1. Technical Field
The present disclosure relates to remote controls and, particularly, to a rotatable remote control.
2. Description of Related Art
Nowadays people usually use remote controls having quite a few keys to operate electronic devices, for example TVs. Frequently using such remote controls may cause users to be in a monotony and aridity mood.
The components of the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the rotatable remote control. Moreover, in the drawings, like reference numerals designate corresponding parts throughout several views.
Referring
In the embodiment, the main body 11 is generally cylindrical and includes a through hole (not labeled) along the axis of the main body 11. A stopper portion 110 protrudes out from the top end of the main body 11 and extends towards the axis of the main body 11. The second cover 14 and the stopper portion 110 are cooperatively for preventing the rotatable body 11 from sliding out from the main body 11. A plurality of receiving grooves 111 is defined in the inner sidewall of the main body 11. Each receiving groove 111 receives an elastic member 112. Each of the elastic members 112 includes an elastic projection (not labeled).
In the embodiment, the rotatable body 12 includes a first cylinder 120 and a second cylinder 121 attached to the first cylinder 120. The first cylinder 120 is hollow and includes a top surface (not labeled). The second cylinder 121 includes a through hole (not labeled) along the axis of the second cylinder 121. The radius of the first cylinder 120 is generally equal to that of the main body 11, and the radius of the second cylinder 121 is less than that of the main body 11. A positioning projection 1210 protrudes out from the outer sidewall of the second cylinder 121, and a pressing projection 1211 protrudes out from the bottom end of the second cylinder 121. The pressing projection 1211 is adjacent to the positioning projection 1210.
A plurality of first elastic conductive element 130 is mounted on the circuit board 13. In the embodiment, the number of the conductive element 130 is equal to that of the receiving grooves 111, and each conductive element 130 is aligned with a receiving groove 111.
Referring also to
In an alternative embodiment, the remote control 1 further includes a confirm button 15. When one of the conductive elements 130 is pressed by the pressing projection 1211 and the confirm button 15 is activated, the remote control 1 generates a remote signal to control an electronic device to execute a preset function.
The confirm button 15 includes at least one hook 150 and a pressing post 151. A spring 16 is placed over the pressing post 151. At least one latching slot 101 is defined in the inner surface of the first cover 10. Each hook 150 is received in one slot 101 and can slide along the slot 101. The confirm button 15 is movably connected to the first cover 10 via the hook 150 and the spring 16. When the confirm button 15 is pressed, the hook 150 moves downwards along the latching slot 101, and the spring 16 is compressed. When the confirm button 15 is released, the spring 16 extends to cause the confirm button 15 to resume its original position. A through hole 123 is defined in the top surface of the rotatable body 12, and a second elastic conductive element 131 is mounted on the circuit board 13. The pressing post 151 of the confirm button 15 extends through the through hole 123. When the confirm button 15 is pressed, the end of the pressing post 151 presses the conductive element 131.
In another alternative embodiment, when the duration of the press on one of the conductive elements 130 reaches a preset time interval, the remote control 1 generates a remote signal to control an electronic device to execute a preset function.
Referring also to
In the embodiment, each of the input pins I1-I8 corresponds to a conductive element 130. When a conductive element 130 is not pressed by the pressing projection 1211, the input of the input pin corresponding to the conductive element 130 is high voltage. When a conductive element 130 is pressed by the pressing projection 1211, the input pin corresponding to the conductive 130 is electrically connected to the control circuit 23 via the conductive element 130, and the input of the input pin is changed to low voltage.
The input pin I9 corresponds to the conductive element 131. When the conductive element 131 is not pressed by the end of the pressing post 151 of the confirm button 15, the input of the input pin I9 is high voltage. When the confirm button 15 is pressed, causing the pressing post 151 to press the conductive element 131, the input pin I9 is electrically connected to the control circuit 23 via the conductive element 131, and the input of the input pin I9 is changed to low voltage.
The control pin CX is electrically connected to the control circuit 23. In the embodiment, when the input of the control pin CX is high voltage, the rotatable remote control 1 is unlocked, otherwise the remote control 1 is locked. That is, when the input of the control pin CX is high voltage and one of the first conductive elements 130 is pressed, the input pin corresponding to the first conductive element 130 is changed to low voltage. Referring also to
The chip 22 further includes a function determining module 220 and a remote control module 221.
The function determining module 220 includes a function determining table 2201 (shown below). In the table 2201, each of the input pins I1-I8 corresponds to a preset function. The function determining module 220 detects the input of the input pins I1-I8 and determines which function will be executed according to the detected input of the input pins I1-I8 and the function determining table 2201. In the embodiment, when the function determining module 220 determines the input of one of the input pins I1-I8 is low voltage, the remote control module 221 generates a control signal to control an electronic device to execute a preset function.
In an alternative embodiment, the function determining module 220 determines the input of one of the input pins I1-I8 and the input pin I9 are low voltage, the remote control module 221 generates a control signal to control an electronic device to execute a preset function.
In another alternative embodiment, when the function determining module 220 determines the input of one of the input pins I1-I8 is low voltage within a predetermined time interval, the remote control module 221 generates a control signal to control an electronic device to execute a preset function.
Although the present disclosure has been specifically described on the basis of the exemplary embodiment thereof, the disclosure is not to be construed as being limited thereto. Various changes or modifications may be made to the embodiment without departing from the scope and spirit of the disclosure.
Number | Date | Country | Kind |
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200910303883.2 | Jun 2009 | CN | national |