Silver-attached flexible connector
Through the design of adapters and adapters, the parallel connection of multiple electronic components is achieved, which solves the problem of limited contact area in the prior art, improves the current transmission efficiency and circuit stability, and enhances the flexibility and safety of circuit design.
Patent Information
- Application Number
- CN202422118536.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-29
AI Technical Summary
In the prior art, the soft connection method of copper foil stacking results in limited contact area, unable to achieve parallel connection of multiple electronic components, poor current transmission efficiency, and complex circuits.
Adapter and adapter design are adopted. Multiple sockets are provided at the output end of the adapter. The adapter and the adapter are fixed by positioning screws. The plug and the socket are matched and connected in parallel. Insulating sleeves are provided at both ends of the copper foil, and connecting heads are provided at both ends of the copper foil. Multiple soft connection devices are formed by welding to enhance circuit design flexibility.
The parallel connection of multiple electronic components is realized, which reduces resistance and signal loss, improves the stability and safety of the circuit, and enhances the flexibility and aesthetics of the circuit design.
Smart Images

Figure CN223079472U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of flexible connections, especially the silver-plated flexible connection. Background Art
[0002] In modern industrial production, as an important electrical connection component, the flexible connection is widely used in various electronic devices and instruments. Its main function is to achieve flexible connection between circuits, ensure stable transmission of current, and at the same time have good electrical conductivity and corrosion resistance. In the fields of precision medical equipment, aerospace, etc., the multi-head silver-plated flexible connection is also favored.
[0003] The silver-plated flexible connection is usually made of high-purity silver material. Silver has excellent electrical conductivity and ductility, enabling it to maintain stable performance in both high-temperature and low-temperature environments. In addition, silver has superior antioxidant properties, which can effectively extend the service life of the connection. To further improve its performance, the surface of the silver-plated flexible connection is often treated specially, such as gold plating, tin plating, etc., to enhance its corrosion resistance and antioxidant properties.
[0004] In the manufacturing process, first, high-quality silver material is selected for processes such as wire drawing and stamping to make a soft and elastic silver strip. Then, the artisans will first cut the silver sheet or silver foil into the required shape and size, cut, bend and weld the silver strip according to the design requirements to form the required connection shape. Finally, the silver strip is fixed on the insulating substrate through the bonding process to form the finished silver-plated flexible connection.
[0005] In the prior art, the flexible connection method is that multiple copper foils are alternately laminated, and the two ends of the copper foils are connected together through a specific welding technology to ensure the reliability and electrical conductivity of the connection. However, this traditional lamination method has certain limitations. For example, the contact area of the copper foil sheets is limited, and only series connection can be carried out at both ends, and multiple electronic components cannot be soft-connected simultaneously, resulting in complex circuits in the electronic components and the current transmission efficiency not meeting the expectation. For this reason, the present utility model proposes the silver-plated flexible connection. Summary of the Utility Model
[0006] In order to achieve the above object, the present utility model adopts the following technical scheme:
[0007] The silver-plated flexible connection includes:
[0008] A adapter, two first plugs are provided at the output end of the adapter, through holes are provided on both sides of the adapter, a second socket is provided at the input end of the adapter, and a plurality of the second sockets are provided.
[0009] An adapter, on one side of which a first flexible connection device is welded, and on the other side of which there is a first socket. There are two first sockets, and the two first sockets are a matching combination with two first plugs.
[0010] The first flexible connection device, which includes: a first connection head, a first copper foil sheet, and a second plug. There are multiple first copper foil sheets, and at both ends of the multiple first copper foil sheets, first connection heads are welded. The first connection head on one side is welded to the adapter, and the first connection head on the other side is welded with a second plug;
[0011] A second flexible connection device. There are multiple second flexible connection devices, and the multiple second flexible connection devices are all installed in a second socket. The second flexible connection device includes: a second connection head, a second copper foil sheet, and a third plug. There are multiple second copper foil sheets, and at both ends of the multiple second copper foil sheets, second connection heads are welded. The second connection head on one side is welded with a third plug, and the second connection head on the other side is welded with a power input terminal.
[0012] As a preferred solution of the present utility model, positioning screws are provided on both sides of the contact surface where the adapter is connected to the adapter, and screws are installed on the positioning screws.
[0013] As a preferred solution of the present utility model, a first fixing groove is opened on the first connection head, and a first insulating sleeve is installed in the first fixing groove.
[0014] As a preferred solution of the present utility model, a second fixing groove is opened on the second connection head, and a second insulating sleeve is installed in the second fixing groove.
[0015] As a preferred solution of the present utility model, the adapter and the adapter are both chamfered around.
[0016] Compared with the prior art, the advantages of the present utility model are as follows:
[0017] 1. By providing an adapter and an adapter, the output end of the adapter is provided with an adapter, and the input end is provided with multiple second sockets, which changes the flexible connection method. The flexible connection device can quickly make electronic components in parallel by plugging and unplugging, and the power of the first flexible connection device installed on the adapter can be increased, decreased, or replaced according to the number of connections of the adapter, enhancing the flexibility of the circuit design, thereby significantly reducing the resistance and signal loss caused by hard connection.
[0018] 2. By providing through holes on both sides of the adapter, positioning screws are installed on the adapter, and nuts with appropriate sizes are equipped on the screws. During installation, the adapter and the adapter can be stably positioned to ensure the accuracy and stability of the connection.
[0019] 3. The first soft connection device and the second soft connection device are both provided with a first fixing slot and a second fixing slot of appropriate sizes, which facilitate the installation of the first insulating sleeve and the second insulating sleeve, further improving the safety performance of the circuit. In addition, the chamfering treatment makes the appearance of the whole device more beautiful, and at the same time reduces the risk of scratching that may occur during use, providing great convenience for the maintenance and upgrade of electronic devices. Brief Description of the Drawings
[0020] Figure 1 is the overall structure diagram of the present utility model;
[0021] Figure 2 is the structure diagram of the first insulating sleeve and the second insulating sleeve of the present utility model;
[0022] Figure 3 is the exploded view of the present utility model;
[0023] Figure 4 is the structure diagram of the second socket of the present utility model;
[0024] Figure 5 is the structure diagram of the adapter of the present utility model;
[0025] In the figures: 1, adapter; 2, first plug; 3, through hole; 4, first socket; 5, adapter; 6, positioning screw; 7, nut; 8, first connector; 9, first copper foil; 10, second plug; 11, first fixing slot; 12, second socket; 13, second connector; 14, second copper foil; 15, third slot head; 16, second fixing slot; 17, power input terminal; 18, first insulating sleeve; 19, second insulating sleeve. Detailed Description of the Preferred Embodiments
[0026] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0027] Embodiment:
[0028] Please refer to Figures 1 - 5 , the silver-plated soft connection, including:
[0029] Adapter 1, the output end of the adapter 1 is provided with two first plugs 2, and through holes 3 are provided on both sides of the adapter 1, and the input end of the adapter 1 is provided with a second socket 12, and a plurality of the second sockets 12 are provided.
[0030] Adapter 5, on one side of which there is a first flexible connection device welded, and on the other side of the adapter 5 there is a first socket 4. There are two first sockets 4, and the two first sockets 4 and two first plugs 2 are a matching combination.
[0031] The first flexible connection device, which includes: a first connection head 8, a first copper foil 9, and a second plug 10. There are multiple first copper foils 9. Both ends of the multiple first copper foils 9 are welded with a first connection head 8. The first connection head 8 on one side is welded to the adapter 5, and the first connection head 8 on the other side is welded with a second plug 10.
[0032] The second flexible connection device. There are multiple second flexible connection devices, and the multiple second flexible connection devices are all installed in the second socket 12. The second flexible connection device includes: a second connection head 13, a second copper foil 14, and a third plug. There are multiple second copper foils 14. Both ends of the multiple second copper foils 14 are welded with a second connection head 13. The second connection head 13 on one side is welded with a third plug, and the second connection head 13 on the other side is welded with a power input terminal 17.
[0033] In the implementation in this city, the adapter 5, the first flexible connection device and the second flexible connection device work together to ensure the stable transmission and efficient conversion of current. The first plug 2 is installed on the adapter 1. The first plug 2 and the first socket 4 of the adapter 5 are closely matched, effectively reducing the contact resistance. There are multiple second sockets 12 installed at the input end of the adapter 1. The multiple second flexible connection devices are installed in the multiple second sockets 12. The second flexible connection device is responsible for connecting the power input terminal 17 with external devices. The multiple second flexible connection devices connect multiple external electronic devices in parallel through the adapter 1, optimizing the internal combination of electronic components. Moreover, the power of the first flexible connection device installed on the adapter 5 can be increased, decreased or replaced according to the number of connections of the adapter 1, enhancing the flexibility of the circuit design, thereby significantly reducing the resistance and signal loss caused by hard connection.
[0034] Specifically, on both sides of the connection contact surface between the adapter 5 and the adapter 1, there are positioning screws 6, and screws are installed on the positioning screws 6.
[0035] In this embodiment, on both sides of the connection contact surface between the adapter 5 and the adapter 1, there are positioning screws 6. The adapter 5 is installed on the adapter 1. The screws on the adapter 5 will pass through the through holes 3 on both sides of the adapter 1, and then the adapter 5 and the adapter are firmly fixed with the positioning screws 6, ensuring the precise docking between the adapter 5 and the adapter 1. At the same time, when the adapter 5 is connected to the adapter 1, the first socket 4 and the first plug 2 are in contact with each other, ensuring the stability of the parallel current conversion.
[0036] Specifically, a first fixed card slot 11 is provided on the first connector 8, and a first insulating sleeve 18 is installed in the first fixed card slot 11.
[0037] In this embodiment, in the first flexible connection device, a plurality of first copper foil sheets 9 are provided. Both ends of the plurality of first copper foil sheets 9 are welded with first connectors 8. First fixed card slots 11 are provided on the first connectors 8 at both ends. First insulating sleeves 18 of appropriate sizes are installed in the first fixed card slots 11 at both ends, which are used to ensure electrical insulation between the copper foil sheet and the connector.
[0038] Specifically, a second fixed card slot 16 is provided on the second connector 13, and a second insulating sleeve 19 is installed in the second fixed card slot 16.
[0039] In this embodiment, in the second flexible connection device, a plurality of second copper foil sheets 14 are provided. Both ends of the plurality of second copper foil sheets 14 are welded with second connectors 13. Second fixed card slots 16 are provided on the second connectors 13 at both ends. Second insulating sleeves 19 of appropriate sizes are installed in the second fixed card slots 16 at both ends, which are used to ensure electrical insulation between the copper foil sheet and the connector. At the same time, the designs of the first insulating sleeve 18 and the second insulating sleeve 19 also facilitate installation and maintenance. Their materials are selected to be high-temperature resistant and abrasion-resistant to adapt to long-term use in various complex environments.
[0040] Specifically, the adapter 1 and the adapter 5 are both chamfered at the four sides.
[0041] In this embodiment, the adapter 1 and the adapter 5 are designed with chamfers, which not only ensures the appearance beauty but also avoids potential safety hazards such as scratches during use.
[0042] The principle of the present utility model is as follows: The output end of the adapter 1 is provided with two first plugs 2, and the two first plugs 2 are a matching combination with two first sockets 4 on the adapter 5. Both sides of the connection contact surface between the adapter 5 and the adapter 1 are provided with positioning screws 6. The adapter 5 is installed on the adapter 1, and the first plug 2 is in contact with the first socket 4. At the same time, the screws on the adapter 5 will pass through the through holes 3 on both sides of the adapter 1, and then the adapter 5 and the adapter are firmly fixed with the positioning screws 6, ensuring the precise docking of the adapter 5 and the adapter 1 and the stability of the parallel current conversion when the device is working. A first flexible connection device is installed on the adapter 5. At the input end of the adapter 1, there are multiple second sockets 12, and multiple second flexible connection devices are installed in the multiple second sockets 12. The end of the second flexible connection device is provided with a power input terminal 17, and the power input terminal 17 can be connected to an external electronic device for parallel connection through the adapter 1, optimizing the internal combination of electronic components. Moreover, the power of the first flexible connection device installed on the adapter 5 can be increased, decreased or replaced according to the number of connections of the adapter 1, enhancing the flexibility of the circuit design, thereby significantly reducing the resistance and signal loss caused by hard connection. Appropriate first fixing slots 11 and second fixing slots 16 are provided on both the first flexible connection device and the second flexible connection device, facilitating the installation of the first insulating sleeve 18 and the second insulating sleeve 19, further improving the safety performance of the circuit.
[0043] The above is only the preferred specific implementation mode of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and its improved concept of the present utility model, making equivalent replacements or changes should be covered within the protection scope of the present utility model.
Claims
1. Silver-plated flexible connection, characterized in that, Comprising: An adapter, two first plugs are provided at the output end of the adapter, through holes are provided on both sides of the adapter, a second socket is provided at the input end of the adapter, and a plurality of the second sockets are provided; An adapter, a first flexible connection device is welded on one side of the adapter, a first socket is provided on the other side of the adapter, two of the first sockets are provided, and the two first sockets and the two first plugs are a matching combination; A first flexible connection device, the first flexible connection device includes: a first connector, a first copper foil, a second plug, a plurality of the first copper foils are provided, first connectors are welded at both ends of the plurality of first copper foils, the first connector on one side is welded to the adapter, and the first connector on the other side is welded with a second plug; A plurality of second flexible connection devices are provided, and the plurality of second flexible connection devices are all installed in the second socket. The second flexible connection device includes: a second connector, a second copper foil, a third plug, a plurality of the second copper foils are provided, second connectors are welded at both ends of the plurality of second copper foils, the third plug is welded to the second connector on one side, and the power input end is welded to the second connector on the other side.
2. The silver-plated flexible connection according to claim 1, wherein: Positioning screws are provided on both sides of the connection contact surface between the adapter and the adapter, and screws are installed on the positioning screws.
3. The silver-plated flexible connection according to claim 2, wherein: A first fixed card slot is provided on the first connector, and a first insulating sleeve is installed in the first fixed card slot.
4. The silver-plated flexible connection according to claim 3, wherein: A second fixed card slot is provided on the second connector, and a second insulating sleeve is installed in the second fixed card slot.
5. The silver-plated flexible connection according to claim 4, characterized in that: The adapter and the adapter are both chamfered at the four corners.