Electric connector and first electric connector component and second electric connector component thereof

By designing combinable electrical connector components and conductive terminal structures, the problem of the inability to adjust the shape or size of electrical connectors has been solved, realizing the flexible adaptability of electrical connectors and meeting the special needs of electronic equipment.

CN121906148APending Publication Date: 2026-04-21TARNG YU ENTERPRISE +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
TARNG YU ENTERPRISE
Filing Date
2025-09-24
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Once the existing electrical connector design is completed, its shape or size cannot be modified according to requirements, making it difficult to flexibly adapt to the use of electronic devices.

Method used

By designing a first and second electrical connector component that can be assembled, and by utilizing different overlapping sections and conductive terminal structures, the shape or size of the electrical connector can be customized to meet the special needs of electronic equipment.

Benefits of technology

This allows electrical connectors to adapt to changes in the shape or size of electronic devices by adjusting the assembly components after the design is completed, thus meeting the special needs and development of electronic devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to an electric connector, which is formed by assembling a plurality of electric connector components, and the shape or size of the plurality of electric connector components can be designed in a customized manner, so that after the design of the electric connector is completed, the shape or size of the electric connector can be adjusted in a customized manner by adjusting the assembled plurality of electric connector components. Therefore, the shape or the size of the electric connector can flexibly adapt to the electronic equipment.
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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 can be flexibly adapted to the use of electronic devices, and a first electrical connector component and a second electrical connector component thereof. Background Technology

[0002] In recent years, electrical connectors have been widely used in various electronic devices. However, once the design of an electrical connector is completed, its shape or size often cannot be modified according to requirements, which limits its application and operating environment. As a result, electrical connectors are difficult to flexibly adapt to the use of electronic devices.

[0003] As can be seen from the above, how to solve the problem that the shape or size of electrical connectors cannot be modified according to requirements after the design is completed is a problem that urgently needs to be solved by the personnel in this technical field. Summary of the Invention

[0004] In view of the shortcomings of the prior art, this application provides an electrical connector, wherein the two sides of the electrical connector can be defined as a first electrical connector component overlap side and a second electrical connector component overlap side, the electrical connector comprising: a first electrical connector component having a first conductive terminal, the first conductive terminal having a first conductive terminal assembly structure and a first conductive terminal overlap structure; and a second electrical connector component, the second electrical connector component being assembled with the first electrical connector component, and the second electrical connector component having a second conductive terminal, the second conductive terminal having a second conductive terminal assembly structure and a second conductive terminal overlap structure; wherein, when the second electrical connector component is assembled with the first electrical connector component, the second conductive terminal assembly structure is assembled with the first conductive terminal assembly structure, so that the second conductive terminal is electrically connected to the first conductive terminal, and the first conductive terminal overlap structure extends along a first overlap segment to the overlap side of the first electrical connector component, and the second conductive terminal overlap structure extends along a second overlap segment to the overlap side of the second electrical connector component, wherein the extension of the first overlap segment and the second overlap segment are substantially different.

[0005] In one embodiment of the electrical connector of this application, the first lap joint segment and the second lap joint segment may extend and intersect.

[0006] In one embodiment of the electrical connector of this application, the first lap joint segment and the second lap joint segment may extend and intersect perpendicularly.

[0007] In one embodiment of the electrical connector of this application, the second conductive terminal further has a second conductive terminal bending structure, the second conductive terminal bending structure providing a bend so that the second conductive terminal overlap structure can extend along the second overlap segment.

[0008] In one embodiment of the electrical connector of this application, the second conductive terminal further has a second conductive terminal turning structure, which can turn the second conductive terminal assembly structure so that the second conductive terminal assembly structure can be assembled with the first conductive terminal assembly structure.

[0009] In one embodiment of the electrical connector of this application, the second conductive terminal turning structure is a terminal torsion structure.

[0010] In one embodiment of the electrical connector of this application, the first conductive terminal assembly structure is a terminal clamping assembly structure, and the second conductive terminal assembly structure is a terminal cutter assembly structure.

[0011] In one embodiment of the electrical connector of this application, the first electrical connector component further includes a first electrical connector component core, the first electrical connector component core having a first electrical connector component core overlap support structure, the first electrical connector component core engaging with the first conductive terminal, and the first electrical connector component core overlap support structure providing support for the first conductive terminal overlap structure, so that the first conductive terminal overlap structure extends along the first overlap segment.

[0012] In one embodiment of the electrical connector of this application, the second electrical connector component further includes a second electrical connector component core, the second electrical connector component core having a second electrical connector component core overlap support structure, the second electrical connector component core engaging with the second conductive terminal, and the second electrical connector component core overlap support structure providing support for the second conductive terminal overlap structure, so that the second conductive terminal overlap structure extends along the second overlap segment.

[0013] In one embodiment of the electrical connector of this application, the first electrical connector component further includes a first electrical connector component core, the first electrical connector component core having a first electrical connector component core snap-fit ​​structure, the first electrical connector component core engaging the first conductive terminal, and the first electrical connector component core snap-fit ​​structure being able to snap the second electrical connector component, so as to prevent the state of the second electrical connector component being easily released from the connection of the first electrical connector component.

[0014] In one embodiment of the electrical connector of this application, the first electrical connector component core snap-fit ​​structure is a snap-fit ​​block structure.

[0015] In one embodiment of the electrical connector of this application, the second electrical connector component further includes a second electrical connector component core, the second electrical connector component core having a second electrical connector component core snap-fit ​​structure, the second electrical connector component core engaging with the second conductive terminal, and the second electrical connector component core snap-fit ​​structure snapping onto the first electrical connector component to prevent the state of the second electrical connector component being easily released from the connection with the first electrical connector component.

[0016] In one embodiment of the electrical connector of this application, the second electrical connector component core snap-fit ​​structure is a snap-fit ​​elastic arm structure.

[0017] In one embodiment of the electrical connector described in this application, the electrical connector is a fan electrical connector.

[0018] In one embodiment of the electrical connector of this application, the first conductive terminal overlap structure and the second conductive terminal overlap structure are a wire overlap structure.

[0019] In addition, this application provides a first electrical connector component, the two sides of which can be defined as a first electrical connector component overlap side and a first electrical connector component assembly side, respectively. The first electrical connector component includes: a first conductive terminal, the first conductive terminal having a first conductive terminal assembly structure and a first conductive terminal overlap structure; and a first electrical connector component core, the first electrical connector component core engaging with the first conductive terminal, such that the first conductive terminal overlap structure extends along a first overlap segment to the first electrical connector component overlap side, and the first conductive terminal assembly structure extends along a first set of wiring segments to the first electrical connector component assembly side, wherein the extension of the first overlap segment and the first set of wiring segments is substantially the same.

[0020] In one embodiment of the first electrical connector component of this application, the first electrical connector component core has a first electrical connector component core overlap support structure and a first electrical connector component core assembly support structure. The first electrical connector component core overlap support structure provides support for the first conductive terminal overlap structure, causing the first conductive terminal overlap structure to extend along the first overlap segment. The first electrical connector component core assembly support structure provides support for the first conductive terminal assembly structure, causing the first conductive terminal assembly structure to extend along the first set of wiring segments.

[0021] Furthermore, this application provides a second electrical connector component, the two sides of which can be defined as a second electrical connector component overlap side and a second electrical connector component assembly side, respectively. The second electrical connector component includes: a second conductive terminal having a second conductive terminal assembly structure and a second conductive terminal overlap structure; and a second electrical connector component core, the second electrical connector component core engaging with the second conductive terminal, such that the second conductive terminal overlap structure extends along a second overlap segment to the second electrical connector component overlap side, and the second conductive terminal assembly structure extends along a second set of wiring segments to the second electrical connector component assembly side, wherein the extension of the second overlap segment and the second set of wiring segments are substantially different.

[0022] In one embodiment of the second electrical connector component of this application, the second overlapping segment and the second set of segments may extend and intersect.

[0023] In one embodiment of the second electrical connector component of this application, the second overlapping segment and the second set of segments can extend and intersect perpendicularly.

[0024] In one embodiment of the second electrical connector component of this application, the second electrical connector component core has a second electrical connector component core overlap support structure and a second electrical connector component core assembly support structure. The second electrical connector component core overlap support structure provides support for the second conductive terminal overlap structure, causing the second conductive terminal overlap structure to extend along the second overlap segment. The second electrical connector component core assembly support structure provides support for the second conductive terminal assembly structure, causing the second conductive terminal assembly structure to extend along the second set of wiring segments.

[0025] Compared to existing technologies, the electrical connector of this application is composed of a first electrical connector component and a second electrical connector component assembled together. The shape or size of the first electrical connector component and the second electrical connector component can be customized. That is, the shape or size of the first electrical connector component and the second electrical connector component can be substantially different. Therefore, after the electrical connector design is completed, the shape or size of the electrical connector can still be customized by adjusting the assembled first electrical connector component and the second electrical connector component, so that the shape or size of the electrical connector can be flexibly adapted to the use of electronic devices. Attached Figure Description

[0026] The features and other advantages of this application will be more clearly understood in conjunction with the following description of embodiments.

[0027] Figure 1 The diagram shown is a first-view perspective perspective of the electrical connector of this application in one embodiment.

[0028] Figure 2 The diagram shown is a second perspective view of an embodiment of the electrical connector of this application.

[0029] Figure 3 The diagram shown is a front view of the electrical connector of this application in one embodiment.

[0030] Figure 4 Displayed as Figure 3 The diagram shows a cross-section of a portion of the electrical connector cut along line segment AA.

[0031] Figure 5 Displayed as Figure 3 The diagram shows a cross-sectional view of a portion of the electrical connector cut along line segment BB.

[0032] Figure 6 The diagram shown is a first-view perspective perspective of the electrical connector of this application in one embodiment.

[0033] Figure 7 The diagram shown is a second perspective view of an embodiment of the electrical connector of this application.

[0034] Figure 8 Displayed as Figure 3 The diagram shows a cross-sectional view of a portion of the electrical connector cut along line segment A'-A'.

[0035] Figure 9 Displayed as Figure 3 The diagram shows a cross-sectional view of a portion of the electrical connector cut along line segment B'-B'.

[0036] Figure 10 The diagram shown is a first-view perspective perspective of the electrical connector of this application in one embodiment.

[0037] Figure 11 The diagram shown is a second perspective view of an embodiment of the electrical connector of this application.

[0038] Figure 12 The diagram shown is a first-view perspective view of a first electrical connector component of this application in one embodiment.

[0039] Figure 13 The diagram shown is a second perspective view of a first electrical connector component of this application in one embodiment.

[0040] Figure 14 The diagram shown is a first-view perspective view of a second electrical connector component of this application in one embodiment.

[0041] Figure 15The diagram shown is a perspective view of a second electrical connector component of this application in one embodiment.

[0042] Component symbol explanation:

[0043] 1 Electrical connector

[0044] S1111 First electrical connector assembly side

[0045] S1112 First Electrical Connector Component Overlap Side

[0046] S1211 Second Electrical Connector Assembly Side

[0047] S1212 Second Electrical Connector Component Overlap Side

[0048] 11 First electrical connector component

[0049] 110 First electrical connector component core

[0050] 1101 First electrical connector component core overlap support structure

[0051] 1102 First electrical connector component core assembly support structure

[0052] 1103 First electrical connector component core snap-fit ​​structure

[0053] 111 First conductive terminal

[0054] 1111 First conductive terminal assembly structure

[0055] 1112 First conductive terminal overlap structure

[0056] 12 Second electrical connector component

[0057] 120 Second electrical connector component core

[0058] 1201 Second electrical connector component core overlap support structure

[0059] 1202 Second electrical connector component core assembly support structure

[0060] 1203 Second electrical connector component core snap-fit ​​structure

[0061] 121 Second conductive terminal

[0062] 1211 Second conductive terminal assembly structure

[0063] 1212 Second conductive terminal overlap structure

[0064] 1213 Second conductive terminal bending structure

[0065] 1214 Second conductive terminal turning structure

[0066] L1112 First Connection Section

[0067] L1212 Second Connection Section

[0068] L1111 First Group of Wiring Sections

[0069] L1211 Second Group Wiring Section

[0070] 2 First lap joint member

[0071] 3 Second lap joint member

[0072] 4 fans Detailed Implementation

[0073] The following description, accompanied by illustrations, 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 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 components in the drawings are for illustrative purposes only and do not represent the actual implementation of this application.

[0074] The electrical connector of this application is composed of multiple electrical connector components. The shape or size of the multiple electrical connector components can be customized. Therefore, after the electrical connector design is completed, the shape or size of the electrical connector can still be customized by adjusting the multiple electrical connector components, so that the shape or size of the electrical connector can be flexibly adapted to the use of electronic devices and meet the special needs and development of electronic devices.

[0075] For the technical concept of the electrical connector in this application, please refer to the following: Figures 1 to 15 The following is an example description.

[0076] In the above embodiments, an electrical connector 1 is provided that can be disposed in an electronic device. In the electronic device, the electrical connector 1 can be coupled with a first lap member 2 and a second lap member 3 to transmit power or signals.

[0077] It should be noted that the electrical connector 1 may be, but is not limited to, a fan electrical connector disposed on the fan 4, and correspondingly, the first lap member 2 and the second lap member 3 may be, but are not limited to, conductive wires.

[0078] exist Figures 1 to 15In the illustrated embodiment, the two sides of the electrical connector 1 can be defined as a first electrical connector component overlap side S1112 and a second electrical connector component overlap side S1212, respectively. The electrical connector 1 includes at least one first electrical connector component 11 and at least one second electrical connector component 12.

[0079] Regarding the first electrical connector component 11, the two sides of the first electrical connector component 11 can be defined as the first electrical connector component overlapping side S1112 and the first electrical connector component assembly side S1111, respectively, and the first electrical connector component 11 has at least one first electrical connector component core 110 and at least one first conductive terminal 111.

[0080] The first conductive terminal 111 has at least one first conductive terminal assembly structure 1111 and at least one first conductive terminal overlap structure 1112. The first conductive terminal assembly structure 1111 may be, but is not limited to, a terminal clamping assembly structure to provide assembly for the second electrical connector member 12. The first conductive terminal overlap structure 1112 may be, but is not limited to, a wire overlap structure to provide overlap for the first overlap member 2.

[0081] The first electrical connector core 110 has a first electrical connector core overlap support structure 1101 and a first electrical connector core assembly support structure 1102. The first electrical connector core 110 engages with the first conductive terminal 111, such that the first electrical connector core overlap support structure 1101 provides support for the first conductive terminal overlap structure 1112, causing the first conductive terminal overlap structure 1112 to extend along a first overlap segment L1112 to the first electrical connector core overlap side S1112. The first electrical connector core assembly support structure 1102 provides support for the first conductive terminal assembly structure 1111, causing the first conductive terminal assembly structure 1111 to extend along a first set of connection segments L1111 to the first electrical connector core assembly side S1111.

[0082] exist Figure 9 In the embodiment shown, the first connecting segment L1112 is substantially the same as the extension of the first group of connecting segments L1111, so that the shape or size of the electrical connector 1 can be flexibly adapted to the use of electronic devices, thereby meeting the special needs and development of electronic devices.

[0083] Regarding the second electrical connector component 12, the two sides of the second electrical connector component 12 can be defined as the second electrical connector component overlapping side S1212 and the second electrical connector component assembly side S1211, respectively. The second electrical connector component 12 can be assembled with the first electrical connector component 11, and the first electrical connector component 11 has at least one second electrical connector component core 120 and at least one first conductive terminal 111.

[0084] Regarding the second electrical connector component 12, the second electrical connector component 12 has at least one second conductive terminal 121, and the second conductive terminal 121 has at least one second conductive terminal assembly structure 1211 and at least one second conductive terminal overlap structure 1212. The second conductive terminal assembly structure 1211 may be, but is not limited to, a terminal cutter assembly structure to provide assembly for the first electrical connector component 11. The second conductive terminal overlap structure 1212 may be, but is not limited to, a wire overlap structure to provide overlap for the second overlap component 3.

[0085] The second electrical connector core 120 has a second electrical connector core overlap support structure 1201 and a second electrical connector core assembly support structure 1202. The second electrical connector core 120 engages with the second conductive terminal 121, such that the second electrical connector core overlap support structure 1201 provides support for the second conductive terminal overlap structure 1212, so that the second conductive terminal overlap structure 1212 extends along a second overlap segment L1212 to the second electrical connector core overlap side S1212, and the second electrical connector core assembly support structure 1202 provides support for the second conductive terminal assembly structure 1211, so that the second conductive terminal assembly structure 1211 extends along a second set of wire segments L1211 to the second electrical connector core assembly side S1211.

[0086] exist Figure 9 In the illustrated embodiment, the extensions of the second connecting segment L1212 and the second group of connecting segments L1211 are substantially different, allowing the second connecting segment L1212 and the second group of connecting segments L1211 to extend and intersect. This enables the electrical connector 1 to flexibly adapt to the use of electronic devices, thereby meeting the specific needs and development of electronic devices. Furthermore, the second connecting segment L1212 and the second group of connecting segments L1211 can extend and intersect perpendicularly, allowing the shape or size of the electrical connector 1 to flexibly adapt to the use of various electronic devices, thereby meeting the specific needs and development of electronic devices.

[0087] It should be noted that during the process of assembling the second electrical connector component 12 with the first electrical connector component 11, the second conductive terminal assembly structure 1211 is assembled with the first conductive terminal assembly structure 1111, so that the second conductive terminal 121 is electrically connected to the first conductive terminal 111. Since the first conductive terminal overlap structure 1112 extends along the first overlap segment L1112, it can extend to the overlap side S1112 of the first electrical connector component to provide overlap of the first overlap component 2. And since the second conductive terminal overlap structure 1212 extends along a second overlap segment L1212, it can extend to the overlap side S1212 of the second electrical connector component to provide overlap of the second overlap component 3.

[0088] exist Figure 9 In the illustrated embodiment, the extensions of the first connecting segment L1112 and the second connecting segment L1212 are substantially different, allowing the first connecting segment L1112 and the second connecting segment L1212 to extend and intersect. This enables the electrical connector 1 to flexibly adapt to the use of electronic devices, thereby meeting the specific needs and development of electronic devices. Furthermore, the first connecting segment L1112 and the second connecting segment L1212 can extend and intersect perpendicularly, allowing the shape or size of the electrical connector 1 to flexibly adapt to the use of electronic devices, thereby meeting the specific needs and development of electronic devices.

[0089] exist Figure 5 and Figures 14 to 15 In the embodiment shown, the second conductive terminal 121 further has a second conductive terminal bending structure 1213, which provides bending so that the second conductive terminal overlapping structure 1212 can extend along the second overlapping segment L1212, so that the shape or size of the electrical connector 1 can be flexibly adapted to the use of electronic devices, thereby meeting the special needs and development of electronic devices.

[0090] exist Figures 14 to 15 In the embodiment shown, the second conductive terminal 121 further has a second conductive terminal turning structure 1214. The second conductive terminal turning structure 1214 may be, but is not limited to, a terminal torsion structure, so that the second conductive terminal assembly structure 1211 can be turned so that the second conductive terminal assembly structure 1211 can be assembled with the first conductive terminal assembly structure 1111, so that the electrical connector 1 can flexibly adapt to electronic devices and meet the special needs and development of electronic devices.

[0091] exist Figure 4 , Figures 6 to 7 and Figures 12 to 13In the illustrated embodiment, the first electrical connector component core 110 further has a first electrical connector component core snap-fit ​​structure 1103. The first electrical connector component core snap-fit ​​structure 1103 may be, but is not limited to, a snap-fit ​​block structure. The first electrical connector component core snap-fit ​​structure 1103 can snap-fit ​​the second electrical connector component 12 to prevent the state of the second electrical connector component 12 being connected to the first electrical connector component 11 from being easily released.

[0092] Correspondingly, the second electrical connector component core 120 also has a second electrical connector component core snap-fit ​​structure 1203. The second electrical connector component core snap-fit ​​structure 1203 may be, but is not limited to, a snap-fit ​​elastic arm structure. The first electrical connector component core snap-fit ​​structure 1103 may snap-fit ​​the first electrical connector component 11 to prevent the state of the second electrical connector component 12 being connected to the first electrical connector component 11 from being easily released.

[0093] It should be noted that, in the embodiments of this application, some of the aforementioned components may be omitted. For example, the electrical connector of this application may optionally include only a first electrical connector component and a second electrical connector component. The first electrical connector component has a first conductive terminal, which has a first conductive terminal assembly structure and a first conductive terminal overlap structure. The second electrical connector component can be assembled with the first electrical connector component, and the second electrical connector component has a second conductive terminal, which has a second conductive terminal assembly structure and a second conductive terminal overlap structure. Wherein, when the second electrical connector component is assembled with the first electrical connector component, the second conductive terminal assembly structure is assembled with the first conductive terminal assembly structure, so that the second conductive terminal is electrically connected to the first conductive terminal. The first conductive terminal overlap structure extends along a first overlap segment to the overlap side of the first electrical connector component, and the second conductive terminal overlap structure extends along a second overlap segment to the overlap side of the second electrical connector component. The extensions of the first overlap segment and the second overlap segment are substantially different.

[0094] Alternatively, the first electrical connector component of this application may optionally include only: a first conductive terminal and a first electrical connector component core. The first conductive terminal has a first conductive terminal assembly structure and a first conductive terminal overlap structure. The first electrical connector component core engages with the first conductive terminal, such that the first conductive terminal overlap structure extends along a first overlap segment to the first electrical connector component overlap side, and the first conductive terminal assembly structure extends along a first set of wiring segments to the first electrical connector component assembly side, wherein the extension of the first overlap segment and the first set of wiring segments are substantially the same.

[0095] Furthermore, the second electrical connector component of this application may optionally include only: a second conductive terminal and a second electrical connector component core. The second conductive terminal has a second conductive terminal assembly structure and a second conductive terminal overlap structure; the second electrical connector component core engages with the second conductive terminal, such that the second conductive terminal overlap structure extends along the second overlap segment to the second electrical connector component overlap side, and the second conductive terminal assembly structure extends along the second set of wiring segments to the second electrical connector component assembly side, wherein the extension of the second overlap segment and the second set of wiring segments are substantially different.

[0096] In summary, the electrical connector of this application is composed of a first electrical connector component and a second electrical connector component. The shape or size of the first electrical connector component and the second electrical connector component can be customized. That is, the shape or size of the first electrical connector component and the second electrical connector component can be substantially different. Therefore, after the electrical connector design is completed, the shape or size of the electrical connector can still be customized by adjusting the first electrical connector component and the second electrical connector component, so that the shape or size of the electrical connector can be flexibly adapted to the use of electronic equipment.

[0097] 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 in that, The two sides of the electrical connector can be defined as a first electrical connector component overlap side and a second electrical connector component overlap side, respectively. The electrical connector includes: A first electrical connector component, the first electrical connector component having a first conductive terminal, the first conductive terminal having a first conductive terminal assembly structure and a first conductive terminal overlap structure; and A second electrical connector component is provided, which can be assembled with the first electrical connector component. The second electrical connector component has a second conductive terminal, and the second conductive terminal has a second conductive terminal assembly structure and a second conductive terminal overlap structure. When the second electrical connector component is assembled with the first electrical connector component, the second conductive terminal assembly structure is assembled with the first conductive terminal assembly structure, so that the second conductive terminal is electrically connected to the first conductive terminal. The first conductive terminal overlap structure extends along a first overlap segment to the overlap side of the first electrical connector component, and the second conductive terminal overlap structure extends along a second overlap segment to the overlap side of the second electrical connector component. The extensions of the first overlap segment and the second overlap segment are substantially different.

2. The electrical connector according to claim 1, characterized in that, The first lap joint segment and the second lap joint segment can extend and intersect.

3. The electrical connector according to claim 2, characterized in that, The first lap joint segment and the second lap joint segment can extend and intersect perpendicularly.

4. The electrical connector according to claim 1, characterized in that, The second conductive terminal also has a second conductive terminal bending structure, which provides a bend so that the second conductive terminal overlap structure can extend along the second overlap segment.

5. The electrical connector according to claim 1, characterized in that, The second conductive terminal also has a second conductive terminal turning structure, which can turn the second conductive terminal assembly structure so that the second conductive terminal assembly structure can be connected to the first conductive terminal assembly structure.

6. The electrical connector according to claim 5, characterized in that, The second conductive terminal turning structure is a terminal torsion structure.

7. The electrical connector according to claim 1, characterized in that, The first conductive terminal assembly structure is a terminal clamping assembly structure, while the second conductive terminal assembly structure is a terminal cutter assembly structure.

8. The electrical connector according to claim 1, characterized in that, The first electrical connector component further includes a first electrical connector component core, the first electrical connector component core having a first electrical connector component core overlap support structure, the first electrical connector component core engaging with the first conductive terminal, and the first electrical connector component core overlap support structure providing support for the first conductive terminal overlap structure, so that the first conductive terminal overlap structure extends along the first overlap segment.

9. The electrical connector according to claim 1, characterized in that, The second electrical connector component further includes a second electrical connector component core, the second electrical connector component core having a second electrical connector component core overlap support structure, the second electrical connector component core engaging with the second conductive terminal, and the second electrical connector component core overlap support structure providing support for the second conductive terminal overlap structure, so that the second conductive terminal overlap structure extends along the second overlap segment.

10. The electrical connector according to claim 1, characterized in that, The first electrical connector component also has a first electrical connector component core, the first electrical connector component core having a first electrical connector component core snap-fit ​​structure, the first electrical connector component core engaging with the first conductive terminal, and the first electrical connector component core snap-fit ​​structure being able to snap the second electrical connector component, so as to prevent the state of the second electrical connector component being connected to the first electrical connector component from being easily released.

11. The electrical connector according to claim 10, characterized in that, The first electrical connector component has a snap-fit ​​core structure, which is a snap-fit ​​block structure.

12. The electrical connector according to claim 1, characterized in that, The second electrical connector component also has a second electrical connector component core, the second electrical connector component core having a second electrical connector component core snap-fit ​​structure, the second electrical connector component core engaging with the second conductive terminal, and the second electrical connector component core snap-fit ​​structure snapping onto the first electrical connector component to prevent the state of the second electrical connector component being easily released from the connection with the first electrical connector component.

13. The electrical connector according to claim 12, characterized in that, The second electrical connector component core snap-fit ​​structure is a snap-fit ​​elastic arm structure.

14. The electrical connector according to claim 1, characterized in that, The electrical connector is a fan electrical connector.

15. The electrical connector according to claim 1, characterized in that, The first conductive terminal overlap structure and the second conductive terminal overlap structure are a wire overlap structure.

16. A first electrical connector component, characterized in that, The two sides of the first electrical connector component can be defined as a first electrical connector component lap side and a first electrical connector component assembly side, respectively. The first electrical connector component includes: A first conductive terminal, the first conductive terminal having a first conductive terminal assembly structure and a first conductive terminal overlap structure; and A first electrical connector component core is provided, which engages with the first conductive terminal, such that the first conductive terminal overlap structure extends along a first overlap segment to the overlap side of the first electrical connector component, and the first conductive terminal assembly structure extends along a first set of wiring segments to the assembly side of the first electrical connector component, wherein the extension of the first overlap segment and the first set of wiring segments are substantially the same.

17. The first electrical connector component according to claim 16, characterized in that, The first electrical connector component core has a first electrical connector component core overlap support structure and a first electrical connector component core assembly support structure. The first electrical connector component core overlap support structure provides support for the first conductive terminal overlap structure, so that the first conductive terminal overlap structure extends along the first overlap segment. The first electrical connector component core assembly support structure provides support for the first conductive terminal assembly structure, so that the first conductive terminal assembly structure extends along the first set of wiring segments.

18. A second electrical connector component, characterized in that, The two sides of the second electrical connector component can be defined as a second electrical connector component overlap side and a second electrical connector component assembly side, respectively. The second electrical connector component includes: A second conductive terminal, the second conductive terminal having a second conductive terminal assembly structure and a second conductive terminal overlap structure; and A second electrical connector component core is provided, which engages with the second conductive terminal, such that the second conductive terminal overlap structure extends along a second overlap segment to the overlap side of the second electrical connector component, and the second conductive terminal assembly structure extends along a second set of wiring segments to the assembly side of the second electrical connector component, wherein the extension of the second overlap segment and the extension of the second set of wiring segments are substantially different.

19. The second electrical connector component according to claim 18, characterized in that, The second connecting segment and the second set of connecting segments can extend and intersect.

20. The second electrical connector component according to claim 19, characterized in that, The second connecting segment and the second set of connecting segments can extend and intersect perpendicularly.

21. The second electrical connector component according to claim 18, characterized in that, The second electrical connector component core has a second electrical connector component core overlap support structure and a second electrical connector component core assembly support structure. The second electrical connector component core overlap support structure provides support for the second conductive terminal overlap structure, so that the second conductive terminal overlap structure extends along the second overlap segment. The second electrical connector component core assembly support structure provides support for the second conductive terminal assembly structure, so that the second conductive terminal assembly structure extends along the second set of wiring segments.