An electronic product inspection table and method thereof
By designing an electronic product testing station with automatic feeding, inspection, and classification, the problems of existing testing stations being unable to automatically classify and having cumbersome fixture replacements have been solved, thus achieving a highly efficient electronic product testing process.
Patent Information
- Application Number
- CN202511221248.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2045-08-29
AI Technical Summary
Existing electronic product testing stations lack automatic sorting capabilities and have cumbersome fixture replacement processes, resulting in low testing efficiency.
An electronic product testing station was designed, comprising a feeding unit, a testing unit, and a sorting mechanism, to achieve automatic feeding, testing, and sorting. Automatic testing is performed using an insulation resistance tester and a withstand voltage tester, and products are sorted using permanent magnets and hydraulic rods.
It improves the convenience and efficiency of electronic product testing, and reduces manual operation steps, especially the time spent on fixture replacement and product classification.
Smart Images

Figure CN120734005B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electronic product inspection table, in particular to a kind of electronic product detection table and method convenient for inspection. BACKGROUND
[0002] Electronic product inspection table is a kind of equipment for testing and evaluating electronic products, usually used in laboratory or engineering environment, it provides a series of test instruments, tools and environment to ensure that electronic products meet certain standards and requirements.
[0003] At present, the existing electronic product detection table cannot classify the detected products when in use, and the staff needs to take out the detected products, then selects the unqualified products to complete the classification purpose, in addition, when detecting different types of electronic products, the clamp needs to be replaced, and the replacement process of the clamp is relatively cumbersome, the above problems can greatly reduce the detection efficiency of electronic products.
[0004] In combination with the above problems, it will be found that the existing electronic product detection table convenient for inspection in the market can hardly avoid the above problems when in use, and even if it can be solved, it needs to be solved by external tools, so that the desired effect cannot be achieved, therefore, we propose a kind of electronic product detection table and method convenient for inspection. SUMMARY
[0005] The present application aims to provide a kind of electronic product detection table and method convenient for inspection to solve the problems proposed in the above background.
[0006] To achieve the above purpose, the present application provides the following technical scheme: a kind of electronic product detection table convenient for inspection, including detection table, the upper portion of the detection table is provided with detection mechanism, the left side of the detection table is provided with classification mechanism;
[0007] The detection mechanism includes feeding unit, the feeding unit is arranged on the upper portion of the detection table, and the feeding unit can realize the purpose of automatic feeding to the detection table;
[0008] The detection mechanism also includes detection unit, the detection unit is arranged on the upper portion of the detection table, and the detection unit cooperates with the feeding unit, and the detection unit can automatically test the electronic products to be detected;
[0009] The classification mechanism cooperates with the detection mechanism, and the classification mechanism can automatically classify and discharge the detected electronic products.
[0010] Preferably, the feeding unit comprises two rectangular plates, the upper surface of each rectangular plate is fixedly connected with two positioning shafts, the inner wall of each rectangular plate is rotatably connected with a first threaded shaft, the top end of each first threaded shaft is fixedly connected with a rotating handle, the outer surface of each first threaded shaft is threadedly connected with a lifting plate, the inside of each lifting plate is slidably connected to the outer surface of two positioning shafts, the side face of two lifting plates close to each other is commonly fixedly connected with a lifting frame, the bottom face of the lifting frame is provided with two T-shaped sliding grooves, the inside of each T-shaped sliding groove is slidably connected with a T-shaped sliding block, the bottom face of two T-shaped sliding blocks is commonly fixedly connected with a baffle, the back face of the lifting frame is fixedly connected with two force springs, the inside of the detection table is provided with a moving plate, the inner wall of the moving plate is threadedly connected with a second threaded shaft, the top end of the second threaded shaft is fixedly connected with a rotating shaft, the outer side of the rotating shaft is provided with a rotating plate.
[0011] Preferably, the inner wall of the rotating plate is rotatably connected to the outer surface of the rotating shaft, the inside of the rotating plate and the inside of the moving plate are commonly clamped with a clamping shaft, the inner wall of the rotating plate is provided with two first sliding grooves, the inside of each first sliding groove is slidably connected with a first sliding block, the side face of two first sliding blocks close to each other is commonly fixedly connected with a rectangular block, the left side face of the rectangular block is fixedly connected with a transmission shaft, two first sliding grooves are evenly provided on the inner side wall of the rotating plate in a central symmetry with the transmission shaft, and the outer surface of the transmission shaft is clamped in the inside of the rotating shaft.
[0012] Preferably, the inner wall of the detection table is fixedly connected with a support frame, the outer surface of the moving plate is slidably connected to the inside of the support frame, the inner wall of the detection table is provided with two second sliding grooves, the inside of each second sliding groove is slidably connected with a second sliding block, the side face of two second sliding blocks close to each other is respectively fixedly connected to the two side faces of the moving plate, the inner wall of each second sliding block is rotatably connected with a roller, and the outer surface of each roller is in contact with the inner wall of the detection table.
[0013] Preferably, the front face of the detection table is fixedly connected with a support plate, the upper surface of the support plate is fixedly connected with a stepping motor, the output end of the stepping motor is fixedly connected with a third threaded shaft, the outer surface of the third threaded shaft is threadedly connected to the inner wall of the moving plate, the outer surface of the third threaded shaft is rotatably connected to the inner wall of the detection table, the bottom face of each rectangular plate is fixedly connected to the upper surface of the detection table, and the end of two force springs close to the baffle is commonly fixedly connected to the outer surface of the baffle.
[0014] Preferably, the detection unit comprises an insulation resistance tester, the outer surface of the insulation resistance tester is fixedly connected to the inner wall of the detection table, the inner wall of the detection table is fixedly connected with a withstand voltage tester, the outer surfaces of the insulation resistance tester and the withstand voltage tester are fixedly connected with a first conductive wire and a second conductive wire, the inner wall of the detection table is fixedly connected with two first conductive frames and two second conductive frames, the right end of each first conductive wire is fixedly connected to the left side of the first conductive frame, one end of each second conductive wire penetrates through the detection table and extends above the detection table, the end of each second conductive wire close to the second conductive frame is fixedly connected to the back of the second conductive frame, the inner wall of each first conductive frame and the inner wall of each second conductive frame are fixedly connected with two first insulation plates, the inner wall of each two first insulation plates is fixedly connected with a first hydraulic rod, the telescopic end of each first hydraulic rod is fixedly connected with a second insulation plate, the bottom surface of each second insulation plate is fixedly connected with a conductive block, and the outer surfaces of two conductive blocks are respectively slidably connected to the interiors of two first conductive frames.
[0015] Preferably, the classification mechanism comprises two fixed blocks, the inner wall of each fixed block is fixedly connected with a first iron shaft, the right side of the detection table is fixedly connected with a fixed frame, the inner wall of the fixed frame is fixedly connected with two first return springs, the right end of each first return spring is fixedly connected with a second iron shaft, the left end of one second iron shaft is fixedly connected with a permanent magnet, the right end of each second iron shaft is fixedly connected with a bullseye bearing, the right side of the detection table is provided with a rectangular groove, the interior of the fixed frame and the interior of the rectangular groove are jointly and slidably connected with a sliding plate, the right side of the fixed frame is fixedly connected with a first connecting block, the right side of the sliding plate is fixedly connected with a second connecting block, the front of the first connecting block and the back of the second connecting block are jointly and fixedly connected with a second return spring, the right side of the first connecting block is fixedly connected with a connecting frame, the inner wall of the connecting frame is fixedly connected with a third iron shaft, the left side of the sliding plate is fixedly connected with an extension plate, the inner wall of the extension plate is rotatably connected with a plurality of same rollers, and the left side of the detection table is fixedly connected with a guide frame.
[0016] Preferably, the right side of the fixed frame is fixedly connected with two support frames, the inner walls of the two support frames are jointly and fixedly connected with a second hydraulic rod, the bottom surface of each fixed block is fixedly connected to the upper surface of the detection table, the outer surface of each first iron shaft is fixedly connected to the outer surface of the second conductive wire, each second iron shaft is arranged in the inner cavity of the fixed frame, one of the bullseye bearings and the permanent magnet are arranged in the inner cavity of the sliding plate, and the outer surface of the other bullseye bearing is in contact with the left side of the sliding plate.
[0017] Preferably, the inner wall of the sliding plate is rotationally connected with a roller, the outer surface of the roller is in contact with the outer surface of one of the eye bearings, the inner wall of the sliding plate is rotationally connected with a spring return shaft, the outer surface of the spring return shaft is fixedly connected with a turnover plate, the outer surface of the third iron shaft is fixedly connected with the outer surface of one of the second conductive wires, and the outer surface of the extension plate is slidingly connected to the inside of the support frame.
[0018] A method for conveniently inspecting an electronic product inspection table, comprising the following steps:
[0019] S1: When the device needs to be used, the staff can apply a rotating force to the rotating handle, which will transmit the force to the first threaded shaft, thereby driving the first threaded shaft to rotate, and driving the two lifting plates to move upward in cooperation with the lifting plates that are in threaded connection with the first threaded shaft, and driving the lifting frame to move upward synchronously, until the lifting frame moves to the appropriate height, controlling the stepper motor to operate, and the rotating plate can push the baffle to move rearward, so that when the baffle moves rearward, the electronic product inside the lifting frame falls downward, and the moving plate provides temporary support force to the electronic product inside the lifting frame during movement, until the baffle is reset under the action of the tension spring, thereby achieving the purpose of discharging;
[0020] S2: When the moving plate and the rotating plate push the electronic product to be detected to move to a position between the first conductive frame and the second conductive frame located at the rear, the first hydraulic rod can be used to push the conductive block to move to the position of the electronic product to be detected, until the conductive block contacts the two side surfaces of the electronic product to be detected, and then the insulation resistance tester is controlled to operate, thereby detecting whether the daily insulation performance of the electronic product is qualified, and after the detection is completed, the stepper motor is controlled to operate again to continue pushing the electronic product to be detected to move, until it moves to the first conductive frame and the second conductive frame located at the front, and the conductive block is also pushed to contact the electronic product, and then the withstand voltage tester is controlled to operate, which will repeat the above detection steps to perform extreme withstand voltage test on the electronic product;
[0021] S3: when using the insulation resistance tester and high voltage tester to test the electronic product to be detected, if the electronic product is qualified, the electronic product will enter the roller rotatingly connected to the inner wall of the extension plate under the pushing of the moving plate and the rotating plate, and the rollers are arranged along the inclined surface of the extension plate, under the action of the rollers and gravity, the qualified electronic product will enter the channel at the last of the guide frame, and when the electronic product fails the insulation resistance test, the moving plate will finally push the unqualified electronic product to the roller, and under the action of the roller, the electronic product failing the insulation test will be guided to enter the middle channel of the guide frame, and when the electronic product passes the insulation test and is qualified, the electronic product will be subjected to high voltage test, and when the electronic product fails the high voltage test, the electronic product failing the high voltage test will enter the channel at the front of the guide frame.
[0022] Compared with the prior art, the beneficial effects of the present application are:
[0023] The present application sets up a feeding unit, which can place the electronic equipment to be detected in the lifting frame, and automatically convey the electronic equipment to the detection position, thereby increasing the convenience of the equipment in use.
[0024] The present application sets up a detection unit, which can perform insulation test and high voltage test on the electronic product to be detected, and the detection unit and the feeding unit cooperate with each other, thereby eliminating the need for workers to hold the clamps on the electronic product to be detected, and increasing the detection efficiency of the electronic product.
[0025] The present application sets up a classification mechanism, which can automatically classify the electronic product after detection, and the feeding unit, the detection unit and the classification mechanism can effectively avoid wasting a lot of time of workers in clamping and classifying the electronic product, thereby reducing the problem of low detection efficiency of the electronic product. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is a structural schematic diagram of the whole application;
[0027] Figure 2 It is a structural schematic diagram of the stepping motor of the present application;
[0028] Figure 3 It is a structural schematic diagram of the third threaded shaft of the present application;
[0029] Figure 4 It is a structural schematic diagram of the extension plate of the present application;
[0030] Figure 5 It is a structural schematic diagram of the second sliding block of the present application;
[0031] Figure 6 Structure diagram of the first sliding block of the present application;
[0032] Figure 7 Structure diagram of the first conductive frame of the present application;
[0033] Figure 8 Structure diagram of the first hydraulic rod of the present application;
[0034] Figure 9 Structure diagram of the second conductive frame of the present application;
[0035] Figure 10 Structure diagram of the second conductive wire of the present application;
[0036] Figure 11 Rear view structure diagram of the second hydraulic rod of the present application;
[0037] Figure 12 Rear view structure diagram of the sliding plate of the present application;
[0038] Figure 13 Rear view structure diagram of the bull-eye bearing of the present application;
[0039] Figure 14 Rear view structure diagram of the first iron shaft of the present application.
[0040] In the figure: 1, detection table; 2, detection mechanism; 2101, lifting plate; 2102, rotating handle; 2103, lifting frame; 2104, first threaded shaft; 2105, baffle; 2106, positioning shaft; 2107, force spring; 2108, rectangular plate; 2109, T-shaped slider; 2110, T-shaped sliding groove; 2111, third threaded shaft; 2112, support frame; 2113, second slider; 2114, second sliding groove; 2115, roller; 2116, moving plate; 2117, second threaded shaft; 2118, clamping shaft; 2119, rotating shaft; 2120, transmission shaft; 2121, rectangular block; 2122, first sliding groove; 2123, first slider; 2124, rotating plate; 2125, support plate; 2126, stepper motor; 22, detection unit; 2201, insulation resistance tester; 2202, voltage resistance tester; 2203, first conductive wire; 2204, first conductive frame; 2205, second conductive frame; 2206, second conductive wire; 2207, conductive block; 2208, first insulating plate; 2209, first hydraulic rod; 2210, second insulating plate; 3, classification mechanism; 301, guide frame; 302, fixed frame; 303, roller; 304, sliding plate; 305, rectangular groove; 306, extension plate; 307, first iron shaft; 308, fixed block; 309, support frame; 310, second hydraulic rod; 311, second connecting block; 312, second return spring; 313, first connecting block; 314, spring return rotating shaft; 315, turnover plate; 316, bull eye bearing; 317, second iron shaft; 318, first return spring; 319, roller shaft; 320, connecting frame; 321, third iron shaft; 322, permanent magnet. DETAILED DESCRIPTION
[0041] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the scope of protection of the present application.
[0042] Embodiment 1: Please refer to Figures 1-3 , Figure 5 and Figure 6 , the present application provides a technical solution: a convenient inspection electronic product detection table, the present application is improved according to the technical problems mentioned in the background art, including detection table 1, the upper part of detection table 1 is provided with detection mechanism 2, the left side of detection table 1 is provided with classification mechanism 3;
[0043] The detection mechanism 2 comprises a feeding unit 21, the feeding unit 21 is arranged above the detection table 1, and the feeding unit 21 can realize the purpose of automatic feeding to the detection table 1.
[0044] As a further limitation of the detection mechanism 2 of the application, the feeding unit 21 comprises two rectangular plates 2108, the upper surfaces of the two rectangular plates 2108 are fixedly connected with two positioning shafts 2106 respectively, the inner walls of the two rectangular plates 2108 are rotatably connected with first threaded shafts 2104 respectively, the top ends of the first threaded shafts 2104 are fixedly connected with rotating handles 2102 respectively, the outer surfaces of the first threaded shafts 2104 are threadedly connected with lifting plates 2101 respectively, the interiors of the lifting plates 2101 are slidingly connected with the outer surfaces of the two positioning shafts 2106 respectively, the side face, which is close to each other, of the two lifting plates 2101 is fixedly connected with a lifting frame 2103, the bottom face of the lifting frame 2103 is provided with two T-shaped sliding grooves 2110, the interiors of the two T-shaped sliding grooves 2110 are slidingly connected with T-shaped sliding blocks 2109 respectively, the bottom faces of the two T-shaped sliding blocks 2109 are fixedly connected with a baffle 2105, the back face of the lifting frame 2103 is fixedly connected with two force springs 2107, the inside of the detection table 1 is provided with a moving plate 2116, the inner wall of the moving plate 2116 is threadedly connected with a second threaded shaft 2117, the top end of the second threaded shaft 2117 is fixedly connected with a rotating shaft 2119, the outer side of the rotating shaft 2119 is provided with a rotating plate 2124, by arranging the feeding unit 21, the electronic equipment to be detected can be placed in the inside of the lifting frame 2103 by the feeding unit 21, and the purpose of automatically conveying the electronic equipment to the detection position can be realized, so that the convenience of the equipment in use can be increased.
[0045] Please refer to Figure 6The inner wall of the rotating plate 2124 is rotationally connected to the outer surface of the rotating shaft 2119, the inside of the rotating plate 2124 and the inside of the moving plate 2116 are jointly clamped with the clamping shaft 2118, the inner wall of the rotating plate 2124 is provided with two first sliding grooves 2122, the inside of each first sliding groove 2122 is slidably connected with a first sliding block 2123, and the side face, which is close to each other, of the two first sliding blocks 2123 is jointly fixedly connected with a rectangular block 2121; the left side face of the rectangular block 2121 is fixedly connected with a transmission shaft 2120, the two first sliding grooves 2122 are evenly provided on the inner wall of the rotating plate 2124 in an axis symmetry manner about the transmission shaft 2120, and the outer surface of the transmission shaft 2120 is clamped in the inside of the rotating shaft 2119. By arranging the clamping shaft 2118, the rotating plate 2124 and the moving plate 2116 can be limited by the clamping shaft 2118, so that the rotating plate 2124 is prevented from rotating when the electronic product is pushed to move; when the first sliding block 2123 slides in the first sliding groove 2122, the moving position of the rectangular block 2121 can be limited, and the rotating force received by the rotating plate 2124 can be transmitted to the rotating shaft 2119 through the rectangular block 2121 and the transmission shaft 2120, so that the rotating shaft 2119 and the second threaded shaft 2117 can be further driven to rotate, the height of the rotating plate 2124 is conveniently raised, and the height of the electronic product to be detected is adapted.
[0046] Please refer to Figures 3-5 The inner wall of the detection table 1 is fixedly connected with a supporting frame 2112, the outer surface of the moving plate 2116 is slidably connected to the inside of the supporting frame 2112, the inner wall of the detection table 1 is provided with two second sliding grooves 2114, the inside of each second sliding groove 2114 is slidably connected with a second sliding block 2113, and the side face, which is close to each other, of the two second sliding blocks 2113 is respectively fixedly connected to the two side faces of the moving plate 2116; the inner wall of each second sliding block 2113 is rotationally connected with a roller 2115, and the outer surface of each roller 2115 is in contact with the inner wall of the detection table 1. By arranging the second sliding groove 2114 and the second sliding block 2113, the moving plate 2116 can be limited by the sliding characteristics of the second sliding block 2113 in the second sliding groove 2114, so that the moving plate 2116 only moves in the front and back directions.
[0047] Please refer to Figure 1 and Figure 2The front surface of the detection table 1 is fixedly connected with a supporting plate 2125, the upper surface of the supporting plate 2125 is fixedly connected with a stepping motor 2126, the output end of the stepping motor 2126 is fixedly connected with a third threaded shaft 2111, the outer surface of the third threaded shaft 2111 is threadedly connected with the inner wall of the moving plate 2116, and the outer surface of the third threaded shaft 2111 is rotatably connected with the inner wall of the detection table 1. The bottom surface of each rectangular plate 2108 is fixedly connected with the upper surface of the detection table 1, and the two stress springs 2107 are fixedly connected with the outer surface of the baffle 2105 at one end close to the baffle 2105. Through the setting of the stepping motor 2126, the stepping motor 2126 can drive the third threaded shaft 2111 to rotate, and the threaded connection relationship between the third threaded shaft 2111 and the moving plate 2116 can provide power for the movement of the moving plate 2116.
[0048] The specific implementation of the embodiment is: when the device needs to be used, the staff can apply a rotating power to the rotating handle 2102, the rotating handle 2102 can transmit the power to the first threaded shaft 2104, so as to drive the first threaded shaft 2104 to rotate, cooperate with the lifting plate 2101 in threaded connection with the first threaded shaft 2104, and drive the two lifting plates 2101 to move upwards, and the lifting plate 2101 can drive the lifting frame 2103 to move upwards synchronously until the lifting frame 2103 moves to a suitable height, it should be understood that the suitable height refers to the distance between the bottom surface of the lifting frame 2103 and the supporting frame 2112, and the distance is determined by the thickness of the electronic product to be detected, then the staff controls the stepper motor 2126 to run, the stepper motor 2126 runs to drive the third threaded shaft 2111 to rotate, and the third threaded shaft 2111 and the moving plate 2116 are in threaded connection, so that the moving plate 2116 and the rotating plate 2124 can move forward under the action of the threaded connection, and after the rotating plate 2124 moves, the baffle 2105 is not limited, at this time, the baffle 2105 moves forward under the action of the stress spring 2107, and the two T-shaped sliding blocks 2109 fixed on the upper surface of the baffle 2105 move along the T-shaped sliding groove 2110 opened on the bottom surface of the lifting frame 2103, so as to limit the moving position of the baffle 2105, until the baffle 2105 moves to the lower side of the lifting frame 2103, when the moving plate 2116 moves to the frontmost position, the clamping shaft 2118 jointly clamped in the moving plate 2116 and the rotating plate 2124 is pulled out, then a rotating power is applied to the rotating plate 2124, it should be understood that since the rotating plate 2124 and the rotating shaft 2119 are in rotating connection, the rotating plate 2124 cannot transmit the power to the rotating shaft 2119 when the rotating plate 2124 is subjected to the rotating power, therefore, the rectangular block 2121 and the transmission shaft 2120 are pushed to the direction of the rotating shaft 2119 in advance, so that the transmission shaft 2120 is clamped in the rotating shaft 2119, at this time, the rotating power applied to the rotating plate 2124 can drive the rotating shaft 2119 and the second threaded shaft 2117 to rotate synchronously, the second threaded shaft 2117 rotates to drive the rotating plate 2124 to move upwards, when the upper surface of the rotating plate 2124 moves to the position of the bottom surface of the lifting frame 2103, the rotating power applied to the rotating plate 2124 is controlled, then the transmission shaft 2120 and the rectangular block 2121 are pulled out, so that the transmission shaft 2120 is no longer in clamping connection with the rotating shaft 2119, at this time, the rotating power is applied to the rotating plate 2124 again, so that the rotating plate 2124 is reset, at this time, the clamping shaft 2118 is clamped between the rotating plate 2124 and the moving plate 2116 again, the limiting of the rotating plate 2124 is completed, so that the rotating plate 2124 cannot rotate when the product to be detected is pushed to move, then the electronic product to be detected is placed in the lifting frame 2103,At this time, the electronic product to be detected is supported by the baffle 2105, and then the stepping motor 2126 is controlled to operate, prompting the rotating plate 2124 to reset. When the moving plate 2116 and the rotating plate 2124 reset, the rotating plate 2124 has already risen to the position of contacting the bottom surface of the lifting frame 2103, so the rotating plate 2124 can push the baffle 2105 to move backward. Therefore, when the baffle 2105 moves backward, the electronic product in the lifting frame 2103 falls downward, and the falling electronic product fills the space between the lifting frame 2103 and the supporting frame 2112. Therefore, when the moving plate 2116 moves forward again under the action of the stepping motor 2126, only one electronic product is pushed to move, and the moving plate 2116 provides a short support force to the electronic product in the lifting frame 2103 during the movement, until the baffle 2105 resets under the action of the force spring 2107, thereby achieving the purpose of discharging.
[0049] Embodiment 2: see Figures 7-10 The present application provides a technical solution: a convenient electronic product detection table, the present application improves the technical problems mentioned in the background art, the detection mechanism 2 further comprises a detection unit 22, the detection unit 22 is arranged above the detection table 1, the detection unit 22 cooperates with the feeding unit 21, and the detection unit 22 can automatically test the electronic product to be detected.
[0050] As a further limitation of the detection mechanism 2 of the application, the detection unit 22 comprises an insulation resistance tester 2201, the outer surface of the insulation resistance tester 2201 is fixedly connected to the inner wall of the detection table 1, the inner wall of the detection table 1 is fixedly connected with a withstand voltage tester 2202, the outer surfaces of the insulation resistance tester 2201 and the withstand voltage tester 2202 are fixedly connected with a first conductive wire 2203 and a second conductive wire 2206, the inner wall of the detection table 1 is fixedly connected with two first conductive frames 2204 and two second conductive frames 2205 respectively, the right end of each first conductive wire 2203 is fixedly connected to the left side of the first conductive frame 2204, one end of each second conductive wire 2206 penetrates through the detection table 1 and extends above the detection table 1, the end of each second conductive wire 2206 close to the second conductive frame 2205 is fixedly connected to the back of the second conductive frame 2205, the inner wall of each first conductive frame 2204 and the inner wall of the second conductive frame 2205 are fixedly connected with two first insulation plates 2208, the inner wall of each two first insulation plates 2208 is fixedly connected with a first hydraulic rod 2209, the telescopic end of each first hydraulic rod 2209 is fixedly connected with a second insulation plate 2210, the bottom surface of each second insulation plate 2210 is fixedly connected with a conductive block 2207, the outer surfaces of two conductive blocks 2207 are respectively slidingly connected to the interiors of two first conductive frames 2204, the outer surfaces of the other two conductive blocks 2207 are respectively slidingly connected to the interiors of two second conductive frames 2205, by setting the detection unit 22, the electronic products to be detected can be tested for insulation and withstand high voltage by using the detection unit 22, the detection unit 22 and the feeding unit 21 cooperate with each other, which can effectively eliminate the step of workers needing to hold the clips on the electronic products to be detected, thereby increasing the detection efficiency of the electronic products.
[0051] The specific implementation of the embodiment is that when the mobile plate 2116 and the rotating plate 2124 push the electronic product to be detected to a position between the rear first conductive frame 2204 and the second conductive frame 2205, the stepping motor 2126 stops running. It should be understood that the surface of the support frame 2112 and the extension plate 306 is covered with a lubricating coating to reduce the friction of the electronic product to be detected when moving. At this time, the first hydraulic rod 2209 inside the rear first conductive frame 2204 and the second conductive frame 2205 operates, and the first hydraulic rod 2209 can push the conductive block 2207 to move to the electronic product to be detected until the conductive block 2207 contacts the two sides of the electronic product to be detected. It should be understood that the first hydraulic rod 2209 is in contact with the first insulating plate 2208 and the second insulating plate 2210, so the current does not affect the use of the first hydraulic rod 2209. Then control the insulating resistance tester 2201 to operate, and the insulating resistance tester 2201 can transmit the current to the rear first conductive frame 2204 and the conductive block 2207 through the first conductive wire 2203. If the electronic product is qualified in insulation, the current will not be transmitted to the rear second conductive frame 2205, and further will not be transmitted to the second conductive wire 2206, so that whether the daily insulation performance of the electronic product is qualified can be detected. After detection, the first hydraulic rod 2209 inside the rear first conductive frame 2204 and the second conductive frame 2205 is reset, and then the stepping motor 2126 is controlled to operate again to continue pushing the electronic product to be detected to move until it is located at the front first conductive frame 2204 and the second conductive frame 2205. Then control the first hydraulic rod 2209 inside the front first conductive frame 2204 and the second conductive frame 2205 to operate, and the conductive block 2207 is pushed to contact the electronic product. Then the voltage withstand tester 2202 can operate, and the voltage withstand tester 2202 can repeat the above detection steps to perform extreme voltage withstand test on the electronic product.
[0052] Embodiment 3: see Figures 11-14 The present application provides a technical solution: an electronic product detection table convenient for inspection. The classification mechanism 3 and the detection mechanism 2 cooperate with each other, and the classification mechanism 3 can automatically classify and discharge the electronic products that have been detected.
[0053] As a further limitation of the classification mechanism 3 of the application, the classification mechanism 3 comprises two fixed blocks 308, the inner wall of each fixed block 308 is fixedly connected with a first iron shaft 307, the right side of the detection table 1 is fixedly connected with a fixed frame 302, the inner wall of the fixed frame 302 is fixedly connected with two first return springs 318, the right end of each first return spring 318 is fixedly connected with a second iron shaft 317, the left end of one of the second iron shafts 317 is fixedly connected with a permanent magnet 322, the right end of each second iron shaft 317 is fixedly connected with a bull's eye bearing 316, the right side of the detection table 1 is provided with a rectangular slot 305, the inside of the fixed frame 302 and the inside of the rectangular slot 305 are jointly and slidably connected with a sliding plate 304, the right side of the fixed frame 302 is fixedly connected with a first connecting block 313, the right side of the sliding plate 304 is fixedly connected with a second connecting block 311, the front of the first connecting block 313 and the back of the second connecting block 311 are jointly and fixedly connected with a second return spring 312, the right side of the first connecting block 313 is fixedly connected with a connecting frame 320, the inner wall of the connecting frame 320 is fixedly connected with a third iron shaft 321, the left side of the sliding plate 304 is fixedly connected with an extension plate 306, the inner wall of the extension plate 306 is rotatably connected with a plurality of identical rollers 303, the left side of the detection table 1 is fixedly connected with a guide frame 301, by arranging the classification mechanism 3, the classification mechanism 3 can automatically classify the detected electronic products, by arranging the feeding unit 21, the detection unit 22 and the classification mechanism 3, the clamping of the electronic products and the classification can effectively avoid wasting a lot of time of the workers during use of the equipment, thereby reducing the problem of low efficiency of electronic product detection.
[0054] Please refer to Figure 11 , the right side of the fixed frame 302 is fixedly connected with two support frames 309, the inner walls of the two support frames 309 are jointly and fixedly connected with a second hydraulic rod 310, the bottom surface of each fixed block 308 is fixedly connected to the upper surface of the detection table 1, the outer surface of each first iron shaft 307 is fixedly connected to the outer surface of the second conductive wire 2206, each second iron shaft 317 is arranged in the inner cavity of the fixed frame 302, one of the bull's eye bearings 316 and the permanent magnet 322 are arranged in the inner cavity of the sliding plate 304, the outer surface of the other bull's eye bearing 316 is in contact with the left side of the sliding plate 304, by arranging the second hydraulic rod 310, the second hydraulic rod 310 can push the sliding plate 304 to reset.
[0055] Please refer to Figure 14The inner wall of the sliding plate 304 is rotationally connected with a roller shaft 319, the outer surface of the roller shaft 319 is in contact with the outer surface of one of the bull's eye bearings 316, the inner wall of the sliding plate 304 is rotationally connected with a spring return shaft 314, the outer surface of the spring return shaft 314 is fixedly connected with a turnover plate 315, the outer surface of the third iron shaft 321 is fixedly connected with the outer surface of one of the second conductive wires 2206, the outer surface of the extension plate 306 is slidingly connected to the inside of the support frame 2112, by being provided with the roller shaft 319, the friction between the bull's eye bearings 316 and the sliding plate 304 when the bull's eye bearings 316 move to the left side can be reduced, and the spring return shaft 314 and the turnover plate 315 can avoid the bull's eye bearings 316 from entering the opening on the surface of the sliding plate 304 during the resetting process of the sliding plate 304.
[0056] The specific implementation of the embodiment is: when the electronic product to be tested is tested by the insulation resistance tester 2201 and the voltage resistance tester 2202, if the electronic product is qualified, the electronic product will enter the drum 303 rotatingly connected to the inner wall of the extension plate 306 under the pushing of the moving plate 2116 and the rotating plate 2124, and the drum 303 is arranged in slope along the extension plate 306, under the action of the drum 303 and gravity, the qualified electronic product will enter the channel at the last side of the guide frame 301, and when the electronic product fails in the insulation resistance test, the electronic product will deliver a strong current to the conductive block 2207 and the second conductive frame 2205, the second conductive frame 2205 will transmit the current to the second conductive wire 2206, the second conductive wire 2206 is wound and fixed on the first iron shaft 307, so that the first iron shaft 307 has magnetism at this time, and under the action of the magnetic force, the second iron shaft 317 at the rear will move to the first iron shaft 307 at the rear, and when the second iron shaft 317 moves to the left, the permanent magnet 322 and the bull's eye bearing 316 will move to the rear at the same time, it should be understood that, since the side surface of the bull's eye bearing 316 in the sliding plate 304 is in contact with the surface of the roller 319, the friction between the side surface of the bull's eye bearing 316 and the sliding plate 304 can be greatly reduced under the rotation of the roller 319, so that the bull's eye bearing 316 in the sliding plate 304 is more easily moved to the left under the action of the magnetic force of the second iron shaft 317 and the first iron shaft 307, when the bull's eye bearing 316 in the sliding plate 304 moves to the left side of the sliding plate 304, the sliding plate 304 will move forward under the action of the second reset spring 312, it can be understood that the second reset spring 312 is always in a compressed state, when the bull's eye bearing 316 at the rear is no longer limited, the second reset spring 312 will push the sliding plate 304 to move forward, when the sliding plate 304 moves forward, the extension plate 306 will move forward at the same time, it should be understood that the extension plate 306 only serves to support and guide, so the extension plate 306 itself can be made of light material, so that the sliding plate 304 can smoothly drive the extension plate 306 to move forward, when the notch on the surface of the sliding plate 304 moves to the bull's eye bearing 316 at the front, the bull's eye bearing 316 at the front will be pushed into the notch on the surface of the sliding plate 304 under the action of the first reset spring 318, it can be understood that the bull's eye bearing 316 at the front and the second iron shaft 317 are always subjected to the elastic force of the first reset spring 318, and the bull's eye bearing 316 at the front uses its rollable property to reduce the friction with the sliding plate 304, at this time, the sliding plate 304 can be limited, and at this time, the drum 303 on the extension plate 306 corresponds to the middle entrance of the guide frame 301, at this time, the control stepper motor 2126 will control the moving plate 2116 and the rotating plate 2124 to continue to move forward,Therefore, the electronic product that fails the insulation test is pushed onto the extension plate 306, and as the stepper motor 2126 continues to operate, the moving plate 2116 eventually pushes the electronic product that fails the insulation test to the drum 303, which guides the electronic product that fails the insulation test into the middle channel of the guide frame 301. When the electronic product passes the insulation test and is qualified, it proceeds to the high-voltage resistance test. When the electronic product fails the high-voltage resistance test, the same electronic product delivers current to the second conductive wire 2206 connected to the high-voltage resistance tester. When the second conductive wire 2206 passes the front first iron shaft 307 and the third iron shaft 321, it causes the front cow eye bearing 316 to move to the left under the magnetic force of the first iron shaft 307. It should be noted that since the electronic product passes the insulation test, the rear cow eye bearing 316 is not pulled to the left, so the rear cow eye bearing 316 is still inside the sliding plate 304. When the third iron shaft 321 generates a magnetic force, it repels the permanent magnet 322. It should be noted that since the electronic product receives a large current during the high-voltage resistance test, the magnetic force of the third iron shaft 321 is large, so the repulsive force of the permanent magnet 322 is much greater than the elastic force of the first return spring 318, which pushes the cow eye bearing 316 inside the sliding plate 304 to the left. At this time, the two cow eye bearings 316 are not in contact with the sliding plate 304, so the sliding plate 304 continues to move forward under the pushing force of the second return spring 312 until the second return spring 2107 is fully extended. At this time, the drum 303 of the extension plate 306 corresponds to the frontmost outlet of the guide frame 301, so the electronic product that fails the high-voltage resistance test enters the channel at the frontmost outlet of the guide frame 301. When the sliding plate 304 needs to be reset, the second hydraulic rod 310 pushes the connecting block and the sliding plate 304 forward to reset. During the reset process, the spring reset shaft 314 rotates on the inner wall of the sliding plate 304, and the flip plate 315 is fixed on the surface of the spring reset shaft 314. Therefore, the flip plate 315 can rotate under the action of the spring reset shaft 314. When the flip plate 315 moves to the cow eye bearing 316, the flip plate 315 is pushed to rotate by the cow eye bearing 316. Therefore, the flip plate 315 can cover half of the opening on the surface of the sliding plate 304 to prevent the cow eye bearing 316 from being stuck inside the sliding plate 304 during the reset process. When the sliding plate 304 moves behind the rear cow eye bearing 316, the spring reset shaft 314 drives the flip plate 315. It should be noted that the spring reset shaft 314 is a mechanical device that uses the elastic potential energy of a spring to achieve automatic reset. Its core principle is to store and release energy through a spring.The spring reset rotating shaft 314 is automatically restored to the preset initial position after the external force, the second hydraulic rod 310 is controlled to reset, and the sliding plate 304 is moved forward again under the action of the second reset spring 312, at this time, the bull eye bearing 316 enters the gap on the outer surface of the sliding plate 304, and the reset work is completed.
[0057] A method for conveniently checking an electronic product detection table, comprising the following steps:
[0058] S1: When the device needs to be used, the staff can apply a rotating power to the rotating handle 2102, the rotating handle 2102 transmits the power to the first threaded shaft 2104, so as to drive the first threaded shaft 2104 to rotate, and drive the two lifting plates 2101 to move upwards in cooperation with the threaded connection relationship between the first threaded shaft 2104 and the lifting plates 2101, and the lifting frame 2103 is synchronously moved upwards when the lifting plates 2101 move upwards, until the lifting frame 2103 is moved to the appropriate height, the step motor 2126 is controlled to operate, and the rotating plate 2124 can push the baffle 2105 to move rearward, so that when the baffle 2105 moves rearward, the electronic product in the lifting frame 2103 falls downward, and the moving plate 2116 provides a temporary supporting force for the electronic product in the lifting frame 2103 in the moving process, until the baffle 2105 is reset under the action of the force spring 2107, thereby achieving the purpose of discharging;
[0059] S2: When the moving plate 2116 and the rotating plate 2124 push the electronic product to be detected to move to the position between the first conductive frame 2204 and the second conductive frame 2205 at the rear, the first hydraulic rod 2209 can be used to push the conductive block 2207 to move to the position of the electronic product to be detected, until the conductive block 2207 contacts the two side surfaces of the electronic product to be detected, and then the insulation resistance tester 2201 is controlled to operate, so that the daily insulation performance of the electronic product can be detected, and when the detection is completed, the step motor 2126 is controlled to operate again, and the electronic product to be detected is continuously moved until it is located at the first conductive frame 2204 and the second conductive frame 2205 at the front, and the conductive block 2207 is also pushed to contact the electronic product, and then the withstand voltage tester 2202 is controlled to operate, and the withstand voltage tester 2202 repeats the above detection steps, so as to perform the extreme withstand voltage test on the electronic product;
[0060] S3: When the electronic products to be tested are tested by the insulation resistance tester 2201 and the voltage resistance tester 2202, if the electronic products are qualified, the electronic products will be pushed into the drum 303 rotatingly connected to the inner wall of the extension plate 306 by the moving plate 2116 and the rotating plate 2124, and the drum 303 is arranged along the inclined surface of the extension plate 306. Under the action of the drum 303 and gravity, the qualified electronic products will enter the channel at the back of the guide frame 301. When the electronic products are unqualified in the insulation resistance test, the moving plate 2116 will finally push the unqualified electronic products to the drum 303, and under the action of the drum 303, the electronic products unqualified in the insulation test will be guided to enter the middle channel of the guide frame 301. When the electronic products are qualified after the insulation test, the electronic products will be subjected to the high-voltage resistance test. When the electronic products are unqualified in the high-voltage resistance test, the electronic products unqualified in the high-voltage resistance test will enter the channel at the front of the guide frame 301.
[0061] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another, without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0062] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, alternatives, and variations can be made in the embodiments without departing from the spirit and scope of the present application as defined by the appended claims and their equivalents.
Claims
1. An electronic product inspection station for easy inspection, comprising an inspection station (1), characterized in that: The detection mechanism (2) is arranged above the detection table (1), the classification mechanism (3) is arranged on the left side of the detection table (1); The detection mechanism (2) comprises a feeding unit (21), which is arranged above the detection table (1) and can realize automatic feeding to the detection table (1); The detection mechanism (2) further comprises a detection unit (22), which is arranged above the detection table (1) and cooperates with the feeding unit (21), and the detection unit (22) can automatically test the electronic products to be detected; The classification mechanism (3) cooperates with the detection mechanism (2), and the classification mechanism (3) can automatically classify and discharge the detected electronic products; The feeding unit (21) comprises two rectangular plates (2108), the upper surface of each rectangular plate (2108) is fixedly connected with two positioning shafts (2106), the inner wall of each rectangular plate (2108) is rotatably connected with a first threaded shaft (2104), the top end of each first threaded shaft (2104) is fixedly connected with a rotating handle (2102), the outer surface of each first threaded shaft (2104) is threadedly connected with a lifting plate (2101), the inner part of each lifting plate (2101) is slidably connected to the outer surface of the two positioning shafts (2106), and the side face of the two lifting plates (2101) that are close to each other is fixedly connected with a lifting frame (2103); The detection unit (22) comprises an insulation resistance tester (2201), the outer surface of the insulation resistance tester (2201) is fixedly connected to the inner wall of the detection table (1), the inner wall of the detection table (1) is fixedly connected with a withstand voltage tester (2202), the outer surfaces of the insulation resistance tester (2201) and the withstand voltage tester (2202) are fixedly connected with a first conductive wire (2203) and a second conductive wire (2206), and the inner wall of the detection table (1) is fixedly connected with two first conductive frames (2204) and two second conductive frames (2205); The classification mechanism (3) comprises two fixed blocks (308), the inner wall of each fixed block (308) is fixedly connected with a first iron shaft (307), the right side of the detection table (1) is fixedly connected with a fixed frame (302), the inner wall of the fixed frame (302) is fixedly connected with two first return springs (318), the right end of each first return spring (318) is fixedly connected with a second iron shaft (317), the left end of one of the second iron shafts (317) is fixedly connected with a permanent magnet (322), and the right end of each second iron shaft (317) is fixedly connected with a bull's eye bearing (316).
2. The electronic product test station of claim 1, wherein: The bottom surface of the lifting frame (2103) is provided with two T-shaped sliding grooves (2110), the inside of each T-shaped sliding groove (2110) is slidably connected with a T-shaped sliding block (2109), the bottom surfaces of the two T-shaped sliding blocks (2109) are fixedly connected with a baffle (2105), the back surface of the lifting frame (2103) is fixedly connected with two force springs (2107), the inside of the detection table (1) is provided with a moving plate (2116), the inner wall of the moving plate (2116) is threadedly connected with a second threaded shaft (2117), the top end of the second threaded shaft (2117) is fixedly connected with a rotating shaft (2119), and the outer side of the rotating shaft (2119) is provided with a rotating plate (2124).
3. The electronic product test station of claim 2, wherein: The inner wall of the rotating plate (2124) is rotatably connected to the outer surface of the rotating shaft (2119), the inside of the rotating plate (2124) and the inside of the moving plate (2116) are jointly clamped with a clamping shaft (2118), the inner wall of the rotating plate (2124) is provided with two first sliding grooves (2122), the inside of each first sliding groove (2122) is slidably connected with a first sliding block (2123), and the mutually close sides of the two first sliding blocks (2123) are fixedly connected with a rectangular block (2121). The left side of the rectangular block (2121) is fixedly connected with a transmission shaft (2120), and the two first sliding grooves (2122) are evenly provided on the inner side wall of the rotating plate (2124) with the transmission shaft (2120) as the center of symmetry. The outer surface of the transmission shaft (2120) is clamped in the inside of the rotating shaft (2119).
4. The electronic product test station of claim 2, wherein: The inner wall of the detection table (1) is fixedly connected with a supporting frame (2112), the outer surface of the moving plate (2116) is slidably connected in the inside of the supporting frame (2112), the inner wall of the detection table (1) is provided with two second sliding grooves (2114), the inside of each second sliding groove (2114) is slidably connected with a second sliding block (2113), and the mutually close sides of the two second sliding blocks (2113) are respectively fixedly connected to the two side surfaces of the moving plate (2116). The inner wall of each second sliding block (2113) is rotatably connected with a roller (2115), and the outer surface of each roller (2115) is in contact with the inner wall of the detection table (1).
5. The electronic product test station of claim 2, wherein: The front surface of the detection table (1) is fixedly connected with a supporting plate (2125), the upper surface of the supporting plate (2125) is fixedly connected with a stepping motor (2126), the output end of the stepping motor (2126) is fixedly connected with a third threaded shaft (2111), the outer surface of the third threaded shaft (2111) is threadedly connected with the inner wall of the moving plate (2116), and the outer surface of the third threaded shaft (2111) is rotatably connected with the inner wall of the detection table (1). The bottom surface of each rectangular plate (2108) is fixedly connected to the upper surface of the detection table (1), and the end of the two force springs (2107) close to the baffle (2105) is fixedly connected to the outer surface of the baffle (2105).
6. The electronic product test station of claim 1, wherein: Right end of each first conductive wire (2203) is fixedly connected to left side of first conductive frame (2204), one end of each second conductive wire (2206) penetrates detection table (1) and extends to above detection table (1), one end of each second conductive wire (2206) near second conductive frame (2205) is fixedly connected to back of second conductive frame (2205), inner wall of each first conductive frame (2204) and second conductive frame (2205) are fixedly connected with two first insulating plates (2208), inner wall of each two first insulating plates (2208) are fixedly connected with first hydraulic rod (2209), telescopic end of each first hydraulic rod (2209) is fixedly connected with second insulating plate (2210), bottom surface of each second insulating plate (2210) is fixedly connected with conductive block (2207), outer surface of two conductive blocks (2207) are respectively slidably connected to inside of two first conductive frames (2204), outer surface of other two conductive blocks (2207) are respectively slidably connected to inside of two second conductive frames (2205).
7. The electronic product test station of claim 1, wherein: Right side of detection table (1) is provided with rectangular groove (305), inside of fixed frame (302) and inside of rectangular groove (305) are slidably connected with sliding plate (304), right side of fixed frame (302) is fixedly connected with first connecting block (313), right side of sliding plate (304) is fixedly connected with second connecting block (311), front of first connecting block (313) and back of second connecting block (311) are fixedly connected with second reset spring (312), right side of first connecting block (313) is fixedly connected with connecting frame (320), inner wall of connecting frame (320) is fixedly connected with third iron shaft (321), left side of sliding plate (304) is fixedly connected with extension plate (306), inner wall of extension plate (306) is rotatably connected with several same rollers (303), left side of detection table (1) is fixedly connected with guide frame (301).
8. The convenient inspection electronic product inspection table according to claim 7, characterized in that: Right side of fixed frame (302) is fixedly connected with two supporting frames (309), inner wall of two supporting frames (309) are fixedly connected with second hydraulic rod (310), bottom surface of each fixed block (308) is fixedly connected to upper surface of detection table (1), outer surface of each first iron shaft (307) is fixedly connected to outer surface of second conductive wire (2206), each second iron shaft (317) is arranged in inner cavity of fixed frame (302), one of cow eye bearings (316) and permanent magnet (322) are arranged in inner cavity of sliding plate (304), outer surface of other cow eye bearing (316) is in contact with left side of sliding plate (304).
9. The convenient inspection electronic product inspection table according to claim 7, characterized in that: The inner wall of the sliding plate (304) is rotationally connected with a roller shaft (319), the outer surface of the roller shaft (319) is in contact with the outer surface of one of the eye shafts (316), the inner wall of the sliding plate (304) is rotationally connected with a spring return shaft (314), the outer surface of the spring return shaft (314) is fixedly connected with a turnover plate (315), the outer surface of the third iron shaft (321) is fixedly connected with the outer surface of one of the second conductive wires (2206), and the outer surface of the extension plate (306) is slidingly connected in the inner part of the support frame (2112).
10. A method of facilitating inspection of an electronic product test station according to any one of claims 1-9, characterized by: Specifically comprising the following steps: S1: when the device needs to be used, the staff can apply a rotating power to the rotating handle (2102), the rotating handle (2102) will transmit the power to the first threaded shaft (2104), so as to drive the first threaded shaft (2104) to rotate, and drive the two lifting plates (2101) to move upwards in cooperation with the lifting plates (2101) having a threaded connection relationship with the first threaded shaft (2104), and the lifting plates (2101) will drive the lifting frame (2103) to move upwards synchronously, until the lifting frame (2103) moves to the appropriate height, the step motor (2126) is controlled to operate, the rotating plate (2124) can push the baffle (2105) to move rearward, therefore, when the baffle (2105) moves rearward, the electronic product in the lifting frame (2103) will fall downwards, and the moving plate (2116) will provide a temporary supporting force for the electronic product in the lifting frame (2103) during the movement, until the baffle (2105) is reset under the action of the stressed spring (2107), thereby achieving the purpose of discharging; S2: when the moving plate (2116) and the rotating plate (2124) push the electronic product to be detected to move to the position between the rear first conductive frame (2204) and the second conductive frame (2205), the first hydraulic rod (2209) can be used to push the conductive block (2207) to move to the position of the electronic product to be detected, until the conductive block (2207) contacts the two side surfaces of the electronic product to be detected, then the insulation resistance tester (2201) is controlled to operate, thereby the daily insulation performance of the electronic product can be detected, after the detection is completed, the step motor (2126) is controlled to operate again, and the electronic product to be detected is continuously pushed to move, until it moves to the position of the first conductive frame (2204) and the second conductive frame (2205) in front, and the conductive block (2207) is also pushed to contact the electronic product, then the withstand voltage tester (2202) is controlled to operate, and the withstand voltage tester (2202) will repeat the above detection steps, thereby the extreme withstand voltage test of the electronic product can be performed. S3: when using insulation resistance tester (2201) and withstand voltage tester (2202) to test the electronic products, if the electronic products are qualified, the electronic products will enter the roller (303) at the inner wall rotating connection of the extension plate (306) under the push of the moving plate (2116) and the rotating plate (2124), and the roller (303) is arranged along the inclined surface of the extension plate (306), under the action of the roller (303) and gravity, the qualified electronic products will enter the channel at the last side of the guide frame (301), and when the electronic products are unqualified during the insulation resistance test, the moving plate (2116) will finally push the unqualified electronic products to the roller (303), under the action of the roller (303), the unqualified electronic products of the insulation test can be guided into the middle channel of the guide frame (301), and when the electronic products are qualified after the insulation test, the electronic products will be tested for high voltage resistance, and when the electronic products are unqualified for high voltage resistance test, the unqualified electronic products for high voltage resistance test will enter the channel at the most front side of the guide frame (301).
Citation Information
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