Electric connector

By introducing an electrical connection between the grounding conductive terminal and the conductive metal body, and a shielding structure into the electrical connector, the interference problem of the electrical connector when transmitting high-speed signals is solved, and the signal transmission quality is improved.

CN223956873UActive Publication Date: 2026-02-27TARNG YU ENTERPRISE +1
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Patent Information

Application Number
CN202520354791.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-04-26
Filing Date
2025-03-03
Publication Date
2026-02-27
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

Electrical connectors are susceptible to interference when transmitting high-speed signals, including external electromagnetic interference and crosstalk interference between conductive terminals, which can lead to signal attenuation.

Method used

It adopts primary and secondary electrical connector sub-components, which respectively include primary and secondary conductive terminal groups, insulating terminal blocks and conductive metal bodies. Through the electrical connection between the grounding conductive terminal and the conductive metal body and the shielding structure, an electrical shielding environment is provided to reduce interference.

Benefits of technology

It effectively reduces interference in electrical connectors when transmitting high-speed signals, optimizes signal transmission quality, and meets the special needs of electronic devices.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides an electric connector, one side of the electric connector is an electric connector main side, the electric connector comprises a main side electric connector sub-component, a main side conductive terminal group, a main side insulation terminal seat and a main side conductive metal body, the grounding conductive terminals can be electrically connected with the conductive metal body so as to transmit shielding signals such as grounding signals, and an electrical shielding environment can be provided for signal transmission of the non-grounding conductive terminals, so that interference of the electric connector during transmission of high-speed signals can be effectively reduced, and the electric connector is prevented from being damaged. Therefore, the transmission quality of the electric connector for high-speed signals is optimized, and the special requirements and development of electronic equipment are met.
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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 degree of interference when transmitting high-speed signals. BACKGROUND

[0002] In recent years, electrical connectors are widely used in various electronic devices to transmit signals through a plurality of conductive terminals on the electrical connector. However, as the special needs and development of electronic devices, the plurality of conductive terminals of the electrical connector can also have the need to transmit high-speed signals. At present, the electrical connector is easily interfered when transmitting high-speed signals (the interference is, for example, electromagnetic interference from the external environment, or crosstalk interference between the plurality of conductive terminals of the electrical connector), and the high-speed signals transmitted by the electrical connector are easily attenuated by interference.

[0003] From the above, how to solve the problem that the electrical connector is easily interfered when transmitting high-speed signals is a problem that people in the field are eager to solve. SUMMARY

[0004] In view of the aforementioned prior art disadvantages, the present application provides an electrical connector, one side of which is a main side of the electrical connector, the electrical connector comprising: a main side electrical connector sub-assembly, the main side electrical connector sub-assembly being located at the main side of the electrical connector, and the main side electrical connector sub-assembly comprising: a main side electrically conductive terminal set, the main side electrically conductive terminal set comprising a main side non-ground electrically conductive terminal and a main side ground electrically conductive terminal, the main side non-ground electrically conductive terminal comprising a main side non-ground electrically conductive terminal pin, the main side ground electrically conductive terminal comprising a first main side ground electrically conductive terminal pin, a second main side ground electrically conductive terminal pin, a main side ground electrically conductive terminal overlap structure, and a main side ground electrically conductive terminal jumper, the main side ground electrically conductive terminal jumper connecting the first main side ground electrically conductive terminal pin and the second main side ground electrically conductive terminal pin; a main side insulative terminal block, the main side insulative terminal block comprising a main side insulative terminal block overlap space, wherein the main side insulative terminal block engages the main side non-ground electrically conductive terminal and the main side ground electrically conductive terminal respectively, such that the first main side ground electrically conductive terminal pin and the second main side ground electrically conductive terminal pin are located on two sides of the main side non-ground electrically conductive terminal pin, and such that the main side ground electrically conductive terminal jumper crosses over the main side non-ground electrically conductive terminal pin, and such that the main side ground electrically conductive terminal overlap structure enters the main side insulative terminal block overlap space; and a main side electrically conductive metal body, the main side electrically conductive metal body comprising a main side electrically conductive metal body shielding structure and a main side electrically conductive metal body overlap structure, the main side electrically conductive metal body engaging the main side insulative terminal block, such that the main side electrically conductive metal body shielding structure extends around the main side non-ground electrically conductive terminal, and such that the main side electrically conductive metal body overlap structure enters the main side insulative terminal block overlap space to overlap the main side ground electrically conductive terminal overlap structure, such that the main side ground electrically conductive terminal is electrically connected to the main side electrically conductive metal body, such that the first main side ground electrically conductive terminal pin and the second main side ground electrically conductive terminal pin are capable of providing shielding on two sides of the main side non-ground electrically conductive terminal pin, and such that the main side electrically conductive metal body shielding structure is capable of providing shielding around the main side non-ground electrically conductive terminal.

[0005] Preferably, in the electrical connector of the present application, the main side ground electrically conductive terminal jumper comprises a main side ground electrically conductive terminal jumper shielding structure, the main side ground electrically conductive terminal jumper shielding structure being capable of extending in front of the main side non-ground electrically conductive terminal, such that the main side ground electrically conductive terminal jumper shielding structure is capable of providing shielding in front of the main side non-ground electrically conductive terminal.

[0006] Preferably, in the electrical connector of this application, the main-side grounding conductive terminal overlap structure includes a first main-side grounding conductive terminal overlap substructure and a second main-side grounding conductive terminal overlap substructure, and the main-side conductive metal body overlap structure includes a first main-side conductive metal body overlap substructure and a second main-side conductive metal body overlap structure, wherein the first main-side grounding conductive terminal overlap substructure and the second main-side grounding conductive terminal overlap substructure are respectively disposed on the first main-side grounding conductive terminal pin and the second main-side grounding conductive terminal pin, and the first main-side grounding conductive terminal overlap substructure and the second main-side grounding conductive terminal overlap substructure respectively overlap the first main-side conductive metal body overlap structure and the second main-side conductive metal body overlap structure.

[0007] Preferably, in the electrical connector of this application, the first main-side grounding conductive terminal overlap structure and the second main-side grounding conductive terminal overlap structure are pin structures, while the first main-side conductive metal body overlap structure and the second main-side conductive metal body overlap structure are socket structures.

[0008] Preferably, in the electrical connector of this application, the main-side conductive metal body overlap structure is a raised structure, and the main-side grounding conductive terminal overlap structure is an overlap foot structure.

[0009] Preferably, in the electrical connector of the present application, the other side of the electrical connector is a secondary side of the electrical connector, the electrical connector further comprises: a primary side electrical connector sub-assembly, the secondary side electrical connector sub-assembly is located at the secondary side of the electrical connector, and the secondary side electrical connector sub-assembly comprises: a primary side set of conductive terminals, the primary side set of conductive terminals comprises a primary side non-ground conductive terminal and a primary side ground conductive terminal, the primary side non-ground conductive terminal comprises a primary side non-ground conductive terminal pin, the primary side ground conductive terminal comprises a first primary side ground conductive terminal pin, a second primary side ground conductive terminal pin, a primary side ground conductive terminal bridging structure, and a primary side ground conductive terminal jumper, the primary side ground conductive terminal jumper connects the first primary side ground conductive terminal pin and the second primary side ground conductive terminal pin; a primary side insulating terminal block, the primary side insulating terminal block comprises a primary side insulating terminal block bridging space, wherein the primary side insulating terminal block engages the primary side non-ground conductive terminal and the primary side ground conductive terminal respectively, so that the first primary side ground conductive terminal pin and the second primary side ground conductive terminal pin are located on both sides of the primary side non-ground conductive terminal pin, and the primary side ground conductive terminal jumper crosses the primary side non-ground conductive terminal pin, and the primary side ground conductive terminal bridging structure enters the primary side insulating terminal block bridging space; and a primary side conductive metal body, the primary side conductive metal body comprises a primary side conductive metal body shielding structure and a primary side conductive metal body bridging structure, the primary side conductive metal body engages the primary side insulating terminal block, so that the primary side conductive metal body shielding structure extends around the primary side non-ground conductive terminal, and the primary side conductive metal body bridging structure enters the primary side insulating terminal block bridging space to bridge the primary side ground conductive terminal bridging structure, so that the primary side ground conductive terminal electrically connects the primary side conductive metal body, so that the first primary side ground conductive terminal pin and the second primary side ground conductive terminal pin can provide shielding on both sides of the primary side non-ground conductive terminal pin, and the primary side conductive metal body shielding structure can provide shielding around the primary side non-ground conductive terminal.

[0010] Preferably, in the electrical connector of the present application, the primary side ground conductive terminal jumper comprises a primary side ground conductive terminal jumper shielding structure, the primary side ground conductive terminal jumper shielding structure can extend in front of the primary side non-ground conductive terminal, so that the primary side ground conductive terminal jumper shielding structure can provide shielding in front of the primary side non-ground conductive terminal.

[0011] Preferably, in the electrical connector of the present application, the insulating assembly core assembles the primary side electrical connector sub-member and the secondary side electrical connector sub-member, so that the primary side conductive metal body abuts the secondary side conductive metal body in the electrical connector assembly, and the primary side conductive metal body electrically connects the secondary side conductive metal body, so that the primary side conductive metal body electrically connects the secondary side conductive metal body, and shielding can be provided between the primary side non-grounded conductive terminal pin and the secondary side non-grounded conductive terminal pin.

[0012] Preferably, in the electrical connector of the present application, in the electrical connector assembly, the primary side grounded conductive terminal cross-body shielding structure abuts the secondary side grounded conductive terminal cross-body shielding structure, so that the primary side grounded conductive terminal cross-body shielding structure electrically connects the secondary side grounded conductive terminal cross-body shielding structure, so that the primary side grounded conductive terminal cross-body shielding structure electrically connects the secondary side grounded conductive terminal cross-body shielding structure, and shielding can be provided in front of the primary side non-grounded conductive terminal and the secondary side non-grounded conductive terminal.

[0013] Preferably, in the electrical connector of the present application, the secondary side grounded conductive terminal lapping structure includes a first secondary side grounded conductive terminal lapping sub-structure and a second secondary side grounded conductive terminal lapping sub-structure, and the secondary side conductive metal body lapping structure includes a first secondary side conductive metal body lapping sub-structure and a second secondary side conductive metal body lapping sub-structure, wherein the first secondary side grounded conductive terminal lapping sub-structure and the second secondary side grounded conductive terminal lapping sub-structure are respectively arranged on the first secondary side grounded conductive terminal pin and the second secondary side grounded conductive terminal pin, and the first secondary side grounded conductive terminal lapping sub-structure and the second secondary side grounded conductive terminal lapping sub-structure lap the first secondary side conductive metal body lapping sub-structure and the second secondary side conductive metal body lapping sub-structure respectively.

[0014] Preferably, in the electrical connector of the present application, the first secondary side grounded conductive terminal lapping sub-structure and the second secondary side grounded conductive terminal lapping sub-structure are pin structures, and the first secondary side conductive metal body lapping sub-structure and the second secondary side conductive metal body lapping sub-structure are socket structures.

[0015] Preferably, in the electrical connector of the present application, the secondary side conductive metal body lapping structure is a relief structure, and the secondary side grounded conductive terminal lapping structure is a lapping pin structure.

[0016] Compared with the prior art, the electric connector provided by the application comprises a non-ground conductive terminal, a ground conductive terminal and a conductive metal body, wherein the ground conductive terminal can be electrically connected with the conductive metal body to transmit a shielding signal such as a ground signal, and can provide an electrically shielding environment for signal transmission of the non-ground conductive terminal, so that the electric connector can effectively reduce interference when transmitting high-speed signals, thereby optimizing the transmission quality of the electric connector for high-speed signals to meet the special needs and development of electronic devices. BRIEF DESCRIPTION OF DRAWINGS

[0017] The features and other advantages of the application will be more clearly understood from the following description of the application, taken in conjunction with the accompanying drawings.

[0018] Figure 1 A perspective view showing a first view of an embodiment of the electric connector of the application.

[0019] Figure 2 A perspective view showing a second view of an embodiment of the electric connector of the application.

[0020] Figure 3 A top view showing an embodiment of the electric connector of the application.

[0021] Figure 4 A perspective view showing a first view of an embodiment of the electric connector of the application. Figure 3 A sectional view showing a part of the electric connector shown in the figure, taken along the line segment AA.

[0022] Figure 5 A perspective view showing a second view of an embodiment of the electric connector of the application. Figure 3 A sectional view showing a part of the electric connector shown in the figure, taken along the line segment BB.

[0023] Figure 6 A perspective view showing a first view of an embodiment of the electric connector of the application.

[0024] Figure 7 A perspective view showing a second view of an embodiment of the electric connector of the application.

[0025] Figure 8 A perspective view showing a first view of an embodiment of the electric connector of the application.

[0026] Figure 9 A perspective view showing a second view of an embodiment of the electric connector of the application.

[0027] Figure 10 A perspective view showing a first view of an embodiment of the electric connector of the application.

[0028] Figure 11Fig. 2 shows a perspective view of the electrical connector of the present application from a second viewing angle in an embodiment.

[0029] Figure 12 Fig. 1 shows a perspective view of the electrical connector of the present application from a first viewing angle in an embodiment.

[0030] Figure 13 Fig. 2 shows a perspective view of the electrical connector of the present application from a second viewing angle in an embodiment.

[0031] Figure 14 Fig. 3 shows a perspective view of a partial component of the electrical connector of the present application in an embodiment.

[0032] Element Number Description

[0033] 1 electrical connector

[0034] L1 main side of electrical connector

[0035] 11 main side electrical connector subcomponent

[0036] 111 main side set of conductive terminals

[0037] 1111 main side non-grounded conductive terminal

[0038] 11111 main side non-grounded conductive terminal pin

[0039] 1112 main side grounded conductive terminal

[0040] 11121 first main side grounded conductive terminal pin

[0041] 11122 second main side grounded conductive terminal pin

[0042] 11123 main side grounded conductive terminal lapping structure

[0043] 111231 first main side grounded conductive terminal lapping substructure 111232 second main side grounded conductive terminal lapping substructure 11124 main side grounded conductive terminal jumper

[0044] 111241 main side grounded conductive terminal jumper shield structure 112 main side insulative terminal housing

[0045] S1 main side insulative terminal housing lapping space

[0046] 113 main side conductive metal body

[0047] 1131 main side conductive metal body shield structure

[0048] 1132 main side conductive metal body lapping structure

[0049] 11321 first main side conductive metal body lapping substructure 11322 second main side conductive metal body lapping substructure L2 secondary side electrical connector

[0050] 12 secondary side electrical connector subcomponent

[0051] 121 secondary side conductive terminal set

[0052] 1211 secondary side non-grounded conductive terminal

[0053] 12111 secondary side non-grounded conductive terminal pin

[0054] 1212 secondary side grounded conductive terminal

[0055] 12121 first secondary side grounded conductive terminal pin

[0056] 12122 second secondary side grounded conductive terminal pin

[0057] 12123 secondary side grounded conductive terminal lapping structure

[0058] 121231 first secondary side grounded conductive terminal lapping substructure

[0059] 121232 second secondary side grounded conductive terminal lapping substructure

[0060] 12124 secondary side grounded conductive terminal jumper

[0061] 121241 secondary side grounded conductive terminal jumper shield structure

[0062] 122 secondary side insulative terminal block

[0063] S2 secondary side insulative terminal block lapping space

[0064] 123 secondary side conductive metal body

[0065] 1231 secondary side conductive metal body shield structure

[0066] 1232 secondary side conductive metal body lapping structure

[0067] 12321 first secondary side conductive metal body lapping substructure

[0068] 12322 second secondary side conductive metal body lapping substructure

[0069] 13 insulative assembly core

[0070] A electrical connector assembly DETAILED DESCRIPTION

[0071] The following detailed description together with the accompanying drawings will provide those skilled in the art with further understanding of the nature and advantages of the present application. Although specific implementations are described herein, the intended scope of the application is not limited to these descriptions. Rather, many modifications, variations, and alternatives to the embodiments described herein will become apparent to those skilled in the art from this disclosure. The descriptions herein are made in connection with the preferred embodiments for purposes of illustration only and not for purposes of limitation. The dimensions and other physical characteristics related to the embodiments disclosed herein are not necessarily drawn to scale, and are presented solely for purposes of illustration and not limitation.

[0072] For the embodiments of the present application disclosed herein, please refer to the accompanying drawings. Figures 1 to 14 .

[0073] In the above embodiments, an electrical connector 1 capable of being disposed in an electronic device is provided. In the electronic device, the electrical connector 1 is capable of providing transmission signals. In addition, two sides of the electrical connector 1 can be defined as an electrical connector main side L1 and an electrical connector secondary side L2, respectively.

[0074] In the embodiments shown in Figures 1 to 14 , the electrical connector 1 includes a main side electrical connector sub-member 11, a secondary side electrical connector sub-member 12, and an insulating assembly core 13. The main side electrical connector sub-member 11 and the secondary side electrical connector sub-member 12 are respectively located on the electrical connector main side L1 and the electrical connector secondary side L2. In addition, the insulating assembly core 13 is made of an insulating material and is capable of assembling the main side electrical connector sub-member 11 and the secondary side electrical connector sub-member 12 to provide positioning for the main side electrical connector sub-member 11 and the secondary side electrical connector sub-member 12, respectively, so that the main side electrical connector sub-member 11 and the secondary side electrical connector sub-member 12 can be assembled into an electrical connector assembly product A.

[0075] Regarding the main side electrical connector sub-member 11, in the above embodiments, the main side electrical connector sub-member 11 includes a main side conductive terminal group 111, a main side insulating terminal seat 112, and a main side conductive metal body 113. For the main side conductive terminal group 111, the main side conductive terminal group 111 includes a main side non-ground conductive terminal 1111 and a main side ground conductive terminal 1112.

[0076] It should be noted that the main side non-ground conductive terminal 1111 is capable of providing transmission of non-ground signals, such as differential signals, and the number of main side non-ground conductive terminals 1111 is not limited to one. The main side ground conductive terminal 1112 is capable of providing transmission of ground signals, and the number of main side ground conductive terminals 1112 is not limited to one.

[0077] In the above embodiment, the main side non-ground conductive terminal 1111 comprises a main side non-ground conductive terminal pin 11111. The main side ground conductive terminal 1112 comprises a first main side ground conductive terminal pin 11121, a second main side ground conductive terminal pin 11122, a main side ground conductive terminal overlap structure 11123, and a main side ground conductive terminal jumper 11124. It should be noted that the number of the first main side ground conductive terminal pin 11121 and the second main side ground conductive terminal pin 11122 is not limited to one.

[0078] As shown in Figures 6 to 8 , the main side ground conductive terminal jumper 11124 connects the first main side ground conductive terminal pin 11121 and the second main side ground conductive terminal pin 11122, so that the first main side ground conductive terminal pin 11121 and the second main side ground conductive terminal pin 11122 are electrically connected and can transmit shielding signals such as ground signals.

[0079] For the main side insulating terminal seat 112, the main side insulating terminal seat 112 can be made of insulating material and comprises a main side insulating terminal seat overlap space S1. As shown in Figure 4 , the main side insulating terminal seat 112 engages the main side non-ground conductive terminal 1111 and the main side ground conductive terminal 1112 respectively, and can provide positioning for the main side non-ground conductive terminal 1111 and the main side ground conductive terminal 1112 respectively, so that the first main side ground conductive terminal pin 11121 and the second main side ground conductive terminal pin 11122 are located on both sides of the main side non-ground conductive terminal pin 11111, i.e., the main side non-ground conductive terminal pin 11111 is located between the first main side ground conductive terminal pin 11121 and the second main side ground conductive terminal pin 11122, and the main side ground conductive terminal jumper 11124 crosses the main side non-ground conductive terminal pin 11111, and the main side ground conductive terminal overlap structure 11123 enters the main side insulating terminal seat overlap space S1.

[0080] In Figures 6 to 8In the shown embodiment, the main side ground conductive terminal cross body 11124 includes a main side ground conductive terminal cross body shielding structure 111241, which is capable of extending in front of the main side non-ground conductive terminal 1111 to transmit a shielding signal, for example, a ground signal, so as to provide shielding in front of the main side non-ground conductive terminal 1111 to provide an electrically shielded environment for signal transmission of the main side non-ground conductive terminal 1111, thereby reducing interference to the electric connector 1 when transmitting high-speed signals, thereby optimizing the transmission quality of the electric connector 1 for high-speed signals to meet the special needs and development of electronic devices.

[0081] For the main side conductive metal body 113, the main side conductive metal body 113 includes a main side conductive metal body shielding structure 1131 and a main side conductive metal body lapping structure 1132. In the above embodiment, the main side conductive metal body 113 engages the main side insulating terminal seat 112, so that the main side conductive metal body shielding structure 1131 extends around the main side non-ground conductive terminal 1111, and the main side conductive metal body lapping structure 1132 enters the main side insulating terminal seat lapping space S1 to lap the main side ground conductive terminal lapping structure 11123, so that the main side ground conductive terminal 1112 is electrically connected to the main side conductive metal body 113 to transmit a shielding signal, for example, a ground signal, so that the first main side ground conductive terminal pin 11121 and the second main side ground conductive terminal pin 11122 can provide shielding on both sides of the main side non-ground conductive terminal pin 11111, and the main side conductive metal body shielding structure 1131 can provide shielding around the main side non-ground conductive terminal 1111 to provide an electrically shielded environment for signal transmission of the main side non-ground conductive terminal 1111, thereby reducing interference to the electric connector 1 when transmitting high-speed signals, thereby optimizing the transmission quality of the electric connector 1 for high-speed signals to meet the special needs and development of electronic devices.

[0082] In the above embodiment, the main side conductive metal body lapping structure 1132 can be selected as a relief structure, and correspondingly, the main side ground conductive terminal lapping structure 11123 is a lapping pin structure.

[0083] In Figure 4 , Figures 7 to 10 and Figure 13In the illustrated embodiment, the first and second main side ground conductive terminal lapping sub-structures 111231, 111232 are pin structures, and the first and second main side conductive metal body lapping sub-structures 11321, 11322 are hole structures.

[0084] In the above embodiment, the first and second main side ground conductive terminal lapping sub-structures 111231, 111232 are pin structures, and the first and second main side conductive metal body lapping sub-structures 11321, 11322 are hole structures.

[0085] With respect to the secondary side electrical connector sub-member 12, the secondary side electrical connector sub-member 12 includes a first side conductive terminal set 121, a first side insulating terminal seat 122, and a first side conductive metal body 123. With respect to the first side conductive terminal set 121, the first side conductive terminal set 121 includes a first side non-ground conductive terminal 1211 and a first side ground conductive terminal 1212.

[0086] It should be noted that the first side non-ground conductive terminal 1211 can provide transmission of non-ground signals, such as differential signals, and the number of first side non-ground conductive terminals 1211 is not limited to one. The first side ground conductive terminal 1212 can provide transmission of ground signals, and the number of first side ground conductive terminals 1212 is not limited to one.

[0087] In the above embodiment, the first side non-ground conductive terminal 1211 includes a first side non-ground conductive terminal pin 12111, the first side ground conductive terminal 1212 includes a first side ground conductive terminal pin 12121, a second side ground conductive terminal pin 12122, a first side ground conductive terminal lapping structure 12123, and a first side ground conductive terminal cross body 12124. It should be noted that the number of first side ground conductive terminal pins 12121, 12122 is not limited to one.

[0088] As Figures 6 to 7 and Figure 9 shown, the secondary side ground conductive terminal jumper 12124 connects the first secondary side ground conductive terminal pin 12121 and the second secondary side ground conductive terminal pin 12122, so that the first secondary side ground conductive terminal pin 12121 and the second secondary side ground conductive terminal pin 12122 are electrically connected and can transmit shielding signals such as ground signals.

[0089] For the secondary side insulation terminal seat 122, the secondary side insulation terminal seat 122 can be made of insulating material and includes a first side insulation terminal seat lap space S2. As Figure 4 shown, the secondary side insulation terminal seat 122 engages the secondary side non-ground conductive terminal 1211 and the secondary side ground conductive terminal 1212, respectively, and can provide positioning for the secondary side non-ground conductive terminal 1211 and the secondary side ground conductive terminal 1212, respectively, so that the first secondary side ground conductive terminal pin 12121 and the second secondary side ground conductive terminal pin 12122 are located on both sides of the secondary side non-ground conductive terminal pin 12111, i.e., the secondary side non-ground conductive terminal pin 12111 is located between the first secondary side ground conductive terminal pin 12121 and the second secondary side ground conductive terminal pin 12122, and the secondary side ground conductive terminal jumper 12124 crosses the secondary side non-ground conductive terminal pin 12111, and the secondary side ground conductive terminal lap structure 12123 enters the secondary side insulation terminal seat lap space S2.

[0090] In the embodiments shown in Figures 6 to 7 and Figure 9 , the secondary side ground conductive terminal jumper 12124 includes a secondary side ground conductive terminal jumper shielding structure 121241, which can extend in front of the secondary side non-ground conductive terminal 1211 to transmit shielding signals such as ground signals, so that the secondary side ground conductive terminal jumper shielding structure 121241 can provide shielding in front of the secondary side non-ground conductive terminal 1211 to provide an electrically shielded environment for signal transmission of the secondary side non-ground conductive terminal 1211, thereby reducing interference of the electrical connector 1 when transmitting high-speed signals, thereby optimizing the transmission quality of the electrical connector 1 for high-speed signals to meet the special needs and development of electronic devices.

[0091] The secondary side conductive metal body 123 includes a secondary side conductive metal body shielding structure 1231 and a secondary side conductive metal body lapping structure 1232. In the above embodiment, the secondary side conductive metal body 123 is connected to the secondary side insulating terminal holder 122, the secondary side conductive metal body shielding structure 1231 extends around the secondary side non-ground conductive terminal 1211, and the secondary side conductive metal body lapping structure 1232 enters the secondary side insulating terminal holder lapping space S2 to lap the secondary side ground conductive terminal lapping structure 12123, so that the secondary side ground conductive terminal 1212 is electrically connected to the secondary side conductive metal body 123 to transmit a shielding signal such as a ground signal, so that the first secondary side ground conductive terminal pin 12121 and the second secondary side ground conductive terminal pin 12122 can provide shielding on both sides of the secondary side non-ground conductive terminal pin 12111, and the secondary side conductive metal body shielding structure 1231 can provide shielding around the secondary side non-ground conductive terminal 1211 to provide an electrically shielded environment for signal transmission of the secondary side non-ground conductive terminal 1211, thereby reducing interference when the electrical connector 1 transmits high-speed signals, thereby optimizing the transmission quality of the electrical connector 1 for high-speed signals to meet the special needs and development of electronic devices.

[0092] In the above embodiment, the secondary side conductive metal body lapping structure 1232 can be selected as a relief structure, and correspondingly, the secondary side ground conductive terminal lapping structure 12123 is a lapping pin structure.

[0093] In the above embodiment, the secondary side conductive metal body lapping structure 1232 can be selected as a relief structure, and correspondingly, the secondary side ground conductive terminal lapping structure 12123 is a lapping pin structure. Figure 4 、 Figure 6 、 Figure 9 and Figures 11 to 12 In the above embodiment, the secondary side ground conductive terminal lapping structure 12123 includes a first secondary side ground conductive terminal lapping substructure 121231 and a second secondary side ground conductive terminal lapping substructure 121232, and the secondary side conductive metal body lapping structure 1232 includes a first secondary side conductive metal body lapping substructure 12321 and a second secondary side conductive metal body lapping substructure 12322, wherein the first secondary side ground conductive terminal lapping substructure 121231 and the second secondary side ground conductive terminal lapping substructure 121232 are respectively arranged on the first secondary side ground conductive terminal pin 12121 and the second secondary side ground conductive terminal pin 12122, and the first secondary side ground conductive terminal lapping substructure 121231 and the second secondary side ground conductive terminal lapping substructure 121232 lap the first secondary side conductive metal body lapping substructure 12321 and the second secondary side conductive metal body lapping substructure 12322, respectively.

[0094] In the above embodiments, the first secondary side ground conductive terminal lapping substructure 121231 and the second secondary side ground conductive terminal lapping substructure 121232 are pin structures, and the first secondary side conductive metal body lapping substructure 12321 and the second secondary side conductive metal body lapping substructure 12322 are hole structures.

[0095] It should be noted that in the electrical connector assembly A, the primary side conductive metal body 113 can abut the secondary side conductive metal body 123, so that the primary side conductive metal body 113 is electrically connected to the secondary side conductive metal body 123 to transmit shielding signals such as ground signals, and can provide shielding between the primary side non-ground conductive terminal pin 11111 and the secondary side non-ground conductive terminal pin 12111 to provide an electrically shielded environment for signal transmission of the primary side non-ground conductive terminal pin 11111 and the secondary side non-ground conductive terminal pin 12111, thereby reducing interference of the electrical connector 1 when transmitting high-speed signals, thereby optimizing the transmission quality of the electrical connector 1 for high-speed signals to meet the special needs and development of electronic devices.

[0096] In addition, in the electrical connector assembly A, the primary side ground conductive terminal bridging body shielding structure 111241 abuts the secondary side ground conductive terminal bridging body shielding structure 121241, so that the primary side ground conductive terminal bridging body shielding structure 111241 is electrically connected to the secondary side ground conductive terminal bridging body shielding structure 121241 to transmit shielding signals such as ground signals, so that the primary side ground conductive terminal bridging body shielding structure 111241 is electrically connected to the secondary side ground conductive terminal bridging body shielding structure 121241, and shielding is provided in front of the primary side non-ground conductive terminal 1111 and the secondary side non-ground conductive terminal 1211 to provide an electrically shielded environment for signal transmission of the primary side non-ground conductive terminal pin 11111 and the secondary side non-ground conductive terminal pin 12111, thereby reducing interference of the electrical connector 1 when transmitting high-speed signals, thereby optimizing the transmission quality of the electrical connector 1 for high-speed signals to meet the special needs and development of electronic devices.

[0097] It should be noted that in the embodiments of the present application, the aforementioned partial components can also be omitted, for example, the electrical connector can be selected to include only a main side electrical connector subcomponent, and the main side electrical connector subcomponent includes a main side conductive terminal group, a main side insulating terminal seat, and a main side conductive metal body. The main side conductive terminal group includes a main side non-ground conductive terminal and a main side ground conductive terminal. The main side non-ground conductive terminal includes a main side non-ground conductive terminal pin, the main side ground conductive terminal includes a first main side ground conductive terminal pin, a second main side ground conductive terminal pin, a main side ground conductive terminal overlap structure, and a main side ground conductive terminal jumper, and the main side ground conductive terminal jumper connects the first main side ground conductive terminal pin and the second main side ground conductive terminal pin. The main side insulating terminal seat includes a main side insulating terminal seat overlap space, wherein the main side insulating terminal seat engages the main side non-ground conductive terminal and the main side ground conductive terminal respectively, so that the first main side ground conductive terminal pin and the second main side ground conductive terminal pin are located on both sides of the main side non-ground conductive terminal pin, and the main side ground conductive terminal jumper crosses the main side non-ground conductive terminal pin, and the main side ground conductive terminal overlap structure enters the main side insulating terminal seat overlap space. The main side conductive metal body includes a main side conductive metal body shielding structure and a main side conductive metal body overlap structure, and the main side conductive metal body engages the main side insulating terminal seat, so that the main side conductive metal body shielding structure extends around the main side non-ground conductive terminal, and the main side conductive metal body overlap structure enters the main side insulating terminal seat overlap space to overlap the main side ground conductive terminal overlap structure, so that the main side ground conductive terminal is electrically connected to the main side conductive metal body, so that the first main side ground conductive terminal pin and the second main side ground conductive terminal pin can provide shielding on both sides of the main side non-ground conductive terminal pin, and the main side conductive metal body shielding structure can provide shielding around the main side non-ground conductive terminal.

[0098] In summary, the electrical connector of the present application includes a non-ground conductive terminal, a ground conductive terminal, and a conductive metal body, wherein the ground conductive terminal can be electrically connected to the conductive metal body to transmit shielding signals such as ground signals, and can provide an electrically shielded environment for signal transmission of the non-ground conductive terminal. In this way, the electrical connector can effectively reduce interference when transmitting high-speed signals, thereby optimizing the transmission quality of the electrical connector for high-speed signals to meet the special needs and development of electronic devices.

[0099] The above embodiments are only illustrative of the principles and effects of the present application, and are not intended to limit the present application. Any person skilled in the art can modify and change the above embodiments without departing from the spirit and scope of the present application. Therefore, the scope of protection of the present application should be as stated in the claims of the present application.

Claims

1. An electrical connector, characterized by, The electric connector has a main side of the electric connector, and the electric connector comprises: a main side electric connector sub-member located at the main side of the electric connector, and the main side electric connector sub-member comprises: a main side electrically-conductive terminal set comprising a main side non-ground electrically-conductive terminal and a main side ground electrically-conductive terminal, the main side non-ground electrically-conductive terminal comprising a main side non-ground electrically-conductive terminal pin, the main side ground electrically-conductive terminal comprising a first main side ground electrically-conductive terminal pin, a second main side ground electrically-conductive terminal pin, a main side ground electrically-conductive terminal overlap structure, and a main side ground electrically-conductive terminal jumper, the main side ground electrically-conductive terminal jumper connecting the first main side ground electrically-conductive terminal pin and the second main side ground electrically-conductive terminal pin; a main side insulating terminal holder comprising a main side insulating terminal holder overlap space, wherein the main side insulating terminal holder engages the main side non-ground electrically-conductive terminal and the main side ground electrically-conductive terminal respectively, so that the first main side ground electrically-conductive terminal pin and the second main side ground electrically-conductive terminal pin are located at two sides of the main side non-ground electrically-conductive terminal pin, and the main side ground electrically-conductive terminal jumper crosses the main side non-ground electrically-conductive terminal pin, and the main side ground electrically-conductive terminal overlap structure enters the main side insulating terminal holder overlap space; and a main side electrically-conductive metal body comprising a main side electrically-conductive metal body shielding structure and a main side electrically-conductive metal body overlap structure, the main side electrically-conductive metal body engaging the main side insulating terminal holder, so that the main side electrically-conductive metal body shielding structure extends around the main side non-ground electrically-conductive terminal, and the main side electrically-conductive metal body overlap structure enters the main side insulating terminal holder overlap space to overlap the main side ground electrically-conductive terminal overlap structure, so that the main side ground electrically-conductive terminal electrically connects the main side electrically-conductive metal body, so that the first main side ground electrically-conductive terminal pin and the second main side ground electrically-conductive terminal pin can provide shielding at two sides of the main side non-ground electrically-conductive terminal pin, and the main side electrically-conductive metal body shielding structure can provide shielding around the main side non-ground electrically-conductive terminal.

2. The electrical connector of claim 1, wherein, The main side ground electrically-conductive terminal jumper comprises a main side ground electrically-conductive terminal jumper shielding structure, which can extend in front of the main side non-ground electrically-conductive terminal, so that the main side ground electrically-conductive terminal jumper shielding structure can provide shielding in front of the main side non-ground electrically-conductive terminal.

3. The electrical connector of claim 1, wherein, The main side grounding conductive terminal lapping structure includes a first main side grounding conductive terminal lapping substructure and a second main side grounding conductive terminal lapping substructure, and the main side conductive metal body lapping structure includes a first main side conductive metal body lapping substructure and a second main side conductive metal body lapping substructure, wherein the first main side grounding conductive terminal lapping substructure and the second main side grounding conductive terminal lapping substructure are respectively arranged on the first main side grounding conductive terminal pin and the second main side grounding conductive terminal pin, and the first main side grounding conductive terminal lapping substructure and the second main side grounding conductive terminal lapping substructure lap the first main side conductive metal body lapping substructure and the second main side conductive metal body lapping substructure respectively.

4. The electrical connector of claim 3, wherein, The first main side grounding conductive terminal lapping substructure and the second main side grounding conductive terminal lapping substructure are pin structures, and the first main side conductive metal body lapping substructure and the second main side conductive metal body lapping substructure are jack structures.

5. The electrical connector of claim 1, wherein, The main side conductive metal body lapping structure is a relief structure, and the main side grounding conductive terminal lapping structure is a lapping pin structure.

6. The electrical connector of claim 2, wherein, The other side of the electrical connector is a secondary side of the electrical connector, and the electrical connector further includes: a primary side electrical connector submember, the secondary side electrical connector submember being located on the secondary side of the electrical connector, and the secondary side electrical connector submember including: a primary side conductive terminal group, the secondary side conductive terminal group including a primary side non-grounding conductive terminal and a primary side grounding conductive terminal, the primary side non-grounding conductive terminal including a primary side non-grounding conductive terminal pin, the primary side grounding conductive terminal including a first primary side grounding conductive terminal pin, a second primary side grounding conductive terminal pin, a primary side grounding conductive terminal lapping structure, and a primary side grounding conductive terminal cross body, the primary side grounding conductive terminal cross body connecting the first primary side grounding conductive terminal pin and the second primary side grounding conductive terminal pin; a primary side insulating terminal seat, the primary side insulating terminal seat including a primary side insulating terminal seat lapping space, wherein the primary side insulating terminal seat engages the primary side non-grounding conductive terminal and the primary side grounding conductive terminal respectively, so that the first primary side grounding conductive terminal pin and the second primary side grounding conductive terminal pin are located on both sides of the primary side non-grounding conductive terminal pin, and the primary side grounding conductive terminal cross body crosses the primary side non-grounding conductive terminal pin, and the primary side grounding conductive terminal lapping structure enters the primary side insulating terminal seat lapping space; and a primary side insulating terminal seat, the primary side insulating terminal seat including a primary side insulating terminal seat lapping space, wherein the primary side insulating terminal seat engages the primary side non-grounding conductive terminal and the primary side grounding conductive terminal respectively, so that the first primary side grounding conductive terminal pin and the second primary side grounding conductive terminal pin are located on both sides of the primary side non-grounding conductive terminal pin, and the primary side grounding conductive terminal cross body crosses the primary side non-grounding conductive terminal pin, and the primary side grounding conductive terminal lapping structure enters the primary side insulating terminal seat lapping space; and The primary side conductive metal body includes a primary side conductive metal body shielding structure and a primary side conductive metal body lapping structure, the primary side conductive metal body engages the secondary side insulating terminal holder, the primary side conductive metal body shielding structure extends around the secondary side non-grounded conductive terminal, and the primary side conductive metal body lapping structure enters the secondary side insulating terminal holder lapping space to lap the secondary side grounded conductive terminal lapping structure, so that the secondary side grounded conductive terminal is electrically connected to the primary side conductive metal body, the first secondary side grounded conductive terminal pin and the second secondary side grounded conductive terminal pin can provide shielding on both sides of the secondary side non-grounded conductive terminal pin, and the primary side conductive metal body shielding structure can provide shielding around the secondary side non-grounded conductive terminal.

7. The electrical connector of claim 6, wherein, The secondary side grounded conductive terminal cross body includes a secondary side grounded conductive terminal cross body shielding structure, which can extend in front of the secondary side non-grounded conductive terminal, so that the secondary side grounded conductive terminal cross body shielding structure can provide shielding in front of the secondary side non-grounded conductive terminal.

8. The electrical connector of claim 7, wherein, Further comprising an insulating assembly rubber core, the insulating assembly rubber core assembles the primary side electrical connector sub-component and the secondary side electrical connector sub-component, so that the primary side electrical connector sub-component and the secondary side electrical connector sub-component are assembled into an electrical connector assembly product, in the electrical connector assembly product, the primary side conductive metal body abuts the secondary side conductive metal body, the primary side conductive metal body is electrically connected to the secondary side conductive metal body, so that the primary side conductive metal body is electrically connected to the secondary side conductive metal body, and can provide shielding between the primary side non-grounded conductive terminal pin and the secondary side non-grounded conductive terminal pin.

9. The electrical connector of claim 8, wherein, In the electrical connector assembly product, the primary side grounded conductive terminal cross body shielding structure abuts the secondary side grounded conductive terminal cross body shielding structure, the primary side grounded conductive terminal cross body shielding structure is electrically connected to the secondary side grounded conductive terminal cross body shielding structure, so that the primary side grounded conductive terminal cross body shielding structure is electrically connected to the secondary side grounded conductive terminal cross body shielding structure, and can provide shielding in front of the primary side non-grounded conductive terminal and the secondary side non-grounded conductive terminal.

10. The electrical connector of claim 6, wherein, The secondary side grounded conductive terminal lapping structure includes a first secondary side grounded conductive terminal lapping sub-structure and a second secondary side grounded conductive terminal lapping sub-structure, the secondary side conductive metal body lapping structure includes a first secondary side conductive metal body lapping sub-structure and a second secondary side conductive metal body lapping sub-structure, wherein the first secondary side grounded conductive terminal lapping sub-structure and the second secondary side grounded conductive terminal lapping sub-structure are respectively arranged on the first secondary side grounded conductive terminal pin and the second secondary side grounded conductive terminal pin, and the first secondary side grounded conductive terminal lapping sub-structure and the second secondary side grounded conductive terminal lapping sub-structure lap the first secondary side conductive metal body lapping sub-structure and the second secondary side conductive metal body lapping sub-structure respectively.

11. The electrical connector of claim 10, wherein, The first secondary side ground conductive terminal lapping substructure and the second secondary side ground conductive terminal lapping substructure are pin structures, and the first secondary side conductive metal body lapping substructure and the second secondary side conductive metal body lapping substructure are jack structures.

12. The electrical connector of claim 6, wherein, The secondary side conductive metal body lapping structure is a relief structure, and the secondary side ground conductive terminal lapping structure is a lapping pin structure.