Electric connector

By adopting the cross-section design of the upper and lower conductive terminal groups in the electrical connector, the signal transmission problem caused by the reduction of the number of conductive terminals is solved, and the signal transmission speed and quality optimization is achieved.

CN223206477UActive Publication Date: 2025-08-08TARNG YU ENTERPRISE +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422033378.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-11-15
Filing Date
2024-08-21
Publication Date
2025-08-08
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

In modern electronic devices, with the development of lightweight and short, the number of conductive terminals of the electrical connectors has decreased, resulting in the inability to meet the signal transmission requirements, which limits the technological development of electronic devices.

Method used

The upper and lower conductive terminal groups are designed to connect the pins of the conductive terminal through the cross section to reduce signal crosstalk and optimize signal transmission speed and quality.

Benefits of technology

Effectively reduce the number of conductive terminals, while meeting the signal transmission requirements of electronic equipment, and improving signal transmission speed and quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223206477U_ABST
    Figure CN223206477U_ABST
Patent Text Reader

Abstract

According to the electric connector, at least one conductive terminal of the electric connector is provided with a plurality of pins, so that the number of the conductive terminals of the electric connector is reduced, and the number of the pins of the conductive terminals meets the signal transmission requirement of electronic equipment. Besides, the conductive terminals are provided with bridging sections, so that the plurality of pins of the conductive terminals are bridged, the plurality of pins of the conductive terminals are electrically connected, signal crosstalk among the plurality of pins of the conductive terminals is reduced, the signal transmission speed and quality of the electric connector are optimized, and the special requirements and development of electronic equipment are met.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the technical field of electronic devices, and more particularly, to an electrical connector capable of reducing the number of conductive terminals. Background Art

[0002] In modern electronic devices, electrical connectors are typically provided to transmit signals through the conductive terminals of the electrical connectors. However, as electronic devices continue to develop in a direction of being thinner, lighter, and smaller, the number of conductive terminals in the electrical connectors is required to be reduced. However, if the number of conductive terminals in the electrical connectors is reduced, the number of pins of the conductive terminals may not be able to meet the signal transmission requirements of the electronic devices, thus limiting the technological (functional) development of the electronic devices.

[0003] In view of this, how to reduce the number of conductive terminals of an electrical connector and ensure that the number of pins of the conductive terminals meets the signal transmission requirements of electronic devices has become a technical issue that the industry is eager to challenge and overcome. Utility Model Content

[0004] In view of the shortcomings of the above-mentioned prior art, the present application provides an electrical connector, which includes: an upper conductive terminal group, the upper conductive terminal group has a first polarity upper terminal and a second polarity upper terminal, the first polarity upper terminal has a first polarity upper terminal docking pin, a first polarity upper terminal lap pin and a first polarity upper terminal connecting section, the second polarity upper terminal has a second polarity upper terminal left docking pin, a second polarity upper terminal right docking pin, a second polarity upper terminal left lap pin, a second polarity upper terminal right lap pin, a second polarity upper terminal left connecting section, a second polarity upper terminal right connecting section and a second polarity upper terminal jumper section, the second polarity upper terminal left docking pin and the second polarity upper terminal right docking pin are respectively located at the The first polarity upper terminal is connected to the left and right sides of the docking pin, the second polarity upper terminal left side docking pin and the second polarity upper terminal right side docking pin are respectively located on the left and right sides of the first polarity upper terminal docking pin, the first polarity upper terminal connecting section connects the first polarity upper terminal docking pin and the first polarity upper terminal docking pin, the second polarity upper terminal left side docking section connects the second polarity upper terminal left side docking pin and the second polarity upper terminal left side docking pin, the second polarity upper terminal right side docking section connects the second polarity upper terminal right side docking pin and the second polarity upper terminal right side docking pin, the second polarity upper terminal jumper section crosses the first polarity upper terminal connecting section and connects the second polarity upper terminal left side docking section and the second polarity upper terminal right side docking section;And a lower conductive terminal group, the lower conductive terminal group has a first polarity lower terminal and a second polarity lower terminal, the first polarity lower terminal has a first polarity lower terminal docking pin, a first polarity lower terminal overlap pin and a first polarity lower terminal connecting section, the second polarity lower terminal has a second polarity lower terminal left docking pin, a second polarity lower terminal right docking pin, a second polarity lower terminal left overlap pin, a second polarity lower terminal right overlap pin, a second polarity lower terminal left connecting section, a second polarity lower terminal right connecting section and a second polarity lower terminal jumper section, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin are respectively located on the left and right sides of the first polarity lower terminal docking pin. On the left side, the second polarity lower terminal left-side bonding pin and the second polarity lower terminal right-side bonding pin are respectively located on the left and right sides of the first polarity lower terminal bonding pin. The first polarity lower terminal connecting section connects the first polarity lower terminal butt joint pin and the first polarity lower terminal bonding pin. The second polarity lower terminal left-side bonding section connects the second polarity lower terminal left-side bonding pin and the second polarity lower terminal left-side bonding pin. The second polarity lower terminal right-side bonding section connects the second polarity lower terminal right-side bonding pin and the second polarity lower terminal right-side bonding pin. The second polarity lower terminal bridge section bridges the first polarity lower terminal connecting section and connects the second polarity lower terminal left-side bonding section and the second polarity lower terminal right-side bonding section.

[0005] Preferably, in the electrical connector of the present application, the first polarity upper terminal and the first polarity lower terminal are positive polarity terminals, and the second polarity upper terminal and the second polarity lower terminal are negative polarity terminals.

[0006] Preferably, in the electrical connector of the present application, the second polarity upper terminal jumper section extends above or below the first polarity upper terminal connection section, and the second polarity lower terminal jumper section extends above or below the first polarity lower terminal connection section.

[0007] Preferably, in the electrical connector of the present application, the left side docking pin of the second polarity upper terminal, the right side docking pin of the second polarity upper terminal and the second polarity upper terminal jumper section form a U-shaped structure; and the first polarity lower terminal docking pin, the left side docking pin of the second polarity lower terminal and the right side docking pin of the second polarity lower terminal form a U-shaped structure.

[0008] Preferably, in the electrical connector of the present application, the second polarity upper terminal and the second polarity lower terminal are H-shaped terminals.

[0009] Preferably, in the electrical connector of the present application, a docking component can be matched, wherein, it also includes an insulating rubber core, the insulating rubber core has a rubber core docking port and a rubber core lap port, the insulating rubber core connects the upper conductive terminal group and the lower conductive terminal group, so that the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin, the first polarity lower terminal docking pin, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin are located in the rubber core docking port, and the first polarity upper terminal lap pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin are located in the rubber core docking port, and the first polarity upper terminal lap pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin are located in the rubber core docking port, and the first polarity upper terminal lap pin, the second polarity upper terminal left docking pin, the second polarity upper terminal The overlapping pin, the right overlapping pin of the second polarity upper terminal, the overlapping pin of the first polarity lower terminal, the left overlapping pin of the second polarity lower terminal and the right overlapping pin of the second polarity lower terminal are located at the rubber core overlapping port, and the rubber core docking port has a docking port guide structure, and the docking port guide structure can abut the docking component to guide the docking component to dock the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin, the first polarity lower terminal docking pin, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin.

[0010] Preferably, in the electrical connector of the present application, the rubber core docking port has a docking port support structure, and the docking port support structure can provide support for the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin, the first polarity lower terminal docking pin, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin.

[0011] Preferably, in the electrical connector of the present application, the plastic core docking port is a tongue-shaped structure or a frame-shaped structure.

[0012] Preferably, in the electrical connector of the present application, the rubber core docking port has a docking port deformation space, wherein the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin, the first polarity lower terminal docking pin, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin can be deformed in the docking port deformation space to dock the docking component.

[0013] Preferably, in the electrical connector of the present application, a docking component and a lap joint component can be matched, wherein the first polarity upper terminal also has a first polarity upper terminal bending section, and the first polarity upper terminal bending section can be bent so that the first polarity upper terminal docking pin can dock with the docking component, and the first polarity upper terminal lap joint pin can lap the lap joint component; the second polarity upper terminal also has a second polarity upper terminal bending section, and the second polarity upper terminal bending section can be bent so that the left docking pin of the second polarity upper terminal and the right docking pin of the second polarity upper terminal can dock with the docking component, and the left lap joint pin of the second polarity upper terminal and the second polarity upper terminal can lap the lap joint component. The right side overlapping pin can overlap the overlapping component; the first polarity lower layer terminal also has a first polarity lower layer terminal bending section, which can be bent so that the first polarity lower layer terminal docking pin can dock with the docking component, and the first polarity lower layer terminal overlapping pin can overlap the overlapping component; and the second polarity lower layer terminal also has a second polarity lower layer terminal bending section, which can be bent so that the left side docking pin of the second polarity lower layer terminal and the right side docking pin of the second polarity lower layer terminal can dock with the docking component, and the left side overlapping pin of the second polarity lower layer terminal and the right side overlapping pin of the second polarity lower layer terminal can overlap the overlapping component.

[0014] Preferably, the electrical connector of the present application further includes: a conductive metal partition, wherein the conductive metal partition is located between the upper conductive terminal group and the lower conductive terminal group to separate the upper conductive terminal group from the lower conductive terminal group, and the conductive metal partition has a partition positioning structure, and the partition positioning structure can position the docking component to maintain the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin, the first polarity lower terminal docking pin, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin docking the docking component.

[0015] Preferably, in the electrical connector of the present application, the conductive metal partition is a plate-shaped component, and the partition positioning structure is a concave-convex structure or a clamping structure.

[0016] Preferably, in the electrical connector of the present application, the electrical connector is a board-end connector or a line-end connector.

[0017] Compared to prior art, the present invention provides an electrical connector in which at least one conductive terminal has multiple pins, thereby reducing the number of conductive terminals in the electrical connector while ensuring that the number of pins in the conductive terminal meets the signal transmission requirements of electronic devices. Furthermore, the conductive terminal includes a jumper section that bridges the multiple pins of the conductive terminal, electrically connecting the multiple pins. This reduces signal crosstalk between the multiple pins of the conductive terminal, thereby optimizing the signal transmission speed and quality of the electrical connector to meet the specific needs and developments of electronic devices. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 Shown is a perspective schematic diagram of an electrical connector of the present application at a first viewing angle in one embodiment.

[0019] Figure 2 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a second viewing angle.

[0020] Figure 3 Shown is a perspective schematic diagram of an electrical connector of the present application at a first viewing angle in one embodiment.

[0021] Figure 4 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a second viewing angle.

[0022] Figure 5 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a third viewing angle.

[0023] Figure 6 Shown is a perspective schematic diagram of an electrical connector of the present application at a first viewing angle in one embodiment.

[0024] Figure 7 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a second viewing angle.

[0025] Figure 8 Shown is a perspective schematic diagram of an electrical connector of the present application at a first viewing angle in one embodiment.

[0026] Figure 9 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a second viewing angle.

[0027] Figure 10 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a third viewing angle.

[0028] Figure 11 Shown is a perspective schematic diagram of an electrical connector of the present application at a first viewing angle in one embodiment.

[0029] Figure 12FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a second viewing angle.

[0030] Figure 13 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a third viewing angle.

[0031] Figure 14 Shown is a front view schematic diagram of an electrical connector of the present application in one embodiment.

[0032] Figure 15 Display as Figure 14 The diagram shows a cross-sectional view of some components of the electrical connector taken along line segment AA.

[0033] Figure 16 Display as Figure 14 The diagram shows a cross-sectional view of some components of the electrical connector taken along line BB.

[0034] Figure 17 Display as Figure 14 The diagram shows a cross-sectional view of some components of the electrical connector taken along line CC.

[0035] Figure 18 Shown is a perspective schematic diagram of an electrical connector of the present application at a first viewing angle in one embodiment.

[0036] Figure 19 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a second viewing angle.

[0037] Figure 20 Shown is a perspective schematic diagram of an electrical connector of the present application at a first viewing angle in one embodiment.

[0038] Figure 21 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a second viewing angle.

[0039] Figure 22 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a third viewing angle.

[0040] Figure 23 Shown is a perspective schematic diagram of an electrical connector of the present application at a first viewing angle in one embodiment.

[0041] Figure 24 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a second viewing angle.

[0042] Figure 25 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a third viewing angle.

[0043] Figure 26Shown is a perspective schematic diagram of an electrical connector of the present application at a first viewing angle in one embodiment.

[0044] Figure 27 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a second viewing angle.

[0045] Figure 28 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a third viewing angle.

[0046] Figure 29 Shown is a perspective schematic diagram of an electrical connector of the present application at a first viewing angle in one embodiment.

[0047] Figure 30 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a second viewing angle.

[0048] Figure 31 FIG. 1 is a perspective diagram of an electrical connector according to an embodiment of the present application from a third viewing angle.

[0049] Figure 32 Shown is a front view schematic diagram of an electrical connector of the present application in one embodiment.

[0050] Figure 33 Display as Figure 32 The diagram shows a cross-sectional view of some components of the electrical connector taken along line segment AA.

[0051] Figure 34 Display as Figure 32 The diagram shows a cross-sectional view of some components of the electrical connector taken along line BB.

[0052] Figure 35 Display as Figure 32 The diagram shows a cross-sectional view of some components of the electrical connector taken along line CC.

[0053] Component number description

[0054] 1 Electrical connector

[0055] 11 Upper conductive terminal group

[0056] 111 First polarity upper terminal

[0057] 1111 First polarity upper terminal connection pin

[0058] 1112 First polarity upper terminal connection pin

[0059] 1113 First polarity upper terminal connection section

[0060] 1114 First polarity upper terminal bending section

[0061] 112 Second polarity upper terminal

[0062] 1121 Second polarity upper terminal left side connection pin

[0063] 1122 Second polarity upper terminal right side connection pin

[0064] 1123 Second polarity upper terminal jumper

[0065] 1124 Second polarity upper terminal left side connection pin

[0066] 1125 Second polarity upper terminal right side connection pin

[0067] 1126 Second polarity upper terminal left connection section

[0068] 1127 Second polarity upper terminal right connecting section

[0069] 1128 Second polarity upper terminal bending section

[0070] 12 lower conductive terminal group

[0071] 121 First polarity lower terminal

[0072] 1211 First polarity lower terminal docking pin

[0073] 1212 First polarity lower terminal connection pin

[0074] 1213 First polarity lower terminal connection section

[0075] 1214 First polarity lower terminal bending section

[0076] 122 Second polarity lower terminal

[0077] 1221 Second polarity lower terminal left side connection pin

[0078] 1222 Second polarity lower terminal right side connection pin

[0079] 1223 Second polarity lower terminal jumper section

[0080] 1224 Second polarity lower terminal left side connection pin

[0081] 1225 Second polarity lower terminal right side connection pin

[0082] 1226 Second polarity lower terminal left connection section

[0083] 1227 Second polarity lower terminal right connecting section

[0084] 1228 Second polarity lower terminal bending section

[0085] 13 Conductive metal partition

[0086] 131 Partition positioning structure

[0087] 14 Insulation rubber core

[0088] 141 Plastic core docking port

[0089] 1411 Docking port support structure

[0090] 1412 Docking port guide structure

[0091] 1413 Docking Port Deformation Space

[0092] 142 Rubber core joint

[0093] 2 Docking components

[0094] 3 Overlapping components DETAILED DESCRIPTION

[0095] The following content will be accompanied by drawings and illustrate the technical content of this application through specific embodiments. Those familiar with this technology can easily understand the other advantages and functions of this application from the content disclosed in this specification. This application can also be implemented or applied through other different specific embodiments. The details in this specification can also be modified and changed in various ways based on different viewpoints and applications without departing from the spirit of this application. In particular, the proportional relationships and relative positions of the various components in the drawings are for illustrative purposes only and do not represent the actual situation of the implementation of this application.

[0096] In addition, it should be noted that in order to make the disclosed content more concise and easier to understand, the components with the same or similar functions in the following embodiments will be described using the same symbols, and the description of the same or equivalent features will be omitted.

[0097] The present application provides at least one electrical connector, wherein at least one conductive terminal of the electrical connector has a plurality of pins. In this way, the number of conductive terminals of the electrical connector can be reduced and the number of pins of the conductive terminals can meet the signal transmission requirements of electronic equipment.

[0098] For the description of the embodiments disclosed in this application, please refer to Figures 1 to 35 .

[0099] The present application provides an electrical connector that can be used to transmit signals. Figures 1 to 35In the illustrated embodiment, an electrical connector 1 is provided that can be used with a mating component 2 and a bridge component 3. The electrical connector 1 is a board-end connector mounted on a circuit board to transmit signals, or a wire-end connector that bridges a conductive wire to transmit signals. The mating component 2 and the bridge component 3 are either electrical connector components or conductive wire components that can transmit signals.

[0100] like Figures 3 to 7 、 Figure 14 、 Figures 20 to 25 and Figure 32 As shown, the electrical connector 1 includes an upper conductive terminal set 11 , a lower conductive terminal set 12 , a conductive metal spacer 13 and an insulating rubber core 14 .

[0101] The upper conductive terminal group 11 has a first polarity upper terminal 111 and a second polarity upper terminal 112. The first polarity upper terminal 111 is, for example, a positive polarity terminal and has a first polarity upper terminal docking pin 1111, a first polarity upper terminal bridge pin 1112, and a first polarity upper terminal connecting section 1113. The second polarity upper terminal 112 is, for example, a negative polarity terminal and has a second polarity upper terminal left docking pin 1121, a second polarity upper terminal right docking pin 1122, a second polarity upper terminal left bridge pin 1124, a second polarity upper terminal right bridge pin 1125, a second polarity upper terminal left connecting section 1126, a second polarity upper terminal right connecting section 1127, and a second polarity upper terminal bridge section 1123.

[0102] It should be noted that the number of the first polarity upper terminal 111 and the second polarity upper terminal 112 is not limited to one.

[0103] like Figure 8 、 Figure 11 、 Figure 16 and Figure 35As shown, the second polarity upper terminal left side connecting pin 1121 and the second polarity upper terminal right side connecting pin 1122 are respectively located on the left and right sides of the first polarity upper terminal connecting pin 1111. The second polarity upper terminal left side connecting pin 1124 and the second polarity upper terminal right side connecting pin 1125 are respectively located on the left and right sides of the first polarity upper terminal connecting pin 1112. The first polarity upper terminal connecting section 1113 connects the first polarity upper terminal connecting pin 1111 and the first polarity upper terminal connecting pin 1112, electrically connecting the first polarity upper terminal connecting pin 1111 and the first polarity upper terminal connecting pin 1112. The second polarity upper terminal left side connecting section 1126 connects the second polarity upper terminal left side connecting pin 1121 and the second polarity upper terminal left side connecting pin 1124, electrically connecting the second polarity upper terminal left side connecting pin 1121 and the second polarity upper terminal left side connecting pin 1124. The second polarity upper terminal right connecting section 1127 connects the second polarity upper terminal right connecting pin 1122 and the second polarity upper terminal right bonding pin 1125 , so that the second polarity upper terminal right connecting pin 1122 and the second polarity upper terminal right bonding pin 1125 are electrically connected.

[0104] The second polarity upper terminal bridging section 1123 extends over the first polarity upper terminal connecting section 1113 (eg Figure 8 as shown) or below (as shown Figures 25 to 26 As shown), it crosses the first polarity upper terminal connecting section 1113, and then connects the second polarity upper terminal left connecting section 1126 and the second polarity upper terminal right connecting section 1127, so that the second polarity upper terminal left connecting section 1126 and the second polarity upper terminal right connecting section 1127 are electrically connected, thereby reducing the signal crosstalk between the second polarity lower terminal left connecting section 1226 and the second polarity lower terminal right connecting section 1227, and achieving the reduction of the signal crosstalk between the second polarity upper terminal left docking pin 1121, the second polarity upper terminal left jumper pin 1124, the second polarity upper terminal right docking pin 1122 and the second polarity upper terminal right jumper pin 1125, thereby optimizing the electrical connector 1 for signal transmission speed and quality to meet the special needs and development of electronic equipment.

[0105] It should be noted that in this application Figure 3 、 Figure 6 、 Figure 8 、 Figure 20 、 Figure 22 、 Figure 24 、 Figure 28 、 Figure 34 and Figure 35 In the embodiment shown, the left side connecting pin 1121 of the second polarity upper terminal, the right side connecting pin 1122 of the second polarity upper terminal and the second polarity upper terminal bridging section 1123 form a U-shaped structure. Figure 3 、 Figure 6 、 Figure 8 、 Figure 20 、 Figure 22 、 Figure 24 、 Figure 28 、 Figure 34 and Figure 35 In the illustrated embodiment, the second polarity upper terminal 112 is an H-shaped terminal.

[0106] In addition, in this application Figures 4 and 5 、 Figures 7 and 8 、 Figure 10 、 Figure 13 、 Figure 15 、 Figure 17 、 Figure 21 、 Figure 23 、 Figures 25 to 26 and Figure 33 In the embodiment shown, the first polarity upper terminal 111 further has a first polarity upper terminal bending section 1114, which can be bent so that the first polarity upper terminal docking pin 1111 can dock with the docking component 2, and the first polarity upper terminal lap pin 1112 can lap the lap component 3; the second polarity upper terminal 112 further has a second polarity upper terminal bending section 1128, which can be bent so that the second polarity upper terminal left docking pin 1121 and the second polarity upper terminal right docking pin 1122 can dock with the docking component 2, and the second polarity upper terminal left lap pin 1124 and the second polarity upper terminal right lap pin 1125 can lap the lap component 3.

[0107] Therefore, the second polarity upper terminal 112 has a second polarity upper terminal left-side docking pin 1121 and a second polarity upper terminal right-side docking pin 1122, and can provide a plurality of docking pins to dock the docking component 2. In addition, the second polarity upper terminal 112 also has a second polarity upper terminal left-side overlapping pin 1124 and a second polarity upper terminal right-side overlapping pin 1125, and can provide a plurality of overlapping pins to overlap the docking component 2. In this way, the number of conductive terminals of the electrical connector can be reduced, and the number of pins of the conductive terminals can meet the signal transmission requirements of the electronic device.

[0108] The lower conductive terminal assembly 12 includes a first polarity lower terminal 121 and a second polarity lower terminal 122. The first polarity lower terminal 121 is, for example, a positive polarity terminal and includes a first polarity lower terminal docking pin 1211, a first polarity lower terminal bridge pin 1212, and a first polarity lower terminal connecting section 1213. The second polarity lower terminal 122 is, for example, a negative polarity terminal and includes a second polarity lower terminal left docking pin 1221, a second polarity lower terminal right docking pin 1222, a second polarity lower terminal left bridge pin 1224, a second polarity lower terminal right bridge pin 1225, a second polarity lower terminal left connecting section 1226, a second polarity lower terminal right connecting section 1227, and a second polarity lower terminal bridge section 1223.

[0109] It should be noted that the number of the first polarity lower layer terminal 121 and the second polarity lower layer terminal 122 is not limited to one.

[0110] like Figure 9 、 Figure 12 and Figure 35 As shown, the second polarity lower terminal left side connecting pin 1221 and the second polarity lower terminal right side connecting pin 1222 are respectively located on the left and right sides of the first polarity lower terminal connecting pin 1211. The second polarity lower terminal left side connecting pin 1224 and the second polarity lower terminal right side connecting pin 1225 are respectively located on the left and right sides of the first polarity lower terminal connecting pin 1212. The first polarity lower terminal connecting section 1213 connects the first polarity lower terminal connecting pin 1211 and the first polarity lower terminal connecting pin 1212, electrically connecting the first polarity lower terminal connecting pin 1211 and the first polarity lower terminal connecting pin 1212. The second polarity lower terminal left side connecting section 1226 connects the second polarity lower terminal left side connecting pin 1221 and the second polarity lower terminal left side connecting pin 1224, electrically connecting the second polarity lower terminal left side connecting pin 1221 and the second polarity lower terminal left side connecting pin 1224. The second polarity lower terminal right connecting section 1227 connects the second polarity lower terminal right connecting pin 1222 and the second polarity lower terminal right bonding pin 1225 , so that the second polarity lower terminal right connecting pin 1222 and the second polarity lower terminal right bonding pin 1225 are electrically connected.

[0111] The second polarity lower terminal bridging section 1223 extends over the first polarity lower terminal connecting section 1213 (eg Figures 20 to 21 、 Figure 23 、 Figure 25 、 Figure 34 and Figure 35 as shown) or below (as shown Figures 3 and 4 、 Figure 6 、 Figure 9 and Figure 35 As shown), it crosses the first polarity lower terminal connecting section 1213, and then connects the second polarity lower terminal left connecting section 1226 and the second polarity lower terminal right connecting section 1227, so that the second polarity lower terminal left connecting section 1226 and the second polarity lower terminal right connecting section 1227 are electrically connected, thereby reducing the signal crosstalk between the second polarity lower terminal left connecting section 1226 and the second polarity lower terminal right connecting section 1227, and achieving the reduction of the signal crosstalk between the second polarity lower terminal left docking pin 1221, the second polarity lower terminal left bridge pin 1224, the second polarity lower terminal right docking pin 1222 and the second polarity lower terminal right bridge pin 1225, thereby optimizing the electrical connector 1 for signal transmission speed and quality to meet the special needs and development of electronic equipment.

[0112] It should be noted that in this application Figure 9 、 Figure 12 and Figure 35 In the embodiment shown, the first polarity lower terminal connecting pin 1211, the second polarity lower terminal left connecting pin 1221 and the second polarity lower terminal right connecting pin 1222 form a U-shaped structure. Figure 9 、 Figure 12 and Figure 35 In the illustrated embodiment, the second polarity lower layer terminal 122 is an H-shaped terminal.

[0113] In addition, in this application Figure 5 、 Figure 7 、 Figure 9 、 Figure 15 、 Figure 17 、 Figure 22 、 Figure 24 、 Figure 27 and Figure 33In the embodiment shown, the first polarity lower layer terminal 121 further has a first polarity lower layer terminal bending section 1214, which can be bent so that the first polarity lower layer terminal docking pin 1211 can dock with the docking component 2, and the first polarity lower layer terminal overlapping pin 1212 can overlap the overlapping component 3; and the second polarity lower layer terminal 122 further has a second polarity lower layer terminal bending section 1228, which can be bent so that the second polarity lower layer terminal left docking pin 1221 and the second polarity lower layer terminal right docking pin 1222 can dock with the docking component 2, and the second polarity lower layer terminal left overlapping pin 1224 and the second polarity lower layer terminal right overlapping pin 1225 can overlap the overlapping component 3.

[0114] Therefore, the second polarity lower terminal 122 has a second polarity lower terminal left-side docking pin 1221 and a second polarity lower terminal right-side docking pin 1222, and can provide a plurality of docking pins to dock the docking component 2. In addition, the second polarity lower terminal 122 also has a second polarity lower terminal left-side overlapping pin 1224 and a second polarity lower terminal right-side overlapping pin 1225, and can provide a plurality of overlapping pins to overlap the docking component 2. In this way, the number of conductive terminals of the electrical connector can be reduced, and the number of pins of the conductive terminals can meet the signal transmission requirements of the electronic device.

[0115] The insulating rubber core 14 is made of at least one insulating material. Figures 3 to 13 、 Figure 20 、 Figures 22 to 24 、 Figures 26 to 27 and Figure 30 In the illustrated embodiment, the insulating rubber core 14 has a rubber core docking port 141 and a rubber core overlapping port 142 . The insulating rubber core 14 connects the upper conductive terminal group 11 and the lower conductive terminal group 12, so that the first polarity upper terminal docking pin 1111, the second polarity upper terminal left docking pin 1121, the second polarity upper terminal right docking pin 1122, the first polarity lower terminal docking pin 1211, the second polarity lower terminal left docking pin 1221 and the second polarity lower terminal right docking pin 1222 are located at the rubber core docking port 141, and the first polarity upper terminal jumper pin 1112, the second polarity upper terminal left jumper pin 1124, the second polarity upper terminal right jumper pin 1125, the first polarity lower terminal jumper pin 1212, the second polarity lower terminal left jumper pin 1224 and the second polarity lower terminal right jumper pin 1225 are located at the rubber core jumper port 142.

[0116] In this application Figures 3 to 13 、 Figure 20 、 Figures 22 to 24 、 Figures 26 to 27 and Figure 30 In the illustrated embodiment, the core docking port 141 is a tongue-shaped structure having a docking port support structure 1411 and a docking port guide structure 1412. The docking port support structure 1411 can provide support for the first polarity upper terminal docking pin 1111, the second polarity upper terminal left docking pin 1121, the second polarity upper terminal right docking pin 1122, the first polarity lower terminal docking pin 1211, the second polarity lower terminal left docking pin 1221, and the second polarity lower terminal right docking pin 1222. The docking port guide structure 1412 can abut against the docking component 2 to guide the docking component 2 to dock with the first polarity upper terminal docking pin 1111, the second polarity upper terminal left docking pin 1121, the second polarity upper terminal right docking pin 1122, the first polarity lower terminal docking pin 1211, the second polarity lower terminal left docking pin 1221, and the second polarity lower terminal right docking pin 1222.

[0117] However, this application is not limited to the above content. Figure 18 、 Figure 20 、 Figures 22 to 24 、 Figures 26 to 27 and Figures 33 to 34 In the embodiment shown, the rubber core docking port 141 is a frame-shaped structure and has a docking port deformation space 1413, wherein the first polarity upper terminal docking pin 1111, the second polarity upper terminal left docking pin 1121, the second polarity upper terminal right docking pin 1122, the first polarity lower terminal docking pin 1211, the second polarity lower terminal left docking pin 1221 and the second polarity lower terminal right docking pin 1222 can be deformed in the docking port deformation space 1413 to dock the docking component 2.

[0118] In this application Figures 3 to 17 and Figures 20 to 35In the embodiment shown, the conductive metal partition 13 is a plate-shaped component located between the upper conductive terminal group 11 and the lower conductive terminal group 12 to separate the upper conductive terminal group 11 from the lower conductive terminal group 12, and the conductive metal partition 13 has a partition positioning structure 131, and the partition positioning structure 131 is a concave-convex structure or a clamping structure that can position the docking component 2, and can maintain the docking component 2 docking with the first polarity upper terminal docking pin 1111, the second polarity upper terminal left docking pin 1121, the second polarity upper terminal right docking pin 1122, the first polarity lower terminal docking pin 1211, the second polarity lower terminal left docking pin 1221 and the second polarity lower terminal right docking pin 1222 to dock the docking component 2.

[0119] It should be noted that in the above embodiments, some of the aforementioned components can also be omitted. For example, in the present application, the electrical connector includes: an upper conductive terminal group and a lower conductive terminal group. The upper conductive terminal group has a first polarity upper terminal and a second polarity upper terminal, the first polarity upper terminal has a first polarity upper terminal docking pin, a first polarity upper terminal lap pin and a first polarity upper terminal connecting section, the second polarity upper terminal has a second polarity upper terminal left docking pin, a second polarity upper terminal right docking pin, a second polarity upper terminal left lap pin, a second polarity upper terminal right lap pin, a second polarity upper terminal left connecting section, a second polarity upper terminal right connecting section and a second polarity upper terminal jumper section, the second polarity upper terminal left docking pin and the second polarity upper terminal right docking pin are respectively located on the left and right sides of the first polarity upper terminal docking pin, the second polarity upper terminal right docking pin is located on the left and right sides of the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin is located on the left and right sides of the first polarity upper terminal docking pin, the second polarity upper terminal right docking pin is located on the right and left sides of the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin is located on the right and left sides of the first polarity upper terminal docking pin, the second polarity upper terminal right docking pin is located on the left and right sides of the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin is located on the left and right sides of the first polarity upper terminal docking pin, the second polarity upper terminal right docking pin is located on the The left side jumper pin of the second polarity upper terminal and the right side jumper pin of the second polarity upper terminal are respectively located on the left and right sides of the jumper pin of the first polarity upper terminal. The connecting section of the first polarity upper terminal connects the docking pin of the first polarity upper terminal and the jumping pin of the first polarity upper terminal. The left side jumper pin of the second polarity upper terminal connects the left side jumper pin of the second polarity upper terminal and the left side jumper pin of the second polarity upper terminal. The right side jumper pin of the second polarity upper terminal connects the right side jumper pin of the second polarity upper terminal and the right side jumper pin of the second polarity upper terminal. The jumper section of the second polarity upper terminal crosses the connecting section of the first polarity upper terminal and connects the left side jumper section of the second polarity upper terminal and the right side jumper section of the second polarity upper terminal.

[0120] In addition, the lower conductive terminal group has a first polarity lower terminal and a second polarity lower terminal, the first polarity lower terminal has a first polarity lower terminal docking pin, a first polarity lower terminal overlap pin and a first polarity lower terminal connecting section, the second polarity lower terminal has a second polarity lower terminal left docking pin, a second polarity lower terminal right docking pin, a second polarity lower terminal left overlap pin, a second polarity lower terminal right overlap pin, a second polarity lower terminal left connecting section, a second polarity lower terminal right connecting section and a second polarity lower terminal jumper section, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin are respectively located on the left and right sides of the first polarity lower terminal docking pin. On the other side, the left side overlapping pin of the second polarity lower terminal and the right side overlapping pin of the second polarity lower terminal are respectively located on the left and right sides of the first polarity lower terminal overlapping pin, the first polarity lower terminal connecting section connects the first polarity lower terminal docking pin and the first polarity lower terminal overlapping pin, the left side connecting section of the second polarity lower terminal connects the left side docking pin of the second polarity lower terminal and the left side overlapping pin of the second polarity lower terminal, the right side connecting section of the second polarity lower terminal connects the right side docking pin of the second polarity lower terminal and the right side overlapping pin of the second polarity lower terminal, the second polarity lower terminal jumper section crosses the first polarity lower terminal connecting section, and connects the left side connecting section of the second polarity lower terminal and the right side connecting section of the second polarity lower terminal.

[0121] In summary, the present application provides an electrical connector in which at least one conductive terminal has a plurality of pins, thereby reducing the number of conductive terminals in the electrical connector while ensuring that the number of pins in the conductive terminal meets the signal transmission requirements of electronic devices. Furthermore, the conductive terminal includes a jumper section that bridges the plurality of pins of the conductive terminal, electrically connecting the plurality of pins, thereby reducing signal crosstalk between the plurality of pins of the conductive terminal, and thereby optimizing the signal transmission speed and quality of the electrical connector to meet the special needs and developments of electronic devices.

[0122] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Anyone skilled in the art may modify or alter the above embodiments without departing from the spirit and scope of this application. Therefore, the scope of protection of this application shall be as set forth in the claims of this application.

Claims

1. An electrical connector, characterized in that: The electrical connector comprises: An upper conductive terminal group, the upper conductive terminal group having a first polarity upper terminal and a second polarity upper terminal, the first polarity upper terminal having a first polarity upper terminal docking pin, a first polarity upper terminal bridging pin and a first polarity upper terminal connecting section, the second polarity upper terminal having a second polarity upper terminal left docking pin, a second polarity upper terminal right docking pin, a second polarity upper terminal left bridging pin, a second polarity upper terminal right bridging pin, a second polarity upper terminal left connecting section, a second polarity upper terminal right connecting section and a second polarity upper terminal bridging section, the second polarity upper terminal left docking pin and the second polarity upper terminal right docking pin are respectively located on the left and right sides of the first polarity upper terminal docking pin, The left side bonding pin of the second polarity upper terminal and the right side bonding pin of the second polarity upper terminal are respectively located on the left and right sides of the bonding pin of the first polarity upper terminal; the connecting section of the first polarity upper terminal connects the connecting pin of the first polarity upper terminal and the connecting pin of the first polarity upper terminal; the left side bonding section of the second polarity upper terminal connects the left side bonding pin of the second polarity upper terminal and the left side bonding pin of the second polarity upper terminal; the right side bonding section of the second polarity upper terminal connects the right side bonding pin of the second polarity upper terminal and the right side bonding pin of the second polarity upper terminal; the jumper section of the second polarity upper terminal crosses the connecting section of the first polarity upper terminal and connects the left side bonding section of the second polarity upper terminal and the right side bonding section of the second polarity upper terminal; and A lower conductive terminal group, the lower conductive terminal group having a first polarity lower terminal and a second polarity lower terminal, the first polarity lower terminal having a first polarity lower terminal docking pin, a first polarity lower terminal overlap pin and a first polarity lower terminal connecting section, the second polarity lower terminal having a second polarity lower terminal left docking pin, a second polarity lower terminal right docking pin, a second polarity lower terminal left overlap pin, a second polarity lower terminal right overlap pin, a second polarity lower terminal left connecting section, a second polarity lower terminal right connecting section and a second polarity lower terminal jumper section, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin are respectively located on the left and right sides of the first polarity lower terminal docking pin The left side overlapping pin of the second polarity lower terminal and the right side overlapping pin of the second polarity lower terminal are respectively located on the left and right sides of the first polarity lower terminal overlapping pin, the first polarity lower terminal connecting section connects the first polarity lower terminal docking pin and the first polarity lower terminal overlapping pin, the left side connecting section of the second polarity lower terminal connects the left side docking pin of the second polarity lower terminal and the left side overlapping pin of the second polarity lower terminal, the right side connecting section of the second polarity lower terminal connects the right side docking pin of the second polarity lower terminal and the right side overlapping pin of the second polarity lower terminal, the second polarity lower terminal jumper section crosses the first polarity lower terminal connecting section, and connects the left side connecting section of the second polarity lower terminal and the right side connecting section of the second polarity lower terminal.

2. The electrical connector according to claim 1, wherein: The first polarity upper terminal and the first polarity lower terminal are positive polarity terminals, and the second polarity upper terminal and the second polarity lower terminal are negative polarity terminals.

3. The electrical connector according to claim 1, wherein: The second polarity upper terminal bridging section extends over or under the first polarity upper terminal connecting section, and the second polarity lower terminal bridging section extends over or under the first polarity lower terminal connecting section.

4. The electrical connector according to claim 1, wherein: The left side docking pin of the second polarity upper terminal, the right side docking pin of the second polarity upper terminal and the second polarity upper terminal jumper section form a U-shaped structure; and the first polarity lower terminal docking pin, the left side docking pin of the second polarity lower terminal and the right side docking pin of the second polarity lower terminal form a U-shaped structure.

5. The electrical connector according to claim 1, wherein: The second polarity upper terminal and the second polarity lower terminal are H-shaped terminals.

6. The electrical connector according to claim 1, which can be used with a docking member, is characterized in that: The insulating rubber core further includes an insulating rubber core having a rubber core docking port and a rubber core lap port, wherein the insulating rubber core connects the upper conductive terminal group and the lower conductive terminal group, so that the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin, the first polarity lower terminal docking pin, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin are located at the rubber core docking port, and the first polarity upper terminal lap pin, the second polarity upper terminal left lap pin, the second polarity upper terminal right docking pin are located at the rubber core docking port, and the first polarity upper terminal lap pin, the second polarity upper terminal left lap pin, the second polarity upper terminal The right side overlapping pin, the first polarity lower terminal overlapping pin, the second polarity lower terminal left side overlapping pin and the second polarity lower terminal right side overlapping pin are located at the rubber core overlapping port, and the rubber core docking port has a docking port guide structure, and the docking port guide structure can abut the docking component to guide the docking component to dock the first polarity upper terminal docking pin, the second polarity upper terminal left side docking pin, the second polarity upper terminal right side docking pin, the first polarity lower terminal docking pin, the second polarity lower terminal left side docking pin and the second polarity lower terminal right side docking pin.

7. The electrical connector according to claim 6, wherein: The rubber core docking port has a docking port support structure, which can provide support for the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin, the first polarity lower terminal docking pin, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin.

8. The electrical connector according to claim 6, wherein: The rubber core docking port is a tongue-shaped structure or a frame-shaped structure.

9. The electrical connector according to claim 6, wherein: The rubber core docking port has a docking port deformation space, wherein the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin, the first polarity lower terminal docking pin, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin can be deformed in the docking port deformation space to dock the docking component.

10. The electrical connector according to claim 1, which can be used with a docking member and a lap member, wherein: The first polarity upper terminal further has a first polarity upper terminal bending section, which is bendable so that the first polarity upper terminal docking pin can dock with the docking component, and the first polarity upper terminal lap pin can lap with the lap component; The second polarity upper terminal further has a second polarity upper terminal bending section, which is bendable so that the left side docking pin of the second polarity upper terminal and the right side docking pin of the second polarity upper terminal can dock with the docking component, and the left side lap pin of the second polarity upper terminal and the right side lap pin of the second polarity upper terminal can lap with the lap component; The first polarity lower terminal further comprises a first polarity lower terminal bending section, which is bendable so that the first polarity lower terminal docking leg can dock with the docking component, and the first polarity lower terminal lap leg can lap with the lap component; as well as The second polarity lower terminal also has a second polarity lower terminal bending section, which can be bent so that the left docking pin of the second polarity lower terminal and the right docking pin of the second polarity lower terminal can dock with the docking component, and the left lap pin of the second polarity lower terminal and the right lap pin of the second polarity lower terminal can lap with the lap component.

11. The electrical connector according to claim 10, wherein: Also includes: A conductive metal partition, the conductive metal partition is located between the upper conductive terminal group and the lower conductive terminal group to separate the upper conductive terminal group and the lower conductive terminal group, and the conductive metal partition has a partition positioning structure, the partition positioning structure can position the docking component and maintain the first polarity upper terminal docking pin, the second polarity upper terminal left docking pin, the second polarity upper terminal right docking pin, the first polarity lower terminal docking pin, the second polarity lower terminal left docking pin and the second polarity lower terminal right docking pin docking the docking component.

12. The electrical connector according to claim 11, wherein: The conductive metal partition is a plate-shaped component, and the partition positioning structure is a concave-convex structure or a clamping structure.

13. The electrical connector according to claim 11, wherein: The electrical connector is a board-end connector or a line-end connector.