Electric connector

By designing an electrical connector structure including the connector body, docking port and force belt body, the problem of the electrical connector releasing the docking member hook in a limited space is solved, and the application of thin and light design of electronic products is realized.

CN223079498UActive Publication Date: 2025-07-08TARNG YU ENTERPRISE +1
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Patent Information

Application Number
CN202422098425.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-11-21
Filing Date
2024-08-28
Publication Date
2025-07-08
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

Under the trend of thin and light design of electronic products, it is difficult for electrical connectors to untie the hooking relationship of the docking members in a limited space.

Method used

An electrical connector structure including a connector body, a connector docking port and a force belt body is designed. The hook structure of the connector docking port is actuated in a limited space through the extended steering structure of the force belt body, so that it can be disconnected from the docking relationship.

Benefits of technology

It realizes that the electrical connector can unconnect the docking relationship between the docking members in a limited space, and supports the use of thin and light design electronic products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an electric connector which can be in butt joint with a butt joint component and comprises a connector body, a connector butt joint port and a force application belt body. The connector butt joint port comprises a buckling and hooking structure capable of buckling and hooking the butt joint component. The connector body can enable the force application belt body to extend and turn, so that the force application belt body can actuate the buckling and hooking structure in an electronic product with a limited internal space, the buckling and hooking structure can release the buckling and hooking of the butt-joint component, and the electric connector can be pulled to release the butt-joint relation with the butt-joint component. Therefore, the electric connector can be used by an electronic product with a light and thin design.
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Description

Technical Field

[0001] The present application relates to an electrical connector, and more particularly, to an electrical connector that can be used in a thin and light designed electronic product. Background Art

[0002] Generally, an electrical connector is provided on an electronic product. The electrical connector can hook a mating member so that the electrical connector is mated with the mating member to provide transmission of electrical signals. In the implementation state of the electrical connector on the electronic product, the electrical connector can release the hook of the mating member to release the mating relationship between the electrical connector and the mating member. However, in recent years, there has been a development trend of thin and light design in electronic products, resulting in limited internal space of the electronic products, making it difficult for the electrical connector to release the hook of the mating member.

[0003] Based on the foregoing, how to improve the structural design of the electrical connector so that the electrical connector can release the hook of the mating member in the limited space inside the electronic product has become an issue that people in the relevant technical field are urgently concerned about. Summary of the Invention

[0004] In view of the above-mentioned disadvantages of the prior art, the present application provides an electrical connector, comprising: a connector body, the connector body including an outer wall of a connector body head, an internal space of the connector body, a first extended turning structure of the connector body head, and a second extended turning structure of the connector body head; a connector docking port, the connector docking port including a connector docking port hook structure and a connector docking port dragging structure; and a force-applying belt body, the force-applying belt body including a force-applying belt body dragging section, a force-applying belt body extending section, and a force-applying belt body force-applying section, the force-applying belt body extending section including a first force-applying belt body head extending sub-section and a second force-applying belt body head extending sub-section, the first force-applying belt body head extending sub-section connecting the force-applying belt body dragging section, and the second force-applying belt body head extending sub-section connecting the first force-applying belt body head extending sub-section; wherein, the force-applying belt body dragging section engages with the connector docking port dragging structure, the force-applying belt body extending section connects the force-applying belt body dragging section and the force-applying belt body force-applying section respectively, and the force-applying belt body extending section extends through the first extended turning structure of the connector body head and the second extended turning structure of the connector body head; the force-applying belt body force-applying section is capable of providing a force to drag the connector docking port dragging structure in a dragging direction by the force-applying belt body dragging section to actuate the connector docking port hook structure, and enabling the first extended turning structure of the connector body head and the second extended turning structure of the connector body head to respectively turn the extension of the force-applying belt body extending section, so that the first force-applying belt body head extending sub-section extends along the outer wall of the connector body head in a first head extending direction, and enabling the second force-applying belt body head extending sub-section to extend in a second head extending direction into the internal space of the connector body; and the dragging direction is substantially different from the first head extending direction, and the first head extending direction is substantially different from the second head extending direction.

[0005] Preferably, in the electrical connector of the present application, the connector docking port further includes a connector docking port fulcrum structure, the connector docking port hook structure and the connector docking port dragging structure are respectively located on one side of opposite sides of the connector docking port fulcrum structure, and when the force-applying belt body dragging section actuates the connector docking port hook structure, the connector docking port hook structure moves with the connector docking port fulcrum structure as a fulcrum.

[0006] Preferably, in the electrical connector of the present application, the connector docking port hook structure, the connector docking port dragging structure and the connector docking port fulcrum structure form a seesaw structure, and the connector docking port fulcrum structure is the fulcrum of the seesaw structure.

[0007] Preferably, in the electrical connector of the present application, the connector body further includes a connector body clamping structure, and the connector body clamping structure can clamp the connector docking port, so that the connector body and the connector docking port can be clamped into one body.

[0008] Preferably, in the electrical connector of the present application, the connector body clamping structure is an elastic arm structure.

[0009] Preferably, in the electrical connector of the present application, the connector body further includes a connector body tail outer wall and a first connector body tail extension turning structure, and the extension section of the force application belt body also extends through the first connector body tail extension turning structure. The extension section of the force application belt body further includes a first force application belt body tail extension sub-section, and the first force application belt body tail extension sub-section connects the second force application belt body head extension sub-section. When applying force to the force application section of the force application belt body, the first connector body tail extension turning structure turns the extension of the extension section of the force application belt body, so that the first force application belt body tail extension sub-section extends along the connector body tail outer wall in a first tail extension direction, where the first tail extension direction is substantially different from the second head extension direction.

[0010] Preferably, in the electrical connector of the present application, the connector body tail outer wall includes a connector body tail outer wall extension guiding structure, and the connector body tail outer wall extension guiding structure guides the first force application belt body tail extension sub-section to extend in the first tail extension direction.

[0011] Preferably, in the electrical connector of the present application, the connector body tail outer wall extension guiding structure is a guide groove guiding structure.

[0012] Preferably, in the electrical connector of the present application, the connector body further includes a second connector body tail extension turning structure, and the extension section of the force application belt body also extends through the second connector body tail extension turning structure. The extension section of the force application belt body further includes a second force application belt body tail extension sub-section, and the second force application belt body tail extension sub-section connects the first force application belt body tail extension sub-section. When applying force to the force application section of the force application belt body, the second connector body tail extension turning structure turns the extension of the extension section of the force application belt body, so that the second force application belt body tail extension sub-section extends in a second tail extension direction, where the second tail extension direction is substantially different from the first tail extension direction.

[0013] Preferably, in the electrical connector of the present application, the connector body also includes a connector body abdominal outer wall, a first connector body abdominal extension steering structure and a second connector body abdominal extension steering structure, and the force-applying belt body extension section also extends through the first connector body abdominal extension steering structure and the second connector body abdominal extension steering structure, the force-applying belt body extension section also includes a first force-applying belt body abdominal extension sub-section and a second force-applying belt body abdominal extension sub-section, the first force-applying belt body abdominal extension sub-section is connected to the second force-applying belt body head extension sub-section, the second force-applying belt body abdominal extension sub-section is connected to the first force-applying belt body abdominal extension sub-section, and force is provided in the force-applying belt body force section, the first connector body abdominal extension steering structure and the second connector body abdominal extension steering structure respectively allow the extension of the force-applying belt body extension section to be redirected, so that the first force-applying belt body abdominal extension sub-section extends away from the internal space of the connector body in a first abdominal extension direction, and the second force-applying belt body abdominal extension sub-section extends along the connector body abdominal outer wall in a second abdominal extension direction, wherein the second abdominal extension direction is substantially different from the first abdominal extension direction.

[0014] Preferably, in the electrical connector of the present application, the connector body also includes a connector body rear outer wall and a first connector body rear extension turning structure, and the force-applying band body extension section also extends through the first connector body rear extension turning structure, the force-applying band body extension section also includes a first force-applying band body rear extension sub-section, the first force-applying band body rear extension sub-section is connected to the second force-applying band body belly extension sub-section, and force is provided in the force-applying band body force section, and the first connector body rear extension turning structure allows the extension of the force-applying band body extension section to be turned, so that the first force-applying band body rear extension sub-section extends along the connector body rear outer wall in a first rear extension direction, wherein the first rear extension direction is substantially different from the second belly extension direction.

[0015] Compared with the prior art, the electrical connector proposed in the present application can be connected to a docking component, and the electrical connector includes a connector body, a connector docking port and a force-applying belt body. The connector docking port includes a hook structure that can hook the docking component. The connector body can allow the extension of the force-applying belt body to turn, so that the force-applying belt body can actuate the hook structure in an electronic product with limited internal space, and the hook structure can release the hook from the docking component, so that the electrical connector can be pulled out to release the docking relationship with the docking component, thereby allowing the electrical connector to be used in electronic products with a thin and light design. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The above and other aspects, features, and other advantages of the present application will be more clearly understood from the following description of the drawings in conjunction with the embodiments.

[0017] Figure 1 A perspective view of the electrical connector of the present application shown from a first perspective in an embodiment.

[0018] Figure 2 A perspective view of the electrical connector of the present application shown from a second perspective in an embodiment.

[0019] Figure 3 A top view of some components of the electrical connector of the present application shown in an embodiment.

[0020] Figure 4 A rear view of some components of the electrical connector of the present application shown in an embodiment.

[0021] Figure 5 A front view of some components of the electrical connector of the present application shown in an embodiment.

[0022] Figure 6 Shown as Figure 5 A cross-sectional view of some components of the electrical connector shown along the line AA.

[0023] Figure 7 A perspective view of the electrical connector of the present application shown from a first perspective in an embodiment.

[0024] Figure 8 A perspective view of the electrical connector of the present application shown from a second perspective in an embodiment.

[0025] Figure 9 A perspective view of the electrical connector of the present application shown from a first perspective in an embodiment.

[0026] Figure 10 A perspective view of the electrical connector of the present application shown from a second perspective in an embodiment.

[0027] Figure 11 A top view of some components of the electrical connector of the present application shown in an embodiment.

[0028] Figure 12 A rear view of some components of the electrical connector of the present application shown in an embodiment.

[0029] Figure 13 A front view of some components of the electrical connector of the present application shown in an embodiment.

[0030] Figure 14 Shown as Figure 13 A cross-sectional view of some components of the electrical connector shown along the line BB.

[0031] Figure 15 Shown is a perspective view of the electrical connector of the present application from a first perspective in an embodiment.

[0032] Figure 16 Shown is a perspective view of the electrical connector of the present application from a second perspective in an embodiment.

[0033] Figure 17 Shown is a perspective view of the electrical connector of the present application from a first perspective in an embodiment.

[0034] Figure 18 Shown is a perspective view of the electrical connector of the present application from a second perspective in an embodiment.

[0035] Figure 19 Shown is a top view of some components of the embodiment of the electrical connector of the present application.

[0036] Figure 20 Shown is a rear view of some components of the embodiment of the electrical connector of the present application.

[0037] Figure 21 Shown is a front view of some components of the embodiment of the electrical connector of the present application.

[0038] Figure 22 Shown as Figure 21 A schematic cross-sectional view of some components of the shown electrical connector cut along line CC.

[0039] Figure 23 Shown is a perspective view of the electrical connector of the present application from a first perspective in an embodiment.

[0040] Figure 24 Shown is a perspective view of the electrical connector of the present application from a second perspective in an embodiment.

[0041] Description of component numbers

[0042] 1 Electrical connector

[0043] 11 Connector body

[0044] 1111 Outer wall of the head of the connector body

[0045] 1112 Outer wall of the tail of the connector body

[0046] 11121 Extension guiding structure of the outer wall of the tail of the connector body

[0047] 1113 Outer wall of the abdomen of the connector body

[0048] 112 Inner space of the connector body

[0049] 1131 First Connector Body Head Extension Steering Structure

[0050] 1132 Second Connector Body Head Extension Steering Structure

[0051] 1141 First Connector Body Tail Extension Steering Structure

[0052] 1142 Second Connector Body Tail Extension Steering Structure

[0053] 1151 First Connector Body Abdomen Extension Steering Structure

[0054] 1152 Second Connector Body Abdomen Extension Steering Structure

[0055] 118 Connector Body Clamping Structure

[0056] 12 Connector Docking Port

[0057] 120 Seesaw Structure

[0058] 121 Connector Docking Port Hook Structure

[0059] 122 Connector Docking Port Dragging Structure

[0060] 123 Connector Docking Port Fulcrum Structure

[0061] 13 Force - Applying Belt Body

[0062] 131 Force - Applying Belt Body Dragging Segment

[0063] 132 Force - Applying Belt Body Extension Segment

[0064] 13211 First Force - Applying Belt Body Head Extension Sub - Segment

[0065] 13212 Second Force - Applying Belt Body Head Extension Sub - Segment

[0066] 13221 First Force - Applying Belt Body Tail Extension Sub - Segment

[0067] 13222 Second Force - Applying Belt Body Tail Extension Sub - Segment

[0068] 13231 First Force - Applying Belt Body Abdomen Extension Sub - Segment

[0069] 13232 Second Force - Applying Belt Body Abdomen Extension Sub - Segment

[0070] 133 Force - Applying Belt Body Force - Applying Segment

[0071] 2 Docking Component

[0072] D0 Dragging Direction

[0073] D11 First Head Extension Direction

[0074] D12 Second head extension direction

[0075] D21 First tail extension direction

[0076] D22 Second tail extension direction

[0077] D31 First abdomen extension direction

[0078] D32 Second abdomen extension direction Detailed implementation manners

[0079] The following content will be combined with the drawings to illustrate the technical content of the present application through specific embodiments. Those skilled in this technology can easily understand other advantages and effects of the present application from the content disclosed in this specification. The present application can be implemented or applied through other different specific embodiments. The details in this specification can be modified and changed based on different viewpoints and applications without departing from the spirit of the present application. In particular, the proportional relationship and relative position of each component in the drawings are only for illustrative purposes and do not represent the actual situation of the implementation of the present application.

[0080] In addition, it should be noted that, in order to make the disclosed content more concise and easy to understand, components with the same or similar functions in the following embodiments will be described using the same symbols, and the description of the same or equivalent features will be omitted.

[0081] The present application provides at least one electrical connector. The electrical connector can be docked with a docking member, and the electrical connector includes a connector body, a connector docking port, and a force-applying belt body. The connector docking port includes a connector docking port hook structure, and the connector docking port hook structure can hook the docking member. The connector body includes at least one extension turning structure, and the extension turning structure can turn the extension of the force-applying belt body, so that the force-applying belt body can actuate the connector docking port hook structure in an electronic product with limited internal space, and the connector docking port hook structure can release the hook on the docking member, so that the electrical connector can be pulled out to release the docking relationship with the docking member, and further enable the electrical connector to be used in a thin and light-designed electronic product.

[0082] For the description of the embodiments disclosed in the present application, please refer to Figures 1 to 24

[0083] In Figures 1 to 3 , Figure 6 , Figures 9 to 11 , Figure 14 , Figures 17 to 19 and Figure 22In the illustrated embodiment, the electrical connector 1 of the present application can be used to hook a pair of docking members 2 on an electronic product, so that the electrical connector docks with the docking member 2 to provide the transmission of electrical signals. The electrical connector 1 includes a connector body 11, a connector docking port 12, and a force-applying belt body 13.

[0084] As Figure 6 , Figure 14 and Figure 22 shown, the connector body 11 includes an outer wall of the connector body head 1111, an internal space of the connector body 112, a first connector body head extension and turning structure 1131, a second connector body head extension and turning structure 1132, and a connector body clamping structure 118. The connector body clamping structure 118 can clamp the connector docking port 12, so that the connector body 11 and the connector docking port 12 can be clamped into one body. Optionally, the connector body clamping structure 118 is an elastic arm structure, so that the connector body 11 can elastically clamp the connector docking port 12.

[0085] As Figures 1 to 2 , Figures 7 to 10 , Figures 15 to 18 and Figures 23 to 24 shown, the connector docking port 12 includes a connector docking port hooking structure 121, a connector docking port dragging structure 122, and a connector docking port fulcrum structure 123. The connector docking port hooking structure 121 and the connector docking port dragging structure 122 are respectively located on one side of the opposite sides of the connector docking port fulcrum structure 123. In this way, the connector docking port hooking structure 121, the connector docking port dragging structure 122, and the connector docking port fulcrum structure 123 form a seesaw structure 120, and the connector docking port fulcrum structure 123 is the fulcrum of the seesaw structure 120.

[0086] As Figure 6 , Figure 8 , Figure 14 , Figure 22 and Figure 24 shown, the force-applying belt body 13 includes a force-applying belt body dragging section 131, a force-applying belt body extension section 132, and a force-applying belt body force-applying section 133. The force-applying belt body extension section 132 includes a first force-applying belt body head extension sub-section 13211 and a second force-applying belt body head extension sub-section 13212. The first force-applying belt body head extension sub-section 13211 is connected to the force-applying belt body dragging section 131, and the second force-applying belt body head extension sub-section 13212 is connected to the first force-applying belt body head extension sub-section 13211.

[0087] In the above embodiments, the dragging section 131 of the force - applying belt body engages with the dragging structure 122 of the connector docking port. The extending section 132 of the force - applying belt body is respectively connected to the dragging section 131 and the force - applying section 133 of the force - applying belt body, and the extending section 132 of the force - applying belt body extends through the first connector body head extending and turning structure 1131 and the second connector body head extending and turning structure 1132.

[0088] In addition, in the above embodiments, the force - applying section 133 of the force - applying belt body can provide a force to drag the dragging structure 122 of the connector docking port in a dragging direction D0 by the dragging section 131 of the force - applying belt body, so as to actuate the connector docking port latching structure 121. The connector docking port latching structure 121 moves with the connector docking port fulcrum structure 123 as a fulcrum. In this way, the connector docking port latching structure 121 can release the latching of the docking member 2, so that the electrical connector 1 can be pulled out to release the docking relationship with the docking member 2.

[0089] Furthermore, in the above embodiments, when the force - applying section 133 of the force - applying belt body provides a force, the first connector body head extending and turning structure 1131 can turn the extension of the extending section 132 of the force - applying belt body, so that the first force - applying belt body head extending sub - section 13211 extends along the outer wall 1111 of the connector body head in a first head extending direction D11, and the second connector body head extending and turning structure 1132 turns the extension of the extending section 132 of the force - applying belt body, so that the second force - applying belt body head extending sub - section 13212 extends into the internal space 112 of the connector body in a second head extending direction D12.

[0090] It should be noted that in the above embodiments, the dragging direction D0 is substantially different from the first head extending direction D11, and the first head extending direction D11 is substantially different from the second head extending direction D12. In this way, when the second force - applying belt body head extending sub - section 13212 is stressed, the first force - applying belt body head extending sub - section 13211 can serve as a force arm or a force - transmitting structure to drag the dragging structure 122 of the connector docking port by the dragging section 131 of the force - applying belt body, so that the force - applying belt body 13 can actuate the connector docking port latching structure 121 in an electronic product with a limited internal space, and the connector docking port latching structure 121 can release the latching of the docking member 2, so that the electrical connector 1 can be pulled out to release the docking relationship with the docking member 2, and further enable the electrical connector 1 to be used in a thin and light - designed electronic product.

[0091] In Figure 22In the illustrated embodiment, the connector body 11 further includes a connector body tail outer wall 1112 and a first connector body tail extension steering structure 1141. Correspondingly, the force application belt body extension section 132 can further extend through the first connector body tail extension steering structure 1141, and the force application belt body extension section 132 further includes a first force application belt body tail extension sub-section 13221 connecting the second force application belt body head extension sub-section 13212.

[0092] It should be noted that in the above embodiment, when the force application section 133 of the force application belt body provides force, the first connector body tail extension steering structure 1141 deflects the extension of the force application belt body extension section 132, so that the first force application belt body tail extension sub-section 13221 extends along the connector body tail outer wall 1112 in a first tail extension direction D21, wherein the first tail extension direction D21 is substantially different from the second head extension direction D12. Thus, when the first force application belt body tail extension sub-section 13221 is stressed, the second force application belt body head extension sub-section 13212 can serve as a force arm or a force transmission structure, enabling the force application belt body dragging section 131 to drag the connector docking port dragging structure 122, so that the force application belt body 13 can actuate the connector docking port hook structure 121 in an electronic product with limited internal space, and enabling the connector docking port hook structure 121 to release the hook on the docking member 2, so that the electrical connector 1 can be pulled out to release the docking relationship with the docking member 2, and further enabling the electrical connector 1 to be used in a thin and light designed electronic product.

[0093] In the above embodiment, as Figure 22 shown, the connector body tail outer wall 1112 includes a connector body tail outer wall extension guiding structure 11121, and the connector body tail outer wall extension guiding structure 11121 guides the first force application belt body tail extension sub-section 13221 to extend in the first tail extension direction D21. Optionally, the connector body tail outer wall extension guiding structure 11121 is a guide groove guiding structure.

[0094] In addition, in the above embodiment, as Figure 22 shown, the connector body 11 further includes a second connector body tail extension steering structure 1142. Correspondingly, the force application belt body extension section 132 can further extend through the second connector body tail extension steering structure 1142, and the force application belt body extension section 132 further includes a second force application belt body tail extension sub-section 13222 connecting the first force application belt body tail extension sub-section 13221.

[0095] It should be noted that when the force - applying section 133 of the force - applying belt body applies force, the tail - extending and turning structure 1142 of the second connector body causes the extension of the force - applying belt body extension section 132 to turn, so that the second force - applying belt body tail - extending sub - section 13222 extends in a second tail - extending direction D22. Among them, the first tail - extending direction D21 is substantially different from the second tail - extending direction D22. In this way, when the second force - applying belt body tail - extending sub - section 13222 is stressed, the first force - applying belt body tail - extending sub - section 13221 can serve as a lever arm or a force - transmitting structure, causing the force - applying belt body dragging section 131 to drag the connector docking port dragging structure 122, so that the force - applying belt body 13 can actuate the connector docking port hooking structure 121 in an electronic product with limited internal space, and enabling the connector docking port hooking structure 121 to release the hook on the docking member 2, so that the electrical connector 1 can be pulled out to release the docking relationship with the docking member 2, and further enabling the electrical connector 1 to be used in a thin and light - designed electronic product.

[0096] In Figure 14 the embodiment shown, the connector body 11 further includes an outer wall of the connector body tail 1112, an outer wall of the connector body abdomen 1113, a first connector body abdomen extension and turning structure 1151, a second connector body abdomen extension and turning structure 1152, and a first connector body tail extension and turning structure 1141. The force - applying belt body extension section 132 can also extend through the first connector body abdomen extension and turning structure 1151, the second connector body abdomen extension and turning structure 1152, and the first connector body tail extension and turning structure 1141.

[0097] It should be noted that in the above - mentioned embodiment, as Figures 14 to 15 shown, the force - applying belt body extension section 132 further includes a first force - applying belt body abdomen extension sub - section 13231, a second force - applying belt body abdomen extension sub - section 13232, and a first force - applying belt body tail extension sub - section 13221. Among them, the first force - applying belt body abdomen extension sub - section 13231 is connected to the second force - applying belt body head extension sub - section 13212, and the second force - applying belt body abdomen extension sub - section 13232 is respectively connected to the first force - applying belt body abdomen extension sub - section 13231 and the first force - applying belt body tail extension sub - section 13221.

[0098] In addition, when the force - applying section 133 of the force - applying belt body applies force, the abdominal extension and turning structure 1151 of the first connector body causes the extension of the force - applying belt body extension section 132 to turn, such that the first force - applying belt body abdominal extension sub - section 13231 extends away from the inner space 112 of the connector body in a first abdominal extension direction D31, and the abdominal extension and turning structure 1152 of the second connector body causes the extension of the force - applying belt body extension section 132 to turn, such that the second force - applying belt body abdominal extension sub - section 13232 extends along the outer wall 1113 of the connector body abdomen in a second abdominal extension direction D32. Herein, the second abdominal extension direction D32 is substantially different from the first abdominal extension direction D31. Thus, when the second force - applying belt body abdominal extension sub - section 13232 is subjected to force, the first force - applying belt body abdominal extension sub - section 13231 can serve as a lever arm or a force - transmitting structure, causing the force - applying belt body dragging section 131 to drag the connector docking port dragging structure 122, enabling the force - applying belt body 13 to actuate the connector docking port latching structure 121 in an electronic product with limited internal space, and enabling the connector docking port latching structure 121 to release the latch on the docking member 2, so that the electrical connector 1 can be pulled out to release the docking relationship with the docking member 2, and further enabling the electrical connector 1 to be used in electronic products with a thin and light design.

[0099] Furthermore, when the force - applying section 133 of the force - applying belt body applies force, the tail extension and turning structure 1141 of the first connector body causes the extension of the force - applying belt body extension section 132 to turn, such that the first force - applying belt body tail extension sub - section 13221 extends along the outer wall 1112 of the connector body tail in a first tail extension direction D21. Herein, the first tail extension direction D21 is substantially different from the second abdominal extension direction D32. Thus, when the first force - applying belt body tail extension sub - section 13221 is subjected to force, the second force - applying belt body abdominal extension sub - section 13232 can serve as a lever arm or a force - transmitting structure, causing the force - applying belt body dragging section 131 to drag the connector docking port dragging structure 122, enabling the force - applying belt body 13 to actuate the connector docking port latching structure 121 in an electronic product with limited internal space, and enabling the connector docking port latching structure 121 to release the latch on the docking member 2, so that the electrical connector 1 can be pulled out to release the docking relationship with the docking member 2, and further enabling the electrical connector 1 to be used in electronic products with a thin and light design.

[0100] It should be noted that the electrical connector of the present application can also omit some components and is not limited to the above embodiments. For example, the electrical connector of the present application can be selected to include only: a connector body, a connector docking port, and a force application belt body. The connector body includes an outer wall of the connector body head, an internal space of the connector body, a first connector body head extension turning structure, and a second connector body head extension turning structure. The connector docking port includes a connector docking port hook structure and a connector docking port dragging structure. The force application belt body includes a force application belt body dragging section, a force application belt body extension section, and a force application belt body force application section. The force application belt body extension section includes a first force application belt body head extension sub-section and a second force application belt body head extension sub-section. The first force application belt body head extension sub-section is connected to the force application belt body dragging section, and the second force application belt body head extension sub-section is connected to the first force application belt body head extension sub-section.

[0101] In addition, the force application belt body dragging section is joined to the connector docking port dragging structure. The force application belt body extension section is respectively connected to the force application belt body dragging section and the force application belt body force application section, and the force application belt body extension section extends through the first connector body head extension turning structure and the second connector body head extension turning structure. The force application belt body force application section can provide a force, so that the force application belt body dragging section drags the connector docking port dragging structure in the dragging direction to actuate the connector docking port hook structure, and makes the first connector body head extension turning structure and the second connector body head extension turning structure respectively turn the extension of the force application belt body extension section, so that the first force application belt body head extension sub-section extends along the outer wall of the connector body head in the first head extension direction, and makes the second force application belt body head extension sub-section extend into the internal space of the connector body in the second head extension direction. The dragging direction is substantially different from the first head extension direction, and the first head extension direction is substantially different from the second head extension direction.

[0102] In summary, the electrical connector of the present application can be docked with a docking component, and the electrical connector includes a connector body, a connector docking port, and a force application belt body. The connector docking port includes a hook structure capable of hooking the docking component. The connector body includes an extension turning structure capable of turning the extension of the force application belt body. Thus, the force application belt body can actuate the hook structure in an electronic product with limited internal space, so that the hook structure can release the hook on the docking component, enabling the electrical connector to be pulled out to release the docking relationship with the docking component, and further enabling the electrical connector to be used in a thin and light designed electronic product.

[0103] The above embodiments only illustratively explain the principles and effects of the present application and are not used to limit the present application. Any person familiar with this technology can modify and change the above embodiments without departing from the spirit and scope of the present application. Therefore, the scope of the rights protected by the present application should be as listed in the scope of the claims of the present application.

Claims

1. An electrical connector, characterized in that, The electrical connector includes: A connector body, which includes an outer wall of the connector body head, an internal space of the connector body, a first extended turning structure of the connector body head, and a second extended turning structure of the connector body head; A connector docking port, which includes a hook structure of the connector docking port and a dragging structure of the connector docking port; and A force-applying belt body, which includes a dragging section of the force-applying belt body, an extended section of the force-applying belt body, and a force-applying section of the force-applying belt body. The extended section of the force-applying belt body includes a first head extended sub-section of the force-applying belt body and a second head extended sub-section of the force-applying belt body. The first head extended sub-section of the force-applying belt body is connected to the dragging section of the force-applying belt body, and the second head extended sub-section of the force-applying belt body is connected to the first head extended sub-section of the force-applying belt body; wherein, The dragging section of the force-applying belt body engages with the dragging structure of the connector docking port. The extended section of the force-applying belt body is respectively connected to the dragging section of the force-applying belt body and the force-applying section of the force-applying belt body, and the extended section of the force-applying belt body extends through the first extended turning structure of the connector body head and the second extended turning structure of the connector body head; The force-applying section of the force-applying belt body can provide a force, so that the dragging section of the force-applying belt body drags the dragging structure of the connector docking port in a dragging direction to actuate the hook structure of the connector docking port, and enables the first extended turning structure of the connector body head and the second extended turning structure of the connector body head to respectively turn the extension of the extended section of the force-applying belt body, so that the first head extended sub-section of the force-applying belt body extends along the outer wall of the connector body head in a first head extension direction, and enables the second head extended sub-section of the force-applying belt body to extend into the internal space of the connector body in a second head extension direction; and The dragging direction is substantially different from the first head extension direction, and the first head extension direction is substantially different from the second head extension direction.

2. The electrical connector according to claim 1, wherein, The connector docking port further includes a fulcrum structure of the connector docking port. The hook structure of the connector docking port and the dragging structure of the connector docking port are respectively located on one side of the relative two sides of the fulcrum structure of the connector docking port. When the dragging section of the force-applying belt body actuates the hook structure of the connector docking port, the hook structure of the connector docking port moves with the fulcrum structure of the connector docking port as a fulcrum.

3. The electrical connector according to claim 2, characterized in that, The hook structure of the connector docking port, the dragging structure of the connector docking port, and the fulcrum structure of the connector docking port form a seesaw structure, and the fulcrum structure of the connector docking port is the fulcrum of the seesaw structure.

4. The electrical connector according to claim 1, wherein, The connector body further includes a clamping structure of the connector body, and the clamping structure of the connector body can clamp the connector docking port, so that the connector body and the connector docking port can be clamped into one body.

5. The electrical connector according to claim 4, characterized in that The clamping structure of the connector body is a spring arm structure.

6. The electrical connector according to claim 1, characterized in that, The connector body further includes an outer wall of the tail of the connector body and a first steering structure for the extension of the tail of the connector body, and the extended section of the force-applying belt body also extends through the first steering structure for the extension of the tail of the connector body. The extended section of the force-applying belt body further includes a first extended sub-section of the tail of the force-applying belt body, and the first extended sub-section of the tail of the force-applying belt body is connected to the extended sub-section of the head of the second force-applying belt body to apply force to the force-applying section of the force-applying belt body. The first steering structure for the extension of the tail of the connector body deflects the extension of the extended section of the force-applying belt body, causing the first extended sub-section of the tail of the force-applying belt body to extend along the outer wall of the tail of the connector body in a first tail extension direction, where the first tail extension direction is substantially different from the second head extension direction.

7. The electrical connector according to claim 6, wherein, The outer wall of the tail of the connector body includes a guiding structure for the extension of the outer wall of the tail of the connector body, and the guiding structure for the extension of the outer wall of the tail of the connector body guides the first extended sub-section of the tail of the force-applying belt body to extend in the first tail extension direction.

8. The electrical connector according to claim 7, characterized in that, The guiding structure for the extension of the outer wall of the tail of the connector body is a guiding groove structure.

9. The electrical connector according to claim 6, wherein The connector body further includes a second steering structure for the extension of the tail of the connector body, and the extended section of the force-applying belt body also extends through the second steering structure for the extension of the tail of the connector body. The extended section of the force-applying belt body further includes a second extended sub-section of the tail of the force-applying belt body, and the second extended sub-section of the tail of the force-applying belt body is connected to the first extended sub-section of the tail of the force-applying belt body to apply force to the force-applying section of the force-applying belt body. The second steering structure for the extension of the tail of the connector body deflects the extension of the extended section of the force-applying belt body, causing the second extended sub-section of the tail of the force-applying belt body to extend in a second tail extension direction, where the second tail extension direction is substantially different from the first tail extension direction.

10. The electrical connector according to claim 1, characterized in that, The connector body further includes an outer wall of the abdomen of the connector body, a first steering structure for the extension of the abdomen of the connector body, and a second steering structure for the extension of the abdomen of the connector body. The extended section of the force-applying belt body also extends through the first steering structure for the extension of the abdomen of the connector body and the second steering structure for the extension of the abdomen of the connector body. The extended section of the force-applying belt body further includes a first extended sub-section of the abdomen of the force-applying belt body and a second extended sub-section of the abdomen of the force-applying belt body. The first extended sub-section of the abdomen of the force-applying belt body is connected to the extended sub-section of the head of the second force-applying belt body, and the second extended sub-section of the abdomen of the force-applying belt body is connected to the first extended sub-section of the abdomen of the force-applying belt body to apply force to the force-applying section of the force-applying belt body. The first steering structure for the extension of the abdomen of the connector body and the second steering structure for the extension of the abdomen of the connector body respectively deflect the extension of the extended section of the force-applying belt body, causing the first extended sub-section of the abdomen of the force-applying belt body to extend away from the internal space of the connector body in a first abdomen extension direction, and causing the second extended sub-section of the abdomen of the force-applying belt body to extend along the outer wall of the abdomen of the connector body in a second abdomen extension direction, where the second abdomen extension direction is substantially different from the first abdomen extension direction.

11. The electrical connector according to claim 10, wherein, The connector body further includes an outer wall of the tail of the connector body and a first tail extension and turning structure of the connector body, and the extended section of the force-applying belt body also extends through the first tail extension and turning structure of the connector body. The extended section of the force-applying belt body further includes a first extended sub-section of the tail of the force-applying belt body, and the first extended sub-section of the tail of the force-applying belt body is connected to the extended sub-section of the abdomen of the second force-applying belt body to apply force to the force-applying section of the force-applying belt body. The first tail extension and turning structure of the connector body turns the extension of the extended section of the force-applying belt body, so that the first extended sub-section of the tail of the force-applying belt body extends along the outer wall of the tail of the connector body in a first tail extension direction, wherein the first tail extension direction is substantially different from the second abdomen extension direction.