test assembly 600 to meet the requirement of 300N of the button pressure. The third group of 14 electromagnetic valves is used to adjust the output pressure of the remaining 14 thumb air cylinders in the button test assembly 600.
[0074] The utility model further proposes a test system, refer to Figure 6 As shown, the test system includes a test equipment 900, a shielding box 910 and a control box 920, the specific structure of the test equipment 900 is referred to the above-mentioned embodiments, since the test system adopts all the technical solutions of the above-mentioned embodiments, therefore at least has all the beneficial effects brought by the technical solutions of the above-mentioned embodiments, which will not be repeated here. Among them, the test equipment 900 is arranged in the shielding box 910, the control box 920 is arranged outside the shielding box 910, and the control box 920 is in communication connection with the test equipment 900.
[0075] In the implementation process, the test equipment 900 is placed in the shielding box 910, the test instructions are sent out by the upper computer to control the mutual communication of each motion component, and then the integrated full-function test of the product is realized. The circuit board and electronic components for signal receiving, receiving and sending are arranged in the control box 920, the shielding box 910 is used for shielding the environmental noise in the production test and creating a dark environment for the test requirement, the sound insulation effect of the shielding box 910 is that when the external sound is 80dBA, the noise in the shielding box 910 should be not more than 40dBA. The control box 920 is electrically connected and pneumatically connected with the test equipment 900, further, the control box 920 is also communicatively connected with the PC end, and the PC end is used for sending control signals. The control box 920 converts the electric signal into test instructions, collects the test results, and feeds back to the PC end, and the test of the product is completed.
[0076] The above is only an exemplary embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structural transformation, direct / indirect application in other related technical fields under the inventive concept of the present application, or the content of the present application specification and drawings are included in the patent protection range of the present application.
Claims
1. An integrated test apparatus, characterized by, The integrated testing device comprises a rack, a testing platform, a pressing assembly, a plug assembly, a wireless adapter, a key testing assembly, a camera assembly, a sound testing assembly and a sound source assembly. The testing platform comprises a bearing table and a testing needle, the bearing table is arranged on the rack and used for placing a product to be tested, and the testing needle is used for connecting the product to be tested to transmit data. The pressing assembly is slidably connected with the rack and cooperates with the testing platform to press the product to be tested. The plug assembly is slidably connected with the rack and moves towards the product to be tested to electrically connect the product to be tested. The wireless adapter is arranged on the rack and communicatively connected with the product to be tested. The testing platform further comprises a testing driver and a needle seat, the testing driver is arranged on the rack, the testing needle is arranged on the needle seat, the testing driver is connected with the needle seat and drives the needle seat to move so that the testing needle connects test points of the product to be tested, and the testing needle obtains voltage and current of the product to be tested through the test points. The bearing table is provided with a containing groove for placing the product to be tested, a through hole is arranged at the bottom of the containing groove, the testing driver drives the needle seat so that the testing needle passes through the through hole and extends into the containing groove to connect the product to be tested.
2. The all-in-one test device of claim 1, wherein, The integrated testing device further comprises a key testing assembly and an infrared assembly, the key testing assembly is arranged on the pressing assembly and above the product to be tested, the key testing assembly passes through the pressing assembly and presses the keys of the product to be tested, so that the product to be tested generates an infrared signal, and the infrared assembly is arranged on the rack and used for receiving the infrared signal.
3. The all-in-one test device of claim 2, wherein, The key testing assembly comprises a mounting plate, a mounting driver and a pressing member, the mounting driver is arranged on the pressing assembly, the mounting driver is connected with the mounting plate and drives the mounting plate to slide along the pressing assembly, and the pressing member is movably arranged to move towards or away from the keys of the product to be tested.
4. The all-in-one test device of claim 1, wherein, The integrated testing device further comprises a camera assembly, the camera assembly is connected with the rack and used for collecting LED light of the product to be tested.
5. The all-in-one test device of claim 4, wherein, The plug assembly comprises a plug body and a plug driver, the plug driver is connected with the rack, the plug body is slidably connected with the rack, the plug driver is connected with the plug body and drives the plug body to slide along the rack to be inserted into a socket of the product to be tested; and / or 6. The all-in-one test device of claim 1 or 5, wherein, The integrated testing device further comprises an angle gauge, the angle gauge is arranged on the rack and at the bottom of the bearing table.
7. The all-in-one testing device of claim 1, wherein, The integrated testing device further comprises a sound testing assembly, the sound testing assembly comprises a collector, a blocking member and a blocking driver, the collector is arranged on the rack and used for collecting sound emitted by the product to be tested, the blocking driver is arranged on the pressing assembly, the blocking driver is connected with the blocking member and drives the blocking member to block a sound receiving port of the product to be tested. The integrated testing device further comprises a sound source assembly, the sound source assembly comprises a sound generator and a moving member, the sound generator is used for emitting sound, the moving member is arranged on the rack, the moving member is connected with the sound generator and drives the sound generator to move towards or away from the product to be tested.
8. The all-in-one testing device of claim 1, wherein, 9. The all-in-one testing device of claim 8, wherein, 10. The all-in-one testing device of claim 4, wherein, The pressing assembly comprises a pressing plate and a pressing driving member, the pressing driving member is fixedly connected with the rack, the pressing plate is slidably connected with the rack, the pressing driving member drives the pressing plate to slide up and down along the rack, the pressing plate is provided with an avoiding opening, and the keys of the product to be tested are arranged opposite to the key testing assembly through the avoiding opening.
11. The all-in-one testing device of claim 10, wherein, The rack comprises a bottom plate, a top plate and a guide column, one end of the guide column is connected with the top plate, the other end is connected with the bottom plate, the pressing plate is slidably connected with the guide column, the pressing driving member is arranged on the top plate, the testing platform and the plug assembly are arranged on the bottom plate, the bottom plate and the bearing table are both provided with a through hole, and the testing needle is movably arranged in the through hole.
12. A test system, characterized by The testing system comprises a testing device, a shielding box and a control box, the testing device is arranged in the shielding box, the control box is arranged outside the shielding box, the control box is in communication connection with the testing device, and the testing device comprises the testing device as claimed in any one of claims 1 to 11.
13. The test system of claim 12, wherein, The control box is also in communication connection with a PC end, and the PC end is used for sending a control signal.