This application claims priority to Chinese Patent Application No. 202110585034.1 filed on May 27, 2021, which is incorporated herein by reference in its entirety.
The present disclosure relates to an electrical connector, and particularly relates to an electrical connector and an electrical connector assembly.
Japanese patent application issuance publication No. JPH057829B2 discloses a mating terminal structure, in which, a contact portion of one of two terminals, which mate with each other respectively, contacts a fixing portion of the other of the two terminals, so that total two contact points are formed between the two terminals to increase contact stability of the two terminals.
U.S. Pat. No. 7,798,852B2 discloses a mezzanine-type electrical connector, the mezzanine-type electrical connector includes a plurality of terminal columns, ground terminals and differential signal terminal pairs of each terminal column are alternately arranged, the ground terminal of one of two adjacent terminal columns corresponds to the differential signal terminal pair of the other of the two adjacent terminal columns in position, and a body portion of the ground terminal is wider so that a width of the body portion of the ground terminal is larger than a side-by-side width of body portions of the differential signal terminal pair, each differential signal terminal pair is independently ground shielded. However, such a shielding arrangement is only constructed between the body portions of the corresponding terminals.
However, in order to further promote transmission speed of a signal, it needs to further reduce crosstalk of transmission of the signal, reduce impedance of the terminal and strengthen shielding between signal terminals. However, existing electrical connectors as disclosed in the above prior art are deficient to do so.
Therefore, one of objects of the present disclosure is to provide an electrical connector and an electrical connector assembly which can improve at least one deficiency in prior art.
Accordingly, in some embodiments, an electrical connector of the present disclosure comprises a plurality of signal terminal groups and a plurality of grounding members. Each signal terminal group comprises a plurality of signal terminals, each signal terminal has a first contact portion and a second contact portion, the first contact portion has elasticity, the second contact portion relatively does not have elasticity when compared to the first contact portion, the first contact portion and the second contact portion of each signal terminal are staggered with respect to each other. The plurality of grounding members respectively correspond to the plurality of signal terminal groups, each grounding member has two side walls and a rear wall which are integrally constructed and surrounding the corresponding signal terminal group from at least three sides, two ground terminals which are integrally constructed and are respectively positioned at a left side and a right side of a corresponding signal terminal group, third contact portions which are respectively constructed to the two ground terminals and have elasticity, and fourth contact portions which are respectively positioned at the left side and the right side of the corresponding signal terminal group and relatively do not have elasticity when compared to the third contact portion, the respective third contact portion and the respective fourth contact portion at the same side of the corresponding signal terminal group are staggered with respect to each other.
In some embodiments, each side wall has a corresponding one of the two ground terminals and a side plate portion, a plate face of the side plate portion is constructed with the respective fourth contact portion, the respective third contact portion of the corresponding one of the two grounds terminal is disposed toward the inside of the corresponding one of the two ground terminals, while the fourth contact portion of the side plate portion is disposed toward the outside of the corresponding one of the two ground terminals, and the third contact portion and the fourth contact portion of each side wall are staggered in a front-rear direction and in an up-down direction.
In some embodiments, each grounding member further has two front plate portions which are respectively integrally constructed with the two side walls, the two front plate portions are respectively positioned at the left side and the right side of the corresponding signal terminal group, and outer side edges, which face each other, of the two front plate portions each are connected to the corresponding side wall, each front plate portion is constructed with the ground terminal, each ground terminal has an elastic arm which extends upwardly from the front plate portion, the third contact portion is positioned to an upper end of the elastic arm, the fourth contact portion is positioned to a lower end of the elastic arm, the third contact portion and the fourth contact portion of each ground terminal face the front of the ground terminal and are staggered in an up-down direction.
In some embodiments, each grounding member further has two front plate portions which respectively are integrally constructed with the two side walls, the two front plate portions are respectively positioned at the left side and the right side of the corresponding signal terminal group, and inner side edges, which face each other, of each front plate portion each are connected to the corresponding side wall, each front plate portion is constructed with the ground terminal, each ground terminal has an elastic arm which extends upwardly from the front plate portion, the third contact portion is positioned to an upper end of the elastic arm, the fourth contact portion positioned to a lower end of the elastic arm, the third contact portion and the fourth contact portion of each ground terminal face the front of the ground terminal and are staggered in an up-down direction.
In some embodiments, a height of the rear wall and heights of the two side walls in each grounding member each is higher than an upper end of each corresponding signal terminal.
In some embodiments, each signal terminal has a fixing portion, a tail portion which extends downwardly from the fixing portion, and an elastic arm which extends upwardly from the fixing portion, the first contact portion is positioned to an upper end of the elastic arm, the second contact portion is positioned to a lower end of the elastic arm, the first contact portion and the second contact portion of each signal terminal face the front of the ground terminal and are staggered in an up-down direction.
In some embodiments, each signal terminal group has two signal terminals which constitute a differential pair and an insulative block, the two signal terminals are provided to the insulative block, a front surface of the fixing portion of each signal terminal is exposed to the insulative block and three other surfaces of the fixing portion of each signal terminal are embedded in the insulative block, the second contact portion is constructed to the front surface of the fixing portion.
In some embodiments, the electrical connector further comprises a base, the base has a plurality of assembling holes, each assembling hole is used to assemble one of the plurality of signal terminal groups and one of the plurality of the grounding members.
In some embodiments, the signal terminal group and the one of the plurality of grounding members which correspond to each other are firstly assembled with each other by an assembling construction and then are assembled to the base.
In some embodiments, the assembling construction comprises a protruding block and an insertion hole which are assembled to each other, the protruding block is constructed to a rear side surface of the insulative block, the insertion hole is constructed to the rear wall of the one of the plurality of grounding members.
Accordingly, in some embodiments, an electrical connector assembly of the present disclosure comprises two electrical connectors having a similar construction to each other and to mate with each other. Each electrical connector comprises a plurality of signal terminal groups and a plurality of grounding members. Each signal terminal group comprises a plurality of signal terminals, each signal terminal has a first contact portion and a second contact portion, the first contact portion has elasticity, the second contact portion relatively does not have elasticity compared to the first contact portion, the first contact portion and the second contact portion of each signal terminal are staggered with respect to each other. The plurality of grounding members respectively correspond to the plurality of signal terminal groups, each grounding member has two side walls and a rear wall which are integrally constructed and surround the corresponding signal terminal group from at least three sides, two ground terminals which are integrally constructed and are respectively positioned at a left side and a right side of the corresponding signal terminal group, third contact portions which are respectively constructed to the two ground terminals and have relative elasticity, and fourth contact portions which are respectively positioned at the left side and the right side of the corresponding signal terminal group and relatively do not have elasticity when compared to the third contact portion, the third contact portion and the fourth contact portion at the same side of the corresponding signal terminal group are staggered with respect to each other. Wherein, when the two electrical connectors mate with each other, the two grounding members, which mate with each other, of the two electrical connectors together surround the two signal terminal groups, which mate with each other, from four sides; the third contact portions of the two grounding members which mate with each other respectively contact the fourth contact portions of the two grounding members which mate with each other to constitute total four ground contact points, two ground contact points of the four ground contact points are positioned to the left side and the other two ground contact points of the four ground contact points are positioned to the right side; the first contact portions of the two signal terminals which mate with each other contact the second contact portions of the two signal terminals which mate with each other to constitute two signal contact points, the two signal contact points are staggered in an up-down direction.
In some embodiments, each side wall has a corresponding one of the two ground terminals and a side plate portion, a plate face of the side plate portion is constructed with the respective fourth contact portion, the respective third contact portion of the corresponding one of the two ground terminals is toward the inside of the corresponding one of the two ground terminals, but the fourth contact portion of the side plate portion is toward the outside of the corresponding one of the two ground terminals, and the third contact portion and the fourth contact portion of each side wall are staggered in a front-rear direction and in the up-down direction.
In some embodiments, two ground contact points, which are positioned to the same side, of the four ground contact points are staggered in the front-rear direction and in the up-down direction, and the four ground contact points each form contact in a left-right direction.
In some embodiments, each grounding member further has two front plate portions which are respectively integrally constructed with the two side walls, the two front plate portions are respectively positioned at the left side and the right side of the corresponding signal terminal group, and outer side edges, which face each other, of the two front plate portions each are connected to the corresponding side wall, each front plate portion is constructed with the ground terminal, each ground terminal has an elastic arm which extends upwardly from the front plate portion, the third contact portion is positioned to an upper end of the elastic arm, the fourth contact portion is positioned to a lower end of the elastic arm, the third contact portion and the fourth contact portion of each ground terminal face the front and are staggered in the up-down direction.
In some embodiments, each grounding member further has two front plate portions which respectively are integrally constructed with the two side walls, the two front plate portions are respectively positioned at the left side and the right side of the corresponding signal terminal group, and inner side edges, which face each other, of each front plate portion each are connected to the corresponding side wall, each front plate portion is constructed with the ground terminal, each ground terminal has an elastic arm which extends upwardly from the front plate portion, the third contact portion is positioned to an upper end of the elastic arm, the fourth contact portion positioned to a lower end of the elastic arm, the third contact portion and the fourth contact portion of each ground terminal face the front and are staggered in the up-down direction.
In some embodiments, two ground contact points, which are positioned to the same side, of the four ground contact points are staggered in the up-down direction, and the four ground contact points each from contact in a front-rear direction.
In some embodiments, a height of the rear wall and heights of the two side walls in each grounding member each is higher than an upper end of each corresponding signal terminal.
In some embodiments, each signal terminal has a fixing portion, a tail portion which extends downwardly from the fixing portion, and an elastic arm which extends upwardly from the fixing portion, the first contact portion is positioned to an upper end of the elastic arm, the second contact portion is positioned to a lower end of the elastic arm, the first contact portion and the second contact portion of each signal terminal face the front and are staggered in an up-down direction, the two signal contact points each form contact in a front-rear direction.
In some embodiments, each signal terminal group has two signal terminals which constitute a differential pair and an insulative block, the two signal terminals are provided to the insulative block, a front surface of the fixing portion of each signal terminal is exposed to the insulative block and three other surfaces of the fixing portion of each signal terminal are embedded in the insulative block, the second contact portion is constructed to the front surface of the fixing portion.
In the present disclosure, by the design and arrangement manner that the two grounding members surround the signal terminals from four sides, more complete and full shielding function can be formed with respect to the signal terminals, to reduce crosstalk, reduce impedance of the signal terminal, strengthen coupling between the signal terminal groups, promote integrity of the signal, increase transmission speed of the signal.
Other features and technical effects of the present disclosure will be apparent in embodiments referring to the accompanying figures, in which:
Before the present disclosure is described in detail, it should be noted that like elements are denoted by the same reference numerals in the following description.
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The base 1 extends along a front-rear direction D2 (a direction to which an arrow points is front, and an opposite direction is rear) and a left-right direction D3 (a direction to which an arrow points is left, and an opposite direction is right) and has a plurality of assembling holes 11 which are formed within the base 1 penetratingly in the up-down direction D1. Each assembling hole 11 is used to assemble one of the plurality of signal terminal groups 2 and one of the plurality of the grounding members 3.
Each signal terminal group 2 includes two signal terminals 21 which constitute a differential pair, extend substantially along the up-down direction D1, and are arranged side by side along the left-right direction D3, and an insulative block 22. Each signal terminal 21 has a fixing portion 211 which is provided to the insulative block 22, a tail portion 212 which extends downwardly from the fixing portion 211, a substantially elastic (herein referred to as “elastic) arm 213 which extends upwardly from the fixing portion 211, a first contact portion 214 which is positioned to an upper end of the elastic arm 213, and a second contact portion 215 which is positioned to a lower end of the elastic arm 213 in comparison to the position of the first contact portion 214 of the elastic arm 213. The first contact portion 214 has relatively more elasticity and the second contact portion 215 has relatively less elasticity compared to the first contact portion 214, and, the first contact portion 214 and the second contact portion 215 face the front and are staggered with respect to each other in the up-down direction D1. For example, the two signal terminals 21 are provided to the insulative block 22 by insert molding (or over-molding), a front surface 211a of the fixing portion 211 of each signal terminal 21 is exposed to the insulative block 22 and the other three surfaces of the fixing portion 211 of each signal terminal 21 are embedded in the insulative block 22, specifically, the second contact portion 215 is constructed to the front surface 211a of the fixing portion 211, in addition, for example, the fixing portion 211 is further formed with an aperture 211b which cooperates with a protrusion of the insulative block 22 to increase embedding engagement force of the fixing portion 211 to the insulative block 22. As shown in
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In conclusion, in the present disclosure, by the design and arrangement manner that the two grounding members 3 surround the signal terminals 21 from four sides, more complete and full shielding function can be formed with respect to the signal terminals 21, to reduce crosstalk, reduce impedance of the signal terminal 21, strengthen coupling between the signal terminal groups 2, promote integrity of the signal, increase transmission speed of the signal.
However, the above description is only for the embodiments of the present disclosure, and it is not intended to limit the implementing scope of the present disclosure, and the simple equivalent changes and modifications made according to the claims and the contents of the specification are still included in the scope of the present disclosure.
Number | Date | Country | Kind |
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202110585034.1 | May 2021 | CN | national |