Electronic connector sealing performance detection mechanism

By designing a bidirectional installation and easy-to-move structure, the problem of the single testing process and non-replaceable molds in existing electronic connector sealing performance testing mechanisms has been solved. This enables simultaneous testing and rapid adaptation to the needs of different connector models, improving testing efficiency and equipment flexibility, reducing operating costs, and enhancing market competitiveness.

CN223637031UActive Publication Date: 2025-12-05江西鼎端精密科技有限公司
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Patent Information

Application Number
CN202520254959.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2025-12-05
Estimated Expiration
2035-02-18

AI Technical Summary

Technical Problem

Existing electronic connector sealing performance testing institutions suffer from a single testing process, low efficiency, inability to simultaneously install and test the connector under test and new connectors, and limited applicability due to the inability to replace molds. The fixed design restricts the flexibility of the equipment and its market competitiveness.

Method used

The device employs a bidirectional mounting structure for testing and a simple moving structure to enable simultaneous operation of the connector under testing and new connectors. The easy-to-disassemble mold design allows the testing mechanism to quickly adapt to the needs of different connector models, and the simple moving structure improves the flexibility and production efficiency of the equipment.

Benefits of technology

It significantly improves testing efficiency, reduces time gaps and human error, lowers operating costs, enhances equipment flexibility and market competitiveness, and can quickly adapt to diverse product demands and rapidly changing market environments.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a sealing performance detection mechanism for an electronic connector, which relates to the technical field of electronic connectors and comprises an operating machine table, a sealing detection module fixed on the top of the operating machine table, a first gear rotationally connected to the top of the operating machine table, a rotating circular truncated cone fixed on the top of the first gear, and a mold bearing table fixed on the top of the rotating circular truncated cone. The top of the mold bearing table is provided with an electronic connector mold, the surface of the first gear is meshed with a second gear, the second gear is rotationally connected to the top of the operating machine table and driven by a first motor to rotate, the first motor is fixed to the inner wall of the operating machine table, and the top of the operating machine table is provided with a limiting sliding groove. Limiting blocks are slidably connected to the inner walls of the limiting sliding grooves and driven by driving cylinders to slide, the driving cylinders are fixed to the inner wall of the operation machine table, limiting grooves are formed in the top of the mold bearing table in an array mode, two limiting shafts are arranged on the inner walls of the limiting grooves, and limiting sliding blocks are fixed to the two ends of each limiting shaft.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic connector technical field especially relates to electronic connector sealing performance detection mechanism. BACKGROUND

[0002] The sealing performance detection structure of electronic connector mainly includes air tightness test equipment, test fixture and data acquisition system, and the sealing performance detection equipment usually adopts gas leakage detection method, such as gas flow meter or helium leak detector, to monitor the gas leakage rate of the connector under the specified pressure, and the test fixture is used to fix the sample, to ensure that the sealing performance of the connector is accurately evaluated during the test process, and the detection process generally includes pretreatment, air tightness test and result analysis, the connector needs to be cleaned in the pretreatment stage to prevent pollution from affecting the test result, in the air tightness test link, the equipment will apply certain pressure to the connector, and whether the leakage rate is within the allowable range is measured, through the detection structure, the sealing performance of the electronic connector under various environmental conditions can be effectively verified, and the safety and reliability in actual application are ensured.

[0003] In the prior art, the sealing performance detection mechanism of electronic connector has significant defects, mainly reflected in the singleness and inefficiency of the detection process, and under normal circumstances, these mechanisms can only complete the detection of the installed connector, then disassemble the connector, and then install a new connector to be detected, this process not only consumes a lot of time, but also cannot realize the synchronous installation and detection of the connector to be detected and the new batch of connectors, therefore, the operator has obvious time gap between the detection of the connector to be detected and the installation of the new connector, which leads to the whole working process to be complicated and inefficient, in addition, this operation process also increases the human error possibility, which further affects the overall working quality and the reliability of the equipment. UTILITY MODEL CONTENTS

[0004] The utility model aims at solving the shortcomings in the prior art, and provides an electronic connector sealing performance detection mechanism.

[0005] In order to achieve the above object, the utility model discloses the following technical scheme: Electronic connector sealing performance detection mechanism, including operation machine table, the operation machine table top is fixed with sealing detection module, the operation machine table top is rotatably connected with first gear, the first gear top is fixed with rotating round table, the rotating round table top is fixed with mould bearing platform, the mould bearing platform top is equipped with electronic connector mould, the first gear surface is engaged with second gear, the second gear rotatably connects in operation machine table top, the second gear is driven to rotate through first motor, the first motor is fixed in operation machine table inner wall, the operation machine table top is opened and is limited sliding slot, the limited sliding slot inner wall is slidably connected with limiting block, the limiting block is driven to slide through drive cylinder, the drive cylinder is fixed to operation machine table inner wall.

[0006] Preferably, the top of the mould bearing platform is arrayed with a limiting groove, the inner wall of the limiting groove is provided with two limiting shafts, the two ends of the two limiting shafts are fixed with limiting sliding blocks, the limiting sliding blocks slide in the inner wall of the limiting groove, the limiting sliding blocks are fixed with limiting springs on both sides, the limiting springs are fixed on the inner wall of the limiting groove, and the bottom of the electronic connector mould is fixed with a clamping seat. In the prior art, the electronic connector sealing performance detection mechanism mainly relies on fixed installation mould, which has many disadvantages. Since the mould cannot be replaced, its application range is limited, and it can only detect and install specific models of electronic connectors, which not only increases the flexibility of the production line, but also makes the enterprise appear to be in a dilemma when facing diversified product demands. In the case of frequent replacement of different models of connectors, the defects of the fixed mould are particularly prominent, which requires a long equipment adjustment time and high operating cost. In addition, the design of the fixed mould also limits the space for technological advancement and innovation, and cannot timely adapt to the new trend of industry development, thereby affecting the market competitiveness of products. In view of such problems, the utility model adopts the electronic connector mould detachable structure. When the mould needs to be replaced, the electronic connector mould is pulled out upwards, thereby driving the clamping seat at the bottom of the electronic connector mould to disengage from the limiting of the two limiting shafts. After dismounting is completed, the new electronic connector mould is inserted into the middle of the two limiting shafts, so that the two limiting shafts complete the limiting of the new electronic connector mould. This innovative design can significantly improve the flexibility and adaptability of the electronic connector sealing performance detection mechanism, which can quickly adapt to the needs of different models of connectors, reduce equipment adjustment time, realize quick switching, thereby reducing operating cost and improving production efficiency. At the same time, the system also provides more space for technological innovation, so that the enterprise can timely respond to market changes and enhance the competitiveness of products to meet the diversified needs of customers.

[0007] Preferably, the operation machine bottom is provided with an X-shaped sliding groove, the inner wall of the X-shaped sliding groove is slidably connected with an X-shaped bearing seat, the bottom of the X-shaped bearing seat is fixedly connected with a universal wheel, the inner wall of the X-shaped sliding groove is rotatably connected with a threaded rod, the X-shaped bearing seat is threadedly connected to the surface of the threaded rod, the threaded rod is driven to rotate by a second motor, and the second motor is fixed to the inner wall of the X-shaped sliding groove. In the prior art, the electronic connector sealing performance detection mechanism has a fixed operation machine design, which lacks flexibility in the production process and cannot be easily moved. This fixed design not only limits the application range of the equipment, increases the complexity and time cost of production line adjustment, but also requires operators to spend a lot of time reconfiguring and adjusting the equipment when different types of connectors need to be detected, thereby delaying production efficiency. In addition, the traditional detection mechanism is also limited in space utilization and often cannot adapt to rapidly changing market demands. To solve these problems, the utility model adopts a simple moving structure. When the detection mechanism needs to be moved, the second motor is started. Under the driving of the second motor, the threaded rod rotates, causing the X-shaped bearing seat on the surface of the threaded rod to move downward. After the universal wheel at the bottom of the X-shaped bearing seat is in full contact with the ground, the detection mechanism can be easily moved. This significantly improves production efficiency and equipment utilization. By reducing the time required for equipment reconfiguration and adjustment, operators can more quickly adapt to the detection needs of different types of connectors, thereby shortening the production cycle. At the same time, optimizing space utilization and enhancing equipment flexibility enables it to flexibly adapt to rapidly changing market demands, ultimately reducing operating costs and improving the overall production line's response capability and market competitiveness.

[0008] Preferably, the mold bearing table is fixed with rubber pads on both sides. This effectively reduces the friction between the mold bearing table and the limiting structure, reduces the degree of surface wear, prolongs the service life of the mold bearing table, and ensures the long-term stable operation of the equipment.

[0009] Preferably, the operation machine bottom is provided with anti-slip patterns. This effectively enhances the friction between the machine and the ground, reduces the risk of sliding during operation, improves safety and stability, and ensures smooth operation.

[0010] Preferably, the clamping seat clamping part is designed as an arc surface. This provides a smoother operation experience during clamping and pulling out. This design not only reduces friction but also effectively reduces resistance during clamping, making it easier to fix and release the article, thereby improving overall use effect.

[0011] Preferably, the operating machine is provided with a holding groove on both sides, so that the machine can be held more conveniently when moving, and the user only needs to put his palm into the holding groove to firmly hold the machine, ensuring good balance and control during movement, thereby significantly improving the convenience and safety of operation.

[0012] Advantages:

[0013] 1. In the prior art, the sealing performance detection mechanism of the electronic connector has significant defects, mainly in the singleness and low efficiency of the detection process. Usually, these mechanisms can only detect the installed connector, then disassemble the connector, and then install a new connector to be detected. This process not only consumes a lot of time, but also cannot realize the synchronous installation and detection of the connector to be detected and the new connector. Therefore, there is an obvious time gap between the detection of the connector to be detected and the installation of the new connector, which makes the whole working process cumbersome and low in efficiency. In addition, this operation process also increases the possibility of human error, which further affects the overall work quality and the reliability of the equipment. To solve this problem, the utility model adopts a bidirectional installation detection structure to significantly improve the overall work efficiency, reduce the time gap, and improve the smoothness of the production line. This technology not only realizes the synchronous operation of the connector to be detected and the new connector, but also reduces the occurrence rate of human error through an automatic system, thereby improving the accuracy and reliability of the detection. Integrating the functions of detection and installation can greatly simplify the operation process, reduce the operation time, and optimize the utilization of human resources. In addition, the application of real-time data feedback and monitoring system can ensure that potential problems are found in time during the installation process, thereby further improving the product quality.

[0014] 2、In the prior art, the electronic connector sealing performance detection mechanism mainly relies on fixed installation molds, which brings many disadvantages. Since the molds cannot be replaced, their application range is limited, and they can only be used for detecting and installing specific models of electronic connectors, which not only increases the lack of flexibility of the production line, but also makes the enterprise appear to be at a loss when facing diversified product demands. In the case of frequent replacement of different models of connectors, the defects of fixed molds are particularly prominent, which requires a long equipment adjustment time and a high operating cost. In addition, the design of fixed molds also limits the space for technological progress and innovation, and cannot timely adapt to the new trends of industry development, thereby affecting the market competitiveness of products. In view of such problems, the electronic connector mold detachable structure is adopted to significantly improve the flexibility and adaptability of the electronic connector sealing performance detection mechanism. This innovative design enables the detection mechanism to quickly adapt to the needs of different models of connectors, reduces the equipment adjustment time, realizes quick switching, thereby reducing the operating cost and improving the production efficiency. At the same time, the system also provides more space for technological innovation, so that the enterprise can timely respond to market changes, enhance the competitiveness of products, and meet the diversified customer demands.

[0015] 3、In the prior art, the electronic connector sealing performance detection mechanism lacks flexibility in the production process due to its fixed operation machine design, and cannot be simply moved. This fixed design not only limits the application range of the equipment, increases the complexity and time cost of production line adjustment, but also requires the operator to spend a lot of time on reconfiguration and adjustment of the equipment when different types of connectors need to be detected, thereby delaying the production efficiency. In addition, the traditional detection mechanism is also relatively limited in space utilization and often cannot adapt to the rapidly changing market demands. In view of such problems, the simple moving structure is adopted to significantly improve the production efficiency and equipment utilization rate. By reducing the time required for reconfiguration and adjustment of the equipment, the operator can more quickly adapt to the detection needs of different types of connectors, thereby shortening the production cycle. At the same time, the space utilization is optimized and the equipment flexibility is enhanced, so that it can flexibly adapt to the rapidly changing market demands, ultimately reducing the operating cost and improving the response ability and market competitiveness of the overall production line. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a schematic view of the three-dimensional structure of the utility model;

[0017] Figure 2 It is a sectional view of the bidirectional installation of the structure to be detected of the utility model;

[0018] Figure 3 It is a sectional view of the installation of the structure to be detected of the utility model limiting mechanism;

[0019] Figure 4The sectional view of the convenient mold structure replacement utility model;

[0020] Figure 5 The three-dimensional structure diagram of the simple moving structure of the utility model;

[0021] Figure 6 For Figure 4 The enlarged view of A in the middle;

[0022] Figure 7 For Figure 4 The enlarged view of B in the middle.

[0023] Legend:

[0024] 1, operation machine; 101, sealing detection module; 102, first gear; 103, rotating turntable; 104, mold bearing table; 105, electronic connector mold; 106, second gear; 107, first motor; 108, limit sliding groove; 109, limit block; 110, drive cylinder; 2, limit groove; 201, limit shaft; 202, limit sliding block; 203, limit spring; 204, clamping seat; 3, X-shaped sliding groove; 301, X-shaped bearing seat; 302, universal wheel; 303, threaded rod; 304, second motor; 305, grab groove. DETAILED DESCRIPTION

[0025] In order to make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments and drawings, but the following embodiments are only preferred embodiments of the utility model, not all. Based on the embodiments in the embodiments, other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0026] The specific embodiments of the utility model are described below in combination with the drawings. Specific embodiments:

[0028] Refer to Figures 1-7, electronic connector sealing performance detection mechanism, including operation machine table 1, operation machine table 1 top fixed sealing detection module 101, operation machine table 1 top rotary connection has first gear 102, first gear 102 top fixed with rotary turntable 103, rotary turntable 103 top fixed with mold bearing table 104, mold bearing table 104 top is equipped with electronic connector mold 105, first gear 102 surface engagement has second gear 106, second gear 106 rotary connection in operation machine table 1 top, second gear 106 is driven to rotate by first motor 107, first motor 107 is fixed in operation machine table 1 inner wall, operation machine table 1 top is equipped with limit sliding slot 108, limit sliding slot 108 inner wall sliding connection has limit block 109, limit block 109 is driven to slide by drive cylinder 110, drive cylinder 110 is fixed to operation machine table 1 inner wall.In prior art, the sealing performance detection mechanism of electronic connector has significant defects, mainly reflected in the singleness and inefficiency of detection process, usually, these mechanisms can only after completing the detection of the installed connector, remove the connector, install new connector to be detected, this process not only consumes a lot of time, but also cannot realize the synchronous installation and detection of the connector to be detected and the new batch of connectors, therefore, the operator exists obvious time gap between the detection of the connector to be detected and the installation of the new connector, lead to the whole working process becomes cumbersome and inefficient, in addition, this operation process also increases the human error, further influence the overall work quality and equipment reliability, for such problems, the utility model adopts bidirectional installation to be detected structure, when carrying out electronic connector detection operation, when the installation of the electronic connector to be detected at one end of mold bearing table 104 is completed, start drive cylinder 110, limit block 109 is withdrawn to limit sliding slot 108 inner wall under the drive of drive cylinder 110, remove the rotation restriction of mold bearing table 104, subsequently start first motor 107, second gear 106 is rotated under the drive of first motor 107, in turn drive first gear 102 to rotate, make first gear 102 drive the mold bearing table 104 above to rotate, after mold bearing table 104 rotates about ninety degrees, start drive cylinder 110, make limit block 109 extend, rotate the restriction of mold bearing table 104, for sealing detection module 101 detects, simultaneously, can install electronic connector to be detected in the idle end of mold bearing table 104.

[0029] The top of the mold bearing table 104 is provided with a limiting groove 2, the inner wall of the limiting groove 2 is provided with two limiting shafts 201, the two limiting shafts 201 are fixed with limiting sliding blocks 202 at both ends, the limiting sliding blocks 202 slide in the inner wall of the limiting groove 2, the limiting sliding blocks 202 are fixed with limiting springs 203 at both sides, the limiting springs 203 are fixed on the inner wall of the limiting groove 2, and the electronic connector mold 105 is fixed with a clamping seat 204 at the bottom. In the prior art, the electronic connector sealing performance detection mechanism mainly relies on fixed installation molds, and this design has many disadvantages. Since the molds cannot be replaced, the application range is limited, and only specific models of electronic connectors can be detected and installed, which not only increases the flexibility of the production line, but also makes the enterprise appear to be at a loss when facing diversified product demands. In the case of frequent replacement of different models of connectors, the defects of the fixed mold are particularly prominent, which requires a long equipment adjustment time and a high operating cost. In addition, the design of the fixed mold also limits the space for technological improvement and innovation, and cannot timely adapt to the new trend of industry development, thereby affecting the market competitiveness of the product. In view of the problems, the electronic connector mold detachable structure is adopted, when the mold needs to be replaced, the electronic connector mold 105 is pulled out upwards, thereby driving the clamping seat 204 at the bottom of the electronic connector mold 105 to be separated from the limiting of the two limiting shafts 201, after the dismounting is completed, the new electronic connector mold 105 drives the clamping seat 204 to be inserted into the middle of the two limiting shafts 201, so that the two limiting shafts 201 complete the limiting of the new electronic connector mold 105.

[0030] The bottom of the operation machine 1 is provided with an X-shaped sliding groove 3, the inner wall of the X-shaped sliding groove 3 is slidably connected with an X-shaped bearing seat 301, the bottom of the X-shaped bearing seat 301 is fixedly connected with a universal wheel 302, the inner wall of the X-shaped sliding groove 3 is rotatably connected with a threaded rod 303, the X-shaped bearing seat 301 is threadedly connected to the surface of the threaded rod 303, the threaded rod 303 is driven to rotate by a second motor 304, and the second motor 304 is fixed to the inner wall of the X-shaped sliding groove 3. In the prior art, the electronic connector sealing performance detection mechanism is designed to be fixed to the operation machine, so that the flexibility in the production process is poor, and simple movement cannot be realized. The fixed design not only limits the application range of the equipment, but also increases the complexity and time cost of the production line adjustment. When different types of connectors need to be detected, the operator often needs to spend a lot of time to reconfigure and adjust the equipment, thereby delaying the production efficiency. In addition, the traditional detection mechanism is also limited in space utilization and often cannot adapt to the rapidly changing market demand. In view of the above problems, the simple moving structure is adopted, when the detection mechanism needs to be moved, the second motor 304 is started, under the driving of the second motor 304, the threaded rod 303 rotates, so that the threaded rod 303 drives the X-shaped bearing seat 301 on the surface to move downward, after the universal wheel 302 at the bottom of the X-shaped bearing seat 301 is completely in contact with the ground, the simple movement of the detection mechanism can be realized.

[0031] The rubber pads are fixed on both sides of the mold bearing table 104, which effectively reduces the friction between the mold bearing table and the limiting structure, reduces the surface wear degree, prolongs the service life of the mold bearing table, ensures the long-term stable operation of the equipment, and effectively enhances the friction between the machine table and the ground. The risk of sliding during operation is reduced, the safety and stability are improved, and the smooth operation is ensured. The clamping seat 204 is designed as an arc surface, which can provide a smoother operation experience during clamping and pulling out. This design not only reduces the friction, but also effectively reduces the resistance during clamping, so that the fixing and releasing of the article become more convenient, thereby improving the overall use effect. The operation machine 1 is provided with a grab groove 305 on both sides, so that the machine table can be held more conveniently during movement. The user only needs to put his palm into the grab groove, and the machine table can be firmly held, ensuring good balance and control during movement, thereby significantly improving the convenience and safety of operation.

[0032] The utility model discloses a working principle: when carrying out electronic connector detection operation, when the electronic connector to be detected of one end of the mould bearing table 104 is installed, start drive cylinder 110, under the drive of drive cylinder 110, limit block 109 is withdrawn to the inner wall of limit sliding slot 108, and the rotation of mould bearing table 104 is released, then start first motor 107, under the drive of first motor 107, second gear 106 rotates, and then drives first gear 102 to rotate, so that the first gear 102 drives the rotation of the upper mould bearing table 104, after the rotation of mould bearing table 104 about ninety degrees, start drive cylinder 110, so that limit block 109 extends, and the rotation of mould bearing table 104 is limited, and the sealing detection module 101 is detected, and simultaneously, the electronic connector to be detected can be installed at the idle end of mould bearing table 104, when the replacement of mould is needed, electronic connector mould 105 is pulled up, and then the clamping seat 204 at the bottom of electronic connector mould 105 is separated from the limiting of two limit shafts 201, after dismounting is completed, the new electronic connector mould 105 drives clamping seat 204 to be inserted between two limit shafts 201, so that the two limit shafts 201 complete the limiting of the new electronic connector mould 105, when the movement of detection mechanism is needed, start second motor 304, under the drive of second motor 304, threaded rod 303 rotates, so that threaded rod 303 drives the downward movement of the X-shaped bearing seat 301 on its surface, after the universal wheel 302 at the bottom of X-shaped bearing seat 301 is completely contacted with the ground, the simple movement of detection mechanism can be carried out.

[0033] In the utility model, unless another definite provision and limitation, first feature is in second feature " on " or " below " can include that first and second features are directly contacted, also can include that first and second features are not directly contacted and is contacted through additional feature between them. Moreover, first feature is in second feature " on " " upper " and " upper surface " includes that first feature is directly above and obliquely above second feature, or just indicates that the horizontal height of first feature is higher than second feature. First feature is in second feature " below " " below " and " below " includes that first feature is directly below and obliquely below second feature, or just indicates that the horizontal height of first feature is less than second feature.

[0034] The basic principle, main features and advantages of the utility model are shown and described above. The skilled in the art should understand that the utility model is not limited by the above examples, and the above examples and descriptions in the specification are only preferred examples of the utility model and do not limit the utility model, and various changes and improvements of the utility model fall within the scope of the utility model. The scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. An electronic connector sealing performance detection mechanism, comprising an operating machine table (1), a sealing detection module (101) is fixed on the top of the operating machine table (1), characterized in that: The operation machine (1) top rotationally connected with first gear (102), the first gear (102) top fixed with rotating round table (103), the rotating round table (103) top fixed with mold carrier (104), the mold carrier (104) top is equipped with electronic connector mold (105), the first gear (102) surface engagement has second gear (106), the second gear (106) rotationally connected in operation machine (1) top, the second gear (106) is driven to rotate by first motor (107), the first motor (107) is fixed in operation machine (1) inner wall, the operation machine (1) top is equipped with limit sliding slot (108), the limit sliding slot (108) inner wall is slidably connected with limit block (109), the limit block (109) is driven to slide by drive cylinder (110), the drive cylinder (110) is fixed to operation machine (1) inner wall.

2. The electronic connector seal performance detection mechanism according to claim 1, characterized by: The mold carrier (104) top is equipped with limit slot (2) in array, the limit slot (2) inner wall is equipped with two limit shafts (201), both ends of two limit shafts (201) are fixed with limit sliding block (202), the limit sliding block (202) slides in the inner wall of limit slot (2), the limit sliding block (202) both sides are fixed with limit spring (203), the limit spring (203) is fixed to the inner wall of limit slot (2), the electronic connector mold (105) bottom is fixed with clamping seat (204).

3. The electronic connector seal performance detection mechanism of claim 1, wherein: The operation machine (1) bottom is equipped with X type sliding slot (3), the X type sliding slot (3) inner wall is slidably connected with X type carrier (301), the X type carrier (301) bottom is fixed with universal wheel (302), the X type sliding slot (3) inner wall is rotationally connected with threaded rod (303), the X type carrier (301) is threaded on the surface of threaded rod (303), the threaded rod (303) is driven to rotate by second motor (304), the second motor (304) is fixed to the inner wall of X type sliding slot (3).

4. The electronic connector seal performance detection mechanism of claim 1, wherein: The mold carrier (104) both sides are fixed with rubber pad.

5. The electronic connector seal performance detection mechanism of claim 1, wherein: The operation machine (1) bottom is equipped with anti-skid pattern.

6. The electronic connector seal performance detection mechanism of claim 2, wherein: The clamping seat (204) clamping place is arc surface design.

7. The electronic connector seal performance detection mechanism of claim 3, wherein: The operation machine (1) both sides are equipped with grab groove (305).