Conductive member assembly

The conductive assembly with shielded frames and insulating components addresses crosstalk interference in high-speed signal transmission by forming shielded pathways, improving signal integrity between conductive terminals and circuit boards.

CN120320115APending Publication Date: 2025-07-15HARUMOTO TECHNOLOGY (SHEN ZHEN) CO LTD
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Patent Information

Application Number
CN202410049587.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-12
Publication Date
2025-07-15

AI Technical Summary

Technical Problem

Conductive terminals and circuit boards are susceptible to cross-talk interference when transmitting high-speed signals, resulting in signal transmission attenuation.

Method used

The conductive member assembly is adopted, including a board end plug-in frame, an electrical connector, a shielding auxiliary member and a plug-in insulation member. Through the electrical connection between the shielded wall and the shielded frame and against the circuit board, a shielding conductor is formed to reduce cross-talk interference.

Benefits of technology

Effectively reduce crosstalk interference between conductive terminals and circuit boards when transmitting high-speed signals, ensuring the stability and efficiency of signal transmission.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120320115A_ABST
Patent Text Reader

Abstract

A conductive component assembly can be used in cooperation with a circuit board, an electric connector is provided with a conductive terminal, a shielding frame and a shielding wall, the conductive terminal can abut against the circuit board to transmit electric signals, and the shielding wall can abut against the shielding frame. Therefore, the shielding wall body and the shielding frame body can be electrically connected to form a shielding conductor capable of transmitting shielding signals, and the shielding wall body can abut against the circuit board, so that the shielding wall body can provide shielding for a gap between the shielding frame body and the circuit board. Therefore, the shielding wall body and the main side shielding frame body can provide a shielding environment for the conductive terminal to abut against the circuit board.
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Description

Technical Field

[0001] The present application relates to a conductive component assembly. More specifically, it refers to a conductive component assembly that can reduce crosstalk interference between conductive terminals and circuit boards when transmitting high-speed signals. Background Art

[0002] Electrical connectors are widely used in various electronic devices. In recent years, electrical connectors can be provided for use with circuit boards. Generally, electrical connectors have conductive terminals, and by abutting the conductive terminals against the circuit boards used in combination, an electrical signal transmission circuit is formed between the conductive terminals and the circuit boards, so as to provide electrical signal transmission in electronic devices.

[0003] However, the conductive terminals and the circuit boards are prone to crosstalk interference when transmitting high-speed signals, which causes interference attenuation in the transmission of high-speed signals. Therefore, how to suppress crosstalk interference so that the conductive terminals and the circuit boards can achieve high-speed signal transmission is an urgent problem to be solved by those skilled in the art. Summary of the Invention

[0004] In view of the above disadvantages of the prior art, the present application provides a conductive component assembly, which is paired with a circuit board. The conductive component assembly includes: a board-end plug-in frame positioned on the circuit board, the board-end plug-in frame having a board-end plug-in channel and a board-end coupling structure; an electrical connector having a main-side plug-in component group and a wire-end coupling structure; the main-side plug-in component group having at least one first main-side plug-in component and at least one second main-side plug-in component, the first main-side plug-in component having a first main-side conductive terminal and a first main-side shielding frame body extending along the side of the first main-side conductive terminal, the second main-side plug-in component having at least one second main-side conductive terminal and at least one second main-side shielding frame body extending along the side of the second main-side conductive terminal, wherein there is a main-side frame separation channel between the first main-side shielding frame body and the second main-side shielding frame body; a shielding auxiliary component having at least one main-side shielding wall body with a main-side shielding wall body overlapping structure; and a plug-in insulating component having a plug-in insulating component pushing structure. Wherein, the electrical connector can be plugged into the board-end plug-in frame, so that the main-side plug-in component group can enter the plug-in insulating component plug-in channel and the board-end plug-in channel, enabling the first main-side conductive terminal and the second main-side conductive terminal to respectively abut against the circuit board; and when the electrical connector is plugged into the board-end plug-in frame, the wire-end coupling structure can be coupled with the board-end coupling structure, causing the electrical connector to actuate the shielding auxiliary component through the plug-in insulating component, and the plug-in insulating component pushing structure to push the shielding auxiliary component against the circuit board, so that a partial extension section of the shielding auxiliary component is elastically deformed, enabling the main-side shielding wall body to enter the main-side frame separation channel, and the main-side shielding wall body overlapping structure to respectively overlap the first main-side shielding frame body and the second main-side shielding frame body, so that the main-side shielding wall body, the first main-side shielding frame body and the second main-side shielding frame body are electrically connected to form a main-side shielding conductor, and the main-side shielding wall body can provide shielding for the gap between the first main-side shielding frame body and the circuit board, so that the main-side shielding wall body and the first main-side shielding frame body can provide a shielding environment for the abutment of the first main-side conductive terminal against the circuit board, and the main-side shielding wall body can also provide shielding for the gap between the second main-side shielding frame body and the circuit board, so that the main-side shielding wall body and the second main-side shielding frame body can provide a shielding environment for the abutment of the second main-side conductive terminal against the circuit board.

[0005] Preferably, in the conductive component assembly of the present application, the board-end coupling structure and the wire-end coupling structure are snap-fit structures or track structures.

[0006] Preferably, in the conductive component assembly of the present application, the plugging insulating component further has a plugging insulating component coupling structure, and the plugging insulating component coupling structure can couple with the electrical connector so that the plugging insulating component and the electrical connector can move synchronously.

[0007] Preferably, in the conductive component assembly of the present application, the plugging insulating component coupling structure is a snap-fit structure or a track structure.

[0008] Preferably, in the conductive component assembly of the present application, the shielding auxiliary component further has a shielding auxiliary component fitting member, and the shielding auxiliary component fitting member fits with the plugging insulating component so that the shielding auxiliary component and the plugging insulating component can move synchronously.

[0009] Preferably, in the conductive component assembly of the present application, the board-end plugging frame further has a board-end setting structure, and the board-end setting structure provides for setting the shielding auxiliary component and the plugging insulating component.

[0010] Preferably, in the conductive component assembly of the present application, the plugging insulating component further has a plugging insulating component plugging channel, and the plugging insulating component plugging channel extends obliquely so that the main-side plugging component group can obliquely plug the circuit board via the plugging insulating component plugging channel.

[0011] Preferably, in the conductive component assembly of the present application, the plugging insulating component further has a plugging insulating component plugging channel, and the plugging insulating component plugging channel extends longitudinally so that the main-side plugging component group can longitudinally plug the circuit board via the plugging insulating component plugging channel.

[0012] Preferably, in the conductive component assembly of the present application, the electrical connector further has a primary side plugging component group; the primary side plugging component group has at least one first primary side plugging component and at least one second primary side plugging component. The first primary side plugging component has a first primary side conductive terminal and a first primary side shielding frame. The first primary side shielding frame extends along the side of the first primary side conductive terminal. The second primary side plugging component has a second primary side conductive terminal and a second primary side shielding frame. The second primary side shielding frame extends along the side of the second primary side conductive terminal. Among them, there is a primary side frame separation channel between the first primary side shielding frame and the second primary side shielding frame; the shielding auxiliary component further has at least one primary side shielding wall, and the primary side shielding wall has a primary side shielding wall overlapping structure; when the electrical connector plugs into the board end plugging frame, the primary side plugging component group can enter the plugging insulation component plugging channel and the board end plugging channel, so that the first primary side conductive terminal and the second primary side conductive terminal respectively abut against the circuit board material, and the primary side shielding wall can enter the primary side frame separation channel, so that the primary side shielding wall overlapping structure respectively overlaps the first primary side shielding frame and the second primary side shielding frame, so that the primary side shielding wall, the first primary side shielding frame and the second primary side shielding frame are electrically connected to form a primary side shielding conductor, and the primary side shielding wall can provide shielding for the gap between the first primary side shielding frame and the circuit board material, so that the primary side shielding wall and the first primary side shielding frame can provide a shielding environment for the abutment of the first primary side conductive terminal against the circuit board material, and the primary side shielding wall can also provide shielding for the gap between the second primary side shielding frame and the circuit board material, so that the primary side shielding wall and the second primary side shielding frame can provide a shielding environment for the abutment of the second primary side conductive terminal against the circuit board material.

[0013] Preferably, in the conductive component assembly of the present application, the shielding auxiliary component further has a shielding connection body, and the shielding connection body connects the main side shielding wall and the primary side shielding wall to electrically connect the main side shielding conductor and the primary side shielding conductor, and the plugging insulation component pushing structure pushes against the shielding connection body.

[0014] Compared with the prior art, the present application provides a conductive component assembly. The conductive component assembly can be used in conjunction with a circuit board material. The electrical connector has a conductive terminal, a shielding frame and a shielding wall. The conductive terminal can abut against the circuit board material to transmit electrical signals. The shielding wall can abut against the shielding frame, so that the shielding wall and the shielding frame can be electrically connected to form a shielding conductor capable of transmitting shielding signals, and the shielding wall can abut against the circuit board material, so that the shielding wall can provide shielding for the gap between the shielding frame and the circuit board material, so that the shielding wall and the main side shielding frame can provide a shielding environment for the abutment of the conductive terminal against the circuit board material. Description of the Drawings

[0015] The drawings of the present application will, in combination with the description of the following embodiments, enable a clearer understanding of the features and other advantages of the present application.

[0016] Figure 1 It is a perspective view of the conductive component assembly of the present application from a first perspective in an embodiment.

[0017] Figure 2 It is a perspective view of the conductive component assembly of the present application from a second perspective in an embodiment.

[0018] Figure 3 It is a perspective view of the plug-in insulating component of the present application from a first perspective in an embodiment.

[0019] Figure 4 It is a perspective view of some components of the conductive component assembly of the present application in an embodiment.

[0020] Figure 5 It is a top view of some components of the conductive component assembly of the present application in an embodiment.

[0021] Figure 6 It is a perspective view of some components of the conductive component assembly of the present application in an embodiment.

[0022] Figure 7 It is a side view of some components of the conductive component assembly of the present application in an embodiment.

[0023] Figure 8 is Figure 7 A cross-sectional view of some components of the conductive component assembly shown along the line segment.

[0024] Figure 9 It is a perspective view of the conductive component assembly of the present application from a first perspective in an embodiment.

[0025] Figure 10 It is a perspective view of the conductive component assembly of the present application from a second perspective in an embodiment.

[0026] Figure 11 It is a perspective view of some components of the conductive component assembly of the present application from a first perspective in an embodiment.

[0027] Figure 12 It is a perspective view of some components of the conductive component assembly of the present application from a second perspective in an embodiment.

[0028] Figure 13 It is a perspective view of some components of the conductive component assembly of the present application in an embodiment.

[0029] Figure 14 It is a perspective view of some components of the conductive component assembly of the present application in an embodiment.

[0030] Figure 15 is a perspective view of the electrical connector of the present application in an embodiment.

[0031] Figure 16 is a perspective view of some components of the conductive member assembly of the present application from a first perspective in an embodiment.

[0032] Figure 17 is a perspective view of some components of the conductive member assembly of the present application from a second perspective in an embodiment.

[0033] Figure 18 is a perspective view of the conductive member assembly of the present application in an embodiment.

[0034] Figure 19 is a perspective view of the conductive member assembly of the present application in an embodiment.

[0035] Figure 20 is a front view of the conductive member assembly of the present application in an embodiment.

[0036] Figure 21 is a perspective view of some components of the conductive member assembly of the present application in an embodiment.

[0037] Figure 22 is a perspective view of the conductive member assembly of the present application in an embodiment.

[0038] Figure 23 is a perspective view of the conductive member assembly of the present application in an embodiment. Description of reference numerals: 1 Conductive member assembly 11 Board-end insertion frame 111 Board-end insertion channel 112 Board-end coupling structure 113 Board-end setting structure 12 Electrical connector 120 Electrical connector insulating rubber core 1201 Main-side insertion member positioning structure 1202 Sub-side insertion member positioning structure 121 Main-side insertion member group 1211 First main-side insertion member 12111 First main-side conductive terminal 12112 First main-side shielding frame 1212 Second main-side insertion member 12121 Second main-side conductive terminal 12122 Second main-side shielding frame 122 - wire - end bonding structure 123 - secondary - side plug - in component group 1231 First - side plug - in component 12311 First - side conductive terminal 12312 First - side shielding frame 1232 Second - side plug - in component 12321 Second - side conductive terminal 12322 Second - side shielding frame 13 Shielding auxiliary component 130 Shielding - auxiliary - component embedding component 131 Main - side shielding wall 1311 Main - side shielding - wall lapping structure 132 Secondary - side shielding wall 1321 Secondary - side shielding - wall lapping structure 133 Shielding connection body 14 Plug - in insulating component 141 Plug - in - insulating - component pushing structure 142 Plug - in - insulating - component bonding structure 143 Plug - in - insulating - component plug - in channel 1441 Main - side guiding structure of plug - in insulating component 1442 Secondary - side guiding structure of plug - in insulating component 2 Circuit board B1 Main - side shielding conductor B2 Secondary - side shielding conductor P1 Main - side frame separating channel P2 Secondary - side frame separating channel Specific implementation manners

[0039] The following describes the technical content of the present application through specific embodiments. Those skilled in the art can easily understand other advantages and effects of the present application from the content disclosed in this specification. The present application can also be implemented or applied through other different specific embodiments. Various details in this specification can also be modified and changed based on different viewpoints and applications without departing from the spirit of the present application.

[0040] The present application provides at least one conductive component assembly, and the provided conductive component assembly can provide a shielding environment for the connection of conductive terminals to the circuit board, so as to reduce the degree of crosstalk interference when the conductive terminals and the circuit board transmit high - speed signals.

[0041] Regarding the technical concept of the electrical connector of the present application, please refer to Figures 1 to 23 the embodiments for illustration.

[0042] In Figures 1 to 23In the illustrated embodiment, a conductive component assembly 1 is disclosed, and the conductive component assembly 1 is paired with a circuit board 2. The circuit board 2 is, for example, a circuit board or a flexible circuit board. The conductive component assembly 1 includes: a board-end plug-in frame 11, an electrical connector 12, a shielding auxiliary component 13, and a plug-in insulating component 14.

[0043] As Figure 9 shown, the board-end plug-in frame 11 is positioned on the circuit board 2, and the board-end plug-in frame 11 has a board-end plug-in channel 111 and a board-end coupling structure 112.

[0044] As Figure 1 shown, the electrical connector 12 has an electrical connector insulating core 120, a main-side plug-in component group 121, a secondary-side plug-in component group 123, and a wire-end coupling structure 122. Among them, the electrical connector insulating core 120 positions the main-side plug-in component group 121 and the secondary-side plug-in component group 123, and the wire-end coupling structure 122 is provided on the electrical connector insulating core 120.

[0045] In the above embodiment, the main-side plug-in component group 121 has at least one first main-side plug-in component 1211 and at least one second main-side plug-in component 1212. The first main-side plug-in component 1211 has a first main-side conductive terminal 12111 and a first main-side shielding frame 12112. The first main-side shielding frame 12112 extends along the side of the first main-side conductive terminal 12111 to provide shielding for the first main-side conductive terminal 12111. The second main-side plug-in component 1212 has a second main-side conductive terminal 12121 and a second main-side shielding frame 12122. The second main-side shielding frame 12122 extends along the side of the second main-side conductive terminal 12121 to provide shielding for the second main-side conductive terminal 12121. It should be noted that there is a main-side frame separation channel P1 between the first main-side shielding frame 12112 and the second main-side shielding frame 12122.

[0046] In addition, the secondary side plug-in member group 123 has at least one first secondary side plug-in member 1231 and at least one second secondary side plug-in member 1232. The first secondary side plug-in member 1231 has a first secondary side conductive terminal 12311 and a first secondary side shielding frame 12312. The first secondary side shielding frame 12312 extends along the side of the first secondary side conductive terminal 12311 to provide shielding for the first secondary side conductive terminal 12311. The second secondary side plug-in member 1232 has a second secondary side conductive terminal 12321 and a second secondary side shielding frame 12322. The second secondary side shielding frame 12322 extends along the side of the second secondary side conductive terminal 12321 to provide shielding for the second secondary side conductive terminal 12321. It should be noted that there is a primary side frame separation channel P2 between the first secondary side shielding frame 12312 and the second secondary side shielding frame 12322.

[0047] It should be noted that in the above embodiment, the first main secondary side shielding frame 12112, the second main secondary side shielding frame 12122, the first secondary side shielding frame 12312 and the second secondary side shielding frame 12322 are rectangular frame-shaped bodies, but not limited thereto. The first main secondary side shielding frame 12112, the second main secondary side shielding frame 12122, the first secondary side shielding frame 12312 and the second secondary side shielding frame 12322 can be changed to non-rectangular frame-shaped bodies according to the implementation situation.

[0048] In Figure 11 In the shown embodiment, the shielding auxiliary member 13 has a shielding auxiliary member fitting member 130, at least one main secondary side shielding wall 131 and at least one secondary secondary side shielding wall 132. The shielding auxiliary member fitting member 130 fits the plug-in insulating member 14, so that the shielding auxiliary member 13 and the plug-in insulating member 14 can move synchronously into the board end plug-in frame 11. In addition, the main secondary side shielding wall 131 and the secondary secondary side shielding wall 132 respectively have a main secondary side shielding wall overlapping structure 1311 and a primary secondary side shielding wall overlapping structure 1321.

[0049] In Figures 9 to 11 In the shown embodiment, the plug-in insulating member 14 has a plug-in insulating member pushing structure 141 and a plug-in insulating member coupling structure 142. The plug-in insulating member coupling structure 142 can be a snap structure (as shown in Figure 9 shown) or a rail structure to couple with the electrical connector 12, so that the plug-in insulating member 14 and the electrical connector 12 can move synchronously into the board end plug-in frame 11.

[0050] In the above embodiments, the electrical connector 12 can be plugged into the board-end plugging frame 11, so that the main-side plugging member group 121 and the sub-side plugging member group 123 can respectively enter the plugging insulating member plugging channel 143 and the board-end plugging channel 111, enabling the first main-side conductive terminal 12111, the second main-side conductive terminal 12121, the first sub-side conductive terminal 12311, and the second sub-side conductive terminal 12321 to respectively abut against the circuit board material 2 to transmit electrical signals.

[0051] It should be noted that in the present application, the electrical connector 12 can be longitudinally plugged into the board-end plugging frame 11 (as Figures 9 to 10 shown) or transversely plugged into the board-end plugging frame 11 (as Figures 22 to 23 shown).

[0052] Optionally, the first main-side conductive terminal 12111, the second main-side conductive terminal 12121, the first sub-side conductive terminal 12311, and the second sub-side conductive terminal 12321 respectively have pin structures for elastically abutting against the circuit board material 2, thereby solving the technical problem that the first main-side conductive terminal 12111, the second main-side conductive terminal 12121, the first sub-side conductive terminal 12311, and the second sub-side conductive terminal 12321 cannot effectively abut against the circuit board material 2, enabling the first main-side conductive terminal 12111, the second main-side conductive terminal 12121, the first sub-side conductive terminal 12311, and the second sub-side conductive terminal 12321 and the circuit board material 2 to form a signal transmission circuit for transmitting electrical signals in an electronic device.

[0053] In the above embodiments, when the electrical connector 12 is inserted into the board-end insertion frame 11, the wire-end coupling structure 122 can be coupled to the board-end coupling structure 112, so that the electrical connector 12 actuates the shielding auxiliary member 13 through the insertion insulating member 14, and the insertion insulating member pushing structure 141 pushes the shielding auxiliary member 13 against the circuit board 2, causing a partial extension of the shielding auxiliary member 13 to elastically deform, such that a part of the main-side shielding wall 131 and the secondary-side shielding wall 132 respectively enter the main-side frame separation channel P1 and the secondary-side frame separation channel P2. The main-side shielding wall overlapping structure 1311 overlaps the first main-side shielding frame 12112 and the second main-side shielding frame 12122 in the main-side frame separation channel P1 respectively, enabling the main-side shielding wall 131, the first main-side shielding frame 12112, and the second main-side shielding frame 12122 to be electrically connected to form a main-side shielding conductor B1 capable of transmitting shielding signals. Also, the secondary-side shielding wall overlapping structure 1321 overlaps the first secondary-side shielding frame 12312 and the second secondary-side shielding frame 12322 in the secondary-side frame separation channel P2 respectively, enabling the secondary-side shielding wall 132, the first secondary-side shielding frame 12312, and the second secondary-side shielding frame 12322 to be electrically connected to form a secondary-side shielding conductor B2 capable of transmitting shielding signals.

[0054] In addition, when a partial extension of the shielding auxiliary member 13 elastically deforms, another part of the main-side shielding wall 131 and the secondary-side shielding wall 132 can respectively abut against the circuit board 2, and the main-side shielding wall 131 can provide shielding for the gap between the first main-side shielding frame 12112 and the circuit board 2, such that the main-side shielding wall 131 and the first main-side shielding frame 12112 can provide a shielding environment for the abutment of the first main-side conductive terminal 12111 against the circuit board 2, thereby reducing the degree of crosstalk interference when the conductive terminal and the circuit board transmit high-speed signals. Additionally, the secondary-side shielding wall 132 can also provide shielding for the gap between the first secondary-side shielding frame 12312 and the circuit board 2, such that the secondary-side shielding wall 132 and the first secondary-side shielding frame 12312 can provide a shielding environment for the abutment of the first secondary-side conductive terminal 12311 against the circuit board 2, thereby reducing the degree of crosstalk interference when the conductive terminal and the circuit board transmit high-speed signals.

[0055] Similarly, when another part of the main - side shielding wall 131 abuts against the circuit board 2 together with the secondary - side shielding wall 132, the main - side shielding wall 131 can provide shielding for the gap between the second main - side shielding frame 12122 and the circuit board 2, so that the main - side shielding wall 131 and the second main - side shielding frame 12122 can provide a shielding environment for the abutment of the second main - side conductive terminal 12121 against the circuit board 2, thereby reducing the degree of crosstalk interference when the conductive terminal and the circuit board transmit high - speed signals. Additionally, the secondary - side shielding wall 132 can also provide shielding for the gap between the second secondary - side shielding frame 12322 and the circuit board 2, so that the secondary - side shielding wall 132 and the second secondary - side shielding frame 12322 can provide a shielding environment for the abutment of the second secondary - side conductive terminal 12321 against the circuit board 2, thereby reducing the degree of crosstalk interference when the conductive terminal and the circuit board transmit high - speed signals.

[0056] In Figure 13 the illustrated embodiment, the plug - in insulating member 14 has a plug - in insulating member main - side guiding structure 1441 and a plug - in insulating member secondary - side guiding structure 1442, such as grooves. The plug - in insulating member main - side guiding structure 1441 and the plug - in insulating member secondary - side guiding structure 1442 can respectively guide the main - side shielding wall 131 and the secondary - side shielding wall 132, enabling the main - side shielding wall 131 and the secondary - side shielding wall 132 to enter the main - side frame separation channel P1 and the secondary - side frame separation channel P2 respectively, and also enabling the main - side shielding wall 131 and the secondary - side shielding wall 132 to abut against the circuit board 2 respectively.

[0057] It should be noted that the board - end coupling structure 112 and the wire - end coupling structure 122 can interfere with the separation of the electrical connector 12 from the board - end plug - in frame 11. The board - end coupling structure 112 and the wire - end coupling structure 122 are Figure 1 the snap - fit structure as shown, but not limited thereto. The board - end coupling structure 112 and the wire - end coupling structure 122 can choose a way other than snap - fit to interfere with the separation of the electrical connector 12 from the board - end plug - in frame 11, such as Figure 22 the track structure as shown.

[0058] As Figure 2 shown, the shielding auxiliary member 13 also has a shielding connection body 133. The shielding connection body 133 connects the main - side shielding wall 131 and the secondary - side shielding wall 132, electrically connecting the main - side shielding conductor B1 and the secondary - side shielding conductor B2. And the plug - in insulating member pushing structure 141 pushes the shielding connection body 133, causing the shielding auxiliary member 13 to abut against the circuit board 2 and elastically deforming a partial extension section of the shielding auxiliary member 13.

[0059] In Figure 9In the illustrated embodiment, the board - end plug - in frame 11 further has a board - end setting structure 113, and the board - end setting structure 113 provides for setting the shielding auxiliary member 13 and the plug - in insulating member 14, so that the electrical connector 12 can actuate the shielding auxiliary member 13 through the plug - in insulating member 14 in the board - end plug - in frame 11.

[0060] In Figures 17 to 18 the illustrated embodiment, the plug - in insulating member 14 further has a plug - in insulating member plug - in channel 143 that extends obliquely, so that the main - side plug - in member group 121 and the sub - side plug - in member group 123 can respectively enter the plug - in insulating member plug - in channel 143 and obliquely plug into the circuit board 2. However, not limited to the above, optionally, in Figure 1 the illustrated embodiment, the plug - in insulating member plug - in channel 143 extends longitudinally, so that the main - side plug - in member group 121 can respectively enter the plug - in insulating member plug - in channel 143 and longitudinally plug into the circuit board 2.

[0061] In addition, as Figures 14 to 18 shown, the electrical connector insulating rubber core 120 further has a main - side plug - in member positioning structure 1201 and a sub - side plug - in member positioning structure 1202. The main - side plug - in member positioning structure 1201 and the sub - side plug - in member positioning structure 1202 respectively position (such as snap - fit positioning) the main - side plug - in member group 121 and the sub - side plug - in member group 123, and prevent the main - side plug - in member group 121 and the sub - side plug - in member group 123 from easily leaving the plug - in insulating member plug - in channel 143.

[0062] It should be noted that the conductive member assembly of the present application can also omit some components and is not limited to the above - mentioned embodiments.

[0063] For example, the conductive member assembly of the present application can optionally include: a board - end plug - in frame, an electrical connector, a shielding auxiliary member, and a plug - in insulating member. The board - end plug - in frame is positioned on the circuit board. The board - end plug - in frame has a board - end plug - in channel and a board - end coupling structure. The electrical connector has a main - side plug - in member group and a wire - end coupling structure; the main - side plug - in member group has at least one first main - side plug - in member and at least one second main - side plug - in member. The first main - side plug - in member has a first main - side conductive terminal and a first main - side shielding frame body, and the first main - side shielding frame body extends along the side of the first main - side conductive terminal. The second main - side plug - in member has at least one second main - side conductive terminal and at least one second main - side shielding frame body, and the second main - side shielding frame body extends along the side of the second main - side conductive terminal. Among them, there is a main - side frame body separation channel between the first main - side shielding frame body and the second main - side shielding frame body. The shielding auxiliary member has at least one main - side shielding wall body, and the main - side shielding wall body has a main - side shielding wall body lapping structure. The plug - in insulating member has a plug - in insulating member pushing structure.

[0064] It should be noted that the electrical connector can be inserted into the board - end insertion frame, enabling the main - side insertion member group to enter the insertion insulation member insertion channel and the board - end insertion channel, so that the first main - side conductive terminal and the second main - side conductive terminal can respectively abut against the circuit board material; and when the electrical connector is inserted into the board - end insertion frame, the wire - end coupling structure can be coupled with the board - end coupling structure, enabling the electrical connector to actuated the shielding auxiliary member through the insertion insulation member, and making the insertion insulation member pushing structure push against the shielding auxiliary member to abut against the circuit board material, so that a partial extension section of the shielding auxiliary member is elastically deformed, enabling the main - side shielding wall body to enter the main - side frame body separation channel, and making the main - side shielding wall body overlapping structure respectively overlap the first main - side shielding frame body and the second main - side shielding frame body, such that the main - side shielding wall body, the first main - side shielding frame body and the second main - side shielding frame body are electrically connected to form a main - side shielding conductor, and enabling the main - side shielding wall body to provide shielding for the gap between the first main - side shielding frame body and the circuit board material, such that the main - side shielding wall body and the first main - side shielding frame body can provide a shielding environment for the abutment of the first main - side conductive terminal against the circuit board material, and further enabling the main - side shielding wall body to provide shielding for the gap between the second main - side shielding frame body and the circuit board material, such that the main - side shielding wall body and the second main - side shielding frame body can provide a shielding environment for the abutment of the second main - side conductive terminal against the circuit board material.

[0065] In summary, the present application provides a conductive member assembly. This conductive member assembly can be used in conjunction with a circuit board material. The electrical connector has conductive terminals, shielding frame bodies and shielding wall bodies. The conductive terminals can abut against the circuit board material to transmit electrical signals. The shielding wall bodies can abut against the shielding frame bodies, such that the shielding wall bodies and the shielding frame bodies can be electrically connected to form a shielding conductor capable of transmitting shielding signals, and the shielding wall bodies can abut against the circuit board material, enabling the shielding wall bodies to provide shielding for the gap between the shielding frame bodies and the circuit board material, such that the shielding wall bodies and the main - side shielding frame bodies can provide a shielding environment for the abutment of the conductive terminals against the circuit board material.

[0066] The above - mentioned embodiments merely illustrate the principles and effects of the present application and are not intended to limit the present application. Any person skilled in this technology can modify and change the above - mentioned embodiments without departing from the spirit and scope of the present application. Therefore, the scope of the rights protection of the present application should be as listed in the claims of the present application.

Claims

1. A conductive component assembly, the conductive component assembly being paired with a circuit board, characterized in that, The conductive component assembly includes: a board - end plug - in frame positioned on the circuit board, the board - end plug - in frame having a board - end plug - in channel and a board - end coupling structure; an electrical connector having a main - side plug - in component group and a wire - end coupling structure; the main - side plug - in component group having at least one first main - side plug - in component and at least one second main - side plug - in component, the first main - side plug - in component having a first main - side conductive terminal and a first main - side shielding frame, the first main - side shielding frame extending along the side of the first main - side conductive terminal, the second main - side plug - in component having at least one second main - side conductive terminal and at least one second main - side shielding frame, the second main - side shielding frame extending along the side of the second main - side conductive terminal, wherein there is a main - side frame separation channel between the first main - side shielding frame and the second main - side shielding frame; a shielding auxiliary component having at least one main - side shielding wall with a main - side shielding wall lapping structure; and a plug - in insulating component having a plug - in insulating component pushing structure, wherein, the electrical connector can be plugged into the board - end plug - in frame, enabling the main - side plug - in component group to enter the plug - in insulating component plug - in channel and the board - end plug - in channel, such that the first main - side conductive terminal and the second main - side conductive terminal can respectively abut against the circuit board; and when the electrical connector is plugged into the board - end plug - in frame, the wire - end coupling structure can couple with the board - end coupling structure, enabling the electrical connector to actuated the shielding auxiliary component through the plug - in insulating component, and the plug - in insulating component pushing structure to push the shielding auxiliary component against the circuit board, causing a partial extension section of the shielding auxiliary component to elastically deform, allowing the main - side shielding wall to enter the main - side frame separation channel, and the main - side shielding wall lapping structure to respectively lap the first main - side shielding frame and the second main - side shielding frame, such that the main - side shielding wall, the first main - side shielding frame and the second main - side shielding frame are electrically connected to form a main - side shielding conductor, and the main - side shielding wall can provide shielding for the gap between the first main - side shielding frame and the circuit board, such that the main - side shielding wall and the first main - side shielding frame can provide a shielding environment for the abutment of the first main - side conductive terminal against the circuit board, and the main - side shielding wall can also provide shielding for the gap between the second main - side shielding frame and the circuit board, such that the main - side shielding wall and the second main - side shielding frame can provide a shielding environment for the abutment of the second main - side conductive terminal against the circuit board.

2. The conductive component assembly according to claim 1, characterized in that, The board - end coupling structure and the wire - end coupling structure are snap - fit structures or track structures.

3. The conductive component assembly according to claim 1, wherein, The plug - in insulating component further has a plug - in insulating component coupling structure, and the plug - in insulating component coupling structure can couple with the electrical connector, enabling the plug - in insulating component and the electrical connector to move synchronously.

4. The conductive component assembly according to claim 3, characterized in that, The plug - in insulating component coupling structure is a snap - fit structure or a track structure.

5. The conductive component assembly according to claim 1, wherein, The shielding auxiliary member further has a shielding auxiliary member fitting member that fits the plugging insulating member, enabling the shielding auxiliary member and the plugging insulating member to move synchronously.

6. The conductive component assembly according to claim 1, wherein, The board-end plugging frame further has a board-end setting structure that provides for setting the shielding auxiliary member and the plugging insulating member.

7. The conductive member assembly according to claim 1, wherein, The plugging insulating member further has a plugging insulating member plugging channel that extends obliquely, enabling the main-side plugging member group to obliquely plug the circuit board via the plugging insulating member plugging channel.

8. The conductive component assembly according to claim 1, wherein, The plugging insulating member further has a plugging insulating member plugging channel that extends longitudinally, enabling the main-side plugging member group to longitudinally plug the circuit board via the plugging insulating member plugging channel.

9. The conductive component assembly according to claim 1, wherein, The electrical connector further has a primary-side plugging member group; the secondary-side plugging member group has at least one first primary-side plugging member and at least one second primary-side plugging member. The first primary-side plugging member has a first primary-side conductive terminal and a first primary-side shielding frame. The first primary-side shielding frame extends along the side of the first primary-side conductive terminal. The second primary-side plugging member has a second primary-side conductive terminal and a second primary-side shielding frame. The second primary-side shielding frame extends along the side of the second primary-side conductive terminal. Wherein, there is a primary-side frame separating channel between the first primary-side shielding frame and the second primary-side shielding frame; The shielding auxiliary member further has at least one primary-side shielding wall, and the secondary-side shielding wall has a primary-side shielding wall lapping structure; When the electrical connector plugs into the board-end plugging frame, the secondary-side plugging member group can enter the plugging insulating member plugging channel and the board-end plugging channel, allowing the first primary-side conductive terminal and the second primary-side conductive terminal to respectively abut against the circuit board, and the secondary-side shielding wall can enter the secondary-side frame separating channel, allowing the secondary-side shielding wall lapping structure to respectively lap the first primary-side shielding frame and the second primary-side shielding frame, such that the secondary-side shielding wall, the first primary-side shielding frame, and the second primary-side shielding frame are electrically connected to form a primary-side shielding conductor, and allowing the secondary-side shielding wall to provide shielding for the gap between the first primary-side shielding frame and the circuit board, such that the secondary-side shielding wall and the first primary-side shielding frame can provide a shielding environment for the abutment of the first primary-side conductive terminal against the circuit board, and also allowing the secondary-side shielding wall to provide shielding for the gap between the second primary-side shielding frame and the circuit board, such that the secondary-side shielding wall and the second primary-side shielding frame can provide a shielding environment for the abutment of the second primary-side conductive terminal against the circuit board.

10. The conductive component assembly according to claim 9, wherein, The shielding auxiliary member further has a shielding connection body that connects the main-side shielding wall and the secondary-side shielding wall, enabling the main-side shielding conductor and the secondary-side shielding conductor to be electrically connected, and the plugging insulating member pushing structure pushes the shielding connection body.