Connector assembly and its board connector and wire connector

CN224610227UActive Publication Date: 2026-08-07TARNG YU ENTERPRISE +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-11
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]然,随着电子产品朝着薄型化的方向来发展,导致电子产品内部空间有限,使得连接器总成的整体尺寸被不断地要求微小化,而让线端连接器与板端连接器的尺寸也需要微小化

Benefits of technology

[0020]相较于先前技术,本申请提供可微小化的一种连接器总成及其板端连接器与线端连接器,所述线端连接器可对接所述板端连接器,所述板端连接器包括一板端绝缘胶芯与一板端滑盖,其中,所述板端绝缘胶芯包括一板端胶芯对接空间,所述线端连接器可进入所述板端胶芯对接空间而对接所述板端连接器,而所述板端滑盖可阻止所述线端连接器离开所述板端胶芯对接空间,如此,可以有效避免微小化的连接器总成在电子产品上使用受到外力冲击时线端连接器轻易脱离所对接的板端连接器,使连接器总成的信号传输效果符合预期。

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Abstract

The application provides a connector assembly, a board connector and a wire connector. The wire connector can be connected to the board connector. The board connector includes a board cover. The board cover can prevent the wire connector from being separated from the board connector. Thus, the wire connector can not be easily separated from the board connector when the connector assembly is impacted by an external force.
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Description

Technical Field

[0001] This application relates to the field of electronic device technology, and in particular to a miniaturizable connector assembly and its board-end connector and wire-end connector. Background Technology

[0002] Note that connector assemblies are frequently used in electronic products to transmit electrical or power signals. Generally, a connector assembly includes wire-end connectors and board-end connectors. The wire-end connector can mate with the board-end connector, and the friction generated by the contact between the wire-end connector and the board-end connector prevents it from detaching from the board-end connector.

[0003] However, as electronic products become increasingly thinner, the limited internal space necessitates a continuous miniaturization of the overall size of connector assemblies, requiring both wire-end connectors and board-end connectors to be reduced in size. This often results in insufficient friction between the wire-end connector and the board-end connector due to insufficient contact area. Consequently, when subjected to external impacts, the wire-end connector can easily detach from the board-end connector, affecting the normal operation of the electronic product or even causing damage.

[0004] In view of this, how to solve the problem of wire-end connectors easily detaching from the board-end connectors when miniaturized connector assemblies are subjected to external impacts in electronic products is an urgent issue for people in the relevant technical field. Utility Model Content

[0005] In view of the shortcomings of the prior art, this application provides a board-end connector that can be used with a single-line connector. The board-end connector includes: a board-end conductive terminal, the board-end conductive terminal including a board-end terminal mating structure; and a board-end insulating core, the board-end insulating core including a board-end core mating guide structure, a board-end core mating channel, a board-end core mating space, a board-end core sliding groove, and a board-end core open mating channel retainer. The board-end insulating core can engage with the board-end conductive terminal, such that the board-end terminal mating structure is located within the board-end insulating core. The core docking space; the two ends of the core sliding groove are respectively an open docking channel end and a closed docking channel end; the open docking channel retainer wall of the core sliding groove is adjacent to the open docking channel end of the core sliding groove; and the core docking channel extends to the core docking space; and a core sliding cover, the core sliding cover including a core sliding cover body and a core sliding cover sliding guide structure, wherein the core sliding guide structure can enter the core sliding groove, so that the core sliding guide structure can be guided by the core sliding groove. Guided by the groove, the cover slides to either the open or closed docking channel end of the board end rubber core groove, allowing the board end sliding cover to slide relative to the board end insulating rubber core to either an open or closed docking channel position. When the board end sliding cover slides to the open docking channel position, it leaves the board end rubber core docking channel to open it, enabling the board end rubber core docking guide structure to guide the wire connector through the board end rubber core docking channel into the board end. The core mating space is used to mate with the board end terminal mating structure, and the board end sliding cover sliding guide structure can abut against the board end core open mating channel barrier at the board end core slide groove open mating channel end, so as to prevent the board end sliding cover sliding guide structure from leaving the board end core slide groove through the board end core open mating channel barrier; and when the board end sliding cover slides to the board end sliding cover closed mating channel position, the board end sliding cover enters the board end core mating channel, thereby preventing the wire end connector from entering and exiting the board end core mating space through the board end core mating channel.

[0006] Preferably, in the board-end connector of this application, the board-end insulating core further includes a board-end core closing docking channel baffle. The board-end core closing docking channel baffle is adjacent to the board-end core sliding groove closing docking channel end. When the board-end sliding cover slides to the board-end sliding cover closing docking channel position, the board-end sliding cover can abut against the board-end core closing docking channel baffle at the board-end core sliding groove closing docking channel end, so as to prevent the board-end sliding cover sliding guide structure from leaving the board-end core sliding groove through the board-end core closing docking channel baffle.

[0007] Preferably, in the board end connector of this application, the board end slide cover further includes a board end slide cover sliding guide spring arm, the board end slide cover sliding guide spring arm is connected to the board end slide cover sliding guide structure, wherein the board end slide cover sliding guide spring arm can elastically deform to allow the board end slide cover sliding guide structure to enter the board end rubber core slide groove.

[0008] Preferably, in the board-end connector of this application, the board-end insulating core further includes a board-end core interference guiding structure and a board-end core mating interference structure. The board-end core interference guiding structure and the board-end core mating interference structure are located in the board-end core mating channel. The wire-end connector mates with the board-end terminal mating structure. The board-end core interference guiding structure guides the board-end core mating interference structure to interfere with the wire-end connector, and the interference causes the wire-end connector to leave the board-end core mating space via the board-end core mating channel.

[0009] Preferably, in the board-end connector of this application, the board-end core interference guiding structure and the board-end core mating interference structure can be connected to form a hook-shaped structure.

[0010] Preferably, in the board-end connector of this application, the board-end insulating core further includes a board-end core open docking channel positioning structure, and the board-end sliding cover further includes a board-end sliding cover positioning structure. The board-end sliding cover positioning structure can be matched with the board-end core open docking channel positioning structure to position the board-end sliding cover body at the position of the board-end sliding cover open docking channel.

[0011] Preferably, in the board-end connector of this application, the board-end insulating core further includes a board-end core closing docking channel positioning structure. The board-end sliding cover positioning structure can be matched with the board-end core closing docking channel positioning structure to position the board-end sliding cover body at the board-end sliding cover closing docking channel position.

[0012] Preferably, in the board-end connector of this application, when the board-end sliding cover body slides to the position where the board-end sliding cover closes the docking channel, the board-end sliding cover positioning structure can abut against the wire-end connector, thereby preventing the wire-end connector from leaving the board-end core docking space via the board-end core docking channel.

[0013] Additionally, this application provides a wire-end connector, which can be used with a conductive wire and a board-end connector as described in claim 1. The wire-end connector includes: a wire-end insulating core, with the two sides of the wire-end insulating core being a wire-end core board end side and a wire-end core sliding cover side, respectively; and the wire-end insulating core includes a wire-end core mating guide structure, a wire-end core mating channel, a wire-end core mating space, a wire-end core assembly structure, a wire-end core wiring space, and a wire-end core sliding guide structure, wherein the wire-end core wiring space, the wire-end core mating guide structure, the wire-end core mating channel, the wire-end core mating space, and the wire-end core sliding guide structure are located on the wire-end core board end side, and the wire-end core sliding guide structure is located on the wire-end core sliding cover side; and the wire-end core mating channel extends to the wire-end core mating space; and a wire-end conductive terminal, the wire-end conductive... The terminals include a plurality of wire-end terminal mating structures, a single-wire terminal assembly structure, and a single-wire terminal bonding structure. The wire-end terminal bonding structure provides electrical bonding to the conductive wires. The wire-end terminal assembly structure can be used in conjunction with the wire-end insulating core assembly structure to assemble the conductive wire-end terminals onto the insulating core, with the wire-end terminal bonding structure located in the bonding space of the insulating core, and the plurality of wire-end terminal mating structures located in the mating space of the insulating core. The wire-end insulating core mating guide structure guides the board-end terminal mating structures through the wire-end insulating core mating channel into the board-end insulating core mating space to respectively connect with the plurality of wire-end terminal mating structures. The different positions of the plurality of wire-end terminal mating structures allow the conductive wire-end terminals to connect with the board-end terminal mating structures at multiple positions. The wire-end insulating core sliding guide structure guides the board-end sliding cover to slide relative to the board-end insulating core.

[0014] Preferably, in the wire-end connector of this application, the wire-end insulating core can be embedded in the board-end insulating core, so that the sliding guide structure of the wire-end core is lower than the board-end sliding cover, thereby avoiding the wire-end insulating core from interfering with the sliding of the board-end sliding cover.

[0015] Preferably, in the wire end connector of this application, the wire end insulating core includes a wire end sliding surface, the wire end sliding surface is located on the wire end sliding cover side, and the wire end sliding guide structure is located on the wire end sliding surface.

[0016] Preferably, in the wire end connector of this application, when the board end sliding cover is slid to the position where the board end sliding cover closes the docking channel, the board end sliding cover can abut against the wire end insulating core, thereby preventing the wire end insulating core from leaving the board end insulating core docking space through the board end insulating core docking channel.

[0017] Preferably, in the wire-end connector of this application, the wire-end insulating core further includes a wire-end insulating core interference guiding structure and a wire-end insulating core mating interference structure, which respectively mate with the plurality of wire-end terminal mating structures at the board-end terminal mating structure. The wire-end insulating core interference guiding structure guides the wire-end insulating core mating interference structure to interfere with the board-end insulating core, and the interfered wire-end insulating core leaves the board-end insulating core mating space via the board-end insulating core mating channel.

[0018] Preferably, in the wire end connector of this application, the wire end core interference guiding structure and the wire end core mating interference structure can be connected to form a hook-shaped structure.

[0019] Furthermore, this application provides a connector assembly comprising: a wire-end connector, the wire-end connector including: a wire-end conductive terminal, the wire-end conductive terminal including a plurality of wire-end terminal mating structures; and a wire-end insulating core, the wire-end insulating core including a wire-end core mating guide structure, a wire-end core mating channel, and a wire-end core mating space, wherein the wire-end insulating core can assemble the wire-end conductive terminal, such that the plurality of wire-end terminal mating structures are located in the wire-end core mating space; and the wire-end core mating channel extends into the wire-end core mating space; and a board-end connector, the board-end connector including: a board-end conductive terminal, the board-end conductive terminal including a board-end end... A sub-connection structure; a plate-end insulating core, the plate-end insulating core including a plate-end core connection guide structure, a plate-end core connection channel, a plate-end core connection space, a plate-end core sliding groove, and a plate-end core open connection channel retaining wall, wherein the plate-end insulating core can connect to the plate-end conductive terminal, so that the plate-end terminal connection structure is located in the plate-end core connection space; the two ends of the plate-end core sliding groove are respectively the plate-end core sliding groove open connection channel end and the plate-end core sliding groove closed connection channel end; the plate-end core open connection channel retaining wall is adjacent to the plate-end core sliding groove open connection channel end; and the plate-end core connection channel extends to the plate-end core connection space; and a plate-end sliding cover, the plate-end sliding... The cover includes a plate-end sliding cover body and a plate-end sliding cover sliding guide structure. The plate-end sliding cover sliding guide structure can enter the plate-end rubber core groove, allowing it to slide relative to the plate-end insulating rubber core to either the open or closed docking channel end of the groove. This allows the plate-end sliding cover body to slide relative to the plate-end insulating rubber core to either the open or closed docking channel position. When the plate-end sliding cover body slides to the open docking channel position, it leaves the plate-end rubber core docking channel to open it, thus enabling the plate-end rubber core docking guide structure to... The wire connector can be guided into the board-end core docking space via the board-end core docking channel, and the wire connector can guide the board-end terminal docking structure into the board-end core docking space via the wire connector, so as to dock with the plurality of wire terminal docking structures respectively; the positions of the plurality of wire terminal docking structures are different, so that the wire conductive terminal can dock with the board-end terminal docking structure at multiple positions; and the board-end sliding cover sliding guide structure can abut against the board-end core open docking channel barrier at the board-end core slide groove open docking channel end, so as to prevent the board-end sliding cover sliding guide structure from leaving the board-end core slide groove through the board-end core open docking channel barrier.And when the board end sliding cover slides to the position where the board end sliding cover closes the docking channel, the board end sliding cover enters the board end glue core docking channel, thus preventing the wire end connector from entering or exiting the board end glue core docking space via the board end glue core docking channel.

[0020] Compared to prior art, this application provides a miniaturizable connector assembly and its board-end connector and wire-end connector. The wire-end connector can mate with the board-end connector. The board-end connector includes a board-end insulating core and a board-end sliding cover. The board-end insulating core includes a board-end core mating space. The wire-end connector can enter the board-end core mating space to mate with the board-end connector. The board-end sliding cover can prevent the wire-end connector from leaving the board-end core mating space. In this way, the wire-end connector can be effectively prevented from easily detaching from the mated board-end connector when the miniaturized connector assembly is subjected to external impact during use on electronic products, so that the signal transmission effect of the connector assembly meets expectations. Attached Figure Description

[0021] Figure 1 The diagram shown is a first-view perspective perspective of a connector assembly according to an embodiment of this application.

[0022] Figure 2 The diagram shown is a second-view perspective perspective of a connector assembly according to an embodiment of this application.

[0023] Figure 3 The diagram shown is a top view of a connector assembly according to an embodiment of this application.

[0024] Figure 4 Displayed as Figure 3 The diagram shows a cross-sectional view of a portion of the connector assembly cut along line segment AA.

[0025] Figure 5 The diagram shown is a side view of a connector assembly according to an embodiment of this application.

[0026] Figure 6 Displayed as Figure 5 The diagram shows a cross-sectional view of a portion of the connector assembly cut along line segment BB.

[0027] Figure 7 The diagram shown is a first-view perspective perspective of a connector assembly according to an embodiment of this application.

[0028] Figure 8 The diagram shown is a second-view perspective perspective of a connector assembly according to an embodiment of this application.

[0029] Figure 9 The diagram shown is a top view of a connector assembly according to an embodiment of this application.

[0030] Figure 10 Displayed as Figure 9 The diagram shows a cross-sectional view of a portion of the connector assembly cut along line segment A'A'.

[0031] Figure 11 The diagram shown is a side view of a connector assembly according to an embodiment of this application.

[0032] Figure 12 Displayed as Figure 11 The diagram shows a cross-sectional view of a portion of the connector assembly cut along line segment B'B'.

[0033] Figure 13 The diagram shown is a first-view perspective perspective of a connector assembly according to an embodiment of this application.

[0034] Figure 14 The diagram shown is a second-view perspective perspective of a connector assembly according to an embodiment of this application.

[0035] Figure 15 Displayed as Figure 9 The diagram shows a cross-sectional view of a portion of the connector assembly cut along line segment A”A”.

[0036] Figure 16 The diagram shown is a first-view perspective perspective of an embodiment of the wire-end connector of this application.

[0037] Figure 17 The diagram shown is a second-view perspective perspective of an embodiment of the wire-end connector of this application.

[0038] Figure 18 The diagram shown is a perspective view of a conductive terminal of the present application in one embodiment.

[0039] Figure 19 The diagram shown is a front view of an embodiment of the wire-end connector of this application.

[0040] Figure 20 Displayed as Figure 19 The diagram shows a cross-sectional view of a portion of the wire connector components cut along line segment CC.

[0041] Figure 21 Displayed as Figure 19 The diagram shows a cross-sectional view of a portion of the wire connector components cut along line segment C'C'.

[0042] Figure 22 The diagram shown is a first-view perspective perspective of an embodiment of the board-end connector of this application.

[0043] Figure 23 The diagram shown is a second-view perspective perspective of an embodiment of the board-end connector of this application.

[0044] Component designation explanation

[0045] 1 Connector Assembly

[0046] 11-wire connector

[0047] 111 Wire-end conductive terminal

[0048] 1111 Wire terminal mating structure

[0049] 1112 Terminal Block Assembly Structure

[0050] 1113 Terminal wire connection structure

[0051] 112 Wire end insulation core

[0052] 1121 Wire end core docking guide structure

[0053] 1122 Wire end core mating channel

[0054] 1123 Wire end core mating space

[0055] 1124 Wire end core assembly structure

[0056] 1125 wire end core bonding space

[0057] 1126 Wire End Core Sliding Guide Structure

[0058] 1127 Line End Core Interference Guiding Structure

[0059] 1128 Wire End Core Interference Structure

[0060] S1 wire end core board end side

[0061] S2 wire end rubber core sliding cover side

[0062] F-terminal rubber core sliding surface

[0063] 12 Board-end connectors

[0064] 121 Board-end conductive terminal

[0065] 1211 Board-end terminal mating structure

[0066] 122 Plate end insulating core

[0067] 1221 Plate End Core Butt Guiding Structure

[0068] 1222 Board end glue core mating channel

[0069] 1223 Plate end glue core mating space

[0070] 1224 Plate End Rubber Core Slide Groove

[0071] E1 Plate End Core Slide Open Dating Channel End

[0072] E2 Plate End Rubber Core Slide Closed Dating Channel End

[0073] 1225 Plate end glue core open docking channel retaining wall

[0074] 1226 Plate end glue core closing docking channel retaining wall

[0075] 1227 Plate End Core Interference Guiding Structure

[0076] 1228 Plate end glue core butt interference structure

[0077] 12291 Plate End Glue Core Open Docking Channel Positioning Structure

[0078] 12292 Plate End Glue Core Closing Docking Channel Positioning Structure

[0079] 123 Plate end sliding cover

[0080] 1231 Sliding cover body at the end of the plate

[0081] 1232 Sliding guide structure for plate end cover

[0082] 1233 Sliding guide arm of plate end cover

[0083] 1234 Plate end sliding cover positioning structure

[0084] P1 Plate End Sliding Cover Open Docking Channel Position

[0085] P2 Plate end sliding cover closing docking channel position

[0086] 2. Conductive substrate

[0087] 3 Conductive wires Detailed Implementation

[0088] The following specific examples illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. This application can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be noted that, unless otherwise specified, the following embodiments and features in the embodiments can be combined with each other.

[0089] It should be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of this application. Therefore, the drawings only show the components related to this application and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.

[0090] This application provides a connector assembly and its board-end connector and wire-end connector. The wire-end connector can be mated with the board-end connector, and the board-end connector includes a board-end sliding cover. The board-end sliding cover can prevent the wire-end connector from detaching from the board-end connector. In this way, the wire-end connector can be effectively prevented from easily detaching from the mated board-end connector when the miniaturized connector assembly is subjected to external impact during use on electronic products.

[0091] Please refer to the technical concepts outlined in this application. Figures 1 to 23 The revelation.

[0092] like Figures 1 to 23 The illustrated embodiment provides a connector assembly 1, which includes a wire-end connector 11 and a board-end connector 12. The wire-end connector 11 can be coupled to a conductive wire 3, and the board-end connector 12 can be coupled to a conductive plate 2. In the above embodiment, the wire-end connector 11 can mate with the board-end connector 12 to transmit electrical signals or power signals, thereby electrically connecting the conductive wire 3 and the conductive plate 2.

[0093] The wire connector 11 includes a wire conductive terminal 111 and a wire insulating core 112. The wire conductive terminal 111 includes a plurality of wire terminal mating structures 1111, a wire terminal assembly structure 1112, and a wire terminal bonding structure 1113.

[0094] It should be noted that the wire end terminal bonding structure 1113 can be selected as a wire clamp bonding structure to provide an electrical bonding of the conductive wire 3, so that the wire end conductive terminal 111 is electrically connected to the conductive wire 3.

[0095] In the above embodiments, the two sides of the wire end insulating core 112 can be defined as the wire end core plate side S1 and the wire end core sliding cover side S2, respectively. The wire end insulating core 112 includes a wire end core docking guide structure 1121, a wire end core docking channel 1122, a wire end core docking space 1123, a wire end core assembly structure 1124, a wire end core wiring space 1125, a wire end core sliding guide structure 1126, a wire end core interference guide structure 1127, and a wire end core docking interference structure 1128.

[0096] It should be noted that, in the above embodiments, the wire end core bonding space 1125, the wire end core docking guide structure 1121, the wire end core docking channel 1122, the wire end core docking space 1123, and the wire end core sliding guide structure 1126 are respectively located on the wire end core plate end side S1; the wire end core sliding guide structure 1126 is located on the wire end core sliding cover side S2. This reduces the height of the wire end insulating core 112. Furthermore, the wire end core docking channel 1122 extends to the wire end core docking space 1123, that is, the wire end core docking channel 1122 connects to the wire end core docking space 1123.

[0097] Optionally, the wire end glue core interference guiding structure 1127 and the wire end glue core docking interference structure 1128 can be connected to form a hook-shaped structure.

[0098] Furthermore, the wire end terminal assembly structure 1112 can be paired with the wire end core assembly structure 1124 to assemble the wire end conductive terminal 111 onto the wire end insulating core 112, so that the wire end terminal bonding structure 1113 is located in the wire end core bonding space 1125, and the plurality of wire end terminal mating structures 1111 are located in the wire end core mating space 1123.

[0099] The board-end connector 12 includes: a board-end conductive terminal 121, a board-end insulating core 122, and a board-end sliding cover 123. The board-end conductive terminal 121 includes a board-end terminal mating structure 1211, which can be selected as a guillotine structure. The board-end insulating core 122 includes a board-end core mating guide structure 1221, a board-end core mating channel 1222, a board-end core mating space 1223, a board-end core sliding groove 1224, a board-end core open mating channel barrier 1225 and a board-end core closed mating channel barrier 1226, a board-end core interference guide structure 1227, a board-end core mating interference structure 1228, a board-end core open mating channel positioning structure 12291, and a board-end core closed mating channel positioning structure 12292.

[0100] At Figures 13 to 15 , Figure 19 and Figures 22 to 23 In the illustrated embodiment, the plate-end glue core interference guiding structure 1227 and the plate-end glue core docking interference structure 1228 are located in the plate-end glue core docking channel 1222. Optionally, the plate-end glue core interference guiding structure 1227 and the plate-end glue core docking interference structure 1228 can be connected to form a hook-shaped structure.

[0101] It should be noted that the plate-end insulating core 122 can be coupled to the plate-end conductive terminal 121, so that the plate-end terminal mating structure 1211 is located in the plate-end core mating space 1223. The two ends of the plate-end core groove 1224 can be defined as an open mating channel end E1 and a closed mating channel end E2, respectively; wherein, the open mating channel barrier 1225 is adjacent to the open mating channel end E1, and the closed mating channel barrier 1226 is adjacent to the closed mating channel end E2. The plate-end core mating channel 1222 extends to the plate-end core mating space 1223, that is, the plate-end core mating channel 1222 connects to the plate-end core mating space 1223.

[0102] The plate end sliding cover 123 includes a plate end sliding cover body 1231, a plate end sliding cover sliding guide structure 1232, a plate end sliding cover sliding guide spring arm 1233, and a plate end sliding cover positioning structure 1234. The plate end sliding cover sliding guide spring arm 1233 is connected to the plate end sliding cover sliding guide structure 1232. It should be noted that the plate end sliding cover sliding guide spring arm 1233 can elastically deform to allow the plate end sliding cover sliding guide structure 1232 to enter the plate end rubber core slide groove 1224, so that the plate end sliding cover sliding guide structure 1232 can be guided by the plate end rubber core slide groove 1224 to slide to the open docking channel end E1 or the closed docking channel end E2 of the plate end rubber core slide groove, so that the plate end sliding cover body 1231 can slide relative to the plate end insulating rubber core 122 to a plate end sliding cover open docking channel position P1 or a plate end sliding cover closed docking channel position P2.

[0103] Furthermore, regarding the sliding of the plate-end sliding cover 1231, the wire-end rubber core sliding guide structure 1126 can guide the plate-end sliding cover 1231 to slide relative to the plate-end insulating rubber core 122. Figure 2 , Figures 7 to 8 , Figures 13 to 14 , Figures 16 to 17 and Figures 19 to 21 In the illustrated embodiment, the wire end insulating core 112 includes a wire end insulating core sliding surface F, which is located on the wire end insulating core sliding cover side S2. The wire end insulating core sliding guide structure 1126 is located on the wire end insulating core sliding surface F. Therefore, the wire end insulating core 112 can be embedded in the board end insulating core 122, so that the wire end insulating core mating guide structure 1121 (or the wire end insulating core 112) is lower than the board end sliding cover 1231, thereby avoiding the wire end insulating core 112 interfering with the sliding of the board end sliding cover 1231. In this way, the overall height of the connector assembly 1 can be reduced, which helps to miniaturize the connector assembly 1.

[0104] In the above embodiment, when the board end sliding cover 1231 slides to the board end sliding cover open docking channel position P1, the board end sliding cover 1231 leaves the board end glue core docking channel 1222 to open the board end glue core docking channel 1222, so that the board end glue core docking guide structure 1221 can guide the wire end connector 11 (or the wire end insulating glue core 112) to enter the board end glue core docking space 1223 through the board end glue core docking channel 1222, and so that the wire end glue core docking guide structure 1121 can guide the board end terminal docking structure 1211 to enter the board end glue core docking space 1223 through the wire end glue core docking channel 1122 to dock with the plurality of wire end terminal docking structures 1111 respectively.

[0105] In addition, Figure 18 In the illustrated embodiment, the positions of the plurality of line-end terminal docking structures 1111 are different, so that the line-end conductive terminal 111 can dock with the plate-end terminal docking structure 1211 at multiple positions, allowing the line-end conductive terminal 111 to contact the plate-end conductive terminal 121 at multiple points, thereby ensuring the electrical connection between the line-end conductive terminal 111 and the plate-end conductive terminal 121.

[0106] It should be noted that when the board-end terminal docking structure 1211 docks with the plurality of wire-end terminal docking structures 1111 respectively, the wire-end core interference guiding structure 1127 guides the wire-end core docking interference structure 1128 to interfere with the board-end insulating core 122. The interference causes the wire-end insulating core 112 to leave the board-end core docking space 1223 via the board-end core docking channel 1222. In this way, the wire-end connector 11 can be prevented from easily detaching from the board-end insulating core 122, thereby ensuring the docking relationship between the board-end terminal docking structure 1211 and the plurality of wire-end terminal docking structures 1111.

[0107] Accordingly, when the wire connector 11 mates with the board terminal mating structure 1211, the board core interference guiding structure 1227 guides the board core mating interference structure 1228 to interfere with the wire connector 11. The interference causes the wire connector 11 to leave the board core mating space 1223 via the board core mating channel 1222. In this way, the wire connector 11 can be prevented from easily detaching from the board core insulating core 122, thereby ensuring the mating relationship between the wire connector 11 and the board terminal mating structure 1211.

[0108] In the above embodiment, when the plate end sliding cover 1231 slides to the plate end sliding cover open docking channel position P1, the plate end sliding cover sliding guide structure 1232 can abut against the plate end rubber core open docking channel baffle 1225 at the plate end rubber core open docking channel end E1, so as to prevent the plate end sliding cover sliding guide structure 1232 from leaving the plate end rubber core slide groove 1224 by the plate end rubber core open docking channel baffle 1225. In this way, the plate end sliding cover 123 can be prevented from easily detaching from the plate end insulating rubber core 122.

[0109] At Figure 8 In the illustrated embodiment, the plate end sliding cover positioning structure 1234 is a raised structure that can be paired with the plate end glue core open docking channel positioning structure 12291 to position the plate end sliding cover 1231 at the plate end sliding cover open docking channel position P1. This effectively prevents the plate end sliding cover 1231 from easily leaving the plate end sliding cover open docking channel position P1. However, this is not a limitation; the plate end sliding cover positioning structure 1234 can be selected to be paired with other forms of structures with the plate end glue core open docking channel positioning structure 12291.

[0110] In the above embodiments, when the board end sliding cover 1231 slides to the board end sliding cover closed docking channel position P2, the board end sliding cover 1231 enters the board end glue core docking channel 1222. At this time, the board end sliding cover 1231 can prevent the wire end connector 11 from entering or exiting the board end glue core docking space 1223 through the board end glue core docking channel 1222, so as to avoid the wire end connector 11 easily detaching from the board end insulating glue core 122. In this way, this application can effectively prevent the wire end connector from easily detaching from the docked board end connector when the miniaturized connector assembly is subjected to external force impact on electronic products, so that the signal transmission effect of the connector assembly meets expectations.

[0111] At Figure 10 In the illustrated embodiment, the plate end sliding cover positioning structure 1234 can be paired with the plate end rubber core closing docking channel positioning structure 12292 to position the plate end sliding cover 1231 at the plate end sliding cover closing docking channel position P2. This effectively prevents the plate end sliding cover 1231 from easily leaving the plate end sliding cover closing docking channel position P2. Additionally, the plate end sliding cover positioning structure 1234 can abut against the wire end connector 11 (or the wire end insulating rubber core 112), preventing the wire end connector 11 (or the wire end insulating rubber core 112) from leaving the plate end rubber core docking space 1223 via the plate end rubber core docking channel 1222. This prevents the wire end connector 11 from easily detaching from the plate end insulating rubber core 122.

[0112] In the above embodiment, when the plate end sliding cover 1231 slides to the plate end sliding cover closed docking channel position P2, the plate end sliding cover 123 can abut against the plate end rubber core closed docking channel barrier 1226 at the plate end rubber core sliding groove closed docking channel end E2, so as to prevent the plate end sliding cover sliding guide structure 1232 from leaving the plate end rubber core sliding groove 1224 by the plate end rubber core closed docking channel barrier 1226. In this way, the plate end sliding cover 123 can be prevented from easily detaching from the plate end insulating rubber core 122.

[0113] It should be noted that the board end sliding cover 123 may be made of metal material, which can provide shielding for the mating of the wire end connector 11 and the board end connector 12, so that the signal transmission effect of the connector assembly 1 meets expectations.

[0114] It should be noted that the connector assembly and its board-end connector and wire-end connector provided in this application may omit some of the above-mentioned features. For example, in this application, the board-end connector includes: a board-end conductive terminal, a board-end insulating core, and a board-end sliding cover. The board-end conductive terminal includes a board-end terminal mating structure. The board-end insulating core includes a board-end core mating guide structure, a board-end core mating channel, a board-end core mating space, a board-end core groove, and a board-end core open mating channel retainer. The board-end insulating core can engage with the board-end conductive terminal, so that the board-end terminal mating structure is located in the board-end core mating space; the two ends of the board-end core groove are the board-end core groove open mating channel end and the board-end core groove closed mating channel end, respectively; the board-end core open mating channel retainer is adjacent to the board-end core groove open mating channel end; and the board-end core mating channel extends to the board-end core mating space. The plate-end sliding cover includes a plate-end sliding cover body and a plate-end sliding cover sliding guide structure. The plate-end sliding cover sliding guide structure can enter the plate-end rubber core groove, allowing it to slide to either the open or closed docking channel end of the groove. This allows the plate-end sliding cover body to slide relative to the plate-end insulating rubber core to either the open or closed docking channel position. When the plate-end sliding cover body slides to the open docking channel position, it leaves the plate-end rubber core docking channel, thus opening the docking channel. The board-end core mating guide structure can guide the wire-end connector to enter the board-end core mating space through the board-end core mating channel and mate with the board-end terminal mating structure. The board-end sliding cover guide structure can abut against the board-end core open mating channel barrier at the board-end core slide groove open mating channel end, so as to stop the board-end sliding cover guide structure from leaving the board-end core slide groove through the board-end core open mating channel barrier. And when the board-end sliding cover slides to the board-end sliding cover closed mating channel position, the board-end sliding cover enters the board-end core mating channel, thereby preventing the wire-end connector from entering or leaving the board-end core mating space through the board-end core mating channel.

[0115] In addition, in this application, the wire-end connector includes: a wire-end insulating core and a wire-end conductive terminal. The two sides of the wire-end insulating core are respectively the wire-end core plate side and the wire-end core sliding cover side; and the wire-end insulating core includes a wire-end core mating guide structure, a wire-end core mating channel, a wire-end core mating space, a wire-end core assembly structure, a wire-end core wiring space, and a wire-end core sliding guide structure, wherein the wire-end core wiring space, the wire-end core mating guide structure, the wire-end core mating channel, the wire-end core mating space, and the wire-end core sliding guide structure are located on the wire-end core plate side, and the wire-end core sliding guide structure is located on the wire-end core sliding cover side; and the wire-end core mating channel extends to the wire-end core mating space. The conductive terminal includes multiple terminal mating structures, terminal assembly structures, and terminal bonding structures. The terminal bonding structure provides an electrical connection for the conductive wire. The terminal assembly structure can be used with the insulating core assembly structure to assemble the conductive terminal onto the insulating core, placing the terminal bonding structure within the insulating core's bonding space, and placing the multiple terminal mating structures within the terminal mating space. The terminal mating guide structure guides the terminal mating structures through the terminal mating channel into the insulating core's mating space to connect with the multiple terminal mating structures. The different positions of the multiple terminal mating structures allow the conductive terminal to connect with the terminal mating structures at multiple locations. Finally, the terminal sliding guide structure guides the sliding cover relative to the insulating core.

[0116] Furthermore, in this application, the connector assembly includes: a wire-end connector and a board-end connector. The wire-end connector includes: a wire-end conductive terminal and a wire-end insulating core; the wire-end conductive terminal includes a plurality of wire-end terminal mating structures; the wire-end insulating core includes a wire-end core mating guide structure, a wire-end core mating channel, and a wire-end core mating space, wherein the wire-end insulating core can assemble the wire-end conductive terminal, such that the plurality of wire-end terminal mating structures are located in the wire-end core mating space; and the wire-end core mating channel extends into the wire-end core mating space. The board-end connector includes: board-end conductive terminals, board-end insulating cores, and board-end sliding covers; the board-end conductive terminals include board-end terminal mating structures; the board-end insulating core includes a board-end core mating guide structure, a board-end core mating channel, a board-end core mating space, a board-end core sliding groove, and a board-end core open mating channel retainer, wherein the board-end insulating core can engage with the board-end conductive terminals, so that the board-end terminal mating structure is located in the board-end core mating space; the two ends of the board-end core sliding groove are the board-end core sliding groove open mating channel end and the board-end core sliding groove closed mating channel end, respectively; The open docking channel retainer of the board end rubber core is adjacent to the open docking channel end of the board end rubber core slide groove; and the board end rubber core docking channel extends to the board end rubber core docking space; the board end sliding cover includes a board end sliding cover body and a board end sliding cover sliding guide structure, wherein the board end sliding cover sliding guide structure can enter the board end rubber core slide groove, so that the board end sliding cover sliding guide structure can be guided by the board end rubber core slide groove to slide to the open docking channel end of the board end rubber core slide groove or the closed docking channel end of the board end rubber core slide groove, so that the board end sliding cover body can slide relative to the board end insulating rubber core to the board end sliding cover open docking channel. The position or board end sliding cover closes the docking channel; wherein, when the board end sliding cover slides to the board end sliding cover open docking channel position, the board end sliding cover leaves the board end glue core docking channel to open the board end glue core docking channel, so that the board end glue core docking guide structure can guide the wire end connector through the board end glue core docking channel into the board end glue core docking space, and the wire end glue core docking guide structure can guide the board end terminal docking structure through the wire end glue core docking channel into the board end glue core docking space to dock with multiple wire end terminal docking structures respectively; multiple wire end terminal docking structures The different positions allow the conductive terminals at the wire end to be connected to the board end terminal connection structure at multiple positions; and the board end sliding cover sliding guide structure can abut against the board end core open connection channel barrier at the board end core slide groove open connection channel end, so as to stop the board end sliding cover sliding guide structure from leaving the board end core slide groove through the board end core open connection channel barrier; and when the board end sliding cover slides to the board end sliding cover closed connection channel position, the board end sliding cover enters the board end core connection channel, thereby preventing the wire end connector from entering or exiting the board end core connection space through the board end core connection channel.

[0117] In summary, this application provides a miniaturizable connector assembly and its board-end connector and wire-end connector. The wire-end connector can mate with the board-end connector. The board-end connector includes a board-end insulating core and a board-end sliding cover. The board-end insulating core includes a board-end core mating space. The wire-end connector can enter the board-end core mating space to mate with the board-end connector. The board-end sliding cover can prevent the wire-end connector from leaving the board-end core mating space. In this way, the wire-end connector can be effectively prevented from easily detaching from the mated board-end connector when the miniaturized connector assembly is subjected to external impact during use on electronic products, so that the signal transmission effect of the connector assembly meets expectations.

[0118] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this application. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this application should still be covered by the claims of this application.

Claims

1. A board-end connector, characterized in that, The board-end connector can be used with a single-line connector, and the board-end connector includes: A plate-end conductive terminal, wherein the plate-end conductive terminal includes a plate-end terminal mating structure; A plate-end insulating core includes a plate-end insulating core docking guide structure, a plate-end insulating core docking channel, a plate-end insulating core docking space, a plate-end insulating core sliding groove, and a plate-end insulating core open docking channel retaining wall. The plate-end insulating core can be coupled to a plate-end conductive terminal, such that the plate-end terminal docking structure is located in the plate-end insulating core docking space. The two ends of the plate-end insulating core sliding groove are respectively an open docking channel end and a closed docking channel end. The plate-end insulating core open docking channel retaining wall is adjacent to the open docking channel end of the plate-end insulating core sliding groove. The plate-end insulating core docking channel extends to the plate-end insulating core docking space. A sliding cover for a plate end, comprising a sliding cover body and a sliding guide structure, wherein the sliding guide structure can enter the sliding groove of the plate end insulating core, allowing the sliding guide structure to slide to either the open or closed docking channel end of the plate end insulating core groove under the guidance of the groove, so that the sliding cover body can slide relative to the plate end insulating core to either the open or closed docking channel position of the sliding cover; when the sliding cover body slides to the open / closed docking channel position of the plate end insulating core... Positioned at the docking channel location, the board-end sliding cover moves away from the board-end core docking channel to open the board-end core docking channel, allowing the board-end core docking guide structure to guide the wire connector through the board-end core docking channel into the board-end core docking space to dock with the board-end terminal docking structure. Furthermore, the board-end sliding cover sliding guide structure can abut against the board-end core open docking channel retainer at the open docking channel end of the board-end core slide groove, thereby preventing the board-end sliding cover sliding guide structure from leaving the board-end core slide groove through the board-end core open docking channel retainer. When the board end sliding cover is slid to the position where the board end sliding cover closes the docking channel, the board end sliding cover enters the board end glue core docking channel, thus preventing the wire end connector from entering or exiting the board end glue core docking space via the board end glue core docking channel.

2. The board-end connector according to claim 1, characterized in that, The plate end insulating core also includes a plate end core closing docking channel baffle wall, which is adjacent to the plate end core sliding groove closing docking channel end. When the plate end sliding cover slides to the plate end sliding cover closing docking channel position, the plate end sliding cover can abut against the plate end core closing docking channel baffle wall at the plate end core sliding groove closing docking channel end, so as to prevent the plate end sliding cover sliding guide structure from leaving the plate end core sliding groove through the plate end core closing docking channel baffle wall.

3. The board-end connector according to claim 1, characterized in that, The plate end sliding cover also includes a plate end sliding cover sliding guide spring arm, which is connected to the plate end sliding cover sliding guide structure. The plate end sliding cover sliding guide spring arm can be elastically deformed to allow the plate end sliding cover sliding guide structure to enter the plate end rubber core slide groove.

4. The board-end connector according to claim 1, characterized in that, The board-end insulating core also includes a board-end core interference guiding structure and a board-end core docking interference structure. The board-end core interference guiding structure and the board-end core docking interference structure are located in the board-end core docking channel and are connected to the board-end terminal docking structure of the wire-end connector. The board-end core interference guiding structure guides the board-end core docking interference structure to interfere with the wire-end connector, and the interference causes the wire-end connector to leave the board-end core docking space via the board-end core docking channel.

5. The board-end connector according to claim 4, characterized in that, The plate end glue core interference guiding structure and the plate end glue core docking interference structure can be connected to form a hook-shaped structure.

6. The board-end connector according to claim 1, characterized in that, The plate end insulating core also includes a plate end core open docking channel positioning structure, and the plate end sliding cover also includes a plate end sliding cover positioning structure. The plate end sliding cover positioning structure can be matched with the plate end core open docking channel positioning structure to position the plate end sliding cover body at the plate end sliding cover open docking channel position.

7. The board-end connector according to claim 6, characterized in that, The plate end insulating core also includes a plate end core closing docking channel positioning structure. The plate end sliding cover positioning structure can be matched with the plate end core closing docking channel positioning structure to position the plate end sliding cover body at the plate end sliding cover closing docking channel position.

8. The board-end connector according to claim 6, characterized in that, When the board end sliding cover is slid to the position where the board end sliding cover closes the docking channel, the board end sliding cover positioning structure can abut against the wire end connector, thereby preventing the wire end connector from leaving the board end glue core docking space through the board end glue core docking channel.

9. A wire-end connector, characterized in that, The wire connector can be used with a conductive wire and the board connector as described in claim 1, the wire connector comprising: A wire-end insulating core, wherein the two sides of the wire-end insulating core are a wire-end core plate end side and a wire-end core sliding cover side, respectively; and the wire-end insulating core includes a wire-end core docking guide structure, a wire-end core docking channel, a wire-end core docking space, a wire-end core assembly structure, a wire-end core wiring space, and a wire-end core sliding guide structure, wherein the wire-end core wiring space, the wire-end core docking guide structure, the wire-end core docking channel, the wire-end core docking space, and the wire-end core sliding guide structure are located on the wire-end core plate end side, and the wire-end core sliding guide structure is located on the wire-end core sliding cover side; and the wire-end core docking channel extends to the wire-end core docking space; and A single-line conductive terminal, comprising a plurality of terminal butt joint structures, a single-line terminal assembly structure, and a single-line terminal bonding structure; wherein... The wire end terminal bonding structure provides an electrical connection to the conductive wire. The wire end terminal assembly structure can be matched with the wire end core assembly structure to assemble the wire end conductive terminal on the wire end insulating core, so that the wire end terminal bonding structure is located in the wire end core bonding space, and the plurality of wire end terminal mating structures are located in the wire end core mating space. The wire end glue core docking guide structure can guide the board end terminal docking structure to enter the board end glue core docking space through the wire end glue core docking channel and dock with the plurality of wire end terminal docking structures respectively. The different positions of the plurality of wire-end terminal mating structures allow the wire-end conductive terminals to mat with the plate-end terminal mating structures at multiple locations; and The sliding guide structure of the wire end rubber core can guide the sliding cover of the plate end to slide relative to the plate end insulating rubber core.

10. The wire-end connector according to claim 9, characterized in that, The wire end insulating core can be embedded in the plate end insulating core, so that the sliding guide structure of the wire end core is lower than the plate end sliding cover, thereby avoiding the wire end insulating core from interfering with the sliding of the plate end sliding cover.

11. The wire connector according to claim 9, characterized in that, The wire end insulating core includes a wire end core sliding surface, which is located on the side of the wire end core sliding cover, while the wire end core sliding guide structure is located on the wire end core sliding surface.

12. The wire-end connector according to claim 9, characterized in that, When the sliding cover of the plate end slides to the position where the plate end sliding cover closes the docking channel, the plate end sliding cover can abut against the wire end insulating core, thereby preventing the wire end insulating core from leaving the plate end insulating core docking space through the plate end insulating core docking channel.

13. The wire connector according to claim 9, characterized in that, The wire end insulating core also includes a wire end insulating core interference guiding structure and a wire end insulating core docking interference structure, which are respectively docked with the plurality of wire end terminal docking structures at the board end terminal docking structure. The wire end insulating core interference guiding structure guides the wire end insulating core docking interference structure to interfere with the board end insulating core, and the interfered wire end insulating core leaves the board end insulating core docking space through the board end insulating core docking channel.

14. The wire connector according to claim 13, characterized in that, The interference guiding structure of the wire end glue core and the docking interference structure of the wire end glue core can be connected to form a hook-shaped structure.

15. A connector assembly, characterized in that, The connector assembly includes: A wire-end connector, the wire-end connector comprising: A single-ended conductive terminal, wherein the conductive terminal comprises a plurality of terminal mating structures; and A wire-end insulating core, comprising a wire-end insulating core docking guide structure, a wire-end insulating core docking channel, and a wire-end insulating core docking space, wherein the wire-end insulating core can assemble the wire-end conductive terminals, such that the plurality of wire-end terminal docking structures are located in the wire-end insulating core docking space; and the wire-end insulating core docking channel extends into the wire-end insulating core docking space; and A board-end connector, the board-end connector comprising: A plate-end conductive terminal, wherein the plate-end conductive terminal includes a plate-end terminal mating structure; A plate-end insulating core includes a plate-end insulating core docking guide structure, a plate-end insulating core docking channel, a plate-end insulating core docking space, a plate-end insulating core sliding groove, and a plate-end insulating core open docking channel retaining wall. The plate-end insulating core can be coupled to a plate-end conductive terminal, such that the plate-end terminal docking structure is located in the plate-end insulating core docking space. The two ends of the plate-end insulating core sliding groove are respectively an open docking channel end and a closed docking channel end. The plate-end insulating core open docking channel retaining wall is adjacent to the open docking channel end of the plate-end insulating core sliding groove. The plate-end insulating core docking channel extends to the plate-end insulating core docking space. A sliding cover for a plate end, comprising a cover body and a sliding guide structure, wherein the sliding guide structure can enter the groove of the plate end insulating core, allowing it to slide to either the open or closed docking channel end of the groove, thus enabling the cover body to slide relative to the insulating core to either the open or closed docking channel position. When the board end sliding cover slides to the open docking channel position, the board end sliding cover leaves the board end core docking channel to open the board end core docking channel, allowing the board end core docking guide structure to guide the wire end connector through the board end core docking channel into the board end core docking space, and allowing the wire end core docking guide structure to guide the board end terminal docking structure through the wire end core docking channel into the board end core docking space to dock with the plurality of wire end terminal docking structures respectively; the positions of the plurality of wire end terminal docking structures are different, allowing the wire end conductive terminal to dock with the board end terminal docking structure at multiple positions; and the board end sliding cover sliding guide structure can abut against the board end core open docking channel retainer at the board end core groove open docking channel end, so as to prevent the board end sliding cover sliding guide structure from leaving the board end core groove through the board end core open docking channel retainer; and When the board end sliding cover is slid to the position where the board end sliding cover closes the docking channel, the board end sliding cover enters the board end glue core docking channel, thus preventing the wire end connector from entering or exiting the board end glue core docking space via the board end glue core docking channel.