Electrical connector and electrically conductive terminal thereof

CN224804268UActive Publication Date: 2026-09-25TARNG YU ENTERPRISE +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521766947.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-09-20
Filing Date
2025-08-19
Publication Date
2026-09-25
Estimated Expiration
2035-08-19

AI Technical Summary

Technical Problem

[0003]然,随着电子产品朝着薄型化的方向来发展,导致电子产品内部空间有限,使得电连接器的整体尺寸被不断地要求微小化,而让导电端子与绝缘胶芯的尺寸也需要微小化

Benefits of technology

[0020]相较于先前技术,本申请提供能够微小化的一种电连接器及其导电端子,所述电连接器包括能够提供所述导电端子插接的一绝缘胶芯,而所述导电端子包括一端子推抵结构与一端子止挡结构,所述端子推抵结构能够推抵所述绝缘胶芯以迫使所述绝缘胶芯变形,使所述端子止挡结构能够进入所述绝缘胶芯,以令所述端子止挡结构能够止挡所述绝缘胶芯,而将所述导电端子定位于所述绝缘胶芯,进而避免所述导电端子退出所述绝缘胶芯。如此,能够有效避免微小化的电连接器在电子产品上使用受到外力冲击时导电端子轻易脱离所插接的绝缘胶芯。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224804268U_ABST
    Figure CN224804268U_ABST
Patent Text Reader

Abstract

The application provides an electric connector and a conductive terminal thereof. The electric connector comprises an insulating rubber core capable of providing the conductive terminal with insertion, and the conductive terminal is capable of stopping the insulating rubber core and positioning the conductive terminal in the insulating rubber core, thereby avoiding the conductive terminal from exiting the insulating rubber core. In this way, the conductive terminal of the miniaturized electric connector can be effectively prevented from easily separating from the inserted insulating rubber core when the electronic product is subjected to external force impact.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of electronic device technology, and more specifically, to a miniaturizable electrical connector and its conductive terminals. Background Technology

[0002] Note that electronic products often use electrical connectors to transmit electrical or power signals. Generally, an electrical connector consists of an insulating core and conductive terminals. The conductive terminals can be inserted into the insulating core, and the friction generated by the contact between the conductive terminals and the insulating core prevents them from detaching.

[0003] However, as electronic products become increasingly thinner, the limited internal space necessitates miniaturization of the overall size of electrical connectors, requiring both conductive terminals and insulating cores to be miniaturized. This often results in insufficient contact area between the conductive terminals and the insulating core, leading to inadequate friction. Consequently, when subjected to external impacts, the conductive terminals can easily detach from the insulating core, affecting the normal operation of the electronic product or even causing damage.

[0004] In view of this, how to solve the problem that the conductive terminals of miniaturized electrical connectors easily detach from the insulating core when subjected to external impacts during use in electronic products is an urgent issue for those in the relevant technical field. Summary of the Invention

[0005] In view of the aforementioned shortcomings of the prior art, this application provides an electrical connector, the electrical connector comprising: an insulating core, the insulating core including a core body and a core stop spring arm, the core body including a core insertion space, a core receiving space and a core guide channel, the core guide channel respectively connecting the core insertion space and the core receiving space, and the core stop spring arm including a core stop arm structure; and a conductive terminal, the conductive terminal including a terminal body, a terminal push structure and a terminal stop structure, the two sides of the terminal body being a first terminal body side and a second terminal body side respectively, the terminal stop structure including a first terminal stop substructure and a second terminal stop structure, the first terminal stop substructure being connected to the terminal body on the first terminal body side, and the second terminal stop structure being connected to the terminal body on the second terminal body side; wherein, the insulating core... The conductive channel guides the conductive terminal to be inserted into the insulating core, allowing the terminal body to enter the core insertion space. During the insertion of the conductive terminal into the insulating core, the terminal pushing structure pushes against the core stop spring arm to force the core stop spring arm to deform, allowing the terminal stop structure to enter the core body and be accommodated in the core accommodating space. Furthermore, during the accommodating space of the terminal stop structure, the terminal pushing structure releases the push against the core stop spring arm, causing the core stop spring arm to deform, so that the core spring arm stop structure is adjacent to the terminal stop structure. This allows the first terminal stop substructure and the second terminal stop structure to abut against the core spring arm stop structure to provide a stop, thereby positioning the terminal body on the first terminal body side and the second terminal body side respectively, thus preventing the terminal body from exiting the core insertion space.

[0006] Preferably, in the electrical connector of this application, the first terminal stop structure, the second terminal stop structure and the rubber core spring arm stop structure are wall structures.

[0007] Preferably, in the electrical connector of this application, the terminal pushing structure includes a first terminal pushing substructure and a second terminal pushing substructure. The first terminal pushing substructure is adjacent to the first terminal stop substructure and can push against the core stop spring arm to force the core stop spring arm to deform, so that the first terminal stop substructure can enter the core body and be accommodated in the core accommodating space; and the second terminal pushing substructure is adjacent to the second terminal stop structure and can push against the core stop spring arm to force the core stop spring arm to deform, so that the second terminal stop structure can enter the core body and be accommodated in the core accommodating space.

[0008] Preferably, in the electrical connector of this application, the first terminal push-abutment structure and the second terminal push-abutment structure are protruding structures.

[0009] Preferably, in the electrical connector of this application, the conductive terminal further includes a first terminal positioning arm and a second terminal positioning arm, the first terminal positioning arm and the second terminal positioning arm being connected to the terminal body on the first terminal body side and the second terminal body side respectively, the first terminal push-abutment structure and the first terminal stop structure being disposed on the first terminal positioning arm, and the second terminal push-abutment structure and the second terminal stop structure being disposed on the second terminal positioning arm.

[0010] Preferably, in the electrical connector of this application, the first terminal positioning arm includes a first terminal positioning arm body and a first terminal positioning arm bending structure, the first terminal positioning arm bending structure being capable of bending the first terminal positioning arm body to form the first terminal push sub-structure and the first terminal stop sub-structure; and the second terminal positioning arm includes a second terminal positioning arm body and a second terminal positioning arm bending structure, the second terminal positioning arm bending structure being capable of bending the second terminal positioning arm body to form the second terminal push sub-structure and the second terminal stop structure.

[0011] Preferably, in the electrical connector of this application, one end of the first terminal positioning arm includes a first terminal positioning arm end, and one end of the second terminal positioning arm includes a second terminal positioning arm end, wherein the first terminal positioning arm end abuts against or presses against the second terminal positioning arm end.

[0012] Preferably, in the electrical connector of this application, the electrical connector is a wire connector capable of connecting a conductive wire.

[0013] In addition, this application provides a conductive terminal capable of inserting into an insulating core. The conductive terminal includes: a terminal body, with a first terminal body side and a second terminal body side on both sides; a terminal pushing structure; and a terminal stopping structure, the terminal stopping structure including a first terminal stopping substructure and a second terminal stopping structure. The first terminal stopping substructure is connected to the terminal body on the first terminal body side, and the second terminal stopping structure is connected to the terminal body on the second terminal body side. During the insertion of the conductive terminal into the insulating core, the terminal body can enter the insulating core, and the terminal pushing structure can push against the insulating core to force the insulating core to deform, allowing the terminal stopping structure to enter the insulating core. This allows the first terminal stopping substructure and the second terminal stopping structure to abut against the insulating core to provide a stop, and the terminal body is positioned on the first terminal body side and the second terminal body side respectively, thereby preventing the terminal body from exiting the insulating core.

[0014] Preferably, in the conductive terminals of this application, the first terminal stop structure and the second terminal stop structure are wall structures.

[0015] Preferably, in the conductive terminal of this application, the terminal pushing structure includes a first terminal pushing substructure and a second terminal pushing substructure. The first terminal pushing substructure is adjacent to the first terminal stop substructure. The first terminal pushing substructure and the second terminal pushing substructure can push against the insulating core to force the insulating core to deform, so that the first terminal stop structure and the second terminal stop structure can enter the insulating core.

[0016] Preferably, in the conductive terminals of this application, the first terminal pusher structure and the second terminal pusher structure are protruding structures.

[0017] Preferably, in the conductive terminal of this application, the conductive terminal further includes a first terminal positioning arm and a second terminal positioning arm, the first terminal positioning arm and the second terminal positioning arm are respectively connected to the terminal body on the first terminal body side and the second terminal body side, the first terminal push substructure and the first terminal stop substructure are disposed on the first terminal positioning arm, and the second terminal push substructure and the second terminal stop substructure are disposed on the second terminal positioning arm.

[0018] Preferably, in the conductive terminal of this application, the first terminal positioning arm includes a first terminal positioning arm body and a first terminal positioning arm bending structure, the first terminal positioning arm bending structure being capable of bending the first terminal positioning arm body to form the first terminal push sub-structure and the first terminal stop sub-structure; and the second terminal positioning arm includes a second terminal positioning arm body and a second terminal positioning arm bending structure, the second terminal positioning arm bending structure being capable of bending the second terminal positioning arm body to form the second terminal push sub-structure and the second terminal stop structure.

[0019] Preferably, in the conductive terminal of this application, one end of the first terminal positioning arm includes a first terminal positioning arm end, and one end of the second terminal positioning arm includes a second terminal positioning arm end, wherein the first terminal positioning arm end abuts against or presses against the second terminal positioning arm end.

[0020] Compared to prior art, this application provides a miniaturized electrical connector and its conductive terminals. The electrical connector includes an insulating core for inserting the conductive terminals. The conductive terminals include a terminal push-off structure and a terminal stop structure. The terminal push-off structure pushes against the insulating core, forcing the insulating core to deform, allowing the terminal stop structure to enter the insulating core and stop the insulating core, thus positioning the conductive terminals within the insulating core and preventing them from coming out. This effectively prevents the conductive terminals from easily detaching from the inserted insulating core when the miniaturized electrical connector is subjected to external impact during use in electronic products. Attached Figure Description

[0021] The above and other aspects, features and other advantages of this application can be more clearly understood through the disclosure of the embodiments in the drawings of this application.

[0022] Figure 1 The present application provides a perspective view of an embodiment of the electrical connector.

[0023] Figure 2 The present application provides a first-view perspective perspective view of an embodiment of the electrical connector.

[0024] Figure 3 The present application provides a perspective view of the electrical connector in one embodiment.

[0025] Figure 4 The diagram shows a front view of an embodiment of the electrical connector described in this application.

[0026] Figure 5 , Figure 4 The diagram shows a cross-section of a portion of the electrical connector cut along line segment AA.

[0027] Figure 6 , Figure 4 The diagram shows a cross-sectional view of a portion of the electrical connector cut along line segment A'A'.

[0028] Figure 7 The present application provides a perspective view of an embodiment of the electrical connector.

[0029] Figure 8 The present application provides a first-view perspective perspective view of an embodiment of the electrical connector.

[0030] Figure 9 The present application provides a perspective view of the electrical connector in one embodiment.

[0031] Figure 10 The diagram shows a front view of an embodiment of the electrical connector described in this application.

[0032] Figure 11 , Figure 10 The diagram shows a cross-sectional view of a portion of the electrical connector cut along line segment BB.

[0033] Component designation explanation

[0034] 1 Electrical connector

[0035] 10 Insulating core

[0036] 100 rubber core body

[0037] 101 Rubber Core Stop Arm

[0038] 1011 Rubber Core Spring Arm Stop Structure

[0039] S1 Core Insertion Space

[0040] S2 Core Retention Space

[0041] P Core Guide Channel

[0042] 11. Conductive terminals

[0043] 110 Terminal body

[0044] 111 Terminal Push-Off Structure

[0045] 1111 First terminal push substructure

[0046] 1112 Second terminal push substructure

[0047] 112 Terminal Stop Structure

[0048] 1121 First terminal stop structure

[0049] 1122 Second terminal stop structure

[0050] 113 First terminal positioning arm

[0051] 1130 First terminal positioning arm body

[0052] 1131 First terminal positioning arm bending structure

[0053] 1132 First terminal positioning arm end

[0054] 114 Second terminal positioning arm

[0055] 1140 Second Terminal Positioning Arm Body

[0056] 1141 Second terminal positioning arm bending structure

[0057] 1142 Second terminal positioning arm end

[0058] L1 First terminal body side

[0059] L2 Second Terminal Body Side

[0060] 2 Conductive wires Detailed Implementation

[0061] The technical content of this application is described below 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 be implemented or applied through other different embodiments. Various details in this specification can be modified and changed based on different viewpoints and applications without departing from the spirit of this application.

[0062] The above and other aspects, features and other advantages of this application will become more clearly understood from the following description of embodiments in conjunction with the drawings.

[0063] This application provides an electrical connector and its conductive terminals. The electrical connector includes an insulating core for inserting the conductive terminals, and the conductive terminals can stop the insulating core, thereby positioning the conductive terminals within the insulating core and preventing them from coming out of it. This effectively prevents the conductive terminals from easily detaching from the inserted insulating core when the miniaturized electrical connector is subjected to external impact during use in electronic products.

[0064] Please refer to the technical concepts outlined in this application. Figures 1 to 11 The revelation.

[0065] At Figures 1 to 11The illustrated embodiment discloses an electrical connector 1, which includes an insulating core 10 and a conductive terminal 11. In the above embodiment, the electrical connector 1 is a wire connector capable of connecting a conductive wire 2 to transmit electrical signals or power signals, but it is not limited thereto. For example, the electrical connector 1 can also be selected as a board connector capable of connecting a circuit board to transmit electrical signals or power signals.

[0066] Regarding the insulating core 10, the insulating core 10 includes a core body 100 and a core stop spring arm 101. For example... Figures 2 to 3 , Figures 5 to 6 , Figures 8 to 9 and Figure 11 As shown, the rubber core stop arm 101 includes a rubber core stop structure 1011, and the rubber core body 100 includes a rubber core insertion space S1, a rubber core receiving space S2 and a rubber core guide channel P, wherein the rubber core guide channel P connects the rubber core insertion space S1 and the rubber core receiving space S2 respectively.

[0067] Regarding the conductive terminal 11, the conductive terminal 11 includes a terminal body 110, a terminal push-off structure 111, and a terminal stop structure 112. For example... Figures 2 to 3 and Figures 8 to 9 As shown, the terminal body 110 has a first terminal body side L1 and a second terminal body side L2 on its two sides, respectively. The terminal stop structure 112 includes a first terminal stop substructure 1121 and a second terminal stop structure 1122. The first terminal stop substructure 1121 is connected to the terminal body 110 on the first terminal body side L1, so that the first terminal stop structure 1121 can stop the movement of the terminal body 110 on the first terminal body side L1. In addition, the second terminal stop structure 1122 is connected to the terminal body 110 on the second terminal body side L2, so that the second terminal stop structure 1122 can stop the movement of the terminal body 110 on the second terminal body side L2.

[0068] In the above embodiments, it should be noted that the core guiding channel P can provide a guiding structure to guide the conductive terminal 11 to be inserted into the insulating core 10, so that the terminal body 110 enters the core insertion space S1 of the insulating core 10. It should also be noted that during the process of the conductive terminal 11 being inserted into the insulating core 10, the terminal pushing structure 111 can push against the core stop spring arm 101 of the insulating core 10 to force the core stop spring arm 101 of the insulating core 10 to deform, so that the terminal stop structure 112 can enter the core body 100 of the insulating core 10 through the core guiding channel P and be accommodated in the core accommodating space S2. Furthermore, during the process of the terminal stop structure 112 being housed in the core receiving space S2, the terminal push structure 111 can release the push against the core stop spring arm 101, causing the core stop spring arm 101 to release its deformation, so that the core spring arm stop structure 1011 is adjacent to the terminal stop structure 112, allowing the first terminal stop substructure 1121 and the second terminal stop substructure 1122 to respectively abut against the core spring arm stop structure 1011 of the insulating core 10 to provide a stop, and positioning the terminal body 110 on the first terminal body side L1 and the second terminal body side L2 respectively, while stopping the terminal body 110 from moving relative to the core body 100 on the first terminal body side L1 and the second terminal body side L2, thereby preventing the terminal body 110 from exiting the core insertion space S1 of the insulating core 10 via the core guide channel P. Thus, the electrical connector 1 can be miniaturized, and when the electrical connector 1 is used in electronic products, the conductive terminal 11 is not easily dislodged from the inserted insulating core 10 by external impact.

[0069] At Figures 2 to 3 and Figures 8 to 9 In the illustrated embodiment, the first terminal stop structure 1121, the second terminal stop structure 1122, and the core spring arm stop structure 1011 are wall-like structures. Thus, the first terminal stop structure 1121 and the second terminal stop structure 1122 can abut against the core spring arm stop structure 1011 in a surface-to-surface contact manner, thereby improving the stopping effect of the core spring arm stop structure 1011 on the movement of the conductive terminal 11. This allows the core spring arm stop structure 1011 to achieve the technical effect of stopping the movement of the conductive terminal 11 relative to the insulating core 10 on both the first terminal body side L1 and the second terminal body side L2.

[0070] At Figure 3 and Figure 8In the illustrated embodiment, the terminal pushing structure 111 includes a first terminal pushing substructure 1111 and a second terminal pushing substructure 1112. The first terminal pushing substructure 1111 is adjacent to the first terminal stop substructure 1121, and the first terminal pushing substructure 1111 is, for example, a protruding structure, such that in specific implementation, the first terminal pushing substructure 1111 can push against the core stop spring arm 101 to force the core stop spring arm 101 to deform, allowing the first terminal stop structure 1121 to enter the core body 100 via the core guide channel P and be accommodated in the core accommodating space S2. Regarding the second terminal push substructure 1112, the second terminal push substructure 1112 is adjacent to the second terminal stop substructure 1122. The second terminal push substructure 1112 is, for example, a protruding structure, so that in specific implementation, the second terminal push substructure 1112 can push against the core stop spring arm 101 to force the core stop spring arm 101 to deform, so that the second terminal stop substructure 1122 can enter the core body 100 through the core guide channel P and be accommodated in the core accommodating space S2.

[0071] At Figures 2 to 3 and Figures 8 to 9 In the illustrated embodiment, the conductive terminal 11 further includes a first terminal positioning arm 113 and a second terminal positioning arm 114. The first terminal positioning arm 113 is connected to the terminal body 110 at the first terminal body side L1, enabling the first terminal positioning arm 113 to position the terminal body 110 at the first terminal body side L1. Correspondingly, a first terminal push sub-structure 1111 and a first terminal stop sub-structure 1121 are disposed on the first terminal positioning arm 113. In a specific implementation, the first terminal positioning arm 113 may optionally include a first terminal positioning arm body 1130 and a first terminal positioning arm bending structure 1131, wherein the first terminal positioning arm bending structure 1131 can bend the first terminal positioning arm body 1130 to form the first terminal push sub-structure 1111 and the first terminal stop structure 1121. In this way, the volume of the conductive terminal 11 can be reduced by bending the first terminal positioning arm body 1130, so that the electrical connector 1 can be miniaturized and used in electronic products with limited internal space.

[0072] Regarding the second terminal positioning arm 114, the second terminal positioning arm 114 is connected to the terminal body 110 at the second terminal body side L2, so that the second terminal positioning arm 114 can position the terminal body 110 at the second terminal body side L2. Correspondingly, the second terminal push sub-structure 1112 and the second terminal stop sub-structure 1122 are disposed on the second terminal positioning arm 114. In a specific implementation, the second terminal positioning arm 114 can optionally include a second terminal positioning arm body 1140 and a second terminal positioning arm bending structure 1141, wherein the second terminal positioning arm bending structure 1141 can bend the second terminal positioning arm body 1140 to form the second terminal push sub-structure 1112 and the second terminal stop structure 1122. In this way, the volume of the conductive terminal 11 can be reduced by bending the second terminal positioning arm body 1140, so that the electrical connector 1 can be miniaturized and used in electronic products with limited internal space.

[0073] In the above embodiments, one end of the first terminal positioning arm 113 includes a first terminal positioning arm end 1132, and one end of the second terminal positioning arm 114 includes a second terminal positioning arm end 1142, wherein the first terminal positioning arm end 1132 abuts against (e.g.) Figure 3 (as shown) or crimping (e.g.) Figure 8 (As shown) The end of the second terminal positioning arm 1142. In this way, the structural strength of the conductive terminal 11 can be improved while miniaturizing the conductive terminal 11.

[0074] It should be noted that the electrical connector and its conductive terminals provided in this application may omit some of the aforementioned features. For example, in this application, the electrical connector includes: an insulating core and conductive terminals. The insulating core includes a core body and a core stop spring arm. The core body includes a core insertion space, a core receiving space, and a core guiding channel. The core guiding channel connects the core insertion space and the core receiving space respectively, and the core stop spring arm includes a core stop arm structure. The conductive terminal includes a terminal body, a terminal pushing structure, and a terminal stop structure. The two sides of the terminal body are a first terminal body side and a second terminal body side, respectively. The terminal stop structure includes a first terminal stop substructure and a second terminal stop structure. The first terminal stop substructure is connected to the terminal body on the first terminal body side, and the second terminal stop structure is connected to the terminal body on the second terminal body side. The core guide channel guides the conductive terminal to be inserted into the insulating core, allowing the terminal body to enter the core insertion space. During the insertion of the conductive terminal into the insulating core, the terminal pushing structure pushes the core stop spring arm to force the core stop spring arm to deform, allowing the terminal stop structure to enter the core body and be accommodated in the core accommodating space. During the accommodating space of the core, the terminal pushing structure releases the pushing of the core stop spring arm to release the deformation of the core stop spring arm, allowing the core spring arm stop structure to be adjacent to the terminal stop structure. This allows the first terminal stop substructure and the second terminal stop structure to abut against the core spring arm stop structure to provide a stop, thereby positioning the terminal body on the first terminal body side and the second terminal body side, respectively, thus preventing the terminal body from exiting the core insertion space.

[0075] Furthermore, in this application, the conductive terminal includes: a terminal body, a terminal pushing structure, and a terminal stopping structure. The two sides of the terminal body are respectively a first terminal body side and a second terminal body side. The terminal stopping structure includes a first terminal stopping sub-structure and a second terminal stopping structure. The first terminal stopping sub-structure is connected to the terminal body on the first terminal body side, and the second terminal stopping structure is connected to the terminal body on the second terminal body side. During the insertion of the conductive terminal into the insulating core, the terminal body can enter the insulating core, and the terminal pushing structure can push against the insulating core to force the insulating core to deform, allowing the terminal stopping structure to enter the insulating core. This allows the first terminal stopping sub-structure and the second terminal stopping structure to respectively abut against the insulating core to provide stopping, thereby positioning the terminal body on the first terminal body side and the second terminal body side, and preventing the terminal body from exiting the insulating core.

[0076] In summary, this application provides a miniaturized electrical connector and its conductive terminals. The electrical connector includes an insulating core for inserting the conductive terminals. The conductive terminals include a terminal push-off structure and a terminal stop structure. The terminal push-off structure pushes against the insulating core, forcing it to deform, allowing the terminal stop structure to enter the insulating core and stop it, thus positioning the conductive terminals within the insulating core and preventing them from detaching. This effectively prevents the conductive terminals from easily detaching from the inserted insulating core when the miniaturized electrical connector is subjected to external impact during use in electronic products.

[0077] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Anyone skilled in the art 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, characterized in that, The electrical connector includes: An insulating rubber core, the insulating rubber core comprising a rubber core body and a rubber core stop spring arm, the rubber core body comprising a rubber core insertion space, a rubber core receiving space, and a rubber core guide channel, the rubber core guide channel respectively connecting the rubber core insertion space and the rubber core receiving space, and the rubber core stop spring arm comprising a rubber core spring arm stop structure; and A conductive terminal includes a terminal body, a terminal push-off structure, and a terminal stop structure. The terminal body has a first terminal body side and a second terminal body side on its two sides. The terminal stop structure includes a first terminal stop sub-structure and a second terminal stop structure. The first terminal stop sub-structure is connected to the terminal body on the first terminal body side, and the second terminal stop structure is connected to the terminal body on the second terminal body side. The core guide channel can guide the conductive terminal to be inserted into the insulating core, so that the terminal body enters the core insertion space; During the process of inserting the conductive terminal into the insulating core, the terminal pushing structure can push against the core stop spring arm to force the core stop spring arm to deform, allowing the terminal stop structure to enter the core body and be accommodated in the core accommodating space; and During the process of the terminal stop structure being accommodated in the core accommodating space, the terminal pushing structure can release the core stop spring arm to release the deformation of the core stop spring arm, so that the core spring arm stop structure is adjacent to the terminal stop structure, so that the first terminal stop substructure and the second terminal stop structure can respectively abut against the core spring arm stop structure to provide a stop, and the terminal body is positioned on the first terminal body side and the second terminal body side respectively, thereby preventing the terminal body from exiting the core insertion space.

2. The electrical connector according to claim 1, characterized in that, The first terminal stop structure, the second terminal stop structure, and the rubber core spring arm stop structure are wall structures.

3. The electrical connector according to claim 1, wherein, The terminal pushing structure includes a first terminal pushing substructure and a second terminal pushing substructure. The first terminal pushing substructure is adjacent to the first terminal stop substructure and can push against the rubber core stop spring arm to force the rubber core stop spring arm to deform, so that the first terminal stop substructure can enter the rubber core body and be accommodated in the rubber core accommodating space. The second terminal pushing substructure is adjacent to the second terminal stop structure and can push against the rubber core stop spring arm to force the rubber core stop spring arm to deform, so that the second terminal stop structure can enter the rubber core body and be accommodated in the rubber core accommodating space.

4. The electrical connector according to claim 3, characterized in that, The first terminal pusher structure and the second terminal pusher structure are protruding structures.

5. The electrical connector according to claim 3, characterized in that, The conductive terminal further includes a first terminal positioning arm and a second terminal positioning arm. The first terminal positioning arm and the second terminal positioning arm are respectively connected to the terminal body on the first terminal body side and the second terminal body side. The first terminal pusher structure and the first terminal stop structure are disposed on the first terminal positioning arm, and the second terminal pusher structure and the second terminal stop structure are disposed on the second terminal positioning arm.

6. The electrical connector according to claim 5, characterized in that, The first terminal positioning arm includes a first terminal positioning arm body and a first terminal positioning arm bending structure. The first terminal positioning arm bending structure can bend the first terminal positioning arm body to form the first terminal push substructure and the first terminal stop substructure. as well as The second terminal positioning arm includes a second terminal positioning arm body and a second terminal positioning arm bending structure. The second terminal positioning arm bending structure can bend the second terminal positioning arm body to form the second terminal push sub-structure and the second terminal stop sub-structure.

7. The electrical connector according to claim 5, characterized in that, One end of the first terminal positioning arm includes a first terminal positioning arm end, and one end of the second terminal positioning arm includes a second terminal positioning arm end. The first terminal positioning arm end abuts against or presses against the second terminal positioning arm end.

8. The electrical connector according to claim 1, characterized in that, The electrical connector is a wire connector capable of connecting a conductive wire.

9. A conductive terminal, characterized in that, The conductive terminal is capable of being inserted into an insulating core, and the conductive terminal includes: A terminal body, wherein the two sides of the terminal body are a first terminal body side and a second terminal body side, respectively; One-terminal push-off structure; and A terminal stop structure includes a first terminal stop substructure and a second terminal stop structure. The first terminal stop structure is connected to the terminal body on the first terminal body side, and the second terminal stop structure is connected to the terminal body on the second terminal body side. During the process of inserting the conductive terminal into the insulating core, the terminal body can enter the insulating core, and the terminal pushing structure can push the insulating core to force the insulating core to deform, so that the terminal stop structure can enter the insulating core, so that the first terminal stop structure and the second terminal stop structure can respectively abut against the insulating core to provide a stop, and the terminal body is positioned on the first terminal body side and the second terminal body side respectively, thereby preventing the terminal body from exiting the insulating core.

10. The conductive terminal according to claim 9, characterized in that, The first terminal stop structure and the second terminal stop structure are wall structures.

11. The conductive terminal according to claim 9, characterized in that, The terminal pushing structure includes a first terminal pushing substructure and a second terminal pushing substructure. The first terminal pushing substructure is adjacent to the first terminal stop substructure. The first terminal pushing substructure and the second terminal pushing substructure can push against the insulating core to force the insulating core to deform, so that the first terminal stop structure and the second terminal stop structure can enter the insulating core.

12. The conductive terminal according to claim 11, characterized in that, The first terminal pusher structure and the second terminal pusher structure are protruding structures.

13. The conductive terminal according to claim 11, characterized in that, The conductive terminal further includes a first terminal positioning arm and a second terminal positioning arm. The first terminal positioning arm and the second terminal positioning arm are respectively connected to the terminal body on the first terminal body side and the second terminal body side. The first terminal pusher structure and the first terminal stop structure are disposed on the first terminal positioning arm, and the second terminal pusher structure and the second terminal stop structure are disposed on the second terminal positioning arm.

14. The conductive terminal according to claim 13, characterized in that, The first terminal positioning arm includes a first terminal positioning arm body and a first terminal positioning arm bending structure. The first terminal positioning arm bending structure can bend the first terminal positioning arm body to form the first terminal push substructure and the first terminal stop substructure. as well as The second terminal positioning arm includes a second terminal positioning arm body and a second terminal positioning arm bending structure. The second terminal positioning arm bending structure can bend the second terminal positioning arm body to form the second terminal push sub-structure and the second terminal stop sub-structure.

15. The conductive terminal according to claim 13, characterized in that, One end of the first terminal positioning arm includes a first terminal positioning arm end, and one end of the second terminal positioning arm includes a second terminal positioning arm end. The first terminal positioning arm end abuts against or presses against the second terminal positioning arm end.