1. Technical Field
The present disclosure generally relates to electronic devices, and particularly, to an electronic device with a power switch.
2. Description of the Related Art
An electronic device generally has a power switch for turning the electronic device on/off. The electronic device includes a housing defining a receiving hole, and the power switch is received in the receiving hole. The power switch includes an operating button, a printed circuit board, and an elastic piece, in which the elastic piece is installed between the operating button and the printed circuit board. When the operating button is pressed to connect the electrical contacts of the printed circuit board, the electronic device turns on. In assembly of the power switch to the housing, the operating button is inserted into the receiving hole, and the elastic piece is fixed to the housing, such that that the elastic piece is between the operating button and the printed circuit board. However, in the assembly process of the power switch, the technician requires to align the operating button with the elastic piece, and fix the elastic piece to the housing by hand, therefore, the assembly precision is low, and it consumes a significant amount of time to assemble the operating button to the housing.
Therefore, there is room for improvement within the art.
The components in the drawings are not necessarily drawn to scale, the emphasis instead placed upon clearly illustrating the principles of the present disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
Referring to
Referring to
The power switch 30 includes an operating button 31, a printed circuit board 32, a support member 33, an elastic member 34, and an adhesive member 35.
The operating button 31 includes a pressing portion 311 and a connecting portion 313 around the pressing portion 311. The connecting portion 313 has the same shape as the assembly portion 23, and can be received in the assembly portion 23. The pressing portion 311 has a pressing surface 3111 and an inner surface 3112 opposite to the pressing surface 3111. The pressing portion 311 forms an electrical contact 3113 in a center of the inner surface 3112.
The printed circuit board 32 includes a first surface 321 and a second surface 322 opposite to the first surface 321. The first surface 321 forms an elastic connecting piece 323. In the illustrated embodiment, the elastic connecting piece 323 is a circular hollow protrusion (see
The support member 33 defines a through hole 331 in a center portion thereof. The printed circuit board 32 is positioned in the through hole 331, and fixed to the support member 33. In the illustrated embodiment, the support member 33 is substantially circular, and made of metal.
The elastic member 34 includes an annular main body 341 and a plurality of resisting claws 343 extending from an inner side of the main body 341 and towards the printed circuit board 32. The resisting claws 343 stably support the printed circuit board 32. Each resisting claw 343 includes a connecting portion 3431 and two resisting arms 3432 extending from opposite sides of the connecting portion 3431. Each resisting arm 3432 forms a resisting end 3433 at an end of the resisting arm 3432 away from the connecting portion 3431. In the illustrated embodiment, the elastic member 34 has four resisting claws 343 evenly arranged at the inner side of the main body 341.
The adhesive member 35 includes an annular portion 351 and a plurality of ribs 352 extending from an inner side of the annular portion 351 corresponding to the connecting portions 3431. In the illustrated embodiment, the adhesive member 35 may be double-sided adhesive.
Referring to
When an external force is applied to press the operating button 31, the operating button 31 is deformed, and then the electrical contact 3113 presses the elastic connecting piece 323 until the elastic connecting piece 323 connects the two electrical contacts 324. Therefore, the electrical contacts 324 are electrically connected to each other, and the power turns on, simultaneously the resisting claws 343 are compressed and generate an elastic force. Then, the external force is removed, and the elastic force generated by the resisting claws 343 drives the operating button 31 to go back to its original position. If the operating button 31 is pressed again, the power turns off.
In assembly of the power switch 30 to the housing 20, the elastic member 34 is first fixed to the operating button 31 via the adhesive member 35; therefore, the elastic member 34 can be quickly positioned in the assembly portion 23 together with the operating button 31, with the elastic member 34 aligned with the operating button 31.
While the present disclosure has been described with reference to particular embodiments, the description is illustrative of the disclosure and is not to be construed as limiting the disclosure. Therefore, various modifications can be made to the embodiments by those of ordinary skill in the art without departing from the true spirit and scope of the disclosure, as defined by the appended claims.
Number | Date | Country | Kind |
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2011 1 0169325 | Jun 2011 | CN | national |
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Number | Date | Country | |
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20120325638 A1 | Dec 2012 | US |