1. Field of the Invention
The present invention is an electrical outlet assembly; especially, the present invention relates to an electrical outlet assembly having random arranged sockets and the manufacturing method thereof.
2. Description of Related Art
The traditional electrical outlet assembly 1 having a housing 12, as shown in
On the other hand, when client want to change the socket type and the positions of the socket, new molds and new tools have to be developed for manufacturing the new electrical outlet assembly 1. As a result, the manufacturing efficiency cannot be improved and the cost is increased. Therefore, the above-mentioned problem results in the bottleneck of the manufacturing procedure.
The present invention is provided for an electrical outlet assembly. The sockets of various functions can be selected on the housing and the amount of the sockets can also be adjusted.
Consequently, with regard to the resolution of defects illustrated hereinbefore, the inventors of the present invention propose a reasonably and effectively designed solution for effectively eliminating such defects.
The objective of the present invention is to provide an electrical outlet assembly and a manufacturing method thereof. The housing of the electrical outlet assembly has a plurality of openings for assembling a switch module and/or electrical outlet modules. Therefore, the switch module and/or electrical outlet modules can be selected and arranged on the housing.
The present invention discloses an electrical outlet assembly, comprising: a housing having an upper casing and a bottom casing, the upper casing having a plurality of openings, the upper casing and the bottom casing being assembled with each other to form a receiving room; a switch module, having a switch, a surge arrester and a first casing, the switch being electrically connected with the surge arrester; at least one electrical outlet module, having a second casing; a cable set disposed in the receiving room, the cable set being electrically connected with the switch module and the electrical outlet module; wherein the switch module and the electrical outlet module are respectively disposed in the openings, and the switch module and the electrical outlet module are arranged on the housing.
The electrical outlet assembly of the present invention has a switch module and at least one electrical outlet module. The switch module includes a switch and a surge arrester for protecting the electrical outlet assembly from line surge. The electrical outlet module can be the socket having an USB charging device, the socket having an anti-detachment device, the socket having an auxiliary switch, the socket having a dustproof cover or a general socket. The amount and the arrangement of the above-mentioned sockets can be selected according to the requirement of applications. On the other hand, the above-mentioned sockets respectively have one independent casing so that the sockets are efficiently assembled with the hosing. Thus, the manufacturing procedures can be flexibly adjusted, the manufacturing efficiency is improved and the manufacturing cost is reduced.
In order to further appreciate the characteristics and technical contents of the present invention, references are hereunder made to the detailed descriptions and appended drawings in connection with the present invention. However, the appended drawings are merely shown for exemplary purposes, rather than being used to restrict the scope of the present invention.
Please refer to
As shown in
A socket 251 having an USB charging device 251a is shown in
Please refer to
In addition, a manufacturing method of electrical outlet assembly 2 as illustrated in
Step (b) is assembling a switch module 23 in the receiving room 211 correspondingly to one of the openings 212a of the upper casing 212. The switch module 23 has a switch 238, a surge arrester, and a first insulation-displacement-contact terminal 233. The switch 238 is electrically connected with the surge arrester. Step (c) is inserting the first insulation-displacement-contact terminal 233 into the cable set 28. In detail, a plurality of shaped plates 223a of the first insulation-displacement-contact terminal 233 is inserted through an insulation layer of the cable set 28 for exploding the inner conductor (i.e., Cu conducting line) of the cable set 28. Thus, the first insulation-displacement-contact terminal 233 can electrically connect to the cable set 28. Moreover, the casing (i.e., the first casing) of the switch module 23 is fixed on the upper casing 212 or the bottom casing 214 by hooking or locking methods.
Step (d) is assembling at least one electrical outlet module 25 in the receiving room 211 correspondingly to the remaining openings 212a of the upper casing 212. The electrical outlet module 25 has a second insulation-displacement-contact terminal 257. Step (e) is similar with the Step (c) and is inserting the second insulation-displacement-contact terminal 257 into the cable set 28. In detail, a plurality of shaped plates 257a of the second insulation-displacement-contact terminal 257 is inserted through an insulation layer of the cable set 28 for exploding the inner conductor (i.e., Cu conducting line) of the cable set 28. Thus, the second insulation-displacement-contact terminal 257 can electrically connect to the cable set 28. In the step (d), the electrical outlet module 25 can be any type of socket(s), for example, the electrical outlet module 25 can be the socket 251 having an USB charging device 251a, the socket 252 having an anti-detachment device 252a, the socket 253 having an auxiliary switch 253a, the socket 254 having a dustproof cover 254a or a general socket 255. The amount and the arrangement of the above-mentioned sockets 251 to 255 can be selected according to the requirement of applications. On the other hand, the above-mentioned sockets 251 to 255 respectively have one independent casing so that the sockets are efficiently assembled with the hosing 21. Moreover, the casing (i.e., the second casing) of the electrical outlet module 25 is fixed on the upper casing 212 or the bottom casing 214 by hooking or locking methods.
Accordingly, the present invention provides for an electrical outlet assembly 2 having a switch module 23 with a surge arrester and at least one electrical outlet module 25. The electrical outlet assembly 2 has a housing 21 and the housing 21 defines a receiving room 212a for accommodating the switch module 23 and the electrical outlet module 25. The electrical outlet module 25 can have various types of sockets and the arrangement of the sockets can be adjusted and changed easily. The manufacturing method of the electrical outlet assembly 2 is further introduced. The selected sockets can be efficiently assembled on the housing 21. Moreover, when users want to change the electrical outlet assembly 2, the new types of sockets can be chosen and assembled on the original upper casing 212. The un-assembled sockets can be retained for next usage. Therefore, the present invention provides for environment protection and reducing the manufacturing cost.
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Communication From Taiwan Patent Office Regarding a Counterpart Taiwan Application Dated Dec. 22, 2012. |
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