Double-Ping connector

By using a staggered upper and lower pin design, combined with insulating spacers and protective components, the problems of electromagnetic interference and poor contact in existing technologies are solved, thereby improving the stability and anti-interference capability of the connector.

CN224153616UActive Publication Date: 2026-04-21DONGGUAN HAICHUANG HI-TECH ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN HAICHUANG HI-TECH ELECTRONIC TECHNOLOGY CO LTD
Filing Date
2025-04-29
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The parallel pin distribution of existing dual Ping connectors leads to electromagnetic interference and poor contact problems, affecting the connectivity and stability of the device.

Method used

The design features staggered upper and lower pins with insulating separators in between, including insulating plates and reinforcing components such as reinforcing ribs, as well as protective components such as protective layers and plug sleeves on the outside of the pins, using an extruded layer made of insulating silicone.

Benefits of technology

It improves the stability and anti-interference ability of the connector, reduces poor contact problems caused by vibration or impact, enhances insulation performance and mechanical strength, and extends the service life of the pins.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electronic connectors, in particular to a double-Ping connector. Comprising an electronic connector arranged on a circuit board, the electronic connector is respectively provided with a row of upper pins and a row of lower pins, the upper pins and the lower pins are distributed in a staggered manner, and an insulating separator is arranged between the upper pins and the lower pins. The staggered parallel distribution of the pins on the two sides can increase the stability of contact points and reduce the problem of poor contact caused by vibration or impact. The design ensures the reliability and stability of the connector in long-term use. Meanwhile, due to the staggered design of the pin positions, electromagnetic interference between the adjacent pin positions can be effectively reduced, the anti-interference capability of the whole connection system is improved, and the electromagnetic interference between the upper pin and the lower pin can be further improved through the insulating separator arranged between the pin positions.
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Description

Technical Field

[0001] This application relates to the field of electronic connector technology, and in particular to a dual Ping connector. Background Technology

[0002] A dual-ping connector, also known as a two-pin connector, is a connection component widely used in electronic devices and lighting fixtures. It mainly consists of two parallel metal pins used to provide a reliable electrical connection between circuits or devices.

[0003] In the prior art, since the pins on the connector are distributed in parallel, there will be electromagnetic interference between adjacent pins, which will affect the connectivity of the device. Therefore, this application provides a dual Ping connector that can reduce electromagnetic interference between the metal pins on both sides of the horizontal axis. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this application is to provide a dual Ping connector to solve the technical problems in the background art.

[0005] The above-mentioned objective of this application is achieved through the following technical solution: a dual Ping connector, including an electronic connector disposed on a circuit board, wherein the electronic connector is respectively provided with a row of upper pins and a row of lower pins, the upper pins and the lower pins are staggered, and an insulating separator is provided between the upper pins and the lower pins.

[0006] By adopting the above technical solution, the staggered parallel distribution of the pins on both sides increases the stability of the contact points and reduces contact problems caused by vibration or impact. This design ensures the reliability and stability of the connector during long-term use. Simultaneously, the staggered pin design effectively reduces electromagnetic interference between adjacent pins, improving the overall anti-interference capability of the connection system. Furthermore, the insulating separator further enhances the electromagnetic interference resistance between the upper and lower pins.

[0007] Furthermore, the insulating separator includes an insulating plate fixedly connected to the electronic connector, and reinforcing members are provided on both sides of the insulating plate.

[0008] By adopting the above technical solution, the insulating board, as the main part of the insulating separator, is fixedly connected to the electronic connector, ensuring the insulation performance between the upper and lower pins. It prevents current from flowing directly between the pins, thereby reducing the risk of electromagnetic interference.

[0009] The insulating plate also provides mechanical support, maintaining a stable distance between the pins and preventing them from contacting each other due to vibration or impact during use, further improving the stability of the connector.

[0010] Furthermore, the reinforcement includes reinforcing ribs fixedly connected to both sides of the insulating plate, and the bottom of the reinforcing ribs is glued to the electronic connector.

[0011] By adopting the above technical solution, the reinforcing ribs, as the main component of the reinforcement, are fixedly connected to both sides of the insulation board, enhancing the mechanical strength and stability of the insulation board. The reinforcing ribs prevent the insulation board from deforming or being damaged due to vibration or impact during use, thus maintaining the insulation performance and mechanical support function of the insulation board.

[0012] The reinforcing ribs also distribute stress, reducing the risk of damage to the insulation board due to excessive localized stress. This design allows the connector to maintain stable performance during long-term use.

[0013] Furthermore, protective components are provided on the outer sides of both the upper and lower pins.

[0014] Furthermore, the protective component includes an upper protective layer inserted into the upper pin and a lower protective layer inserted into the lower pin. An upper connecting strip is fixedly disposed between the upper protective layers to connect them together, and a lower connecting strip is fixedly disposed between the lower protective layers to connect them together.

[0015] By adopting the above technical solution, the protective component, acting as a protective layer on the outside of the pins, can prevent the pins from being damaged by collision, friction, or corrosion during transportation and use. This design improves the stability and lifespan of the pins, thereby maintaining the stable performance of the connector.

[0016] Furthermore, a plug sleeve is provided on the outer side of the upper and lower protective layers. The plug sleeve is plugged into the bottom of the electronic connector, and the plug sleeve is fixedly connected to the upper and lower protective layers.

[0017] Furthermore, an extrusion layer is fixedly provided on the inner side of the bottom of the plug sleeve.

[0018] By adopting the above technical solution, the extrusion layer is used to improve the connectivity between the socket and the electronic connector.

[0019] Furthermore, the extruded layer is made of insulating silicone.

[0020] In summary, this application includes the following beneficial technical effects: The staggered distribution of upper and lower pins increases the stability of the contact points, effectively reduces contact problems caused by vibration or impact, and ensures the reliability and stability of the connector during long-term use. The staggered pin design effectively reduces electromagnetic interference between adjacent pins, improving the anti-interference capability of the entire connection system. Simultaneously, the insulating separator further improves the insulation performance between the upper and lower pins, reducing the risk of electromagnetic interference. The insulating plate in the insulating separator not only provides insulation performance but also enhances mechanical support, maintaining a stable distance between pins and preventing pins from contacting each other due to vibration or impact during use, further improving the stability of the connector. The addition of reinforcing components such as reinforcing ribs enhances the mechanical strength and stability of the insulating plate, preventing deformation or damage to the insulating plate during use due to vibration or impact. Furthermore, the inclusion of protective components such as a protective layer prevents pins from being damaged by collision, friction, or corrosion during transportation and use, improving the stability and lifespan of the pins. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the overall structure in the embodiment;

[0022] Figure 2 This is a schematic diagram of the plug-in sleeve structure in the embodiment.

[0023] Reference numerals: 1. Circuit board; 11. Electronic connector; 12. Upper pin; 13. Lower pin; 2. Plug sleeve; 21. Extruded layer; 22. Upper protective layer; 23. Upper connecting strip; 24. Lower protective layer; 25. Lower connecting strip; 3. Insulating board; 31. Reinforcing rib. Detailed Implementation

[0024] The present application will be further described in detail below with reference to the accompanying drawings.

[0025] Example, refer to Figures 1-2 A dual-ping connector includes an electronic connector 11 mounted on a circuit board 1. The electronic connector 11 has a row of upper pins 12 and a row of lower pins 13, which are staggered and separated by an insulating spacer. The staggered parallel distribution of the pins increases the stability of the contact points and reduces contact problems caused by vibration or impact. This design ensures the reliability and stability of the connector during long-term use. Furthermore, the staggered pin design effectively reduces electromagnetic interference between adjacent pins, improving the overall anti-interference capability of the connection system. The insulating spacer further enhances the electromagnetic interference resistance between the upper pins 12 and the lower pins 13.

[0026] In this embodiment, the insulating separator includes an insulating plate 3 fixedly connected to the electronic connector 11, with reinforcing members on both sides of the insulating plate 3. The insulating plate 3, as the main part of the insulating separator, is fixedly connected to the electronic connector 11, ensuring the insulation performance between the upper pin 12 and the lower pin 13. It prevents current from flowing directly between the pins, thereby reducing the risk of electromagnetic interference.

[0027] In this embodiment, the insulating plate 3 also provides mechanical support, maintaining a stable distance between the pins and preventing them from contacting each other due to vibration or impact during use, further improving the stability of the connector. The reinforcing components include reinforcing ribs 31 fixedly connected to both sides of the insulating plate 3, with the bottom of the reinforcing ribs 31 glued to the electronic connector 11.

[0028] In this embodiment, the reinforcing rib 3, as the main part of the reinforcement, is fixedly connected to both sides of the insulating plate 3, enhancing the mechanical strength and stability of the insulating plate 3. The reinforcing rib 31 prevents the insulating plate 3 from deforming or being damaged due to vibration or impact during use, thereby maintaining the insulating performance and mechanical support function of the insulating plate 3. The reinforcing rib can also distribute stress, reducing the risk of damage to the insulating plate due to excessive local stress. This design allows the connector to maintain stable performance during long-term use.

[0029] In this embodiment, protective components are provided on the outer sides of both the upper pin 12 and the lower pin 13. The protective components include an upper protective layer 22 inserted into the upper pin 12 and a lower protective layer 24 inserted into the lower pin 13. An upper connecting strip 23 is fixedly provided between the upper protective layers 22 and connected together, and a lower connecting strip 24 is fixedly provided between the lower protective layers 24.

[0030] The protective component acts as a protective layer on the outside of the pins, preventing damage from impact, friction, or corrosion during transportation and use. This design improves the stability and lifespan of the pins, thereby maintaining the stable performance of the connector.

[0031] In this embodiment, a plug sleeve 2 is provided on the outer side of the upper protective layer 22 and the lower protective layer 24. The plug sleeve 2 is plugged into the bottom of the electronic connector 11, and the plug sleeve 2 is fixedly connected to the upper protective layer 22 and the lower protective layer 24. A compression layer 21 is fixedly provided on the inner side of the bottom of the plug sleeve 2. The compression layer 21 is provided to improve the connectivity between the plug sleeve 2 and the electronic connector 11.

[0032] The extruded layer 21 is made of insulating silicone.

[0033] Specific implementation process: The staggered arrangement of a row of upper pins 12 and a row of lower pins 13 on the electronic connector 11, along with insulating spacers between them, increases the stability of the contact points, reduces contact problems caused by vibration or impact, and ensures the reliability and stability of the connector during long-term use. Simultaneously, the staggered pin design effectively reduces electromagnetic interference between adjacent pins, improving the overall anti-interference capability of the connection system. The insulating spacers include an insulating plate fixedly connected to the electronic connector 11, and reinforcing members, such as reinforcing ribs, on both sides of the insulating plate. These enhance the mechanical strength and stability of the insulating plate, preventing deformation or damage due to vibration or impact during use. Furthermore, the protective components on the outer sides of the upper pins 12 and lower pins 13, including an upper protective layer 22 and a lower protective layer 24, and upper connecting strips 23 and lower connecting strips 24 connecting them, prevent damage to the pins during transportation and use due to collision, friction, or corrosion, improving the stability and lifespan of the pins. The insertion sleeve 2, located on the outer side of the upper protective layer 22 and the lower protective layer 24, inserts into the bottom of the electronic connector 11, further improving the overall integrity and stability of the connector. The compression layer 21, made of insulating silicone, is fixedly installed on the inner side of the bottom of the insertion sleeve 2 to improve the connection between the insertion sleeve 2 and the electronic connector 11, ensuring that the connector will not loosen or fall off due to vibration or impact during use. In terms of usage, this connector can stably achieve electrical connection and signal transmission, while also facilitating installation and maintenance. Through detailed design, this dual Ping connector improves the connector's stability, durability, and anti-interference capabilities, meeting the needs of various application scenarios.

[0034] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A dual Ping connector comprising an electronic connector (11) arranged on a circuit board (1), characterized in that The electronic connector (11) is provided with a row of upper pins (12) and a row of lower pins (13), the upper pins (12) and the lower pins (13) are staggered, and an insulating separator is provided between the upper pins (12) and the lower pins (13).

2. The dual Ping connector of claim 1, wherein, The insulating separator includes an insulating plate (3) fixedly connected to the electronic connector (11), and reinforcing members are provided on both sides of the insulating plate (3).

3. The dual Ping connector of claim 2, wherein The reinforcement includes reinforcing ribs (31) fixedly connected to both sides of the insulating plate (3), and the bottom of the reinforcing ribs (31) is glued to the electronic connector (11).

4. The dual Ping connector of claim 3, wherein, Protective components are provided on the outer sides of both the upper needle (12) and the lower needle (13).

5. The dual Ping connector of claim 4, wherein, The protective component includes an upper protective layer (22) inserted into the upper pin (12) and a lower protective layer (24) inserted into the lower pin (13). The upper protective layers (22) are fixedly connected together by an upper connecting strip (23), and the lower protective layers (24) are fixedly connected together by a lower connecting strip.

6. The dual Ping connector of claim 5, wherein, A plug sleeve (2) is provided on the outside of the upper protective layer (22) and the lower protective layer (24). The plug sleeve (2) is inserted into the bottom of the electronic connector (11). The plug sleeve (2) is fixedly connected to the upper protective layer (22) and the lower protective layer (24).

7. The dual Ping connector of claim 6, wherein, An extrusion layer (21) is fixedly provided on the inner side of the bottom of the plug sleeve (2).

8. The dual Ping connector of claim 7, wherein, The extruded layer (21) is made of insulating silicone.