Connector assembly
By designing the structure of the board end and wire end plugging and abutment wall and core support ribs in the connector assembly, the problem of the wire end connector is not easy to plug, and the implementability of the connector assembly in lightweight and thin electronic equipment is realized.
Patent Information
- Application Number
- CN202421881987.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2023-09-08
- Filing Date
- 2024-08-05
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-05
AI Technical Summary
Due to the thinning and thinning demand of electronic devices, the overall height of the connector assembly is continuously reduced, making it difficult for the wire-end connector to be plugged into the board-end connector, making the connector assembly with reduced height difficult to be implemented in electronic devices.
A connector assembly is designed, wherein the board end connector includes a board end plug-in abutment wall and an insulated rubber core. The line end connector includes a line end plug-in abutment wall and a rubber core support rib. The board end plug-in abutment wall is connected to the board end plug-in abutment wall, and guide the line end rubber core plug-in into the board end plug-in space, so that the line end connector can easily plug the board end connector.
The wire-end connector with a height reduction can easily plug into the board-end connector, meeting the lightweight and lightweight needs of electronic equipment.
Smart Images

Figure CN223023712U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to a connector assembly, and more specifically, to a connector assembly that can facilitate the insertion of a wire-end connector into a board-end connector. Background Art
[0002] In modern electronic devices of various types, a connector assembly is often provided to transmit electrical signals in the electronic device through the connector assembly. The connector assembly generally includes a board-end connector and a wire-end connector. Currently, the board-end connector is soldered to the circuit board of the electronic device, and the wire-end connector is connected to a conductive wire. When implementing the connector assembly, the wire-end connector can be inserted into the board-end connector to electrically connect the wire-end connector and the board-end connector, thereby transmitting the electrical signals between the circuit board and the conductive wire so that the electronic device can operate normally.
[0003] Due to the demand for thinner and lighter electronic devices in recent years, the overall height of the connector assembly has been continuously required to be reduced, resulting in the wire-end connector being difficult to insert into the board-end connector, making it difficult to implement the connector assembly with a reduced height in the electronic device.
[0004] In view of this, how to make it easy for the wire-end connector with a reduced height to be inserted into the board-end connector is the technical problem to be solved in this case. Summary of the Invention
[0005] In view of the above-mentioned disadvantages of the prior art, the present application provides a connector assembly, which includes: a board-end connector, the board-end connector includes: a board-end first conductive terminal, a board-end second conductive terminal and a board-end insulating rubber core. Among them, the board-end first conductive terminal includes a board-end first terminal joint portion and a board-end first terminal docking portion; the board-end second conductive terminal includes a board-end second terminal joint portion and a board-end second terminal docking portion; and the board-end insulating rubber core includes a board-end insertion space and a board-end insertion abutting wall; the board-end insulating rubber core respectively joints the board-end first terminal joint portion and the board-end second terminal joint portion, so that the board-end first terminal docking portion and the board-end second terminal docking portion can respectively extend into the board-end insertion space; and a wire-end connector, the wire-end connector can be inserted into the board-end connector, the wire-end connector includes: a wire-end first conductive terminal, a wire-end second conductive terminal and a wire-end insulating rubber core. Among them, the wire-end first conductive terminal includes a wire-end first terminal joint portion and a wire-end first terminal docking portion; the wire-end second conductive terminal includes a wire-end second terminal joint portion and a wire-end second terminal docking portion; and the wire-end insulating rubber core includes a wire-end rubber core body, a wire-end rubber core insertion head and a wire-end rubber core support rib. The wire-end rubber core body respectively joints the wire-end first terminal joint portion and the wire-end second terminal joint portion, so that the wire-end first terminal docking portion and the wire-end second terminal docking portion respectively extend to the wire-end rubber core insertion head. The wire-end rubber core insertion head includes a wire-end insertion abutting wall, and the wire-end rubber core support rib extends from the wire-end rubber core body to the wire-end insertion abutting wall to provide structural support for the wire-end insertion abutting wall; wherein, when the wire-end connector is inserted into the board-end connector, the wire-end insertion abutting wall can abut against the board-end insertion abutting wall, and guide the wire-end rubber core insertion head into the board-end insertion space, so that the wire-end first terminal docking portion and the wire-end second terminal docking portion can respectively dock with the board-end first terminal docking portion and the board-end second terminal docking portion.
[0006] Preferably, in the connector assembly of the present application, the board-end insertion abutting wall includes a board-end abutting wall accommodating space. When the wire-end connector is inserted into the board-end connector, the wire-end rubber core support rib is accommodated in the board-end abutting wall accommodating space, and the wire-end rubber core support rib can abut against the board-end insertion abutting wall in the board-end abutting wall accommodating space to provide structural support for the board-end insertion abutting wall.
[0007] Preferably, in the connector assembly of the present application, the wire-end rubber core support rib includes a wire-end support rib guiding structure, and the board-end insertion abutting wall includes a board-end abutting wall guiding structure. When the wire-end connector is inserted into the board-end connector, the wire-end support rib guiding structure can cooperate with the board-end abutting wall guiding structure so that the wire-end rubber core support rib can be accommodated in the board-end abutting wall accommodation space.
[0008] Preferably, in the connector assembly of the present application, the board-end abutting wall guiding structure is a groove structure to provide anti-fooling for the insertion of the wire-end connector into the board-end connector, and the board-end abutting wall accommodation space is located in the board-end abutting wall guiding structure.
[0009] Preferably, in the connector assembly of the present application, the board-end insertion space includes: a board-end first insertion sub-space and a board-end second insertion sub-space; the board-end first terminal docking portion and the board-end second terminal docking portion are respectively located in the board-end first insertion sub-space and the board-end second insertion sub-space; the wire-end rubber core insertion head includes a wire-end insertion space, and the wire-end insertion space includes: a wire-end first insertion sub-space and a wire-end second insertion sub-space, and the wire-end first terminal docking portion and the wire-end second terminal docking portion are respectively located in the wire-end first insertion sub-space and the wire-end second insertion sub-space; when the wire-end connector is inserted into the board-end connector, the wire-end first insertion sub-space is communicated with the board-end first insertion sub-space to form a first insertion communication space, so that the wire-end first terminal docking portion can dock with the board-end first terminal docking portion in the first insertion communication space to form a first terminal docking circuit, and the wire-end second insertion sub-space is communicated with the board-end second insertion sub-space to form a second insertion communication space, so that the wire-end second terminal docking portion can dock with the board-end second terminal docking portion in the second insertion communication space to form a second terminal docking circuit, and the wire-end rubber core insertion head further includes a wire-end insertion partition wall, and the wire-end insertion partition wall is located between the wire-end first insertion sub-space and the wire-end second insertion sub-space, separating the first insertion communication space and the second insertion communication space to prevent the first terminal docking circuit and the second terminal docking circuit from being electrically short-circuited.
[0010] Preferably, in the connector assembly of the present application, the wire-end rubber core support rib is integrally connected to the wire-end insertion partition wall between the wire-end first conductive terminal and the wire-end second conductive terminal.
[0011] Preferably, in the connector assembly of the present application, the wire-end connector includes a wire-end connector plugging side and a wire-end connector non-plugging side. The wire-end connector plugs the board-end connector from the wire-end connector plugging side. The wire-end plugging abutment wall includes a wire-end plugging side sub-abutment wall and a wire-end non-plugging side sub-abutment wall. The wire-end plugging side sub-abutment wall and the wire-end non-plugging side sub-abutment wall are respectively located on the wire-end connector plugging side and the wire-end connector non-plugging side. The wire-end rubber core support rib extends to the wire-end non-plugging side sub-abutment wall and avoids the wire-end non-plugging side sub-abutment wall.
[0012] Preferably, in the connector assembly of the present application, the board-end first conductive terminal or the board-end second conductive terminal is a guillotine terminal, and the wire-end first conductive terminal or the wire-end second conductive terminal is a clamping terminal.
[0013] Preferably, in the connector assembly of the present application, the board-end first conductive terminal or the board-end second conductive terminal is a clamping terminal, and the wire-end first conductive terminal or the wire-end second conductive terminal is a guillotine terminal.
[0014] Compared with the prior art, the connector assembly of the present application includes a board-end connector and a wire-end connector. The board-end connector includes a board-end plugging abutment wall. The wire-end connector includes a wire-end plugging abutment wall and a wire-end rubber core support rib. Among them, the wire-end rubber core support rib can provide structural support for the wire-end plugging abutment wall, so that the wire-end plugging abutment wall can be thinned to reduce the physical size of the wire-end connector. When the wire-end connector plugs the board-end connector, the wire-end plugging abutment wall can abut against the board-end plugging abutment wall to guide the wire-end rubber core plug to plug the board-end connector, making it easy for the wire-end connector with reduced height to plug the board-end connector, and making it easy to implement the connector assembly with reduced height in an electronic device. Description of the Drawings
[0015] The drawings of the present application will be combined with the description of the following embodiments to make the features and other advantages of the present application understood more clearly.
[0016] Figure 1 It shows a three-dimensional schematic diagram of the first perspective of the connector assembly of the present application in an embodiment.
[0017] Figure 2 It shows a three-dimensional schematic diagram of the second perspective of the connector assembly of the present application in an embodiment.
[0018] Figure 3 It shows a cross-sectional schematic diagram of some components of the connector assembly of the present application.
[0019] Figure 4It shows a schematic cross-sectional view of some components of the connector assembly of the present application.
[0020] Figure 5 It shows a schematic cross-sectional view of some components of the connector assembly of the present application.
[0021] Figure 6 It shows a three-dimensional schematic view of the connector assembly of the present application from the first perspective in an embodiment.
[0022] Figure 7 It shows a three-dimensional schematic view of the connector assembly of the present application from the second perspective in an embodiment.
[0023] Figure 8 It shows a three-dimensional schematic view of the connector assembly of the present application in an embodiment.
[0024] Description of component numbers
[0025] 1 Connector assembly
[0026] 11 Board-end connector
[0027] 111 Board-end first conductive terminal
[0028] 1111 Board-end first terminal joint
[0029] 1112 Board-end first terminal docking part
[0030] 112 Board-end second conductive terminal
[0031] 1121 Board-end second terminal joint
[0032] 1122 Board-end second terminal docking part
[0033] 113 Board-end insulating rubber core
[0034] 1130 Board-end insertion space
[0035] 11301 Board-end first insertion sub-space
[0036] 11302 Board-end second insertion sub-space
[0037] 1131 Board-end insertion abutment wall
[0038] 11310 Board-end abutment wall accommodation space
[0039] 11311 Board-end abutment wall guiding structure
[0040] 12 Wire-end connector
[0041] 121 Wire-end first conductive terminal
[0042] First terminal joint of the wire end 1211
[0043] First terminal butt joint of the wire end 1212
[0044] Second conductive terminal of the wire end 122
[0045] Second terminal joint of the wire end 1221
[0046] Second terminal butt joint of the wire end 1222
[0047] Insulating rubber core of the wire end 123
[0048] Rubber core body of the wire end 1231
[0049] Plug connector of the wire end rubber core 1232
[0050] Plug-in space of the wire end 12320
[0051] First plug-in sub-space of the wire end 123201
[0052] Second plug-in sub-space of the wire end 123202
[0053] Plug-in abutment wall of the wire end 12321
[0054] Plug-in side sub-abutment wall of the wire end 123211
[0055] Non-plug-in side sub-abutment wall of the wire end 123212
[0056] Plug-in partition wall of the wire end 12322
[0057] Support rib of the wire end rubber core 1233
[0058] Guide structure of the support rib of the wire end 12331
[0059] First plug-in communication space S1
[0060] Second plug-in communication space S2
[0061] Plug-in side of the wire end connector L1
[0062] Non-plug-in side of the wire end connector L2 Specific implementation mode
[0063] The following content will be accompanied by drawings to illustrate the technical content of the present application through specific embodiments. People familiar with 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 in various ways 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 exemplary purposes and do not represent the actual situation of the implementation of the present application.
[0064] The present application provides a connector assembly, which includes a board-end connector and a line-end connector, and the line-end connector can be plugged into the board-end connector. The board-end connector includes a board-end insulating rubber core and a board-end conductive terminal, the board-end insulating rubber core includes a board-end plug-in abutment wall, the line-end connector includes a line-end insulating rubber core and a line-end conductive terminal, the line-end insulating rubber core includes a line-end rubber core plug-in connector and a line-end rubber core support rib, the line-end rubber core plug-in connector is used to plug into the board-end connector so that the line-end conductive terminal is butted against the board-end conductive terminal, the line-end rubber core plug-in connector includes a line-end plug-in abutment wall, and the line-end rubber core support rib extends to the line-end plug-in abutment wall to provide structural support for the line-end plug-in abutment wall. When the wire-end connector is plugged into the board-end connector, the wire-end plug-in abutment wall can abut against the board-end plug-in abutment wall to guide the wire-end rubber core plug connector to plug into the board-end connector, making it easier for the wire-end connector with a reduced height to plug into the board-end connector, thereby solving the technical problems of the prior art.
[0065] For the technical ideas of the connector assembly of this application, please refer to Figures 1 to 8 The following are examples of embodiments.
[0066] At Figures 1 to 8 In the illustrated embodiment, a connector assembly 1 is provided, and the connector assembly 1 comprises: a board-end connector 11 and a line-end connector 12. The line-end connector 12 can be plugged into the board-end connector 11.
[0067] In the above embodiments, the board - end connector 11 can be disposed on a circuit board to provide electrical signal transmission for the circuit board. The board - end connector 11 includes: a board - end first conductive terminal 111, a board - end second conductive terminal 112, and a board - end insulating rubber core 113. The board - end first conductive terminal 111 includes a board - end first terminal joint portion 1111 and a board - end first terminal docking portion 1112. The board - end second conductive terminal 112 includes a board - end second terminal joint portion 1121 and a board - end second terminal docking portion 1122. The board - end insulating rubber core 113 includes a board - end insertion space 1130 and a board - end insertion abutting wall 1131. The board - end insulating rubber core 113 respectively joins the board - end first terminal joint portion 1111 and the board - end second terminal joint portion 1121 to respectively provide positioning for the board - end first conductive terminal 111 and the board - end second conductive terminal 112, so that the board - end first terminal docking portion 1112 and the board - end second terminal docking portion 1122 can respectively extend into the board - end insertion space 1130.
[0068] As Figure 4 , Figure 6 and Figure 8 shown, the board - end insertion abutting wall 1131 includes a board - end abutting wall accommodating space 11310 and a board - end abutting wall guiding structure 11311. Optionally, the board - end abutting wall guiding structure 11311 can cooperate with the shape of the wire - end connector 12 to form a groove structure to provide anti - misinsertion for the wire - end connector 12 to insert into the board - end connector 11, thereby preventing the wire - end connector 12 from being reversely inserted into the board - end connector 11. Additionally, optionally, the board - end abutting wall accommodating space 11310 is located in the board - end abutting wall guiding structure 11311, so as to simplify the structure of the board - end insulating rubber core 113 and reduce the processing difficulty.
[0069] It should be noted that the board - end first conductive terminal 111 or the board - end second conductive terminal 112 can be selected as a guillotine terminal capable of transmitting electrical signals. However, not limited thereto, the board - end first conductive terminal 111 or the board - end second conductive terminal 112 can also be selected as a clamping terminal capable of transmitting electrical signals.
[0070] In addition, the board - end first conductive terminal 111 and the board - end second conductive terminal 112 can be selected as substantially different terminal structures, so that the board - end first conductive terminal 111 and the board - end second conductive terminal 112 can respectively adopt terminal structures with smaller physical dimensions, thereby achieving the purpose of reducing the physical size of the board - end connector 11 and meeting the usage requirements of thin and light electronic devices.
[0071] In the above embodiments, the wire-end connector 12 can be connected to a conductive wire to provide transmission of electrical signals for the conductive wire. The wire-end connector 12 includes: a wire-end first conductive terminal 121, a wire-end second conductive terminal 122, and a wire-end insulating rubber core 123. The wire-end first conductive terminal 121 includes a wire-end first terminal joint portion 1211 and a wire-end first terminal docking portion 1212. The wire-end second conductive terminal 122 includes a wire-end second terminal joint portion 1221 and a wire-end second terminal docking portion 1222. The wire-end insulating rubber core 123 includes a wire-end rubber core body 1231, a wire-end rubber core plug 1232, and a wire-end rubber core support rib 1233. The wire-end rubber core plug 1232 includes a wire-end plugging space 12320. The wire-end rubber core body 1231 respectively joins the wire-end first terminal joint portion 1211 and the wire-end second terminal joint portion 1221 to provide positioning for the wire-end first conductive terminal 121 and the wire-end second conductive terminal 122, so that the wire-end first terminal docking portion 1212 and the wire-end second terminal docking portion 1222 respectively extend into the wire-end plugging space 12320 of the wire-end rubber core plug 1232.
[0072] As Figure 4 and Figure 7 shown, the wire-end rubber core plug 1232 further includes a wire-end plugging abutting wall 12321. The wire-end rubber core support rib 1233 extends from the wire-end rubber core body 1231 to the wire-end plugging abutting wall 12321 to provide structural support for the wire-end plugging abutting wall 12321, so that the wire-end plugging abutting wall 12321 can be thinned, thereby achieving the purpose of reducing the physical size of the wire-end connector 12 and meeting the usage requirements of thin and light electronic devices.
[0073] It should be noted that the wire-end first conductive terminal 121 or the wire-end second conductive terminal 122 can be selected as a clamping terminal capable of transmitting electrical signals. However, this is not limited thereto. The wire-end first conductive terminal 121 or the wire-end second conductive terminal 122 can also be selected as a guillotine terminal capable of transmitting electrical signals.
[0074] In addition, the wire-end first conductive terminal 121 and the wire-end second conductive terminal 122 can be selected as substantially different terminal structures, so that the wire-end first conductive terminal 121 and the wire-end second conductive terminal 122 can respectively adopt terminal structures with smaller physical sizes, thereby achieving the purpose of reducing the physical size of the wire-end connector 12 and meeting the usage requirements of thin and light electronic devices.
[0075] It should be noted that when the wire - end connector 12 is plugged into the board - end connector 11, the wire - end plug - in abutting wall 12321 can abut against the board - end plug - in abutting wall 1131, guiding the wire - end rubber - core plug - in head 1232 into the board - end plug - in space 1130, so that the wire - end first - terminal docking part 1212 and the wire - end second - terminal docking part 1222 can respectively dock with the board - end first - terminal docking part 1112 and the board - end second - terminal docking part 1122. In this way, through the guidance of the wire - end plug - in abutting wall 12321 and the board - end plug - in abutting wall 1131, the wire - end connector 12 with a reduced height can be easily plugged into the board - end connector 11, making it easy to implement the connector assembly 1 in a thin and light electronic device.
[0076] In addition, as Figures 3 to 4 and Figure 7 shown, the wire - end rubber - core support rib 1233 includes a wire - end support - rib guiding structure 12331. When the wire - end connector 12 is plugged into the board - end connector 11, the wire - end support - rib guiding structure 12331 can cooperate with the board - end abutting - wall guiding structure 11311, enabling the wire - end rubber - core support rib 1233 to be guided and accommodated in the board - end abutting - wall accommodation space 11310, and allowing the wire - end rubber - core support rib 1233 to abut against the board - end plug - in abutting wall 1131 in the board - end abutting - wall accommodation space 11310 to provide structural support for the board - end plug - in abutting wall 1131. In this way, the board - end plug - in abutting wall 1131 can be made thinner, so as to achieve the purpose of reducing the physical size of the board - end connector 11 and meeting the usage requirements of thin and light electronic devices.
[0077] In Figure 6 the shown embodiment, the board - end plug - in space 1130 includes: a board - end first - plug - in sub - space 11301 and a board - end second - plug - in sub - space 11302. As Figure 4 and Figure 6 shown, the board - end first - terminal docking part 1112 and the board - end second - terminal docking part 1122 are respectively located in the board - end first - plug - in sub - space 11301 and the board - end second - plug - in sub - space 11302.
[0078] Correspondingly, the wire - end plug - in space 12320 includes: a wire - end first - plug - in sub - space 123201 and a wire - end second - plug - in sub - space 123202. As Figure 7 shown, the wire - end first - terminal docking part 1212 and the wire - end second - terminal docking part 1222 are respectively located in the wire - end first - plug - in sub - space 123201 and the wire - end second - plug - in sub - space 123202.
[0079] It should be noted that when the wire-end connector 12 is plugged into the board-end connector 11, the wire-end first plugging sub-space 123201 communicates with the board-end first plugging sub-space 11301 to form a first plugging communication space S1, so that the wire-end first terminal docking portion 1212 can dock with the board-end first terminal docking portion 1112 in the first plugging communication space S1 to form a first terminal docking circuit, and the wire-end second plugging sub-space 123202 communicates with the board-end second plugging sub-space 11302 to form a second plugging communication space S2, so that the wire-end second terminal docking portion 1222 can dock with the board-end second terminal docking portion 1122 in the second plugging communication space S2 to form a second terminal docking circuit.
[0080] In the above embodiment, as Figure 7 shown, the wire-end rubber core plug joint 1232 further includes a wire-end plugging partition wall 12322. The wire-end plugging partition wall 12322 is located between the wire-end first plugging sub-space 123201 and the wire-end second plugging sub-space 123202, and separates the first plugging communication space S1 from the second plugging communication space S2, so as to prevent the first terminal docking circuit from being electrically short-circuited with the second terminal docking circuit, making the electrical characteristics of the connector assembly 1 meet the expectations.
[0081] Optionally, as Figure 7 shown, the wire-end rubber core support rib 1233 is integrally connected to the wire-end plugging partition wall 12322 between the wire-end first conductive terminal 121 and the wire-end second conductive terminal 122. In this way, the wire-end rubber core support rib 1233 can provide structural support for the wire-end plugging partition wall 12322, so that the shape of the wire-end plugging partition wall 12322 is not easily changed and can maintain the separation between the wire-end first conductive terminal 121 and the wire-end second conductive terminal 122.
[0082] In Figure 4 and Figures 7 to 8 the embodiment shown, the wire-end connector 12 includes a wire-end connector plugging side L1 and a wire-end connector non-plugging side L2. The wire-end connector 12 is plugged into the board-end connector 11 from the wire-end connector plugging side L1, and the wire-end connector 12 is connected to the conductive wire from the wire-end connector non-plugging side L2.
[0083] Correspondingly, as Figure 4 and Figures 7 to 8As shown, the wire-end plug-in abutting wall 12321 includes a wire-end plug-in side sub-abutting wall 123211 and a wire-end non-plug-in side sub-abutting wall 123212. The wire-end plug-in side sub-abutting wall 123211 and the wire-end non-plug-in side sub-abutting wall 123212 are respectively located at the wire-end connector plug-in side L1 and the wire-end connector non-plug-in side L2. The wire-end rubber core support rib 1233 extends to the wire-end non-plug-in side sub-abutting wall 123212, and the wire-end rubber core support rib 1233 avoids the wire-end non-plug-in side sub-abutting wall 123212, enabling the wire-end non-plug-in side sub-abutting wall 123212 to be thinned, thereby achieving the purpose of reducing the physical size of the wire-end connector 12 and meeting the usage requirements of thin and light electronic devices.
[0084] It should be noted that the connector assembly of the present application can also omit some components, not limited to the above embodiments.
[0085] For example, the connector assembly of the present application can be selected to include only a board - end connector and a wire - end connector. The board - end connector includes a board - end first conductive terminal, a board - end second conductive terminal, and a board - end insulating rubber core. The board - end first conductive terminal includes a board - end first terminal engaging portion and a board - end first terminal docking portion. The board - end second conductive terminal includes a board - end second terminal engaging portion and a board - end second terminal docking portion. The board - end insulating rubber core includes a board - end plugging space and a board - end plugging abutting wall; the board - end insulating rubber core respectively engages the board - end first terminal engaging portion and the board - end second terminal engaging portion, so that the board - end first terminal docking portion and the board - end second terminal docking portion can respectively extend into the board - end plugging space. The wire - end connector can be plugged into the board - end connector. The wire - end connector includes a wire - end first conductive terminal, a wire - end second conductive terminal, and a wire - end insulating rubber core. The wire - end first conductive terminal includes a wire - end first terminal engaging portion and a wire - end first terminal docking portion. The wire - end second conductive terminal includes a wire - end second terminal engaging portion and a wire - end second terminal docking portion. The wire - end insulating rubber core includes a wire - end rubber core body, a wire - end rubber core plug - in head, and a wire - end rubber core support rib. The wire - end rubber core body respectively engages the wire - end first terminal engaging portion and the wire - end second terminal engaging portion, so that the wire - end first terminal docking portion and the wire - end second terminal docking portion respectively extend to the wire - end rubber core plug - in head. The wire - end rubber core plug - in head includes a wire - end plugging abutting wall. The wire - end rubber core support rib extends from the wire - end rubber core body to the wire - end plugging abutting wall to provide structural support for the wire - end plugging abutting wall. When the wire - end connector is plugged into the board - end connector, the wire - end plugging abutting wall can abut against the board - end plugging abutting wall, and guide the wire - end rubber core plug - in head into the board - end plugging space, so that the wire - end first terminal docking portion and the wire - end second terminal docking portion can respectively dock with the board - end first terminal docking portion and the board - end second terminal docking portion.
[0086] In summary, the connector assembly of the present application includes a board - end connector and a wire - end connector. The board - end connector includes a board - end plugging abutting wall. The wire - end connector includes a wire - end plugging abutting wall and a wire - end rubber core support rib. Among them, the wire - end rubber core support rib can provide structural support for the wire - end plugging abutting wall, so that the wire - end plugging abutting wall can be thinned to reduce the physical size of the wire - end connector. When the wire - end connector is plugged into the board - end connector, the wire - end plugging abutting wall can abut against the board - end plugging abutting wall to guide the wire - end rubber core plug - in head to plug into the board - end connector, and make it easy for the wire - end connector with reduced height to plug into the board - end connector, so that the connector assembly with reduced height can be easily implemented in electronic devices.
[0087] The above embodiments are only illustrative of the principles and effects of the present application and are not intended to limit the present application. Any person skilled in 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 shall be as set forth in the scope of the claims of the present application.
Claims
1. A connector assembly, characterized in that: The connector assembly comprises: A board-end connector, the board-end connector comprising: a first board-end conductive terminal, a second board-end conductive terminal and a board-end insulating rubber core, wherein: The board-end first conductive terminal comprises a board-end first terminal joint portion and a board-end first terminal butt joint portion; The board-end second conductive terminal comprises a board-end second terminal joint portion and a board-end second terminal butting portion; and The board end insulating rubber core comprises a board end plug-in space and a board end plug-in abutting wall; the board end insulating rubber core respectively engages the board end first terminal engaging portion and the board end second terminal engaging portion, so that the board end first terminal docking portion and the board end second terminal docking portion can respectively extend into the board end plug-in space; and A line-end connector, the line-end connector can be plugged into the board-end connector, the line-end connector comprises: a first line-end conductive terminal, a second line-end conductive terminal and a line-end insulating rubber core, wherein: The line end first conductive terminal comprises a line end first terminal joint portion and a line end first terminal butt joint portion; The line end second conductive terminal comprises a line end second terminal joint portion and a line end second terminal butting portion; and The wire end insulating rubber core comprises a wire end rubber core body, a wire end rubber core plug connector and a wire end rubber core support rib, the wire end rubber core body respectively engages the wire end first terminal engaging portion and the wire end second terminal engaging portion, so that the wire end first terminal docking portion and the wire end second terminal docking portion respectively extend to the wire end rubber core plug connector, the wire end rubber core plug connector comprises a wire end plug-in abutment wall, the wire end rubber core support rib extends from the wire end rubber core body to the wire end plug-in abutment wall to provide structural support for the wire end plug-in abutment wall; wherein, When the wire-end connector is plugged into the board-end connector, the wire-end plug-in abutment wall can abut against the board-end plug-in abutment wall, thereby guiding the wire-end rubber core plug connector into the board-end plug-in space, so that the wire-end first terminal docking portion and the wire-end second terminal docking portion can respectively dock with the board-end first terminal docking portion and the board-end second terminal docking portion.
2. The connector assembly according to claim 1, characterized in that: The board-end plug-in abutment wall includes a board-end abutment wall accommodating space, and the board-end connector is plugged into the wire-end connector. The wire-end rubber core support rib is accommodated in the board-end abutment wall accommodating space, and the wire-end rubber core support rib can abut the board-end plug-in abutment wall in the board-end abutment wall accommodating space to provide structural support for the board-end plug-in abutment wall.
3. The connector assembly according to claim 2, characterized in that: The wire end rubber core support rib includes a wire end support rib guide structure, and the board end plug-in abutment wall includes a board end abutment wall guide structure. When the wire end connector is plugged into the board end connector, the wire end support rib guide structure can be matched with the board end abutment wall guide structure, so that the wire end rubber core support rib can be accommodated in the board end abutment wall accommodation space.
4. The connector assembly according to claim 3, characterized in that: The board end abutting wall guiding structure is a groove structure to provide foolproofing for the line end connector to be plugged into the board end connector, and the board end abutting wall accommodating space is located in the board end abutting wall guiding structure.
5. The connector assembly according to claim 1, characterized in that: The board-end plug-in space includes: a first board-end plug-in sub-space and a second board-end plug-in sub-space; the first board-end terminal docking portion and the second board-end terminal docking portion are respectively located in the first board-end plug-in sub-space and the second board-end plug-in sub-space; the line-end rubber core plug connector includes a line-end plug-in space, and the line-end plug-in space includes: a first line-end plug-in sub-space and a second line-end plug-in sub-space, the first line-end terminal docking portion and the second line-end terminal docking portion are respectively located in the first line-end plug-in sub-space and the second line-end plug-in sub-space; when the line-end connector is plugged into the board-end connector, the first line-end plug-in sub-space is connected to the first board-end plug-in sub-space to form a first plug-in connection space, so that the line end The first terminal docking portion can dock with the first terminal docking portion of the board end in the first plug-in connecting space to form a first terminal docking circuit, and the second plug-in sub-space of the line end is connected with the second plug-in sub-space of the board end to form a second plug-in connecting space, so that the second terminal docking portion of the line end can dock with the second terminal docking portion of the board end in the second plug-in connecting space to form a second terminal docking circuit, and the line end rubber core plug connector also includes a line end plug-in partition wall, the line end plug-in partition wall is located between the first plug-in sub-space of the line end and the second plug-in sub-space of the line end, and separates the first plug-in connecting space from the second plug-in connecting space to avoid electrical short circuit between the first terminal docking circuit and the second terminal docking circuit.
6. The connector assembly according to claim 5, characterized in that: The wire end rubber core supporting rib is connected to the wire end plug-in partition wall between the first wire end conductive terminal and the second wire end conductive terminal to form a whole.
7. The connector assembly according to claim 1, characterized in that: The wire-end connector includes a wire-end connector plugging side and a wire-end connector non-plugging side, the wire-end connector is plugged into the board-end connector by the wire-end connector plugging side, the wire-end plugging abutment wall includes a wire-end plugging side sub-abutment wall and a wire-end non-plugging side sub-abutment wall, the wire-end plugging side sub-abutment wall and the wire-end non-plugging side sub-abutment wall are respectively located on the wire-end connector plugging side and the wire-end connector non-plugging side, the wire-end rubber core support rib extends to the wire-end non-plugging side sub-abutment wall, and the wire-end rubber core support rib avoids the wire-end non-plugging side sub-abutment wall.
8. The connector assembly according to claim 1, characterized in that: The first conductive terminal at the board end or the second conductive terminal at the board end is a guillotine terminal, and the first conductive terminal at the line end or the second conductive terminal at the line end is a clamping terminal.
9. The connector assembly according to claim 1, characterized in that: The first conductive terminal at the board end or the second conductive terminal at the board end is a clamping terminal, and the first conductive terminal at the line end or the second conductive terminal at the line end is a guillotine terminal.