Electric power supply system and electric connector thereof
By designing the coordination between the trigger component and the plug-in terminal, the electrical connector triggers the power supply only after the plug-in conductive component is fully plugged into place, solving the problem of unstable power supply when the plug-in is not in place and achieving stable power supply.
Patent Information
- Application Number
- CN202422726701.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-03-11
- Filing Date
- 2024-11-08
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-11-08
AI Technical Summary
The electrical connector still provides power when the plug-in conductive member is not plugged in properly, resulting in unstable power supply.
An electrical connector is designed, which includes a trigger component, a plug-in terminal and an insulating rubber core. Through the cooperation between the trigger component and the plug-in terminal, it is ensured that the plug-in conductive component is fully plugged into place before the power supply module is triggered to provide power.
The stability of power supply is achieved, ensuring that the power supply system provides expected power to various electronic devices.
Smart Images

Figure CN223334060U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of electronic devices, and more particularly, to an electrical connector. Background Art
[0002] The electrical connector can be used in conjunction with a power supply module and a plug-in conductive component to form a power supply system that can supply power. In the power supply system, the electrical connector can receive power from the power supply module, and the electrical connector can provide plugging for the plug-in conductive component. The electrical connector can provide plugging for the plug-in conductive component and provide power to the plug-in conductive component. Therefore, in recent years, the power supply system has been widely used to power various electronic devices.
[0003] In a specific implementation, the electrical connector is likely to provide power to the plug-in conductive member before the plug-in conductive member is properly plugged in, resulting in unstable power provided by the electrical connector to the plug-in conductive member, thereby affecting the power supply of the power supply system.
[0004] Based on the above, how to prevent the electrical connector from providing power to the plug-in conductive member before the plug-in conductive member is fully plugged in is an urgent issue for those skilled in the art. Utility Model Content
[0005] In view of the shortcomings of the above-mentioned prior art, the present application provides an electrical connector, which can be used with a power supply module and can receive power from the power supply module, and the electrical connector can provide a plug-in conductive component for plugging, and can provide the power to the plug-in conductive component, the electrical connector includes: a trigger component, the trigger component is electrically connected to the power supply module; a plug-in terminal, the plug-in terminal is electrically connected to the power supply module, and the plug-in terminal has a plug-in terminal body, a front terminal plug-in arm and a terminal trigger arm, the plug-in terminal body is electrically connected to the terminal trigger arm, and the plug-in terminal body has a front terminal body extension section, the front terminal body extension section is electrically connected to the front terminal plug-in arm, wherein the front terminal plug-in arm has a front terminal plug-in arm plug-in structure, the terminal trigger arm has a terminal trigger arm plug-in structure and a terminal trigger arm abutment structure; and an insulating rubber core, the insulating rubber core has a rubber core abutment space, a rubber core plug-in space and a rubber core The core guiding structure, the insulating rubber core respectively engages the plug-in terminal and the trigger component, so that the front terminal plug-in arm plug-in structure and the terminal trigger arm abutment structure are respectively located in the rubber core plug-in space, and the terminal trigger arm abutment structure and the trigger component are respectively located in the rubber core abutment space, the rubber core guiding structure provides guidance for the plug-in conductive component, so that the plug-in conductive component enters the rubber core plug-in space, and sequentially plugs the front terminal plug-in arm plug-in structure and the terminal trigger arm plug-in structure; wherein, the front terminal plug-in arm plug-in structure is plugged into the plug-in conductive component, and the plug-in conductive component is electrically connected to the front terminal plug-in arm plug-in structure; and the terminal trigger arm plug-in structure is plugged into the plug-in conductive component, and the terminal trigger arm abutment structure electrically abuts the trigger component in the rubber core abutment space, so as to trigger the power supply module through the trigger component, and enable the power supply module to provide the power to the plug-in conductive component via the front terminal plug-in arm plug-in structure.
[0006] Preferably, in the electrical connector of the present application, the trigger component triggers the power supply module, and the power supply module can also provide the power to the plug-in conductive component via the terminal trigger arm plug-in structure.
[0007] Preferably, in the electrical connector of the present application, the plug-in terminal also has a rear terminal plug-in arm, and the plug-in terminal body also has a rear terminal body extension section, and the rear terminal body extension section is electrically connected to the rear terminal plug-in arm, wherein the rear terminal plug-in arm has a rear terminal plug-in arm plugging structure and a rear terminal plug-in arm support structure, and the rear terminal body extension section has a rear terminal body extension section support structure, and the rear terminal plug-in arm and the rear terminal body extension section are respectively located behind the front terminal plug-in arm and the front terminal body extension section, so that the rear terminal plug-in arm support structure and the rear terminal body extension section are connected. The supporting structure can provide support for the front terminal plug-in arm and the front terminal body extension section respectively; the rear terminal plug-in arm plug-in structure is located in the rubber core plug-in space, and when the plug-in conductive component enters the rubber core plug-in space, the plug-in conductive component can be plugged into the rear terminal plug-in arm plug-in structure, wherein the plug-in conductive component is plugged into the rear terminal plug-in arm plug-in structure earlier than the plug-in conductive component is plugged into the terminal trigger arm plug-in structure; and when the plug-in conductive component is plugged into the terminal trigger arm plug-in structure, the power supply module can also provide the power to the plug-in conductive component via the rear terminal plug-in arm plug-in structure.
[0008] Preferably, in the electrical connector of the present application, the trigger component has a trigger component engagement extension section, a trigger component abutment extension section and a trigger component support extension section, wherein the insulating rubber core engages the trigger component engagement extension section so that the trigger component abutment extension section is located in the rubber core abutment space; and the terminal trigger arm plug-in structure is plugged into the plug-in conductive component, and the terminal trigger arm abutment structure electrically abuts the trigger component abutment extension section in the rubber core abutment space, and the trigger component support extension section abuts against the insulating rubber core to provide support for the trigger component abutment extension section.
[0009] Preferably, in the electrical connector of the present application, the insulating rubber core also has a trigger member stop structure, which provides support for the trigger member abutment extension section at the trigger member support extension section, and the trigger member stop structure provides a stop for the trigger member support extension section to prevent the trigger member support extension section from leaving the insulating rubber core.
[0010] Preferably, in the electrical connector of the present application, the trigger member support extension section has a trigger member support extension section elastic structure, and the trigger member support extension section elastic structure can provide elastic support to the trigger member abutment extension section, so that the trigger member abutment extension section is located at a predetermined position of the rubber core abutment space.
[0011] Preferably, in the electrical connector of the present application, the elastic structure of the trigger member supporting the extension section is a bent structure.
[0012] Preferably, in the electrical connector of the present application, the trigger member abutting extension section and the trigger member supporting extension section can be combined to form a bending structure.
[0013] Preferably, in the electrical connector of the present application, the terminal trigger arm has a terminal trigger arm engagement extension section, a terminal trigger arm abutment extension section and a terminal trigger arm elastic extension section, wherein the insulating rubber core engages the terminal trigger arm engagement extension section, so that the terminal trigger arm abutment extension section is located in the rubber core abutment space, and the terminal trigger arm elastic extension section provides a terminal trigger arm elastic extension section thrust to the terminal trigger arm abutment extension section, so as to force the terminal trigger arm abutment extension section to leave the trigger component through the terminal trigger arm elastic extension section thrust; when the plug-in conductive component is plugged into the terminal trigger arm plug-in structure, the plug-in conductive component provides a plug-in conductive component thrust to the terminal trigger arm abutment extension section; and when the plug-in conductive component thrust is greater than the terminal trigger arm elastic extension section thrust, the terminal trigger arm abutment extension section can be pushed to abut the trigger component.
[0014] Preferably, in the electrical connector of the present application, the insulating rubber core also has a terminal trigger arm stop structure, and the thrust of the elastic extension section of the terminal trigger arm forces the terminal trigger arm abutment extension section to leave the trigger component, and the terminal trigger arm stop structure provides a stop for the terminal trigger arm abutment extension section to prevent the terminal trigger arm abutment extension section from leaving the rubber core abutment space.
[0015] Preferably, in the electrical connector of the present application, the insulating rubber core also has a terminal trigger arm limiting structure. When the thrust of the plug-in conductive component is greater than the thrust of the elastic extension section of the terminal trigger arm, the terminal trigger arm limiting structure provides a restriction on the moving stroke of the pushed terminal trigger arm abutting extension section to avoid the terminal trigger arm abutting extension section from abutting the trigger component in an unexpected manner.
[0016] Preferably, in the electrical connector of the present application, the trigger component and the plug-in terminal are conductive metal bodies.
[0017] In addition, the present application also provides a power supply system, which includes: a plug-in conductive component; a power supply module, which can provide power; and an electrical connector, which includes: a trigger component, which is electrically connected to the power supply module; a plug-in terminal, which is electrically connected to the power supply module, and the plug-in terminal has a plug-in terminal body, a front terminal plug-in arm and a terminal trigger arm, the plug-in terminal body is electrically connected to the terminal trigger arm, and the plug-in terminal body is electrically connected to the front terminal plug-in arm, wherein the front terminal plug-in arm has a front terminal plug-in arm plug-in structure, and the terminal trigger arm has a terminal trigger arm plug-in structure and a terminal trigger arm abutment structure; and an insulating rubber core, the insulating rubber core has a rubber core abutment space, a rubber core plug-in space and a rubber core guide structure, the insulating rubber core engages the plug-in terminal, The front terminal plug-in arm plug-in structure and the terminal trigger arm abutment structure are respectively located in the rubber core plug-in space, and the terminal trigger arm abutment structure enters the rubber core abutment space, and the rubber core guiding structure provides guidance for the plug-in conductive component, so that the plug-in conductive component enters the rubber core plug-in space, and the front terminal plug-in arm plug-in structure and the terminal trigger arm plug-in structure are sequentially plugged in; wherein, the front terminal plug-in arm plug-in structure is plugged into the plug-in conductive component, and the plug-in conductive component is electrically connected to the front terminal plug-in arm plug-in structure; and the terminal trigger arm plug-in structure is plugged into the plug-in conductive component, and the terminal trigger arm abutment structure electrically abuts the trigger component in the rubber core abutment space, so as to transmit a trigger signal through the trigger component to trigger the power supply module, so that the power supply module provides the power to the plug-in conductive component via the front terminal plug-in arm plug-in structure.
[0018] Preferably, in the power supply system of the present application, the trigger component triggers the power supply module, and the power supply module can also provide the power to the plug-in conductive component via the terminal trigger arm plug-in structure.
[0019] Preferably, in the power supply system of the present application, the power supply module is disposed on a circuit substrate.
[0020] Preferably, the power supply system of the present application further includes a trigger wire and a plug wire, wherein the trigger wire electrically connects the trigger component and the power supply module, and the plug wire electrically connects the plug terminal and the power supply module.
[0021] Preferably, in the power supply system of the present application, the trigger component has a trigger component wire clamping structure, which provides clamping for the trigger wire so that the trigger wire is electrically connected to the trigger component; and the plug-in terminal has a plug-in terminal wire clamping structure, which provides clamping for the plug-in wire so that the plug-in wire is electrically connected to the plug-in terminal.
[0022] Compared with the prior art, the present application provides a power supply system, which includes: an electrical connector, a plug-in conductive component and a power supply module. The power supply module can provide power. The electrical connector can receive power from the power supply module, and the electrical connector includes: a trigger component. The plug-in conductive component can be plugged into the electrical connector. When the plug-in conductive component is plugged into the electrical connector, the trigger component triggers the power supply module to provide the power to the plug-in conductive component. In this way, technical problems such as the electrical connector providing power to the plug-in conductive component before the plug-in conductive component is plugged into place can be solved, and the power provided by the electrical connector to the plug-in conductive component can be stabilized, so that the power supply of the power supply system on various electronic devices meets expectations. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 Shown is a three-dimensional schematic diagram of a power supply system of the present application in one embodiment.
[0024] Figure 2 Shown is a three-dimensional schematic diagram of an electrical connector according to an embodiment of the present application.
[0025] Figure 3 Shown is a front view schematic diagram of an electrical connector of the present application in one embodiment.
[0026] Figure 4 Display as Figure 3 The diagram shows a cross-sectional view of some components of the electrical connector taken along line segment AA.
[0027] Figure 5 Display as Figure 3 The diagram shows a cross-sectional view of some components of the electrical connector taken along line A'A'.
[0028] Figure 6 Display as Figure 3 The diagram shows a cross-sectional view of some components of the electrical connector taken along line BB.
[0029] Figure 7 Display as Figure 3 The diagram shows a cross-sectional view of some components of the electrical connector taken along line B'B'.
[0030] Figure 8 Display as Figure 3 The diagram shows a cross-sectional view of some components of the electrical connector taken along line segment B"B".
[0031] Figure 9 Shown is a three-dimensional schematic diagram of a triggering component of the present application in one embodiment.
[0032] Figure 10 Shown is a right side schematic diagram of an embodiment of the electrical connector of the present application.
[0033] Figure 11 Display as Figure 10 The diagram shows a cross-sectional view of some components of the electrical connector taken along line CC.
[0034] Figure 12 Display as Figure 10 The diagram shows a cross-sectional view of some components of the electrical connector taken along line segment DD.
[0035] Figure 13 Shown is a three-dimensional schematic diagram of some components of an electrical connector of the present application in one embodiment.
[0036] Component number description
[0037] 1 Power supply system
[0038] 11 Electrical connector
[0039] 111 Trigger Component
[0040] 1110 Trigger member clamping structure
[0041] 1111 Trigger member engaging extension
[0042] 1112 trigger member abuts extension section
[0043] 1113 Trigger member support extension
[0044] 11131 Trigger component support extension elastic structure
[0045] 112 plug terminals
[0046] 1120 plug-in terminal clamping structure
[0047] 1121 Plug terminal body
[0048] 11211 Front terminal body extension
[0049] 11212 Rear terminal body extension
[0050] 112121 Rear terminal body extension support structure
[0051] 1122 front terminal plug arm
[0052] 11221 Front terminal plug-in arm plug-in structure
[0053] 1123 Terminal trigger arm
[0054] 11231 Terminal trigger arm plug-in structure
[0055] 11232 Terminal trigger arm abutment structure
[0056] 11233 Terminal Trigger Arm Engagement Extension
[0057] 11234 Terminal trigger arm abutment extension
[0058] 11235 Terminal trigger arm elastic extension
[0059] 1124 Rear terminal connector arm
[0060] 11241 Rear terminal plug-in arm plug-in structure
[0061] 11242 Rear terminal plug-in arm support structure
[0062] 113 Insulation rubber core
[0063] 1131 Rubber core guide structure
[0064] 1132 Trigger component stop structure
[0065] 1133 Terminal trigger arm stop structure
[0066] 1134 Terminal trigger arm limit structure
[0067] 12 Connecting conductive components
[0068] 13 Power supply module
[0069] 14 trigger wire
[0070] 15 Plug wire
[0071] S1 rubber core contact space
[0072] S2 rubber core insertion space
[0073] P circuit board DETAILED DESCRIPTION
[0074] The following content will be accompanied by drawings and illustrate the technical content of this application through specific embodiments. Those familiar with this technology can easily understand the other advantages and functions of this application from the content disclosed in this specification. This application can also be implemented or applied through other different specific embodiments. The details in this specification can also be modified and changed in various ways based on different viewpoints and applications without departing from the spirit of this application. In particular, the proportional relationships and relative positions of the various components in the drawings are for illustrative purposes only and do not represent the actual situation of the implementation of this application.
[0075] The present application provides a power supply system, which includes: an electrical connector, a plug-in conductive component and a power supply module. The power supply module can provide power. The electrical connector can receive power from the power supply module, and the electrical connector includes: a trigger component. The plug-in conductive component can be plugged into the electrical connector. When the plug-in conductive component is plugged into the electrical connector, the trigger component triggers the power supply module to provide the power to the plug-in conductive component. In this way, technical problems such as the electrical connector providing power to the plug-in conductive component before the plug-in conductive component is plugged into place can be solved, and the power provided by the electrical connector to the plug-in conductive component can be stable, so that the power supply of the power supply system on various electronic devices meets expectations.
[0076] For the technical concept of the electrical connector of this application, please refer to Figures 1 to 13 The embodiment of the invention is described below.
[0077] At Figures 1 to 13 In the illustrated embodiment, at least one power supply system 1 is provided. The power supply system 1 may include an electrical connector 11, a plug-in conductive member 12, a power supply module 13, a trigger wire 14, and a plug-in wire 15. The power supply module 13 may be optionally disposed on a circuit substrate P to provide power.
[0078] The electrical connector 11 includes a trigger member 111, a plug terminal 112, and an insulating rubber core 113. Optionally, the trigger member 111 and the plug terminal 112 are conductive metal bodies capable of transmitting electrical signals.
[0079] The trigger member 111 comprises a trigger member clamping structure 1110, a trigger member engaging extension 1111, a trigger member abutting extension 1112, and a trigger member supporting extension 1113. The trigger member clamping structure 1110 clamps one end of the trigger wire 14, while the other end of the trigger wire 14 is electrically connected to the power supply module 13, allowing the trigger member 111 to be electrically connected to the power supply module 13 via the trigger wire 14.
[0080] The plug-in terminal 112 has a plug-in terminal clamping structure 1120, which provides a clamping function for one end of the plug-in wire 15, while the other end of the plug-in wire 15 is electrically connected to the power supply module 13, so that the plug-in terminal 112 can be electrically connected to the power supply module 13 through the plug-in wire 15.
[0081] The plug-in terminal 112 comprises a plug-in terminal body 1121, a front terminal plug-in arm 1122, a terminal trigger arm 1123, and a rear terminal plug-in arm 1124. The plug-in terminal body 1121 is electrically connected to the terminal trigger arm 1123. The plug-in terminal body 1121 comprises a front terminal body extension 11211 and a rear terminal body extension 11212. The front terminal body extension 11211 is electrically connected to the front terminal plug-in arm 1122. The rear terminal body extension 11212 is electrically connected to the rear terminal plug-in arm 1124. The rear terminal body extension 11212 comprises a rear terminal body extension support structure 112121. The front terminal plug-in arm 1122 comprises a front terminal plug-in arm plug-in structure 11221.
[0082] like Figure 2 and Figures 6 and 7 As shown, the terminal trigger arm 1123 further comprises a terminal trigger arm plugging structure 11231, a terminal trigger arm abutting structure 11232, a terminal trigger arm engaging extension section 11233, a terminal trigger arm abutting extension section 11234, and a terminal trigger arm elastic extension section 11235, wherein the terminal trigger arm abutting structure 11232 is disposed on the terminal trigger arm abutting extension section 11234. The rear terminal plugging arm 1124 comprises a rear terminal plugging arm plugging structure 11241 and a rear terminal plugging arm supporting structure 11242.
[0083] The insulating rubber core 113 has a rubber core abutment space S1, a rubber core insertion space S2, a rubber core guide structure 1131, a trigger member stop structure 1132, a terminal trigger arm stop structure 1133, and a terminal trigger arm limiting structure 1134. The insulating rubber core 113 respectively engages and positions the plug-in terminal 112 (or the terminal trigger arm engagement extension 11233) and the trigger member 111 (or the trigger member engagement extension 1111), so that the front terminal plug-in arm insertion structure 11221, the terminal trigger arm abutment structure 11232, and the rear terminal plug-in arm insertion structure 11241 are respectively located in the rubber core insertion space S2, and the terminal trigger arm abutment structure 11232 (or the terminal trigger arm abutment extension 11234) and the trigger member 111 (or the trigger member abutment extension 1112) are respectively located in the rubber core abutment space S1. The rubber core guiding structure 1131 provides guidance for the plug-in conductive component 12, so that the plug-in conductive component 12 enters the rubber core plug-in space S2, and sequentially plugs in the front terminal plug-in arm plug-in structure 11221 (and / or the rear terminal plug-in arm plug-in structure 11241) and the terminal trigger arm plug-in structure 11231, that is, the time when the plug-in conductive component 12 is plugged into the front terminal plug-in arm plug-in structure 11221 (and / or the rear terminal plug-in arm plug-in structure 11241) is earlier than the time when the plug-in conductive component 12 is plugged into the terminal trigger arm plug-in structure 11231.
[0084] In the above embodiment, when the plug-in conductive member 12 is plugged into the front terminal plug-in arm plug-in structure 11221, the plug-in conductive member 12 is electrically connected to the front terminal plug-in arm plug-in structure 11221. In addition, when the plug-in conductive member 12 is plugged into the terminal trigger arm plug-in structure 11231, the terminal trigger arm abutment structure 11232 electrically abuts the trigger member 111 (or the trigger member abutment extension 1112) in the rubber core abutment space S1, so as to transmit a trigger signal through the trigger member 111 to trigger the power supply module 13, so that the power supply module 13 is connected to the terminal trigger arm plug-in structure 11221 (and / or the rear terminal plug-in arm plug-in structure 11241) of the plug-in terminal 112. The structure 11231 provides the power to the plug-in conductive component 12, so that when the plug-in conductive component 12 is plugged into the electrical connector 11, the trigger component 111 triggers the power supply module 13 to provide the power to the plug-in conductive component 12. In this way, the technical problem that the electrical connector 11 provides power to the plug-in conductive component 12 before the plug-in conductive component 12 is plugged into place can be solved, and the power provided by the electrical connector 11 to the plug-in conductive component 12 is stable, so that the power supply of the power supply system 1 on various electronic devices meets expectations.
[0085] In the above embodiment, as shown in FIG* , the rear terminal plugging arm 1124 and the rear terminal body extension 11212 are respectively located behind the front terminal plugging arm 1122 and the front terminal body extension 11211, so that the rear terminal plugging arm support structure 11242 and the rear terminal body extension support structure 112121 can respectively provide support to the front terminal plugging arm 1122 and the front terminal body extension 11211, thereby ensuring that the plug-in conductive member 12 can be plugged into the front terminal plugging arm plugging structure 11221. The trigger member support extension 1113 abuts against the insulating rubber core 113 to provide support for the trigger member abutting extension 1112, so that the trigger member abutting extension 1112 is located at a predetermined position within the rubber core abutting space S1, thereby ensuring that the terminal trigger arm abutting structure 11232 can electrically abut the trigger member 111 (or the trigger member abutting extension 1112).
[0086] In the above embodiment, the terminal trigger arm elastic extension section 11235 provides a terminal trigger arm elastic extension section thrust to the terminal trigger arm abutting extension section 11234, so that the terminal trigger arm elastic extension section thrust pushes the terminal trigger arm abutting extension section 11234, thereby forcing the terminal trigger arm abutting extension section 11234 to leave the trigger member 111. In addition, the terminal trigger arm stop structure 1133 is, for example, a retaining wall structure. When the terminal trigger arm elastic extension section thrust forces the terminal trigger arm abutting extension section 11234 to leave the trigger member 111, the terminal trigger arm stop structure 1133 provides a stop for the terminal trigger arm abutting extension section 11234, thereby preventing the terminal trigger arm abutting extension section 11234 from leaving the rubber core abutting space S1.
[0087] It should be noted that when the plug-in conductive member 12 is plugged into the terminal trigger arm plug-in structure 11231, the plug-in conductive member 12 can provide a plug-in conductive member thrust to the terminal trigger arm abutting extension 11234. When the plug-in conductive member thrust is greater than the thrust of the terminal trigger arm elastic extension, the terminal trigger arm abutting extension 11234 can be pushed, causing the terminal trigger arm abutting extension 11234 (or the terminal trigger arm abutting structure 11232) to abut the trigger member 111. Furthermore, the terminal trigger arm limiting structure 1134 can be, for example, a retaining wall structure. When the plug-in conductive member thrust is greater than the thrust of the terminal trigger arm elastic extension, the terminal trigger arm limiting structure 1134 limits the travel of the pushed terminal trigger arm abutting extension 11234, thereby preventing the terminal trigger arm abutting extension 11234 from abutting the trigger member 111 as expected.
[0088] In the above embodiment, the trigger member supporting extension section 1113 has a trigger member supporting extension section elastic structure 11131 , and the trigger member supporting extension section elastic structure 11131 can provide elastic support to the trigger member abutting extension section 1112 .
[0089] Optionally, the trigger member support extension elastic structure 11131 is a bent structure, so that the structural strength of the trigger member support extension elastic structure 11131 meets expectations. Furthermore, the trigger member abutment extension 1112 and the trigger member support extension 1113 can be combined to form a bent structure, so that the structural strength of the trigger member abutment extension 1112 and the trigger member support extension 1113 meets expectations.
[0090] In addition, the trigger member stop structure 1132 is, for example, a retaining wall structure. When the trigger member support extension 1113 provides support to the trigger member abutting extension 1112, the trigger member stop structure 1132 provides a stop for the trigger member support extension 1113 to prevent the trigger member support extension 1113 from leaving the insulating rubber core 113.
[0091] It should be noted that the power supply system and the electrical connector thereof of the present application may omit some components and are not limited to the above embodiments.
[0092] For example, the power supply system of the present application may optionally include only: the power supply system includes: a plug-in conductive member, a power supply module, and an electrical connector. The power supply module can provide power. The electrical connector includes: a trigger member, a plug-in terminal, and an insulating rubber core. The trigger member is electrically connected to the power supply module. The plug-in terminal is electrically connected to the power supply module and includes a plug-in terminal body, a front terminal plug-in arm, and a terminal trigger arm. The plug-in terminal body is electrically connected to the terminal trigger arm, and the plug-in terminal body is electrically connected to the front terminal plug-in arm, wherein the front terminal plug-in arm has a front terminal plug-in arm plug-in structure, and the terminal trigger arm has a terminal trigger arm plug-in structure and a terminal trigger arm abutment structure. The insulating rubber core comprises a rubber core abutment space, a rubber core insertion space, and a rubber core guide structure. The insulating rubber core engages the plug-in terminal, so that the front terminal plug-in arm insertion structure and the terminal trigger arm abutment structure are respectively located in the rubber core insertion space, and the terminal trigger arm abutment structure enters the rubber core abutment space. The rubber core guide structure provides guidance for the insertion of the plug-in conductive member, so that the plug-in conductive member enters the rubber core insertion space and sequentially inserts the front terminal plug-in arm insertion structure and the terminal trigger arm insertion structure. The plug-in conductive member is inserted into the front terminal plug-in arm insertion structure, electrically connecting the plug-in conductive member to the front terminal plug-in arm insertion structure; and the plug-in conductive member is inserted into the terminal trigger arm insertion structure, so that the terminal trigger arm abutment structure electrically abuts the triggering member in the rubber core abutment space, so that a trigger signal is transmitted through the triggering member to trigger the power supply module, so that the power supply module provides power to the plug-in conductive member through the front terminal plug-in arm insertion structure.
[0093] Alternatively, the electrical connector of the present application may include only a trigger member, a plug-in terminal, and an insulating rubber core. The trigger member is electrically connected to a power supply module. The plug-in terminal is electrically connected to the power supply module and comprises a plug-in terminal body, a front terminal plug-in arm, and a terminal trigger arm. The plug-in terminal body is electrically connected to the terminal trigger arm, and the plug-in terminal body comprises a front terminal body extension, which is electrically connected to the front terminal plug-in arm. The front terminal plug-in arm comprises a front terminal plug-in arm plugging structure, and the terminal trigger arm comprises a terminal trigger arm plugging structure and a terminal trigger arm abutment structure. The insulating rubber core has a rubber core abutment space, a rubber core plug-in space and a rubber core guiding structure. The insulating rubber core respectively engages the plug-in terminal and the trigger component, so that the front terminal plug-in arm plug-in structure and the terminal trigger arm abutment structure are respectively located in the rubber core plug-in space, and the terminal trigger arm abutment structure and the trigger component are respectively located in the rubber core abutment space. The rubber core guiding structure provides guidance for the plug-in conductive component, so that the plug-in conductive component enters the rubber core plug-in space, and sequentially plugs the front terminal plug-in arm plug-in structure and the terminal trigger arm plug-in structure; wherein, the front terminal plug-in arm plug-in structure is plugged into the plug-in conductive component, and the plug-in conductive component is electrically connected to the front terminal plug-in arm plug-in structure; and the terminal trigger arm plug-in structure is plugged into the plug-in conductive component, and the terminal trigger arm abutment structure electrically abuts the trigger component in the rubber core abutment space, so as to trigger the power supply module through the trigger component, and enable the power supply module to provide the power to the plug-in conductive component via the front terminal plug-in arm plug-in structure.
[0094] In summary, the present application provides a power supply system, which includes: an electrical connector, a plug-in conductive component and a power supply module. The power supply module can provide power. The electrical connector can receive power from the power supply module, and the electrical connector includes: a trigger component. The plug-in conductive component can be plugged into the electrical connector. When the plug-in conductive component is plugged into the electrical connector, the trigger component triggers the power supply module to provide the power to the plug-in conductive component. In this way, technical problems such as the electrical connector providing power to the plug-in conductive component before the plug-in conductive component is plugged into place can be solved, and the power provided by the electrical connector to the plug-in conductive component can be stable, so that the power supply of the power supply system on various electronic devices meets expectations.
[0095] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Anyone skilled in the art may modify or alter the above embodiments without departing from the spirit and scope of this application. Therefore, the scope of protection of this application shall be as set forth in the claims of this application.
Claims
1. An electrical connector, characterized in that: The electrical connector can be used with a power supply module to receive power from the power supply module, and the electrical connector can provide a plug-in connection for a plug-in conductive member to provide the power to the plug-in conductive member. The electrical connector includes: a trigger component electrically connected to the power supply module; a plug-in terminal electrically connected to the power supply module, the plug-in terminal comprising a plug-in terminal body, a front terminal plug-in arm, and a terminal trigger arm, the plug-in terminal body electrically connected to the terminal trigger arm, the plug-in terminal body comprising a front terminal body extension section electrically connected to the front terminal plug-in arm, wherein the front terminal plug-in arm comprises a front terminal plug-in arm plug-in structure, and the terminal trigger arm comprises a terminal trigger arm plug-in structure and a terminal trigger arm abutment structure; and An insulating rubber core, the insulating rubber core having a rubber core abutment space, a rubber core plug-in space and a rubber core guiding structure, the insulating rubber core respectively engages the plug-in terminal and the trigger member, so that the front terminal plug-in arm plug-in structure and the terminal trigger arm abutment structure are respectively located in the rubber core plug-in space, and the terminal trigger arm abutment structure and the trigger member are respectively located in the rubber core abutment space, the rubber core guiding structure provides guidance for the plug-in conductive member, so that the plug-in conductive member enters the rubber core plug-in space, and sequentially plugs the front terminal plug-in arm plug-in structure and the terminal trigger arm plug-in structure; wherein, The plug-in conductive member is plugged into the front terminal plug-in arm plug-in structure, and the plug-in conductive member is electrically connected to the front terminal plug-in arm plug-in structure; and The terminal trigger arm plug-in structure is plugged into the plug-in conductive component, and the terminal trigger arm abutment structure electrically abuts against the trigger component in the rubber core abutment space, so as to trigger the power supply module through the trigger component, and enable the power supply module to provide the power to the plug-in conductive component through the front terminal plug-in arm plug-in structure.
2. The electrical connector according to claim 1, wherein: The trigger component triggers the power supply module, and the power supply module can also provide the power to the plug-in conductive component via the terminal trigger arm plug-in structure.
3. The electrical connector according to claim 1, wherein: The plug-in terminal further comprises a rear terminal plug-in arm, and the plug-in terminal body further comprises a rear terminal body extension section, wherein the rear terminal body extension section is electrically connected to the rear terminal plug-in arm, The rear terminal plug-in arm has a rear terminal plug-in arm plug-in structure and a rear terminal plug-in arm support structure, and the rear terminal body extension section has a rear terminal body extension section support structure. The rear terminal plug-in arm and the rear terminal body extension section are respectively located behind the front terminal plug-in arm and the front terminal body extension section, so that the rear terminal plug-in arm support structure and the rear terminal body extension section support structure can provide support for the front terminal plug-in arm and the front terminal body extension section respectively. The rear terminal plug-in arm plug-in structure is located in the rubber core plug-in space, and when the plug-in conductive member enters the rubber core plug-in space, the plug-in conductive member can be plugged into the rear terminal plug-in arm plug-in structure, wherein the plug-in conductive member is plugged into the rear terminal plug-in arm plug-in structure earlier than the plug-in conductive member is plugged into the terminal trigger arm plug-in structure; and When the plug-in conductive member is plugged into the terminal trigger arm plug-in structure, the power supply module can also provide the power to the plug-in conductive member via the rear terminal plug-in arm plug-in structure.
4. The electrical connector according to claim 1, wherein: The trigger component has a trigger component engagement extension section, a trigger component abutment extension section and a trigger component support extension section, wherein the insulating rubber core engages the trigger component engagement extension section so that the trigger component abutment extension section is located in the rubber core abutment space; and the terminal trigger arm plug-in structure is plugged into the plug-in conductive component, and the terminal trigger arm abutment structure electrically abuts the trigger component abutment extension section in the rubber core abutment space, while the trigger component support extension section abuts against the insulating rubber core to provide support for the trigger component abutment extension section.
5. The electrical connector according to claim 4, wherein: The insulating rubber core also has a trigger member stop structure, which provides support for the trigger member abutting extension section at the trigger member support extension section. The trigger member stop structure provides a stop for the trigger member support extension section to prevent the trigger member support extension section from leaving the insulating rubber core.
6. The electrical connector according to claim 4, wherein: The trigger member support extension section has a trigger member support extension section elastic structure, which can provide elastic support for the trigger member abutment extension section, so that the trigger member abutment extension section is located at a predetermined position of the rubber core abutment space.
7. The electrical connector according to claim 6, wherein: The elastic structure of the trigger member supporting the extension section is a bending structure.
8. The electrical connector according to claim 6, wherein: The trigger member abutting extension section and the trigger member supporting extension section can be combined to form a bending structure.
9. The electrical connector according to claim 1, wherein: The terminal trigger arm has a terminal trigger arm engaging extension section, a terminal trigger arm abutting extension section and a terminal trigger arm elastic extension section, wherein, The insulating rubber core engages with the terminal trigger arm engaging extension section, so that the terminal trigger arm abutting extension section is located in the rubber core abutting space, and the terminal trigger arm elastic extension section provides a terminal trigger arm elastic extension section thrust to the terminal trigger arm abutting extension section, so that the terminal trigger arm elastic extension section thrust forces the terminal trigger arm abutting extension section to leave the trigger component; The plug-in conductive member is plugged into the terminal trigger arm plug-in structure, and the plug-in conductive member provides a plug-in conductive member thrust to the terminal trigger arm abutting the extension section; and When the thrust of the plug-in conductive member is greater than the thrust of the elastic extension section of the terminal trigger arm, the abutting extension section of the terminal trigger arm can be pushed to abut against the trigger member.
10. The electrical connector according to claim 9, wherein: The insulating rubber core also has a terminal trigger arm stop structure, and the thrust of the terminal trigger arm elastic extension section forces the terminal trigger arm abutment extension section to leave the trigger component. The terminal trigger arm stop structure provides a stop for the terminal trigger arm abutment extension section to prevent the terminal trigger arm abutment extension section from leaving the rubber core abutment space.
11. The electrical connector according to claim 9, wherein: The insulating rubber core also has a terminal trigger arm limiting structure. When the thrust of the plug-in conductive component is greater than the thrust of the elastic extension section of the terminal trigger arm, the terminal trigger arm limiting structure provides a limit to the moving stroke of the pushed terminal trigger arm abutting extension section to avoid the terminal trigger arm abutting extension section from abutting the trigger component in an unexpected manner.
12. The electrical connector according to claim 1, wherein: The trigger component and the plug-in terminal are conductive metal bodies.
13. A power supply system, characterized in that: The power supply system comprises: A plug-in conductive member; a power supply module, the power supply module being capable of providing power; and An electrical connector, comprising: a trigger component electrically connected to the power supply module; a plug terminal electrically connected to the power supply module, the plug terminal comprising a plug terminal body, a front terminal plug arm, and a terminal trigger arm, the plug terminal body electrically connected to the terminal trigger arm, and the plug terminal body electrically connected to the front terminal plug arm, wherein the front terminal plug arm comprises a front terminal plug arm plug structure, and the terminal trigger arm comprises a terminal trigger arm plug structure and a terminal trigger arm abutment structure; and An insulating rubber core, the insulating rubber core having a rubber core abutment space, a rubber core plug-in space and a rubber core guiding structure, the insulating rubber core engages the plug-in terminal, so that the front terminal plug-in arm plug-in structure and the terminal trigger arm abutment structure are respectively located in the rubber core plug-in space, and the terminal trigger arm abutment structure enters the rubber core abutment space, the rubber core guiding structure provides guidance for the plug-in conductive member, so that the plug-in conductive member enters the rubber core plug-in space, and sequentially plugs the front terminal plug-in arm plug-in structure and the terminal trigger arm plug-in structure; wherein, The plug-in conductive member is plugged into the front terminal plug-in arm plug-in structure, and the plug-in conductive member is electrically connected to the front terminal plug-in arm plug-in structure; and The terminal trigger arm plug-in structure is plugged into the plug-in conductive component, and the terminal trigger arm abutment structure electrically abuts against the trigger component in the rubber core abutment space, so as to transmit a trigger signal through the trigger component to trigger the power supply module, so that the power supply module provides the power to the plug-in conductive component through the front terminal plug-in arm plug-in structure.
14. The power supply system according to claim 13, wherein: The trigger component triggers the power supply module, and the power supply module can also provide the power to the plug-in conductive component via the terminal trigger arm plug-in structure.
15. The power supply system according to claim 13, wherein: The power supply module is disposed on a circuit substrate.
16. The power supply system according to claim 13, wherein: It also includes a trigger wire and a plug wire, the trigger wire is electrically connected to the trigger component and the power supply module, and the plug wire is electrically connected to the plug terminal and the power supply module.
17. The power supply system according to claim 16, wherein: The trigger component has a trigger component wire clamping structure, which provides clamping for the trigger wire so that the trigger wire is electrically connected to the trigger component; and the plug-in terminal has a plug-in terminal wire clamping structure, which provides clamping for the plug-in wire so that the plug-in wire is electrically connected to the plug-in terminal.