Electric connector

By combining multiple electrical connector components and conductive bridge components, custom adjustment of electrical connector conductive terminals is achieved, and the problem of inability to adjust the number and structure of conductive terminals in the prior art is solved, meeting signal transmission requirements and reducing the size of electrical connectors.

CN223093146UActive Publication Date: 2025-07-11TARNG YU ENTERPRISE +2
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Patent Information

Application Number
CN202421681957.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-08-11
Filing Date
2024-07-16
Publication Date
2025-07-11
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

The number and structure of the conductive terminals of the existing electrical connector cannot be customized after the design is completed, making it difficult to meet the signal transmission requirements of electronic equipment.

Method used

By combining a plurality of electrical connector members, including a main side electrical connector member, a secondary side electrical connector member and a conductive bridge member, custom adjustment of the number and structure of the conductive terminals is achieved, and electrical connection between the plurality of conductive terminals is achieved by using the conductive bridge member.

Benefits of technology

It is realized that the number and structure of conductive terminals can be adjusted after the electrical connector is designed, to meet the signal transmission requirements of electronic devices, and to reduce the size of electrical connectors, and to support the development of electronic devices in the direction of lightness, thinness, shortness.

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Abstract

The utility model provides an electric connector, which is formed by combining a plurality of electric connector components, and the plurality of electric connector components are respectively provided with conductive terminals, so that after the design of the electric connector is completed, the quantity and the structure of the conductive terminals of the electric connector can be adjusted in a customized manner by adjusting the combined plurality of electric connector components. Therefore, the requirement of electronic equipment on signal transmission is met.
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Description

Technical Field

[0001] This application relates to the technical field of electronic devices. More specifically, it relates to an electrical connector that can customize and adjust the number and structure of conductive terminals. Background Art

[0002] In various modern electronic devices, electrical connectors are usually provided to transmit signals. However, due to the special requirements and development of electronic devices, the number and structure of the conductive terminals of the electrical connector are required to be customizable. However, after the current electrical connector is designed, the number and structure of the conductive terminals are determined and cannot be customized, making it difficult to meet the signal transmission requirements of electronic devices. As such, the technological (functional) development of electronic devices will be restricted.

[0003] Therefore, how to customize and adjust the number and structure of the conductive terminals of an electrical connector has now become a technical issue that the industry urgently wants to challenge and overcome. Summary of the Invention

[0004] In view of the disadvantages of the above prior art, the present application provides an electrical connector. The two sides of the electrical connector are respectively a main side of the electrical connector and a secondary side of the electrical connector. The electrical connector includes: a main-side electrical connector member having a main-side insulating rubber core and a main-side conductive terminal group. The main-side conductive terminal group has a main-side bridging conductive terminal and a main-side non-bridging conductive terminal. The main-side insulating rubber core engages the main-side conductive terminal group to respectively position the main-side bridging conductive terminal and the main-side non-bridging conductive terminal at a main-side bridging conductive terminal position and a main-side non-bridging conductive terminal position; a secondary-side electrical connector member having a secondary-side insulating rubber core and a secondary-side conductive terminal group. The secondary-side conductive terminal group has a secondary-side bridging conductive terminal and a secondary-side non-bridging conductive terminal. The secondary-side insulating rubber core engages the secondary-side conductive terminal group to respectively position the secondary-side bridging conductive terminal and the secondary-side non-bridging conductive terminal at a secondary-side bridging conductive terminal position and a secondary-side non-bridging conductive terminal position; and a conductive bridging member having a bridging conductive metal and a bridging conductive rubber core. The bridging conductive metal has a main-side bridging conductive terminal abutting structure and a secondary-side bridging conductive terminal abutting structure. The bridging conductive rubber core has a main-side main bridging combination structure and a secondary-side main bridging combination structure. The bridging conductive rubber core engages the bridging conductive metal to join the bridging conductive rubber core and the bridging conductive metal into a bridging conductive joined body, and respectively positions the main-side bridging conductive terminal abutting structure and the secondary-side bridging conductive terminal abutting structure at a main-side bridging conductive terminal abutting position and a secondary-side bridging conductive terminal abutting position. The main-side main bridging combination structure and the secondary-side main bridging combination structure respectively combine the main-side electrical connector member and the secondary-side electrical connector member on the main side of the electrical connector and the secondary side of the electrical connector, so that the conductive bridging member, the main-side electrical connector member and the secondary-side electrical connector member are combined to form an electrical connector combined member; the electrical connector combined member can define a bridging line segment and a non-bridging line segment, and the bridging line segment is substantially parallel to the non-bridging line segment; wherein, the main-side bridging conductive terminal position, the secondary-side bridging conductive terminal position, the main-side bridging conductive terminal abutting position and the secondary-side bridging conductive terminal abutting position are respectively located on the bridging line segment, so that the main-side bridging conductive terminal abutting structure and the secondary-side bridging conductive terminal abutting structure respectively abut the main-side bridging conductive terminal and the secondary-side bridging conductive terminal, and the bridging conductive joined body electrically bridges the main-side bridging conductive terminal and the secondary-side bridging conductive terminal;And the main-side non-bridging conductive terminal position and the sub-side non-bridging conductive terminal position are respectively located on the non-bridging line segment, so that the main-side bridging conductive terminal abutting structure and the sub-side bridging conductive terminal abutting structure can respectively avoid the main-side non-bridging conductive terminal and the sub-side non-bridging conductive terminal, thereby preventing the bridging conductive joint from electrically bridging the main-side non-bridging conductive terminal and the sub-side non-bridging conductive terminal.

[0005] Preferably, in the electrical connector of the present application, the main-side main bridging combination structure and the sub-side main bridging combination structure respectively pass through the bridging conductive metal on the main side and the sub side of the electrical connector, so that the bridging conductive rubber core joins the bridging conductive metal.

[0006] Preferably, in the electrical connector of the present application, the main-side main bridging combination structure and the sub-side main bridging combination structure extend between the main-side conductive terminal group and the sub-side conductive terminal group to provide shielding between the main-side conductive terminal group and the sub-side conductive terminal group.

[0007] Preferably, in the electrical connector of the present application, the main-side main bridging combination structure is located at a main-side main bridging combination position, the sub-side main bridging combination structure is located at a sub-side main bridging combination position, the main-side insulating rubber core has a main-side main rubber core combination structure, and the main-side main rubber core combination structure is located at a main-side main rubber core combination position; the sub-side insulating rubber core has a sub-side main rubber core combination structure, and the sub-side main rubber core combination structure is located at a sub-side main rubber core combination position. The electrical connector combination member can also define a main-side combination line segment and a sub-side combination line segment, and the main-side combination line segment is substantially parallel to the sub-side combination line segment; wherein, the main-side main bridging combination position and the main-side main rubber core combination position are respectively located on the main-side combination line segment, so that the main-side main bridging combination structure and the main-side main rubber core combination structure can combine the conductive bridging member and the main-side electrical connector member on the main side of the electrical connector; and the sub-side main bridging combination position and the sub-side main rubber core combination position are respectively located on the sub-side combination line segment, so that the sub-side main bridging combination structure and the sub-side main rubber core combination structure can combine the conductive bridging member and the sub-side electrical connector member on the sub side of the electrical connector.

[0008] Preferably, in the electrical connector of the present application, the main-side main bridging combination structure and the main-side main rubber core combination structure are concave-convex structures that are structurally matched; and the sub-side main bridging combination structure and the sub-side main rubber core combination structure are concave-convex structures that are structurally matched.

[0009] Preferably, in the electrical connector of the present application, the bridging conductive rubber core has a primary-side secondary bridging combination structure and a secondary-side secondary bridging combination structure; the primary-side secondary bridging combination structure is located at a primary-side secondary bridging combination position, the secondary-side secondary bridging combination structure is located at a secondary-side secondary bridging combination position, the primary-side insulating rubber core further has a primary-side secondary rubber core combination structure, and the primary-side secondary rubber core combination structure is located at a primary-side secondary rubber core combination position; the secondary-side insulating rubber core further has a secondary-side secondary rubber core combination structure, and the secondary-side secondary rubber core combination structure is located at a secondary-side secondary rubber core combination position; wherein, the primary-side secondary bridging combination position and the secondary-side secondary rubber core combination position are respectively located on the secondary-side combination line segment, so that the primary-side secondary bridging combination structure and the secondary-side secondary rubber core combination structure can combine the conductive bridging member and the secondary-side electrical connector member on the primary side of the electrical connector; and the secondary-side secondary bridging combination position and the primary-side secondary rubber core combination position are respectively located on the primary-side combination line segment, so that the secondary-side secondary bridging combination structure and the primary-side secondary rubber core combination structure can combine the conductive bridging member and the primary-side electrical connector member on the secondary side of the electrical connector.

[0010] Preferably, in the electrical connector of the present application, the primary-side secondary bridging combination structure and the secondary-side secondary bridging combination structure respectively pass through the bridging conductive metal on the primary side and the secondary side of the electrical connector, so that the bridging conductive rubber core is joined to the bridging conductive metal.

[0011] Preferably, in the electrical connector of the present application, the primary-side secondary bridging combination structure and the secondary-side secondary bridging combination structure extend between the primary-side conductive terminal group and the secondary-side conductive terminal group to provide shielding between the primary-side conductive terminal group and the secondary-side conductive terminal group.

[0012] Preferably, in the electrical connector of the present application, the primary-side secondary bridging combination structure and the secondary-side secondary rubber core combination structure are concave-convex structures that are structurally matched; and the secondary-side secondary bridging combination structure and the primary-side secondary rubber core combination structure are concave-convex structures that are structurally matched.

[0013] Preferably, in the electrical connector of the present application, the electrical connector combined component may further define a joining line segment. The main-side insulating rubber core further has a main-side joining block and a main-side joining groove, and the secondary-side insulating rubber core further has a secondary-side joining block and a secondary-side joining groove. Wherein, the main-side main rubber core combined structure and the main-side secondary rubber core combined structure are disposed on the main-side joining block, and the secondary-side main rubber core combined structure and the secondary-side secondary rubber core combined structure are disposed on the secondary-side joining block. In the electrical connector combined component, the main-side joining block enters the secondary-side joining groove, and the secondary-side joining block enters the main-side joining groove, such that the main-side joining block and the secondary-side joining block are located on the joining line segment.

[0014] Compared with the prior art, the electrical connector provided by the present application is composed of a combination of multiple electrical connector components, and the multiple electrical connector components respectively have conductive terminals. Therefore, after the electrical connector is designed, it is still possible to customize and adjust the number and structure of the conductive terminals of the electrical connector by adjusting the multiple electrical connector components in combination, so as to meet the requirements of electronic devices for signal transmission.

[0015] In addition, the electrical connector provided by the present application has a conductive bridging component, and the electrical connection between multiple conductive terminals on the electrical connector can be achieved through the conductive bridging component, so as to meet the requirements of electronic devices for signal transmission. Brief Description of the Drawings

[0016] Figure 1 It shows a three-dimensional schematic diagram of the electrical connector of the present application from a first perspective in an embodiment.

[0017] Figure 2 It shows a three-dimensional schematic diagram of the electrical connector of the present application from a second perspective in an embodiment.

[0018] Figure 3 It shows a side view schematic diagram of the electrical connector of the present application in an embodiment.

[0019] Figure 4 It shows a front view schematic diagram of the electrical connector of the present application in an embodiment.

[0020] Figure 5 It shows a bottom view schematic diagram of the electrical connector of the present application in an embodiment.

[0021] Figure 6 It shows Figure 5 A cross-sectional schematic diagram of a partial component of the shown electrical connector cut along the line AA.

[0022] Figure 7 It shows a top view schematic diagram of the electrical connector of the present application in an embodiment.

[0023] Figure 8 Shown as Figure 7 A schematic cross-sectional view of a partial component of the electrical connector shown along the line BB

[0024] Figure 9 Shown as a perspective schematic view of a partial component of the electrical connector of the present application from a first perspective of an embodiment

[0025] Figure 10 Shown as a perspective schematic view of a partial component of the electrical connector of the present application from a second perspective of an embodiment

[0026] Figure 11 Shown as a perspective schematic view of a partial component of the electrical connector of the present application from a first perspective of an embodiment

[0027] Figure 12 Shown as a perspective schematic view of a partial component of the electrical connector of the present application from a first perspective of an embodiment

[0028] Figure 13 Shown as a perspective schematic view of a partial component of the electrical connector of the present application from a second perspective of an embodiment

[0029] Figure 14 Shown as a perspective schematic view of a partial component of the electrical connector of the present application from a first perspective of an embodiment

[0030] Figure 15 Shown as a perspective schematic view of a partial component of the electrical connector of the present application from a second perspective of an embodiment

[0031] Figure 16 Shown as a perspective schematic view of a partial component of the electrical connector of the present application from a first perspective of an embodiment

[0032] Figure 17 Shown as a perspective schematic view of a partial component of the electrical connector of the present application from a second perspective of an embodiment

[0033] Element number description

[0034] 1 Electrical connector

[0035] 10 Electrical connector combined component

[0036] 11 Main side electrical connector component

[0037] 111 Main side insulating rubber core

[0038] 1111 Main side main rubber core combined structure

[0039] 1112 Main side secondary rubber core combined structure

[0040] 1113 Main side bonding block

[0041] 1114 Main - side engagement groove

[0042] 112 Main - side conductive terminal group

[0043] 1121 Main - side bridging conductive terminal

[0044] 1122 Main - side non - bridging conductive terminal

[0045] 12 Secondary - side electrical connector component

[0046] 121 Secondary - side insulating rubber core

[0047] 1211 Secondary - side main rubber - core combination structure

[0048] 1212 Secondary - side secondary rubber - core combination structure

[0049] 1213 Secondary - side engagement block

[0050] 1214 Secondary - side engagement groove

[0051] 122 Secondary - side conductive terminal group

[0052] 1221 Secondary - side bridging conductive terminal

[0053] 1222 Secondary - side non - bridging conductive terminal

[0054] 13 Conductive bridging component

[0055] 131 Bridging conductive metal

[0056] 1311 Main - side bridging conductive terminal abutting structure

[0057] 1312 Secondary - side bridging conductive terminal abutting structure

[0058] 132 Bridging conductive rubber core

[0059] 1321 Main - side main bridging combination structure

[0060] 1322 Secondary - side main bridging combination structure

[0061] 1323 Main - side secondary bridging combination structure

[0062] 1324 Secondary - side secondary bridging combination structure

[0063] S1 Main - side of the electrical connector

[0064] S2 Secondary - side of the electrical connector

[0065] B1 Bridging conductive joint body

[0066] P1121 Position of the main - side bridging conductive terminal

[0067] Position of the main - side non - bridging conductive terminal P1122

[0068] Position of the secondary - side bridging conductive terminal P1221

[0069] Position of the secondary - side non - bridging conductive terminal P1222

[0070] Contact position of the main - side bridging conductive terminal P1311

[0071] Contact position of the secondary - side bridging conductive terminal P1312

[0072] Main - side main bridging combination position P1321

[0073] Secondary - side main bridging combination position P1322

[0074] Main - side main glue - core combination position P1111

[0075] Secondary - side main glue - core combination position P1211

[0076] Main - side secondary bridging combination position P1323

[0077] Secondary - side secondary bridging combination position P1324

[0078] Main - side secondary glue - core combination position P1112

[0079] Secondary - side secondary glue - core combination position P1212

[0080] Bridging wire segment L1

[0081] Non - bridging wire segment L2

[0082] Main - side combination wire segment L3

[0083] Secondary - side combination wire segment L4

[0084] Joining wire segment L5 Detailed implementation manners

[0085] The following content will be combined with the drawings to illustrate the technical content of the present application through specific embodiments. Those skilled in the art can easily understand other advantages and effects of the present application from the content disclosed in this specification. The present application can also be implemented or applied through other different specific embodiments. The details in this specification can also be modified and changed based on different viewpoints and applications without departing from the spirit of the present application. In particular, the proportional relationships and relative positions of the various elements in the drawings are only for illustrative purposes and do not represent the actual situation of the implementation of the present application.

[0086] The electrical connector of the present application can customize the number and structure of conductive terminals to meet the requirements of electronic devices for signal transmission.

[0087] Regarding the technical concept of the electrical connector of the present application, please refer to Figures 1 to 17 the embodiment description.

[0088] In Figures 1 to 8 and Figures 16 to 17 shown in the embodiments, an electrical connector 1 is disclosed. On both sides of the electrical connector 1 are a main side of the electrical connector S1 and a secondary side of the electrical connector S2, and the electrical connector 1 includes: a main side electrical connector member 11, a secondary side electrical connector member 12, and a conductive bridging member 13.

[0089] As Figure 6 , Figures 8 to 10 and Figures 14 to 17 shown, the main side electrical connector member 11 has a main side insulating rubber core 111 and a main side conductive terminal group 112. The main side conductive terminal group 112 has a main side bridging conductive terminal 1121 and a main side non-bridging conductive terminal 1122. The main side insulating rubber core 111 joins the main side conductive terminal group 112 to respectively position the main side bridging conductive terminal 1121 and the main side non-bridging conductive terminal 1122 at a main side bridging conductive terminal position P1121 and a main side non-bridging conductive terminal position P1122. The main side insulating rubber core 111 has a main side main rubber core combination structure 1111, a main side secondary rubber core combination structure 1112, a main side joining block 1113, and a main side joining groove 1114. As Figures 7 to 8 shown, the main side main rubber core combination structure 1111 is located at a main side main rubber core combination position P1111, and the main side secondary rubber core combination structure 1112 is located at a main side secondary rubber core combination position P1112. The main side main rubber core combination structure 1111 and the main side secondary rubber core combination structure 1112 are disposed on the main side joining block 1113.

[0090] As Figure 6 , Figures 8 to 10 and Figures 14 to 17As shown, the secondary-side electrical connector member 12 has a primary-side insulating rubber core 121 and a primary-side conductive terminal group 122. The primary-side conductive terminal group 122 has a primary-side bridging conductive terminal 1221 and a primary-side non-bridging conductive terminal 1222. The primary-side insulating rubber core 121 joins the primary-side conductive terminal group 122 to position the primary-side bridging conductive terminal 1221 and the primary-side non-bridging conductive terminal 1222 at a primary-side bridging conductive terminal position P1221 and a primary-side non-bridging conductive terminal position P1222 respectively. The primary-side insulating rubber core 121 has a primary-side main rubber core combination structure 1211, a primary-side secondary rubber core combination structure 1212, a primary-side engaging block 1213 and a primary-side engaging groove 1214. As Figure 7 shown, the primary-side main rubber core combination structure 1211 is located at a primary-side main rubber core combination position P1211, and the primary-side secondary rubber core combination structure 1212 is located at a primary-side secondary rubber core combination position P1212. The primary-side main rubber core combination structure 1211 and the primary-side secondary rubber core combination structure 1212 are disposed on the primary-side engaging block 1213.

[0091] As Figures 9 to 13 shown, the conductive bridging member 13 has a bridging conductive metal 131 and a bridging conductive rubber core 132. The bridging conductive metal 131 has a main-side bridging conductive terminal abutting structure 1311 and a primary-side bridging conductive terminal abutting structure 1312. The bridging conductive rubber core 132 has a main-side main bridging combination structure 1321, a primary-side main bridging combination structure 1322, a main-side secondary bridging combination structure 1323 and a primary-side secondary bridging combination structure 1324. As Figure 7 shown, the main-side main bridging combination structure 1321 is located at a main-side main bridging combination position P1321, the primary-side main bridging combination structure 1322 is located at a primary-side main bridging combination position P1322, the main-side secondary bridging combination structure 1323 is located at a main-side secondary bridging combination position P1323, and the primary-side secondary bridging combination structure 1324 is located at a primary-side secondary bridging combination position P1324.

[0092] The main-side main bridging combination structure 1321 and the sub-side main bridging combination structure 1322 respectively pass through the bridging conductive metal 131 on the main side S1 and the sub side S2 of the electrical connector, and the main-side secondary bridging combination structure 1323 and the sub-side secondary bridging combination structure 1324 respectively pass through the bridging conductive metal 131 on the main side S1 and the sub side S2 of the electrical connector, so that the bridging conductive rubber core 132 engages with the bridging conductive metal 131, so that the bridging conductive rubber core 132 and the bridging conductive metal 131 are joined into a bridging conductive joint body B1, and the main-side bridging conductive terminal abutting structure 1311 and the sub-side bridging conductive terminal abutting structure 1312 are respectively positioned at a main-side bridging conductive terminal abutting position P1311 and a sub-side bridging conductive terminal abutting position P1312.

[0093] The main-side main bridging combination structure 1321 and the sub-side main bridging combination structure 1322 respectively combine the main-side electrical connector component 11 and the sub-side electrical connector component 12 on the main side S1 and the sub side S2 of the electrical connector. The main-side secondary bridging combination structure 1323 and the sub-side secondary bridging combination structure 1324 respectively combine the sub-side electrical connector component 12 and the main-side electrical connector component 11 on the main side S1 and the sub side S2 of the electrical connector, so that the conductive bridging component 13, the main-side electrical connector component 11 and the sub-side electrical connector component 12 are combined to form an electrical connector combination component 10.

[0094] It should be noted that the main-side main bridging combination structure 1321 and the sub-side main bridging combination structure 1322 can be selectively extended between the main-side conductive terminal group 112 and the sub-side conductive terminal group 122 to provide shielding between the main-side conductive terminal group 112 and the sub-side conductive terminal group 122. The main-side secondary bridging combination structure 1323 and the sub-side secondary bridging combination structure 1324 extend between the main-side conductive terminal group 112 and the sub-side conductive terminal group 122 to provide shielding between the main-side conductive terminal group 112 and the sub-side conductive terminal group 122 to meet the requirements of electronic devices for signal transmission.

[0095] In addition, the electrical connector 1 is formed by combining a plurality of components including the main-side electrical connector component 11 and the sub-side electrical connector component 12. Among them, the main-side electrical connector component 11 and the sub-side electrical connector component 12 respectively have conductive terminals. Therefore, after the electrical connector 1 is designed, it is still possible to customize and adjust the number and structure of the conductive terminals of the electrical connector 1 by adjusting the main-side electrical connector sub-component 11 and the sub-side electrical connector sub-component 12 to meet the requirements of electronic devices for signal transmission.

[0096] As Figure 7 shown, the electrical connector combination member 10 can define a bridge wiring segment L1, a non-bridge wiring segment L2, a main-side combined wiring segment L3, a secondary-side combined wiring segment L4, and a joining segment L5. It should be noted that the bridge wiring segment L1 can be selected to be substantially parallel to the non-bridge wiring segment L2, the main-side combined wiring segment L3 can be selected to be substantially parallel to the secondary-side combined wiring segment L4, and the joining segment L5 can be selected to be substantially orthogonal to the bridge wiring segment L1, the non-bridge wiring segment L2, the main-side combined wiring segment L3, and the secondary-side combined wiring segment L4.

[0097] As Figure 7 shown, the main-side bridge conductive terminal position P1121, the secondary-side bridge conductive terminal position P1221, the main-side bridge conductive terminal abutting position P1311, and the secondary-side bridge conductive terminal abutting position P1312 are respectively located on the bridge wiring segment L1, so that the main-side bridge conductive terminal abutting structure 1311 and the secondary-side bridge conductive terminal abutting structure 1312 can respectively abut the main-side bridge conductive terminal 1121 and the secondary-side bridge conductive terminal 1221 on the bridge wiring segment L1, and the bridge conductive joining body B1 electrically bridges the main-side bridge conductive terminal 1121 and the secondary-side bridge conductive terminal 1221.

[0098] It should be noted that since the main-side bridge conductive terminal position P1121, the secondary-side bridge conductive terminal position P1221, the main-side bridge conductive terminal abutting position P1311, and the secondary-side bridge conductive terminal abutting position P1312 are respectively located on the bridge wiring segment L1, in this way, the positions of the main-side bridge conductive terminal abutting structure 1311, the secondary-side bridge conductive terminal abutting structure 1312, the main-side bridge conductive terminal 1121, and the secondary-side bridge conductive terminal 1221 can be avoided from being staggered. Therefore, the size of the electrical connector 1 can be reduced, and the electronic device using the electrical connector 1 can continue to develop in the direction of being thinner, lighter, shorter, and smaller.

[0099] In addition, since the bridge conductive joining body B1 electrically bridges the main-side bridge conductive terminal 1121 and the secondary-side bridge conductive terminal 1221, the main-side bridge conductive terminal 1121 and the secondary-side bridge conductive terminal 1221 are electrically connected. Therefore, the present application can achieve the electrical connection of the bridge conductive terminals on the electrical connector 1 through the conductive bridging member 13 to meet the requirements of the electronic device for signal transmission.

[0100] Furthermore, the main-side bridging conductive terminal abutting structure 1311 and the sub-side bridging conductive terminal abutting structure 1312 can be elastic arm structures, and can elastically abut the main-side bridging conductive terminal 1121 and the sub-side bridging conductive terminal 1221 respectively, so as to maintain the electrical bridging of the bridging conductive joint B1 to the main-side bridging conductive terminal 1121 and the sub-side bridging conductive terminal 1221.

[0101] In addition, the main-side non-bridging conductive terminal position P1122 and the sub-side non-bridging conductive terminal position P1222 are respectively located on the non-bridging line segment L2, so that the main-side bridging conductive terminal abutting structure 1311 and the sub-side bridging conductive terminal abutting structure 1312 can respectively avoid the main-side non-bridging conductive terminal 1122 and the sub-side non-bridging conductive terminal 1222, and prevent the bridging conductive joint B1 from electrically bridging the main-side non-bridging conductive terminal 1122 and the sub-side non-bridging conductive terminal 1222.

[0102] It should be noted that since the main-side non-bridging conductive terminal position P1122 and the sub-side non-bridging conductive terminal position P1222 are respectively located on the non-bridging line segment L2, in this way, the positions of the main-side non-bridging conductive terminal 1122 and the sub-side non-bridging conductive terminal 1222 can be prevented from being offset. In this way, the size of the electrical connector 1 can be reduced, enabling the electronic device using the electrical connector 1 to continue to develop in the direction of being thinner, lighter, shorter and smaller.

[0103] Furthermore, the main-side main bridging combination position P1321 and the main-side main rubber core combination position P1111 are respectively located on the main-side combination line segment L3, so that the main-side main bridging combination structure 1321 and the main-side main rubber core combination structure 1111 can combine the conductive bridging member 13 and the main-side electrical connector member 11 on the main side S1 of the electrical connector. The sub-side secondary bridging combination position P1324 and the main-side secondary rubber core combination position P1112 are respectively located on the main-side combination line segment L3, so that the sub-side secondary bridging combination structure 1324 and the main-side secondary rubber core combination structure 1112 can combine the conductive bridging member 13 and the main-side electrical connector member 11 on the sub side S2 of the electrical connector.

[0104] It should be noted that since the main-side main bridging combination position P1321, the main-side main rubber core combination position P1111, the secondary-side secondary bridging combination position P1324, and the main-side secondary rubber core combination position P1112 are respectively located on the main-side combination line segment L3, in this way, the positions of the main-side main bridging combination structure 1321, the main-side main rubber core combination structure 1111, the secondary-side secondary bridging combination structure 1324, and the main-side secondary rubber core combination structure 1112 can be prevented from being offset. In this way, the size of the electrical connector 1 can be reduced, enabling the electronic device using the electrical connector 1 to continuously develop in the direction of being thinner, lighter, shorter, and smaller.

[0105] In addition, the secondary-side main bridging combination position P1322 and the secondary-side main rubber core combination position P1211 are respectively located on the secondary-side combination line segment L4, enabling the secondary-side main bridging combination structure 1322 and the secondary-side main rubber core combination structure 1211 to combine the conductive bridging member 13 and the secondary-side electrical connector member 12 on the secondary side S2 of the electrical connector. The main-side secondary bridging combination position P1323 and the secondary-side secondary rubber core combination position P1212 are respectively located on the secondary-side combination line segment L4, enabling the main-side secondary bridging combination structure 1323 and the secondary-side secondary rubber core combination structure 1212 to combine the conductive bridging member 13 and the secondary-side electrical connector member 12 on the main side S1 of the electrical connector.

[0106] It should be noted that since the secondary-side main bridging combination position P1322, the secondary-side main rubber core combination position P1211, the main-side secondary bridging combination position P1323, and the secondary-side secondary rubber core combination position P1212 are respectively located on the secondary-side combination line segment L4, in this way, the positions of the secondary-side main bridging combination structure 1322, the secondary-side main rubber core combination structure 1211, the main-side secondary bridging combination structure 1323, and the secondary-side secondary rubber core combination structure 1212 can be prevented from being offset. In this way, the size of the electrical connector 1 can be reduced, enabling the electronic device using the electrical connector 1 to continuously develop in the direction of being thinner, lighter, shorter, and smaller.

[0107] In addition, as Figures 9 to 10 shown, the profiles of the main-side engaging block 1113 and the secondary-side engaging groove 1214 correspond, and the profiles of the secondary-side engaging block 1213 and the main-side engaging groove 1114 correspond. Therefore, in the electrical connector combination member 10, the main-side engaging block 1113 enters the secondary-side engaging groove 1214, and the secondary-side engaging block 1213 enters the main-side engaging groove 1114, so that the main-side engaging block 1113 and the secondary-side engaging block 1213 are located on the engaging line segment L5, causing the main-side insulating rubber core 111 and the secondary-side insulating rubber core 121 to partially overlap, thereby reducing the size of the electrical connector 1.

[0108] It should be noted that since the main - side engaging block 1113 and the sub - side engaging block 1213 are located on the engaging line segment L5, in this way, the misalignment of the positions of the main - side engaging block 1113 and the sub - side engaging block 1213 can be avoided. In this way, the size of the electrical connector 1 can be reduced, enabling the electronic device using the electrical connector 1 to continuously develop in the direction of being thinner, lighter, shorter, and smaller.

[0109] It should be noted that the main - side main bridging combination structure 1321 and the main - side main rubber - core combination structure 1111 can be selected as a concave - convex structure with structural cooperation, so that the main - side main bridging combination structure 1321 and the main - side main rubber - core combination structure 1111 partially overlap, thereby reducing the size of the electrical connector 1. The sub - side main bridging combination structure 1322 and the sub - side main rubber - core combination structure 1211 can be selected as a concave - convex structure with structural cooperation, so that the sub - side main bridging combination structure 1322 and the sub - side main rubber - core combination structure 1211 partially overlap, thereby reducing the size of the electrical connector 1. The main - side secondary bridging combination structure 1323 and the sub - side secondary rubber - core combination structure 1212 are a concave - convex structure with structural cooperation, so that the main - side secondary bridging combination structure 1323 and the sub - side secondary rubber - core combination structure 1212 partially overlap, thereby reducing the size of the electrical connector 1; and the sub - side secondary bridging combination structure 1324 and the main - side secondary rubber - core combination structure 1112 are a concave - convex structure with structural cooperation, so that the sub - side secondary bridging combination structure 1324 and the main - side secondary rubber - core combination structure 1112 partially overlap, thereby reducing the size of the electrical connector 1.

[0110] It should be noted that in the above embodiments, some of the foregoing components may also be omitted. For example, in the present application, the electrical connector includes: a main-side electrical connector component, a sub-side electrical connector component, and a conductive bridging component. The main-side electrical connector component has a main-side insulating rubber core and a main-side conductive terminal group. The main-side conductive terminal group has a main-side bridging conductive terminal and a main-side non-bridging conductive terminal. The main-side insulating rubber core engages the main-side conductive terminal group to respectively position the main-side bridging conductive terminal and the main-side non-bridging conductive terminal at the main-side bridging conductive terminal position and the main-side non-bridging conductive terminal position. The sub-side electrical connector component has a sub-side insulating rubber core and a sub-side conductive terminal group. The sub-side conductive terminal group has a sub-side bridging conductive terminal and a sub-side non-bridging conductive terminal. The sub-side insulating rubber core engages the sub-side conductive terminal group to respectively position the sub-side bridging conductive terminal and the sub-side non-bridging conductive terminal at the sub-side bridging conductive terminal position and the sub-side non-bridging conductive terminal position. The conductive bridging component has a bridging conductive metal and a bridging conductive rubber core. The bridging conductive metal has a main-side bridging conductive terminal abutting structure and a sub-side bridging conductive terminal abutting structure. The bridging conductive rubber core has a main-side main bridging combination structure and a sub-side main bridging combination structure. The bridging conductive rubber core engages the bridging conductive metal to join the bridging conductive rubber core and the bridging conductive metal into a bridging conductive joined body, and respectively position the main-side bridging conductive terminal abutting structure and the sub-side bridging conductive terminal abutting structure at the main-side bridging conductive terminal abutting position and the sub-side bridging conductive terminal abutting position. The main-side main bridging combination structure and the sub-side main bridging combination structure respectively combine the main-side electrical connector component and the sub-side electrical connector component on the main side of the electrical connector and the sub side of the electrical connector, so that the conductive bridging component, the main-side electrical connector component, and the sub-side electrical connector component are combined to form an electrical connector combined component; the electrical connector combined component can define a bridging line segment and a non-bridging line segment, and the bridging line segment is substantially parallel to the non-bridging line segment; wherein, the main-side bridging conductive terminal position, the sub-side bridging conductive terminal position, the main-side bridging conductive terminal abutting position, and the sub-side bridging conductive terminal abutting position are respectively located on the bridging line segment, so that the main-side bridging conductive terminal abutting structure and the sub-side bridging conductive terminal abutting structure respectively abut the main-side bridging conductive terminal and the sub-side bridging conductive terminal, and the bridging conductive joined body electrically bridges the main-side bridging conductive terminal and the sub-side bridging conductive terminal; and the main-side non-bridging conductive terminal position and the sub-side non-bridging conductive terminal position are respectively located on the non-bridging line segment, so that the main-side bridging conductive terminal abutting structure and the sub-side bridging conductive terminal abutting structure can respectively avoid the main-side non-bridging conductive terminal and the sub-side non-bridging conductive terminal, and prevent the bridging conductive joined body from electrically bridging the main-side non-bridging conductive terminal and the sub-side non-bridging conductive terminal.

[0111] In summary, the electrical connector provided by the present application is composed of a combination of multiple electrical connector components, and the multiple electrical connector components respectively have conductive terminals. Therefore, after the electrical connector is designed, it is still possible to customize and adjust the number and structure of the conductive terminals of the electrical connector by adjusting the multiple electrical connector components in combination, so as to meet the requirements of electronic devices for signal transmission.

[0112] In addition, the electrical connector provided by the present application has a conductive bridging component, and the electrical connection between multiple conductive terminals on the electrical connector can be achieved through the conductive bridging component, so as to meet the requirements of electronic devices for signal transmission.

[0113] The above embodiments are only illustrative of the principles and effects of the present application, and are not used to limit the present application. Any person skilled in this technology can modify and change the above embodiments without departing from the spirit and scope of the present application. Therefore, the scope of the protection of the rights of the present application shall be as listed in the scope of the claims of the present application.

Claims

1. An electrical connector, with one side of the electrical connector being a main side of the electrical connector and the other side being a secondary side of the electrical connector, characterized in that, The electrical connector includes: a main - side electrical connector member having a main - side insulating rubber core and a main - side conductive terminal group. The main - side conductive terminal group has a main - side bridging conductive terminal and a main - side non - bridging conductive terminal. The main - side insulating rubber core engages the main - side conductive terminal group to respectively position the main - side bridging conductive terminal and the main - side non - bridging conductive terminal at a main - side bridging conductive terminal position and a main - side non - bridging conductive terminal position; a secondary - side electrical connector member having a secondary - side insulating rubber core and a secondary - side conductive terminal group. The secondary - side conductive terminal group has a secondary - side bridging conductive terminal and a secondary - side non - bridging conductive terminal. The secondary - side insulating rubber core engages the secondary - side conductive terminal group to respectively position the secondary - side bridging conductive terminal and the secondary - side non - bridging conductive terminal at a secondary - side bridging conductive terminal position and a secondary - side non - bridging conductive terminal position; and a conductive bridging member having a bridging conductive metal and a bridging conductive rubber core. The bridging conductive metal has a main - side bridging conductive terminal abutting structure and a secondary - side bridging conductive terminal abutting structure. The bridging conductive rubber core has a main - side main bridging combination structure and a secondary - side main bridging combination structure. The bridging conductive rubber core engages the bridging conductive metal to join the bridging conductive rubber core and the bridging conductive metal into a bridging conductive joined body, and respectively positions the main - side bridging conductive terminal abutting structure and the secondary - side bridging conductive terminal abutting structure at a main - side bridging conductive terminal abutting position and a secondary - side bridging conductive terminal abutting position. The main - side main bridging combination structure and the secondary - side main bridging combination structure respectively combine the main - side electrical connector member and the secondary - side electrical connector member on the main side and the secondary side of the electrical connector, so that the conductive bridging member, the main - side electrical connector member and the secondary - side electrical connector member are combined to form an electrical connector combined member. The electrical connector combined member can define a bridging line segment and a non - bridging line segment, and the bridging line segment is substantially parallel to the non - bridging line segment. Wherein, the main - side bridging conductive terminal position, the secondary - side bridging conductive terminal position, the main - side bridging conductive terminal abutting position and the secondary - side bridging conductive terminal abutting position are respectively located on the bridging line segment, so that the main - side bridging conductive terminal abutting structure and the secondary - side bridging conductive terminal abutting structure respectively abut the main - side bridging conductive terminal and the secondary - side bridging conductive terminal, and the bridging conductive joined body electrically bridges the main - side bridging conductive terminal and the secondary - side bridging conductive terminal; and the main - side non - bridging conductive terminal position and the secondary - side non - bridging conductive terminal position are respectively located on the non - bridging line segment, so that the main - side bridging conductive terminal abutting structure and the secondary - side bridging conductive terminal abutting structure can respectively avoid the main - side non - bridging conductive terminal and the secondary - side non - bridging conductive terminal, and prevent the bridging conductive joined body from electrically bridging the main - side non - bridging conductive terminal and the secondary - side non - bridging conductive terminal.

2. The electrical connector according to claim 1, wherein The main side main bridging combination structure and the secondary side main bridging combination structure respectively pass through the bridging conductive metal on the main side and the secondary side of the electrical connector, so that the bridging conductive rubber core engages with the bridging conductive metal.

3. The electrical connector according to claim 1, wherein, The main side main bridging combination structure and the secondary side main bridging combination structure extend between the main side conductive terminal group and the secondary side conductive terminal group to provide shielding between the main side conductive terminal group and the secondary side conductive terminal group.

4. The electrical connector according to claim 1, wherein The main side main bridging combination structure is located at a main side main bridging combination position, and the secondary side main bridging combination structure is located at a secondary side main bridging combination position. The main side insulating rubber core has a main side main rubber core combination structure, and the main side main rubber core combination structure is located at a main side main rubber core combination position; the secondary side insulating rubber core has a secondary side main rubber core combination structure, and the secondary side main rubber core combination structure is located at a secondary side main rubber core combination position. The electrical connector combined component can also define a main side combined line segment and a secondary side combined line segment, and the main side combined line segment is substantially parallel to the secondary side combined line segment; wherein, The main side main bridging combination position and the main side main rubber core combination position are respectively located on the main side combined line segment, so that the main side main bridging combination structure and the main side main rubber core combination structure can combine the conductive bridging component and the main side electrical connector component on the main side of the electrical connector; and The secondary side main bridging combination position and the secondary side main rubber core combination position are respectively located on the secondary side combined line segment, so that the secondary side main bridging combination structure and the secondary side main rubber core combination structure can combine the conductive bridging component and the secondary side electrical connector component on the secondary side of the electrical connector.

5. The electrical connector according to claim 4, wherein The main side main bridging combination structure and the main side main rubber core combination structure are concave-convex structures with structural cooperation; and the secondary side main bridging combination structure and the secondary side main rubber core combination structure are concave-convex structures with structural cooperation.

6. The electrical connector according to claim 4, wherein, The bridging conductive rubber core has a main side secondary bridging combination structure and a secondary side secondary bridging combination structure; The main side secondary bridging combination structure is located at a main side secondary bridging combination position, and the secondary side secondary bridging combination structure is located at a secondary side secondary bridging combination position. The main side insulating rubber core also has a main side secondary rubber core combination structure, and the main side secondary rubber core combination structure is located at a main side secondary rubber core combination position; the secondary side insulating rubber core also has a secondary side secondary rubber core combination structure, and the secondary side secondary rubber core combination structure is located at a secondary side secondary rubber core combination position; wherein, the main side secondary bridging combination position and the secondary side secondary rubber core combination position are respectively located on the secondary side combined line segment, so that the main side secondary bridging combination structure and the secondary side secondary rubber core combination structure can combine the conductive bridging component and the secondary side electrical connector component on the main side of the electrical connector; and The secondary secondary bridging combination position and the primary secondary rubber core combination position are respectively located on the primary combination line segment, so that the secondary secondary bridging combination structure and the primary secondary rubber core combination structure can combine the conductive bridging member and the primary electrical connector member on the secondary side of the electrical connector.

7. The electrical connector according to claim 6, wherein, The primary secondary bridging combination structure and the secondary secondary bridging combination structure respectively pass through the bridging conductive metal on the primary side and the secondary side of the electrical connector, so that the bridging conductive rubber core engages with the bridging conductive metal.

8. The electrical connector according to claim 7, wherein, The primary secondary bridging combination structure and the secondary secondary bridging combination structure extend between the primary conductive terminal group and the secondary conductive terminal group to provide shielding between the primary conductive terminal group and the secondary conductive terminal group.

9. The electrical connector according to claim 6, characterized in that, The primary secondary bridging combination structure and the secondary secondary rubber core combination structure are concave-convex structures that are structurally matched; and the secondary secondary bridging combination structure and the primary secondary rubber core combination structure are concave-convex structures that are structurally matched.

10. The electrical connector according to claim 6, characterized in that, The electrical connector combination member can further define an engagement line segment. The primary insulating rubber core further has a primary engagement block and a primary engagement groove, and the secondary insulating rubber core further has a secondary engagement block and a secondary engagement groove. Among them, the primary main rubber core combination structure and the primary secondary rubber core combination structure are arranged on the primary engagement block, and the secondary main rubber core combination structure and the secondary secondary rubber core combination structure are arranged on the secondary engagement block. In the electrical connector combination member, the primary engagement block enters the secondary engagement groove, and the secondary engagement block enters the primary engagement groove, so that the primary engagement block and the secondary engagement block are located on the engagement line segment.