1. Field of the Invention
The present invention relates to a receptacle connector, and more particularly to a waterproof and interference proof receptacle connector that is applied to a humid or underwater environment and prevents itself from interfering with external electrical components.
2. Description of Related Art
Electrical connectors are general electrical components on electronic devices widely used for connecting to other matching connectors on the other electrical devices for signal transmission and power supply. A conventional universal serial bus (USB) Type C connector has an insulative housing, two sets of terminals and a metal shell. The sets of the terminals are mounted on the insulative housing for signal transmission and each terminal has a soldering section to be soldered on an external circuit board.
More and more portable electrical devices, equipped with USB or USB Type C connectors for connecting to other devices or power banks, are used in humid or underwater environments. However, the conventional USB Type C connectors are not designed with any waterproof features and cannot operate in humid or underwater environments.
Furthermore, the conventional USB Type C connectors lack interference-proof mechanism so the exposed soldering sections of the terminals easily interfere with external electronic components, which causes signal transmission of the USB Type C connectors unstable or less efficient and unable to achieve ideal transmission rate.
To overcome the shortcomings, the present invention provides a waterproof and interference proof receptacle connector to mitigate or obviate the aforementioned problems.
The main objective of the invention is to provide a waterproof and interference proof receptacle connector that is applied to a humid or underwater environment and prevents itself from interfering with external electrical components.
A waterproof and interference proof receptacle connector in accordance with the present invention comprises an upper insulative housing, a lower insulative housing, a first terminal set, a second terminal set, a shell, a watertight casing and an interference proof rear guard. The first and second terminal sets are mounted respectively on the upper and lower insulative housings. The shell is mounted on the upper and lower insulative housings. The watertight casing is mounted around the shell. The interference proof guard is mounted on the watertight casing. The watertight casing provides a waterproof function to allow the waterproof and interference proof receptacle connector to operate in humid or underwater environment.
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 waterproof and interference proof receptacle connector in accordance with the present invention comprises an upper insulative housing 10, a lower insulative housing 20, a first terminal set, a second terminal set, a shielding grounding plate 50, a shell 60, a watertight casing 80 and an interference proof rear guard 70.
With reference to
The lower insulative housing 20 is mounted on a bottom of the upper insulative housing 10 and has a lower mounting bracket 21 and a tongue board 25. The lower mounting bracket 21 has a mounting recess 210 and two assembling slots 211. The mounting recess 210 is defined in a top of the lower mounting bracket 21 and accommodates the upper mounting bracket 11. The assembling slots 211 are defined respectively in two opposite inner sidewalls of the mounting recess 210 and respectively receive the assembling protrusions 111. The tongue board 25 is formed on and protrudes forward from the lower mounting bracket 21.
The first terminal set and the second terminal set are respectively mounted on the upper insulative housing 10 and the lower insulative housing 20, and are substantially pointing symmetrical to each other with respect to a centre of symmetry of the tongue board 25. According to point symmetrical configuration of the first and second terminal sets, when the first and second terminal sets are rotated for 180 degrees with respect to the centre of symmetry, the rotated first and second terminal sets coincide with and are identical to the first and second terminal sets without rotation of 180 degrees. By the point symmetrical configuration of the first and second terminal sets, an electrical plug connector can extend reversely into the receptacle connector to normally implement high speed signal transmission.
With further reference to
With further reference to
The shielding grounding plate 50 is mounted between the upper insulative housing 10 and the lower insulative housing 20 and is disposed between the first terminal set and the second terminal set to prevent crosstalk between the first terminal set and the second terminal set.
The shell 60 is mounted on the upper insulative housing 10 and the lower insulative housing 20 and has a cavity 600 and an extension tab 65. The cavity 600 is defined through the shell 60 and accommodates the upper insulative housing 10, the lower insulative housing 20, the first terminal set and the second terminal set. The extension tab 65 is formed on and protrudes backward from a rear end of the shell 60.
The watertight casing 80 is mounted around the shell 60 and has a mounting hole 800, a fitting member 85, a watertight ring 87, two mounting legs 86, a positioning slot 854 and two embedding recesses 853. The mounting hole 800 is defined through the watertight casing 80 and accommodates the shell 60. The watertight ring 87 is resilient, may be made of rubber and is mounted around the watertight casing 80. The fitting member 85 is inverted U-shaped, is mounted on the extension tab 65 of the shell 60 and has two opposite side surfaces 851. The mounting legs 86 are mounted respectively on the side surfaces 851 and are able to be inserted and hooked in openings in a circuit board. The positioning slot 854 is defined in an inner top surface of the fitting member 85. The embedding recesses 853 are defined respectively in the side surfaces 851.
The interference proof rear guard 70 is made of metal, is mounted in the fitting member 85 of the watertight casing 80 and has a fitting tab 71, a shielding guard tab 72 and two wings 73. The fitting tab 71 is mounted in the positioning slot 854 of the fitting member 85 of the watertight casing 80. The shielding guard tab 72 is formed on and protrudes downward from the fitting tab 71. The wings 73 are formed on and protrude forward respectively from two side ends of the shielding guard tab 72 and are mounted respectively in the embedding recesses 853 in the fitting member 85. A rear end of the upper insulative housing 10, a rear end of the lower insulative housing 20, the fitting member 85 of the watertight casing 80 and the shielding guard tab 72 of the interference proof rear guard 70 collaborate to form a glue space 95 to receive watertight glue 90.
The waterproof and interference proof receptacle connector in accordance with the present invention has the following advantages.
1. The waterproof function. The rear end of the upper insulative housing 10, the rear end of the lower insulative housing 20, the fitting member 85 of the watertight casing 80 and the shielding guard tab 72 of the interference proof rear guard 70 collaborate to form the glue space 95 to receive watertight glue 90. Therefore, the waterproof and interference proof receptacle connector is constructed with a waterproof characteristic and is capable of operating in humid or underwater environment.
2. The metal interference proof rear guard 70 provides the first soldering sections 33 of the first terminals 30 and the second soldering sections 43 of the second terminals 40 with an electromagnetic shielding function to avert the first terminals 30 and the second terminals 40 from electromagnetically interfering with external electronic components. Therefore, signal transmission of the waterproof and interference proof receptacle connector is improved to acquire better stability and higher efficiency.
3. The upper shielding board 17 further shields the first terminals 30 from electromagnetic interference.
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. 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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201510146738.3 | Mar 2015 | CN | national |