Electric connector and conductive terminal thereof

By combining cantilever and limiting structures in the design of conductive terminals, the deformation of the cantilever is limited, the problem of poor contact between miniaturized conductive terminals and insulating cores is solved, and the reliability of electrical connectors is improved.

CN224249006UActive Publication Date: 2026-05-15TARNG YU ENTERPRISE +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TARNG YU ENTERPRISE
Filing Date
2025-05-07
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Miniaturized conductive terminals are prone to deformation when snapping onto insulating cores, leading to poor snapping and affecting the reliability of electrical connectors.

Method used

Design a conductive terminal comprising a terminal body and a cantilever. The cantilever is deformable to snap onto an insulating core. The terminal body limits the degree of cantilever deformation through a limiting structure to prevent the cantilever snapping structure from sinking into the internal space of the terminal, thus ensuring a stable snap-on connection.

Benefits of technology

It effectively reduces deformation between miniaturized conductive terminals and insulating cores, improves the reliability of electrical connectors, and solves the problem of poor connection.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224249006U_ABST
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Abstract

The utility model provides an electric connector and a conductive terminal thereof, the conductive terminal can be matched with an insulating rubber core to form the electric connector, and the conductive terminal is provided with a terminal body and a terminal cantilever. The terminal cantilever can deform to clamp the insulating rubber core, and the terminal body can limit the deformation degree of the terminal cantilever, so that the deformation degree of the terminal cantilever is prevented from being too large when the terminal cantilever is clamped with the insulating rubber core, and the problem of poor clamping between the miniaturized conductive terminal and the insulating rubber core is further solved. And the reliability of the electric connector provided with the miniaturized conductive terminal is further improved.
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Description

Technical Field

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

[0002] In recent years, with the rapid development of electronic products and the demand for miniaturization, the miniaturization of conductive terminals has become a common trend. However, this miniaturization has also brought some challenges. One of them is that miniaturized conductive terminals are prone to deformation when they are snapped onto insulating cores to form electrical connectors. This can lead to poor engagement between the miniaturized conductive terminals and the insulating cores, causing the miniaturized conductive terminals of the electrical connectors to easily detach from the insulating cores. Consequently, the reliability of electrical connectors with miniaturized conductive terminals is poor.

[0003] In view of this, how to provide a conductive terminal that reduces the degree of deformation of the miniaturized conductive terminal when it is snapped into the insulating core, thereby solving the problem of poor snapping between the miniaturized conductive terminal and the insulating core, and improving the reliability of electrical connectors with miniaturized conductive terminals, has become a technical issue that the industry urgently needs to challenge and overcome. Summary of the Invention

[0004] In view of the shortcomings of the prior art, the present invention provides a conductive terminal, wherein the conductive terminal is provided with an insulating core, the conductive terminal comprising: a terminal body having an internal space, a terminal limiting structure, and a terminal notch structure, the terminal notch structure communicating with the internal space; and a terminal cantilever having a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure, the terminal cantilever being connected to the terminal body at the cantilever connecting end, and the cantilever snap-fit ​​structure being located at the cantilever non-connecting end, allowing the terminal cantilever to deform on the terminal body, thereby allowing the cantilever snap-fit ​​structure to snap onto the insulating core; wherein, the terminal limiting structure is located between the terminal cantilever and the terminal notch structure to limit the degree of deformation of the terminal cantilever, thereby preventing the cantilever snap-fit ​​structure from sinking into the internal space of the terminal via the terminal notch structure, thus affecting the snap-fit ​​structure's ability to snap onto the insulating core.

[0005] Preferably, in the conductive terminal of this utility model, the terminal limiting structure is a raised structure on the terminal body.

[0006] Preferably, in the conductive terminal of this utility model, the terminal limiting structure has a first terminal limiting substructure and a second terminal limiting substructure. The first terminal limiting substructure and the second terminal limiting substructure are respectively located on both sides of the terminal notch structure, and can respectively limit the degree of deformation of both sides of the cantilever snap-fit ​​structure.

[0007] Preferably, in the conductive terminal of this utility model, the cantilever snap-fit ​​structure is located above the terminal notch structure.

[0008] Preferably, in the conductive terminal of this utility model, the two opposite sides of the terminal body are a terminal snap-fit ​​side and a terminal non-snap-fit ​​side, and the terminal body also has a terminal joint structure, wherein the cantilever snap-fit ​​structure is located on the terminal snap-fit ​​side, and the terminal joint structure is located on the terminal non-snap-fit ​​side.

[0009] Preferably, in the conductive terminal of this utility model, the two opposite sides of the terminal body are a terminal engaging side and a terminal non-engaging side, and the terminal body has a terminal abutting structure, wherein the cantilever engaging structure is located on the terminal engaging side, the terminal abutting structure is located on the terminal non-engaging side, and the terminal abutting structure can abut against the insulating core to prevent the state of the cantilever engaging structure engaging the insulating core from being released.

[0010] Preferably, the conductive terminal of this utility model also provides a conductive component docking, and the terminal body further has a terminal docking structure, a terminal guide frame, and a terminal docking channel; and the terminal guide frame has a terminal frame guide structure; wherein, the terminal frame guide structure can guide the conductive component to enter the internal space of the terminal through the terminal docking channel and dock with the terminal docking structure.

[0011] Preferably, in the conductive terminal of this utility model, the terminal guide frame further has a discharge contact structure. During the process of the terminal guide frame guiding the conductive member, the discharge contact structure can contact the conductive member to provide discharge to the conductive member. The time when the discharge contact structure contacts the conductive member is earlier than the time when the terminal docking structure docks the conductive member.

[0012] Preferably, in the conductive terminal of this utility model, the discharge contact structure is a raised structure.

[0013] In addition, this utility model also provides an electrical connector, the electrical connector comprising: an insulating core having a core insertion channel and a core snap-fit ​​structure; and a conductive terminal having: a terminal body having an internal terminal space, a terminal limiting structure and a terminal notch structure, the terminal notch structure communicating with the internal terminal space; and a terminal cantilever having a cantilever connecting end, a cantilever non-connecting end and a cantilever snap-fit ​​structure, the terminal cantilever being connected to the terminal body at the cantilever connecting end, and the cantilever snap-fit ​​structure being located at the cantilever non-connecting end; wherein, the terminal body can be inserted into the core insertion channel, allowing the terminal cantilever to deform on the terminal body, thereby causing the cantilever snap-fit ​​structure to snap into the core snap-fit ​​structure; and the terminal limiting structure being located between the terminal cantilever and the terminal notch structure to limit the degree of deformation of the terminal cantilever, so as to prevent the cantilever snap-fit ​​structure from sinking into the internal terminal space via the terminal notch structure, thus affecting the snap-fit ​​structure of the cantilever to snap into the core snap-fit ​​structure.

[0014] Preferably, in the electrical connector of this utility model, the insulating core further has a core abutment structure, the core insertion channel has a core insertion channel snap-fit ​​section, and the terminal body further has a terminal abutment structure. When the terminal body is inserted into the core insertion channel, the cantilever snap-fit ​​structure snaps into the core insertion channel snap-fit ​​section, and the terminal abutment structure abuts against the insulating core to prevent the cantilever snap-fit ​​structure from leaving the core insertion channel snap-fit ​​section.

[0015] Preferably, in the electrical connector of this utility model, the two opposite sides of the terminal body are a terminal snap-fit ​​side and a terminal non-snap-fit ​​side, wherein the cantilever snap-fit ​​structure is located on the terminal snap-fit ​​side, and the terminal abutment structure is located on the terminal non-snap-fit ​​side.

[0016] Furthermore, this utility model also provides a conductive terminal, which is provided with an insulating core. The conductive terminal includes: a terminal body having a terminal limiting structure; and a terminal cantilever having a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure. The terminal cantilever is connected to the terminal body at the cantilever connecting end, and the cantilever snap-fit ​​structure is located at the cantilever non-connecting end, allowing the terminal cantilever to deform on the terminal body, so that the cantilever snap-fit ​​structure can snap the insulating core at a snap-fit ​​height. The terminal limiting structure can limit the degree of deformation of the terminal cantilever to prevent the cantilever snap-fit ​​structure from being lower than the snap-fit ​​height and affecting the snap-fit ​​of the insulating core.

[0017] Preferably, in the conductive terminal of this utility model, the two opposite sides of the terminal body are a terminal snap-fit ​​side and a terminal non-snap-fit ​​side, and the terminal body also has a terminal joint structure, wherein the cantilever snap-fit ​​structure is located on the terminal snap-fit ​​side, and the terminal joint structure is located on the terminal non-snap-fit ​​side.

[0018] Preferably, in the conductive terminal of this utility model, the two opposite sides of the terminal body are a terminal engaging side and a terminal non-engaging side, and the terminal body has a terminal abutting structure, wherein the cantilever engaging structure is located on the terminal engaging side, the terminal abutting structure is located on the terminal non-engaging side, and the terminal abutting structure can abut against the insulating core to prevent the state of the cantilever engaging structure engaging the insulating core from being released.

[0019] Furthermore, this utility model also provides an electrical connector, the electrical connector comprising: an insulating core having a core insertion channel and a core snap-fit ​​structure; and a conductive terminal having: a terminal body having a terminal limiting structure; and a terminal cantilever having a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure, the terminal cantilever being connected to the terminal body at the cantilever connecting end, and the cantilever snap-fit ​​structure being located at the cantilever non-connecting end; wherein, the terminal body can be inserted into the core insertion channel, allowing the terminal cantilever to deform on the terminal body, so that the cantilever snap-fit ​​structure can snap onto the core snap-fit ​​structure at a snap-fit ​​height; and the terminal limiting structure can limit the degree of deformation of the terminal cantilever to prevent the cantilever snap-fit ​​structure from being lower than the snap-fit ​​height and affecting the snap-fit ​​of the core snap-fit ​​structure.

[0020] Preferably, in the electrical connector of this utility model, the insulating core further has a core abutment structure, the core insertion channel has a core insertion channel snap-fit ​​section, and the terminal body further has a terminal abutment structure. When the terminal body is inserted into the core insertion channel, the cantilever snap-fit ​​structure snaps into the core insertion channel snap-fit ​​section, and the terminal abutment structure abuts against the insulating core to prevent the cantilever snap-fit ​​structure from leaving the core insertion channel snap-fit ​​section.

[0021] Preferably, in the electrical connector of this utility model, the two opposite sides of the terminal body are a terminal snap-fit ​​side and a terminal non-snap-fit ​​side, wherein the cantilever snap-fit ​​structure is located on the terminal snap-fit ​​side, and the terminal abutment structure is located on the terminal non-snap-fit ​​side.

[0022] Compared to prior art, this utility model provides an electrical connector and its conductive terminal. The conductive terminal can be used with an insulating core to form the electrical connector. The conductive terminal has a terminal body and a terminal cantilever. The terminal cantilever is deformable to engage with the insulating core. The terminal body can limit the degree of deformation of the terminal cantilever to prevent excessive deformation of the terminal cantilever when engaging with the insulating core, thereby solving the problem of poor engagement between the miniaturized conductive terminal and the insulating core, and thus improving the reliability of the electrical connector with the miniaturized conductive terminal. Attached Figure Description

[0023] Figure 1 The diagram shown is a perspective view of an embodiment of the electrical connector of this utility model.

[0024] Figure 2 The diagram shown is a perspective view of one embodiment of the conductive terminal of this utility model.

[0025] Figure 3 The diagram shown is a schematic diagram of the left side of one embodiment of the conductive terminal of this utility model.

[0026] Figure 4 The diagram shown is a rear view of one embodiment of the conductive terminal of this utility model.

[0027] Figure 5 Displayed as Figure 4 The diagram shows a cross-section of a portion of the conductive terminal components cut along line segment AA.

[0028] Figure 6 Displayed as Figure 4 The diagram shows a cross-sectional view of a portion of the conductive terminal components cut along line segment A'A'.

[0029] Figure 7 Displayed as Figure 4 The diagram shows a cross-sectional view of a portion of the conductive terminal components cut along line segment A”A”.

[0030] Figure 8 Displayed as Figure 4 The diagram shows a cross-sectional view of a portion of the conductive terminal components cut along line segment A”'A”'.

[0031] Component designation explanation

[0032] 1 Electrical connectors 11 Insulating core 111 Rubber core insertion channel 1111 Rubber core insertion channel snap-fit ​​section 112 Core snap-fit ​​structure 113 Core-contact structure 12 conductive terminals 121 Terminal body 1211 Terminal internal space 1212 Terminal limiting structure 12121 First terminal limiting substructure 12122 Second terminal limiting substructure 1213 Terminal notch structure 1214 Terminal contact structure 1215 Terminal joint structure 1216 Terminal mating channel 1217 Terminal mating structure 1218 Terminal guide frame 12181 Terminal frame guide structure 12182 Discharge contact structure 122 Terminal cantilever 1221 cantilever snap-fit ​​structure 2 conductive components E1 cantilever connection end E2 Cantilever non-connected end L1 Terminal block side L2 Terminal non-clamp side H Clip height Detailed Implementation

[0033] The following description, accompanied by illustrations, illustrates the technical content of this utility model through specific embodiments. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model 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 utility model. 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 utility model.

[0034] Please refer to the description of the embodiments disclosed in this utility model. Figures 1 to 8 .

[0035] This invention provides a conductive terminal that allows for signal transmission in electronic products by mating with conductive components. The conductive terminal can be disposed in an electrical connector, and the conductive component can be inserted into the electrical connector. The conductive terminal mating with the conductive component in the electrical connector transmits electrical signals. The conductive component can be in the form of a conductive terminal or an electrical connector.

[0036] In this utility model Figures 1 to 8 In the illustrated embodiment, at least one electrical connector 1 is disclosed, the electrical connector 1 comprising: an insulating core 11 and a conductive terminal 12. It should be noted that the conductive terminal 12 may be integrally formed from a metal sheet through processing methods such as bending and cutting.

[0037] Regarding the insulating core 11, the insulating core 11 has a core insertion channel 111, a core snap-fit ​​structure 112, and a core abutment structure 113. The core insertion channel 111 has a core insertion channel snap-fit ​​section 1111.

[0038] Regarding the conductive terminal 12, the conductive terminal 12 has: a terminal body 121 and a terminal cantilever 122.

[0039] The terminal body 121 has a terminal internal space 1211, a terminal limiting structure 1212, a terminal notch structure 1213, a terminal abutment structure 1214, a terminal seam structure 1215, a terminal docking channel 1216, a terminal docking structure 1217, and a terminal guide frame 1218.

[0040] The terminal cantilever 122 has a cantilever connecting end E1 (i.e., a non-free end), a cantilever non-connecting end E2 (i.e., a free end), and a cantilever snap-fit ​​structure 1221. The terminal cantilever 122 is connected to the terminal body 121 at the cantilever connecting end E1, and the cantilever snap-fit ​​structure 1221 is located at the cantilever non-connecting end E2, that is, the cantilever snap-fit ​​structure 1221 is located at the free end of the terminal cantilever 122.

[0041] The terminal guide frame 1218 has a terminal frame guide structure 12181 and a discharge contact structure 12182. It should be noted that the terminal frame guide structure 12181 guides the conductive member 2 through the terminal mating channel 1216 into the terminal internal space 1211 to mat with the terminal mating structure 1217. The discharge contact structure 12182 is, for example, a raised structure that provides electrostatic discharge in accordance with the tip effect. During the process of the terminal frame guide structure 12181 guiding the conductive member 2, the discharge contact structure 12182 can contact the conductive member 2 to provide discharge to the conductive member 2. The discharge contact structure 12182 contacts the conductive member 2 earlier than the terminal mating structure 1217 contacts the conductive member 2. This effectively prevents static electricity from entering the electronic product through the conductive terminal 12 and damaging the internal circuitry of the electronic product.

[0042] The terminal body 121 has a terminal engaging side L1 and a terminal non-engaging side L2 on opposite sides. The cantilever engaging structure 1221 is located on the terminal engaging side L1, while the terminal abutting structure 1214 and the terminal seam structure 1215 are located on the terminal non-engaging side L2. This avoids the terminal abutting structure 1214 and the terminal seam structure 1215 weakening the structural strength of the cantilever engaging structure 1221, thereby improving the overall structural strength of the conductive terminal 12 and preventing improper local deformation of the conductive terminal 12, thus improving the reliability of the electrical connector with the conductive terminal 12.

[0043] The terminal notch structure 1213 connects to the internal space 1211 of the terminal, and the cantilever snap-fit ​​structure 1221 is located above the terminal notch structure 1213. The terminal body 121 can be inserted into the core insertion channel 111. When the terminal body 121 is inserted into the core insertion channel 111, the insulating core 11 can force the terminal cantilever 122 to deform on the terminal body 121, so that the cantilever snap-fit ​​structure 1221 snaps into the core snap-fit ​​structure 112 at a snap-fit ​​height H of the core insertion channel snap-fit ​​section 1111. At this time, the terminal abutment structure 1214 can abut against the insulating core 11 to prevent the cantilever snap-fit ​​structure 1221 from leaving the core insertion channel snap-fit ​​section 1111, thus releasing the state in which the cantilever snap-fit ​​structure 1221 snaps into the insulating core 11.

[0044] It should be noted that the terminal limiting structure 1212 is located between the terminal cantilever 122 and the terminal notch structure 1213 to limit the deformation of the terminal cantilever 122. This prevents the cantilever snap-fit ​​structure 1221 from sinking into the internal space 1211 of the terminal via the terminal notch structure 1213, or from falling below the snap-fit ​​height H, thus affecting the snap-fit ​​of the cantilever snap-fit ​​structure 1221 onto the insulating core snap-fit ​​structure 112. Therefore, the terminal limiting structure 1212 can prevent the terminal cantilever 122 from deforming excessively when snapping onto the insulating core 11, thereby solving the problem of poor snap-fit ​​between the miniaturized conductive terminal and the insulating core, and improving the reliability of the electrical connector with the miniaturized conductive terminal.

[0045] Optionally, the terminal limiting structure 1212 is a raised structure on the terminal body 121 to limit the deformation of the terminal cantilever 122. Alternatively, the terminal limiting structure 1212 may have a first terminal limiting substructure 12121 and a second terminal limiting substructure 12122, respectively located on both sides of the terminal notch structure 1213. This allows for limiting the deformation of both sides of the cantilever locking structure 1221, preventing the sides of the cantilever locking structure 1221 from sinking into the terminal's internal space 1211 via the terminal notch structure 1213, or preventing the sides of the cantilever locking structure 1221 from falling below the locking height H.

[0046] It should be noted that, in the above embodiments, some of the aforementioned components may be omitted. For example, in this utility model, the conductive terminal may only include: a terminal body and a terminal cantilever. The terminal body has an internal space, a terminal limiting structure, and a terminal notch structure, with the terminal notch structure communicating with the internal space. The terminal cantilever has a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure. The terminal cantilever is connected to the terminal body at the cantilever connecting end, while the cantilever snap-fit ​​structure is located at the cantilever non-connecting end, allowing the terminal cantilever to deform on the terminal body, thus enabling the cantilever snap-fit ​​structure to snap onto the insulating core. The terminal limiting structure is located between the terminal cantilever and the terminal notch structure to limit the degree of deformation of the terminal cantilever, preventing the cantilever snap-fit ​​structure from sinking into the internal space of the terminal via the terminal notch structure, thereby affecting the snap-fit ​​structure's ability to snap onto the insulating core.

[0047] In addition, in this utility model, the electrical connector may only include: an insulating core and a conductive terminal. The insulating core has a core insertion channel and a core snap-fit ​​structure. The conductive terminal has: a terminal body and a terminal cantilever. The terminal body has an internal terminal space, a terminal limiting structure, and a terminal notch structure, the terminal notch structure communicating with the internal terminal space. The terminal cantilever has a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure, the terminal cantilever connecting to the terminal body at the cantilever connecting end, and the cantilever snap-fit ​​structure located at the cantilever non-connecting end; wherein, the terminal body can be inserted into the core insertion channel, allowing the terminal cantilever to deform on the terminal body, thereby causing the cantilever snap-fit ​​structure to snap into the core snap-fit ​​structure; and the terminal limiting structure is located between the terminal cantilever and the terminal notch structure to limit the degree of deformation of the terminal cantilever, so as to prevent the cantilever snap-fit ​​structure from sinking into the internal terminal space through the terminal notch structure, thus affecting the snap-fit ​​structure of the cantilever to snap into the core snap-fit ​​structure.

[0048] Furthermore, in this invention, the conductive terminal may consist only of a terminal body and a terminal cantilever. The terminal body has a terminal limiting structure. The terminal cantilever has a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure. The terminal cantilever is connected to the terminal body at the cantilever connecting end, while the cantilever snap-fit ​​structure is located at the cantilever non-connecting end, allowing the terminal cantilever to deform on the terminal body, and enabling the cantilever snap-fit ​​structure to snap onto the insulating core at the snap-fit ​​height. The terminal limiting structure limits the degree of deformation of the terminal cantilever to prevent the cantilever snap-fit ​​structure from falling below the snap-fit ​​height and affecting the snap-fit ​​of the insulating core.

[0049] In addition, in this utility model, the electrical connector may only include: an insulating core and a conductive terminal. The insulating core has a core insertion channel and a core snap-fit ​​structure. The conductive terminal has: a terminal body and a terminal cantilever. The terminal body has a terminal limiting structure. The terminal cantilever has a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure. The terminal cantilever is connected to the terminal body at the cantilever connecting end, and the cantilever snap-fit ​​structure is located at the cantilever non-connecting end. The terminal body can be inserted into the core insertion channel, allowing the terminal cantilever to deform on the terminal body, so that the cantilever snap-fit ​​structure can snap the core snap-fit ​​structure at the snap-fit ​​height. The terminal limiting structure limits the degree of deformation of the terminal cantilever to prevent the cantilever snap-fit ​​structure from falling below the snap-fit ​​height and affecting the snap-fit ​​core snap-fit ​​structure.

[0050] In summary, this utility model provides an electrical connector and its conductive terminal. The conductive terminal can be used with an insulating core to form the electrical connector. The conductive terminal has a terminal body and a terminal cantilever. The terminal cantilever is deformable to engage with the insulating core. The terminal body can limit the degree of deformation of the terminal cantilever to prevent excessive deformation of the terminal cantilever when engaging with the insulating core, thereby solving the problem of poor engagement between the miniaturized conductive terminal and the insulating core, and thus improving the reliability of the electrical connector with the miniaturized conductive terminal.

[0051] The above embodiments are merely illustrative of the principles and effects of this utility model and are not intended to limit the scope of this utility model. Any person skilled in the art can modify and alter the above embodiments without departing from the spirit and scope of this utility model. Therefore, the scope of protection of this utility model should be as set forth in the claims.

Claims

1. A conductive terminal, wherein the conductive terminal is provided with an insulating core, characterized in that, The conductive terminal includes: A terminal body, the terminal body having a terminal internal space, a terminal limiting structure, and a terminal notch structure, the terminal notch structure communicating with the terminal internal space; and A terminal cantilever has a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure. The terminal cantilever is connected to the terminal body at the cantilever connecting end, and the cantilever snap-fit ​​structure is located at the cantilever non-connecting end, allowing the terminal cantilever to deform on the terminal body so that the cantilever snap-fit ​​structure can snap onto the insulating core; wherein, The terminal limiting structure is located between the terminal cantilever and the terminal notch structure to limit the degree of deformation of the terminal cantilever, so as to prevent the cantilever snapping structure from entering the internal space of the terminal through the terminal notch structure and affecting the snapping structure of the cantilever snapping structure to snap onto the insulating core.

2. The conductive terminal according to claim 1, characterized in that, The terminal limiting structure is a raised structure on the terminal body.

3. The conductive terminal according to claim 1, characterized in that, The terminal limiting structure has a first terminal limiting substructure and a second terminal limiting substructure. The first terminal limiting substructure and the second terminal limiting substructure are respectively located on both sides of the terminal notch structure, and can respectively limit the degree of deformation on both sides of the cantilever snap-fit ​​structure.

4. The conductive terminal according to claim 1, characterized in that, The cantilever snap-fit ​​structure is located above the terminal notch structure.

5. The conductive terminal according to claim 1, characterized in that, The terminal body has a terminal snap-fit ​​side and a terminal non-snap-fit ​​side on opposite sides, and the terminal body also has a terminal joint structure, wherein the cantilever snap-fit ​​structure is located on the terminal snap-fit ​​side, and the terminal joint structure is located on the terminal non-snap-fit ​​side.

6. The conductive terminal according to claim 1, characterized in that, The terminal body has a terminal snap-on side and a terminal non-snap-on side on opposite sides, and the terminal body has a terminal abutment structure, wherein the cantilever snap-on structure is located on the terminal snap-on side and the terminal abutment structure is located on the terminal non-snap-on side. The terminal abutment structure can abut against the insulating core to prevent the state of the cantilever snap-on structure snapping against the insulating core from being released.

7. The conductive terminal according to claim 1, characterized in that, A conductive component is also provided for docking. The terminal body further includes a terminal docking structure, a terminal guide frame, and a terminal docking channel; and the terminal guide frame has a terminal frame guiding structure. The terminal frame-shaped guide structure can guide the conductive component through the terminal docking channel into the internal space of the terminal and dock with the terminal docking structure.

8. The conductive terminal according to claim 7, characterized in that, The terminal guide frame also has a discharge contact structure. During the process of the terminal guide frame guiding the conductive member, the discharge contact structure can contact the conductive member to provide discharge to the conductive member. The time when the discharge contact structure contacts the conductive member is earlier than the time when the terminal docking structure docks the conductive member.

9. The conductive terminal according to claim 8, characterized in that, The discharge contact structure is a raised, protruding structure.

10. An electrical connector, characterized in that, The electrical connector includes: An insulating rubber core, the insulating rubber core having a core insertion channel and a core snap-fit ​​structure; and A conductive terminal, the conductive terminal having: A terminal body, the terminal body having a terminal internal space, a terminal limiting structure, and a terminal notch structure, the terminal notch structure communicating with the terminal internal space; and A terminal cantilever has a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure. The terminal cantilever is connected to the terminal body at the cantilever connecting end, and the cantilever snap-fit ​​structure is located at the cantilever non-connecting end. The terminal body can be inserted into the core insertion channel, allowing the terminal cantilever to deform on the terminal body, thereby engaging the core locking structure with the cantilever locking structure; and The terminal limiting structure is located between the terminal cantilever and the terminal notch structure to limit the degree of deformation of the terminal cantilever, so as to prevent the cantilever snap-fit ​​structure from entering the internal space of the terminal through the terminal notch structure, thereby affecting the snap-fit ​​structure of the cantilever snap-fit ​​structure to snap-fit ​​the glue core snap-fit ​​structure.

11. The electrical connector according to claim 10, characterized in that, The insulating core also has a core abutment structure, the core insertion channel has a core insertion channel snap-fit ​​section, and the terminal body also has a terminal abutment structure. The terminal body is inserted into the core insertion channel, the cantilever snap-fit ​​structure snaps into the core insertion channel snap-fit ​​section, and the terminal abutment structure abuts against the insulating core to prevent the cantilever snap-fit ​​structure from leaving the core insertion channel snap-fit ​​section.

12. The electrical connector according to claim 11, characterized in that, The terminal body has a terminal snap-fit ​​side and a terminal non-snap-fit ​​side on opposite sides, wherein the cantilever snap-fit ​​structure is located on the terminal snap-fit ​​side, and the terminal abutment structure is located on the terminal non-snap-fit ​​side.

13. A conductive terminal, said conductive terminal being provided with an insulating core, characterized in that, The conductive terminal includes: A terminal body, the terminal body having a terminal limiting structure; and A terminal cantilever has a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure. The terminal cantilever is connected to the terminal body at the cantilever connecting end, and the cantilever snap-fit ​​structure is located at the cantilever non-connecting end, allowing the terminal cantilever to deform on the terminal body, so that the cantilever snap-fit ​​structure can snap the insulating core at a snap-fit ​​height; wherein, The terminal limiting structure can limit the deformation of the terminal cantilever to prevent the cantilever snapping structure from being lower than the snapping height and thus affecting the snapping of the insulating core.

14. The conductive terminal according to claim 13, characterized in that, The terminal body has a terminal snap-fit ​​side and a terminal non-snap-fit ​​side on opposite sides, and the terminal body also has a terminal joint structure, wherein the cantilever snap-fit ​​structure is located on the terminal snap-fit ​​side, and the terminal joint structure is located on the terminal non-snap-fit ​​side.

15. The conductive terminal according to claim 13, characterized in that, The terminal body has a terminal snap-on side and a terminal non-snap-on side on opposite sides, and the terminal body has a terminal abutment structure, wherein the cantilever snap-on structure is located on the terminal snap-on side and the terminal abutment structure is located on the terminal non-snap-on side. The terminal abutment structure can abut against the insulating core to prevent the state of the cantilever snap-on structure snapping against the insulating core from being released.

16. An electrical connector, characterized in that, The electrical connector includes: An insulating rubber core, the insulating rubber core having a core insertion channel and a core snap-fit ​​structure; and A conductive terminal, the conductive terminal having: A terminal body, the terminal body having a terminal limiting structure; and A terminal cantilever has a cantilever connecting end, a cantilever non-connecting end, and a cantilever snap-fit ​​structure. The terminal cantilever is connected to the terminal body at the cantilever connecting end, and the cantilever snap-fit ​​structure is located at the cantilever non-connecting end. The terminal body can be inserted into the core insertion channel, allowing the terminal cantilever to deform on the terminal body, so that the cantilever snap-fit ​​structure can snap the core snap-fit ​​structure at a snap-fit ​​height; and The terminal limiting structure can limit the deformation of the terminal cantilever to prevent the cantilever snap-fit ​​structure from being lower than the snap-fit ​​height and thus affecting the snap-fit ​​of the glue core snap-fit ​​structure.

17. The electrical connector according to claim 16, characterized in that, The insulating core also has a core abutment structure, the core insertion channel has a core insertion channel snap-fit ​​section, and the terminal body also has a terminal abutment structure. The terminal body is inserted into the core insertion channel, the cantilever snap-fit ​​structure snaps into the core insertion channel snap-fit ​​section, and the terminal abutment structure abuts against the insulating core to prevent the cantilever snap-fit ​​structure from leaving the core insertion channel snap-fit ​​section.

18. The electrical connector according to claim 17, characterized in that, The terminal body has a terminal snap-fit ​​side and a terminal non-snap-fit ​​side on opposite sides, wherein the cantilever snap-fit ​​structure is located on the terminal snap-fit ​​side, and the terminal abutment structure is located on the terminal non-snap-fit ​​side.