Electrical connector with improved contacts
09673580 ยท 2017-06-06
Assignee
Inventors
Cpc classification
H01R13/6594
ELECTRICITY
H01R24/62
ELECTRICITY
International classification
Abstract
An electrical connector (100) includes an insulative housing (1), a plurality of terminals (2) received in the insulative housing, and a shell (3). The insulative housing includes a base portion (11) and a tongue plate (12) extending from the base portion forwardly. The tongue plate includes a mating face (13) and a supporting face (14) opposite to the mating face. The terminals (22) include a pair of signal terminals defined in the supporting face, a grounding terminal, and a power terminal. The pair of signal terminals are defined between the grounding terminal and the power terminal. Each of the signal terminals, the grounding terminal, and the power terminal has a thickness greater than 0.2 mm. The power terminal is made of nickel and copper.
Claims
1. An receptacle connector for mating with a plug connector, comprising: an insulative housing including a base and a mating tongue extending forwardly therefrom; a plurality of passageways formed in the housing; a plurality of movable terminals disposed in the corresponding passageways, respectively, with corresponding up-and-down deflectable mating sections exposed upon a mating face of the mating tongue in a vertical direction; and a plurality of stationary terminals disposed in the housing with corresponding stationary mating sections exposed upon said mating face of the mating tongue in front of the deflectable mating sections; wherein a thickness of the movable terminal different from that of the stationary terminal, is greater than 0.2 mm; further including a rear detecting terminal and a front detecting terminal, a thickness direction of both said rear detecting terminal and said front detecting terminal extending essentially in a transverse plane perpendicular to said vertical direction, and during mating with said plug connector, said front detecting terminal being deflectable in a transverse direction perpendicular to said vertical direction while said rear detecting terminal being deflectable in said vertical direction.
2. The receptacle connector as claimed in claim 1, wherein material al of said moveable terminal is an alloy of nickel and copper.
3. The receptacle connector as claimed in claim 1, wherein the thickness of the moveable terminal is larger than that of the stationary terminal.
4. The receptacle connector as claimed in claim 1, wherein a thickness of each of said rear detecting terminal and said front detecting terminal is smaller than that of the moveable terminal.
5. The receptacle connector as claimed in claim 1, wherein the moveable terminals are materially different from the stationary terminals.
Description
BRIEF DESCRIPTION OF THE DRAWING
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(7) Reference will now be made to the drawing figures to describe the present invention in detail.
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(12) The four second terminals 22 include a pair of signal terminals, a grounding terminal, and a power terminal. The pair of signal terminals are defined between the grounding terminal and the power terminal. A thickness of the second terminal 22 is greater than 0.2 mm, so as to have a lower impedance when the second terminals 22 transfer a big current, such as current of 5 A. Furthermore, the second terminals 22 are made of nickel and copper, so when the power terminal transfers current of 5 A, temperature of the power terminal rises less than 30, so as to avoid the impedance of the power terminal from rising and make a current transmission of the second terminals steady. The thickness of the second terminal can be 0.210.4 mm, optimize for 0.25 mm and 0.30 mm
(13)
(14) The detecting terminals 5 include a pair of first detecting terminals 51 received in the receiving cavities 1130 respectively and a second detecting terminal 52 received into the fixing cavity 119. The first detecting terminals 51 extend vertically. The first detecting terminal 51 includes a first main portion 512, a soldering foot 513 extending from one end of the first main portion 512 downwardly and beyond the lower surface 112 of the base portion 11, and a first contacting portion 511 extending from the other end of the first main portion 512 forwardly to the space 132 of the tongue plate 12. The first main portion 512 includes a plurality of barbs 5121. The first detecting terminals 51 are mounted into the receiving cavity 1130 from the upper to lower direction. The barbs 5121 of the first detecting terminals 51 engage with the resisting portion 1152 of the base portion 11, so that the first detecting terminals 51 is received in the receiving cavity 1130 steadily. When a plug connector is inserted into the electrical connector 100, the resisting portion 1152 holds the first main portion 512 of the first detecting terminal 51 forwardly. The first contacting portion 511 extends along the upper to lower direction, and beyond the mating face 13 of the tongue plate 12.
(15) The second detecting terminal 52 includes a second main portion 522 received in the fixing cavity 119, a second contacting portion 521 extending from one end of the second main portion 522 forwardly to a free space 101, and a second soldering foot 523 extending from the other end of the second main portion 522 downwardly. The second soldering foot 523 is used for being mounted onto the external circuit board. The second contacting portion 521 includes a projecting portion 5210 protruding to the recessing portion 191. The second contacting portion 521 is closed to a front edge of the tongue plate 12, and the first contacting portion 511 is defined behind the tongue plate 12 and is closed to the front surface 114 of the base portion 11.
(16) The electrical connector 100 can not only mate with a standard USB plug connector, but also mate with a USB PD plug connector used for transferring large current. The electrical connector 100 can identify a type of the plug connector by the two first detecting terminals 51 and the second detecting terminal 52. A mating portion of the USB PD connector is longer than a respective mating portion of the standard USB plug connector. When the standard USB connector is inserted into the electrical connector 100 completely, a shell of the standard USB connector presses the projecting portion 5210 of the second contacting portion 521 outwardly, then the second contacting portion 521 moves outwardly and engages with the detecting elastic slice 331 of the electrical connector 100. As the standard USB plug connector can not touch the first contacting portion 511 of the first detecting terminal 51, the first contacting portion 511 can not transfer signal to the other first detecting terminal 51 by the shell of the plug connector, so the electrical connector 100 can identify the standard USB plug connector. When the USB PD plug connector with the longer mating portion is inserted into the electrical connector 100, the longer mating portion can touch the first contacting portion 511 of the first detecting terminal 51, and the first detecting terminal 51 can transfer signal to the other first detecting terminal 51 by the shell of the plug connector, then the electrical connector 100 can identify the USB PD connector.
(17) It is to be understood, however, that even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.