Electrical connectors

By combining multiple electrical connector components and a conductive plastic base shielding structure, the problems of customized adjustment and interference of electrical connectors are solved, thus meeting the signal transmission requirements of electronic devices.

CN224438040UActive Publication Date: 2026-06-30TARNG YU ENTERPRISE +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TARNG YU ENTERPRISE
Filing Date
2025-05-16
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Once the existing electrical connector design is completed, the number and structure of the conductive terminals cannot be customized, making it difficult to meet the signal transmission requirements of electronic devices, and they are easily subject to interference when transmitting high-speed signals.

Method used

Electrical connectors are composed of multiple components, allowing for adjustments to the number and structure of conductive terminals after the design is completed, and providing shielding through a conductive plastic base to reduce interference.

Benefits of technology

Customized adjustments to electrical connectors were achieved to meet the signal transmission requirements of electronic devices and reduce interference during high-speed signal transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses an electrical connector composed of multiple electrical connector components. Therefore, after the electrical connector design is completed, the number and structure of the conductive terminals of the connector can still be customized by adjusting the combined multiple electrical connector components to meet the signal transmission requirements of electronic devices. Furthermore, the electrical connector has a conductive plastic base that extends near the conductive terminals used for signal transmission to provide shielding, effectively reducing the degree of interference experienced by the electrical connector during signal transmission, thereby meeting the high-speed signal transmission requirements of electronic devices.
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Description

Technical Field

[0001] This application relates to the field of electronic device technology, and in particular to an electrical connector that allows for customized adjustment of the number and structure of conductive terminals and reduces signal interference. Background Technology

[0002] In recent years, electrical connectors have been widely used in various electronic devices to transmit signals via multiple conductive terminals. Due to the specific needs and development of electronic devices, the number and structure of conductive terminals in electrical connectors are required to be customizable. However, once the current electrical connector design is completed, the number and structure of conductive terminals are fixed and cannot be customized, making it difficult to meet the signal transmission requirements of electronic devices. This limits the technological or functional development of electronic devices.

[0003] In addition, multiple conductive terminals of electrical connectors may require the transmission of high-speed signals. Currently, electrical connectors are susceptible to interference when transmitting high-speed signals (such as electromagnetic interference from the external environment or crosstalk interference coupled between multiple conductive terminals of the electrical connector), which can cause interference attenuation of the high-speed signals transmitted by the electrical connector.

[0004] As can be seen from the above, how to customize the number and structure of conductive terminals of electrical connectors and solve the problem that electrical connectors are easily interfered with when transmitting high-speed signals is a problem that people in this technical field urgently need to solve. Summary of the Invention

[0005] In view of the shortcomings of the prior art, this application provides an electrical connector, wherein the two sides of the electrical connector are a main side and a secondary side, respectively. The electrical connector includes: a main side electrical connector component having a main side electrical connector component body and a main side electrical connector component assembly structure; a secondary side electrical connector component having a primary side electrical connector component body and a primary side electrical connector component assembly structure; and an electrical connector insulating shell, the electrical connector insulating shell having a main side electrical connector insulating shell assembly guide structure, a primary side electrical connector insulating shell assembly guide structure, a main side electrical connector insulating shell assembly space, a primary side electrical connector insulating shell assembly space, and an electrical connector insulating shell assembly wall. The main side electrical connector insulating shell assembly space is located on the main side of the electrical connector, and the secondary side electrical connector insulating shell assembly space is located on the secondary side of the electrical connector. An insulating housing assembly wall separates the main-side electrical connector insulating housing assembly space from the secondary-side electrical connector insulating housing assembly space, and the electrical connector insulating housing assembly wall has a main-side electrical connector insulating housing assembly structure and a primary-side electrical connector insulating housing assembly structure; wherein, the main-side electrical connector insulating housing assembly guide structure can guide the main-side electrical connector component body into the main-side electrical connector insulating housing assembly space, so that the main-side electrical connector component assembly structure can cooperate with the main-side electrical connector insulating housing assembly structure to assemble the main-side electrical connector component into the electrical connector insulating housing; and the secondary-side electrical connector insulating housing assembly guide structure can guide the secondary-side electrical connector component body into the secondary-side electrical connector insulating housing assembly space, so that the secondary-side electrical connector component assembly structure can cooperate with the secondary-side electrical connector insulating housing assembly structure to assemble the main-side electrical connector component into the electrical connector insulating housing.

[0006] In one embodiment of the electrical connector of this application, the main-side electrical connector component assembly structure and the main-side electrical connector insulating shell assembly structure are structurally mating concave-convex structures, while the secondary-side electrical connector component assembly structure and the secondary-side electrical connector insulating shell assembly structure are structurally mating concave-convex structures.

[0007] In one embodiment of the electrical connector of this application, the insulating shell assembly structure of the primary electrical connector and the insulating shell assembly structure of the secondary electrical connector are dovetail groove structures.

[0008] In one embodiment of the electrical connector of this application, the main-side electrical connector component further comprises: a main-side conductive terminal group, the main-side conductive terminal group having a first main-side grounded conductive terminal, a second main-side grounded conductive terminal and a main-side ungrounded conductive terminal; and a main-side conductive plastic base, the main-side conductive plastic base having a first main-side conductive plastic base grounded terminal engagement structure, a second main-side conductive plastic base grounded terminal engagement structure and a main-side conductive plastic base shielding structure, wherein the first main-side conductive plastic base grounded terminal engagement structure and the second main-side conductive plastic base grounded terminal engagement structure... The first main-side grounding conductive terminal and the second main-side grounding conductive terminal are respectively connected to form a main-side grounding conductive module by electrically connecting the main-side conductive plastic base to the first and second main-side grounding conductive terminals; and a main-side insulating core has a main-side insulating core non-grounded terminal connection structure and a main-side insulating core grounding conductive module connection structure. The main-side insulating core non-grounded terminal connection structure is connected to the main-side non-grounding conductive terminal, and the main-side insulating core grounding conductive module connection structure is connected to... The main-side grounding conductive module comprises a main-side electrical connector sub-component consisting of the main-side insulating core, the main-side non-grounded conductive terminal, and the main-side grounding conductive module. In the main-side electrical connector sub-component, the main-side conductive plastic base shielding structure extends near the main-side non-grounded conductive terminal to provide shielding for the main-side non-grounded conductive terminal. The secondary-side electrical connector component further comprises: a primary-side conductive terminal group, which has a primary-side grounding conductive terminal, a secondary-side grounding conductive terminal, and a primary-side non-grounded conductive terminal; and a primary-side conductive plastic base, which has a primary-side conductive plastic base grounding terminal joining structure, a secondary-side conductive plastic base grounding terminal joining structure, and a primary-side conductive plastic base shielding structure. The primary-side conductive plastic base grounding terminal joining structure and the secondary-side conductive plastic base grounding terminal joining structure respectively join the primary-side grounding conductive terminal and the secondary-side grounding conductive terminal, thereby establishing an electrical connection between the secondary-side conductive plastic base and the primary-side grounding conductive terminal and the secondary-side grounding conductive terminal to form a primary-side grounding conductive module.The device includes a primary-side insulating core, which has a non-grounded terminal connection structure and a grounded conductive module connection structure. The non-grounded terminal connection structure connects to the non-grounded conductive terminal, while the grounded conductive module connection structure connects to the grounded conductive module. This allows the primary-side insulating core, the non-grounded conductive terminal, and the grounded conductive module to form a primary-side electrical connector sub-component. Within this sub-component, a secondary-side conductive plastic base shielding structure extends near the non-grounded conductive terminal to provide shielding. The primary-side electrical connector insulating shell assembly guides the primary-side insulating core into the primary-side electrical connector insulating shell assembly space. The secondary-side electrical connector insulating shell assembly guides the secondary-side insulating core into the secondary-side electrical connector insulating shell assembly space.

[0009] In one embodiment of the electrical connector of this application, the main-side electrical connector component assembly structure is disposed on the main-side insulating core, and the secondary-side electrical connector component assembly structure is disposed on the secondary-side insulating core.

[0010] In one embodiment of the electrical connector of this application, the main-side electrical connector component assembly structure is disposed on the main-side conductive plastic base, and the secondary-side electrical connector component assembly structure is disposed on the secondary-side conductive plastic base.

[0011] In one embodiment of the electrical connector of this application, the insulating housing assembly wall of the electrical connector further separates the primary conductive plastic seat from the secondary conductive plastic seat.

[0012] Compared to existing technologies, the electrical connector provided in this application is composed of multiple electrical connector components. Therefore, after the electrical connector design is completed, the number and structure of the conductive terminals of the connector can still be customized by adjusting the combined multiple electrical connector components to meet the signal transmission requirements of electronic devices. Furthermore, the electrical connector has a conductive plastic base that extends near the conductive terminals used for signal transmission to provide shielding, effectively reducing the degree of interference experienced by the connector during signal transmission, thereby meeting the high-speed signal transmission requirements of electronic devices. Attached Figure Description

[0013] The application drawings, in conjunction with the following description of embodiments, will make the features and other advantages of this application clearer.

[0014] Figure 1 The diagram shown is a first-view perspective perspective of an embodiment of the electrical connector of this application.

[0015] Figure 2 The diagram shown is a second-view perspective perspective of an embodiment of the electrical connector of this application.

[0016] Figure 3 The diagram shown is a third-view perspective view of an embodiment of the electrical connector of this application.

[0017] Figure 4 The diagram shown is a side view of an embodiment of the electrical connector of this application.

[0018] Figure 5 Displayed as Figure 4 The diagram shows a cross-section of a portion of the electrical connector cut along line segment AA.

[0019] Figure 6 Displayed as Figure 5 The diagram shows a cross-sectional view of a portion of the electrical connector cut along line segment BB.

[0020] Figure 7 The diagram shown is a first-view perspective perspective of an embodiment of the electrical connector of this application.

[0021] Figure 8 The diagram shown is a second-view perspective perspective of an embodiment of the electrical connector of this application.

[0022] Figure 9 The diagram shown is a third-view perspective view of an embodiment of the electrical connector of this application.

[0023] Figure 10 The diagram shown is a cross-sectional schematic of a portion of the components of the electrical connector of this application in one embodiment.

[0024] Figure 11 The diagram shows a first-view perspective of a portion of the components of the electrical connector of this application in one embodiment.

[0025] Figure 12 A second-view perspective perspective view of a portion of the components of the electrical connector of this application in one embodiment.

[0026] Figure 13 A third-view perspective perspective view of a portion of the components of the electrical connector of this application in one embodiment.

[0027] Component symbol explanation:

[0028] 1 Electrical connector

[0029] S1 electrical connector main side

[0030] S2 electrical connector secondary side

[0031] 11 Main side electrical connector components

[0032] 110 Main Side Electrical Connector Component Body

[0033] 111 Main-side electrical connector component assembly structure

[0034] 12th side electrical connector components

[0035] 120-side electrical connector component body

[0036] 121st side electrical connector component assembly structure

[0037] 13 Electrical Connector Insulating Housing

[0038] 131 Main-side electrical connector insulating shell assembly guide structure

[0039] 132nd side electrical connector insulating shell assembly guide structure

[0040] 133 Main-side electrical connector insulating housing assembly space

[0041] 134th side electrical connector insulating housing assembly space

[0042] 135 electrical connector insulating housing assembly wall

[0043] 1351 Main Side Electrical Connector Insulating Housing Assembly Structure

[0044] 1352 secondary side electrical connector insulating shell assembly structure

[0045] 112 Main side conductive terminal group

[0046] 1121 First main side grounding conductive terminal

[0047] 1122 Second main side grounding conductive terminal

[0048] 1123 Main side non-grounded conductive terminal

[0049] 113 Main side conductive plastic base

[0050] 1131 First Main Side Conductive Plastic Base Grounding Terminal Connection Structure

[0051] 1132 Second Main Side Conductive Plastic Base Grounding Terminal Connection Structure

[0052] 1133 Main-side conductive plastic base shielding structure

[0053] M1 Main Side Grounding Conductive Module

[0054] 114 Main Side Insulating Core

[0055] 1141 Main side insulating core non-grounded terminal connection structure

[0056] 1142 Main Side Insulating Core Grounding Conductive Module Connection Structure

[0057] O1 Main Side Electrical Connector Component

[0058] 122 secondary conductive terminal group

[0059] 1221 First-side grounding conductive terminal

[0060] 1222 Secondary side grounding conductive terminal

[0061] 1223 Secondary ungrounded conductive terminal

[0062] 123 Secondary conductive plastic base

[0063] 1231 First-side conductive plastic base grounding terminal connection structure

[0064] 1232 Secondary Side Conductive Plastic Base Grounding Terminal Connection Structure

[0065] 1233rd side conductive plastic base shielding structure

[0066] M2 secondary grounding conductive module

[0067] 124th side insulating core

[0068] 1241 Sub-side Insulating Core Non-Grounded Terminal Connection Structure

[0069] 1242nd side insulating core grounding conductive module joint structure

[0070] O2 secondary electrical connector sub-component Detailed Implementation

[0071] The following specific embodiments illustrate the implementation of this application. Those skilled in the art can easily understand the advantages and technical effects of this application from the content disclosed in this specification. In the following description, some embodiments may be referenced to the accompanying drawings. It should be understood that other embodiments not shown in the drawings may also be used, and changes in specific structures, parts or mechanisms, components, and operations may be made without departing from the spirit and scope of this application. The following detailed description should not be considered limiting, and the scope of the embodiments of this application is limited only by the claims published in this application. The terminology used herein is for describing particular embodiments only and is not intended to limit this application.

[0072] The electrical connector of this application is composed of multiple electrical connector components. Each of the multiple electrical connector components can be coupled with a predetermined number and structure of conductive terminals. Therefore, after the electrical connector design is completed, the number and structure of conductive terminals of the electrical connector can still be customized by adjusting the combination of multiple electrical connector components to meet the signal transmission requirements of electronic devices.

[0073] In addition, the electrical connector provided in this application has a conductive plastic base that can extend near the conductive terminals used for signal transmission to provide shielding, thereby effectively reducing the degree of interference to the electrical connector when transmitting signals, and thus meeting the signal transmission requirements of electronic devices.

[0074] For the technical concept of the electrical connector in this application, please refer to the following: Figures 1 to 13 The following is an example description.

[0075] At Figures 1 to 13 In the illustrated embodiment, at least one electrical connector 1 is disclosed. The two sides of the electrical connector 1 are a main side S1 and a secondary side S2, respectively, and the electrical connector 1 includes: a main side electrical connector component 11, a secondary side electrical connector component 12, and an electrical connector insulating shell 13.

[0076] Regarding the main-side electrical connector component 11, the main-side electrical connector component 11 has a main-side electrical connector component body 110, a main-side electrical connector component assembly structure 111, a main-side conductive terminal group 112, a main-side conductive plastic base 113, and a main-side insulating core 114.

[0077] The main-side conductive terminal group 112 has a first main-side grounded conductive terminal 1121, a second main-side grounded conductive terminal 1122, and a main-side ungrounded conductive terminal 1123.

[0078] It should be noted that the first main-side grounding conductive terminal 1121 and the second main-side grounding conductive terminal 1122 can provide a grounding signal, and the number of the first main-side grounding conductive terminal 1121 and the second main-side grounding conductive terminal 1122 is not limited to one (that is, the number of the first main-side grounding conductive terminal 1121 and the second main-side grounding conductive terminal 1122 can be selected as multiple). In addition, the main-side non-grounded conductive terminal 1123 can provide a non-grounded signal for transmitting, for example, a differential signal, and the number of the main-side non-grounded conductive terminal 1123 is not limited to one (that is, the number of the main-side non-grounded conductive terminal 1123 can be selected as multiple).

[0079] The main conductive plastic base 113 has a first main conductive plastic base grounding terminal connection structure 1131, a second main conductive plastic base grounding terminal connection structure 1132, and a main conductive plastic base shielding structure 1133. The first main conductive plastic base grounding terminal connection structure 1131 and the second main conductive plastic base grounding terminal connection structure 1132 respectively connect to the first main grounding conductive terminal 1121 and the second main grounding conductive terminal 1122, thereby establishing an electrical connection between the main conductive plastic base 113 and the first and second main grounding conductive terminals 1121 and 1122, thus forming a main grounding conductive module M1. It should be noted that the main grounding conductive module M1 can transmit, for example, a shielding signal such as a grounding signal, thereby providing shielding to meet the signal transmission requirements of the electronic device for the electrical connector 1.

[0080] The main insulating core 114 has a main insulating core non-grounded terminal connection structure 1141 and a main insulating core grounded conductive module connection structure 1142. The main insulating core non-grounded terminal connection structure 1141 connects to the main non-grounded conductive terminal 1123, while the main insulating core grounded conductive module connection structure 1142 connects to the main grounded conductive module M1, so that the main insulating core 114, the main non-grounded conductive terminal 1123, and the main grounded conductive module M1 constitute a main electrical connector sub-component O1. In the main electrical connector sub-component O1, the main conductive plastic base shielding structure 1133 can extend near the main non-grounded conductive terminal 1123 to provide a shielding environment for the main non-grounded conductive terminal 1123, thereby reducing interference to the electrical connector 1 when transmitting high-speed signals, and thus optimizing the transmission quality of the electrical connector 1 for high-speed signals to meet the special needs and development of electronic equipment.

[0081] Regarding the secondary electrical connector component 12, the secondary electrical connector component 12 has a primary electrical connector component body 120, a primary electrical connector component assembly structure 121, a primary conductive terminal group 122, a primary conductive plastic base 123, and a primary insulating core 124.

[0082] The secondary conductive terminal group 122 has a primary grounded conductive terminal 1221, a secondary grounded conductive terminal 1222, and a primary ungrounded conductive terminal 1223.

[0083] It should be noted that the first-side grounding conductive terminal 1221 and the second-side grounding conductive terminal 1222 can provide a grounding signal, and the number of the first-side grounding conductive terminal 1221 and the second-side grounding conductive terminal 1222 is not limited to one (that is, the number of the first-side grounding conductive terminal 1221 and the second-side grounding conductive terminal 1222 can be selected as multiple). In addition, the second-side ungrounded conductive terminal 1223 can provide a non-grounded signal for transmitting, for example, a differential signal, and the number of the second-side ungrounded conductive terminal 1223 is not limited to one (that is, the number of the second-side ungrounded conductive terminal 1223 can be selected as multiple).

[0084] Regarding the secondary conductive plastic base 123, the secondary conductive plastic base 123 has a primary conductive plastic base grounding terminal connection structure 1231, a secondary conductive plastic base grounding terminal connection structure 1232, and a primary conductive plastic base shielding structure 1233. The primary conductive plastic base grounding terminal connection structure 1231 and the secondary conductive plastic base grounding terminal connection structure 1232 respectively connect to the primary grounding conductive terminal 1221 and the secondary grounding conductive terminal 1222, so that the secondary conductive plastic base 123 is electrically connected to the primary grounding conductive terminal 1221 and the secondary grounding conductive terminal 1222 to form a primary grounding conductive module M2. It should be noted that the secondary grounding conductive module M2 can transmit, for example, a shielding signal such as a grounding signal, thereby providing shielding to meet the signal transmission requirements of the electronic device for the electrical connector 1.

[0085] The secondary insulating core 124 has a primary insulating core non-grounded terminal joining structure 1241 and a primary insulating core grounded conductive module joining structure 1242. The secondary insulating core non-grounded terminal joining structure 1241 joins the secondary non-grounded conductive terminal 1223, and the secondary insulating core grounded conductive module joining structure 1242 joins the secondary grounded conductive module M2. The secondary insulating core 124, the secondary non-grounded conductive terminal 1223, and the secondary grounded conductive module M2 constitute a primary electrical connector sub-component O2. In the secondary electrical connector sub-component O2, the secondary conductive plastic seat shielding structure 1233 can extend near the secondary non-grounded conductive terminal 1223 to provide a shielding environment for the secondary non-grounded conductive terminal 1223, thereby reducing interference to 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.

[0086] Regarding the electrical connector insulating shell 13, the electrical connector insulating shell 13 has a main-side electrical connector insulating shell assembly guide structure 131, a primary-side electrical connector insulating shell assembly guide structure 132, a main-side electrical connector insulating shell assembly space 133, a primary-side electrical connector insulating shell assembly space 134, and an electrical connector insulating shell assembly wall 135. The main-side electrical connector insulating shell assembly space 133 is located on the main side S1 of the electrical connector, and the secondary-side electrical connector insulating shell assembly space 134 is located on the secondary side S2 of the electrical connector. The electrical connector insulating shell assembly wall 135 separates the main-side electrical connector insulating shell assembly space 133 and the secondary-side electrical connector insulating shell assembly space 134, and the electrical connector insulating shell assembly wall 135 has a main-side electrical connector insulating shell assembly structure 1351 and a primary-side electrical connector insulating shell assembly structure 1352.

[0087] At Figure 8 In the illustrated embodiment, the primary electrical connector insulating shell assembly structure 1351 and the secondary electrical connector insulating shell assembly structure 1352 are dovetail groove structures. Furthermore, the primary electrical connector component assembly structure 111 may be disposed on the primary insulating core 114, and the secondary electrical connector component assembly structure 121 may be disposed on the secondary insulating core 124. However, this is not a limitation. For example, the primary electrical connector component assembly structure 111 may also be disposed on the primary conductive plastic base 113, and the secondary electrical connector component assembly structure 121 may also be disposed on the secondary conductive plastic base 123.

[0088] It should be noted that, in the above embodiments, the main-side electrical connector insulating shell assembly guide structure 131 can guide the main-side electrical connector component body 110 or the main-side insulating core 114 into the main-side electrical connector insulating shell assembly space 133, and the main-side electrical connector component assembly structure 111 and the main-side electrical connector insulating shell assembly structure 1351 are a concave-convex structure that fits together, so that the main-side electrical connector component assembly structure 111 can fit with the main-side electrical connector insulating shell assembly structure 1351, and assemble the main-side electrical connector component 11 into the electrical connector insulating shell 13. The secondary electrical connector insulating shell assembly guide structure 132 can guide the secondary electrical connector component body 120 or the secondary insulating core 124 into the secondary electrical connector insulating shell assembly space 134. The secondary electrical connector component assembly structure 121 and the secondary electrical connector insulating shell assembly structure 1352 are a concave-convex structure that fits together, so that the secondary electrical connector component assembly structure 121 can fit with the secondary electrical connector insulating shell assembly structure 1352 to assemble the primary electrical connector component 11 into the electrical connector insulating shell 13.

[0089] It should be noted that, because the main-side electrical connector component assembly structure 111 and the main-side electrical connector insulating shell assembly structure 1351 have a convex-concave structure with structural cooperation, the main-side electrical connector component 11 and the insulating shell assembly wall 135 partially overlap, thereby reducing the size of the electrical connector 1 and allowing electronic devices using the electrical connector 1 to continue to develop in a thinner and smaller direction. Furthermore, because the secondary-side electrical connector component assembly structure 121 and the secondary-side electrical connector insulating shell assembly structure 1352 have a convex-concave structure with structural cooperation, the secondary-side electrical connector component 12 and the insulating shell assembly wall 135 partially overlap, thereby reducing the size of the electrical connector 1 and allowing electronic devices using the electrical connector 1 to continue to develop in a thinner and smaller direction.

[0090] At Figures 5 to 6 In the embodiment shown, the electrical connector insulating housing assembly wall 135 further separates the primary conductive plastic base 113 from the secondary conductive plastic base 123 to meet the requirements of the electronic device for the electrical connector 1.

[0091] It should be noted that, in the above embodiments, the electrical connector 1 is composed of a plurality of components including the main side electrical connector component 11 and the secondary side electrical connector component 12. The main side electrical connector component 11 and the secondary side electrical connector component 12 can respectively engage a predetermined number and structure of conductive terminals. Therefore, after the electrical connector 1 is designed, the number and structure of conductive terminals of the electrical connector 1 can still be customized by adjusting the main side electrical connector component 11 and the secondary side electrical connector component 12 to meet the signal transmission requirements of electronic devices.

[0092] It should be noted that, in the above embodiments, some of the aforementioned components may be omitted. For example, in this application, the electrical connector may optionally include: a main-side electrical connector component, a secondary-side electrical connector component, and an electrical connector insulating shell. The main-side electrical connector component has a main-side electrical connector component body and a main-side electrical connector component assembly structure. The secondary-side electrical connector component has a secondary-side electrical connector component body and a secondary-side electrical connector component assembly structure. The electrical connector insulating shell has a main-side electrical connector insulating shell assembly guide structure, a secondary-side electrical connector insulating shell assembly guide structure, a main-side electrical connector insulating shell assembly space, a secondary-side electrical connector insulating shell assembly space, and an electrical connector insulating shell assembly wall. The main-side electrical connector insulating shell assembly space is located on the main side of the electrical connector, and the secondary-side electrical connector insulating shell assembly space is located on the secondary side of the electrical connector. The electrical connector insulating shell assembly wall separates the main-side electrical connector insulating shell assembly space and the secondary-side electrical connector insulating shell assembly space, and the electrical connector insulating shell assembly wall has the main-side electrical connector insulating shell assembly structure and the secondary-side electrical connector... The device includes an insulating housing assembly structure; wherein, a main-side electrical connector insulating housing assembly guide structure guides the main-side electrical connector component body into the main-side electrical connector insulating housing assembly space, so that the main-side electrical connector component assembly structure can cooperate with the main-side electrical connector insulating housing assembly structure to assemble the main-side electrical connector component into the electrical connector insulating housing; and a secondary-side electrical connector insulating housing assembly guide structure guides the secondary-side electrical connector component body into the secondary-side electrical connector insulating housing assembly space, so that the secondary-side electrical connector component assembly structure can cooperate with the secondary-side electrical connector insulating housing assembly structure to assemble the main-side electrical connector component into the electrical connector insulating housing.

[0093] In summary, the electrical connector provided in this application is composed of multiple electrical connector components. Therefore, after the electrical connector design is completed, the number and structure of the conductive terminals of the connector can still be customized by adjusting the combined multiple electrical connector components to meet the signal transmission requirements of electronic devices. Furthermore, the electrical connector has a conductive plastic base that extends near the conductive terminals used for signal transmission to provide shielding, effectively reducing the degree of interference experienced by the electrical connector during signal transmission, thereby meeting the high-speed signal transmission requirements of electronic devices.

[0094] The above embodiments are merely illustrative of the inventive essence and beneficial effects of this application, and are not intended to limit this application. Any person skilled in the art can modify or alter the above embodiments without departing from the principles and scope of this application. Therefore, all equivalent modifications or alterations achieved by those skilled in the art without departing from the spirit and technical concept disclosed in this application should still be covered by the claims of this application.

Claims

1. An electrical connector, characterized by, The electrical connector has a main side and a secondary side on its two sides, respectively, and the electrical connector includes: A main-side electrical connector component, wherein the main-side electrical connector component has a main-side electrical connector component body and a main-side electrical connector component combination structure; A primary-side electrical connector component, wherein the secondary-side electrical connector component has a primary-side electrical connector component body and a primary-side electrical connector component assembly structure; and An insulating shell for an electrical connector includes a main-side insulating shell assembly guide structure, a primary-side insulating shell assembly guide structure, a main-side insulating shell assembly space, a primary-side insulating shell assembly space, and an insulating shell assembly wall. The main-side insulating shell assembly space is located on the main side of the connector, and the secondary-side insulating shell assembly space is located on the secondary side of the connector. The insulating shell assembly wall separates the main-side and secondary-side insulating shell assembly spaces, and the insulating shell assembly wall has both a main-side and a primary-side insulating shell assembly structure. The main-side electrical connector insulating shell assembly guide structure guides the main-side electrical connector component body into the main-side electrical connector insulating shell assembly space, allowing the main-side electrical connector component assembly structure to cooperate with the main-side electrical connector insulating shell assembly structure, thereby assembling the main-side electrical connector component onto the electrical connector insulating shell; and The secondary electrical connector insulating shell assembly guide structure can guide the secondary electrical connector component body into the secondary electrical connector insulating shell assembly space, so that the secondary electrical connector component assembly structure can cooperate with the secondary electrical connector insulating shell assembly structure to assemble the primary electrical connector component into the electrical connector insulating shell.

2. The electrical connector of claim 1, wherein, The main-side electrical connector component assembly structure and the main-side electrical connector insulating shell assembly structure are structurally mating concave-convex structures, while the secondary-side electrical connector component assembly structure and the secondary-side electrical connector insulating shell assembly structure are structurally mating concave-convex structures.

3. The electrical connector of claim 2, wherein, The main-side electrical connector insulating shell assembly structure and the secondary-side electrical connector insulating shell assembly structure are dovetail groove structures.

4. The electrical connector of claim 1, wherein, The main-side electrical connector component also has: A main-side conductive terminal group, the main-side conductive terminal group having a first main-side grounded conductive terminal, a second main-side grounded conductive terminal and a main-side ungrounded conductive terminal; A main-side conductive plastic base, the main-side conductive plastic base having a first main-side conductive plastic base grounding terminal connection structure, a second main-side conductive plastic base grounding terminal connection structure and a main-side conductive plastic base shielding structure, the first main-side conductive plastic base grounding terminal connection structure and the second main-side conductive plastic base grounding terminal connection structure respectively connecting the first main-side grounding conductive terminal and the second main-side grounding conductive terminal, so that the main-side conductive plastic base and the first main-side grounding conductive terminal and the second main-side grounding conductive terminal have an electrical connection relationship to form a main-side grounding conductive module; as well as A main-side insulating core has a main-side insulating core non-grounded terminal connection structure and a main-side insulating core grounded conductive module connection structure. The main-side insulating core non-grounded terminal connection structure connects to the main-side non-grounded conductive terminal, and the main-side insulating core grounded conductive module connection structure connects to the main-side grounded conductive module, so that the main-side insulating core, the main-side non-grounded conductive terminal, and the main-side grounded conductive module constitute a main-side electrical connector sub-component. In the main-side electrical connector sub-component, the main-side conductive plastic base shielding structure can extend near the main-side non-grounded conductive terminal to provide shielding for the main-side non-grounded conductive terminal; and The secondary electrical connector component also has: A primary conductive terminal group, wherein the secondary conductive terminal group has a primary grounded conductive terminal, a secondary grounded conductive terminal and a primary ungrounded conductive terminal; A primary conductive plastic base, the secondary conductive plastic base having a primary conductive plastic base grounding terminal connection structure, a secondary conductive plastic base grounding terminal connection structure and a primary conductive plastic base shielding structure, the primary conductive plastic base grounding terminal connection structure and the secondary conductive plastic base grounding terminal connection structure respectively connecting the primary grounding conductive terminal and the secondary grounding conductive terminal, so that the secondary conductive plastic base and the primary grounding conductive terminal and the secondary grounding conductive terminal have an electrical connection relationship to form a primary grounding conductive module; as well as A primary-side insulating core, the secondary-side insulating core having a primary-side insulating core non-grounded terminal bonding structure and a primary-side insulating core grounded conductive module bonding structure, wherein the secondary-side insulating core non-grounded terminal bonding structure bonds to the secondary-side non-grounded conductive terminal, and the secondary-side insulating core grounded conductive module bonding structure bonds to the secondary-side grounded conductive module, so that the secondary-side insulating core, the secondary-side non-grounded conductive terminal, and the secondary-side grounded conductive module constitute a primary-side electrical connector sub-component, wherein the secondary-side conductive plastic base shielding structure can extend near the secondary-side non-grounded conductive terminal to provide shielding for the secondary-side non-grounded conductive terminal, wherein... The main-side electrical connector insulating shell assembly guide structure can guide the main-side insulating core into the main-side electrical connector insulating shell assembly space; and The secondary electrical connector insulating shell assembly guide structure can guide the secondary insulating core into the secondary electrical connector insulating shell assembly space.

5. The electrical connector of claim 4, wherein, The main-side electrical connector component assembly is disposed on the main-side insulating core, and the secondary-side electrical connector component assembly is disposed on the secondary-side insulating core.

6. The electrical connector of claim 4, wherein, The main-side electrical connector component assembly is disposed on the main-side conductive plastic base, and the secondary-side electrical connector component assembly is disposed on the secondary-side conductive plastic base.

7. The electrical connector of claim 4, wherein, The insulating housing assembly wall of the electrical connector also separates the primary conductive plastic base from the secondary conductive plastic base.