Signal transmission component assembly and electric connector thereof

The combined structure of the primary and secondary side conductive terminal modules, the metal shielding module, and the insulating rubber core of the electrical connector solves the interference problem of the electrical connector when transmitting high-speed signals, and realizes customized adjustment of the conductive terminals and optimization of signal transmission.

CN223414395UActive Publication Date: 2025-10-03TARNG YU ENTERPRISE +1
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Patent Information

Application Number
CN202422778035.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-07-05
Filing Date
2024-11-14
Publication Date
2025-10-03
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

Existing electrical connectors are susceptible to interference when transmitting high-speed signals, and the number and structure of the conductive terminals cannot be customized, making it difficult to meet the signal transmission requirements of electronic devices.

Method used

The combined structure of primary and secondary side conductive terminal modules, metal shielding modules and electrical connector insulating rubber core is adopted. By adjusting the number and structure of conductive terminals and combining with metal shielding walls to provide shielding, interference is reduced and high-speed signal transmission requirements are met.

Benefits of technology

This allows the number and structure of conductive terminals to be adjusted after the electrical connector design is completed, meeting the signal transmission requirements of electronic equipment, reducing interference during signal transmission, and optimizing the transmission quality of high-speed signals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a signal transmission component assembly and an electric connector thereof, and the electric connector is formed by assembling a plurality of conductive terminal modules, so that after the design of the electric connector is completed, the number and the structure of the conductive terminals of the electric connector can be adjusted in a customized manner by adjusting the assembled conductive terminal modules, and the electric connector is more convenient to use. Therefore, the requirement of electronic equipment on signal transmission is met. Besides, the electric connector is provided with a metal shielding wall body, and the metal shielding wall body can provide shielding among a plurality of conductive terminals used for transmitting signals, so that the interference degree of the electric connector during signal transmission is reduced, and the requirement of electronic equipment on high-speed signal transmission is further met.
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Description

Technical Field

[0001] The present application relates to the technical field of electronic devices, and more particularly, to a signal transmission component assembly and an electrical connector thereof that can customize the number and structure of conductive terminals and reduce signal interference. Background Art

[0002] In recent years, electrical connectors have been widely used in various electronic devices to transmit signals through their multiple conductive terminals. To meet the specific needs and development of electronic devices, the number and structure of the connector's conductive terminals are required to be customized. However, once the design of current electrical connectors is completed, the number and structure of the conductive terminals are fixed and cannot be customized. This makes it difficult to meet the signal transmission requirements of electronic devices, thus limiting the technological (functional) development of electronic devices.

[0003] In addition, the multiple conductive terminals of the electrical connector may also need to transmit high-speed signals. Currently, the electrical connector is 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.

[0004] As can be seen from the above, how to customize the number and structure of the conductive terminals of the electrical connector and solve the problem that the electrical connector is easily susceptible to interference when transmitting high-speed signals is indeed an urgent problem to be solved by those skilled in the art. Utility Model Content

[0005] In view of the shortcomings of the above-mentioned prior art, the present application provides an electrical connector, which includes: a main-side conductive terminal module, the main-side conductive terminal module having a main-side conductive terminal group, a main-side conductive plastic jumper seat and a main-side insulating plastic joint seat, wherein the main-side conductive terminal group includes a first main-side jumper conductive terminal, a second main-side jumper conductive terminal and a main-side non-jumper conductive terminal, the main-side conductive plastic jumper seat spans the main-side non-jumper conductive terminal and electrically connects the first main-side jumper conductive terminal and the second main-side jumper conductive terminal, and the main-side insulating plastic joint seat engages the main-side conductive terminal. The secondary conductive terminal group and the primary side conductive plastic jumper seat are used to form a primary side conductive terminal module joint assembly; the primary side conductive terminal module, the secondary side conductive terminal module has a primary side conductive terminal group, a primary side conductive plastic jumper seat and a primary side insulating plastic joint seat, wherein the secondary side conductive terminal group includes a first side jumper conductive terminal, a second side jumper conductive terminal and a primary side non-jumper conductive terminal, the secondary side conductive plastic jumper seat crosses the secondary side non-jumper conductive terminal and electrically connects the first side jumper conductive terminal and the second side jumper conductive terminal, the secondary side insulating plastic joint seat engages the The secondary side conductive terminal group and the secondary side conductive plastic jumper seat are used to form a primary side conductive terminal module joint component; a metal shielding module, the metal shielding module has a main side metal shielding wall, a primary side metal shielding wall and a metal shielding connector, wherein the metal shielding connector connects the main side metal shielding wall and the secondary side metal shielding wall to form a metal shielding component, so that the main side metal shielding wall and the secondary side metal shielding wall are electrically connected; and an electrical connector insulating rubber core, the electrical connector insulating rubber core has an electrical connector insulating rubber core support structure, wherein the electrical connector insulating rubber The core assembly comprises the main side conductive terminal module joint assembly, the secondary side conductive terminal module joint assembly and the metal shielding assembly, and the electrical connector insulating rubber core support structure provides support for the metal shielding assembly, so that the main side metal shielding wall and the secondary side metal shielding wall are respectively electrically connected to the main side conductive plastic jumper and the secondary side conductive plastic jumper to transmit shielding signals, and the main side metal shielding wall and the secondary side metal shielding wall extend on the sides of the main side conductive terminal group and the secondary side conductive terminal group respectively, and provide shielding for the main side conductive terminal group and the secondary side conductive terminal group respectively.

[0006] Preferably, in the electrical connector of the present application, the main side conductive plastic jumper seat has a first main side conductive plastic jumper seat clamping structure and a second main side conductive plastic jumper seat clamping structure, the first main side conductive plastic jumper seat clamping structure and the second main side conductive plastic jumper seat clamping structure respectively clamp and position the first main side jumper conductive terminal and the second main side jumper conductive terminal; and the secondary side conductive plastic jumper seat has a first side conductive plastic jumper seat clamping structure and a second side conductive plastic jumper seat clamping structure, the first side conductive plastic jumper seat clamping structure and the second side conductive plastic jumper seat clamping structure respectively clamp and position the first side jumper conductive terminal and the second side jumper conductive terminal.

[0007] Preferably, in the electrical connector of the present application, the metal shielding component is a U-shaped structure straddling the insulating rubber core support structure of the electrical connector.

[0008] Preferably, in the electrical connector of the present application, the electrical connector insulating rubber core assembles the primary-side conductive terminal module joint assembly, the secondary-side conductive terminal module joint assembly and the metal shielding assembly in a set direction.

[0009] Preferably, in the electrical connector of the present application, the metal shielding component has a metal shielding component assembly channel and a metal shielding component assembly space, and the electrical connector insulating rubber core support structure can enter the metal shielding component assembly space through the metal shielding component assembly channel in the assembly direction.

[0010] Preferably, in the electrical connector of the present application, the main side metal shielding wall and the secondary side metal shielding wall are located on the side of the metal shielding component assembly space, and the electrical connector insulating rubber core support structure provides lateral support to the main side metal shielding wall and the secondary side metal shielding wall respectively; and the metal shielding connecting body is located in the longitudinal direction of the metal shielding component assembly space, and the electrical connector insulating rubber core support structure provides longitudinal support to the metal shielding connecting body.

[0011] Preferably, in the electrical connector of the present application, the main side conductive plastic jumper seat has a main side conductive plastic jumper seat abutment structure, and in the main side conductive terminal module joint assembly, the main side conductive plastic jumper seat abutment structure exposes the main side insulating plastic joint seat to provide abutment against the main side metal shielding wall; and the secondary side conductive plastic jumper seat has a primary side conductive plastic jumper seat abutment structure, and in the secondary side conductive terminal module joint assembly, the secondary side conductive plastic jumper seat abutment structure exposes the secondary side insulating plastic joint seat to provide abutment against the secondary side metal shielding wall.

[0012] Preferably, in the electrical connector of the present application, the main side metal shielding wall has a main side metal shielding wall embossed structure, and the main side metal shielding wall embossed structure provides abutment against the main side conductive plastic jumper; and the secondary side metal shielding wall has a primary side metal shielding wall embossed structure, and the secondary side metal shielding wall embossed structure provides abutment against the secondary side conductive plastic jumper.

[0013] In addition, the present application also provides a signal transmission component assembly, the signal transmission component assembly includes: a signal transmission extension material; and an electrical connector, the electrical connector includes: a main side conductive terminal module, the main side conductive terminal module has a main side conductive terminal group, a main side conductive plastic jumper seat and a main side insulating plastic joint seat, wherein the main side conductive terminal group includes a first main side jumper conductive terminal, a second main side jumper conductive terminal and a main side non-jumper conductive terminal, the main side conductive plastic jumper seat crosses the main side non-jumper conductive terminal and electrically connects the first main side jumper conductive terminal and the second main side jumper conductive terminal, the main side insulating plastic joint seat engages the The main side conductive terminal group and the main side conductive plastic jumper seat form a main side conductive terminal module joint assembly; the primary side conductive terminal module, the secondary side conductive terminal module has a primary side conductive terminal group, a primary side conductive plastic jumper seat and a primary side insulating plastic joint seat, wherein the secondary side conductive terminal group includes a first side jumper conductive terminal, a second side jumper conductive terminal and a primary side non-jumper conductive terminal, the secondary side conductive plastic jumper seat crosses the secondary side non-jumper conductive terminal and electrically connects the first side jumper conductive terminal and the second side jumper conductive terminal, the secondary side insulating plastic joint seat joins the secondary side conductive terminal group and the secondary side conductive plastic jumper seat to form a A secondary side conductive terminal module joint component; a metal shielding module, the metal shielding module has a main side metal shielding wall, a primary side metal shielding wall and a metal shielding connecting body, wherein the metal shielding connecting body connects the main side metal shielding wall and the secondary side metal shielding wall to form a metal shielding component, so that the main side metal shielding wall and the secondary side metal shielding wall are electrically connected; and an electrical connector insulating rubber core, the electrical connector insulating rubber core has an electrical connector insulating rubber core support structure and an electrical connector insulating rubber core docking port, wherein the electrical connector insulating rubber core assembles the main side conductive terminal module joint component, the secondary side conductive terminal module joint component and the The metal shielding assembly allows the primary side conductive terminal group and the secondary side conductive terminal group to extend to the electrical connector insulating rubber core overlapping port respectively to provide overlapping with the signal transmission extension material to transmit signals. The electrical connector insulating rubber core support structure provides support for the metal shielding assembly, so that the primary side metal shielding wall and the secondary side metal shielding wall are respectively electrically connected to the primary side conductive plastic jumper and the secondary side conductive plastic jumper to transmit shielding signals, and the primary side metal shielding wall and the secondary side metal shielding wall extend on the sides of the primary side conductive terminal group and the secondary side conductive terminal group respectively to provide shielding for the primary side conductive terminal group and the secondary side conductive terminal group respectively.

[0014] Preferably, in the signal transmission component assembly of the present application, the signal transmission extension material is a circuit board, a conductive wire or a plug-in board.

[0015] Compared to the prior art, the present application provides a signal transmission component assembly and an electrical connector thereof, wherein the electrical connector is composed of at least an electrical connector insulating rubber core, a metal shielding wall, and a plurality of conductive terminal modules. The electrical connector insulating rubber core can provide support for the metal shielding wall, allowing the metal shielding wall to extend along the sides of the plurality of conductive terminal modules, thereby providing shielding for the plurality of conductive terminal modules, thereby reducing the degree of interference to the electrical connector during signal transmission, thereby meeting the requirements of electronic equipment for high-speed signal transmission. In addition, the plurality of conductive terminal modules can adjust the number and structure of the conductive terminals respectively. Therefore, after the electrical connector design is completed, the number and structure of the conductive terminals of the electrical connector can still be customized by adjusting the assembled plurality of conductive terminal modules to meet the requirements of electronic equipment for signal transmission. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 Shown is a perspective schematic diagram of a signal transmission component assembly of the present application at a first viewing angle in one embodiment.

[0017] Figure 2 Shown is a perspective schematic diagram of a signal transmission component assembly of the present application in a second viewing angle in one embodiment.

[0018] Figure 3 Shown is a front view schematic diagram of a signal transmission component assembly of the present application in one embodiment.

[0019] Figure 4 Display as Figure 3 The diagram shows a cross-sectional view of a portion of the signal transmission component assembly taken along line segment AA.

[0020] Figure 5 Display as Figure 3 The diagram shows a cross-sectional view of a portion of the signal transmission component assembly taken along line BB.

[0021] Figure 6 Shown is a rear view schematic diagram of a signal transmission component assembly of the present application in one embodiment.

[0022] Figure 7 Shown is a perspective schematic diagram of a signal transmission component assembly of the present application at a first viewing angle in one embodiment.

[0023] Figure 8 Shown is a perspective schematic diagram of a signal transmission component assembly of the present application in a second viewing angle in one embodiment.

[0024] Figure 9 Shown is a three-dimensional schematic diagram of some components of a signal transmission component assembly of the present application in one embodiment.

[0025] Figure 10 Shown is a three-dimensional schematic diagram of some components of a signal transmission component assembly of the present application in one embodiment.

[0026] Figure 11 Shown is a three-dimensional schematic diagram of some components of a signal transmission component assembly of the present application in one embodiment.

[0027] Figure 12 Shown is a three-dimensional schematic diagram of a main-side conductive terminal module of the present application in one embodiment.

[0028] Figure 13 Shown is a three-dimensional schematic diagram of a secondary-side conductive terminal module of the present application in one embodiment.

[0029] Figure 14 A first perspective schematic diagram of a signal transmission component assembly according to an embodiment of the present application is shown.

[0030] Figure 15 A first perspective schematic diagram of a signal transmission component assembly according to an embodiment of the present application is shown.

[0031] Figure 16 Shown is a cross-sectional schematic diagram of a signal transmission component assembly of the present application in one embodiment.

[0032] Figure 17 Shown is a cross-sectional schematic diagram of a signal transmission component assembly of the present application in one embodiment.

[0033] Component number description

[0034] 1 Signal transmission component assembly

[0035] 11 Electrical connector

[0036] 111 Main side conductive terminal module

[0037] 1111 Main side conductive terminal group

[0038] 11111 First main side jumper conductive terminal

[0039] 11112 Second main side jumper conductive terminal

[0040] 11113 Main side non-jump conductive terminal

[0041] 1112 Main side conductive plastic jumper

[0042] 11120 Main side conductive plastic jumper abutment

[0043] structure

[0044] 11121 First main side conductive plastic jumper

[0045] Clamping structure

[0046] 11122 Second main side conductive plastic jumper

[0047] Clamping structure

[0048] 1113 Main side insulation plastic joint seat

[0049] A1 Main side conductive terminal module joint group

[0050] pieces

[0051] 112 Secondary conductive terminal module

[0052] 1121 Secondary side conductive terminal group

[0053] 11211 First side-crossing conductive terminal

[0054] 11212 Second side crossover conductive terminal

[0055] 11213 Secondary side non-crossover conductive terminal

[0056] 1122 Secondary side conductive plastic jumper

[0057] 11220 Secondary side conductive plastic jumper abutment

[0058] structure

[0059] 11221 First side conductive plastic jumper

[0060] Clamping structure

[0061] 11222 Second side conductive plastic jumper

[0062] Clamping structure

[0063] 1123 Secondary side insulating plastic connector

[0064] A2 Secondary side conductive terminal module joint assembly

[0065] pieces

[0066] 13 Metal shielding module

[0067] 131 Main side metal shielding wall

[0068] 1310 Main side metal shielding wall embossed joint

[0069] Structure

[0070] 132 Secondary metal shielding wall

[0071] 1320 Secondary side metal shielding wall embossed joint

[0072] Structure

[0073] 133 Metal shielding connector

[0074] A3 Metal Shield Assembly

[0075] A31 Metal Shielding Assembly Channel

[0076] A32 Metal Shield Assembly Space

[0077] 14 Electrical connector insulation core

[0078] 141 Electrical connector insulation core support junction

[0079] Structure

[0080] 142 Electrical connector insulation rubber core connection port

[0081] 12 Signal transmission extension material

[0082] D Assembly direction

[0083] S1 electrical connector main side

[0084] S2 electrical connector secondary side DETAILED DESCRIPTION

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

[0086] The present application provides a signal transmission component assembly and an electrical connector therefor. The electrical connector is constructed from a plurality of conductive terminal modules. Therefore, after the design of the electrical connector is completed, the number and structure of the conductive terminals of the electrical connector can be customized by adjusting the plurality of assembled conductive terminal modules to meet the signal transmission requirements of electronic devices. Furthermore, the electrical connector includes a metal shielding wall that provides shielding between the plurality of conductive terminals used for signal transmission, thereby reducing the degree of interference experienced by the electrical connector during signal transmission and thereby meeting the high-speed signal transmission requirements of electronic devices.

[0087] For the technical concept of the electrical connector of this application, please refer to Figures 1 to 17 The embodiment of the invention is described below.

[0088] At Figures 1 to 17 The illustrated embodiment discloses at least one signal transmission component assembly 1, comprising a signal transmission extension member 12 and an electrical connector 11. The electrical connector 11 is defined by a primary side S1 and a secondary side S2. The electrical connector 11 includes a primary-side conductive terminal module 111, a primary-side conductive terminal module 112, a metal shielding module 13, and an electrical connector insulating rubber core 14.

[0089] Regarding the signal transmission extension material 12, the signal transmission extension material 12 can provide an extended signal transmission length. For example, the signal transmission extension material 12 is a circuit board (not shown), a conductive wire (such as Figures 16 and 17 As shown) or plug-in plate (as Figures 1 to 2 and Figure 4 shown).

[0090] Regarding the main-side conductive terminal module 111, the main-side conductive terminal module 111 has a main-side conductive terminal group 1111, a main-side conductive plastic jumper seat 1112, and a main-side insulating plastic joint seat 1113. In the above embodiment, the main-side conductive terminal group 1111 has a first main-side jumper conductive terminal 11111, a second main-side jumper conductive terminal 11112, and a main-side non-jumper conductive terminal 11113; the main-side conductive plastic jumper seat 1112 has a first main-side conductive plastic jumper seat clamping structure 11121 and a second main-side conductive plastic jumper seat clamping structure 11122. The main-side conductive plastic jumper seat 1112 spans the main-side non-jumper conductive terminal 11113, and the first main-side conductive plastic jumper seat clamping structure 11121 and the second main-side conductive plastic jumper seat clamping structure 11122. The first main side jumper conductive terminal 11111 and the second main side jumper conductive terminal 11112 are clamped and positioned respectively, so that the main side conductive plastic jumper seat 1112 can electrically connect the first main side jumper conductive terminal 11111 and the second main side jumper conductive terminal 11112; and the main side insulating plastic joint seat 1113 is engaged and positioned with the main side conductive terminal group 1111 and the main side conductive plastic jumper seat 1112, so that the main side insulating plastic joint seat 1113, the main side conductive terminal group 1111 and the main side conductive plastic jumper seat 1112 constitute a main side conductive terminal module joint assembly A1.

[0091] It should be noted that the first main-side jumper conductive terminal 11111 and the second main-side jumper conductive terminal 11112 can provide for transmitting a ground signal, and the number of the first main-side jumper conductive terminal 11111 and the second main-side jumper conductive terminal 11112 is not limited to one (that is, the number of the first main-side jumper conductive terminal 11111 and the second main-side jumper conductive terminal 11112 can be selected to be multiple). In addition, the main-side non-jumper conductive terminal 11113 can provide for transmitting a non-ground signal, such as a differential signal, and the number of the main-side non-jumper conductive terminal 11113 is not limited to one (that is, the number of the main-side non-jumper conductive terminal 11113 can be selected to be multiple).

[0092] Regarding the secondary conductive terminal module 112, the secondary conductive terminal module 112 has a primary conductive terminal group 1121, a primary conductive plastic jumper 1122, and a primary insulating plastic joint 1123. In the above embodiment, the secondary conductive terminal group 1121 includes a first side jumper conductive terminal 11211, a second side jumper conductive terminal 11212, and a primary side non-jumper conductive terminal 11213; the secondary side conductive plastic jumper 1122 has a first side conductive plastic jumper clamping structure 11221 and a second side conductive plastic jumper clamping structure 11222. The secondary side conductive plastic jumper 1122 spans the secondary side non-jumper conductive terminal 11213, and the first side conductive plastic jumper clamping structure 11221 and the second side conductive plastic jumper clamping structure 11222 are connected. The first main side jumper conductive terminal 11111 and the second main side jumper conductive terminal 11112 are clamped and positioned respectively, so that the main side conductive plastic jumper seat 1112 can electrically connect the first side jumper conductive terminal 11211 and the second side jumper conductive terminal 11212; and the secondary side insulating plastic joint seat 1123 is engaged and positioned with the secondary side conductive terminal group 1121 and the secondary side conductive plastic jumper seat 1122, so that the secondary side insulating plastic joint seat 1123, the secondary side conductive terminal group 1121 and the secondary side conductive plastic jumper seat 1122 constitute a primary side conductive terminal module joint assembly A2.

[0093] It should be noted that the first-side jumper conductive terminal 11211 and the second-side jumper conductive terminal 11212 can provide for transmitting ground signals, and the number of the first-side jumper conductive terminal 11211 and the second-side jumper conductive terminal 11212 is not limited to one (that is, the number of the first-side jumper conductive terminal 11211 and the second-side jumper conductive terminal 11212 can be selected to be multiple). In addition, the secondary-side non-jumper conductive terminal 11213 can provide for transmitting non-ground signals, such as differential signals, and the number of the secondary-side non-jumper conductive terminal 11213 is not limited to one (that is, the number of the secondary-side non-jumper conductive terminal 11213 can be selected to be multiple).

[0094] Regarding the metal shielding module 13, the metal shielding module 13 has a primary metal shielding wall 131, a primary metal shielding wall 132, and a metal shielding connector 133. In the above embodiment, the metal shielding connector 133 electrically connects the primary metal shielding wall 131 and the secondary metal shielding wall 132, so that the primary metal shielding wall 131 and the secondary metal shielding wall 132 are electrically connected, and the metal shielding connector 133, the primary metal shielding wall 131, and the secondary metal shielding wall 132 form a metal shielding assembly A3, wherein the metal shielding assembly A3 can transmit a shielding signal, such as a ground signal.

[0095] Regarding the electrical connector insulating rubber core 14 , the electrical connector insulating rubber core 14 has an electrical connector insulating rubber core supporting structure 141 and an electrical connector insulating rubber core connecting port 142 . In the above embodiment, the electrical connector insulating rubber core 14 can assemble the main side conductive terminal module joint component A1, the secondary side conductive terminal module joint component A2 and the metal shielding component A3 in a set direction D, so that the main side conductive terminal group 1111 and the secondary side conductive terminal group 1121 can be respectively located on the main side S1 of the electrical connector and the secondary side S2 of the electrical connector, and the main side conductive terminal group 1111 and the secondary side conductive terminal group 1121 can respectively extend to the electrical connector insulating rubber core jumper port 142 to provide jumpering of the signal transmission extension material 12 to transmit signals; the electrical connector insulating rubber core support structure 141 provides support for the metal shielding component A3, so that the main side metal shielding wall 131 and the secondary side metal shielding wall 132 are respectively electrically connected to the main side conductive plastic jumper seat 1112 and the secondary side conductive plastic jumper seat 1122 is used to transmit a shielding signal such as a ground signal, and the main side metal shielding wall 131 and the secondary side metal shielding wall 132 extend on the sides of the main side conductive terminal group 1111 and the secondary side conductive terminal group 1121 respectively. In this way, the metal shielding component A3 is located between the main side conductive terminal group 1111 and the secondary side conductive terminal group 1121, and can provide shielding for the main side conductive terminal group 1111 and the secondary side conductive terminal group 1121 respectively, so as to provide an electrical shielding environment for the signal transmission between the main side conductive terminal group 1111 and the secondary side conductive terminal group 1121, thereby reducing the interference of the electrical connector 11 when transmitting high-speed signals, and optimizing the transmission quality of the electrical connector 11 for high-speed signals, so as to meet the signal transmission requirements of electronic equipment for the electrical connector 11, so as to meet the special needs and development of electronic equipment.

[0096] At Figure 7In the illustrated embodiment, the metal shielding assembly A3 has a metal shielding assembly channel A31 and a metal shielding assembly space A32. Accordingly, the primary metal shielding wall 131 and the secondary metal shielding wall 132 are located lateral to the metal shielding assembly space A32. The metal shielding connector 133 is located longitudinally of the metal shielding assembly space A32. Therefore, the metal shielding assembly A3 is a U-shaped structure that spans the electrical connector insulating rubber core support structure 141. It should be noted that the electrical connector insulating rubber core support structure 141 can enter the metal shielding assembly space A32 via the metal shielding assembly channel A31 in the assembly direction D, allowing the electrical connector insulating rubber core support structure 141 to provide lateral support to the primary metal shielding wall 131 and the secondary metal shielding wall 132, respectively, and also to provide longitudinal support to the metal shielding connector 133.

[0097] The main side metal shielding wall 131 and the secondary side metal shielding wall 132 are located on the side of the metal shielding component assembly space A32, and the electrical connector insulating rubber core support structure 141 provides lateral support to the main side metal shielding wall 131 and the secondary side metal shielding wall 132 respectively; and the metal shielding connecting body 133 is located in the longitudinal direction of the metal shielding component assembly space A32, and the electrical connector insulating rubber core support structure 141 provides longitudinal support to the metal shielding connecting body 133.

[0098] At Figure 12 In the embodiment shown, the main side conductive plastic jumper 1112 has a main side conductive plastic jumper abutment structure 11120. In the main side conductive terminal module joint assembly A1, the main side conductive plastic jumper abutment structure 11120 exposes the main side insulating plastic joint 1113 to provide abutment against the main side metal shielding wall 131. Accordingly, the main side metal shielding wall 131 has a main side metal shielding wall embossed structure 1310. The main side metal shielding wall embossed structure 1310 provides abutment against the main side conductive plastic jumper 1112. In this way, it can be ensured that the main side metal shielding wall 131 is electrically connected to the main side conductive plastic jumper 1112.

[0099] In addition, the secondary side conductive plastic jumper 1122 has a primary side conductive plastic jumper abutment structure 11220. In the secondary side conductive terminal module joint assembly A2, the secondary side conductive plastic jumper abutment structure 11220 exposes the secondary side insulating plastic joint 1123 to provide abutment against the secondary side metal shielding wall 132. Accordingly, the secondary side metal shielding wall 132 has a primary side metal shielding wall embossed structure 1320. The secondary side metal shielding wall embossed structure 1320 provides abutment against the secondary side conductive plastic jumper 1122. In this way, it can be ensured that the secondary side metal shielding wall 132 is electrically connected to the secondary side conductive plastic jumper 1122.

[0100] In the above embodiment, the electrical connector 11 includes the primary-side conductive terminal module 111 and the secondary-side conductive terminal module 112, wherein the primary-side conductive terminal module 111 and the secondary-side conductive terminal module 112 can respectively adjust the number and structure of the conductive terminals. Therefore, after the design of the electrical connector 11 is completed, the number and structure of the conductive terminals of the electrical connector 11 can still be customized by adjusting the primary-side conductive terminal module 111 and the secondary-side conductive terminal module 112 to meet the signal transmission requirements of the electronic device for the electrical connector 11.

[0101] It should be noted that in the above-mentioned embodiment, some of the aforementioned components may be omitted. For example, in the present application, the electrical connector may optionally include: a primary-side conductive terminal module, a secondary-side conductive terminal module, a metal shielding module, and an electrical connector insulating rubber core. The primary-side conductive terminal module comprises a primary-side conductive terminal group, a primary-side conductive plastic jumper, and a primary-side insulating plastic joint seat, wherein the primary-side conductive terminal group comprises a first primary-side jumper conductive terminal, a second primary-side jumper conductive terminal, and a primary-side non-jumper conductive terminal. The primary-side conductive plastic jumper seat spans the primary-side non-jumper conductive terminal and electrically connects the first primary-side jumper conductive terminal and the second primary-side jumper conductive terminal. The primary-side insulating plastic joint seat joins the primary-side conductive terminal group and the primary-side conductive plastic jumper seat to form a primary-side conductive terminal module joint assembly. The secondary side conductive terminal module has a secondary side conductive terminal group, a secondary side conductive plastic jumper seat and a secondary side insulating plastic joint seat, wherein the secondary side conductive terminal group includes a first side jumper conductive terminal, a second side jumper conductive terminal and a secondary side non-jumper conductive terminal, the secondary side conductive plastic jumper seat crosses the secondary side non-jumper conductive terminal and electrically connects the first side jumper conductive terminal and the second side jumper conductive terminal, and the secondary side insulating plastic joint seat joins the secondary side conductive terminal group and the secondary side conductive plastic jumper seat to form a secondary side conductive terminal module joint assembly. The metal shielding module has a main side metal shielding wall, a secondary side metal shielding wall and a metal shielding connecting body, wherein the metal shielding connecting body connects the main side metal shielding wall and the secondary side metal shielding wall to form a metal shielding assembly, so that the main side metal shielding wall and the secondary side metal shielding wall are electrically connected; and the electrical connector insulating rubber core has an electrical connector insulating rubber core supporting structure, wherein the electrical connector insulating rubber core assembles the main side conductive terminal module joining assembly, the secondary side conductive terminal module joining assembly and the metal shielding assembly, and the electrical connector insulating rubber core supporting structure provides support for the metal shielding assembly, so that the main side metal shielding wall and the secondary side metal shielding wall are respectively electrically connected to the main side conductive plastic jumper and the secondary side conductive plastic jumper to transmit the shielding signal, and the main side metal shielding wall and the secondary side metal shielding wall extend on the sides of the main side conductive terminal group and the secondary side conductive terminal group respectively, and provide shielding for the main side conductive terminal group and the secondary side conductive terminal group respectively.

[0102] In addition, in the present application, the signal transmission component assembly may optionally include: a signal transmission extension material and an electrical connector. The electrical connector includes: a main-side conductive terminal module, a secondary-side conductive terminal module, a metal shielding module, and an electrical connector insulating rubber core. The main-side conductive terminal module has a main-side conductive terminal group, a main-side conductive plastic jumper seat, and a main-side insulating plastic joint seat, wherein the main-side conductive terminal group includes a first main-side jumper conductive terminal, a second main-side jumper conductive terminal, and a main-side non-jumper conductive terminal. The main-side conductive plastic jumper seat crosses the main-side non-jumper conductive terminal and electrically connects the first main-side jumper conductive terminal and the second main-side jumper conductive terminal. The main-side insulating plastic joint seat joins the main-side conductive terminal group and the main-side conductive plastic jumper seat to form a main-side conductive terminal module joint assembly. The secondary conductive terminal module comprises a secondary conductive terminal group, a secondary conductive plastic jumper, and a secondary insulating plastic joint. The secondary conductive terminal group includes a first-side jumper conductive terminal, a second-side jumper conductive terminal, and a secondary non-jumper conductive terminal. The secondary conductive plastic jumper crosses the secondary non-jumper conductive terminal to electrically connect the first-side jumper conductive terminal and the second-side jumper conductive terminal. The secondary insulating plastic joint joins the secondary conductive terminal group and the secondary conductive plastic jumper to form a secondary conductive terminal module joint assembly. The metal shielding module comprises a primary metal shielding wall, a secondary metal shielding wall, and a metal shielding connector. The metal shielding connector connects the primary metal shielding wall and the secondary metal shielding wall to form a metal shielding assembly, electrically connecting the primary metal shielding wall and the secondary metal shielding wall. The insulating rubber core of the electrical connector has an insulating rubber core support structure and an insulating rubber core lap port of the electrical connector, wherein the insulating rubber core of the electrical connector assembles a main side conductive terminal module joint component, a secondary side conductive terminal module joint component and a metal shielding component, so that the main side conductive terminal group and the secondary side conductive terminal group are respectively extended to the insulating rubber core lap port of the electrical connector to provide lap signal transmission extension materials to transmit signals. The insulating rubber core support structure of the electrical connector provides support for the metal shielding component, so that the main side metal shielding wall and the secondary side metal shielding wall are respectively electrically connected to the main side conductive plastic jumper and the secondary side conductive plastic jumper to transmit shielding signals, and the main side metal shielding wall and the secondary side metal shielding wall extend on the sides of the main side conductive terminal group and the secondary side conductive terminal group respectively, and provide shielding for the main side conductive terminal group and the secondary side conductive terminal group respectively.

[0103] In summary, the present application provides a signal transmission component assembly and an electrical connector thereof, wherein the electrical connector is composed of at least an electrical connector insulating rubber core, a metal shielding wall, and a plurality of conductive terminal modules. The electrical connector insulating rubber core can provide support for the metal shielding wall, so that the metal shielding wall can extend along the sides of the plurality of conductive terminal modules, thereby providing shielding for the plurality of conductive terminal modules, thereby reducing the degree of interference to the electrical connector when transmitting signals, thereby meeting the requirements of electronic equipment for high-speed signal transmission. In addition, the plurality of conductive terminal modules can adjust the number and structure of the conductive terminals respectively. Therefore, after the design of the electrical connector is completed, the number and structure of the conductive terminals of the electrical connector can still be customized by adjusting the assembled plurality of conductive terminal modules to meet the requirements of electronic equipment for signal transmission.

[0104] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Anyone skilled in the art may modify or alter the above embodiments without departing from the spirit and scope of this application. Therefore, the scope of protection of this application shall be as set forth in the claims of this application.

Claims

1. An electrical connector, characterized in that: The electrical connector comprises: A main-side conductive terminal module, comprising a main-side conductive terminal group, a main-side conductive plastic jumper seat, and a main-side insulating plastic joint seat, wherein the main-side conductive terminal group includes a first main-side jumper conductive terminal, a second main-side jumper conductive terminal, and a main-side non-jumper conductive terminal, the main-side conductive plastic jumper seat spans the main-side non-jumper conductive terminal and electrically connects the first main-side jumper conductive terminal and the second main-side jumper conductive terminal, and the main-side insulating plastic joint seat joins the main-side conductive terminal group and the main-side conductive plastic jumper seat to form a main-side conductive terminal module joint assembly; A primary-side conductive terminal module, the secondary-side conductive terminal module comprising a primary-side conductive terminal group, a primary-side conductive plastic jumper seat, and a primary-side insulating plastic joint seat, wherein the secondary-side conductive terminal group comprises a first-side jumper conductive terminal, a second-side jumper conductive terminal, and a primary-side non-jumper conductive terminal, the secondary-side conductive plastic jumper seat spans the secondary-side non-jumper conductive terminal and electrically connects the first-side jumper conductive terminal and the second-side jumper conductive terminal, and the secondary-side insulating plastic joint seat joins the secondary-side conductive terminal group and the secondary-side conductive plastic jumper seat to form a primary-side conductive terminal module joint assembly; a metal shielding module comprising a primary metal shielding wall, a primary metal shielding wall, and a metal shielding connector, wherein the metal shielding connector connects the primary metal shielding wall and the secondary metal shielding wall to form a metal shielding assembly, electrically connecting the primary metal shielding wall and the secondary metal shielding wall; and An electrical connector insulating rubber core, the electrical connector insulating rubber core having an electrical connector insulating rubber core support structure, wherein the electrical connector insulating rubber core assembles the main side conductive terminal module joint component, the secondary side conductive terminal module joint component and the metal shielding component, the electrical connector insulating rubber core support structure provides support for the metal shielding component, so that the main side metal shielding wall and the secondary side metal shielding wall are respectively electrically connected to the main side conductive plastic jumper and the secondary side conductive plastic jumper to transmit shielding signals, and the main side metal shielding wall and the secondary side metal shielding wall extend on the sides of the main side conductive terminal group and the secondary side conductive terminal group respectively, and provide shielding for the main side conductive terminal group and the secondary side conductive terminal group respectively.

2. The electrical connector according to claim 1, wherein: The main side conductive plastic jumper seat has a first main side conductive plastic jumper seat clamping structure and a second main side conductive plastic jumper seat clamping structure, the first main side conductive plastic jumper seat clamping structure and the second main side conductive plastic jumper seat clamping structure respectively clamp and position the first main side jumper conductive terminal and the second main side jumper conductive terminal; and the secondary side conductive plastic jumper seat has a first side conductive plastic jumper seat clamping structure and a second side conductive plastic jumper seat clamping structure, the first side conductive plastic jumper seat clamping structure and the second side conductive plastic jumper seat clamping structure respectively clamp and position the first side jumper conductive terminal and the second side jumper conductive terminal.

3. The electrical connector according to claim 1, wherein: The metal shielding component is a U-shaped structure arranged across the insulating rubber core supporting structure of the electrical connector.

4. The electrical connector according to claim 1, wherein: The electrical connector insulating rubber core assembles the primary-side conductive terminal module joint component, the secondary-side conductive terminal module joint component and the metal shielding component in a set direction.

5. The electrical connector according to claim 4, wherein: The metal shielding component has a metal shielding component assembly channel and a metal shielding component assembly space. The electrical connector insulating rubber core supporting structure can enter the metal shielding component assembly space through the metal shielding component assembly channel in the assembly direction.

6. The electrical connector according to claim 5, wherein: The main side metal shielding wall and the secondary side metal shielding wall are located on the side of the metal shielding component assembly space, and the electrical connector insulating rubber core support structure provides lateral support to the main side metal shielding wall and the secondary side metal shielding wall respectively; and the metal shielding connecting body is located in the longitudinal direction of the metal shielding component assembly space, and the electrical connector insulating rubber core support structure provides longitudinal support to the metal shielding connecting body.

7. The electrical connector according to claim 1, wherein: The main side conductive plastic jumper has a main side conductive plastic jumper abutment structure. In the main side conductive terminal module joint assembly, the main side conductive plastic jumper abutment structure exposes the main side insulating plastic joint to provide abutment against the main side metal shielding wall; and the secondary side conductive plastic jumper has a primary side conductive plastic jumper abutment structure. In the secondary side conductive terminal module joint assembly, the secondary side conductive plastic jumper abutment structure exposes the secondary side insulating plastic joint to provide abutment against the secondary side metal shielding wall.

8. The electrical connector according to claim 1, wherein: The main side metal shielding wall has a main side metal shielding wall embossed structure, and the main side metal shielding wall embossed structure provides abutment against the main side conductive plastic jumper; and the secondary side metal shielding wall has a primary side metal shielding wall embossed structure, and the secondary side metal shielding wall embossed structure provides abutment against the secondary side conductive plastic jumper.

9. A signal transmission component assembly, characterized in that: The signal transmission component assembly includes: a signal transmission extension material; and An electrical connector, comprising: A main-side conductive terminal module, comprising a main-side conductive terminal group, a main-side conductive plastic jumper seat, and a main-side insulating plastic joint seat, wherein the main-side conductive terminal group includes a first main-side jumper conductive terminal, a second main-side jumper conductive terminal, and a main-side non-jumper conductive terminal, the main-side conductive plastic jumper seat spans the main-side non-jumper conductive terminal and electrically connects the first main-side jumper conductive terminal and the second main-side jumper conductive terminal, and the main-side insulating plastic joint seat joins the main-side conductive terminal group and the main-side conductive plastic jumper seat to form a main-side conductive terminal module joint assembly; A primary-side conductive terminal module, the secondary-side conductive terminal module comprising a primary-side conductive terminal group, a primary-side conductive plastic jumper seat, and a primary-side insulating plastic joint seat, wherein the secondary-side conductive terminal group comprises a first-side jumper conductive terminal, a second-side jumper conductive terminal, and a primary-side non-jumper conductive terminal, the secondary-side conductive plastic jumper seat spans the secondary-side non-jumper conductive terminal and electrically connects the first-side jumper conductive terminal and the second-side jumper conductive terminal, and the secondary-side insulating plastic joint seat joins the secondary-side conductive terminal group and the secondary-side conductive plastic jumper seat to form a primary-side conductive terminal module joint assembly; a metal shielding module comprising a primary metal shielding wall, a primary metal shielding wall, and a metal shielding connector, wherein the metal shielding connector connects the primary metal shielding wall and the secondary metal shielding wall to form a metal shielding assembly, electrically connecting the primary metal shielding wall and the secondary metal shielding wall; and An electrical connector insulating rubber core, the electrical connector insulating rubber core having an electrical connector insulating rubber core support structure and an electrical connector insulating rubber core overlapping port, wherein the electrical connector insulating rubber core assembles the main side conductive terminal module joint component, the secondary side conductive terminal module joint component and the metal shielding component, so that the main side conductive terminal group and the secondary side conductive terminal group respectively extend to the electrical connector insulating rubber core overlapping port to provide overlapping with the signal transmission extension material to transmit signals, the electrical connector insulating rubber core support structure provides support for the metal shielding component, so that the main side metal shielding wall and the secondary side metal shielding wall are respectively electrically connected to the main side conductive plastic jumper and the secondary side conductive plastic jumper to transmit shielding signals, and the main side metal shielding wall and the secondary side metal shielding wall extend on the sides of the main side conductive terminal group and the secondary side conductive terminal group respectively, and provide shielding for the main side conductive terminal group and the secondary side conductive terminal group respectively.

10. The signal transmission component assembly according to claim 9, characterized in that: The signal transmission extension material is a circuit board, a conductive wire or a plug-in board.