Electrical connector

By designing a conductive plastic carrier and a conductive plastic wall in the electrical connector to form a non-grounded terminal shielded wall, the interference problem of the electrical connector when transmitting high-speed signals is solved, and higher quality signal transmission is achieved.

WO2025146037A1PCT designated stage expired Publication Date: 2025-07-10DONGGUAN TANGYU ELECTRONICS +1
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
PCT/CN2024/144297
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-05
Filing Date
2024-12-31
Publication Date
2025-07-10

AI Technical Summary

Technical Problem

Electrical connectors are susceptible to interference when transmitting high-speed signals, including electromagnetic interference in the external environment and crosstalk interference between conductive terminals, resulting in signal attenuation.

Method used

An electrical connector is designed, using a conductive plastic carrier and a conductive plastic wall structure to form a non-grounded terminal shielding wall, providing a shielding wall with at least three-sided shielding signals, and connecting it with the grounded conductive terminal through a conductive connection to form a shielding structure with a U-shaped cross-section to reduce interference.

Benefits of technology

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

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN2024144297_10072025_PF_FP_ABST
    Figure CN2024144297_10072025_PF_FP_ABST
Patent Text Reader

Abstract

Provided in the present application is an electrical connector capable of providing, for at least three sides of a non-grounded conductive terminal, shielding walls capable of transmitting shielding signals. In this way, interference experienced by the electrical connector when transmitting high-speed signals can be effectively reduced, optimizing the quality of transmission of the high-speed signals by the electrical connector, so as to meet special requirements and development of electronic devices.
Need to check novelty before this filing date? Find Prior Art

Description

electrical connectors 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 Art

[0002] In recent years, electrical connectors have been widely used in various electronic devices to transmit signals through multiple conductive terminals on the electrical connectors. However, with the special needs and development of electronic devices, the multiple conductive terminals of the electrical connectors may also need to transmit high-speed signals. At present, electrical connectors are easily interfered with when transmitting high-speed signals (such as electromagnetic interference from the external environment or crosstalk interference coupled between the multiple conductive terminals of the electrical connector), which makes the high-speed signals transmitted by the electrical connector prone to interference attenuation.

[0003] As can be seen from the above, how to solve the problem that electrical connectors are susceptible to interference when transmitting high-speed signals is indeed a problem that people in the relevant technical field need to solve urgently. Summary of the Invention

[0004] In view of the shortcomings of the above-mentioned prior art, the present application provides an electrical connector, one side of the electrical connector is a main side of the electrical connector, and the electrical connector includes: a conductive plastic carrier, the conductive plastic carrier has a main side conductive plastic carrier body, a main side first conductive plastic wall structure and a main side second conductive plastic wall structure, the main side conductive plastic carrier body is electrically connected to the main side first conductive plastic wall structure and the main side second conductive plastic wall structure; a main side conductive terminal group, the main side conductive terminal group is located on the main side of the electrical connector, and has a main side first grounding conductive terminal, a main side second grounding conductive terminal and a main side non-grounding conductive terminal; and a main side insulating terminal seat, the main side insulating terminal seat is combined with the conductive plastic carrier to form a main side conductive terminal setting module, the main side conductive terminal setting module provides for setting the main side first grounding conductive terminal, the main side second grounding conductive terminal and the The main side non-grounded conductive terminal; in the main side conductive terminal setting module, the main side non-grounded conductive terminal is located between the main side first grounded conductive terminal and the main side second grounded conductive terminal; and the main side first conductive plastic wall structure and the main side second conductive plastic wall structure respectively abut the main side first grounded conductive terminal and the main side second grounded conductive terminal, so that the conductive plastic carrier is electrically connected to the main side first grounded conductive terminal and the main side second grounded conductive terminal, so that the main side conductive plastic carrier body, the main side first conductive plastic wall structure, the main side second conductive plastic wall structure, the main side first grounded conductive terminal and the main side second grounded conductive terminal constitute a main side non-grounded terminal shielding wall, the main side non-grounded terminal shielding wall has a U-shaped cross-section, so that the main side non-grounded terminal shielding wall can provide a shielding wall on at least three sides of the main side non-grounded conductive terminal.

[0005] Preferably, in the electrical connector of the present application, the front end of the electrical connector is an electrical connector overlapping front end, and the electrical connector also includes a main side front end conductive connector, the main side front end conductive connector extends at the electrical connector overlapping front end and crosses the main side non-grounded conductive terminal, and electrically connects the main side first grounding conductive terminal and the main side second grounding conductive terminal, so that the main side front end conductive connector can be electrically connected to the main side non-grounded terminal shielding wall, and provides electrical shielding for the main side non-grounded conductive terminal at the electrical connector overlapping front end, wherein the main side first grounding conductive terminal, the main side second grounding conductive terminal and the main side non-grounded conductive terminal respectively have a main side first grounding terminal front end overlapping structure, a main side second grounding terminal front end overlapping structure and a main side non-grounded terminal front end overlapping structure, and the main side first grounding terminal front end overlapping structure, the main side second grounding terminal front end overlapping structure and the main side non-grounded terminal front end overlapping structure are respectively located at the electrical connector overlapping front end.

[0006] Preferably, in the electrical connector of the present application, the main side front end conductive connector has a main side front end wall shielding structure, and the main side front end wall shielding structure provides a shielding wall for the main side non-grounded conductive terminal at the overlapping front end of the electrical connector.

[0007] Preferably, in the electrical connector of the present application, the main side front end conductive connector has a main side front end connector hollow structure, and the main side front end connector hollow structure overlaps the front end hollow of the electrical connector to provide impedance matching for the main side non-grounded conductive terminal.

[0008] Preferably, in the electrical connector of the present application, the primary-side conductive plastic carrier body extends at a side facing the primary-side non-grounded conductive terminal.

[0009] Preferably, in the electrical connector of the present application, the rear end of the electrical connector is a rear end of an electrical connector overlap, and the electrical connector also includes a main side rear end conductive connector, which extends at the rear end of the electrical connector overlap and crosses the main side non-grounded conductive terminal, and electrically connects the main side first grounded conductive terminal and the main side second grounded conductive terminal, so that the main side rear end conductive connector can be electrically connected to the main side non-grounded terminal shielding wall, and provides electrical shielding for the main side non-grounded conductive terminal at the rear end of the electrical connector overlap, wherein the main side first grounded conductive terminal, the main side second grounded conductive terminal and the main side non-grounded conductive terminal respectively have a main side first grounding terminal rear end overlap structure, a main side second grounding terminal rear end overlap structure and a main side non-grounded terminal rear end overlap structure, and the main side first grounding terminal rear end overlap structure, the main side second grounding terminal rear end overlap structure and the main side non-grounded terminal rear end overlap structure are respectively located at the rear end of the electrical connector overlap.

[0010] Preferably, in the electrical connector of the present application, the main side non-grounded conductive terminal also has a main side non-grounded terminal rear end bending structure, and the main side non-grounded terminal rear end bending structure provides bending so that the main side non-grounded conductive terminal avoids the main side rear end conductive connector, and the main side first conductive plastic wall structure and the main side second conductive plastic wall structure extend on the side of the main side non-grounded terminal rear end bending structure to provide a shielding wall for the main side non-grounded terminal rear end bending structure.

[0011] Preferably, in the electrical connector of the present application, the main side first grounding conductive terminal and the main side second grounding conductive terminal are respectively plugged into the main side first conductive plastic wall structure and the main side second conductive plastic wall structure, so that the main side first grounding conductive terminal and the main side second grounding conductive terminal are electrically connected to the conductive plastic carrier.

[0012] Preferably, in the electrical connector of the present application, the main side conductive terminal setting module is located in the main side insulating terminal seat, and the main side first conductive plastic wall structure and the main side second conductive plastic wall structure respectively enter the main side insulating terminal seat, and can respectively abut the main side first grounding conductive terminal and the main side second grounding conductive terminal.

[0013] Preferably, in the electrical connector of the present application, the main side first conductive plastic wall structure and the main side second conductive plastic wall structure respectively abut the main side first grounding conductive terminal and the main side second grounding conductive terminal in a surface contact manner to provide structural support for the main side first grounding conductive terminal and the main side second grounding conductive terminal, respectively.

[0014] Preferably, in the electrical connector of the present application, the other side of the electrical connector is a secondary side of the electrical connector, wherein the conductive plastic carrier also has a primary side conductive plastic carrier body, a primary side first conductive plastic wall structure and a primary side second conductive plastic wall structure, the secondary side conductive plastic carrier body is electrically connected to the secondary side first conductive plastic wall structure and the secondary side second conductive plastic wall structure, and the electrical connector also includes: a primary side conductive terminal group, the secondary side conductive terminal group is located on the secondary side of the electrical connector, and has a primary side first grounding conductive terminal, a primary side second grounding conductive terminal and a primary side non-grounding conductive terminal; and a primary side insulating terminal seat, the secondary side insulating terminal seat is combined with the conductive plastic carrier to form a primary side conductive terminal setting module, the secondary side conductive terminal setting module provides for setting the secondary side first grounding conductive terminal, the secondary side second grounding conductive terminal and the secondary side non-grounding conductive terminal Electrical terminal; in the secondary side conductive terminal setting module, the secondary side non-grounded conductive terminal is located between the secondary side first grounded conductive terminal and the secondary side second grounded conductive terminal; and the secondary side first conductive plastic wall structure and the secondary side second conductive plastic wall structure respectively abut the secondary side first grounded conductive terminal and the secondary side second grounded conductive terminal, so that the conductive plastic carrier is electrically connected to the secondary side first grounded conductive terminal and the secondary side second grounded conductive terminal, so that the secondary side conductive plastic carrier body, the secondary side first conductive plastic wall structure, the secondary side second conductive plastic wall structure, the secondary side first grounded conductive terminal and the secondary side second grounded conductive terminal constitute a primary side non-grounded terminal shielding wall, and the secondary side non-grounded terminal shielding wall has a U-shaped cross-section, so that the secondary side non-grounded terminal shielding wall can provide a shielding wall on at least three sides of the secondary side non-grounded conductive terminal.

[0015] Preferably, in the electrical connector of the present application, the front end of the electrical connector is an electrical connector overlapping front end, and the electrical connector also includes a primary side front end conductive connector, the secondary side front end conductive connector extends at the electrical connector overlapping front end and crosses the secondary side non-grounded conductive terminal, and electrically connects the secondary side first grounding conductive terminal and the secondary side second grounding conductive terminal, so that the secondary side front end conductive connector can be electrically connected to the secondary side non-grounded terminal shielding wall, and provides electrical shielding for the secondary side non-grounded conductive terminal at the electrical connector overlapping front end, wherein the secondary side first grounding conductive terminal, the secondary side second grounding conductive terminal and the secondary side non-grounded conductive terminal respectively have a primary side first grounding terminal front end overlapping structure, a primary side second grounding terminal front end overlapping structure and a primary side non-grounded terminal front end overlapping structure, and the secondary side first grounding terminal front end overlapping structure, the secondary side second grounding terminal front end overlapping structure and the secondary side non-grounded terminal front end overlapping structure are respectively located at the electrical connector overlapping front end.

[0016] Preferably, in the electrical connector of the present application, the secondary side front end conductive connector has a primary side front end wall shielding structure, and the secondary side front end wall shielding structure provides a shielding wall for the secondary side non-grounded conductive terminal at the overlapping front end of the electrical connector.

[0017] Preferably, in the electrical connector of the present application, the secondary side front end conductive connector has a primary side front end connector hollow structure, and the secondary side front end connector hollow structure overlaps the front end hollow of the electrical connector to provide impedance matching for the secondary side non-grounded conductive terminal.

[0018] Preferably, in the electrical connector of the present application, the secondary-side conductive plastic carrier body extends at a side facing the secondary-side non-grounded conductive terminal.

[0019] Preferably, in the electrical connector of the present application, the rear end of the electrical connector is a rear end of an electrical connector overlap, and the electrical connector also includes a primary side rear end conductive connector, the secondary side rear end conductive connector extends at the rear end of the electrical connector overlap and crosses the secondary side non-grounded conductive terminal, and electrically connects the secondary side first grounding conductive terminal and the secondary side second grounding conductive terminal, so that the secondary side rear end conductive connector can be electrically connected to the secondary side non-grounded terminal shielding wall, and provides electrical shielding for the secondary side non-grounded conductive terminal at the rear end of the electrical connector overlap, wherein the secondary side first grounding conductive terminal, the secondary side second grounding conductive terminal and the secondary side non-grounded conductive terminal respectively have a primary side first grounding terminal rear end overlap structure, a primary side second grounding terminal rear end overlap structure and a primary side non-grounded terminal rear end overlap structure, and the secondary side first grounding terminal rear end overlap structure, the secondary side second grounding terminal rear end overlap structure and the secondary side non-grounded terminal rear end overlap structure are respectively located at the rear end of the electrical connector overlap.

[0020] Preferably, in the electrical connector of the present application, the secondary side non-grounded conductive terminal also has a primary side non-grounded terminal rear end bending structure, the secondary side non-grounded terminal rear end bending structure provides bending, so that the secondary side non-grounded conductive terminal avoids the secondary side rear end conductive connector, and the secondary side first conductive plastic wall structure and the secondary side second conductive plastic wall structure extend on the side of the secondary side non-grounded terminal rear end bending structure to provide a shielding wall for the secondary side non-grounded terminal rear end bending structure.

[0021] Preferably, in the electrical connector of the present application, the secondary side first grounding conductive terminal and the secondary side second grounding conductive terminal are respectively plugged into the secondary side first conductive plastic wall structure and the secondary side second conductive plastic wall structure, so that the secondary side first grounding conductive terminal and the secondary side second grounding conductive terminal are electrically connected to the conductive plastic carrier.

[0022] Preferably, in the electrical connector of the present application, the secondary side conductive terminal setting module is located in the secondary side insulating terminal seat, and the secondary side first conductive plastic wall structure and the secondary side second conductive plastic wall structure respectively enter the secondary side insulating terminal seat, and can respectively abut the secondary side first grounding conductive terminal and the secondary side second grounding conductive terminal.

[0023] Preferably, in the electrical connector of the present application, the secondary side first conductive plastic wall structure and the secondary side second conductive plastic wall structure respectively abut the secondary side first grounding conductive terminal and the secondary side second grounding conductive terminal in a surface contact manner to provide structural support for the secondary side first grounding conductive terminal and the secondary side second grounding conductive terminal, respectively.

[0024] Preferably, in the electrical connector of the present application, the primary-side insulating terminal seat and the secondary-side insulating terminal seat can be formed separately or integrally.

[0025] Preferably, in the electrical connector of the present application, the primary-side conductive plastic carrier body and the secondary-side conductive plastic carrier body can be formed separately or integrally.

[0026] Compared with previous technologies, the electrical connector provided in this application can provide a shielding wall for at least three sides of the non-grounded conductive terminal that can transmit shielded signals. In this way, it can effectively reduce the interference of the electrical connector when transmitting high-speed signals, and thus optimize the transmission quality of the electrical connector for high-speed signals to meet the special needs and development of electronic equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] FIG1 is a perspective diagram showing an electrical connector of the present application at a first viewing angle in one embodiment.

[0028] FIG. 2 is a perspective diagram showing an electrical connector of the present application at a second viewing angle in an embodiment.

[0029] FIG3 is a schematic top view of an electrical connector according to an embodiment of the present application.

[0030] FIG. 4 is a schematic cross-sectional view showing a portion of the components of the electrical connector shown in FIG. 3 cut along line segment AA.

[0031] FIG. 5 is a schematic cross-sectional view showing a portion of the components of the electrical connector shown in FIG. 3 cut along line segment BB.

[0032] FIG6 is a schematic cross-sectional view showing a portion of the components of the electrical connector shown in FIG3 cut along line CC.

[0033] FIG. 7 is a perspective diagram showing some components of the electrical connector of the present application at a first viewing angle in one embodiment.

[0034] FIG. 8 is a perspective diagram showing some components of the electrical connector of the present application from a second viewing angle in one embodiment.

[0035] FIG. 9 is a perspective diagram showing some components of the electrical connector of the present application at a first viewing angle in one embodiment.

[0036] FIG. 10 is a perspective diagram showing some components of the electrical connector of the present application from a second viewing angle in one embodiment.

[0037] FIG. 11 is a perspective diagram showing some components of the electrical connector of the present application at a first viewing angle in one embodiment.

[0038] FIG. 12 is a perspective diagram showing some components of the electrical connector of the present application from a second perspective of an embodiment.

[0039] FIG. 13 is a perspective diagram showing some components of the electrical connector of the present application at a first viewing angle in one embodiment.

[0040] FIG. 14 is a perspective diagram showing some components of the electrical connector of the present application from a second viewing angle in one embodiment.

[0041] FIG. 15 is a perspective diagram showing some components of the electrical connector of the present application at a first viewing angle in one embodiment.

[0042] FIG. 16 is a perspective diagram showing some components of the electrical connector of the present application from a second viewing angle in one embodiment.

[0043] FIG. 17 is a perspective schematic diagram showing some components of the electrical connector of the present application in one embodiment.

[0044] FIG. 18 is a perspective schematic diagram showing some components of the electrical connector of the present application in one embodiment.

[0045] Component Reference Numerals 1 Electrical Connector 10 Conductive Plastic Carrier 101 Primary-Side Conductive Plastic Carrier Body 102 Primary-Side First Conductive Plastic Wall Structure 103 Primary-Side Second Conductive Plastic Wall Structure 104 Secondary-Side Conductive Plastic Carrier Body 105 Secondary-Side First Conductive Plastic Wall Structure 106 Secondary-Side Second Conductive Plastic Wall Structure 111 Primary-Side Conductive Terminal Group 1111 Primary-Side First Grounding Conductive Terminal 11111 Primary-Side First Grounding Terminal Front-End Lapping Structure 11112 Primary-Side First Grounding Terminal Rear-End Lapping Structure 1112 Primary-Side Second Grounding Conductive Terminal 11121 Primary-Side Second Grounding Terminal Front-End Lapping Structure 11122 Primary-Side Second Grounding Terminal Rear-End Lapping Structure 1113 Primary-Side Non-Grounding Conductive Terminal 11131 Primary-Side Non-Grounding Terminal Front-End Lapping Structure 11132 Primary-Side Non-Grounding Terminal Rear-End Lapping Structure 113 Primary-Side Insulating Terminal Block 114 Primary-Side Front-End Conductive Connector 1141 Primary-side front-end wall shielding structure 1142 Primary-side front-end connector hollow structure 115 Primary-side rear-end conductive connector 121 Secondary-side conductive terminal group 1211 Secondary-side first grounding conductive terminal 12111 Secondary-side first grounding terminal front-end overlapping structure 12112 Secondary-side first grounding terminal rear-end overlapping structure 1212 Secondary-side second grounding conductive terminal 12121 Secondary-side second grounding terminal front-end overlapping structure 12122 Secondary-side second grounding terminal rear-end overlapping structure 1213 Secondary-side non-grounding conductive terminal 12131 Secondary-side non-grounding terminal front-end overlapping structure 12132 Secondary-side non-grounding terminal rear-end overlapping structure 12133 Secondary-side non-grounding terminal rear-end bending structure 123 Secondary-side insulating terminal seat 124 Secondary-side front-end conductive connector 1241 Secondary-side front-end wall shielding structure 1242 Secondary-side front-end connector hollow structure 125 Secondary-side rear-end conductive connector S1 Electrical connector primary side S2 Electrical connector secondary side M11 Primary-side conductive terminal setting module M12 Secondary side conductive terminal setting module W1 Primary side non-ground terminal shielding wall W2 Secondary side non-ground terminal shielding wall E1 Electrical connector bonding front end E2 Electrical connector bonding rear end DETAILED DESCRIPTION

[0046] 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 elements in the drawings are for illustrative purposes only and do not represent the actual situation of the implementation of this application.

[0047] For descriptions of the embodiments disclosed in this application, please refer to FIG. 1 to FIG. 18 .

[0048] The present application provides an electrical connector 1 that can be installed in an electronic device. Within the electronic device, the electrical connector 1 can be connected to a front conductive member and a rear conductive member to provide signal transmission. Furthermore, the two sides of the electrical connector 1 are defined as a primary side S1 and a secondary side S2, respectively, while the front and rear ends of the electrical connector 1 are defined as a front end E1 and a rear end E2, respectively.

[0049] It should be noted that the electrical connector 1 can overlap the front end conductive component at the electrical connector main side S1, the electrical connector secondary side S2, and the electrical connector overlapping front end E1. In addition, the electrical connector 1 can overlap the rear end conductive component at the electrical connector main side S1, the electrical connector secondary side S2, and the electrical connector secondary end E2. As shown in Figures 13 and 14, the electrical connector 1 includes: a conductive plastic carrier 10, a main side conductive terminal group 111, a primary side conductive terminal group 121, a main side insulating terminal seat 113, a primary side insulating terminal seat 123, a main side front end conductive connector 114, a primary side front end conductive connector 124, a main side rear end conductive connector 115, and a primary side rear end conductive connector 125.

[0050] It should be noted that the conductive plastic carrier 10 can be made of a conductive plastic material and can provide a shielded signal for transmitting, for example, a ground signal. The primary-side insulating terminal block 113 and the secondary-side insulating terminal block 123 can be made of an insulating material and can provide positioning for the primary-side conductive terminal group 111 and the secondary-side conductive terminal group 121, respectively.

[0051] As shown in Figures 7 and 8, the conductive plastic carrier 10 has a main side conductive plastic carrier body 101, a main side first conductive plastic wall structure 102, a main side second conductive plastic wall structure 103, a primary side conductive plastic carrier body 104, a primary side first conductive plastic wall structure 105 and a primary side second conductive plastic wall structure 106.

[0052] It should be noted that, in this application, the primary side insulating terminal seat 113 and the secondary side insulating terminal seat 123 can be formed separately or integrally. The primary side conductive plastic carrier body 101 and the secondary side conductive plastic carrier body 104 can be formed separately or integrally.

[0053] As shown in Figures 1 to 3, the primary-side conductive terminal set 111 is located on the primary side S1 of the electrical connector and includes a primary-side first grounding conductive terminal 1111, a primary-side second grounding conductive terminal 1112, and a primary-side non-grounding conductive terminal 1113. The secondary-side conductive terminal set 121 is located on the secondary side S2 of the electrical connector and includes a primary-side first grounding conductive terminal 1211, a primary-side second grounding conductive terminal 1212, and a primary-side non-grounding conductive terminal 1213.

[0054] It should be noted that the primary-side first ground conductive terminal 1111, the primary-side second ground conductive terminal 1112, the secondary-side first ground conductive terminal 1211, and the secondary-side second ground conductive terminal 1212 can provide for transmitting ground signals, and the number of the primary-side first ground conductive terminal 1111, the primary-side second ground conductive terminal 1112, the secondary-side first ground conductive terminal 1211, and the secondary-side second ground conductive terminal 1212 is not limited to one. The primary-side non-ground conductive terminal 1113 and the secondary-side non-ground conductive terminal 1213 can provide for transmitting non-ground signals, such as differential signals, and the number of the primary-side non-ground conductive terminal 1113 and the secondary-side non-ground conductive terminal 1213 is not limited to one.

[0055] As shown in Figures 11 to 15 and 17 to 18 , the primary-side insulating terminal block 113 is combined (or bonded) with the conductive plastic carrier 10 to form a primary-side conductive terminal arrangement module M11. The primary-side conductive terminal arrangement module M11 provides for arranging primary-side first grounding conductive terminals 1111, primary-side second grounding conductive terminals 1112, and primary-side non-grounding conductive terminals 1113.

[0056] It should be noted that, in the main-side conductive terminal setting module M11, the main-side non-grounded conductive terminal 1113 is located between the main-side first grounded conductive terminal 1111 and the main-side second grounded conductive terminal 1112. The main-side first conductive plastic wall structure 102 and the main-side second conductive plastic wall structure 103 respectively abut against the main-side first grounded conductive terminal 1111 and the main-side second grounded conductive terminal 1112, so that the conductive plastic carrier 10 is electrically connected to the main-side first grounded conductive terminal 1111 and the main-side second grounded conductive terminal 1112, so that the main-side conductive plastic carrier body 101, the main-side first conductive plastic wall structure 102, the main-side second conductive plastic wall structure 103, the main-side first grounded conductive terminal 1111 and the main-side second grounded conductive terminal 1112 constitute A main side non-ground terminal shielding wall W1 is formed, and the main side non-ground terminal shielding wall W1 can provide a shielding signal for transmission, such as a grounding signal, and has a U-shaped cross-section, so that the main side non-ground terminal shielding wall W1 can provide a shielding wall on at least three sides of the main side non-grounded conductive terminal 1113 to provide an electrical shielding environment for the signal transmission of the main side non-grounded conductive terminal 1113, thereby reducing the interference of the electrical connector 1 when transmitting high-speed signals, and optimizing the transmission quality of the electrical connector 1 for high-speed signals to meet the special needs and development of electronic equipment.

[0057] As shown in Figures 6, 11 and 17, the main side conductive plastic carrier body 101 is electrically connected to the main side first conductive plastic wall structure 102 and the main side second conductive plastic wall structure 103, and can provide a shielded signal for transmitting, for example, a ground signal, and the main side conductive plastic carrier body 101 extends on a side facing the main side non-grounded conductive terminal 1113, and can provide an electrical shielding environment for the signal transmission of the main side non-grounded conductive terminal 1113.

[0058] In addition, as shown in Figures 6 and 13, the main side first grounding conductive terminal 1111 and the main side second grounding conductive terminal 1112 are respectively plugged into the main side first conductive plastic wall structure 102 and the main side second conductive plastic wall structure 103, so that the main side first grounding conductive terminal 1111 and the main side second grounding conductive terminal 1112 are electrically connected to the conductive plastic carrier 10. As shown in Figures 11 and 17, the main side conductive terminal setting module M11 is located at the main side insulating terminal seat 113, and the main side first conductive plastic wall structure 102 and the main side second conductive plastic wall structure 103 respectively enter the main side insulating terminal seat 113, and can respectively abut the main side first grounding conductive terminal 1111 and the main side second grounding conductive terminal 1112 by, for example, surface contact, so as to provide structural support for the main side first grounding conductive terminal 1111 and the main side second grounding conductive terminal 1112, respectively, and reduce the degree of deformation of the main side first grounding conductive terminal 1111 and the main side second grounding conductive terminal 1112 under stress.

[0059] The primary-side first grounding conductive terminal 1111, the primary-side second grounding conductive terminal 1112, and the primary-side non-grounding conductive terminal 1113 respectively have a primary-side first grounding terminal front-end bonding structure 11111, a primary-side second grounding terminal front-end bonding structure 11121, and a primary-side non-grounding terminal front-end bonding structure 11131. The primary-side first grounding terminal front-end bonding structure 11111, the primary-side second grounding terminal front-end bonding structure 11121, and the primary-side non-grounding terminal front-end bonding structure 11131 can respectively bond with the front-end conductive member at the electrical connector bonding front end E1 to provide electrical signal transmission.

[0060] In addition, as shown in Figures 5 and 6, the main side front end conductive connector 114 extends at the electrical connector overlapping front end E1 and crosses the main side non-grounded conductive terminal 1113, and electrically connects the main side first grounded conductive terminal 1111 and the main side second grounded conductive terminal 1112, so that the main side front end conductive connector 114 can be electrically connected to the main side non-grounded terminal shielding wall W1, and provides a shielding wall for the main side non-grounded conductive terminal 1113 at the electrical connector overlapping front end E1, so as to provide an electrical shielding environment for the signal transmission of the main side non-grounded conductive terminal 1113, thereby reducing the interference of the electrical connector 1 when transmitting high-speed signals, and optimizing the transmission quality of the electrical connector 1 for high-speed signals to meet the special needs and development of electronic equipment.

[0061] In the embodiments shown in Figures 5, 13, and 15, the main-side front-end conductive connector 114 has a main-side front-end wall shielding structure 1141. The main-side front-end wall shielding structure 1141 provides a shielding wall for the main-side non-grounded conductive terminal 1113 at the electrical connector bonding front end E1, thereby providing an electrically shielded environment for signal transmission of the main-side non-grounded conductive terminal 1113. However, this is not limiting. In the embodiments shown in Figures 17 and 18, the main-side front-end conductive connector 114 has a main-side front-end connector hollow structure 1142. The main-side front-end connector hollow structure 1142 is hollowed out at the electrical connector bonding front end E1 to provide impedance matching for the main-side non-grounded conductive terminal 1113.

[0062] Furthermore, the primary-side first grounding conductive terminal 1111, the primary-side second grounding conductive terminal 1112, and the primary-side non-grounding conductive terminal 1113 each have a primary-side first grounding terminal rear-end overlapping structure 11112, a primary-side second grounding terminal rear-end overlapping structure 11122, and a primary-side non-grounding terminal rear-end overlapping structure 11132. The primary-side first grounding terminal rear-end overlapping structure 11112, the primary-side second grounding terminal rear-end overlapping structure 11122, and the primary-side non-grounding terminal rear-end overlapping structure 11132 can each overlap the rear-end conductive member at the electrical connector's rear-end overlapping rear end E2 to provide electrical signal transmission.

[0063] Correspondingly, the main side rear end conductive connector 115 extends at the rear end E2 of the electrical connector and crosses the main side non-grounded conductive terminal 1113, and electrically connects the main side first grounded conductive terminal 1111 and the main side second grounded conductive terminal 1112, so that the main side rear end conductive connector 115 can be electrically connected to the main side non-grounded terminal shielding wall W1, and provide shielding for the main side non-grounded conductive terminal 1113 at the rear end E2 of the electrical connector, and provide an electrical shielding environment for the signal transmission of the main side non-grounded conductive terminal 1113.

[0064] As shown in Figure 5, the main side non-grounded conductive terminal 1113 also has a main side non-grounded terminal rear end bending structure 11133. The main side non-grounded terminal rear end bending structure 11133 provides bending, so that the main side non-grounded conductive terminal 1113 avoids the main side rear end conductive connector 115 to avoid electrical short circuit between the main side non-grounded conductive terminal 1113 and the main side rear end conductive connector 115. The main side first conductive plastic wall structure 102 and the main side second conductive plastic wall structure 103 extend on the side of the main side non-grounded terminal rear end bending structure 11133 to provide a shielding wall for the main side non-grounded terminal rear end bending structure 11133, thereby providing an electrical shielding environment for the signal transmission of the main side non-grounded conductive terminal 1113.

[0065] In the embodiments shown in Figures 11 to 12, 14, and 16, the secondary insulating terminal block 123 is combined with (or bonded to) the conductive plastic carrier 10 to form a primary conductive terminal arrangement module M12. The secondary conductive terminal arrangement module M12 provides for arranging the secondary first grounding conductive terminal 1211, the secondary second grounding conductive terminal 1212, and the secondary non-grounding conductive terminal 1213.

[0066] It should be noted that, in the secondary-side conductive terminal setting module M12, the secondary-side non-grounded conductive terminal 1213 is located between the secondary-side first grounded conductive terminal 1211 and the secondary-side second grounded conductive terminal 1212. The secondary-side first conductive plastic wall structure 105 and the secondary-side second conductive plastic wall structure 106 respectively abut against the secondary-side first grounded conductive terminal 1211 and the secondary-side second grounded conductive terminal 1212, so that the conductive plastic carrier 10 is electrically connected to the secondary-side first grounded conductive terminal 1211 and the secondary-side second grounded conductive terminal 1212, so that the secondary-side conductive plastic carrier body 104, the secondary-side first conductive plastic wall structure 105, the secondary-side second conductive plastic wall structure 106, the secondary-side first grounded conductive terminal 1211 and the secondary-side second grounded conductive terminal Sub-1212 constitutes a primary side non-ground terminal shielding wall W2, and the secondary side non-ground terminal shielding wall W2 can provide a shielding signal for transmission, such as a ground signal, and has a U-shaped cross-section, so that the secondary side non-ground terminal shielding wall W2 can provide a shielding wall on at least three sides of the secondary side non-ground conductive terminal 1213 to provide an electrical shielding environment for the signal transmission of the secondary side non-ground conductive terminal 1213, thereby reducing the interference of the electrical connector 1 when transmitting high-speed signals, and optimizing the transmission quality of the electrical connector 1 for high-speed signals to meet the special needs and development of electronic equipment.

[0067] As shown in Figures 6, 12 and 14, the secondary side conductive plastic carrier body 104 is electrically connected to the secondary side first conductive plastic wall structure 105 and the secondary side second conductive plastic wall structure 106, and can provide a shielded signal for transmitting, for example, a ground signal, and the secondary side conductive plastic carrier body 104 extends on a side facing the secondary side non-grounded conductive terminal 1213, and can provide an electrical shielding environment for the signal transmission of the secondary side non-grounded conductive terminal 1213.

[0068] 6 and 14 , the secondary first grounding conductive terminal 1211 and the secondary second grounding conductive terminal 1212 are respectively inserted into the secondary first conductive plastic wall structure 105 and the secondary second conductive plastic wall structure 106, so that the secondary first grounding conductive terminal 1211 and the secondary second grounding conductive terminal 1212 are electrically connected to the conductive plastic carrier 10. As shown in FIG14 , the secondary conductive terminal arrangement module M12 is located in the secondary insulating terminal seat 123. The secondary first conductive plastic wall structure 105 and the secondary second conductive plastic wall structure 106 are respectively inserted into the secondary insulating terminal seat 123 and can respectively abut the secondary first grounding conductive terminal 1211 and the secondary second grounding conductive terminal 1212 by, for example, surface contact, to provide structural support to the secondary first grounding conductive terminal 1211 and the secondary second grounding conductive terminal 1212, thereby reducing the degree of deformation of the secondary first grounding conductive terminal 1211 and the secondary second grounding conductive terminal 1212 under stress.

[0069] The secondary-side first grounding conductive terminal 1211, the secondary-side second grounding conductive terminal 1212, and the secondary-side non-grounding conductive terminal 1213 respectively have a primary-side first grounding terminal front-end bonding structure 12111, a primary-side second grounding terminal front-end bonding structure 12121, and a primary-side non-grounding terminal front-end bonding structure 12131. The secondary-side first grounding terminal front-end bonding structure 12111, the secondary-side second grounding terminal front-end bonding structure 12121, and the secondary-side non-grounding terminal front-end bonding structure 12131 can respectively bond with the front-end conductive member at the electrical connector bonding front end E1 to provide electrical signal transmission.

[0070] In addition, as shown in Figures 5 to 6, Figure 14 and Figure 16, the secondary side front end conductive connector 124 extends at the electrical connector overlapping front end E1 and crosses the secondary side non-grounded conductive terminal 1213, and electrically connects the secondary side first grounded conductive terminal 1211 and the secondary side second grounded conductive terminal 1212, so that the secondary side front end conductive connector 124 can be electrically connected to the secondary side non-grounded terminal shielding wall W2, and provides electrical shielding for the secondary side non-grounded conductive terminal 1213 at the electrical connector overlapping front end E1, so as to provide an electrical shielding environment for the signal transmission of the secondary side non-grounded conductive terminal 1213, thereby reducing the interference of the electrical connector 1 when transmitting high-speed signals, and optimizing the transmission quality of the electrical connector 1 for high-speed signals to meet the special needs and development of electronic equipment.

[0071] In the embodiments shown in Figures 5 and 14 , the secondary-side front-end conductive connector 124 has a primary-side front-end wall shielding structure 1241. The secondary-side front-end wall shielding structure 1241 provides an electrical shielding wall for the secondary-side non-grounded conductive terminal 1213 at the electrical connector bonding front end E1, thereby providing an electrically shielded environment for signal transmission of the primary-side non-grounded conductive terminal 1113. However, the present invention is not limited thereto. In the embodiments shown in Figures 17 and 18 , the secondary-side front-end conductive connector 124 has a primary-side front-end connector hollow structure 1242. The secondary-side front-end connector hollow structure 1242 is hollowed out at the electrical connector bonding front end E1 to provide impedance matching for the secondary-side non-grounded conductive terminal 1213.

[0072] Furthermore, the secondary-side first grounding conductive terminal 1211, the secondary-side second grounding conductive terminal 1212, and the secondary-side non-grounding conductive terminal 1213 respectively have a primary-side first grounding terminal rear-end bonding structure 12112, a primary-side second grounding terminal rear-end bonding structure 12122, and a primary-side non-grounding terminal rear-end bonding structure 12132. The secondary-side first grounding terminal rear-end bonding structure 12112, the secondary-side second grounding terminal rear-end bonding structure 12122, and the secondary-side non-grounding terminal rear-end bonding structure 12132 can respectively bond with the rear-end conductive member at the electrical connector bonding rear end E2 to provide electrical signal transmission.

[0073] Correspondingly, the secondary side rear end conductive connector 125 extends at the electrical connector overlapping rear end E2 and crosses the secondary side non-grounded conductive terminal 1213, and electrically connects the secondary side first grounded conductive terminal 1211 and the secondary side second grounded conductive terminal 1212, so that the secondary side rear end conductive connector 125 can be electrically connected to the secondary side non-grounded terminal shielding wall W2, and provide electrical shielding for the secondary side non-grounded conductive terminal 1213 at the electrical connector overlapping rear end E2, and provide an electrical shielding environment for the signal transmission of the secondary side non-grounded conductive terminal 1213.

[0074] As shown in Figure 5, the secondary side non-grounded conductive terminal 1213 also has a primary side non-grounded terminal rear end bending structure 12133. The secondary side non-grounded terminal rear end bending structure 12133 provides a bend, so that the secondary side non-grounded conductive terminal 1213 avoids the secondary side rear end conductive connector 125 to avoid electrical short circuit between the secondary side non-grounded conductive terminal 1213 and the secondary side rear end conductive connector 125. The secondary side first conductive plastic wall structure 105 and the secondary side second conductive plastic wall structure 106 extend on the side of the secondary side non-grounded terminal rear end bending structure 12133 to provide a shielding wall for the secondary side non-grounded terminal rear end bending structure 12133, thereby providing an electrical shielding environment for signal transmission of the secondary side non-grounded conductive terminal 1213.

[0075] It should be noted that in the embodiments of the present application, some of the aforementioned components can be omitted. For example, the electrical connector can optionally include only: a conductive plastic carrier, a main-side conductive terminal group and a main-side insulating terminal seat. The conductive plastic carrier has a main-side conductive plastic carrier body, a main-side first conductive plastic wall structure and a main-side second conductive plastic wall structure. The main-side conductive plastic carrier body is electrically connected to the main-side first conductive plastic wall structure and the main-side second conductive plastic wall structure. The main-side conductive terminal group is located on the main side of the electrical connector and has a main-side first grounding conductive terminal, a main-side second grounding conductive terminal and a main-side non-grounding conductive terminal. The main-side insulating terminal seat is combined with the conductive plastic carrier to form a main-side conductive terminal setting module. The main-side conductive terminal setting module provides for setting the main-side first grounding conductive terminal, the main-side second grounding conductive terminal and the main-side non-grounding conductive terminal. In the main-side conductive terminal setting module, the main-side non-grounded conductive terminal is located between the main-side first grounded conductive terminal and the main-side second grounded conductive terminal; and the main-side first conductive plastic wall structure and the main-side second conductive plastic wall structure respectively abut the main-side first grounded conductive terminal and the main-side second grounded conductive terminal, so that the conductive plastic carrier is electrically connected to the main-side first grounded conductive terminal and the main-side second grounded conductive terminal, so that the main-side conductive plastic carrier body, the main-side first conductive plastic wall structure, the main-side second conductive plastic wall structure, the main-side first grounded conductive terminal and the main-side second grounded conductive terminal constitute a main-side non-grounded terminal shielding wall, and the main-side non-grounded terminal shielding wall has a U-shaped cross-section, so that the main-side non-grounded terminal shielding wall can provide a shielding wall on at least three sides of the main-side non-grounded conductive terminal.

[0076] In summary, the electrical connector of the present application can provide a shielding wall for at least three sides of the non-grounded conductive terminal that can transmit shielded signals. In this way, it can effectively reduce the interference of the electrical connector when transmitting high-speed signals, and then optimize the transmission quality of the electrical connector for high-speed signals to meet the special needs and development of electronic equipment.

[0077] 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, One side of the electrical connector is a main side of the electrical connector, and the electrical connector includes: A conductive plastic carrier, which has a main side conductive plastic carrier body, a main side first conductive plastic wall structure and a main side second conductive plastic wall structure, and the main side conductive plastic carrier body is electrically connected to the main side first conductive plastic wall structure and the main side second conductive plastic wall structure; A main side conductive terminal group, which is located on the main side of the electrical connector and has a main side first ground conductive terminal, a main side second ground conductive terminal and a main side non-ground conductive terminal; and A main side insulating terminal seat, which combines with the conductive plastic carrier to form a main side conductive terminal setting module, and the main side conductive terminal setting module provides for setting the main side first ground conductive terminal, the main side second ground conductive terminal and the main side non-ground conductive terminal; in the main side conductive terminal setting module, The main side non-ground conductive terminal is located between the main side first ground conductive terminal and the main side second ground conductive terminal; and The main side first conductive plastic wall structure and the main side second conductive plastic wall structure respectively abut against the main side first ground conductive terminal and the main side second ground conductive terminal, so that the conductive plastic carrier is electrically connected to the main side first ground conductive terminal and the main side second ground conductive terminal, and the main side conductive plastic carrier body, the main side first conductive plastic wall structure, the main side second conductive plastic wall structure, the main side first ground conductive terminal and the main side second ground conductive terminal form a main side non-ground terminal shielding wall, and the main side non-ground terminal shielding wall has a U-shaped cross-section, so that the main side non-ground terminal shielding wall can provide a shielding wall on at least three sides of the main side non-ground conductive terminal.

2. The electrical connector according to claim 1, characterized in that The front end of the electrical connector is a lapping front end of the electrical connector, and the electrical connector further includes a main side front end conductive connecting body, which extends across the main side non-ground conductive terminal at the lapping front end of the electrical connector and is electrically connected to the main side first ground conductive terminal and the main side second ground conductive terminal, so that the main side front end conductive connecting body can be electrically connected to the main side non-ground terminal shielding wall, and provides electrical shielding for the main side non-ground conductive terminal at the lapping front end of the electrical connector. Among them, the main side first ground conductive terminal, the main side second ground conductive terminal and the main side non-ground conductive terminal respectively have a main side first ground terminal front end lapping structure, a main side second ground terminal front end lapping structure and a main side non-ground terminal front end lapping structure, and the main side first ground terminal front end lapping structure, the main side second ground terminal front end lapping structure and the main side non-ground terminal front end lapping structure are respectively located at the lapping front end of the electrical connector.

3. The electrical connector according to claim 2, wherein The main side front end conductive connecting body has a main side front end wall shielding structure, and the main side front end wall shielding structure provides a shielding wall for the main side non-ground conductive terminal at the lapping front end of the electrical connector.

4. The electrical connector according to claim 2, wherein, The front-end conductive connecting body on the main side has a hollow structure of the front-end connecting body on the main side. The hollow structure of the front-end connecting body on the main side is hollowed out at the front end of the electrical connector overlap to provide impedance matching for the non-grounded conductive terminal on the main side.

5. The electrical connector according to claim 1, wherein, The main-side conductive plastic carrier body extends along one side facing the non-grounded conductive terminal on the main side.

6. The electrical connector according to claim 1, wherein, The rear end of the electrical connector is a rear end of the electrical connector overlap. The electrical connector further includes a rear-end conductive connecting body on the main side. The rear-end conductive connecting body on the main side extends at the rear end of the electrical connector overlap to straddle the non-grounded conductive terminal on the main side, and electrically connects the first grounded conductive terminal on the main side and the second grounded conductive terminal on the main side, so that the rear-end conductive connecting body on the main side can electrically connect the shielding wall of the non-grounded terminal on the main side, and provide electrical shielding for the non-grounded conductive terminal on the main side at the rear end of the electrical connector overlap. Among them, the first grounded conductive terminal on the main side, the second grounded conductive terminal on the main side and the non-grounded conductive terminal on the main side respectively have a rear-end overlapping structure of the first grounded terminal on the main side, a rear-end overlapping structure of the second grounded terminal on the main side and a rear-end overlapping structure of the non-grounded terminal on the main side. The rear-end overlapping structure of the first grounded terminal on the main side, the rear-end overlapping structure of the second grounded terminal on the main side and the rear-end overlapping structure of the non-grounded terminal on the main side are respectively located at the rear end of the electrical connector overlap.

7. The electrical connector according to claim 6, wherein The non-grounded conductive terminal on the main side further has a rear-end bending structure of the non-grounded terminal on the main side. The rear-end bending structure of the non-grounded terminal on the main side provides bending, so that the non-grounded conductive terminal on the main side can avoid the rear-end conductive connecting body on the main side, and the first conductive plastic wall structure on the main side and the second conductive plastic wall structure on the main side extend along the side of the rear-end bending structure of the non-grounded terminal on the main side to provide a shielding wall for the rear-end bending structure of the non-grounded terminal on the main side.

8. The electrical connector according to claim 1, wherein The first grounded conductive terminal on the main side and the second grounded conductive terminal on the main side are respectively inserted into the first conductive plastic wall structure on the main side and the second conductive plastic wall structure on the main side, so that the first grounded conductive terminal on the main side and the second grounded conductive terminal on the main side are electrically connected to the conductive plastic carrier.

9. The electrical connector according to claim 1, wherein, The main-side conductive terminal setting module is located in the main-side insulating terminal seat. The first conductive plastic wall structure on the main side and the second conductive plastic wall structure on the main side respectively enter the main-side insulating terminal seat and can respectively abut against the first grounded conductive terminal on the main side and the second grounded conductive terminal on the main side.

10. The electrical connector according to claim 1, characterized in that, The first conductive plastic wall structure on the main side and the second conductive plastic wall structure on the main side respectively abut against the first grounded conductive terminal on the main side and the second grounded conductive terminal on the main side in a surface-contact manner to respectively provide structural support for the first grounded conductive terminal on the main side and the second grounded conductive terminal on the main side.

11. The electrical connector according to claim 1, wherein The other side of the electrical connector is a secondary side of the electrical connector. Among them, the conductive plastic carrier further has a primary side conductive plastic carrier body, a primary side first conductive plastic wall structure, and a primary side second conductive plastic wall structure. The secondary side conductive plastic carrier body is electrically connected to the secondary side first conductive plastic wall structure and the secondary side second conductive plastic wall structure. And the electrical connector further includes: A primary side conductive terminal group. The secondary side conductive terminal group is located on the secondary side of the electrical connector and has a primary side first ground conductive terminal, a primary side second ground conductive terminal, and a primary side non-ground conductive terminal; and A primary side insulating terminal seat. The secondary side insulating terminal seat is combined with the conductive plastic carrier to form a primary side conductive terminal setting module. The secondary side conductive terminal setting module provides for setting the secondary side first ground conductive terminal, the secondary side second ground conductive terminal, and the secondary side non-ground conductive terminal. In the secondary side conductive terminal setting module, the secondary side non-ground conductive terminal is located between the secondary side first ground conductive terminal and the secondary side second ground conductive terminal; and The secondary side first conductive plastic wall structure and the secondary side second conductive plastic wall structure respectively abut against the secondary side first ground conductive terminal and the secondary side second ground conductive terminal, so that the conductive plastic carrier is electrically connected to the secondary side first ground conductive terminal and the secondary side second ground conductive terminal, and the secondary side conductive plastic carrier body, the secondary side first conductive plastic wall structure, the secondary side second conductive plastic wall structure, the secondary side first ground conductive terminal, and the secondary side second ground conductive terminal form a primary side non-ground terminal shielding wall. The secondary side non-ground terminal shielding wall has a U-shaped cross-section, so that the secondary side non-ground terminal shielding wall can provide a shielding wall on at least three sides of the secondary side non-ground conductive terminal.

12. The electrical connector according to claim 11, characterized in that, The front end of the electrical connector is a lapping front end of the electrical connector. And the electrical connector further includes a primary side front-end conductive connecting body. The secondary side front-end conductive connecting body extends across the secondary side non-ground conductive terminal at the lapping front end of the electrical connector and is electrically connected to the secondary side first ground conductive terminal and the secondary side second ground conductive terminal, so that the secondary side front-end conductive connecting body can be electrically connected to the secondary side non-ground terminal shielding wall, and provides electrical shielding for the secondary side non-ground conductive terminal at the lapping front end of the electrical connector. Among them, the secondary side first ground conductive terminal, the secondary side second ground conductive terminal, and the secondary side non-ground conductive terminal respectively have a primary side first ground terminal front-end lapping structure, a primary side second ground terminal front-end lapping structure, and a primary side non-ground terminal front-end lapping structure. The primary side first ground terminal front-end lapping structure, the primary side second ground terminal front-end lapping structure, and the primary side non-ground terminal front-end lapping structure are respectively located at the lapping front end of the electrical connector.

13. The electrical connector according to claim 11, characterized in that, The secondary side front-end conductive connecting body has a primary side front-end wall shielding structure. The primary side front-end wall shielding structure provides a shielding wall for the secondary side non-ground conductive terminal at the lapping front end of the electrical connector.

14. The electrical connector according to claim 11, characterized in that, The secondary-side front conductive connector has a hollow structure of the primary-side front connector. The hollow structure of the primary-side front connector is hollowed out at the front end of the electrical connector overlap, providing impedance matching for the secondary-side non-grounded conductive terminals.

15. The electrical connector according to claim 11, wherein, The secondary-side conductive plastic carrier body extends along one side facing the secondary-side non-grounded conductive terminals.

16. The electrical connector according to claim 10, wherein, The rear end of the electrical connector is a rear end of the electrical connector overlap. The electrical connector further includes a primary-side rear conductive connector. The secondary-side rear conductive connector extends at the rear end of the electrical connector overlap, crossing over the secondary-side non-grounded conductive terminals, and electrically connecting the secondary-side first grounding conductive terminal and the secondary-side second grounding conductive terminal, enabling the secondary-side rear conductive connector to electrically connect to the shielding wall of the secondary-side non-grounded terminal, and providing electrical shielding for the secondary-side non-grounded conductive terminals at the rear end of the electrical connector overlap. Among them, the secondary-side first grounding conductive terminal, the secondary-side second grounding conductive terminal, and the secondary-side non-grounded conductive terminal respectively have a primary-side first grounding terminal rear overlap structure, a primary-side second grounding terminal rear overlap structure, and a primary-side non-grounded terminal rear overlap structure. The primary-side first grounding terminal rear overlap structure, the primary-side second grounding terminal rear overlap structure, and the primary-side non-grounded terminal rear overlap structure are respectively located at the rear end of the electrical connector overlap.

17. The electrical connector according to claim 15, wherein, The secondary-side non-grounded conductive terminal further has a primary-side non-grounded terminal rear bending structure. The primary-side non-grounded terminal rear bending structure provides bending, enabling the secondary-side non-grounded conductive terminal to avoid the secondary-side rear conductive connector. The secondary-side first conductive plastic wall structure and the secondary-side second conductive plastic wall structure extend along the sides of the primary-side non-grounded terminal rear bending structure, providing a shielding wall for the primary-side non-grounded terminal rear bending structure.

18. The electrical connector according to claim 11, wherein The secondary-side first grounding conductive terminal and the secondary-side second grounding conductive terminal are respectively inserted into the secondary-side first conductive plastic wall structure and the secondary-side second conductive plastic wall structure, so that the secondary-side first grounding conductive terminal and the secondary-side second grounding conductive terminal are electrically connected to the conductive plastic carrier.

19. The electrical connector according to claim 11, wherein, The secondary-side conductive terminal setting module is located in the secondary-side insulating terminal seat. The secondary-side first conductive plastic wall structure and the secondary-side second conductive plastic wall structure respectively enter the secondary-side insulating terminal seat, and can respectively abut against the secondary-side first grounding conductive terminal and the secondary-side second grounding conductive terminal.

20. The electrical connector according to claim 11, wherein, The secondary-side first conductive plastic wall structure and the secondary-side second conductive plastic wall structure respectively abut against the secondary-side first grounding conductive terminal and the secondary-side second grounding conductive terminal in a surface-contact manner, respectively providing structural support for the secondary-side first grounding conductive terminal and the secondary-side second grounding conductive terminal.

21. The electrical connector according to claim 11, characterized in that: The primary-side insulating terminal seat and the secondary-side insulating terminal seat can be formed separately or integrally.

22. The electrical connector according to claim 11, wherein, The primary-side conductive plastic carrier body and the secondary-side conductive plastic carrier body can be formed separately or integrally.

Citation Information

Patent Citations

  • Card edge connector

    CN110429405A

  • Novel anti-interference high-speed connector assembly

    CN116207563A

  • Electric connector

    CN219304032U

  • Electric connector

    CN222015835U

  • Electrical connector

    US20230066802A1