Connector, electronic equipment and vehicle

By setting up a double-layer signal shield inside the connector to form a differential pair structure, the problem of signal leakage from the connector interfering with the circuit board is solved, achieving good electromagnetic performance and signal shielding effect.

CN224097134UActive Publication Date: 2026-04-07BYD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Signal leakage from connectors can interfere with the normal operation of other components on the circuit board, and existing technologies are unable to effectively solve this problem.

Method used

A double-layer signal shielding structure is adopted. By setting first and second signal shielding components inside the connector, surrounding the internal components, a differential pair structure is formed to absorb and cancel interference signals and prevent signal leakage.

Benefits of technology

It effectively reduces the interference of connectors to other components on the circuit board, achieves good electromagnetic performance, and prevents signal leakage from interfering with external components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a connector, electronic equipment and a vehicle. The connector comprises a first connecting seat and a second connecting seat. The second connecting seat and the first connecting seat are in butt joint and are electrically connected. Wherein the first connecting seat is provided with a first signal shielding piece; the first signal shielding member is configured to surround an internal component of the connector. Therefore, interference signals generated by components in the connector can be shielded by using the first signal shielding piece, so that the interference signals are prevented from leaking to cause interference to other components on a circuit board.
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Description

Technical Field

[0001] This application relates to the field of electronic technology, and more particularly to a connector, electronic device, and vehicle. Background Technology

[0002] In related technologies, as automotive electronic products become increasingly sophisticated and feature-rich, connectors require more signal channels to achieve signal connections between circuit boards and meet expected functionalities. With the increase in signal channels, the likelihood of connector signal leakage also increases. Connector signal leakage can interfere with the normal operation of other components on the circuit board. Utility Model Content

[0003] This application provides a connector, electronic device, and vehicle that can reduce the possibility of signal leakage from the connector's own components and effectively reduce interference from the connector to other components on the circuit board, thereby at least partially solving the above-mentioned technical problems.

[0004] To achieve the above objectives, according to a first aspect of this application, a connector is provided, comprising:

[0005] First connecting seat;

[0006] The second connector mates with and is electrically connected to the first connector.

[0007] The first connector has a first signal shield, which is configured to surround internal components of the connector.

[0008] Optionally, the first connector includes:

[0009] A first signal connection assembly, wherein the first signal shield is disposed within the first signal connection assembly.

[0010] Optionally, the first signal connection component includes:

[0011] The first signal connection section has an interval of at least two;

[0012] The first grounding connection portion is spaced at least two apart, and two first signal connection portions are provided between each two adjacent first grounding connection portions.

[0013] Optionally, along the spacing direction of the first grounding connection portion, the projection of the first grounding connection portion covers the projection of the first signal connection portion.

[0014] Optionally, the first signal connection component further includes:

[0015] The first mounting part, the first signal connection part and the first grounding connection part are all fixed to the first mounting part.

[0016] Optionally, the second connector has a second signal shield, wherein the second signal shield is mated with and electrically connected to the first signal shield.

[0017] Optionally, the second connector includes:

[0018] The second signal connection assembly, wherein the second signal shielding is disposed within the second signal connection assembly.

[0019] Optionally, the second signal connection component includes:

[0020] The second signal connection section is spaced at least two intervals.

[0021] The second grounding connection is spaced at least two apart, and two second signal connection parts are provided between each pair of adjacent second grounding connection parts.

[0022] Optionally, along the spacing direction of the second grounding connection portion, the projection of the second grounding connection portion covers the projection of the second signal connection portion.

[0023] Optionally, the second signal connection portion is configured as a serpentine shape.

[0024] Optionally, the second signal connection component further includes:

[0025] The second mounting part, the second signal connection part and the second grounding connection part are all provided in the second mounting part.

[0026] Optionally, the first connector includes a first signal connection component, the first signal connection component includes a first mounting portion, and the first mounting portion is mated with the second mounting portion.

[0027] Optionally, the first connector includes a first signal connection component, which includes a first signal connection portion and a first ground connection portion;

[0028] The first signal connection part is electrically connected to the second signal connection part, and the first ground connection part is electrically connected to the second ground connection part.

[0029] Optionally, the second signal shield is provided with an elastic member protruding toward the first signal shield, and the elastic member abuts against the first signal shield.

[0030] Optionally, the second signal shielding member has a through hole, and the elastic member includes:

[0031] The first bending section is connected to the second signal shield and bends towards the inside of the second signal shield;

[0032] The second bending section is connected to the first bending section and extends through the through hole to the second signal shield.

[0033] The abutting section is connected to the second bending section, and the abutting section abuts against the first signal shield.

[0034] According to a second aspect of this application, an electronic device is provided, comprising:

[0035] First circuit board;

[0036] The second circuit board is disposed at a distance from the first circuit board;

[0037] As mentioned above, connectors;

[0038] The connector is disposed between the first circuit board and the second circuit board, the first connector is disposed on the first circuit board and electrically connected, and the second connector is disposed on the second circuit board and electrically connected.

[0039] According to a third aspect of this application, a vehicle is also provided, including the connector as described above, or the electronic device as described above.

[0040] In the connectors, electronic devices, and vehicles of this application embodiment, by having a first signal shielding member in the first connection portion and the first signal shielding member surrounding the internal components of the connector, the first signal shielding member can be used to shield the interference signals generated by the internal components of the connector, so as to prevent the interference signals from leaking out and interfering with other components on the circuit board.

[0041] Other features and advantages of this application will be described in detail in the following detailed description section. Attached Figure Description

[0042] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0043] To gain a more complete understanding of this application and its beneficial effects, the following description will be provided in conjunction with the accompanying drawings, wherein the same reference numerals in the following description denote the same parts.

[0044] Figure 1 This is an exploded view of the connector provided in an exemplary embodiment of this application;

[0045] Figure 2This is a schematic diagram of the structure of the first connector provided in an exemplary embodiment of this application;

[0046] Figure 3 This is an exploded structural diagram of the first connecting seat provided in an exemplary embodiment of this application;

[0047] Figure 4 This is a schematic diagram of the structure of the first signal connection component provided in an exemplary embodiment of this application;

[0048] Figure 5 This is a schematic diagram of the structure of the second connector provided in an exemplary embodiment of this application;

[0049] Figure 6 This is an exploded structural diagram of the second connecting seat provided in an exemplary embodiment of this application;

[0050] Figure 7 This is a schematic diagram of the structure of the second signal connection component provided in an exemplary embodiment of this application;

[0051] Figure 8 This is a schematic diagram of the structure of the second signal shield provided in an exemplary embodiment of this application;

[0052] Figure 9 This is a cross-sectional view of the second signal shield provided in an exemplary embodiment of this application;

[0053] Figure 10 This is a cross-sectional view of the connector provided in an exemplary embodiment of this application.

[0054] Explanation of reference numerals in the attached figures:

[0055] 1. First connector; 11. First signal shield; 12. First signal connection assembly; 121. First signal connection part; 122. First grounding connection part; 123. First mounting part;

[0056] 2. Second connector; 21. Second signal shield; 211. Through hole; 22. Second signal connection assembly; 221. Second signal connection part; 222. Second grounding connection part; 223. Second mounting part;

[0057] 3. Elastic component; 31. First bending section; 32. Second bending section; 33. Abutment section;

[0058] 4. First circuit board;

[0059] 5. Second circuit board. Detailed Implementation

[0060] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the protection scope of this application.

[0061] According to the first aspect of this application, referring to Figures 1 to 10 This application provides a connector. The connector includes a first connector 1 and a second connector 2. The second connector 2 mates with and is electrically connected to the first connector 1. The first connector 1 has a first signal shield 11. The first signal shield 11 is configured to surround internal components of the connector.

[0062] In this embodiment of the application, by having the first connection portion have a first signal shield 11, and the first signal shield 11 surrounds the internal components of the connector, the first signal shield 11 can be used to shield the interference signals generated by the internal components of the connector, so as to prevent the interference signals from leaking out and interfering with other components on the circuit board.

[0063] It is understandable that one of the first connector 1 and the second connector 2 serves as the male connector, and the other as the female connector. When the first connector 1 is disposed on the first circuit board 4 and the second connector 2 is disposed on the second circuit board 5, the electrical connection between the first circuit board 4 and the second circuit board 5 can be achieved through the mating and electrical connection of the first connector 1 and the second connector 2. Of course, the first connector 1 and the second connector 2 can also be applied to other electrical connection structures to achieve electrical connections between other connection structures.

[0064] In some embodiments, the first signal shield 11 is electrically connected to the ground terminal of the first circuit board 4.

[0065] In some embodiments, the first signal shield 11 is a metal component. For example, the first signal shield 11 is made of materials such as copper, iron, or stainless steel. The material of the first signal shield 11 is not limited in the embodiments of this application.

[0066] like Figure 2 As shown, in some embodiments, the first connector 1 includes a first signal connection component 12. A first signal shield 11 surrounds the first signal connection component 12.

[0067] It is understandable that the first signal connection component 12, as an internal component of the connector, will generate interference signals during its operation. The first signal shield 11 is disposed around the first signal connection component 12, so that the first signal shield 11 can be used to shield the signals of the first signal connection component 12 to prevent signal leakage and interference to components outside the circuit board.

[0068] like Figure 4 As shown, in some embodiments, the first signal connection assembly 12 includes a first signal connection portion 121 and a first ground connection portion 122. The first signal connection portions 121 are spaced at least two apart. The first ground connection portions 122 are spaced at least two apart. Two first signal connection portions 121 are provided between every two adjacent first ground connection portions 122.

[0069] It is understood that the first signal connection portion 121 is used to electrically connect the signal terminal of the first circuit board 4, and the first ground connection portion 122 is used to electrically connect the ground terminal of the first circuit board 4. The first signal connection portion 121 is S, and the first ground connection portion 122 is G. By providing two first signal connection portions 121 between every two adjacent first ground connection portions 122, a differential pair structure of GSSG can be formed.

[0070] When the first signal connection part 121 radiates outward noise, the first ground connection part 122 can absorb the noise and transmit it to the ground layer of the first circuit board 4. Thus, the noise generated by the first signal connection part 121 will not interfere with external components, achieving good electromagnetic performance.

[0071] One of the two first signal connection portions 121 located at two adjacent first ground connection portions 122 is connected to the positive terminal, and the other is connected to the negative terminal. When the first signal connection assembly 12 is working, the first signal connection portion 121 connected to the positive terminal and the first signal connection portion 121 connected to the negative terminal can form a derived waveform, which can at least partially cancel out signal interference. Thus, it further prevents noise leakage from causing interference to external components and achieves good electromagnetic performance.

[0072] Please continue reading. Figure 4 In some embodiments, along the spacing direction of the first ground connection portion 122, the projection of the first ground connection portion 122 covers the projection of the first signal connection portion 121.

[0073] It is understood that the first grounding connection 122 covers the first signal connection 121 so that the first grounding connection 122 can completely cover the first signal connection 121 in both the length and height directions, thereby ensuring that the first grounding connection 122 can reliably absorb the noise generated by the first signal connection 121.

[0074] For example, the first grounding connection 122 is T-shaped, and the first signal connection 121 is L-shaped. The length of the first grounding connection 122 is greater than the length of the first signal connection 121, and the height of the first grounding connection 122 is greater than the height of the first signal connection 121.

[0075] For example, the first signal connection portion 121 is arranged in two columns, and each column of the first signal connection portion 121 is L-shaped. The first ground connection portion 122 is arranged in one column and is T-shaped. One column of the first ground connection portion 122 corresponds to two columns of the first signal connection portion 121, so that the first signal connection portion 121 and the first ground connection portion 122 in each column are arranged according to the differential pair structure of GSSG. At this time, after the length of the first ground connection portion 122 is greater than the length of the two first signal connection portions 121, the height of the first ground connection portion 122 is greater than the height of the first signal connection portion 121.

[0076] like Figure 3 As shown, in some embodiments, the first signal connection assembly 12 further includes a first mounting portion 123. The first signal connection portion 121 and the first grounding connection portion 122 are both fixed to the first mounting portion 123.

[0077] Understandably, the first mounting portion 123 is used to fix the first signal connection portion 121 and the first grounding connection portion 122. The first mounting portion 123 has several first through holes through which the first signal connection portion 121 can protrude. When the first connector 1 and the second connector 2 are mated, the portion of the first signal connection portion 121 protruding from the first through holes can form an electrical connection with the second signal connection portion 221 of the second connector 2.

[0078] In some embodiments, the first mounting part 123 is a plastic part.

[0079] like Figure 5 As shown, in some embodiments, the second connector 2 has a second signal shield 21. The second signal shield 21 is mated with and electrically connected to the first signal shield 11.

[0080] It is understandable that by having the second connection part have a second signal shield 21, and the second signal shield 21 surrounding the internal components of the connector, the second signal shield 21 can be used to shield the interference signals generated by the internal components of the connector, so as to prevent the interference signals from leaking out and interfering with other components on the circuit board.

[0081] In this embodiment, a double-layer signal shield is formed by the first signal shield 11 and the second signal shield 21, which can effectively prevent interference signals generated by the internal components of the connector from leaking out and interfering with other components on the circuit board.

[0082] In some embodiments, the second signal shield 21 is electrically connected to the ground terminal of the second circuit board 5.

[0083] In some embodiments, the second signal shield 21 is a metal component. For example, the second signal shield 21 is made of materials such as copper, iron, or stainless steel. The material of the second signal shield 21 is not limited in the embodiments of this application.

[0084] In some embodiments, if the size of the second signal shield 21 is larger than the size of the first signal shield 11, then the second signal shield 21 is fitted over the first signal shield 11. Alternatively, if the size of the second signal shield 21 is smaller than the size of the first signal shield 11, then the first signal shield 11 is fitted over the second signal shield 21.

[0085] When the first signal shield 11 and the second signal shield 21 are docked and electrically connected, the first signal connection component 12 and the second signal connection component 22 are both simultaneously enclosed within the first signal shield 11 and the second signal shield 21.

[0086] like Figure 6 As shown, in some embodiments, the second connector 2 includes a second signal connection component 22. A second signal shield 21 surrounds the second signal connection component 22.

[0087] Understandably, the second signal connection component 22, as an internal component of the connector, will generate interference signals during its operation. The second signal shield 21, which surrounds the second signal connection component 22, can be used to shield the signals generated by the second signal connection component 22, thereby preventing signal leakage and interference to components outside the circuit board.

[0088] like Figure 7 As shown, in some embodiments, the second signal connection component 22 includes a second signal connection portion 221 and a second ground connection portion 222. The second signal connection portions 221 are spaced at least two apart. The second ground connection portions 222 are spaced at least two apart. Two second signal connection portions 221 are provided between each pair of adjacent second ground connection portions 222.

[0089] It is understood that the second signal connection portion 221 is used to electrically connect the signal terminal of the second circuit board 5, and the second ground connection portion 222 is used to electrically connect the ground terminal of the second circuit board 5. The second signal connection portion 221 is S, and the second ground connection portion 222 is G. By providing two second signal connection portions 221 between each pair of adjacent second ground connection portions 222, a differential pair structure of GSSG can be formed.

[0090] When the second signal connection part 221 radiates outward noise, the second ground connection part 222 can absorb the noise and transmit it to the ground layer of the second circuit board 5. Thus, the noise generated by the second signal connection part 221 will not interfere with external components, achieving good electromagnetic performance.

[0091] One of the two second signal connection portions 221 located at two adjacent second grounding connection portions 222 is connected to the positive terminal, and the other is connected to the negative terminal. When the second signal connection assembly 22 is working, the second signal connection portion 221 connected to the positive terminal and the second signal connection portion 221 connected to the negative terminal can form a derived waveform, which can at least partially cancel out signal interference. Thus, it further prevents noise leakage from causing interference to external components and achieves good electromagnetic performance.

[0092] Please continue reading. Figure 7 In some embodiments, along the spacing direction of the second ground connection portion 222, the projection of the second ground connection portion 222 covers the projection of the second signal connection portion 221.

[0093] It is understood that the second grounding connection 222 covers the second signal connection 221 so that the second grounding connection 222 can completely cover the second signal connection 221 in both the length and height directions, thereby ensuring that the second grounding connection 222 can reliably absorb the noise generated by the second signal connection 221.

[0094] For example, the second grounding connection portion 222 is flat, and the second signal connection portion 221 is S-shaped. The second grounding connection portion 222 covers the second signal connection portion 221 in both the length and height directions.

[0095] For example, the first signal connection portion 121 is configured in two columns, and each column of the first signal connection portion 121 is configured in a serpentine shape. The first ground connection portion 122 is configured in one column and is flat. One column of the first ground connection portion 122 corresponds to two columns of the first signal connection portion 121, so that the first signal connection portion 121 and the first ground connection portion 122 in each column are arranged according to the differential pair structure of GSSG. At this time, after the length of the first ground connection portion 122 is greater than the length of the two first signal connection portions 121, the height of the first ground connection portion 122 is greater than the height of the first signal connection portion 121.

[0096] Please continue reading. Figure 7 In some embodiments, the second signal connection portion 221 is configured in a serpentine shape.

[0097] Understandably, designing the second signal connection portion 221 in a serpentine shape provides the advantage of a long redundant length. When the first connector 1 mates with the second connector 2, the first signal connection portion 121 and the second signal connection portion 221 abut and become electrically connected. The serpentine structure of the second signal connection portion 221 reduces the insertion and removal resistance between the first and second mounting bases, providing a good insertion and removal feel, facilitating operation, and ensuring the connector is not easily damaged.

[0098] In some embodiments, the second signal connection portion 221 is an elastic connection portion. When the first connecting seat 1 and the second connecting seat 2 are mated, the first signal connection portion 121 and the second signal connection portion 221 abut and are electrically connected. At this time, the second signal connection portion 221 can be squeezed and deformed by the first signal connection portion 121. Thus, based on the force of this squeezing and deformation, the first signal connection portion 121 and the second signal connection portion 221 can form a reliable connection.

[0099] Please continue reading. Figure 6 In some embodiments, the second signal connection assembly 22 further includes a second mounting portion 223. Both the second signal connection portion 221 and the second grounding connection portion 222 are disposed on the second mounting portion 223.

[0100] Understandably, the second mounting portion 223 is used to fix the second signal connection portion 221 and the second grounding connection portion 222. The second mounting portion 223 has several second through holes through which the second signal connection portion 221 can protrude. When the first connecting seat 1 and the second connecting seat 2 are mated, the portion of the first signal connection portion 121 protruding from the first through hole can abut against and electrically connect with the portion of the second signal connection portion 221 protruding from the second through hole.

[0101] In some embodiments, the second mounting part 223 is a plastic part.

[0102] like Figure 10 As shown, in some embodiments, the first connector 1 includes a first signal connection component 12, the first signal connection component 12 includes a first mounting portion 123, and the first mounting portion 123 is mated with a second mounting portion 223.

[0103] It is understandable that when the first connector 1 and the second connector 2 are mated, the first mounting portion 123 and the second mounting portion 223 are mated. At this time, the portion of the first signal connection portion 121 that protrudes from the first through hole can abut against and be electrically connected to the portion of the second signal connection portion 221 that protrudes from the second through hole, thereby realizing the electrical connection between the first connector 1 and the second connector 2.

[0104] like Figure 10As shown, in some embodiments, the first connector 1 includes a first signal connection component 12, which includes a first signal connection portion 121 and a first ground connection portion 122. The first signal connection portion 121 is electrically connected to the second signal connection portion 221, and the first ground connection portion 122 is electrically connected to the second ground connection portion 222.

[0105] It is understood that the first signal connection part 121 and the second signal connection part 221 are electrically connected to realize signal transmission between the first circuit board 4 corresponding to the first connector 1 and the second circuit board 5 corresponding to the second connector 2. Specifically, the first signal connection part 121 and the second signal connection part 221 correspond one-to-one, and the first ground connection part 122 and the second ground connection part 222 correspond one-to-one.

[0106] like Figure 8 As shown, in some embodiments, the second signal shield 21 is provided with an elastic member 3 protruding toward the first signal shield 11, and the elastic member 3 abuts against the first signal shield 11.

[0107] It is understandable that after the first signal shield 11 and the second signal shield 21 are connected, the elastic member 3 can apply force between them to ensure a reliable connection between the first signal shield 11 and the second signal shield 21.

[0108] Understandably, a gap fit is used between the first signal shield 11 and the second signal shield 21 to facilitate mutual insertion and removal. Due to the existence of the gap, the elastic deformation of the elastic member 3 not only creates a connecting force between the first signal shield 11 and the second signal shield 21, but also achieves their electrical connection.

[0109] In some embodiments, at least two elastic elements 3 are provided, and the at least two elastic elements 3 are spaced apart along the periphery of the second signal shield 21. Thus, when the first signal shield 11 and the second signal shield 21 are mated, they can form a multi-contact connection, improving the reliability of the mating between the first signal shield 11 and the second signal shield 21.

[0110] like Figure 9 As shown, in some embodiments, the second signal shield 21 has a through hole 211, and the elastic member 3 includes a first bending section 31, a second bending section 32, and an abutting section 33. The first bending section 31 is connected to the second signal shield 21 and bends towards the inside of the second signal shield 21. The second bending section 32 is connected to the first bending section 31 and passes through the through hole 211 into the second signal shield 21. The abutting section 33 is connected to the second bending section 32. The abutting section 33 abuts against the first signal shield 11.

[0111] Understandably, configuring the elastic element 3 as a first bending section 31, a second bending section 32, and an abutment section 33 gives it the advantage of a long redundant length. When the first connector 1 mates with the second connector 2, the first signal shield abuts and is electrically connected to the second signal shield. The bending structure and inherent elasticity of the elastic element 3 reduce the insertion and removal resistance between the first and second mounting seats, providing a good insertion and removal feel, facilitating operation, and ensuring the connector is not easily damaged.

[0112] In some embodiments, the first bending segment 31, the second bending segment 32, and the abutting segment 33 are integrally formed. The first bending segment 31, the second bending segment 32, and the abutting segment 33 form a generally S-shaped elastic element 3.

[0113] When the first signal shield 11 and the second signal shield 21 are mated, the abutment section 33 can move towards the square shape closer to the through hole 211 under the action of the first signal shield 11. The deformation of the abutment section 33 will drive the second bending section 32 and the first bending section 31 to adapt to the deformation. Thus, the elastic member 3 has the advantage of a long redundant length.

[0114] In some embodiments, at least two through holes 211 are provided, and the at least two through holes 211 are spaced apart along the periphery of the second signal shield 21. One elastic member 3 corresponds to one through hole 211.

[0115] According to a second aspect of this application, an electronic device is provided, which includes the connector described above. This electronic device possesses all the beneficial effects of the connector described above, which will not be elaborated further herein.

[0116] In some embodiments, the electronic device further includes a first circuit board 4 and a second circuit board 5. The second circuit board 5 is spaced apart from the first circuit board 4. A connector is disposed between the first circuit board 4 and the second circuit board 5. A first connector 1 is disposed on the first circuit board 4 and electrically connected thereto. A second connector 2 is disposed on the second circuit board 5 and electrically connected thereto.

[0117] It is understandable that the connector is positioned between the first circuit board 4 and the second circuit board 5 to enable signal transmission between them. Based on the connector's first signal shield 11 and second signal shield 21, and the arrangement of the internal components, signal leakage from the internal components is effectively prevented, and interference from the connector to other components on the circuit board is significantly reduced.

[0118] In some embodiments, the electronic device includes a vehicle intelligent driving domain controller, an in-vehicle T-BOX (Telematics BOX, telematics processor), a gateway controller, a cockpit entertainment host, a main screen, a secondary screen, etc.

[0119] According to a third aspect of this application, a vehicle is provided that includes the aforementioned electronic device or the aforementioned connector, and the vehicle has all the beneficial effects of the aforementioned electronic device and the aforementioned connector, which will not be elaborated further in this application.

[0120] The vehicle may be a gasoline-powered vehicle, a plug-in hybrid electric vehicle, or a new energy vehicle, etc., and this application does not make any specific restrictions.

[0121] In the description of this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more features. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0122] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.

[0123] The embodiments, implementation methods, and related technical features of this application can be combined and substituted for each other without conflict.

[0124] The above are merely preferred embodiments of this application and are not intended to limit this application in any way. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of this application without departing from the scope of the technical solution of this application shall still fall within the scope of the technical solution of this application.

Claims

1. A connector, characterized in that, include: First connecting seat; The second connector mates with and is electrically connected to the first connector. The first connector has a first signal shield, which is configured to surround internal components of the connector.

2. The connector according to claim 1, characterized in that, The first connector includes: A first signal connection assembly, wherein the first signal shield is disposed within the first signal connection assembly.

3. The connector according to claim 2, characterized in that, The first signal connection component includes: The first signal connection section has an interval of at least two; The first grounding connection portion is spaced at least two apart, and two first signal connection portions are provided between each two adjacent first grounding connection portions.

4. The connector according to claim 3, characterized in that, Along the spacing direction of the first grounding connection portion, the projection of the first grounding connection portion covers the projection of the first signal connection portion.

5. The connector according to claim 4, characterized in that, The first signal connection component further includes: The first mounting part, the first signal connection part and the first grounding connection part are all fixed to the first mounting part.

6. The connector according to claim 1, characterized in that, The second connector has a second signal shield, wherein the second signal shield is mated with and electrically connected to the first signal shield.

7. The connector according to claim 6, characterized in that, The second connector includes: The second signal connection assembly, wherein the second signal shielding is disposed within the second signal connection assembly.

8. The connector according to claim 7, characterized in that, The second signal connection component includes: The second signal connection section is spaced at least two intervals. The second grounding connection is spaced at least two apart, and two second signal connection parts are provided between each pair of adjacent second grounding connection parts.

9. The connector according to claim 8, characterized in that, Along the spacing direction of the second grounding connection portion, the projection of the second grounding connection portion covers the projection of the second signal connection portion.

10. The connector according to claim 9, characterized in that, The second signal connection part is configured as a serpentine shape.

11. The connector according to claim 10, characterized in that, The second signal connection component also includes: The second mounting part, the second signal connection part and the second grounding connection part are all provided in the second mounting part.

12. The connector according to claim 11, characterized in that, The first connector includes a first signal connection component, the first signal connection component includes a first mounting part, and the first mounting part is mated with the second mounting part.

13. The connector according to claim 8, characterized in that, The first connector includes a first signal connection component, which includes a first signal connection portion and a first ground connection portion; The first signal connection part is electrically connected to the second signal connection part, and the first ground connection part is electrically connected to the second ground connection part.

14. The connector according to claim 6, characterized in that, The second signal shield has an elastic member protruding toward the first signal shield, and the elastic member abuts against the first signal shield.

15. The connector according to claim 14, characterized in that, The second signal shielding component has a through hole, and the elastic component includes: The first bending section is connected to the second signal shield and bends towards the inside of the second signal shield; The second bending section is connected to the first bending section and extends through the through hole to the second signal shield. The abutting section is connected to the second bending section, and the abutting section abuts against the first signal shield.

16. An electronic device, characterized in that, include: First circuit board; The second circuit board is disposed at a distance from the first circuit board; The connector as described in any one of claims 1 to 15; The connector is disposed between the first circuit board and the second circuit board, the first connector is disposed on the first circuit board and electrically connected, and the second connector is disposed on the second circuit board and electrically connected.

17. A vehicle, characterized in that, Includes the connector as described in any one of claims 1 to 15, or the electronic device as described in claim 16.