1. Field of the Invention
The present invention relates to a switch assembly, and more particularly to a switch assembly that can connect with electric wires without a soldering process.
2. Description of Related Art
A conventional switch assembly is used as a bridge between a power source and an electric equipment and usually has a case, a conductive device, a button device and multiple conductive slices. The case has a cover and a base. The cover is securely mounted around the base and formed an inner chamber between the cover and the base. The conductive device is mounted in the inner chamber. The button device is attached to the cover and is contacted to the button device. The conductive slices are respectively attached to and protrude out from the base and are contacted to the conductive device.
When the switch assembly is assembled between the power source and the electric equipment, electric wires of the power source must be connected to the conductive slices of the switch assembly by a soldering process.
Even though the conventional switch assembly can be used as a bridge between the power source and the electric equipment, the conventional switch assembly also has the following shortcomings.
1. To assemble the switch assembly between the power source and the electric equipment, a soldering machine and the soldering material are necessary, and this will increase cost and time for assembling the switch assembly to the power source and the electric equipment.
2. With the soldering material for connecting the wires to the conductive slices, the switch assembly is not detachable to the wires so that to repair or change a damaged switch assembly is trouble and difficult.
The main objective of the present invention is to provide a switch assembly can connect with electric wires without a soldering process.
The switch assembly has a base, a cover and multiple conductive slices. The base has an extending board and multiple inserting recesses. The inserting recesses are formed in the extending board and each have two mounting posts and an inserting hole. The mounting posts are formed on and protrude up from the recess. The inserting hole is formed through the extending board. The cover is mounted over the base. The conductive slices are attached to the inserting recesses and each have an elastic tab and a mounting tab. The mounting tab is contacted with the elastic tab, is attached to the inserting recess and has two mounting holes, an opening and two clamping slices. The mounting holes are formed through the mounting tab and correspond to the mounting posts. The opening is formed through the mounting tab and corresponds to the inserting hole. The clamping slices are attached to the mounting tab.
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 base (11) is U-shaped and has a front side, a rear side, an extending board (111) and multiple inserting recesses (112). The extending board (111) is mounted horizontally on the front side of the base (11) and has a top and a bottom. The inserting recesses (112) are respectively formed in the top of the extending board (111) and each has two mounting posts (114) and an inserting hole (113). The mounting posts (114) are respectively formed and protrude up from the bottom of the recess (112). The inserting hole (113) is figured an eight-shape and is formed through a bottom of the recess (112) between the mounting posts (114).
The cover (12) is mounted over the base (11) and has a top, a front side, a rear side, multiple through holes (121), a connecting board (122) and multiple caps (123). The through holes (121) are respectively formed through the top of the cover (12). The connecting board (122) is mounted horizontally on the front side of the cover (12), corresponds to the extending board (111) and has a top surface and a bottom surface. The caps (123) are respectively mounted on the connecting board (122), correspond respectively to the inserting recesses (112) in the extending board (112) and each have an open end, a close end and a chamber (124). The open end of the cap (123) is extended from the top surface to the bottom surface of the connecting board (122) and covers around the corresponding inserting recess (112). The chamber (124) is formed between the open end and the close end of the cap (123).
The button devices (13) are respectively mounted on the cover (12) and each have a pressing tab (131), a button (132) and a spring (133). The pressing tab (131) is mounted on the cover (12), extends through one of the through holes (121) of the cover (12) and has a distal end and proximal end. The distal end of the pressing tab (131) is extended through a corresponding through hole (121). The button(132) is attached to the proximal end of the pressing tab (131). The spring (133) is mounted around the pressing tab (131) between the button (132) and the top of the cover (12).
The conductive slices (14A) are respectively attached to the inserting recesses (112) of the base (11) and each have an inner end, an outer end, an elastic tab (141A) and a mounting tab (145A). The elastic tab (141A) is bent to a triangular-shape and is formed on the inner end of the conductive slice (14A). The mounting tab (145A) is flat, is formed on the outer end, is attached to one of the inserting recesses (112) and has two mounting holes (142A), an opening (143A) and two clamping slices (144A). The mounting holes (142A) are respectively formed through the mounting tab (145A) and correspond respectively to the mounting posts (114) in the corresponding inserting recess (112). The opening (143A) is rectangular-shaped, is formed through the mounting tab (145A) between the mounting holes (142A) and corresponds to the inserting hole (113) in the corresponding inserting recess (112) and has two ends. The clamping slices (144A) are rectangular-shaped, are horizontally and respectively attached to the mounting tab (145A) over the opening (143A), face each other and formed a gap between the clamping slices (144A). The gap is communicated with the opening (143A).
The power slice (15) is mounted in the base (11) is contacted to the elastic tabs (141A) of the conductive slices (14A) and has an end and a connecting tab (151). The connecting tab (151) is formed in the end of the power slice (15) and is used to transport the electric power.
The engaging board (16) is mounted in the base (11) and is engaged with the distal ends of the pressing tabs (131).
With reference to
With reference to
The switch assembly (10) as described has the following advantages.
1. To assemble the switch assembly (10) with the electric wires (20), only to insert the electric wires (20) into and be engage with the conductive slices (14A, 14B, 14C) is necessary. Therefore, a soldering machine and soldering material are unnecessary, and the cost and the time for assembling the switch assembly (10) with electric wires (20) are reduced.
2. The simplified structure of the conductive slice (14A, 14B, 14C) causes the manufacturing of the switch assembly to be quicker and easier.
3. Because the electric wires (20) can be easily detached from the switch assembly (10), to repair or replace a damaged switch assembly is convenient.
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 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 board general meaning of the terms in which the appended claims are expressed.
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4130744 | Beecher et al. | Dec 1978 | A |
5626488 | Albeck et al. | May 1997 | A |
5911594 | Baker et al. | Jun 1999 | A |
20020160648 | Bulmer et al. | Oct 2002 | A1 |