The present disclosure relates to electronic devices, and more particularly to an input device.
An input device is usually applied to portable products to trigger corresponding functions. Nowadays, portable products supplied with various functions. A conventional input device may include a number of buttons or keys, one key or button can be operated to call only one function, which results in a plurality of buttons or keys needed as the input device.
Many aspects of the present embodiments can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present embodiments. Moreover, in the drawings, all the views are schematic, and like reference numerals designate corresponding parts throughout the several views.
The disclosure is illustrated by way of example and not by way of limitation in the figures of the accompanying drawings in which like reference numerals indicate the same or similar elements. It should be noted that references to “an” or “one” embodiment in this disclosure are not necessarily to the same embodiment, and such references can mean “at least one.”
The
In the embodiment, the first switch 40 is a reed switch, and the second switch 50 is a micro switch. The first switch 40 and the second switch 50 are arranged on the printed circuit board 10 and are electronically connected with a conductive pattern formed on the printed circuit board 10.
The guide body 20 includes a first mounting portion 22 and a second mounting portion 24 and a plurality of joint arms 26. The first mounting portion 22 is arranged inside of the second mounting portion 24, and surrounded by the second mounting portion 24, and the plurality of the joint arms 26 is connected between the first mounting portion 22 and the second mounting portion 24.
A plurality of stopper protrusions 220 extend from a top of the first mounting portion 22 in intervals. A plurality of pins 222 extend from a periphery of the first mounting portion 22 towards second mounting portion 24 in intervals. In the embodiment, the first mounting portion 22 includes two stopper protrusions 220 and three pins 222.
The printed circuit board 10 defines a plurality of coupling holes 12 corresponding to the coupling protrusions 28. In assembly, each of the positioning protrusions 28 is inserted into the corresponding coupling hole 12 with the pin portion 281 retained to the bottom of the circuit board 10, such that the guide body 20 is fixed onto the printed circuit board 10.
The button 30 includes a hollow columnar main body 32, and a columnar operation portion 34 protruding upwardly from a top portion of the main body 32. The operation portion 34 is arranged at a center of the top portion of the main body 32. A first push protrusion 36 protrudes downwardly from a bottom portion of the main body 32. At least one second push protrusion 38 protrudes from an outside surface of the main body 32. A diameter of the operation portion 34 is smaller than a diameter of the main body 32, which allows users to operate the operation portion 34 easily.
A plurality of hooks 320 is located at the bottom of main body 32 opposite to the operation portion 34. The hooks 320 respectively correspond to the plurality of the pins 222. When the button 30 is mounted on the guide body 20, the hooks 320 are respectively retained to the pins 222 to fix the button 30 to the guide body 20. The main body 32 is mounted on and surrounds the first mounting portion 22. A plurality of guide slots 322 is defined in main body 32 corresponding to the plurality of the stopper protrusions 220 of the first mounting portion 22. Therefore, when the button 30 is rotated in the guide body 20 while being mounted on the first mounting portion 22, the stopper protrusion 220 is received in the guide slot 322. At the same time, the stopper protrusion 220 slides along the guide slot 322 and regulates a rotation of the button 30.
In the embodiment, there are two second switches 50 respectively corresponding to the two second push protrusions 38, when the button 30 is pushed, the first push protrusion 36 pushes the first switch 40 to trigger a default function of the first switch 40, such as: turning off, turning on or some other actions, when the button 30 is rotated clockwise, the one of the two second push protrusions 38 pushes the one of the two second switches 50 to trigger a default function of the second switch 50, such as turning off, turning on or some other actions. When the button 30 is rotated counter clockwise, the other one of the two second push protrusions 38 pushes the other one of the two second switches 50 to trigger a default function of the second switch 50, such as turning off, turning on or some other action.
The cover 60 includes an opening 62 in a center, the cover 60 is arranged on the main body 32 of button 30 with the operation portion 34 passing through the opening 62. In the embodiment, the cover 60 is plate-shaped
Comparing to prior art, the input device 100 of the present disclosure can trigger the first switch 40 via upward and downward movement of the button 30, but also can trigger the second switch 50 via rotation movement of the button 30.
Although various features and elements are described as embodiments in particular combinations, each feature or element can be used alone or in other various combinations within the principles of the present disclosure 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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2013104879988 | Oct 2013 | CN | national |