Discharge tube batch tester

By designing a batch testing instrument for discharge tubes and adopting a combination and fixing mechanism, safe and efficient batch testing of discharge tubes was achieved, solving the problems of slow testing speed and safety risks in existing technologies, and ensuring operational safety and testing accuracy.

CN224052333UActive Publication Date: 2026-03-27XIAMEN TAIRUIDA TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing batch testing of discharge tubes does not include a test rack, resulting in slow testing speed and a risk of electric shock to employees.

Method used

A batch tester for discharge tubes was designed, comprising a test platform, a transparent insulating protective plate, a pneumatic pump, a surrounding connecting wire, a processor, and a fixing mechanism. The combined mechanism enables pneumatic two-hand operation, and the fixing mechanism ensures the stable fixation of the discharge tubes, supporting the simultaneous testing of multiple discharge tubes.

Benefits of technology

It improves testing efficiency, ensures operational safety and testing accuracy, avoids the danger of high voltage signals to operators, and achieves stable fixation and rapid detection of discharge tubes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the related technical field of electronic component testing, in particular to a batch tester for discharge tubes, which comprises a detection table, a test element is embedded on one side of the detection table, a combined mechanism is arranged on one side of the surface of the detection table, and a fixing mechanism is arranged at one end of the detection table. According to the batch tester for the discharge tubes, through the arrangement of the combined mechanism, when detection needs to be carried out and after a test element is installed, the test element is connected with an external detection device through a connector surrounding a connecting line, and then the two ends of a first pneumatic pump and the two ends of a second pneumatic pump are connected to the test element; and the processor is connected with an external power supply, so that an operator can send a control instruction to the processor through the first button and the second button so as to drive the first pneumatic pump and the second pneumatic pump to start at the same time to finish the test, and meanwhile, a test result is transmitted to an external detection device through the surrounding connecting line.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic components test related technical field especially, it relates to discharge tube batch tester. BACKGROUND

[0002] Electronic component testing refers to the process of detecting and evaluating the electrical characteristics, functions, performance parameters and reliability of electronic components through specific testing equipment and methods, including resistance, capacitance, inductance, operating voltage, current, power, signal integrity, etc. to ensure that components meet design standards, meet application requirements, and improve product quality and stability. With the continuous development of science and technology, the requirements for testing devices are becoming higher and higher, therefore, there is an urgent need for discharge tube batch tester.

[0003] However, in the existing discharge tube batch test operation, most of them do not set up test racks, and in the case of no test rack, only single discharge tube can be tested, which is very slow. Because of the high voltage signal, the staff also has the risk of electric shock. UTILITY MODEL CONTENT

[0004] The utility model aims at providing discharge tube batch tester to solve the problem of slow test speed and risk of electric shock in the existing discharge tube batch test operation.

[0005] To achieve the above purpose, the utility model provides the following technical scheme: discharge tube batch tester, including detection table, the detection table one side fits with test element, the detection table surface one side is provided with combination mechanism, and the detection table one end is provided with fixed mechanism.

[0006] Preferably, the combination mechanism includes a transparent insulating protective plate, a first pneumatic pump, a second pneumatic pump, a ring connection line, a processor, a connector, a first button and a second button. The transparent insulating protective plate is fixedly connected to one side of the surface of the detection table. The first pneumatic pump is installed on one side of the detection table. The second pneumatic pump is installed on the other side of the detection table. Each element of the test element is electrically connected with the ring connection line. The processor is installed on one side of the first pneumatic pump. The connector is installed at both ends of the ring connection line. The first button is connected to one side of the processor. The second button is connected to one side of the processor.

[0007] Preferably, the test element is fitted between the transparent insulating protective plate and the installation groove of the detection table, and the test element is electrically connected with the processor.

[0008] Preferably, the first pneumatic pump and the second pneumatic pump are electrically connected, and the processor is electrically connected with the first pneumatic pump and the second pneumatic pump respectively.

[0009] Preferably, the fixing mechanism comprises a sliding groove, a limiting groove, a groove, a through groove, a spring, a limiting block and a handle, the two sides of the detection table are provided with the sliding groove, the bottom end of the test element is provided with the limiting groove, one side of the sliding groove is provided with the groove, one side of the groove is provided with the through groove, one side of the groove is connected with the spring, the other side of the spring is connected with the limiting block, and one end of the limiting block is fixedly connected with the handle.

[0010] Preferably, one side of the handle is embedded in the inside of the through groove, and the connection position of the handle and the limiting block is arranged on the inside of the spring.

[0011] Preferably, the two sides of the limiting block are embedded in the sliding groove and the limiting groove respectively, and the limiting block and the sliding groove and the limiting groove form a mutual sliding structure through the spring and the handle.

[0012] Preferably, the positions of the sliding groove and the limiting groove are opposite, and the sizes of the sliding groove, the limiting groove and the limiting block are matched.

[0013] Compared with the prior art, the discharge tube batch tester has the advantages that: through the setting of the combination mechanism and the fixing mechanism, the test tool adopts pneumatic double-hand operation, the safety of the operator is ensured, the whole disc of discharge tubes can be tested at the same time, the test efficiency is greatly improved, and the fixing mechanism is used to stably fix the workpiece, so that the accuracy during the test is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a side view appearance structure schematic view of the utility model;

[0015] Figure 2 It is a combination mechanism part sectioned side view exploded structure schematic view of the utility model;

[0016] Figure 3 It is a fixing mechanism part sectioned side view exploded structure schematic view of the utility model;

[0017] Figure 4 It is a fixing mechanism part sectioned side view exploded structure schematic view of the utility model; Figure 2 It is an enlarged structure schematic view of position A in the utility model;

[0018] Figure 5 It is an enlarged structure schematic view of position B in the utility model; Figure 3 It is an enlarged structure schematic view of position B in the utility model.

[0019] In the figure: 1, detection platform; 2, test element; 3, combination mechanism; 301, transparent insulating protection plate; 302, first pneumatic pump; 303, second pneumatic pump; 304, surrounding connecting line; 305, processor; 306, connecting head; 307, first button; 308, second button; 4, fixing mechanism; 401, sliding groove; 402, limiting groove; 403, groove; 404, through groove; 405, spring; 406, limiting block; 407, handle. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0021] Please refer to Figures 1-5 The utility model provides a technical scheme: discharge tube batch tester, including detection platform 1, the one side of detection platform 1 is inlaid with test element 2, the surface one side of detection platform 1 is provided with combination mechanism 3, and one end of detection platform 1 is provided with fixing mechanism 4.

[0022] Further, the combination mechanism 3 comprises a transparent insulating protective plate 301, a first pneumatic pump 302, a second pneumatic pump 303, a ring connecting line 304, a processor 305, a connecting head 306, a first button 307 and a second button 308, the surface side of the detection table 1 is fixedly connected with the transparent insulating protective plate 301, one side of the detection table 1 is provided with the first pneumatic pump 302, the other side of the detection table 1 is provided with the second pneumatic pump 303, each element of the test element 2 is electrically connected with the ring connecting line 304, one side of the first pneumatic pump 302 is provided with the processor 305, the connecting head 306 is installed at both ends of the ring connecting line 304, the first button 307 is connected with the processor 305 through a line, and the second button 308 is connected with the processor 305 through a line. Through the setting of the transparent insulating protective plate 301, the first pneumatic pump 302, the second pneumatic pump 303, the ring connecting line 304, the processor 305, the connecting head 306, the first button 307 and the second button 308, when detection is needed, the test element 2 is connected with the external detection device through the connecting head 306 on the ring connecting line 304 after being installed, then both ends of the first pneumatic pump 302 and the second pneumatic pump 303 are connected to the test element 2, and the processor 305 is connected with the external power supply, thereafter the operator can send a control instruction to the processor 305 through the first button 307 and the second button 308, thereby driving the first pneumatic pump 302 and the second pneumatic pump 303 to start simultaneously, and then completing the test, and the test result is transmitted to the external detection device through the ring connecting line 304.

[0023] Further, the test element 2 is embedded between the transparent insulating protective plate 301 and the installation groove of the detection table 1, the test element 2 is electrically connected with the processor 305, through the setting of the transparent insulating protective plate 301, the transparent insulating protective plate 301 is fixedly installed on the surface side of the detection table 1 and covers the test element 2, which can effectively prevent current leakage during the test, plays an insulating protection role, protects the safety of the operator, protects the internal elements of the test element 2, avoids damage caused by the external environment (such as dust, liquid or accidental contact), and improves the stability of the test and the service life of the equipment.

[0024] Further, the first pneumatic pump 302 and the second pneumatic pump 303 are electrically connected, the processor 305 is electrically connected with the first pneumatic pump 302 and the second pneumatic pump 303 respectively, through the setting of the processor 305, the processor 305 is electrically connected with the first pneumatic pump 302 and the second pneumatic pump 303 respectively and controls them, the processor 305 controls the start and stop of the pneumatic pump according to the operation instruction, adjusts various related parameters during the detection process, and adapts to different test requirements.

[0025] Further, the fixing mechanism 4 comprises a sliding groove 401, a limiting groove 402, a recess 403, a through groove 404, a spring 405, a limiting block 406 and a handle 407, the two sides of the detection table 1 are provided with the sliding groove 401, the bottom end of the test element 2 is provided with the limiting groove 402, one side of the sliding groove 401 is provided with the recess 403, one side of the recess 403 is provided with the through groove 404, one side of the recess 403 is connected with the spring 405, the other side of the spring 405 is connected with the limiting block 406, one end of the limiting block 406 is fixedly connected with the handle 407, through the setting of the sliding groove 401, the limiting groove 402, the recess 403, the through groove 404, the spring 405, the limiting block 406 and the handle 407, during the installation of the test element 2, the handle 407 is first pulled, the handle 407 drives the limiting block 406 to overcome the movement resistance of the spring 405, and then the limiting block 406 slides into the sliding groove 401, after the positions of the sliding groove 401 and the limiting groove 402 are relatively correct, the handle 407 is released, and then the limiting block 406 slides into the limiting groove 402 under the action of the spring 405, so as to complete the clamping of the test element 2.

[0026] Further, one side of the handle 407 is embedded in the inside of the through groove 404, and the connection between the handle 407 and the limiting block 406 is arranged on the inside of the spring 405, through the setting of the handle 407, the handle 407 is fixedly connected with the limiting block 406 and embedded in the through groove 404, and the operator can control the movement of the limiting block 406 by pulling or pushing the handle 407, so as to realize the fixation or release of the test element 2.

[0027] Further, the two sides of the limiting block 406 are respectively embedded in the sliding groove 401 and the limiting groove 402, and the limiting block 406 and the sliding groove 401 and the limiting groove 402 form a mutual sliding structure through the spring 405 and the handle 407, through the setting of the limiting block 406, the limiting block 406 is embedded in the sliding groove 401 and the limiting groove 402, when the test element 2 is installed on the detection table 1, the limiting block 406 can enter the limiting groove 402, so as to realize the stable fixation of the test element 2 and prevent displacement of the test element 2 during the test.

[0028] Further, the positions of the sliding groove 401 and the limiting groove 402 are relatively correct, and the sizes of the sliding groove 401, the limiting groove 402 and the limiting block 406 are matched, through the setting of the sliding groove 401 and the limiting groove 402, the main function of the sliding groove 401 is to guide the sliding of the limiting block 406, so as to ensure the stability and the springback reset function of the limiting block 406, the function of the limiting groove 402 is to provide the locking position of the limiting block 406, so as to ensure the stable fixation of the test element 2, and the two are matched with each other, so as to realize the accurate fixation, quick unlocking and automatic reset of the test element 2, and improve the operation convenience and reliability of the detection table 1.

[0029] Working principle: during the installation of the test element 2, first pull the handle 407, the handle 407 drives the limiting block 406 to overcome the movement resistance of the spring 405, and then the limiting block 406 slides into the sliding groove 401, after that when the position of the sliding groove 401 and the limiting groove 402 is opposite, release the handle 407, and then the limiting block 406 slides in the limiting groove 402 under the action of the spring 405, thereby completing the clamping of the test element 2, when the test element 2 is installed, the connecting head 306 on the connecting line 304 is used to connect the test element 2 with the external detection device, then the two ends of the first pneumatic pump 302 and the second pneumatic pump 303 are connected to the test element 2, and the processor 305 is connected with the external power supply, after that the operator can send control instructions to the processor 305 through the first button 307 and the second button 308, thereby driving the first pneumatic pump 302 and the second pneumatic pump 303 to start at the same time, thereby completing the test, and the test result will be transmitted to the external detection device through the connecting line 304.

[0030] Although the embodiments of the present application have been shown and described, it is to be understood that for the purpose of the present application, the embodiments can be changed, modified, replaced and varied in many ways without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. Discharge tube batch tester, comprising a test bench (1), characterized in that: The detection platform (1) is embedded with a test element (2), the surface of the detection platform (1) is provided with a combination mechanism (3), and one end of the detection platform (1) is provided with a fixing mechanism (4).

2. The batch tester of claim 1, wherein: The combination mechanism (3) comprises a transparent insulating protective plate (301), a first pneumatic pump (302), a second pneumatic pump (303), a surrounding connecting line (304), a processor (305), a connecting head (306), a first button (307) and a second button (308), the surface of the detection platform (1) is fixedly connected with the transparent insulating protective plate (301), one side of the detection platform (1) is mounted with the first pneumatic pump (302), the other side of the detection platform (1) is mounted with the second pneumatic pump (303), each element of the test element (2) is electrically connected with the surrounding connecting line (304), one side of the first pneumatic pump (302) is mounted with the processor (305), the connecting head (306) is mounted at both ends of the line of the surrounding connecting line (304), one side of the processor (305) is connected with the first button (307) in a line mode, and one side of the processor (305) is connected with the second button (308) in a line mode.

3. The batch tester of claim 1, wherein: The test element (2) is embedded between the transparent insulating protective plate (301) and the mounting groove of the detection platform (1), and the test element (2) is electrically connected with the processor (305).

4. The batch tester of claim 2, wherein: The first pneumatic pump (302) and the second pneumatic pump (303) are electrically connected, and the processor (305) is electrically connected with the first pneumatic pump (302) and the second pneumatic pump (303) respectively.

5. The batch tester of claim 1, wherein: The fixing mechanism (4) comprises a sliding groove (401), a limiting groove (402), a groove (403), a through groove (404), a spring (405), a limiting block (406) and a handle (407), the both sides of the detection platform (1) are provided with the sliding groove (401), the bottom end of the test element (2) is provided with the limiting groove (402), one side of the sliding groove (401) is provided with the groove (403), one side of the groove (403) is provided with the through groove (404), one side of the groove (403) is connected with the spring (405), the other side of the spring (405) is connected with the limiting block (406), and one end of the limiting block (406) is fixedly connected with the handle (407).

6. The batch tester of claim 5, wherein: One side of the handle (407) is embedded in the inside of the through groove (404), and the connection position of the handle (407) and the limiting block (406) is arranged on the inside of the spring (405).

7. The batch tester of claim 5, wherein: The both sides of the limiting block (406) are embedded in the sliding groove (401) and the limiting groove (402) respectively, and the limiting block (406) and the sliding groove (401) and the limiting groove (402) form a mutual sliding structure through the spring (405) and the handle (407).

8. The batch tester of claim 5, wherein: The positions of the sliding groove (401) and the limiting groove (402) are opposite, and the sizes of the sliding groove (401), the limiting groove (402) and the limiting block (406) are matched.