Waterproof structure of socket connector
12261392 ยท 2025-03-25
Assignee
Inventors
- Ming-Jun Xu (Taoyuan, TW)
- Wen-Fu Liao (Taoyuan, TW)
- Yun-Chang Yang (New Taipei, TW)
- Ming-Wei Chen (New Taipei, TW)
Cpc classification
H01R13/5205
ELECTRICITY
H01R13/5202
ELECTRICITY
International classification
Abstract
A waterproof structure of a socket connector includes a waterproof housing, a socket, a cable, and a waterproof plug. The waterproof housing includes a wiring opening. The inner surface of the waterproof housing incudes a ring step surface facing the wiring opening. The wiring opening is covered by an end cap. The socket is received in the waterproof housing. The cable is connected to the socket and passes the wiring opening. The waterproof plug wrapping the cable is arranged in the wiring opening to close the wiring opening. The waterproof plug has an inner and an outer end, the inner end faces the socket, and a longitudinal annular rib is arranged on the inner end. The end cover is fastened to the waterproof housing along the longitudinal direction of the waterproof plug to press the outer end to make the longitudinal ring rib press the ring step surface.
Claims
1. A waterproof structure of a socket connector, the waterproof structure comprising: a waterproof housing, comprising a wiring opening, a ring step surface disposed on an inner surface of the waterproof housing and facing the wiring opening, and an end cap covering the wiring opening; a socket, received in the waterproof housing; a cable, connected to the socket and passing through the wiring opening to penetrate out of the waterproof housing; and a waterproof plug, wrapping a section of the cable, disposed in the wiring opening to close the wiring opening, and comprising an inner end, an outer end opposite to the inner end, and a transverse annular rib disposed on an outer surface thereof, the inner end arranged toward the socket and a longitudinal annular rib disposed thereon; wherein the end cap is fastened to the waterproof housing along a longitudinal direction of the waterproof plug to press the outer end to make the longitudinal annular rib to press the ring step surface and make the transverse annular rib to abut against the inner surface of the waterproof housing.
2. The waterproof structure according to claim 1, wherein the end cap comprises a plurality of brackets connected to each other to circumferentially define a through hole, and an inner edge of the through hole presses against an outer surface of the waterproof plug when the plurality of brackets is assembled.
3. The waterproof structure according to claim 2, wherein the plurality of brackets is respectively fastened to the waterproof housing along the longitudinal direction of the waterproof plug.
4. The waterproof structure according to claim 1, wherein a waterproof gasket is arranged between the end cap and an outer edge of the wiring opening.
5. The waterproof structure according to claim 1, wherein an annular slot is disposed on the inner end, and the ring step surface closes the annular slot.
6. The waterproof structure according to claim 1, wherein the socket comprises a circuit board, the cable is connected to the circuit board and the waterproof plug wraps a connection area between the cable and the circuit board.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(15) The socket 200 is received inside the waterproof housing 100. The socket 200 includes a circuit board 210 and at least one metal casing 220. In addition, the metal casing 220 is attached to the circuit board 210. In this exemplary embodiment, the socket 200 includes two identical metal casings 220, and the two meal casings 220 are symmetrically attached to two sides of the circuit board 210 respectively. In the content below, one of the metal casings 220 is used as an example to illustrate the structure of the metal casing 220. In this exemplary embodiment, the metal casing 220 has an elongated shape, and one end of the metal casing 220 includes an insertion opening 221, and a side surface of the metal casing 220 includes a side opening 222 formed thereon. The metal casing 220 penetrates into the internal of the waterproof housing 100 and also penetrates the opening 101 of the waterproof housing 100, such that the insertion opening 221 is able to align with the opening 101 to allow the plug 10 to be inserted into the socket 200 via the dry side 21 of the partition board 20.
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(17) The heat conduction plate 300 is movably attached to the outer side of the metal casing 220. One side of the heat conduction plate 300 passes through the side opening 222 to protrude out from the inner surface of the metal casing 220. In addition, another side of the heat conduction plate 300 includes a flexible heat conduction element 310 attached thereto. In this exemplary embodiment, the flexible heat conduction element 310 is a thermal paste or thermal pad made of a gel material of mixed metal powder. To be more specific, the heat conduction plate 300 includes a protruding stage 301 passing through the side opening 222 to protrude out of the inner surface of the metal casing 220. A slot 222 is formed at the opposite surface of the heat conduction plate 300 and the protruding stage 301, and the flexible heat conduction element 310 is received inside the slot 302. The flexible heat conduction element 310 is disposed between the inner surface of the waterproof housing 100 and the heat conduction plate 300 (the flexible heat conduction element 310 is spaced apart from the inner surface of the waterproof housing 100, that is, the flexible heat conduction element 310 does not contact the inner surface of the waterproof housing 100 before the socket 200 being inserted), such that during the assembly, it is able to allow the socket 200 to be inserted into the waterproof housing 100. The heat conduction plate 300 includes a guiding slope 303, and the guiding slope 303 is formed at one side of the protruding stage 301 and protrudes inside the metal casing 220. The guiding slope 303 is arranged to face the insertion opening 221.
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(19) The metal casing 220 includes an elastic member 230, and the elastic member 230 is connected to the heat conduction plate 300. When the plug 10 is removed, the elastic member 230 may push the heat conduction plate 300 to return to its original position. To be more specific, the elastic member 230 is attached to the metal bracket 141 at the outer side of the metal casing 220, and the elastic member 230 includes an elastic arm 231 extended therefrom. In addition, the elastic arm 231 presses the heat conduction plate 300 to push the heat conduction plate 300 toward the internal of the metal casing 220.
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(21) One end of the cable 400 is connected to the circuit board 210 of the socket 200, and the cable 400 penetrates through the waterproof housing 100 via the wiring opening 102 to reach the internal of the water tank. The waterproof plug 500 wraps a section of the cable 400. To be more specific, the waterproof plug 500 wraps the connection area between the cable 400 and the circuit board 210, and the waterproof plug 500 is disposed at the wiring opening 102 to close the wiring opening 102. The waterproof plug 500 includes an inner end 510 and an outer end 520 opposite to the inner end 510. The inner end 510 of the waterproof plug 500 is arranged to face the socket 200 and the inner end 510 of the waterproof plug 500 includes a longitudinal annular rib 501 formed thereon. The end cap 140 is fastened to the waterproof housing 100 along the longitudinal direction of the waterproof plug 500 to press the outer end 520, thereby allowing the longitudinal annular rib 501 to press the ring step surface 120 to achieve the sealing effect. The inner end 510 of the waterproof plug 500 includes an annular slot 503, and the ring step surface 120 closes the annular slot 503. The internal of the annular slot 503 is filled with waterproof gel to achieve the sealing effect. The outer surface of the waterproof plug 500 includes a transverse annular rib 502, and the transverse annular rib abuts against the inner surface of the waterproof housing 100 to achieve the sealing effect.
(22) To be more specific, the end cap 140 includes a plurality of brackets 141, and the brackets 141 are connected to each other to circumferentially define a through hole 103 for the waterproof plug 500 to penetrate therethrough. In addition, the plurality of brackets 141 are respectively fastened to the waterproof housing 100 along the longitudinal direction of the waterproof plug 500. Accordingly, when the plurality of brackets 141 are assembled, an inner edge of the through hole 103 presses against an outer surface of the waterproof plug 500 to achieve the sealing effect.
(23) The above description is provided to illustrate the exemplary embodiments of the present disclosure only such that it shall not be treated as limitation to the claimed scope of the present disclosure. In addition, any equivalent modification made based on the present disclosure shall be considered to be within the claimed scope of the present disclosure.