This application is based upon and claims priority under 35 U.S.C. 119 from Taiwan Patent Application No. 105207877 filed on May 27, 2016, which is hereby specifically incorporated herein by this reference thereto.
1. Field of the Invention
The instant disclosure relates to an electrical receptacle connector, and more particularly to the electrical receptacle connector that soldering sections of multiple terminals are arranged in a single row so as to improve the soldering process, increase yield rates and prevent the solder skip or short circuit during the soldering process.
2. Description of the Prior Art(s)
A connector is a common electronic component mounted on an electronic device, and is connected to another matching connector that is mounted on another electronic device. Therefore, the two connectors provide the signal transmission and the power transmission between the two electronic devices. One kind of conventional connector is a “Universal Serial Bus (USB) 3.1” connector. The communication protocol of USB 3.1 further adds the specification of “Type C” connector. Thus, the conventional connector of USB 3.1 provides a super high data transmission rate in 10 Gbps. Moreover, the dimensions of the conventional connector of USB 3.1 are reduced for being mounted on the cellular phone or other mobile devices. Besides, the interface plug of the connector of USB 3.1 is symmetrical. Thus, the connector of USB 3.1 can be inserted reversely and therefore can be widely used in various electronic devices.
The connector of USB Type C has an insulated housing, two terminal sets, and a metal case. The insulated housing is made of plastic and has a tongue portion that extends from the insulated housing. The two terminal sets are mounted on the tongue portion for signal transmission. Each one of the terminal sets has multiple terminals. Each one of the terminals has a soldering section that is soldered on a circuit board.
However, the two terminal sets are aligned with each other in two rows. The soldering sections that have identical pin assignments in grounding terminals or power terminals are respectively soldered. Therefore, the soldering process of the terminal set is complicated. Meanwhile, the soldering process has problems of solder skip or short circuit. Thus, a yield rate of the conventional connector is decreased.
The instant disclosure provides electrical receptacle connector that soldering sections of multiple terminals are arranged in a single row so as to improve soldering process, increase yield rates and prevent the solder skip or short circuit during the soldering process.
To achieve the foregoing objective, the electrical receptacle connector has an insulated housing, a first terminal set, a second terminal set and a metallic shell. The insulated housing has a base portion and a tongue portion. The tongue portion extends from the base portion. The first terminal set is held in the insulated housing, disposed on a top surface of the tongue portion and has two first grounding terminals, two first power terminals and multiple first signal terminals. Each one of the first grounding terminals, the first power terminals and the first signal terminals respectively has a first connection section, a first soldering section and a first contact section. The first soldering section extends from one of two ends of the first connection section. The two first soldering sections of the two first grounding terminals are respectively located on a far left and a far right of the first terminal set. The two first soldering sections of the two first power terminals are disposed between the two first soldering sections of the two first grounding terminals and are respectively located next to the two first soldering sections of the two first grounding terminals. The first contact section extends from the other end of the first connection section. The second terminal set is held in the insulated housing, disposed on a bottom surface of the tongue portion and has two second grounding terminals, two second power terminals and multiple second signal terminals. Each one of the second grounding terminals, the second power terminals and the second signal terminals has a second connection section, a second soldering section and a second contact section. The second soldering section extends from one of two ends of the second connection section. The two second soldering sections of the two second grounding terminals are respectively located on a far left and a far right of the second terminal set. The two second soldering sections of the two second power terminals are disposed between the two second soldering sections of the two second grounding terminals and are respectively located next to the two second soldering sections of the two second grounding terminals. The second soldering sections of the second terminal set are aligned with the first soldering sections of the first terminal set at a same horizontal plane. The two second soldering sections of the two second grounding terminals are respectively located adjacent to the two first soldering sections of the two first grounding terminals. The two second soldering sections of the two second power terminals are respectively located adjacent to the two first soldering sections of the two first power terminals. The second contact section extends from the other end of the second connection section. The metallic shell surrounds the insulated housing and has a receiving cavity. The receiving cavity is defined through the metallic shell and receives the insulated housing, the first terminal set and the second terminal set.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The insulated housing 10 has a base portion 11 and a tongue portion 12.
The tongue portion 12 protrudes from the base portion 11.
The first terminal set 20 is held in the insulated housing 10 and includes two first grounding terminals 20g, two first power terminals 20v and multiple first signal terminals 20s.
Each one of the first grounding terminals 20g, the first power terminals 20v and the first signal terminals 20s respectively has a first connection section 21, a first soldering section 22 and a first contact section 23.
The first soldering section 22 extends from one of two ends of the first connection section 21. The two first soldering sections 22 of the two first grounding terminals 20g are respectively located on a far left and a far right of the first terminal set 20. The two first soldering sections 22 of the two first power terminals 20v are disposed between the two first soldering sections 22 of the two first grounding terminals 20g and are respectively located next to the two first soldering sections 22 of the two first grounding terminals 20g. The first soldering sections 22 of the first terminal set 20 are arranged in a single row and protrude out of the base portion 11. Furthermore, the first soldering sections 22 of the first signal terminals 20s are clustered together. In other words, the first signal terminals 20s are located next to each other.
The first contact section 23 extends from the other end of the first connection section 21. The first contact sections 23 of the first terminal set 20 are disposed on a top surface of the tongue portion 12.
The shielding plate 30 is embedded inside the insulated housing 10 and is located between the first terminal set 20 and the second terminal set 40.
The second terminal set 40 is held in the insulated housing 10 and includes two second grounding terminals 40g, two second power terminals 40v and multiple second signal terminals 40s.
Each one of the second grounding terminals 40g, the second power terminals 40v and the second signal terminals 40s has a second connection section 41, a second soldering section 42 and a second contact section 43.
The second soldering section 42 extends from one of two ends of the second connection section 41. The two second soldering sections 42 of the two second grounding terminals 40g are respectively located on a far left and the a right of the second terminal set 40. The two second soldering sections 42 of the two second power terminals 40v are disposed between the two second soldering sections 42 of the two second grounding terminals 40g and are respectively located next to the two second soldering sections 42 of the two second grounding terminals 40g. The second soldering sections 42 of the second terminal set 40 are arranged in a single row and protrude out of the base portion 11. Furthermore, the second soldering sections 42 of the second signal terminals 40s are clustered together. In other words, the second signal terminals 40s are located next to each other.
The second contact section 43 extends from the other end of the second connection section 41. The second contact sections 43 of the second terminal set 40 are disposed on a bottom surface of the tongue portion 12.
With reference to
The metallic shell 50 surrounds the insulated housing 10 and has a receiving cavity 500.
The receiving cavity 500 is defined through the metallic shell 50 and receives the insulated housing 10, the first terminal set 20 and the second terminal set 40.
With reference to
The second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the power terminal 40v that are located on the far left of the second terminal set 40 are symmetrical with the second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the second power terminal 40v that are located on the far right of the second terminal set 40 along the longitudinal axis L.
The second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the power terminal 40v that are located on the far left of the second terminal set 40 are respectively located at a left side and a right side of the first soldering section 22 of the first grounding terminal 20g and the first soldering section 22 of the first power terminal 20v that are located on the far left of the first terminal set 20.
The second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the second power terminal 40v that are located on the far right of the second terminal set 40 are respectively located at a left side and a right side of the first soldering section 22 of the first grounding terminal 20g and the first soldering section 22 of the first power terminal 20v that are located on the far right of the first terminal set 20.
An arrangement of location of the first terminal set 20 and the second terminal set 40 is listed in the following table, from the left side to the right side of the first embodiment in a top view.
In the first embodiment of the instant disclosure, a sequence of the first and second power terminals 20v, 40v and the first and second grounding terminals 20g, 40g with respect to the first soldering sections 22 and the second soldering sections 42 from a left side to a right side of the electrical receptacle connector is the second grounding terminal 40g, the first grounding terminal 20g, the first power terminal 20v, the second power terminal 40v, the second power terminal 40v, the first power terminal 20v, the first grounding terminal 20g and the second grounding terminal 40g.
With reference to
The second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the power terminal 40v that are located on the far left of the second terminal set 40 are symmetrical with the second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the second power terminal 40v that are located on the far right of the second terminal set 40 along the longitudinal axis L.
The second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the second power terminal 40v that are located on the far left of the second terminal set 40 are located between the first soldering section 22 of the first grounding terminal 20g and the first soldering section 22 of the first power terminal 20v that are located on the far left of the first terminal set 20.
The second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the second power terminal 40v that are located on the far right of the second terminal set 40 are located between the first soldering section 22 of the first grounding terminal 20g and the first soldering section 22 of the first power terminal 20v located on the far right of the first terminal set 20.
An arrangement of location of the first terminal set 20 and the second terminal set 40 is listed in the following table, from the left side to the right side of the second embodiment in a top view.
In the second embodiment of the instant disclosure, a sequence of the first and second power terminals 20v, 40v and the first and second grounding terminals 20g, 40g with respect to the first soldering sections 22 and the second soldering sections 42 from a left side to a right side of the electrical receptacle connector is the first grounding terminal 20g, the second grounding terminal 40g, the second power terminal 40v, the first power terminal 20v, the first power terminal 20v, the second power terminal 40v, the second grounding terminal 40g and the first grounding terminal 20g.
With reference to
The second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the second power terminal 40v that are located on the far left of the second terminal set 40 are respectively located on a left side and a right side of the first soldering section 22 of the first grounding terminal 20g and the first soldering section 22 of the first power terminal 20v that are located on the far left of the first terminal set 20.
The second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the second power terminal 40v that are located on the far right of the second terminal set 40 are located between the first soldering section 22 of the first grounding terminal 20g and the first soldering section 22 of the first power terminal 20v that are located on the far right of the first terminal set 20.
An arrangement of location of the first terminal set 20 and the second terminal set 40 is listed in the following table from the left side to the right side of the third embodiment in a top view.
In the third embodiment of the instant disclosure, a sequence of the first and second power terminals 20v, 40v and the first and second grounding terminals 20g, 40g with respect to the first soldering sections 22 and the second soldering sections 42 from the left side to the right side of the electrical receptacle connector is the second grounding terminal 40g, the first grounding terminal 20g, the first power terminal 20v, the second power terminal 40v, the first power terminal 20v, the second power terminal 40v, the second grounding terminal 40g and the first grounding terminal 20g.
With reference to
The second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the second power terminal 40v that are located on the far left of the second terminal set 40 are located between the first soldering section 22 of the first grounding terminal 20g and the first soldering section 22 of the first power terminal 20v that are located on the far left of the first terminal set 20.
The second soldering section 42 of the second grounding terminal 40g and the second soldering section 42 of the second power terminal 40v that are located on the far right of the second terminal set 40 are respectively located on a left side and a right side of the first soldering section 22 of the first grounding terminal 20g and the first soldering section 22 of the first power terminal 20v that are located on the far right of the first terminal set 20.
An arrangement of location of the first terminal set 20 and the second terminal set 40 is listed in the following table from the left side to the right side of the fourth embodiment in a top view.
In the fourth embodiment of the instant disclosure, a sequence of the first and second power terminals 20v, 40v and the first and second grounding terminals 20g, 40g with respect to the first soldering sections 22 and the second soldering sections 42 from a left side to a right side of the electrical receptacle connector is the first grounding terminal 20g, the second grounding terminal 40g, the second power terminal 40v, the first power terminal 20v, the second power terminal 40v, the first power terminal 20v, the first grounding terminal 20g and the second grounding terminal 40g.
The electrical receptacle connector of the instant disclosure has advantages as follows:
(1) The first soldering sections 22 are aligned with the second soldering sections 42 in a row. The first soldering section 22 of the first grounding terminal 20g and the second soldering section 42 of the second grounding terminal 40g that are located on the same side of the connector of the instant disclosure are clustered together. Therefore, the first soldering section 22 and the second soldering section 42 are soldered simultaneously in the soldering process. Thus, the soldering process is simplified and reduces “solder skip” that is caused by insufficient solder or effluence of solder and “short circuit”.
(2) The first terminal set 20 and the second terminal set 40 are symmetrical along the longitudinal axis L. The relative position between the first terminal set 20 and the second terminal set 40 on a left side of the longitudinal axis L corresponds to the relative position between the first terminal set 20 and the second terminal set 40 on a right side of the longitudinal axis L. Therefore, structures of molds of the terminals are simplified.
(3) The first soldering sections 22 and the second soldering sections 42 are arranged in a row. Thus, a length of the electrical receptacle connector and a length of a circuit board that is mounted on the instant disclosure are reduced. Then, the dimensions of the connector of the instant disclosure and the dimensions of the circuit board are reduced.
Even though numerous characteristics and advantages of the instant disclosure have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, 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.
Number | Date | Country | Kind |
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105207877 U | May 2016 | TW | national |
Number | Name | Date | Kind |
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8079854 | He | Dec 2011 | B2 |
8162671 | Matsubara | Apr 2012 | B2 |
8376785 | Lapidot | Feb 2013 | B2 |
8662936 | Chung | Mar 2014 | B2 |
9083134 | Chen | Jul 2015 | B2 |
9136649 | Shih | Sep 2015 | B2 |