Connector assembly and board end connector and board end conductive terminal thereof
By designing staggered board-end conductive terminal mating structures and overlapping structures, the problem of excessive space occupied by connector assemblies was solved, enabling the electronic devices to be made thinner and lighter.
Patent Information
- Application Number
- CN202520354785.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-04-26
- Filing Date
- 2025-03-03
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-03
AI Technical Summary
Existing connector assemblies take up too much space in electronic devices, making it difficult to meet the demand for thinner and lighter designs.
Design a board-end connector, including board-end conductive terminals and board-end insulating core. The conductive terminals have mating and overlapping structures, and the insulating core has mating ports and overlapping ports. The structures are staggered to reduce space occupation.
It effectively reduces the size of the connector assembly, avoids occupying too much internal space in electronic devices, and supports the development of thinner and lighter electronic devices.
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Figure CN223956872U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electronic devices, and more particularly to a connector assembly capable of effectively reducing the size, and a board end connector and a board end conductive terminal thereof. BACKGROUND
[0002] In modern electronic devices, a connector assembly is usually provided to match an electric board, which includes a mating conductive terminal and a board end conductive terminal. Generally, the board end conductive terminal can mate with the mating conductive terminal and can be connected to the electric board. In this way, the connector assembly can transmit electrical signals between the mating conductive terminal and the electric board.
[0003] However, with the development of technology, the lightness and thinness of electronic devices have become an irreversible trend. From smartphones to laptops, from wearable devices to smart home devices, various electronic devices are pursuing lighter and thinner shapes, so that the size of the connector assembly arranged inside must be reduced accordingly to avoid occupying too much internal space of the electronic device.
[0004] Therefore, how to provide a connector assembly with reduced size to enable electronic devices to continue to develop in the direction of lightness and thinness is a problem that needs to be solved by those skilled in the art. SUMMARY
[0005] In view of the shortcomings of the prior art, the present application provides a board end connector matched with an electric board and a mating conductive terminal, wherein the board end connector includes a board end conductive terminal including a board end conductive terminal body, a board end conductive terminal mating structure and a board end conductive terminal connecting structure, and a board end insulating core including a board end insulating core body, a board end insulating core mating port and a board end insulating core connecting port. One side of the board end insulating core body is a board end insulating core body operation side, and the board end insulating core mating port and the board end insulating core connecting port are respectively located on the board end insulating core body operation side. The board end insulating core assembles the board end conductive terminal body, so that the board end conductive terminal mating structure is located in the board end insulating core mating port to provide operation for mating the mating conductive terminal, and the board end conductive terminal connecting structure is located in the board end insulating core connecting port to provide operation for connecting the electric board.
[0006] Preferably, in the board end connector of the present application, the board end insulating core mating port includes a board end insulating core mating port mating passage, the board end insulating core mating port mating passage is located at the board end insulating core body operation side, and the board end insulating core mating port mating passage extends so that the mating conductive terminal can mate the board end conductive terminal mating structure through the board end insulating core mating port mating passage.
[0007] Preferably, in the board end connector of the present application, the board end conductive terminal mating structure includes a first board end conductive terminal clamping arm and a second board end conductive terminal clamping arm, the first board end conductive terminal clamping arm and the second board end conductive terminal clamping arm are located at opposite sides of the board end insulating core mating port mating passage to clamp and mate the mating conductive terminal through the board end insulating core mating port mating passage.
[0008] Preferably, in the board end connector of the present application, the board end insulating core body includes a board end insulating core operation space, the board end insulating core operation space is located at the board end insulating core body operation side, and the board end insulating core operation space is respectively communicated with the board end insulating core lapping port and the board end insulating core mating port, so that the board end insulating core operation space can provide operation of the board end conductive terminal lapping structure lapping the electric board, and the board end insulating core operation space can provide operation of the mating conductive terminal mating the board end conductive terminal mating structure.
[0009] Preferably, in the board end connector of the present application, the board end insulating core body, the board end insulating core mating port and the board end insulating core lapping port are respectively located in a board end insulating core body projection area, a board end insulating core mating port projection area and a board end insulating core lapping port projection area on the electric board, and the board end insulating core mating port projection area and the board end insulating core lapping port projection area are respectively located in the board end insulating core body projection area.
[0010] Preferably, in the board end connector of the present application, the board end insulating core body projection area is a rectangular projection area.
[0011] Preferably, in the board end connector of the present application, the other side of the board end insulating core body is a board end insulating core body insertion side, the board end insulating core body further comprises a board end insulating core body terminal assembly space, the board end conductive terminal body comprises a board end conductive terminal body insertion structure, wherein, in the board end insulating core assembly, the board end conductive terminal body can enter the board end insulating core body terminal assembly space, and the board end conductive terminal body insertion structure is inserted into the board end insulating core body insertion side of the board end insulating core body, wherein the board end insulating core body insertion side and the board end insulating core body operation side are two opposite sides of the board end insulating core body.
[0012] Preferably, in the board end connector of the present application, the board end insulating core body further comprises a board end insulating core body transverse channel and a board end insulating core body longitudinal barrier wall, the board end conductive terminal body can move transversely through the board end insulating core body transverse channel to enter the board end insulating core body terminal assembly space, and the board end insulating core body longitudinal barrier wall can stop the board end conductive terminal body from moving longitudinally away from the board end insulating core body terminal assembly space.
[0013] In addition, the present application also provides a board end conductive terminal matched with an electrically conductive board and a mating conductive terminal, the board end conductive terminal comprises: a board end conductive terminal body, one side of the board end conductive terminal body is a board end conductive terminal body operation side; a board end conductive terminal mating structure; and a board end conductive terminal lapping structure, wherein the board end conductive terminal mating structure and the board end conductive terminal lapping structure are respectively located at the board end conductive terminal body operation side, so that the board end conductive terminal mating structure can operate to mate the mating conductive terminal at the board end conductive terminal body operation side, and the board end conductive terminal lapping structure can operate to lap the electrically conductive board at the board end conductive terminal body operation side.
[0014] Preferably, in the board end conductive terminal of the present application, the board end conductive terminal body comprises a board end conductive terminal body bending segment, the board end conductive terminal body bending segment provides a bending to stagger the board end conductive terminal mating structure and the board end conductive terminal lapping structure, so that the board end conductive terminal mating structure can mate the mating conductive terminal without interfering with the board end conductive terminal lapping structure lapping the electrically conductive board, and the board end conductive terminal lapping structure can lap the electrically conductive board without interfering with the board end conductive terminal mating structure mating the mating conductive terminal.
[0015] Preferably, in the plate end conductive terminal of the present application, the plate end conductive terminal body includes a plate end conductive terminal body extension, the plate end conductive terminal body extension provides an extension such that the plate end conductive terminal docking structure is staggered with the plate end conductive terminal lapping structure, so that the plate end conductive terminal docking structure can dock the docking conductive terminal without interfering with the plate end conductive terminal lapping structure lapping the electric plate, and so that the plate end conductive terminal lapping structure can lap the electric plate without interfering with the plate end conductive terminal docking structure docking the docking conductive terminal.
[0016] Preferably, in the plate end conductive terminal of the present application, the plate end conductive terminal body includes a plate end conductive terminal body docking channel, the plate end conductive terminal body docking channel is located on the plate end conductive terminal body operation side, and the plate end conductive terminal body docking channel extends such that the docking conductive terminal can dock the plate end conductive terminal docking structure through the plate end conductive terminal body docking channel.
[0017] Preferably, in the plate end conductive terminal of the present application, the plate end conductive terminal docking structure includes a first plate end conductive terminal clamping arm and a second plate end conductive terminal clamping arm, the first plate end conductive terminal clamping arm and the second plate end conductive terminal clamping arm are located on opposite sides of the plate end conductive terminal body docking channel, so as to clamp and dock the docking conductive terminal through the plate end conductive terminal body docking channel.
[0018] In addition, the present application also provides a connector assembly, which is matched with an electric plate, and the connector assembly includes: a docking conductive terminal; and a plate end connector, the plate end connector includes a plate end conductive terminal, the plate end conductive terminal includes a plate end conductive terminal body, a plate end conductive terminal docking structure and a plate end conductive terminal lapping structure, one side of the plate end conductive terminal body is a plate end conductive terminal body operation side, and the plate end conductive terminal docking structure and the plate end conductive terminal lapping structure are respectively located on the plate end conductive terminal body operation side, so that the plate end conductive terminal docking structure can operate to dock the docking conductive terminal on the plate end conductive terminal body operation side, and so that the plate end conductive terminal lapping structure can operate to lap the electric plate on the plate end conductive terminal body operation side.
[0019] Preferably, in the connector assembly of the present application, a board end insulating core is further included, the board end insulating core includes a board end insulating core body, a board end insulating core mating port and a board end insulating core lapping port, the board end insulating core mating port and the board end insulating core lapping port are respectively located on the board end conducting terminal body operation side, the board end insulating core assembles the board end conducting terminal body, the board end conducting terminal body mating structure is located in the board end insulating core mating port to provide the operation of mating the mating conducting terminal, and the board end conducting terminal body lapping structure is located in the board end insulating core lapping port to provide the operation of lapping the electric board.
[0020] Preferably, in the connector assembly of the present application, the other side of the board end conducting terminal body is a board end conducting terminal body insertion side, the board end conducting terminal body includes a board end conducting terminal body insertion structure, wherein, in the board end insulating core assembling the board end conducting terminal body, the board end conducting terminal body insertion structure inserts the board end insulating core body on the board end conducting terminal body insertion side, wherein the board end conducting terminal body insertion side and the board end conducting terminal body operation side are two opposite sides of the board end conducting terminal body.
[0021] Preferably, in the connector assembly of the present application, the board end insulating core mating port is located in a board end insulating core mating position, and the board end insulating core lapping port is located in a board end insulating core lapping position, the board end insulating core mating position and the board end insulating core lapping position are staggered, so that the board end conducting terminal body mating structure can mate the mating conducting terminal without interfering with the board end conducting terminal body lapping structure lapping the electric board, and the board end conducting terminal body lapping structure can lap the electric board without interfering with the board end conducting terminal body mating structure mating the mating conducting terminal.
[0022] Preferably, in the connector assembly of the present application, the board end insulating core mating port is located in a board end insulating core mating height, and the board end insulating core lapping port is located in a board end insulating core lapping height, the board end insulating core mating height and the board end insulating core lapping height are different, so that the board end conducting terminal body mating structure can mate the mating conducting terminal without interfering with the board end conducting terminal body lapping structure lapping the electric board, and the board end conducting terminal body lapping structure can lap the electric board without interfering with the board end conducting terminal body mating structure mating the mating conducting terminal.
[0023] Preferably, in the connector assembly of the present application, the board end conductive terminal mating structure is located at a board end conductive terminal mating position, and the board end conductive terminal lapping structure is located at a board end conductive terminal lapping position, the board end conductive terminal mating position and the board end conductive terminal lapping position are staggered, so that the board end conductive terminal mating structure can mate with the mating conductive terminal without interfering with the lapping of the board end conductive terminal lapping structure to the electrically conductive board, and the board end conductive terminal lapping structure can lap the electrically conductive board without interfering with the mating of the board end conductive terminal mating structure to the mating conductive terminal.
[0024] Preferably, in the connector assembly of the present application, the board end conductive terminal mating structure is located at a board end conductive terminal mating height, and the board end conductive terminal lapping structure is located at a board end conductive terminal lapping height, the board end conductive terminal mating height and the board end conductive terminal lapping height are different, so that the board end conductive terminal mating structure can mate with the mating conductive terminal without interfering with the lapping of the board end conductive terminal lapping structure to the electrically conductive board, and the board end conductive terminal lapping structure can lap the electrically conductive board without interfering with the mating of the board end conductive terminal mating structure to the mating conductive terminal.
[0025] Compared with the prior art, the present application provides a connector assembly which can be matched with an electrically conductive board and includes a board end conductive terminal and a mating conductive terminal, the board end conductive terminal includes a mating structure and a lapping structure. The mating structure and the lapping structure are located on the same side, so that the mating structure and the lapping structure can respectively mate with the mating conductive terminal and lap the electrically conductive board on the same side, so that the board end conductive terminal, the mating conductive terminal and the electrically conductive board are electrically connected, thus effectively reducing the size of the connector assembly, thereby avoiding the connector assembly occupying too much internal space of the electronic device, so that the electronic device can continue to develop in the direction of light and thin. BRIEF DESCRIPTION OF DRAWINGS
[0026] The features and other advantages of the present application will be more clearly understood from the following description of the application, taken in conjunction with the accompanying drawings.
[0027] Figure 1 A perspective view showing a first view angle of the connector assembly of the present application in an embodiment.
[0028] Figure 2 A perspective view showing a second view angle of the connector assembly of the present application in an embodiment.
[0029] Figure 3 A perspective view showing a second view angle of the connector assembly of the present application in an embodiment.
[0030] Figure 4 The diagram shown is a perspective view of an embodiment of the board-end connector of this application.
[0031] Figure 5 The diagram shown is a top view of a connector assembly according to an embodiment of this application.
[0032] Figure 6 Displayed as Figure 5 The diagram shows a cross-sectional view of a portion of the connector assembly cut along line segment AA.
[0033] Figure 7 The diagram shown is a front view of an embodiment of the board-end connector of this application.
[0034] Figure 8 Displayed as Figure 7 The diagram shows a cross-sectional view of a portion of the connector assembly cut along line segment BB.
[0035] Figure 9 The diagram shown is a first-view perspective perspective of an embodiment of the board-end connector of this application.
[0036] Figure 10 The diagram shown is a second-view perspective perspective of an embodiment of the board-end connector of this application.
[0037] Figure 11 The diagram shown is a front view of an embodiment of the board-end connector of this application.
[0038] Figure 12 Displayed as Figure 11 The diagram shows a cross-sectional view of a portion of the connector assembly cut along line segment CC.
[0039] Figure 13 The diagram shown is a perspective view of an embodiment of the conductive terminals of this application.
[0040] Component designation explanation
[0041] 1. Board-end connector
[0042] 11. Board-end conductive terminals
[0043] 110 Board-end conductive terminal body
[0044] 1101 Bent section of the conductive terminal body at the board end
[0045] 1102 Extension section of the conductive terminal body at the board end
[0046] 1103 Board-end conductive terminal body plug-in structure
[0047] 1104 Board-end conductive terminal body mating channel
[0048] 111 butt joint structure of plate end conductive terminal
[0049] 1111 first plate end conductive terminal clamp arm
[0050] 1112 second plate end conductive terminal clamp arm
[0051] 112 butt joint structure of plate end conductive terminal
[0052] 12 plate end insulating core
[0053] 120 plate end insulating core body
[0054] 1201 plate end insulating core body operation space
[0055] 1202 plate end insulating core body terminal group standing space
[0056] 1203 plate end insulating core body transverse passage
[0057] 1204 plate end insulating core body longitudinal barrier wall
[0058] 121 plate end insulating core butt joint port
[0059] 1211 plate end insulating core butt joint port butt joint passage
[0060] 122 plate end insulating core lap joint port
[0061] 2 electric plate material
[0062] 3 butt joint conductive terminal
[0063] L11 plate end insulating core body operation side
[0064] L12 plate end insulating core body insertion side
[0065] L21 plate end conductive terminal body operation side
[0066] L22 plate end conductive terminal body insertion side
[0067] P11 plate end insulating core butt joint position
[0068] P12 plate end insulating core lap joint position
[0069] P21 plate end conductive terminal butt joint position
[0070] P22 plate end conductive terminal lap joint position
[0071] H11 plate end insulating core butt joint height
[0072] H12 plate end insulating core lap joint height
[0073] H21 plate end conductive terminal butt joint height
[0074] H22 plate end conductive terminal lap joint height
[0075] A connector assembly
[0076] A0 plate end insulating core body projection area
[0077] A1 plate end insulating core butt joint port projection area
[0078] A2 plate end insulating core lap joint port projection area DETAILED DESCRIPTION
[0079] The technical contents of the present application will be described below by specific embodiments in conjunction with the drawings, and those skilled in the art can easily understand other advantages and effects of the present application from the contents disclosed in the present specification. The present application can be implemented or applied by other different embodiments. Each detail in the present specification can be modified and changed in various ways without departing from the spirit of the present application based on different viewpoints and applications. 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.
[0080] In addition, it should be noted that, in order to make the disclosed content more concise and easy to understand, the same or similar function components in the following embodiments will be described using the same symbols, and the description of the same or equivalent features will be omitted.
[0081] The present application provides a connector assembly and a plate end connector and a plate end conductive terminal thereof, which can be matched with an electrically conductive plate and comprises a butt joint conductive terminal, the plate end conductive terminal comprises a butt joint structure and a lap joint structure, wherein the butt joint structure can butt joint the butt joint conductive terminal, and the lap joint structure can lap joint the electrically conductive plate, so that the connector assembly and the electrically conductive plate can transmit electrical signals in an electronic device. In the present application, the butt joint structure and the lap joint structure are located on the same side, so that the butt joint structure and the lap joint structure can respectively butt joint the butt joint conductive terminal and lap joint the electrically conductive plate on the same side. In this way, the size of the connector assembly can be effectively reduced, thereby avoiding the connector assembly occupying too much internal space of the electronic device, so that the electronic device can continue to develop in the direction of light and thin.
[0082] For the technical idea of the electric connector of the present application, please refer to the drawings of the present case Figures 1 to 13 and the following embodiment description:
[0083] In Figures 1 to 13In the shown embodiment, at least one connector assembly A is disclosed. The connector assembly A is configured to be used in conjunction with an electric board 2 to transmit electric signals in electronic devices. The connector assembly A includes a board end connector 1 and a mating conductive terminal 3. The board end connector 1 is capable of being used in conjunction with the mating conductive terminal 3 to transmit electric signals in electronic devices
[0084] In the above embodiment, the board end connector 1 includes a board end conductive terminal 11 and a board end insulating glue core 12. The board end insulating glue core 12 is capable of assembling the board end conductive terminal 11.
[0085] Regarding the board end conductive terminal 11, the board end conductive terminal 11 includes a board end conductive terminal body 110, a board end conductive terminal mating structure 111 and a board end conductive terminal assembling structure 112. The board end conductive terminal body 110 includes a board end conductive terminal body mating structure 1103.
[0086] Regarding the board end insulating glue core 12, the board end insulating glue core 12 includes a board end insulating glue core body 120, a board end insulating glue core mating port 121 and a board end insulating glue core assembling port 122. The board end insulating glue core body 120 includes a board end insulating glue core operating space 1201 and a board end insulating glue core body terminal assembling space 1202.
[0087] In the above embodiment, opposite sides of the board end insulating glue core body 120 are a board end insulating glue core body operating side L11 and a board end insulating glue core body mating side L12, respectively; accordingly, opposite sides of the board end conductive terminal body 110 are a board end conductive terminal body operating side L21 and a board end conductive terminal body mating side L22, respectively.
[0088] In the board end connector 1, the board end insulating glue core mating port 121 and the board end insulating glue core assembling port 122 are located at the board end insulating glue core body operating side L11 (or the board end conductive terminal body operating side L21), respectively; accordingly, the board end conductive terminal mating structure 111 and the board end conductive terminal assembling structure 112 are located at the board end insulating glue core body operating side L11 (or the board end conductive terminal body operating side L21), respectively.
[0089] It should be noted that the board end insulating rubber core 12 assembles the board end conductive terminal body 110, so that the board end conductive terminal butt joint structure 111 is located in the board end insulating rubber core butt joint port 121, and the board end conductive terminal butt joint structure 111 can be operated to butt joint the butt joint conductive terminal 3 on the board end insulating rubber core body operation side L11 (or the board end conductive terminal body operation side L21), so that the board end conductive terminal 11 is electrically connected to the butt joint conductive terminal 3, and the board end conductive terminal lap joint structure 112 is located in the board end insulating rubber core lap joint port 122, so that the board end conductive terminal lap joint structure 112 can be operated to lap joint the electric board 2 on the board end insulating rubber core body operation side L11 (or the board end conductive terminal body operation side L21), so that the board end conductive terminal 11 is electrically connected to the electric board 2.
[0090] In this way, the board end conductive terminal butt joint structure 111 and the board end conductive terminal lap joint structure 112 are located on the same side of the board end insulating rubber core body 120 (or the board end conductive terminal body 110), so that the board end conductive terminal butt joint structure 111 and the board end conductive terminal lap joint structure 112 can respectively butt joint the butt joint conductive terminal 3 and lap joint the electric board 2 on the same side, so that the board end conductive terminal 11, the butt joint conductive terminal 3 and the electric board 2 are electrically connected. In this way, the size of the connector assembly can be effectively reduced, thereby avoiding that the connector assembly occupies too much internal space of the electronic device, so that the electronic device can continue to develop in the direction of light and thin.
[0091] As shown in Figure 3 , Figures 9 to 10 and Figure 12 , in the board end insulating rubber core 12, the board end insulating rubber core operation space 1201 is located on the board end insulating rubber core body operation side L11, and the board end insulating rubber core operation space 1201 communicates with the board end insulating rubber core butt joint port 121, so that the board end insulating rubber core operation space 1201 can provide operation of the butt joint conductive terminal 3 to butt joint the board end conductive terminal butt joint structure 111 through the board end insulating rubber core butt joint port 121. In addition, the board end insulating rubber core operation space 1201 also communicates with the board end insulating rubber core lap joint port 122, so that the board end insulating rubber core operation space 1201 can operate the board end conductive terminal lap joint structure 112 to lap joint the electric board 2 through the board end insulating rubber core lap joint port 122.
[0092] As shown in Figures 3 to 4 and Figures 8 to 10As shown, in the board end insulating core 12, the board end insulating core butt port 121 is located at a board end insulating core butt position P11, and the board end insulating core lap port 122 is located at a board end insulating core lap position P12. Correspondingly, in the board end conductive terminal 11, the board end conductive terminal butt structure 111 is located at a board end conductive terminal butt position P21, and the board end conductive terminal lap structure 112 is located at a board end conductive terminal lap position P22.
[0093] In the above embodiment, the board end insulating core butt position P11 and the board end insulating core lap position P12 are staggered, so that the board end insulating core butt port 121 avoids the board end insulating core lap port 122. Correspondingly, the board end conductive terminal butt position P21 and the board end conductive terminal lap position P22 are staggered, so that the board end conductive terminal butt structure 111 avoids the board end conductive terminal lap structure 112. In this way, in addition to enabling the board end conductive terminal butt structure 111 to butt the butt conductive terminal 3 without interfering with the board end conductive terminal lap structure 112 lapping the electrically conductive board 2, the board end conductive terminal lap structure 112 can also lap the electrically conductive board 2 without interfering with the board end conductive terminal butt structure 111 butting the butt conductive terminal 3.
[0094] In addition, as shown in Figure 6 and Figure 8 , the board end insulating core butt port 121 is located at a board end insulating core butt height H11, and the board end insulating core lap port 122 is located at a board end insulating core lap height H12. Correspondingly, the board end conductive terminal butt structure 111 is located at a board end conductive terminal butt height H21, and the board end conductive terminal lap structure 112 is located at a board end conductive terminal lap height H22.
[0095] In the above embodiment, the board end insulating core butt height H11 and the board end insulating core lap height H12 are different, so that the board end insulating core butt port 121 avoids the board end insulating core lap port 122. Correspondingly, the board end conductive terminal butt height H21 and the board end conductive terminal lap height H22 are different, so that the board end conductive terminal butt structure 111 avoids the board end conductive terminal lap structure 112. In this way, in addition to enabling the board end conductive terminal butt structure 111 to butt the butt conductive terminal 3 without interfering with the board end conductive terminal lap structure 112 lapping the electrically conductive board 2, the board end conductive terminal lap structure 112 can also lap the electrically conductive board 2 without interfering with the board end conductive terminal butt structure 111 butting the butt conductive terminal 3.
[0096] InFigures 8 to 10 and Figure 12 In the illustrated embodiment, the plate-end conductive terminal body 110 includes a plate-end conductive terminal body bending section 1101. The plate-end conductive terminal body bending section 1101 provides a bend, causing the plate-end conductive terminal docking structure 111 to be offset from the plate-end conductive terminal overlapping structure 112, so that the plate-end conductive terminal docking structure 111 avoids the plate-end conductive terminal overlapping structure 112. This allows the plate-end conductive terminal docking structure 111 to dock with the docking conductive terminal 3 without interfering with the plate-end conductive terminal overlapping structure 112 overlapping the electrical plate 2, and allows the plate-end conductive terminal overlapping structure 112 to overlap the electrical plate 2 without interfering with the plate-end conductive terminal docking structure 111 docking with the docking conductive terminal 3.
[0097] At Figures 8 to 10 and Figure 12 In the illustrated embodiment, the plate-end conductive terminal body 110 includes a plate-end conductive terminal body extension 1102. The plate-end conductive terminal body extension 1102 extends to offset the plate-end conductive terminal docking structure 111 from the plate-end conductive terminal overlapping structure 112. This allows the plate-end conductive terminal docking structure 111 to dock with the docking conductive terminal 3 without interfering with the plate-end conductive terminal overlapping structure 112 overlapping the electrical plate 2, and allows the plate-end conductive terminal overlapping structure 112 to overlap the electrical plate 2 without interfering with the plate-end conductive terminal docking structure 111 docking with the docking conductive terminal 3.
[0098] At Figures 9 to 10 In the illustrated embodiment, the plate-end insulating core mating port 121 includes a plate-end insulating core mating port mating channel 1211, and correspondingly, the plate-end conductive terminal body 110 includes a plate-end conductive terminal body mating channel 1104. Additionally, the plate-end conductive terminal mating structure 111 includes a first plate-end conductive terminal clamping arm 1111 and a second plate-end conductive terminal clamping arm 1112.
[0099] It should be noted that in the above embodiment, the board end insulating rubber core docking port docking passage 1211 is located on the board end insulating rubber core body operation side L11, and the board end insulating rubber core docking port docking passage 1211 extends so that the docking conductive terminal 3 can dock the board end conductive terminal docking structure 111 through the board end insulating rubber core docking port docking passage 1211, so that even if the size of the connector assembly A (or the board end connector 1) is reduced, the board end insulating rubber core docking port docking passage 1211 can allow the docking conductive terminal 3 to dock the board end conductive terminal docking structure 111 along a predetermined path; accordingly, the board end conductive terminal body docking passage 1104 is located on the board end conductive terminal body operation side L21, and the board end conductive terminal body docking passage 1104 extends so that the docking conductive terminal 3 can dock the board end conductive terminal docking structure 111 through the board end conductive terminal body docking passage 1104, so that even if the size of the connector assembly A (or the board end connector 1) is reduced, the board end conductive terminal body docking passage 1104 can allow the docking conductive terminal 3 to dock the board end conductive terminal docking structure 111 along a predetermined path.
[0100] In the above embodiment, the first board end conductive terminal clamping arm 1111 and the second board end conductive terminal clamping arm 1112 are located on opposite sides of the board end insulating rubber core docking port docking passage 1211 to clamp and dock the docking conductive terminal 3 through the board end insulating rubber core docking port docking passage 1211, so that the docking relationship between the board end conductive terminal docking structure 111 and the docking conductive terminal 3 can be maintained, thereby improving the reliability of the board end conductive terminal docking structure 111 and the docking conductive terminal 3 for electrical signal transmission; accordingly, the first board end conductive terminal clamping arm 1111 and the second board end conductive terminal clamping arm 1112 are located on opposite sides of the board end conductive terminal body docking passage 1104 to clamp and dock the docking conductive terminal 3 through the board end conductive terminal body docking passage 1104, so that the docking relationship between the board end conductive terminal docking structure 111 and the docking conductive terminal 3 can be maintained, thereby improving the reliability of the board end conductive terminal docking structure 111 and the docking conductive terminal 3 for electrical signal transmission.
[0101] It should be noted that, in the above embodiments, the projections of the plate-end insulating core body 120, the plate-end insulating core mating port 121, and the plate-end insulating core overlapping port 122 on the electrical board 2 are respectively located in a plate-end insulating core body projection area A0, a plate-end insulating core mating port projection area A1, and a plate-end insulating core overlapping port projection area A2. The plate-end insulating core mating port projection area A1 and the plate-end insulating core overlapping port projection area A2 are respectively located within the plate-end insulating core body projection area A0, that is, the... The projection areas of the board-end insulating core mating port 121 and the board-end insulating core overlapping port 122 on the electrical substrate 2 are located within the projection area of the board-end insulating core body 120 on the electrical substrate 2. Therefore, the board-end insulating core mating port 121 and the board-end insulating core overlapping port 122 do not need to occupy an area outside the projection area A0 of the board-end insulating core body on the electrical substrate 2. This avoids the connector assembly A occupying too much internal space in the electronic device, allowing the electronic device to continue its trend towards thinner and lighter designs. Figure 4 In the embodiment shown, the projection area A0 of the board end insulating core body is a rectangular projection area. In this way, the board end insulating core body 120 can be arranged in a rectangular area on the electrical board 2 to maintain the flexibility of the circuit layout of the electrical board 2.
[0102] In addition, when the plate end insulating core 12 assembles the plate end conductive terminal body 110, the plate end conductive terminal body insertion structure 1103 can enter the plate end insulating core body terminal assembly space 1202, and the plate end insulating core body 120 is inserted into the plate end conductive terminal body insertion side L22, so as to position the plate end conductive terminal body 110 through the plate end insulating core body 120.
[0103] At Figure 10 In the illustrated embodiment, the plate-end insulating core body 120 includes a plate-end insulating core body transverse channel 1203 and a plate-end insulating core body longitudinal baffle 1204. The plate-end conductive terminal body 110 can move laterally through the plate-end insulating core body transverse channel 1203 to enter the plate-end insulating core body terminal assembly space 1202; correspondingly, the plate-end insulating core body longitudinal baffle 1204 can prevent the plate-end conductive terminal body 110 from moving longitudinally away from the plate-end insulating core body terminal assembly space 1202.
[0104] It should be noted that, however, the components of the above-mentioned connector assembly and its board-end connector and board-end conductive terminal can be omitted or other components can be added depending on the actual use, and are not limited to the above.
[0105] For example, the connector assembly can selectively include a board end conductive terminal and a mating conductive terminal. The board end conductive terminal includes a board end conductive terminal body, a board end conductive terminal mating structure, and a board end conductive terminal lapping structure. One side of the board end conductive terminal body is a board end conductive terminal body operation side. The board end conductive terminal mating structure and the board end conductive terminal lapping structure are respectively located on the board end conductive terminal body operation side. The board end conductive terminal mating structure is capable of mating the mating conductive terminal on the board end conductive terminal body operation side. The board end conductive terminal lapping structure is capable of lapping the electric board on the board end conductive terminal body operation side.
[0106] In addition, the connector assembly can selectively include a board end conductive terminal and a board end insulating core. The board end conductive terminal includes a board end conductive terminal body, a board end conductive terminal mating structure, and a board end conductive terminal lapping structure. The board end insulating core includes a board end insulating core body, a board end insulating core mating port, and a board end insulating core lapping port. One side of the board end insulating core body is a board end insulating core body operation side. The board end insulating core mating port and the board end insulating core lapping port are respectively located on the board end insulating core body operation side. The board end insulating core is assembled with the board end conductive terminal body. The board end conductive terminal mating structure is located in the board end insulating core mating port to provide the board end conductive terminal body operation side for mating the mating conductive terminal. The board end conductive terminal lapping structure is located in the board end insulating core lapping port to provide the board end conductive terminal body operation side for lapping the electric board.
[0107] In addition, the board end conductive terminal can selectively include a board end conductive terminal body, a board end conductive terminal mating structure, and a board end conductive terminal lapping structure. One side of the board end conductive terminal body is a board end conductive terminal body operation side. The board end conductive terminal mating structure and the board end conductive terminal lapping structure are respectively located on the board end conductive terminal body operation side. The board end conductive terminal mating structure is capable of mating the mating conductive terminal on the board end conductive terminal body operation side. The board end conductive terminal lapping structure is capable of lapping the electric board on the board end conductive terminal body operation side.
[0108] In summary, the present application provides a connector assembly which can be matched with an electric board and includes a board end conductive terminal and a mating conductive terminal. The board end conductive terminal includes a mating structure and a lapping structure. The mating structure and the lapping structure are located on the same side. The mating structure and the lapping structure can respectively mate the mating conductive terminal and lap the electric board on the same side. The board end conductive terminal, the mating conductive terminal, and the electric board are electrically connected. Thus, the size of the connector assembly can be effectively reduced. The connector assembly does not occupy too much internal space of an electronic device. The electronic device can continue to develop in the direction of lightness and thinness.
[0109] The above examples 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 the art can modify and change the above examples without departing from the spirit and scope of the present application. Therefore, the scope of protection of the present application should be as listed in the claims of the present application.
Claims
1. A board-to-board connector characterized by comprising: The board end connector is matched with an electric board and a mating conductive terminal, wherein the board end connector comprises: a board end conductive terminal, the board end conductive terminal comprises a board end conductive terminal body, a board end conductive terminal mating structure and a board end conductive terminal lapping structure; and a board end insulating core, the board end insulating core comprises a board end insulating core body, a board end insulating core mating port and a board end insulating core lapping port, one side of the board end insulating core body is a board end insulating core body operation side, and the board end insulating core mating port and the board end insulating core lapping port are respectively located on the board end insulating core body operation side, the board end insulating core assembles the board end conductive terminal body, so that the board end conductive terminal mating structure is located in the board end insulating core mating port to provide operation for mating the mating conductive terminal, and so that the board end conductive terminal lapping structure is located in the board end insulating core lapping port to provide operation for lapping the electric board.
2. The board-to-board connector according to claim 1, wherein The board end insulating core mating port comprises a board end insulating core mating port mating channel, the board end insulating core mating port mating channel is located on the board end insulating core body operation side, and the board end insulating core mating port mating channel extends, so that the mating conductive terminal can mate the board end conductive terminal mating structure through the board end insulating core mating port mating channel.
3. The board-to-board connector according to claim 2, wherein The board end conductive terminal mating structure comprises a first board end conductive terminal clamping arm and a second board end conductive terminal clamping arm, the first board end conductive terminal clamping arm and the second board end conductive terminal clamping arm are located on opposite sides of the board end insulating core mating port mating channel to clamp and mate the mating conductive terminal through the board end insulating core mating port mating channel.
4. The board-to-board connector according to claim 1, wherein The board end insulating core body comprises a board end insulating core operation space, the board end insulating core operation space is located on the board end insulating core body operation side, and the board end insulating core operation space is respectively communicated with the board end insulating core lapping port and the board end insulating core mating port, so that the board end insulating core operation space can provide operation for the board end conductive terminal lapping structure lapping the electric board, and so that the board end insulating core operation space can provide operation for the mating conductive terminal mating the board end conductive terminal mating structure.
5. The board-to-board connector according to claim 1, wherein The projections of the board end insulating core body, the board end insulating core mating port and the board end insulating core lapping port on the electric board are respectively located in a board end insulating core body projection area, a board end insulating core mating port projection area and a board end insulating core lapping port projection area, and the board end insulating core mating port projection area and the board end insulating core lapping port projection area are respectively located in the board end insulating core body projection area.
6. The board-to-board connector according to claim 5, wherein The board end insulating core body projection area is a rectangular projection area.
7. The board-to-board connector according to claim 1, wherein The other side of the board end insulating rubber core body is a board end insulating rubber core body insertion side, the board end insulating rubber core body further comprises a board end insulating rubber core body terminal assembly space, the board end conductive terminal body comprises a board end conductive terminal body insertion structure, wherein, in the board end insulating rubber core assembly, the board end conductive terminal body can enter the board end insulating rubber core body terminal assembly space, and the board end conductive terminal body insertion structure is inserted into the board end insulating rubber core body insertion side of the board end insulating rubber core body, wherein, the board end insulating rubber core body insertion side and the board end insulating rubber core body operation side are opposite sides of the board end insulating rubber core body.
8. The board-to-board connector according to claim 7, wherein The board end insulating rubber core body further comprises a board end insulating rubber core body transverse channel and a board end insulating rubber core body longitudinal barrier wall, the board end conductive terminal body can move transversely through the board end insulating rubber core body transverse channel to enter the board end insulating rubber core body terminal assembly space, and the board end insulating rubber core body longitudinal barrier wall can stop the board end conductive terminal body from moving longitudinally away from the board end insulating rubber core body terminal assembly space.
9. A plate end electrically conductive terminal characterized by, The board end conductive terminal is matched with an electrically conductive plate and a mating conductive terminal, the board end conductive terminal comprises: A board end conductive terminal body, one side of the board end conductive terminal body is a board end conductive terminal body operation side; A board end conductive terminal mating structure; and A board end conductive terminal lapping structure, wherein the board end conductive terminal mating structure and the board end conductive terminal lapping structure are respectively located on the board end conductive terminal body operation side, so that the board end conductive terminal mating structure can operate to mate the mating conductive terminal on the board end conductive terminal body operation side, and the board end conductive terminal lapping structure can operate to lap the electrically conductive plate on the board end conductive terminal body operation side.
10. The plate end electrically conductive terminal of claim 9, wherein, The board end conductive terminal body comprises a board end conductive terminal body bending segment, the board end conductive terminal body bending segment provides bending, so that the board end conductive terminal mating structure and the board end conductive terminal lapping structure are staggered, so that the board end conductive terminal mating structure can mate the mating conductive terminal without interfering with the board end conductive terminal lapping structure lapping the electrically conductive plate, and the board end conductive terminal lapping structure can lap the electrically conductive plate without interfering with the board end conductive terminal mating structure mating the mating conductive terminal.
11. The plate end electrically conductive terminal of claim 10, wherein, The board end conductive terminal body comprises a board end conductive terminal body extension segment, the board end conductive terminal body extension segment provides extension, so that the board end conductive terminal mating structure and the board end conductive terminal lapping structure are staggered, so that the board end conductive terminal mating structure can mate the mating conductive terminal without interfering with the board end conductive terminal lapping structure lapping the electrically conductive plate, and the board end conductive terminal lapping structure can lap the electrically conductive plate without interfering with the board end conductive terminal mating structure mating the mating conductive terminal.
12. The plate end electrically conductive terminal of claim 9, wherein, The board end conductive terminal body includes a board end conductive terminal body mating channel, the board end conductive terminal body mating channel is located at the board end conductive terminal body operation side, and the board end conductive terminal body mating channel extends so that the mating conductive terminal can be mated to the board end conductive terminal mating structure through the board end conductive terminal body mating channel.
13. The plate end electrically conductive terminal of claim 12, wherein, The board end conductive terminal mating structure includes a first board end conductive terminal clamping arm and a second board end conductive terminal clamping arm, the first board end conductive terminal clamping arm and the second board end conductive terminal clamping arm are located on opposite sides of the board end conductive terminal body mating channel to clamp and mate the mating conductive terminal through the board end conductive terminal body mating channel.
14. A connector assembly characterized by, The connector assembly is matched with an electric board, and the connector assembly includes: a mating conductive terminal; and a board end connector, the board end connector includes a board end conductive terminal, the board end conductive terminal includes a board end conductive terminal body, a board end conductive terminal mating structure and a board end conductive terminal lapping structure, one side of the board end conductive terminal body is a board end conductive terminal body operation side, and the board end conductive terminal mating structure and the board end conductive terminal lapping structure are respectively located at the board end conductive terminal body operation side, so that the board end conductive terminal mating structure can be operated to mate the mating conductive terminal at the board end conductive terminal body operation side, and the board end conductive terminal lapping structure can be operated to lap the electric board at the board end conductive terminal body operation side.
15. The connector assembly of claim 14, wherein, Further including a board end insulating glue core, the board end insulating glue core includes a board end insulating glue core body, a board end insulating glue core mating port and a board end insulating glue core lapping port, the board end insulating glue core mating port and the board end insulating glue core lapping port are respectively located at the board end conductive terminal body operation side, the board end insulating glue core assembles the board end conductive terminal body, so that the board end conductive terminal mating structure is located at the board end insulating glue core mating port to provide operation to mate the mating conductive terminal, and the board end conductive terminal lapping structure is located at the board end insulating glue core lapping port to provide operation to lap the electric board.
16. The connector assembly of claim 15, wherein, The other side of the board end conductive terminal body is a board end conductive terminal body plugging side, the board end conductive terminal body includes a board end conductive terminal body plugging structure, wherein, when the board end insulating glue core assembles the board end conductive terminal body, the board end conductive terminal body plugging structure plugs the board end insulating glue core body at the board end conductive terminal body plugging side, wherein the board end conductive terminal body plugging side and the board end conductive terminal body operation side are opposite sides of the board end conductive terminal body.
17. The connector assembly of claim 15, wherein, The board end insulation core butt port is located at a board end insulation core butt position, and the board end insulation core lap port is located at a board end insulation core lap position. The board end insulation core butt position and the board end insulation core lap position are staggered, so that the board end conductive terminal butt structure can butt the butt conductive terminal without interfering with the board end conductive terminal lap structure lapping the electrically conductive board, and the board end conductive terminal lap structure can lap the electrically conductive board without interfering with the board end conductive terminal butt structure butting the butt conductive terminal.
18. The connector assembly of claim 15, wherein, The board end insulation core butt port is located at a board end insulation core butt height, and the board end insulation core lap port is located at a board end insulation core lap height. The board end insulation core butt height and the board end insulation core lap height are different, so that the board end conductive terminal butt structure can butt the butt conductive terminal without interfering with the board end conductive terminal lap structure lapping the electrically conductive board, and the board end conductive terminal lap structure can lap the electrically conductive board without interfering with the board end conductive terminal butt structure butting the butt conductive terminal.
19. The connector assembly of claim 14, wherein, The board end conductive terminal butt structure is located at a board end conductive terminal butt position, and the board end conductive terminal lap structure is located at a board end conductive terminal lap position. The board end conductive terminal butt position and the board end conductive terminal lap position are staggered, so that the board end conductive terminal butt structure can butt the butt conductive terminal without interfering with the board end conductive terminal lap structure lapping the electrically conductive board, and the board end conductive terminal lap structure can lap the electrically conductive board without interfering with the board end conductive terminal butt structure butting the butt conductive terminal.
20. The connector assembly of claim 14, wherein, The board end conductive terminal butt structure is located at a board end conductive terminal butt height, and the board end conductive terminal lap structure is located at a board end conductive terminal lap height. The board end conductive terminal butt height and the board end conductive terminal lap height are different, so that the board end conductive terminal butt structure can butt the butt conductive terminal without interfering with the board end conductive terminal lap structure lapping the electrically conductive board, and the board end conductive terminal lap structure can lap the electrically conductive board without interfering with the board end conductive terminal butt structure butting the butt conductive terminal.