The present disclosure relates to an electrical connector, and more particularly to an electrical connector with impedance adjustment around the contacting section.
U.S. patent Ser. No. 10/027,043 discloses an electrical connector including an insulative housing, a plurality of contacts retained in the housing, and metallic shell attached upon the housing. The housing includes a base and a tongue portion extending forwardly from the base. The contact includes a contacting section thicker than other portions, thus making the impedance change thereabouts.
An improved electrical connector with proper impedance is desired.
An electrical connector includes an insulative housing and a plurality of contacts retained in the housing. The housing includes a base and a tongue portion extending forwardly from the base and forming opposite mating surfaces thereon. The contact includes a contacting section having an exterior face exposed upon the corresponding mating surface in a coplanar manner, and an interior face opposite to the exterior face with a recess therein.
The contacts are arranged in two rows. A metallic shielding plate is embedded within the housing and between the two rows. The metallic shielding plate is recessed corresponding to the contacting sections.
Other objects, advantages and novel features of the disclosure will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
Reference will now be made in detail to the embodiments of the present disclosure. The embodiment is shown in
The contacts 2 includes a first row of contacts 2a and a second row of contacts 2b spaced from each other in a vertical direction perpendicular to the front-to-back direction, and each row of the first row of contacts 2a and the second row of contacts 2b spans in a transverse direction perpendicular to both the front-to-back direction and the vertical direction. The housing 1 includes a first insulator 3a integrally formed with the first row of contacts 2a via an insert-molding process, and a second insulator 3b integrally formed with the second row of contacts 2b via another insert-molding process. Each of the first insulator 3a and the second insulator 3b includes a main body 31 and a mating tongue 32 extending forwardly from the main body 31. The mating tongue 32 of each of the first insulator 3a and the second insulator 3b forms both the positioning post 33 and the positioning hole 34.
A shielding plate set 4 is sandwiched between the first insulator 3a and the second insulator 3b in the vertical direction. The shielding plate set 4 includes a main plate 41 and an auxiliary plate 42. The main plate 41 include a main part 411 and a pair of legs 412 on two lateral sides of the main part 411. A pair of recessions 413 are respectively formed in opposite surfaces of the main part 411. The main part 411 forms a plurality of spring tangs 414 extending toward the first row of contacts 2a with the corresponding punched holes (not labeled) for contacting the corresponding grounding contacts of the first row of contacts 2a. The main part 411 forms, corresponding to the spring tangs 414, a thinned area in which the auxiliary plate 42, which is essentially of one half thickness the regular area of the is received. Notably, the recessions 413 are located in front of the thinned area. The auxiliary plate 42 forms a plurality of spring fingers 421 with the corresponding punched holes (not labeled) for contacting the grounding contacts 2G of the second row of contacts 2b. The spring tangs 414 and the spring fingers 421 are offset from each other in the front-to-back direction so as not to expose the corresponding punched holes in the vertical direction. The relative structures of the combo type shielding plate set 4 can be referred to the copending application Ser. No. 16/105,954 filed on Aug. 20, 2018. The main part 411 has a pair of through holes 415 through which the corresponding positioning post 33 extends to be received within the corresponding positioning hole 34 so as to have the first insulator 3a, the shielding plate set 4 and the second insulator 3b fastened together.
The connector 100 further includes a pair of metallic shells 5 respectively mounted upon the first insulator 3a and the second insulator 3b. The shell 5 includes a planar section 51, a pair of mounting legs 52 extending from two opposite ends of the planar section 51 to contact the corresponding legs 412 of the main plate 41, respectively, and an extension 53 forwardly extending from the planar section 51. The housing 1 is further applied upon the shells 5, the first insulator 3a and the second insulator 3b to form the complete connector 100 wherein the planar section 51 is exposed upon the base 11, and the extension 53 is exposed upon the mating face 102 in a coplanar manner.
Each row of the first row of contacts 2a and the second row of contacts 2b includes a plurality of grounding contacts 2G and a plurality of differential pair signal contacts 2S alternately arranged with each other along the transverse direction. Each contact 2 includes a contacting section 21 exposed upon the corresponding mating face 102, a tail section 22 extending out of the rear end face 101, and the connecting section 23 linking the contacting section 21 and the tail section 23. Along the transverse direction, a width of the connecting section 23 is smaller than those of both the contacting section 21 and the tail section 23. The width of the connecting section 23 of the differential pair signal contact 2S is smaller than that of the connecting section 23 of the grounding contact 2G wherein the former is around 0.16 mm to 0.20 mm while the latter is around 0.32 mm to 0.36 mm. In this embodiment, the former is 0.18 mm and the latter is 0.34 mm Because of this width difference between the grounding contact 2G and the differential pair signal contact 2S, the impedance is properly adjusted.
The contacting section 21 includes a plate 211 and a protrusion 212 thereon. The protrusion 212 has an exterior surface (not labeled) exposed upon the corresponding mating face 102 in a coplanar manner, and a recess 213 formed in an interior surface (not labeled) opposite to the exterior surface. Such a recess is made to adjust the corresponding impedance wherein along the transverse direction, the width of the recess 213 is smaller than the aforementioned width of the connecting section 23 of the grounding contact 2G while being larger than the aforementioned width of the connecting section 23 of the differential pair signal contact 2S. In this embodiment, the recess 213 is rectangular and is positioned in a center region of the contacting section 21 in both the front-to-back direction and the transverse direction. In this embodiment, the four corners of the recess are curved, and is dimensioned with 0.4 mm along the front-to-back direction and 0.3 mm along the transverse direction and 0.1 mm in the vertical direction, i.e., the depth of the recess 213. Understandably, other shapes of the recess 213 may be workable instead. In this embodiment, the thickness of the protrusion 212 is similar to or slightly larger than that of the plate 211 while the depth of the recess 213 is smaller than the thickness of the plate 211,
In brief, in the instant invention the contacting section 21 of the contact 2 forms the hidden recess 213 to adjust the impedance, and further with the recess 413 in the shielding plate set 4 corresponding to the contacting section 21 and the associated recess 213 in the contacting section 21 in the vertical direction so as to avoid improper crosstalk among the shielding plate set 4, the differential pair signal contacts 2S and the grounding contacts 2G Optimally, the recess 213 faces an empty space 613 between the shielding plate set 4 and the contacting section 21 in the vertical direction.
While a preferred embodiment in accordance with the present disclosure has been shown and described, equivalent modifications and changes known to persons skilled in the art according to the spirit of the present disclosure are considered within the scope of the present disclosure as described in the appended claims.
Number | Date | Country | Kind |
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2017 1 0907963 | Sep 2017 | CN | national |
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