CONNECTOR AND COMMUNICATION DEVICE
20240039213 ยท 2024-02-01
Inventors
Cpc classification
H01R13/6471
ELECTRICITY
International classification
H01R13/6471
ELECTRICITY
Abstract
A connector may be disposed in the communication device, and may be signally connected to a circuit board in the communication device. The connector may include a terminal module and a shielding part. The terminal module includes a plurality of connection terminals, and the plurality of connection terminals include a signal terminal and a ground terminal. The connection terminal includes a first end, a second end, and a terminal body that connects the first end and the second end. The shielding part includes a shielding body and a contact arm. In addition, the contact arm may be elastically abutted against the ground terminal, to implement an electrical connection between the contact arm and the ground terminal. By using the connector provided in this application, crosstalk performance of the terminal module can be improved, to enhance signal transmission performance of the communication device.
Claims
1. A connector, comprising a terminal module and a shielding part, wherein the terminal module comprises a plurality of connection terminals, the plurality of connection terminals comprise a signal terminal and a ground terminal, and the connection terminal comprises a first end and a second end, and a terminal body that connects the first end and the second end; and the shielding part comprises a shielding body and a contact arm, the contact arm is fastened to the shielding body, the shielding body covers at least a part of the terminal body, the contact arm is elastically abutted against the ground terminal, and the contact arm is electrically connected to the ground terminal.
2. The connector according to claim 1, wherein the terminal module further comprises a fastening part, the fastening part is fastened to terminal bodies of the plurality of connection terminals, and the fastening part is filled between two adjacent connection terminals.
3. The connector according to claim 2, wherein the shielding part is provided with a mounting hole, and the fastening part is provided with a holding structure; and the holding structure is inserted into the mounting hole and is in an interference fit with the mounting hole.
4. The connector according to claim 2, wherein the shielding part further comprises an abutting part connected to the shielding body, and the abutting part is abutted against the fastening part.
5. The connector according to claim 1, wherein the shielding part further comprises an extension part connected to the shielding body, and the extension part extends from the shielding body to the second end of the connection terminal; and the contact arm is disposed at an end that is of the extension part and that is away from the shielding body, and the contact arm is in conductive contact with the ground terminal.
6. The connector according to claim 1, wherein the plurality of connection terminals comprise a plurality of signal terminals and a plurality of ground terminals; and spacing between two adjacent signal terminals is 0.7 to 2.5 times a thickness of the signal terminal, spacing between the signal terminal and an adjacent ground terminal is 0.7 to 2.5 times the thickness of the signal terminal, and spacing between the signal terminal and the shielding part is 0.7 to 2.5 times the thickness of the signal terminal.
7. The connector according to claim 6, wherein the connector comprises two terminal modules, and the two terminal modules are fit each other, and in an arrangement direction of the plurality of connection terminals, ground terminals at corresponding positions of the two terminal modules are disposed in a staggered manner.
8. The connector according to claim 7, wherein the shielding part is disposed on each terminal module, a pressing block is further disposed between the two terminal modules, and the pressing block presses the shielding part towards the corresponding terminal module.
9. The connector according to claim 1, wherein the shielding part is an integrally formed structure, and the contact arm is a bent part that is formed on the shielding body and that is bent towards a side of the ground terminal.
10. The connector according to claim 1, wherein the connector may further comprise a housing, the housing has a first surface and a second surface that are disposed opposite to each other, the housing comprises a mounting groove, and the mounting groove runs through the housing in a direction from the first surface to the second surface; and the terminal module is mounted in the mounting groove.
11. The connector according to claim 10, wherein the first end of the connection terminal is exposed from the first surface, and the first end may be signally connected to a circuit board; and the second end of the connection terminal is exposed from the second surface, and the second end is connected to a cable.
12. The connector according to claim 10, wherein the shielding part further comprises a contact point, the contact point is located on the shielding body, and the contact point is in conductive contact with the housing.
13. The connector according to claim 10, wherein the connector further comprises a protection structure, and the protection structure covers the terminal module, and is fastened to the terminal module and the housing.
14. The connector according to claim 1, wherein the connector may further comprise a housing, the housing comprises a fixed housing and a conductive housing, the fixed housing has a first surface and a second surface that are disposed opposite to each other, the fixed housing comprises a mounting groove, and the mounting groove runs through the housing in a direction from the first surface to the second surface; and the terminal module is mounted in the mounting groove, and the conductive housing is disposed to cover the terminal module, to implement grounding of the terminal module.
15. The connector according to claim 14, wherein the first end of the connection terminal is hidden in the fixed housing, and a circuit board may be inserted into the mounting groove on a side of the first surface of the fixed housing and is signally connected to the first end; and the second end of the connection terminal is exposed from the second surface, and the second end is connected to a cable.
16. A communication device, comprising a circuit board and a connector, comprising a terminal module and a shielding part, wherein the terminal module comprises a plurality of connection terminals, the plurality of connection terminals comprise a signal terminal and a ground terminal, and the connection terminal comprises a first end and a second end, and a terminal body that connects the first end and the second end; and the shielding part comprises a shielding body and a contact arm, the contact arm is fastened to the shielding body, the shielding body covers at least a part of the terminal body, the contact arm is elastically abutted against the ground terminal, and the contact arm is electrically connected to the ground terminal, wherein a connection terminal of the connector is signally connected to the circuit board.
17. The communication device according to claim 16, wherein the terminal module further comprises a fastening part, the fastening part is fastened to terminal bodies of the plurality of connection terminals, and the fastening part is filled between two adjacent connection terminals.
18. The communication device according to claim 17, wherein the shielding part is provided with a mounting hole, and the fastening part is provided with a holding structure; and the holding structure is inserted into the mounting hole and is in an interference fit with the mounting hole.
19. The communication device according to claim 17, wherein the shielding part further comprises an abutting part connected to the shielding body, and the abutting part is abutted against the fastening part.
20. The communication device according to claim 16, wherein the shielding part further comprises an extension part connected to the shielding body, and the extension part extends from the shielding body to the second end of the connection terminal; and the contact arm is disposed at an end that is of the extension part and that is away from the shielding body, and the contact arm is in conductive contact with the ground terminal.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
REFERENCE NUMERALS
[0039] 01Structural part; 02Connector; 03Cable;
[0040] 1Housing; 1aFixed housing; 1bConductive housing; 101First surface; 102Second surface; 103Mounting groove;
[0041] 104Limit structure; 2Terminal module; 201Connection terminal; 201aGround terminal; 201bSignal terminal;
[0042] 2011First end; 2012Second end; 2013Terminal body; 202Fixing part; 2021Holding structure;
[0043] 3Protection structure;
[0044] 4Cable; 5Shielding part; 501Shielding body; 5011Mounting hole; 502Contact arm; 503Abutting part; 504Contact point;
[0045] 505Extension part; 6Plug
DESCRIPTION OF EMBODIMENTS
[0046] To make the objectives, technical solutions, and advantages of this application clearer, the following further describes this application in detail with reference to the accompanying drawings. It should be noted that in descriptions of this application, at least one means one or more, and a plurality of means two or more. In view of this, in embodiments of the present invention, a plurality of may also be understood as at least two. The term and/or describes an association relationship for describing associated objects and represents that three relationships may exist. For example, A and/or B may represent the following three cases: Only A exists, both A and B exist, and only B exists. In addition, the character / generally indicates an or relationship between the associated objects. In addition, it should be understood that, in the descriptions of this application, terms such as first and second are merely used for distinguishing and description, but should not be understood as indicating or implying relative importance, or should not be understood as indicating or implying a sequence.
[0047] Reference to an embodiment, some embodiments, or the like described in this specification indicates that one or more embodiments of this application include a specific feature, structure, or characteristic described with reference to the embodiment. Therefore, in this specification, statements, such as in an embodiment, in some embodiments, in some other embodiments, and in other embodiments, that appear at different places in this specification do not necessarily mean reference to a same embodiment, instead, they mean one or more but not all of the embodiments, unless otherwise specifically emphasized. The terms include, comprise, have, and their variants all mean include but is not limited to, unless otherwise specifically emphasized.
[0048] To facilitate understanding of a connector provided in embodiments of this application, an application scenario of the connector provided in embodiments of this application is first described. The connector provided in embodiments of this application may be applied to various communication devices. For example, the connector may be applied to a communication device such as a notebook computer, a mobile phone, or a tablet computer. As a connection component in the communication device, the connector may be used as a bridge for connecting between various functional modules, to implement signal transmission between the functional modules.
[0049] Reference may be made to
[0050] In a current communication equipment system, as a rate and power of a Serdes increase, crosstalk gradually becomes a main factor that affects performance of the connector. The crosstalk refers to a coupling effect of interference caused by a harmful electrical signal generated when a harmful signal is transmitted from one network to another network. In this application, the crosstalk is crosstalk between different connection terminals (where the connection terminal is a metal lead used to transmit a signal or provide a return path for the signal) in the connector. Therefore, a shielding manner and shielding performance of the connector become critical.
[0051] However, an existing shielding structure solution of the connector is excessively complex, which causes an increase in processing costs of a shielding structure. In addition, this also causes difficulty of implementing assembly and automation of the shielding structure in the connector, resulting in reducing stability of shielding contact and deteriorating the shielding performance.
[0052] The connector provided in this application is intended to resolve the foregoing problem, to improve the crosstalk in the connector and improve signal transmission performance of the communication device.
[0053] Refer to
[0054] For ease of understanding the structure of the connector in this embodiment of this application, reference may be made to
[0055] Reference may be still made to
[0056] Reference may be still made to
[0057] It may be understood that, in this application, the connector may include one or more terminal modules 2 based on a requirement of a specific application scenario. When the connector includes the plurality of terminal modules 2, the plurality of terminal modules 2 may be signally connected, or may be disposed independently. Correspondingly, one or more mounting grooves 103 may be disposed on the housing 1, so that the connector can be disposed in one mounting groove 103 in a one-to-one correspondence. For example, in the embodiment shown in
[0058] As a key structure for connecting the connector to the circuit board, the terminal module 2 may include a connection terminal 201. There may be a plurality of connection terminals 201. The plurality of connection terminals 201 may be, but is not limited to, a power terminal, a ground terminal, a signal terminal configured to implement other signal transmission, or the like. In addition, in this application, cross-sectional areas of the connection terminals 201 may be the same or may be different, and may be adjusted based on a requirement of a signal transmitted by the connection terminal 201.
[0059] It can be learned from the foregoing descriptions of the housing 1 that the mounting groove 103 runs through the housing 1. In this embodiment of this application, reference may be made to
[0060] In this application, a specific shape of the connection terminal 201 is not limited. For example, in the foregoing embodiment, the first end 2011 of the connection terminal 201 is bent to form the connection part. In this case, the connection terminal 201 may be in an L-shaped structure.
[0061] In some embodiments of this application, when the plurality of connection terminals 201 of the terminal module 2 are arranged, for example, reference may be made to
[0062] Refer to
[0063] Reference may be still made to
[0064] Refer to
[0065] Refer to
[0066] It may be understood from the descriptions of the connection terminal 201 in the foregoing embodiment that, to reduce crosstalk between the connection terminals 201, the terminal body 2013 of the connection terminal 201 may be shielded. Therefore, a shielding manner for the terminal body 2013 affects overall signal transmission performance of the connection terminal 201. Therefore, reference may be made to
[0067] When the shielding part 5 is specifically disposed, reference may be made to
[0068] The contact arm 502 of the shielding part 5 may be configured to be in conductive contact with the ground terminal 201a in the connection terminal 201. In some embodiments of this application, the contact arm 502 may be an elastic arm, and the contact arm 502 may be elastically abutted against the ground terminal 201a, so that reliability of contact between the contact arm 502 and the ground terminal 201a can be improved. In addition, when the shielding body 501 is fastened to the fastening part 202, a connection force between the shielding body 501 and the fastening part 202 may be further adjusted, so that the contact arm 502 can be pressed towards the ground terminal 201a. Therefore, a stable electrical connection between the contact arm 502 and the ground terminal 201a can be implemented without making an additional connection structure or using an additional welding technique, to reduce mounting complexity and costs of the terminal module 2.
[0069] In a possible embodiment of this application, reference may be made to
[0070] Refer to
[0071] In addition, an extension direction of the shielding body 501 may be the same as an arrangement direction (a direction of X in
[0072] In addition to the foregoing structure, the shielding part 5 may further include an abutting part 503 connected to the shielding body 501. Refer to
[0073] In some other embodiments of this application, a plurality of shielding parts 5 may be alternatively disposed in each terminal module 2. During specific implementation, the plurality of shielding parts 5 may be arranged in sequence in an arrangement direction of the plurality of connection terminals 201, and adjacent shielding parts 5 may be in direct contact, may be in indirect contact, or may not be in contact. In some other embodiments of this application, when the terminal module 2 includes a plurality of differential pairs, one shielding part 5 may be further disposed corresponding to N differential pairs, where N is less than a total quantity of differential pairs in the terminal module 2. In this embodiment, the shielding part 5 may be disposed with reference to any one of the foregoing embodiments. Details are not described herein again.
[0074] Reference may be made to
[0075] In this embodiment of this application, a specific quantity and positions of contact points 504 are not limited. In the embodiment shown in
[0076] In addition to using the foregoing shielding part 5, the crosstalk may be further improved by optimizing a coupling degree of the connection terminal 201. During specific implementation, reference may be made to
[0077] In some other embodiments of this application, reference may be made to
[0078] For example, the spacing between the two signal terminals 201b in the differential pair may be 0.7 to 2.5 times a thickness of the signal terminal 201b, the spacing between the signal terminal 201b and the adjacent ground terminal 201a is 0.7 to 2.5 times the thickness of the signal terminal 201b, and the spacing between the signal terminal 201b and the shielding part 5 is 0.7 to 2.5 times the thickness of the signal terminal 201b. The thickness of the signal terminal 201b is a size of the signal terminal in a cross section in a direction (a direction of Z in
[0079] Refer to
[0080] In this embodiment, a material of the fixed housing 1a may be, but is not limited to, an insulation material such as plastic or ceramic. In addition, the fixed housing 1a may be an injection molding part, and may be directly formed on the terminal module 2 by using one injection molding technique, to effectively improve reliability of a connection between the fixed housing 1a and the terminal module 2.
[0081] Still refer to
[0082] As a key structure for connecting the connector to another device, the terminal module 2 may be mounted in the mounting groove 103 of the fixing housing 1a. In this embodiment, the terminal module 2 may be disposed in a thin sheet structure. In addition, there may be two terminal modules 2, and the two terminal modules 2 are fit each other. The terminal module 2 has a connection terminal 201. There may be a plurality of connection terminals 201, and the plurality of connection terminals 201 may be disposed side by side at an interval, but is not limited to the disposition. The plurality of connection terminals 201 may be, but is not limited to, a power terminal, a ground terminal, a signal terminal configured to implement other signal transmission, or the like. In addition, in this application, cross-sectional areas of the connection terminals 201 may be the same or may be different, and may be adjusted based on a requirement of a signal transmitted by the connection terminal 201.
[0083] In this embodiment of this application, refer to both
[0084] Refer to
[0085] The connection terminal 201 further has a second end (not shown in the figure), and the second end may be configured to connect to a cable 4, so that the connection terminal 201 can perform signal connection to another device by using the cable 4. In this application, the second end of the connection terminal 201 may be connected to the cable 4 in a welding manner, but is not limited to the welding manner, so that a connection between the second end and the cable 4 is reliable. In addition, in some embodiments of this application, the conductive housing 1b may be further configured to implement a common ground connection between the terminal module 2 and the cable 4.
[0086] In some embodiments of this application, the terminal module 2 may further include a fastening part 202, and the fastening part 202 may be configured to fix the connection terminal 201. In addition, the terminal module 2 may generally include the plurality of connection terminals 201. When fixing the plurality of connection terminals 201, the fastening part 202 may further limit the plurality of connection terminals 201, to adjust spacing between adjacent connection terminals 201. A material of the fastening part 202 may be, but is not limited to, an insulation material such as plastic or ceramic, to avoid a short circuit between the adjacent connection terminals 201.
[0087] Similar to the foregoing embodiment, in this embodiment of this application, a part that is of the connection terminal 201 and that is configured to connect the first end 2011 and the second end may also be denoted as a terminal body of the connection terminal 201. Because the first end 2011 of the connection terminal 201 is configured to perform signal connection to the circuit board, and the second end is connected to the cable 4, the fastening part 202 may be fastened to the terminal body of the connection terminal 201, and the fastening part 202 is filled between the two adjacent connection terminals 201.
[0088] In this application, to reduce crosstalk between the connection terminals 201, the terminal body of the connection terminal 201 may be shielded. Therefore, a shielding manner for the terminal body affects overall signal transmission performance of the connection terminal 201. Therefore, the connector in this embodiment of this application may further include a shielding part 5. Refer to
[0089] In this embodiment, a manner of disposing the shielding part 5 is similar to that in the foregoing embodiment. During specific implementation, reference may be made to
[0090] The contact arm 502 of the shielding part 5 may be configured to be in conductive contact with the ground terminal in the connection terminal 201. In some embodiments of this application, the contact arm 502 may be an elastic arm, and the contact arm 502 may be elastically abutted against the ground terminal, so that reliability of contact between the contact arm 502 and the ground terminal can be improved. In addition, when the shielding body 501 is fastened to the fastening part 202, a connection force between the shielding body 501 and the fastening part 202 may be further adjusted, so that the contact arm 502 can be pressed towards the ground terminal. Therefore, stable conductive contact between the contact arm 502 and the ground terminal can be implemented without making an additional connection structure or using an additional welding technique, to reduce mounting complexity and costs of the terminal module 2.
[0091] In a possible embodiment of this application, the shielding part 5 is an integrally formed structure, and the contact arm 502 is a bent part that is connected to the shielding body 501 and that is bent towards a side of the ground terminal. It may be understood that, in this embodiment of this application, the shielding part 5 may be, but is not limited to, a metal sheet having good conductivity.
[0092] Refer to
[0093] In addition, an extension direction of the shielding part 5 may be the same as an arrangement direction (a direction of X in
[0094] In addition to the foregoing structure, the shielding part 5 may further include an abutting part 503. The abutting part 503 may be configured to be abutted against the fastening part 202, and may limit spacing between the body of the shielding part 5 and the connection terminal 201, to avoid a short circuit between signal terminals caused by contact between the shielding body 501 and the signal terminal of the connection terminal 201. Reference may be made to
[0095] Still refer to
[0096] In some other embodiments of this application, a plurality of shielding parts 5 may be alternatively disposed in each terminal module 2. During specific implementation, the plurality of shielding parts 5 may be arranged in sequence in an arrangement direction of the plurality of connection terminals 201, and adjacent shielding parts 5 may be in direct contact, may be in indirect contact, or may not be in contact. In some other embodiments of this application, when the terminal module 2 includes a plurality of differential pairs, one shielding part 5 may be further disposed corresponding to N differential pairs, where N is less than a total quantity of differential pairs in the terminal module 2. In this embodiment, the shielding part 5 may be disposed with reference to the foregoing embodiment. Details are not described herein again.
[0097] Because this embodiment of this application includes two fastened terminal modules 2, the two terminal modules 2 may share the shielding part 5, or the shielding part 5 is disposed separately for each terminal module 2. Refer to
[0098] Reference may be still made to
[0099] In a possible embodiment of this application, the spacing between the two signal terminals 201b in the differential pair may be 0.7 to 2.5 times a thickness of the signal terminal 201b, the spacing between the signal terminal 201b and the adjacent ground terminal 201a is 0.7 to 2.5 times the thickness of the signal terminal 201b, and the spacing between the signal terminal 201b and the shielding part 5 is 0.7 to 2.5 times the thickness of the signal terminal 201b. The thickness of the signal terminal 201b is a size of the signal terminal in a cross section in a direction from the signal terminal 201b to the shielding part 5. It should be noted that, in this application, the spacing between the signal terminal 201b and the shielding part 5 is a distance between the signal terminal 201b and the shielding part 5 in the direction of Z in the cross section shown in
[0100] In addition, in an arrangement direction (a direction of X in
[0101] It can be understood that, the ground terminals 201a at the corresponding positions of the two terminal modules 2 are disposed in a staggered manner, so that contact points of contact arms 502 of shielding parts 5 of the two terminal modules 2 can be disposed in a staggered manner, to effectively implement partial crosstalk cancellation and improve crosstalk.
[0102] Refer to
[0103] It may be understood that, in addition to a plate end connector and an I/O end connector in the foregoing embodiments, the shielding solution of the connector provided in this application may be further applied to various other connectors that need to be shielded and that have shielding part disposition space. All the connectors may be disposed with reference to any one of the foregoing embodiments. Details are not described herein, but it should be understood that the shielding solution falls within the protection scope of this application.
[0104] Based on a same inventive concept, this application further provides a communication device. The communication device includes a circuit board and the connector in any one of the foregoing embodiments. The connector may be signally connected to the circuit board. In this way, another device may be connected to the circuit board by using the connector, to implement an electrical connection between the another device and the circuit board. Because crosstalk of the connector provided in this application is significantly improved, signal transmission performance of the communication device can be effectively improved.
[0105] Apparently, a person skilled in the art can make various modifications and variations to this application without departing from the spirit and scope of this application. This application is intended to cover these modifications and variations of this application provided that they fall within the scope of protection defined by the claims of this application and their equivalent technologies.