Signal transmission member assembly and its electrical connector and connector assembly

By designing a combined structure of the electrical connector body, conductive terminals, and terminal core, the space occupied by the wire connector is solved, and the electrical connection of the conductive wire is realized, supporting the development of thinner and smaller electronic devices.

CN224537484UActive Publication Date: 2026-07-21TARNG 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
2025-07-01
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

In the existing technology, wire-end connectors occupy internal space of electronic devices and increase assembly complexity and cost. How to achieve electrical connection of conductive wires without omitting wire-end connectors has become an urgent problem to be solved.

Method used

Design an electrical connector including an electrical connector body, conductive terminals and terminal cores. The electrical connection of conductive wires is achieved by through grooves and insertion holes in the electrical connector body. The connection reliability and flexibility are ensured by combining a snap-fit ​​structure and an IDC piercing type insertion structure.

Benefits of technology

Electrical connections of conductive wires can be achieved without omitting wire-end connectors, saving internal space in electronic devices and supporting the development of thinner and smaller electronic devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a signal transmission component assembly, an electric connector and a connector assembly. The electric connector is matched with a conductive wire. The electric connector comprises an electric connector body, an electric connector conductive terminal and an electric connector terminal rubber core. The electric connector can be inserted into the conductive wire without a wire end connector to realize the electrical connection with the conductive wire and transmit the electrical signal. Thus, the internal space of the electronic device can be saved, and the electronic device can continue to develop in the direction of lightness, thinness and smallness.
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Description

Technical Field

[0001] This application belongs to the field of electronic device technology and relates to a signal transmission component assembly and its electrical connector and connector assembly. Background Technology

[0002] In modern electronic devices, wire connectors and electrical connectors are usually installed. Generally speaking, wire connectors can electrically connect to conductive wires, while electrical connectors can electrically connect to wire connectors. Therefore, electrical connectors can transmit electrical signals by making electrical connections with conductive wires through wire end connectors.

[0003] However, with the rapid development of technology, electronic devices are becoming increasingly thinner and smaller, making the internal space of electronic devices increasingly limited. Since wire connectors occupy valuable internal space of electronic devices and increase assembly complexity and cost, how to enable electrical connectors to achieve electrical connection with conductive wires without omitting wire connectors is a problem that urgently needs to be solved by those in the relevant technical field. Summary of the Invention

[0004] In view of the shortcomings of the prior art, this application provides an electrical connector, which is coupled with a conductive wire. The electrical connector includes: an electrical connector body having an electrical connector body through-slot and an electrical connector body insertion hole, the electrical connector body through-slot providing passage for the conductive wire, and the electrical connector body insertion hole communicating with the electrical connector body through-slot; an electrical connector conductive terminal having an electrical connector terminal insertion structure; and an electrical connector terminal core, the electrical connector terminal core being capable of engaging the electrical connector conductive terminal and being capable of assembling the electrical connector body, allowing the electrical connector terminal insertion structure to electrically insert the conductive wire by entering the electrical connector body through-slot via the electrical connector body insertion hole.

[0005] Preferably, in the electrical connector of this application, the insertion hole of the electrical connector body intersects substantially perpendicularly with the through groove of the electrical connector body.

[0006] Preferably, in the electrical connector of this application, the electrical connector terminal core has a first electrical connector terminal core snap-fit ​​structure, and the electrical connector body also has an electrical connector snap-fit ​​structure, wherein the first electrical connector terminal core snap-fit ​​structure can snap the electrical connector snap-fit ​​structure to maintain the combination relationship between the electrical connector terminal core and the electrical connector body.

[0007] Preferably, in the electrical connector of this application, the terminal plugging structure of the electrical connector is an IDC piercing type plugging structure.

[0008] Preferably, in the electrical connector of this application, the connector body is an insulating plastic body.

[0009] Preferably, in the electrical connector of this application, the electrical connector terminal core can be disassembled from the electrical connector body, allowing the electrical connector terminal insertion structure to exit the electrical connector body through the insertion hole and thus disengage the conductive wire from the electrical connection.

[0010] Additionally, this application also provides a connector assembly, which is coupled with a conductive wire. The connector assembly includes: an electrical connector, the electrical connector comprising: an electrical connector body having an electrical connector body through-slot and an electrical connector body insertion hole, the electrical connector body through-slot providing passage for the conductive wire, and the electrical connector body insertion hole communicating with the electrical connector body through-slot; an electrical connector conductive terminal having an electrical connector terminal insertion structure and an electrical connector terminal mating structure; and an electrical connector terminal core. A connector terminal core can engage with the conductive terminal of the electrical connector, and the connector terminal core can be combined with the electrical connector body, allowing the connector terminal insertion structure to enter the through-slot of the electrical connector body via the insertion hole of the electrical connector body for electrical insertion of the conductive wire; and a mating connector, the mating connector comprising: a mating connector conductive terminal having a mating connector terminal mating structure, wherein the mating connector can be combined with the connector terminal core, allowing the mating connector terminal mating structure to electrically mate with the electrical connector terminal mating structure.

[0011] Preferably, in the connector assembly of this application, the electrical connector terminal mating structure is a clamping structure that can electrically clamp the mating connector terminal mating structure.

[0012] Preferably, in the connector assembly of this application, the mating connector further includes: a mating connector insulating core, the mating connector insulating core engaging with the mating connector conductive terminal, and the mating connector insulating core being combustible with the electrical connector terminal core, allowing the mating connector terminal mating structure to electrically connect with the electrical connector terminal mating structure.

[0013] Preferably, in the connector assembly of this application, the electrical connector terminal core has a second electrical connector terminal core snap-fit ​​structure, and the mating connector insulating core has a mating connector snap-fit ​​structure, wherein the second electrical connector terminal core snap-fit ​​structure can snap the mating connector snap-fit ​​structure to maintain the combination relationship between the electrical connector terminal core and the mating connector insulating core.

[0014] Preferably, in the connector assembly of this application, the mating connector can disassemble the electrical connector terminal core, allowing the mating connector terminal mating structure to be electrically disconnected from the electrical connector terminal mating structure.

[0015] Furthermore, this application also provides a signal transmission component assembly, the signal transmission component assembly comprising: a conductive wire; and an electrical connector, the electrical connector comprising: an electrical connector body having an electrical connector body through-slot and an electrical connector body insertion hole, the electrical connector body through-slot providing passage for the conductive wire, the electrical connector body insertion hole communicating with the electrical connector body through-slot; an electrical connector conductive terminal having an electrical connector terminal insertion structure; and an electrical connector terminal core, the electrical connector terminal core being capable of engaging the electrical connector conductive terminal, and the electrical connector terminal core being capable of assembling the electrical connector body, allowing the electrical connector terminal insertion structure to enter the electrical connector body through-slot via the electrical connector body insertion hole and electrically insert into the conductive wire, thereby enabling the electrical connector conductive terminal and the conductive wire to be electrically connected for transmitting electrical signals.

[0016] Preferably, the signal transmission component assembly of this application further includes: a mating connector, the mating connector comprising: a mating connector conductive terminal, the mating connector conductive terminal having a mating connector terminal mating structure, and the electrical connector conductive terminal also having an electrical connector terminal mating structure, wherein the mating connector can be combined with the electrical connector terminal core, allowing the mating connector terminal mating structure to electrically mate with the electrical connector terminal mating structure, so that the mating connector conductive terminal and the electrical connector conductive terminal can be electrically connected to transmit electrical signals.

[0017] Preferably, the signal transmission component assembly of this application further includes an electrical connector carrier component, which can provide support for the electrical connector.

[0018] Preferably, in the signal transmission component assembly of this application, the electrical connector carrier component is a circuit board.

[0019] Preferably, the signal transmission component assembly of this application further includes an electrical connector mating component, which can assemble or disassemble the electrical connector terminal core to define the relative positional relationship between the electrical connector mating component and the electrical connector.

[0020] Preferably, in the signal transmission component assembly of this application, the electrical connector terminal core has a third electrical connector terminal core snap-fit ​​structure, and the electrical connector mating component has an electrical connector mating component snap-fit ​​structure, wherein the third electrical connector terminal core snap-fit ​​structure can snap-fit ​​the electrical connector mating component snap-fit ​​structure to maintain the combination relationship between the electrical connector terminal core and the electrical connector mating component.

[0021] Compared to prior art, this application provides a signal transmission component assembly and its electrical connector and connector assembly, wherein the signal transmission component assembly and its electrical connector and connector assembly can be coupled with a conductive wire, and the conductive terminals of the electrical connector can be electrically plugged into the conductive wire. In this way, electrical connection with the conductive wire can be achieved without omitting the wire end connector, thereby saving internal space of electronic devices and allowing electronic devices to continue to develop in the direction of being thinner and smaller. Attached Figure Description

[0022] Figure 1 The diagram shown is a perspective view of a signal transmission component assembly according to an embodiment of this application.

[0023] Figure 2 The diagram shown is a first-view perspective perspective of a signal transmission component assembly according to an embodiment of this application.

[0024] Figure 3 The diagram shown is a second-view perspective perspective of a signal transmission component assembly according to an embodiment of this application.

[0025] Figure 4 The diagram shown is a first-view perspective perspective of an embodiment of the electrical connector of this application.

[0026] Figure 5 The diagram shown is a second-view perspective perspective of an embodiment of the electrical connector of this application.

[0027] Figure 6 The diagram shown is a first-view perspective perspective of an embodiment of the electrical connector of this application.

[0028] Figure 7 The diagram shown is a second-view perspective perspective of an embodiment of the electrical connector of this application.

[0029] Figure 8 The diagram shown is a front view of a signal transmission component assembly according to an embodiment of this application.

[0030] Figure 9 The diagram shown is a side view of a signal transmission component assembly according to an embodiment of this application.

[0031] Figure 10 Displayed as Figure 8 The diagram shows a cross-sectional view of a portion of the signal transmission assembly cut along line segment AA.

[0032] Figure 11 Displayed as Figure 8 The diagram shows a cross-sectional view of a portion of the signal transmission assembly cut along line segment BB.

[0033] Figure 12 Displayed as Figure 9 The diagram shows a cross-sectional view of a portion of the signal transmission assembly cut along line segment CC.

[0034] Figure 13 Displayed as Figure 9 The diagram shows a cross-sectional view of a portion of the signal transmission assembly cut along line segment C'-C'.

[0035] Figure 14 The diagram shown is a top view of an embodiment of the electrical connector of this application.

[0036] Figure 15 Displayed as Figure 14 The diagram shows a cross-sectional view of a portion of the electrical connector cut along line segment DD.

[0037] Figure 16 The diagram shown is a first-view perspective perspective of an embodiment of the mating connector of this application.

[0038] Figure 17 The diagram shown is a second-view perspective perspective of an embodiment of the mating connector of this application.

[0039] Component designation explanation

[0040] 1. Signal transmission component assembly

[0041] 10 Conductive wires

[0042] 11 Electrical connectors

[0043] 110 Electrical connector body

[0044] 1101 Electrical connector body passes through the channel

[0045] 1102 Electrical connector body insertion hole

[0046] 1103 Electrical connector snap-fit ​​structure

[0047] 111 Electrical connector conductive terminals

[0048] 1111 Electrical connector terminal mating structure

[0049] 1112 Electrical connector terminal mating structure

[0050] 112 Electrical connector terminal core

[0051] 1121 First electrical connector terminal core snap-fit ​​structure

[0052] 1122 Second electrical connector terminal core snap-fit ​​structure

[0053] 1123 Third-generation electrical connector terminal core snap-fit ​​structure

[0054] 12 mating connectors

[0055] 120 mating connector insulating core

[0056] 1201 mating connector snap-fit ​​structure

[0057] 121 Connector conductive terminals

[0058] 1211 Connector Terminal Connecting Structure

[0059] 13 Electrical connector load-bearing components

[0060] 14 Electrical connector mating components

[0061] 141 Electrical connector mating component snap-fit ​​structure

[0062] A connector assembly Detailed Implementation

[0063] The following description, accompanied by accompanying drawings, illustrates the technical content of this application through specific embodiments. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. This application can also be implemented or applied through other different specific embodiments. Various details in this specification can also be modified and changed based on different viewpoints and applications without departing from the spirit of this application. In particular, the proportional relationships and relative positions of the various elements in the drawings are for illustrative purposes only and do not represent the actual implementation of this application.

[0064] In addition, it should be noted that, in order to make the disclosure more concise and easier to understand, elements with the same or similar functions in the following embodiments will be described using the same symbols, and descriptions of the same or equivalent features will be omitted.

[0065] This application provides at least one signal transmission component assembly for use in electronic devices, and its electrical connector and connector assembly. The electrical connector allows for the insertion of a conductive wire without omitting the wire-end connector, thereby achieving electrical connection with the conductive wire and transmitting electrical signals. This saves internal space in the electronic device, allowing it to continue developing towards a thinner and smaller design. The electronic device may be a medical device.

[0066] For the technical concept of the signal transmission component assembly and its electrical connector and connector assembly of this application, please refer to the drawings in this application. Figures 1 to 17 The following examples illustrate this:

[0067] At Figures 1 to 17 The illustrated embodiment discloses at least one signal transmission component assembly 1 and connector assembly A for use in an electronic device. The signal transmission component assembly 1 includes: a conductive wire 10, an electrical connector 11, a mating connector 12, an electrical connector carrier member 13, and an electrical connector mating member 14. The conductive wire 10 can provide transmission of electrical signals. The connector assembly A is compatible with the conductive wire 10 and includes the electrical connector 11 and the mating connector 12.

[0068] The electrical connector 11 is compatible with the conductive wire 10 and includes: a connector body 110, a conductive terminal 111, and a terminal core 112. The connector body 110 has a connector body through-slot 1101 and a connector body insertion hole 1102. The connector body through-slot 1101 guides the conductive wire 10 through, and the connector body insertion hole 1102 connects to the connector body through-slot 1101. Optionally, the connector body 110 is an insulating plastic body.

[0069] The conductive terminals 111 of the electrical connector can transmit electrical signals and have an electrical connector terminal insertion structure 1111 and an electrical connector terminal mating structure 1112. The electrical connector terminal core 112 has a first electrical connector terminal core snap-fit ​​structure 1121, a second electrical connector terminal core snap-fit ​​structure 1122 and a third electrical connector terminal core snap-fit ​​structure 1123.

[0070] The connector terminal core 112 can engage with the connector conductive terminal 111, allowing the connector terminal core 112 to drive the connector conductive terminal 111. It should be noted that the connector terminal core 112 can be combined with the connector body 110 to drive the connector conductive terminal 111, allowing the connector terminal insertion structure 1111 to enter the connector body through the connector body insertion hole 1102 and electrically connect to the conductive wire 10, thus electrically connecting the connector conductive terminal 111 to the conductive wire 10 for signal transmission. Therefore, the connector conductive terminal 111 of the connector 11 can achieve electrical connection with the conductive wire 10 without omitting the wire end connector, effectively saving internal space in electronic devices and allowing electronic devices to continue to develop towards a thinner and smaller design.

[0071] The connector body insertion channel 1102 can guide the electrical insertion direction of the connector terminal insertion structure 1111, so that the electrical insertion direction of the connector terminal insertion structure 1111 and the conductive wire 10 meets the usage requirements, thereby improving the reliability of the connector 11 and the conductive wire 10 for transmitting electrical signals.

[0072] It should be noted that, Yu Figures 4 to 7 In the illustrated embodiment, the electrical connector body 110 further includes an electrical connector snap-fit ​​structure 1103. Correspondingly, the first electrical connector terminal core snap-fit ​​structure 1121 can snap onto the electrical connector snap-fit ​​structure 1103 to maintain the assembly relationship between the electrical connector terminal core 112 and the electrical connector body 110. Thus, even as the dimensions of the electrical connector terminal core 112 and the electrical connector body 110 become smaller, the electrical connector terminal core 112 can still snap onto the electrical connector body 110 to prevent the assembled electrical connector terminal core 112 from easily separating from the electrical connector body 110 under force. This allows the electrical connector 11 to be miniaturized and used in electronic devices with limited internal space, enabling electronic devices using the electrical connector 11 (or the signal transmission component assembly 1, or the connector assembly A) to continue developing towards a thinner and smaller design.

[0073] At Figures 4 to 6 and Figure 15In the illustrated embodiment, the electrical connector terminal insertion structure 1111 is an IDC piercing type insertion structure. Correspondingly, the electrical connector body insertion hole 1102 and the electrical connector body through-slot 1101 are substantially perpendicular to each other, allowing the electrical connector terminal insertion structure 1111 to enter the electrical connector body through-slot 1101 through the electrical connector body insertion hole 1102 and pierce the conductive wire 10, so as to achieve electrical insertion of the electrical connector conductive terminal 111 into the conductive wire 10.

[0074] Additionally, it should be noted that the electrical connector terminal core 112 can also be disassembled from the electrical connector body 110, so that the electrical connector terminal insertion structure 1111 can exit the electrical connector body through the electrical connector body insertion hole 1102 and exit the electrical connector body through the electrical connector body slot 1101 to disengage the conductive wire 10 to meet the usage requirements.

[0075] The mating connector 12 includes a mating connector insulating core 120 and a mating connector conductive terminal 121. The mating connector conductive terminal 121 can provide electrical signal transmission and has a mating connector terminal mating structure 1211. The mating connector insulating core 120 engages with the mating connector conductive terminal 121, allowing the mating connector insulating core 120 to drive the mating connector conductive terminal 121. It should be noted that the mating connector insulating core 120 (or the mating connector 12) can be combined with the electrical connector terminal core 112 to drive the mating connector conductive terminal 121, allowing the mating connector terminal mating structure 1211 to electrically connect with the electrical connector terminal mating structure 1112, thus electrically connecting the mating connector conductive terminal 121 and the electrical connector conductive terminal 111 to transmit electrical signals.

[0076] Optionally, the electrical connector terminal mating structure 1112 is a clamping structure that can electrically clamp the mating connector terminal mating structure 1211. In this way, the electrical mating relationship between the electrical connector 11 and the mating connector 12 can be ensured, thereby improving the reliability of the connector assembly A.

[0077] It should be noted that, Yu Figure 3 , Figures 12 to 13 and Figure 17In the illustrated embodiment, the mating connector insulating core 120 has a mating connector snap-fit ​​structure 1201. Correspondingly, the second electrical connector terminal core snap-fit ​​structure 1122 can snap onto the mating connector snap-fit ​​structure 1201 to maintain the combination relationship between the electrical connector terminal core 112 and the mating connector insulating core 120. Thus, even as the sizes of the electrical connector terminal core 112 and the mating connector insulating core 120 become smaller, the electrical connector terminal core 112 can still snap onto the mating connector insulating core 120 to prevent the combined electrical connector terminal core 112 and the mating connector insulating core 120 from easily separating under force. This allows the electrical connector 11 and the mating connector 12 to be miniaturized for use in electronic devices with limited internal space, enabling electronic devices using the electrical connector 11 and the mating connector 12 (or the signal transmission component assembly 1, or the connector assembly A) to continue to develop towards a thinner and smaller design.

[0078] Additionally, it should be noted that the mating connector 12 can be disassembled from the electrical connector terminal core 112, so that the mating connector terminal mating structure 1211 can be electrically disconnected from the electrical connector terminal mating structure 1112 to meet usage requirements.

[0079] The electrical connector carrier member 13 provides support and positioning for the electrical connector 11. Optionally, the electrical connector carrier member 13 can be a flexible circuit board or a rigid circuit board that provides electrical signal transmission. Alternatively, the electrical connector carrier member 13 can be a flexible member or a rigid member that provides support and positioning for the electrical connector 11.

[0080] Regarding the electrical connector mating component 14, the electrical connector mating component 14 can assemble or disassemble the electrical connector terminal core 112, thereby defining the relative positional relationship between the electrical connector mating component 14 and the electrical connector 11 to meet usage requirements. It should be noted that any component that can be used with the electrical connector 11 can be the electrical connector mating component 14. Selectively, the electrical connector mating component 14 can be an electronic component or a non-electronic component that can mate with the electrical connector 11.

[0081] It should be noted that, Yu Figures 2 to 3In the illustrated embodiment, the electrical connector mating member 14 has an electrical connector mating member snap-fit ​​structure 141. Correspondingly, the third electrical connector terminal core snap-fit ​​structure 1123 can snap onto the electrical connector mating member snap-fit ​​structure 141 to maintain the combination relationship between the electrical connector terminal core 112 and the electrical connector mating member 14. Thus, even if the size of the electrical connector terminal core 112 and the electrical connector mating member 14 becomes smaller and smaller, the electrical connector terminal core 112 can still snap onto the electrical connector mating member 14 to prevent the combined electrical connector terminal core 112 and the electrical connector mating member 14 from easily separating under force. This allows the electrical connector 11 and the electrical connector mating member 14 to be miniaturized for use in electronic devices with limited internal space, enabling electronic devices using the electrical connector 11 and the electrical connector mating member 14 (or the signal transmission component assembly 1, or the connector assembly A) to continue to develop towards a thinner and smaller design.

[0082] It should be noted that, however, the components of the above-mentioned signal transmission component assembly and its electrical connector and connector assembly may be omitted or other components may be added depending on the actual use, and are not limited to the above-mentioned components.

[0083] For example, in this application, the electrical connector may include: an electrical connector body, electrical connector conductive terminals, and electrical connector terminal inserts. The electrical connector body has an electrical connector body through-slot and an electrical connector body mating hole. The electrical connector body through-slot provides for the passage of conductive wires, and the electrical connector body mating hole communicates with the electrical connector body through-slot. The electrical connector conductive terminals have electrical connector terminal mating structures. The electrical connector terminal inserts can engage with the electrical connector conductive terminals, and the electrical connector terminal inserts can assemble with the electrical connector body, allowing the electrical connector terminal mating structures to electrically connect to conductive wires via the electrical connector body mating hole and the electrical connector body through-slot.

[0084] In addition, in this application, the connector assembly includes: an electrical connector and a mating connector. The electrical connector includes: an electrical connector body, electrical connector conductive terminals, and electrical connector terminal cores; the electrical connector body has an electrical connector body through-slot and an electrical connector body mating hole, the electrical connector body through-slot provides for the passage of conductive wires, and the electrical connector body mating hole connects to the electrical connector body through-slot; the electrical connector conductive terminals have an electrical connector terminal insertion structure and an electrical connector terminal mating structure; the electrical connector terminal core can engage with the electrical connector conductive terminals, and the electrical connector terminal core can be combined with the electrical connector body, allowing the electrical connector terminal insertion structure to electrically connect to the electrical connector body through-slot via the electrical connector body mating hole. The mating connector includes: a mating connector conductive terminal, the mating connector conductive terminal having a mating connector terminal mating structure, wherein the mating connector can be combined with the electrical connector terminal core, allowing the mating connector terminal mating structure to electrically mate with the electrical connector terminal mating structure.

[0085] Furthermore, in this application, the signal transmission component assembly includes: conductive wires and an electrical connector. The electrical connector includes: an electrical connector body, electrical connector conductive terminals, and electrical connector terminal cores; the electrical connector body has an electrical connector body through-slot and an electrical connector body insertion hole, the electrical connector body through-slot provides for the conductive wire to pass through, and the electrical connector body insertion hole connects to the electrical connector body through-slot; the electrical connector conductive terminals have electrical connector terminal insertion structures; the electrical connector terminal cores can engage with the electrical connector conductive terminals, and the electrical connector terminal cores can assemble with the electrical connector body, allowing the electrical connector terminal insertion structures to enter the electrical connector body through-slot via the electrical connector body insertion hole to electrically insert the conductive wire, so that the electrical connector conductive terminals and the conductive wires can be electrically connected to transmit electrical signals.

[0086] In summary, the signal transmission component assembly and its electrical connector and connector assembly of this application can be paired with a conductive wire, and the conductive terminals of the electrical connector can be electrically plugged into the conductive wire. In this way, electrical connection with the conductive wire can be achieved without omitting the wire end connector, thereby saving internal space of electronic devices and allowing electronic devices to continue to develop in the direction of being thinner and smaller.

[0087] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Any person skilled in the art can modify and alter the above embodiments without departing from the spirit and scope of this application. Therefore, the scope of protection of this application should be as set forth in the claims.

Claims

1. An electrical connector, wherein the electrical connector is coupled with a conductive wire, characterized in that, The electrical connector includes: An electrical connector body has an electrical connector body through-slot and an electrical connector body insertion hole. The electrical connector body through-slot provides for the passage of the conductive wire, and the electrical connector body insertion hole is connected to the electrical connector body through-slot. An electrical connector conductive terminal, wherein the electrical connector conductive terminal has an electrical connector terminal insertion structure; and An electrical connector terminal core is provided, which can be engaged with the conductive terminal of the electrical connector, and can be combined with the electrical connector body, so that the electrical connector terminal insertion structure can enter the through-slot of the electrical connector body through the insertion hole of the electrical connector body to electrically insert the conductive wire.

2. The electrical connector according to claim 1, characterized in that, The insertion hole of the electrical connector body intersects the through-slot of the electrical connector body in a substantially perpendicular manner.

3. The electrical connector according to claim 1, characterized in that, The electrical connector terminal core has a first electrical connector terminal core snap-fit ​​structure, and the electrical connector body also has an electrical connector snap-fit ​​structure, wherein the first electrical connector terminal core snap-fit ​​structure can snap onto the electrical connector snap-fit ​​structure to maintain the combination relationship between the electrical connector terminal core and the electrical connector body.

4. The electrical connector according to claim 1, characterized in that, The electrical connector terminal plug-in structure is an IDC piercing type plug-in structure.

5. The electrical connector according to claim 1, characterized in that, The electrical connector body is made of insulating plastic.

6. The electrical connector according to claim 1, characterized in that, The connector terminal core can be disassembled from the connector body, allowing the connector terminal insertion structure to exit the connector body through the connector body insertion hole and thus disengage the conductive wire.

7. A connector assembly, wherein the connector assembly is coupled with a conductive wire, characterized in that, The connector assembly includes: An electrical connector, the electrical connector comprising: An electrical connector body has an electrical connector body through-slot and an electrical connector body insertion hole. The electrical connector body through-slot provides for the passage of the conductive wire, and the electrical connector body insertion hole is connected to the electrical connector body through-slot. An electrical connector conductive terminal, wherein the electrical connector conductive terminal has an electrical connector terminal insertion structure and an electrical connector terminal mating structure; and An electrical connector terminal core, wherein the electrical connector terminal core can engage with the conductive terminals of the electrical connector, and the electrical connector terminal core can be assembled with the electrical connector body, allowing the electrical connector terminal insertion structure to enter the through-slot of the electrical connector body via the insertion hole of the electrical connector body for electrical insertion of the conductive wire; and A mating connector, the mating connector comprising: a mating connector conductive terminal, the mating connector conductive terminal having a mating connector terminal mating structure, wherein the mating connector can be combined with the electrical connector terminal core, allowing the mating connector terminal mating structure to electrically connect with the electrical connector terminal mating structure.

8. The connector assembly according to claim 7, characterized in that, The electrical connector terminal mating structure is a clamping structure that can electrically clamp the mating connector terminal mating structure.

9. The connector assembly according to claim 7, characterized in that, The mating connector further includes: a mating connector insulating core, which engages with the mating connector conductive terminal, and the mating connector insulating core can be combined with the electrical connector terminal core, so that the mating connector terminal mating structure can electrically connect to the electrical connector terminal mating structure.

10. The connector assembly according to claim 9, characterized in that, The electrical connector terminal core has a second electrical connector terminal core snap-fit ​​structure, and the mating connector insulating core has a mating connector snap-fit ​​structure. The second electrical connector terminal core snap-fit ​​structure can snap onto the mating connector snap-fit ​​structure to maintain the combination relationship between the electrical connector terminal core and the mating connector insulating core.

11. The connector assembly according to claim 9, characterized in that, The mating connector can disassemble the electrical connector terminal core, allowing the mating connector terminal mating structure to be electrically disconnected from the electrical connector terminal mating structure.

12. A signal transmission component assembly, characterized in that, The signal transmission component assembly includes: A conductive wire; and An electrical connector, the electrical connector comprising: An electrical connector body has an electrical connector body through-slot and an electrical connector body insertion hole. The electrical connector body through-slot provides for the passage of the conductive wire, and the electrical connector body insertion hole is connected to the electrical connector body through-slot. An electrical connector conductive terminal, wherein the electrical connector conductive terminal has an electrical connector terminal insertion structure; and An electrical connector terminal core is provided, which can be engaged with the conductive terminal of the electrical connector and can be combined with the electrical connector body, so that the electrical connector terminal insertion structure can enter the through-slot of the electrical connector body through the insertion hole of the electrical connector body to electrically insert the conductive wire, so that the conductive terminal of the electrical connector and the conductive wire can be electrically connected to transmit electrical signals.

13. The signal transmission component assembly according to claim 12, characterized in that, Also includes: A mating connector, comprising: a mating connector conductive terminal having a mating connector terminal mating structure, and the electrical connector conductive terminal further having an electrical connector terminal mating structure, wherein the mating connector can be combined with the electrical connector terminal core, allowing the mating connector terminal mating structure to electrically mate with the electrical connector terminal mating structure, enabling the mating connector conductive terminal to be electrically connected to the electrical connector conductive terminal for transmitting electrical signals.

14. The signal transmission component assembly according to claim 12, characterized in that, It also includes an electrical connector carrier member that provides support for the electrical connector.

15. The signal transmission component assembly according to claim 14, characterized in that, The electrical connector's supporting component is a circuit board.

16. The signal transmission component assembly according to claim 12, characterized in that, It also includes an electrical connector mating component, which can assemble or disassemble the electrical connector terminal core, thereby defining the relative positional relationship between the electrical connector mating component and the electrical connector.

17. The signal transmission component assembly according to claim 16, characterized in that, The electrical connector terminal core has a third electrical connector terminal core snap-fit ​​structure, and the electrical connector mating component has an electrical connector mating component snap-fit ​​structure. The third electrical connector terminal core snap-fit ​​structure can snap the electrical connector mating component snap-fit ​​structure to maintain the combination relationship between the electrical connector terminal core and the electrical connector mating component.