WO2015021756A1 - 电磁遥控器及电磁遥控器的控制方法 - Google Patents

电磁遥控器及电磁遥控器的控制方法 Download PDF

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Publication number
WO2015021756A1
WO2015021756A1 PCT/CN2014/071404 CN2014071404W WO2015021756A1 WO 2015021756 A1 WO2015021756 A1 WO 2015021756A1 CN 2014071404 W CN2014071404 W CN 2014071404W WO 2015021756 A1 WO2015021756 A1 WO 2015021756A1
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Prior art keywords
signal
pressure
detected
control
turntable
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PCT/CN2014/071404
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English (en)
French (fr)
Inventor
程鑫
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深圳Tcl新技术有限公司
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Application filed by 深圳Tcl新技术有限公司 filed Critical 深圳Tcl新技术有限公司
Priority to US14/894,663 priority Critical patent/US9761127B2/en
Priority to EP14836162.9A priority patent/EP3035312B1/en
Publication of WO2015021756A1 publication Critical patent/WO2015021756A1/zh

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    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/04Arrangements for transmitting signals characterised by the use of a wireless electrical link using magnetically coupled devices
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link

Definitions

  • the invention relates to the technical field of remote control, and in particular to a method for controlling an electromagnetic remote controller and an electromagnetic remote controller.
  • the main object of the present invention is to provide an electromagnetic remote controller and a control method thereof for the electromagnetic remote controller, which makes the remote controller easy to carry under the premise of ensuring that the remote controller controls the function of the controlled terminal.
  • the embodiment provides an electromagnetic remote controller including a first turntable and a second turntable rotatably connected to the first turntable, and the second turntable is provided with at least one first magnetic member,
  • the first turntable is provided with at least one second magnetic member, the one side of the first magnetic member facing the first turntable is the same polarity as the one side of the second magnetic member facing the second turntable;
  • the electromagnetic remote controller further comprises A relative position of a magnetic member and the second magnetic member corresponds to a control circuit for generating a remote control signal.
  • control circuit includes a controller, a pressure sensor electrically connected to the controller and disposed on the first magnetic member or the second magnetic member, and a signal transceiver electrically connected to the controller, The controller controls the signal transceiver to generate and transmit a corresponding remote control signal when the pressure detected by the pressure sensor increases.
  • the method further includes a control button that is connected to the controller signal, and the controller is configured to switch the mode of the remote controller when the signal of the control button is pressed, and open the pressure corresponding to the current mode of the remote controller. Sensor and turn off the pressure sensor corresponding to the other modes of the remote control.
  • the first rotating plate is provided with two second magnetic members relative to the first magnetic member, and the first magnetic member is located between the two second magnetic members.
  • the method further includes a menu button connected to the controller signal, the controller is further configured to: when receiving the signal of the menu button press, control the signal transceiver to send a menu call instruction, and After transmitting the menu call command, the signal transceiver is controlled to send a selection command when the pressure detected by the pressure sensor increases.
  • control module is further configured to: when the signal pressed by the menu button is a continuous signal, control the signal transceiver to send a menu call instruction, and when the signal pressed by the menu button is a transient signal And controlling the signal transceiver to send a confirmation command.
  • the first turntable is provided with a plurality of scales for corresponding certain adjustment levels.
  • the first turntable is annular.
  • the first turntable is disposed coaxially with the second turntable.
  • the invention also provides a control method of an electromagnetic remote controller, comprising:
  • the method before the step of detecting the pressure increase signal detected by the pressure sensor, the method further comprises:
  • the step of transmitting the corresponding control command according to the mapping relationship between the command and the pressure value comprises:
  • a corresponding control command is transmitted according to the type of the instruction and a mapping relationship between the instruction and the pressure value in the pressure increment signal.
  • the step of transmitting the corresponding control command according to the mapping relationship between the command and the pressure value before detecting the pressure increase signal detected by the pressure sensor further comprises:
  • the corresponding control command is sent according to the mapping relationship between the pressure value in the pressure-increasing signal and the instruction.
  • the invention also provides a control method of an electromagnetic remote controller, comprising:
  • the step of detecting the trigger signal of the menu button further comprises:
  • the menu call instruction is sent;
  • the electromagnetic remote controller and the electromagnetic remote controller control method according to the present invention when the second turntable is rotated, the repulsive force between the first magnetic member on the second turntable and the second magnetic member on the first turntable increases, and is detected When the pressure on the second magnetic member increases, the corresponding control command is sent to the controlled device, because the control of the controlled terminal can be completed by rotating the second rotating wheel, without setting extra function buttons, occupying small volume and being convenient to carry. .
  • FIG. 1 is a schematic view showing the positional relationship of various components in the electromagnetic remote controller of the present invention
  • FIG. 2 is a schematic structural view of a preferred embodiment of an electromagnetic remote controller according to the present invention.
  • FIG. 3 is a schematic flow chart of a first embodiment of a method for controlling an electromagnetic remote controller according to the present invention
  • FIG. 4 is a schematic flow chart of a second embodiment of a method for controlling an electromagnetic remote controller according to the present invention.
  • FIG. 5 is a schematic diagram of a specific process of step S20 in FIG. 3;
  • FIG. 6 is a schematic flow chart of a third embodiment of a method for controlling an electromagnetic remote controller according to the present invention.
  • FIG. 7 is a schematic flow chart of a fourth embodiment of a method for controlling an electromagnetic remote controller according to the present invention.
  • FIG. 8 is a schematic flow chart of a fifth embodiment of a method for controlling an electromagnetic remote controller according to the present invention.
  • FIG. 1 is a schematic diagram showing the positional relationship of various components in the electromagnetic remote controller of the present invention
  • FIG. 2 is a schematic structural view of a preferred embodiment of the electromagnetic remote controller according to the present invention.
  • the embodiment provides an electromagnetic remote controller including a first turntable 10 and a second turntable 20 rotatably connected to the first turntable 10, and the second turntable 20 is provided with at least one first magnetic member 30, A turntable 10 is provided with at least one second magnetic member 40.
  • One side of the first magnetic member 30 facing the first turntable 10 has the same polarity as the second magnetic member 40 facing the second turntable 20; the electromagnetic remote controller further includes The relative position of the first magnetic member 30 and the second magnetic member 40 corresponds to a control circuit (not shown) that generates a remote control signal.
  • the rotational connection of the first turntable 10 and the second turntable 20 means that the second turntable 20 is rotatable relative to the first turntable 10.
  • the first turntable 10 and the second turntable 20 are coaxially disposed, the first turntable 10 and the second turntable 20 may be disposed on the same plane, or may be staggered; the first turntable 10 and the second turntable 20 may also be disposed as different axes, as long as the first turntable 10 and the second turntable 20 are relatively rotatable.
  • the first magnetic member 30 and the second magnetic member 40 may be disposed as a single-pole magnetic member, or may be formed as a two-pole magnetic member such as a magnet, and the second magnetic member 40 faces the first magnetic member 30 toward one side of the second turntable 20
  • One side of the first turntable 10 has the same polarity, and a repulsive force is generated between the first magnetic member 30 and the second magnetic member 40. Since the opposite faces of the first magnetic member 30 and the second magnetic member 40 have the same polarity, when the user rotates the second turntable 20 for control, the closer the first magnetic member 30 is to the second magnetic member 40, the greater the repulsion, according to the change of the repulsive force.
  • the second turntable 20 can be released, and under the action of the repulsive force, the first magnetic member 30 returns to the original position.
  • the first magnetic member 30 includes a first magnetic body Q1 and a second magnetic body Q2
  • the second magnetic member 40 includes a third magnetic body Q3, a fourth magnetic body Q4, and a fifth
  • the magnetic body Q5 and the sixth magnetic body Q6 can be provided with the third magnetic body Q3, the fourth magnetic body Q4, the fifth magnetic body Q5, and the sixth magnetic body Q6 toward the second turntable 20 as the S pole, and at the same time
  • a magnetic body Q1 and a second magnetic body Q2 are disposed on the one side of the first turntable 10 as an S pole
  • the third magnetic body Q3, the fourth magnetic body Q4, the fifth magnetic body Q5, and the sixth magnetic body Q6 may be oriented toward the first One side of the two turntables 20 is disposed as an N pole
  • the first magnetic body Q1 and the second magnetic body Q2 are disposed to face the first turntable 10 as an N pole
  • the third magnetic body Q3 and the sixth magnetic body Q6 may also be oriented.
  • One surface of the second turntable 20 is disposed as an S pole, and one side of the first magnetic body Q1 facing the first turntable 10 is set to the S pole, and the fourth magnetic body Q4 and the fifth magnetic body Q5 are disposed toward one side of the second turntable 20
  • the N pole one side of the second magnetic body Q2 facing the first turntable 10 is set to an N pole.
  • the first turntable 10 is preferably annular and can be worn as a finger ring or a wristband, either as an ornament or as a remote control.
  • the repulsive force between the first magnetic member 30 on the second turntable 20 and the second magnetic member 40 on the first turntable 10 is increased.
  • the pressure between the magnetic member 30 and the second magnetic member 40 is increased, a corresponding remote command is sent, because the control of the controlled terminal can be completed by rotating the second turntable 20, without setting extra function buttons, occupying volume Small and easy to carry.
  • a control circuit (not shown) includes a controller, a pressure sensor 50 electrically connected to the controller and disposed on the first magnetic member 30 or the second magnetic member 40, and a signal for electrical connection with the controller The controller, when the pressure detected by the pressure sensor 50 increases, the control signal transceiver generates and transmits a corresponding remote control signal.
  • the pressure sensor 50 is mounted on the second magnetic member 40.
  • the pressure value detected by the pressure sensor 50 increases, and a pressure increase signal is sent to the controller, and the controller receives the signal. Thereafter, the control signal transceiver generates and transmits a corresponding remote control signal.
  • control button 60 is connected to the controller signal, and the controller is configured to switch the mode of the remote controller when the signal of the control button 60 is pressed, turn on the pressure sensor 50 corresponding to the current mode of the remote controller, and turn off the remote controller. Pressure sensor 50 corresponding to other modes.
  • two second magnetic members 40 are disposed on the first turntable 10 with respect to the first magnetic member 30, and the first magnetic members 30 are located between the two second magnetic members 40.
  • the first sensor A1 and the second sensor A2 are pressure sensors 50 corresponding to the first mode of the remote controller
  • the third sensor A3 and the fourth sensor A4 are pressure sensors 50 corresponding to the second mode of the remote controller.
  • the first mode of the remote controller is the channel adjustment mode
  • the second mode of the remote controller is the volume adjustment mode
  • the first sensor A1 corresponding detection channel is increased, and the second sensor A2 is correspondingly detected.
  • the channel is reduced, the third sensor A3 corresponds to the detection volume increase and decrease, and the fourth sensor A4 corresponds to the detection volume decrease.
  • the signal of the control button 60 is pressed, if the current working mode is the channel adjustment mode, the first sensor is turned off. A1 and the second sensor A2 turn on the third sensor A3 and the fourth sensor A4.
  • the pressure increase signal is sent to the controller, and the controller
  • the control signal transceiver transmits a signal for increasing the volume when receiving the pressure increasing signal; when the second dial 20 is rotated clockwise, the repulsive force between the first magnetic body Q1 and the sixth magnetic body Q6 increases, and the fourth sensor A4 detects an increase in pressure. Thereafter, the pressure increment signal is sent to the controller, and the control signal transceiver sends a signal that the volume is reduced when the controller receives the pressure increment signal.
  • the current working mode is switched from the volume adjustment mode to the channel adjustment mode, and the first sensor A1 and the second sensor A2 are turned on, and the third sensor A3 is turned off.
  • the fourth sensor A4 detects the increase of the pressure by the first sensor A1 and the second sensor A2 and sends a pressure increase signal to the controller, and transmits a channel increase signal and a channel decrease signal through the controller control signal transceiver, respectively.
  • a plurality of scales may be disposed on the first turntable 10, such as a dial of a timepiece, and each scale is correspondingly adjusted to a certain level. For example, when the volume is rotated, the first magnetic member 30 rotates by one scale corresponding to the control volume adjustment level. The user can make adjustments very clearly and it is not easy to adjust the error.
  • a menu button 70 connected to the controller signal is further included, and the controller is further configured to: when receiving the signal pressed by the menu button 70, the control signal transceiver sends the menu call instruction, and after sending the menu call instruction When the pressure detected by the pressure sensor 50 increases, the control signal transceiver transmits a selection command.
  • the first mode of the preset remote controller is the left and right selection mode
  • the second mode is the upper and lower selection mode
  • the first sensor A1 correspondingly detects the leftward selection
  • the second sensor A2 corresponds to the detection direction.
  • the third sensor A3 corresponds to the detection upward selection
  • the fourth sensor A4 corresponds to the detection downward selection
  • the controller receives the signal pressed by the menu button 70
  • the control signal transceiver sends a menu call instruction
  • the television receives After the menu is called to invoke the corresponding menu, the TV enters the menu mode.
  • the signal of the control button 60 is pressed, if the current working mode of the remote controller is the left and right selection mode, the first sensor A1 is turned off.
  • the second sensor A2 turns on the third sensor A3 and the fourth sensor A4.
  • the third sensor A3 detects the pressure increase, and sends a pressure increase signal to the controller, and the controller receives
  • the control signal transceiver sends the upward selection signal, and when the television receives the upward selection signal, the selection cursor of the control menu can be moved upward;
  • the fourth sensor A4 detects an increase in pressure, sends a pressure increase signal to the controller, and the control signal transceiver transmits a downward selected signal when the controller receives the pressure increase signal, the television When the signal selected downward is received, the selection cursor of the control menu can be moved downward.
  • the current working mode of the remote controller is switched from the up and down selection mode to the left and right selection mode, and the first sensor A1 and the second sensor are turned on.
  • the third sensor A3 and the fourth sensor A4 are turned off, the first sensor A1 and the second sensor A2 detect the pressure increase and send the pressure increment signal to the controller, respectively, and send a leftward selection signal through the controller control signal transceiver, Select the signal to the right.
  • controller is further configured to: when the signal pressed by the menu button 70 is a continuous signal, the control signal transceiver sends a menu call instruction, and when the signal pressed by the menu button 70 is a short signal, the control signal transceiver sends Confirm the order.
  • the menu button 70 can be used to simultaneously realize the menu call-out and confirmation functions.
  • the long-pressed signal of the menu button 70 can be set as the menu call-out signal, and the menu button 70 short-press the signal as the confirmation signal, when the remote controller receives the menu button 70 long press
  • the controller control signal transceiver sends a menu call instruction, and sends a selection instruction to the user according to the detected pressure increment signal, such as an upward selection command, and the user can short press the menu button 70 after selecting the corresponding menu option.
  • the menu button 70 can also be set separately from the confirmation button.
  • FIG. 3 is a schematic flow chart of a first embodiment of a method for controlling an electromagnetic remote controller according to the present invention.
  • Step S10 detecting a pressure increase signal generated by the pressure sensor
  • the pressure sensor 50 detects the first The repulsive force between the magnetic member 30 and the second magnetic member 40 changes, so that when the relative positions between the first magnetic member 30 and the second magnetic member 40 are gradually approached, the first magnetic member 30 and the second magnetic member The pressure between 40 will increase, at which point pressure sensor 50 produces a pressure increase signal that includes the pressure value detected by pressure sensor 50.
  • Step S20 Send a corresponding control instruction according to a mapping relationship between the pressure value in the pressure increment signal and the instruction.
  • the repulsive force between the first magnetic member 30 on the second turntable 20 and the second magnetic member 40 on the first turntable 10 is increased.
  • the pressure value between the magnetic member 30 and the second magnetic member 40 is increased, the corresponding remote command is sent according to the mapping relationship between the pressure value and the command, because the second dial 20 can be rotated to complete the control of the controlled terminal. Control, no need to set extra function buttons, occupying small size and easy to carry.
  • FIG. 4 is a schematic flow chart of a second embodiment of a method for controlling an electromagnetic remote controller according to the present invention.
  • a second embodiment of the control method of the electromagnetic remote controller of the present invention is proposed based on the above embodiment.
  • the method before the step S10, the method further includes:
  • Step S30 detecting a trigger signal of the control button
  • Step S40 when the trigger signal of the control button is detected, switching the mode of the remote controller
  • step S50 the pressure sensor corresponding to the current remote control mode is turned on, and the pressure sensor corresponding to the other remote control mode is turned off.
  • the first sensor A1 and the second sensor A2 are pressure sensors 50 corresponding to the first mode of the remote controller
  • the third sensor A3 and the fourth sensor A4 are pressure sensors 50 corresponding to the second mode of the remote controller.
  • FIG. 5 is a schematic diagram of a specific process of step S20 in FIG.
  • step S20 specifically includes:
  • Step S21 when the pressure increment signal is detected, acquiring an instruction type corresponding to the pressure increment signal;
  • Step S22 sending a corresponding control instruction according to the type of the instruction and the mapping relationship between the instruction and the pressure value in the pressure increment signal.
  • the television remote controller is taken as an example for description.
  • the first mode of the remote controller is the channel adjustment mode
  • the second mode of the remote controller is the volume adjustment mode
  • the corresponding detection channel of the first sensor A1 is preset.
  • the second sensor A2 corresponds to the detection channel reduction
  • the third sensor A3 corresponds to the detection volume increase and decrease
  • the fourth sensor A4 corresponds to the detection volume decrease
  • the control button 60 is pressed, if the current working mode is the channel adjustment mode
  • the first sensor A1 and the second sensor A2 are turned off and the third sensor A3 and the fourth sensor A4 are turned on.
  • the pressure increase signal is sent to the controller, and the controller
  • the control signal transceiver transmits a signal for increasing the volume when receiving the pressure increasing signal; when the second dial 20 is rotated clockwise, the repulsive force between the first magnetic body Q1 and the sixth magnetic body Q6 increases, and the fourth sensor A4 detects an increase in pressure. Thereafter, the pressure increment signal is sent to the controller, and the control signal transceiver sends a signal that the volume is reduced when the controller receives the pressure increment signal.
  • the corresponding command can be sent according to the mapping relationship between the command and the pressure value. For example, when the volume is adjusted, the volume value can be adjusted more and more as the pressure value becomes larger.
  • FIG. 6 is a schematic flow chart of a third embodiment of a method for controlling an electromagnetic remote controller according to the present invention.
  • a third embodiment of the control method of the electromagnetic remote controller of the present invention is proposed based on the second embodiment.
  • the method before the step S20, the method further includes:
  • Step S60 when detecting the pressure increasing signal, determining whether the pressure sensor generates a pressure decrement signal within a preset time, and if not, executing step S20, according to the pressure value and the command in the pressure increasing signal The mapping relationship between the two sends a corresponding control command, and if so, proceeds to step S10 to detect a pressure increase signal generated by the pressure sensor.
  • a time interval may be preset. If the pressure sensor generates a pressure decrement signal during the time interval, the user releases the second dial to re-adjust, but may not do Any operation continues to detect the pressure increase signal generated by the pressure sensor. If the pressure decrement signal is not detected during the time interval, the user wants to adjust at the position, and then sends a corresponding control command.
  • FIG. 7 is a schematic flow chart of a fourth embodiment of a method for controlling an electromagnetic remote controller according to the present invention.
  • Step S70 detecting a trigger signal of the menu button
  • Step S80 when the trigger signal of the menu button is detected, sending a menu call instruction
  • Step S90 detecting a pressure increase signal generated by the pressure sensor
  • step S100 when the pressure increment signal is detected, a menu selection instruction is sent.
  • the television remote controller is taken as an example for description.
  • the first mode of the preset remote controller is the left and right selection mode
  • the second mode is the upper and lower selection mode
  • the first sensor A1 is preset to detect the leftward selection.
  • the second sensor A2 corresponds to the detection to the right
  • the third sensor A3 corresponds to the detection of the upward selection
  • the fourth sensor A4 corresponds to the detection of the downward selection
  • the adjustment controller receives the signal of the menu button 70 pressing
  • the control signal transceiver sends the menu adjustment.
  • the television sets a corresponding menu after receiving the menu call instruction.
  • the first sensor A1 and the second are turned off.
  • the sensor A2 turns on the third sensor A3 and the fourth sensor A4.
  • the second turntable 20 is rotated counterclockwise, the repulsive force between the second magnetic body Q2 and the fifth magnetic body Q5 is increased, and after the third sensor A3 detects the pressure increase, the pressure increase signal is sent to the controller, and the controller
  • the control signal transceiver sends the upward selection signal, and when the television receives the upward selection signal, the selection cursor of the control menu moves upward; when the second dial 20 is rotated clockwise, the first magnetic body Q1 The repulsion between the sixth magnetic body Q6 and the sixth magnetic body Q6 is increased.
  • the pressure increase signal is sent to the controller, and when the controller receives the pressure increase signal, the control signal transceiver sends the downward selection signal.
  • the selection cursor of the control menu moves downward.
  • FIG. 8 is a schematic flow chart of a fifth embodiment of a method for controlling an electromagnetic remote controller according to the present invention.
  • a fifth embodiment of the method for controlling the electromagnetic remote controller of the present invention is provided.
  • the method before the step S80, the method further includes:
  • Step S110 when the trigger signal of the menu button is detected, it is determined whether the trigger signal of the menu button is a continuous signal, and if so, step S80 is executed to send a menu call instruction, and if not, step S120 is performed;
  • step S120 a confirmation command is sent.
  • the function of menu callout and confirmation can be realized at the same time through the menu button.
  • the signal of long press of the menu button can be set as the menu call signal, and the short press of the menu button is the confirmation signal.
  • the controller control signal transceiver sends a menu call instruction, and sends a selection instruction to the user according to the detected pressure increment signal, such as an upward selection command, and the user can send the controlled terminal to the controlled terminal by short pressing the menu button after selecting the corresponding menu option. Confirm the order.
  • the menu button and the confirmation button can also be set separately.

Abstract

一种电磁遥控器及电磁遥控器的控制方法,在转动第二转盘(20)时,第二转盘(20)上的第一磁性件(30)与第一转盘(10)上的第二磁性件(40)之间的斥力增加,在检测到第二磁性件(40)上的压力增加时,向被控装置发送相应的控制指令,由于可通过转动第二转盘(20)即可完成对被控终端的控制,不用设置多余的功能按键,占用体积小,便于携带。

Description

电磁遥控器及电磁遥控器的控制方法
技术领域
   本发明涉及遥控控制技术领域,尤其涉及一种电磁遥控器及电磁遥控器的控制方法。   
背景技术
   随着科技的发展,家用电器如电视机、空调的应用越来越普及,而这些遥控器一般都需要通过遥控器来控制,而现有的遥控器不管是万能遥控器还是家用电器配带的遥控器均需要统括遥控器上的按键来控制被控的电器,遥控器上需要设置多个功能按键,占用体积大,不易携带。    
发明内容
   本发明的主要目的是提供一种电磁遥控器及其电磁遥控器的控制方法,在保证遥控器控制被控终端的功能的前提下,使得遥控器便于携带。
   本实施例提出一种电磁遥控器,该电磁遥控器包括第一转盘以及与所述第一转盘转动式连接的第二转盘,所述第二转盘上设置有至少一个第一磁性件,所述第一转盘上设置有至少一个第二磁性件,所述第一磁性件面向第一转盘的一面与第二磁性件面向第二转盘的一面极性相同;该电磁遥控器还包括根据所述第一磁性件与所述第二磁性件的相对位置对应生成遥控信号的控制电路。
   优选地,所述控制电路包括控制器,与所述控制器电连接且设置在所述第一磁性件或第二磁性件上的压力传感器,及与所述控制器电连接的信号收发器,所述控制器在所述压力传感器检测到的压力增加时,控制所述信号收发器生成并发送对应的遥控信号。
   优选地,还包括与所述控制器信号连接的控制按键,所述控制器用于接收到所述控制按键按下的信号时,切换所述遥控器的模式,开启遥控器当前模式所对应的压力传感器,并关闭遥控器其它模式所对应的压力传感器。
   优选地,所述第一转盘上相对于所述第一磁性件设置有两个第二磁性件,所述第一磁性件位于两个第二磁性件之间。
   优选地,还包括与所述控制器信号连接的菜单按键,所述控制器还用于在接收到所述菜单按键按下的信号时,控制所述信号收发器发送菜单调出指令,以及在发送菜单调出指令之后,压力传感器检测到的压力增加时,控制所述信号收发器发送选择指令。
   优选地,所述控制模块还用于当所述菜单按键按下的信号为持续信号时,控制所述信号收发器发送菜单调出指令,以及当所述菜单按键按下的信号为短暂信号时,控制所述信号收发器发送确认指令。
   优选地,所述第一转盘上设置有用于对应一定调节等级的多个刻度。
   优选地,所述第一转盘为环形。
   优选地,所述第一转盘与第二转盘同轴设置。   
   本发明还提出一种电磁遥控器的控制方法,包括:
   侦测所述压力传感器产生的压力递增信号;
   根据所述压力递增信号中的压力值与指令之间的映射关系发送相应的控制指令。
   优选地,侦测所述压力传感器检测到的压力递增信号的步骤之前还包括:
   侦测控制按键的触发信号;
   当侦测到控制按键的触发信号时,切换所述遥控器的模式;
   开启当前遥控器模式所对应的压力传感器,并关闭其它遥控器模式所对应的压力传感器。
   优选地,当侦测到所述压力传感器检测到的压力递增信号时,根据指令与压力值之间的映射关系发送相应的控制指令的步骤包括:
   当侦测到所述压力递增信号时,获取所述压力递增信号所对应的指令类型;
   根据指令类型以及指令与所述压力递增信号中的压力值之间的映射关系发送相应的控制指令。
   优选地,所述当侦测到所述压力传感器检测到的压力递增信号时,根据指令与压力值之间的映射关系发送相应的控制指令的步骤之前还包括:
   当侦测到所述压力递增信号时,判断在预设时间内是否侦测到的压力递减信号;
   若在预设时间内侦测到压力递减信号,则继续侦测所述压力传感器产生的压力增加的信号;
   若在预设时间内未侦测到的压力减小的信号,则根据所述压力递增信号中的压力值与指令之间的映射关系发送相应的控制指令。   
   本发明还提出一种电磁遥控器的控制方法,包括:
   侦测菜单按键的触发信号;
   侦测到所述菜单按键的触发信号时,发送菜单调出指令;
   侦测压力传感器产生的压力递增信号;
   当侦测到所述压力递增信号时,发送菜单选择指令。
   优选地.,所述侦测菜单按键的触发信号步骤之后还包括:
   侦测到菜单按键的触发信号时,判断侦测到的菜单按键的触发信号是否为持续信号;
   当侦测到的菜单按键的触发信号为持续信号时,则发送菜单调出指令;
   当侦测到的菜单按键的触发信号为短暂信号时,则发送确认指令。   
   本发明提出的电磁遥控器及电磁遥控器的控制方法,在转动第二转盘时,第二转盘上的第一磁性件与第一转盘上的第二磁性件之间的斥力增加,在检测到第二磁性件上的压力增加时,向被控装置发送相应的控制指令,由于可通过转动第二转盘即可完成对被控终端的控制,不用设置多余的功能按键,占用体积小,便于携带。   
附图说明
   图1为本发明电磁遥控器中各部件的位置关系示意图;
   图2为本发明电磁遥控器较佳实施例的结构示意图;
   图3为本发明电磁遥控器的控制方法第一实施例的流程示意图;
   图4为本发明电磁遥控器的控制方法第二实施例的流程示意图;
   图5为图3中步骤S20的具体流程示意图;
   图6为本发明电磁遥控器的控制方法第三实施例的流程示意图;
   图7为本发明电磁遥控器的控制方法第四实施例的流程示意图;
   图8为本发明电磁遥控器的控制方法第五实施例的流程示意图。   
   本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。   
具体实施方式
下面结合附图及具体实施例就本发明的技术方案做进一步的说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
   参照图1和图2,图1为本发明电磁遥控器中各部件的位置关系示意图,图2为本发明电磁遥控器较佳实施例的结构示意图。
   本实施例提出一种电磁遥控器,该电磁遥控器包括第一转盘10以及与第一转盘10转动式连接的第二转盘20,第二转盘20上设置有至少一个第一磁性件30,第一转盘10上设置有至少一个第二磁性件40,第一磁性件30面向第一转盘10的一面与第二磁性件40面向第二转盘20的一面极性相同;该电磁遥控器还包括根据第一磁性件30与第二磁性件40的相对位置对应生成遥控信号的控制电路(图中未示出)。
   第一转盘10与第二转盘20转动连接是指第二转盘20可相对于第一转盘10转动,优选方案为第一转盘10和第二转盘20同轴设置,第一转盘10和第二转盘20可设置在同一平面上,也可错开设置;第一转盘10与第二转盘20的也可设置为不同轴,只要保证第一转盘10与第二转盘20可相对转动即可。
   第一磁性件30与第二磁性件40可设置为单极磁性件,也可做成两极的磁性件如磁铁,由于第二磁性件40朝向第二转盘20的一面与第一磁性件30朝向第一转盘10的一面的极性相同,第一磁性件30与第二磁性件40之间为斥力。由于第一磁性件30与第二磁性件40的相对面极性相同,在用户转动第二转盘20进行控制时,第一磁性件30越靠近第二磁性件40斥力越大,根据斥力的变化来实现遥控器的控制,当用户调节成功后,可松开第二转盘20,并在斥力的作用下,第一磁性件30回到原来的位置。
   如图2所示,在本实施例中,第一磁性件30包括第一磁性体Q1和第二磁性体Q2,第二磁性件40包括第三磁性体Q3、第四磁性体Q4、第五磁性体Q5以及第六磁性体Q6,可将第三磁性体Q3、第四磁性体Q4、第五磁性体Q5和第六磁性体Q6朝向第二转盘20的一面设置为S极,同时将第一磁性体Q1和第二磁性体Q2朝向第一转盘10的一面设置为S极;也可将第三磁性体Q3、第四磁性体Q4、第五磁性体Q5和第六磁性体Q6朝向第二转盘20的一面设置为N极,同时将第一磁性体Q1和第二磁性体Q2朝向第一转盘10的一面设置为N极;也可将第三磁性体Q3和第六磁性体Q6朝向第二转盘20的一面设置为S极,将第一磁性体Q1朝向第一转盘10的一面设置为S极,同时将第四磁性体Q4和第五磁性体Q5朝向第二转盘20的一面设置为N极,将第二磁性体Q2朝向第一转盘10的一面设置为N极。
   第一转盘10优选为环形,可作为指环或手环佩戴,既可以作为装饰品,又可作为遥控器。
   本实施例提出的电磁遥控器,在转动第二转盘20时,第二转盘20上的第一磁性件30与第一转盘10上的第二磁性件40之间的斥力增加,在检测到第一磁性件30和第二磁性件40之间的压力增加时,发送相应的遥控指令,由于可通过转动第二转盘20即可完成对被控终端的控制,不用设置多余的功能按键,占用体积小,便于携带。   
   进一步地,控制电路(图中未示出)包括控制器,与控制器电连接且设置在第一磁性件30或第二磁性件40上的压力传感器50,及与控制器电连接的信号收发器,控制器在压力传感器50检测到的压力增加时,控制信号收发器生成并发送对应的遥控信号。
   例如,将压力传感器50装在第二磁性件40上,当用户转动第二转盘20时,压力传感器50检测到的压力值增大,则发送压力递增信号给控制器,控制器接收到该信号后,控制信号收发器生成并发送对应的遥控信号。   
   进一步地,包括与控制器信号连接的控制按键60,控制器用于接收到控制按键60按下的信号时,切换遥控器的模式,开启遥控器当前模式所对应的压力传感器50,并关闭遥控器其它模式所对应的压力传感器50。优选在第一转盘10上相对于第一磁性件30设置有两个第二磁性件40,第一磁性件30位于两个第二磁性件40之间。
   如图2所示,设第一传感器A1和第二传感器A2为遥控器第一模式所对应的压力传感器50,第三传感器A3和第四传感器A4为遥控器第二模式所对应的压力传感器50,当接收到控制按键60按下的信号时,若当前遥控器工作模式为第一模式,则将遥控器工作模式切换至第二模式,则开启第三传感器A3和第四传感器A4并关闭第一传感器A1和第二传感器A2;若当前遥控器工作模式为第二模式,则将遥控器的工作模式切换至第一模式,则开启第一传感器A1和第二传感器A2并关闭第三传感器A3和第四传感器A4。
   以电视机遥控器为例进行说明,设遥控器第一模式为频道调整模式,设遥控器第二模式为音量调节模式,并预设第一传感器A1对应检测频道增加,第二传感器A2对应检测频道减少,第三传感器A3对应检测音量增减,第四传感器A4对应检测音量减小,当接收到控制按键60按下的信号时,若当前的工作模式为频道调整模式,则关闭第一传感器A1和第二传感器A2并开启第三传感器A3和第四传感器A4。此时当逆时针转动第二转盘20时,第二磁性体Q2和第五磁性体Q5之间的斥力增加,第三传感器A3检测到压力增加后,将压力递增信号发送至控制器,控制器接收到压力递增信号时控制信号收发器发送音量增加的信号;顺时针转动第二转盘20时,第一磁性体Q1和第六磁性体Q6之间的斥力增加,第四传感器A4检测到压力增加后,将压力递增信号发送至控制器,控制器接收到压力递增信号时控制信号收发器发送音量减小的信号。应当理解的是,当再次接收到控制按键60按下的信号时,当前的工作模式由音量调节模式切换为频道调整模式,并开启第一传感器A1和第二传感器A2、关闭第三传感器A3和第四传感器A4,由第一传感器A1、第二传感器A2检测压力的增加并将压力递增信号发送至控制器,分别通过控制器控制信号收发器发送频道增加信号、频道减少信号。
   进一步地,可在第一转盘10上设置多个刻度,如钟表的表盘,每一个刻度对应调节一定的等级,例如调节音量时第一磁性件30每转动一个刻度则对应控制音量调节2个等级,用户可非常明了的进行调节,不易调错。   
   进一步地,还包括与控制器信号连接的菜单按键70,控制器还用于在接收到菜单按键70按下的信号时,控制信号收发器发送菜单调出指令,以及在发送菜单调出指令之后,压力传感器50检测到的压力增加时,控制信号收发器发送选择指令。
   以电视机遥控器为例进行说明,预设遥控器第一模式为左右选择模式,第二模式为上下选择模式,并预设第一传感器A1对应检测向左选择,第二传感器A2对应检测向右选择,第三传感器A3对应检测向上选择,第四传感器A4对应检测向下选择,控制器在接收到菜单按键70按下的信号时,控制信号收发器发送菜单调出指令,电视机在接收到菜单调出指令后调出相应的菜单,此时电视进入菜单模式,当接收到控制按键60按下的信号时,若遥控器当前的工作模式为左右选择模式,则关闭第一传感器A1和第二传感器A2并开启第三传感器A3和第四传感器A4。此时当逆时针转动第二转盘20时,第二磁性体Q2和第五磁性体Q5之间的斥力增加,第三传感器A3检测到压力增加,将压力递增信号发送至控制器,控制器接收到压力递增信号时控制信号收发器发送向上选择的信号,电视机在接收到向上选择的信号时,可控制菜单的选择光标向上移动;顺时针转动第二转盘20时,第一磁性体Q1和第六磁性体Q6之间的斥力增加,第四传感器A4检测到压力增加,将压力递增信号发送至控制器,控制器接收到压力递增信号时控制信号收发器发送向下选择的信号,电视机在接收到向下选择的信号时,可控制菜单的选择光标向下移动。应当理解的是,当电视仍处于菜单模式,再次接收到控制按键60按下的信号时,遥控器当前的工作模式由上下选择模式切换为左右选择模式,并开启第一传感器A1和第二传感器A2、关闭第三传感器A3和第四传感器A4,由第一传感器A1、第二传感器A2检测压力增加并将压力递增信号发送至控制器,分别通过控制器控制信号收发器发送向左选择信号、向右选择信号。   
   进一步地,控制器还用于当菜单按键70按下的信号为持续信号时,控制信号收发器发送菜单调出指令,以及当菜单按键70按下的信号为短暂信号时,控制信号收发器发送确认指令。
   可通过菜单按键70同时实现菜单调出以及确认的功能,可设置菜单按键70长按的信号为菜单调出信号,菜单按键70短按信号为确认信号,当遥控器接收到菜单按键70长按的信号时,控制器控制信号收发器发送菜单调出指令,根据检测到的压力递增信号向用户发送选择指令,如向上选择指令,用户在选择到相应的菜单选项后可通过短按菜单按键70向被控终端发送确认指令。应当理解的是,也可将菜单按键70与确认按键分开设置。   
   参照图3,图3为本发明电磁遥控器的控制方法第一实施例的流程示意图。
   本实施例提出的电磁遥控器的控制方法,包括:
   步骤S10,侦测压力传感器产生的压力递增信号;
   如图2所示,由于第一磁性件30与第二磁性件40的相对面极性相同,第一磁性件30与第二磁性件40的相对位置发生变化时,压力传感器50检测到的第一磁性件30与第二磁性件40之间的斥力会发生变化,所以在第一磁性件30与第二磁性件40之间的相对位置逐渐接近时,第一磁性件30与第二磁性件40之间的压力会随之增加,此时压力传感器50产生一压力递增信号,该压力递增信号中包含压力传感器50检测到的压力值。
   步骤S20,根据所述压力递增信号中的压力值与指令之间的映射关系发送相应的控制指令。
   本实施例提出的电磁遥控器,在转动第二转盘20时,第二转盘20上的第一磁性件30与第一转盘10上的第二磁性40件之间的斥力增加,在检测到第一磁性件30和第二磁性件40之间的压力值增加时,根据压力值与指令之间的映射关系发送相应的遥控指令,由于可通过转动第二转盘20即可完成对被控终端的控制,不用设置多余的功能按键,占用体积小,便于携带。   
   参照图4,图4为本发明电磁遥控器的控制方法第二实施例的流程示意图。
   基于上述实施例提出本发明电磁遥控器的控制方法的第二实施例,在本实施例中,步骤S10之前还包括:
   步骤S30,侦测控制按键的触发信号;
   步骤S40,当侦测到控制按键的触发信号时,切换遥控器的模式;
   步骤S50,开启当前遥控器模式所对应的压力传感器,并关闭其它遥控器模式所对应的压力传感器。
   如图2所示,设第一传感器A1和第二传感器A2为遥控器第一模式所对应的压力传感器50,第三传感器A3和第四传感器A4为遥控器第二模式所对应的压力传感器50,当接收到控制按键60按下(触发)的信号时,若当前遥控器工作模式为第一模式,则将遥控器工作模式切换至第二模式,则开启第三传感器A3和第四传感器A4并关闭第一传感器A1和第二传感器A2;若当前遥控器工作模式为第二模式,则将遥控器的工作模式切换至第一模式,则开启第一传感器A1和第二传感器A2并关闭第三传感器A3和第四传感器A4。   
   参照图5,图5为图3中步骤S20的具体流程示意图。
   在第一实施例和第二实施例中,步骤S20具体包括:
   步骤S21,当侦测到所述压力递增信号时,获取所述压力递增信号所对应的指令类型;
   步骤S22,根据指令类型以及指令与所述压力递增信号中的压力值之间的映射关系发送相应的控制指令。
   请结合参照图2,以电视机遥控器为例进行说明,设遥控器第一模式为频道调整模式,设遥控器第二模式为音量调节模式,并预设第一传感器A1对应检测频道增加,第二传感器A2对应检测频道减少,第三传感器A3对应检测音量增减,第四传感器A4对应检测音量减小,当接收到控制按键60按下的信号时,若当前的工作模式为频道调整模式,则关闭第一传感器A1和第二传感器A2并开启第三传感器A3和第四传感器A4。此时当逆时针转动第二转盘20时,第二磁性体Q2和第五磁性体Q5之间的斥力增加,第三传感器A3检测到压力增加后,将压力递增信号发送至控制器,控制器接收到压力递增信号时控制信号收发器发送音量增加的信号;顺时针转动第二转盘20时,第一磁性体Q1和第六磁性体Q6之间的斥力增加,第四传感器A4检测到压力增加后,将压力递增信号发送至控制器,控制器接收到压力递增信号时控制信号收发器发送音量减小的信号。
   在发送指令时可根据指令与压力值之间的映射关系来发送相应的指令,例如在调节音量时,压力值越变越大则音量调节也可越调越快。   
   参照图6,图6为本发明电磁遥控器的控制方法的第三实施例的流程示意图。
   基于第二实施例提出本发明电磁遥控器的控制方法的第三实施例,在本实施例中,步骤S20之前还包括:
   步骤S60,当侦测到所述压力递增信号时,判断在预设时间内所述压力传感器是否产生压力递减信号,若否,则执行步骤S20,根据所述压力递增信号中的压力值与指令之间的映射关系发送相应的控制指令,若是,则继续执行步骤S10,侦测压力传感器产生的压力递增信号。
   为了防止用户一次性转动太多想要重新调节,可预设一个时间间隔,若在该时间间隔内,压力传感器产生压力递减信号,则说明用户松开第二转盘想要重新调节,则可不做任何操作,继续侦测压力传感器产生的压力递增信号,若在该时间间隔内并未侦测到压力递减信号,则说明用户想要在该位置调节,则发送相应的控制指令。   
   参照图7,图7为本发明电磁遥控器的控制方法的第四实施例的流程示意图。
   本实施例提出的电磁遥控器的控制方法,包括:
   步骤S70,侦测菜单按键的触发信号;
   步骤S80,侦测到菜单按键的触发信号时,发送菜单调出指令;
   步骤S90,侦测压力传感器产生的压力递增信号;
   步骤S100,当侦测到所述压力递增信号时,发送菜单选择指令。
   请结合参照图2,以电视机遥控器为例进行说明,预设遥控器第一模式为左右选择模式,第二模式为上下选择模式,并预设第一传感器A1对应检测向左选择,第二传感器A2对应检测向右选择,第三传感器A3对应检测向上选择,第四传感器A4对应检测向下选择,调节控制器在接收到菜单按键70按下的信号时,控制信号收发器发送菜单调出指令,电视机在接收到菜单调出指令后调出相应的菜单,当接收到控制按键60按下的信号时,若当前的工作模式为左右选择模式,则关闭第一传感器A1和第二传感器A2并开启第三传感器A3和第四传感器A4。此时当逆时针转动第二转盘20时,第二磁性体Q2和第五磁性体Q5之间的斥力增加,第三传感器A3检测到压力增加后,将压力递增信号发送至控制器,控制器接收到压力递增信号时控制信号收发器发送向上选择的信号,电视机在接收到向上选择的信号时,可控制菜单的选择光标向上移动;顺时针转动第二转盘20时,第一磁性体Q1和第六磁性体Q6之间的斥力增加,第四传感器A4检测到压力增加后,将压力递增信号发送至控制器,控制器接收到压力递增信号时控制信号收发器发送向下选择的信号,电视机在接收到向下选择的信号时,可控制菜单的选择光标向下移动。   
   参照图8,图8为本发明电磁遥控器的控制方法的第五实施例的流程示意图。
   基于第四实施例,提出本发明电磁遥控器的控制方法的第五实施例,在本实施例中,步骤S80之前还包括:
   步骤S110,侦测到菜单按键的触发信号时,判断所述菜单按键的触发信号是否为持续信号,若是,则执行步骤S80,发送菜单调出指令,若否,则执行步骤S120;
   步骤S120,发送确认指令。
   可通过菜单按键同时实现菜单调出以及确认的功能,可设置菜单按键长按的信号为菜单调出信号,菜单按键短按信号为确认信号,当遥控器接收到菜单按键长按的信号时,控制器控制信号收发器发送菜单调出指令,根据检测到的压力递增信号向用户发送选择指令,如向上选择指令,用户在选择到相应的菜单选项后可通过短按菜单按键向被控终端发送确认指令。应当理解的是,也可将菜单按键与确认按键分开设置。   
   以上所述仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (15)

  1. 一种电磁遥控器,其特征在于,该电磁遥控器包括第一转盘以及与所述第一转盘转动式连接的第二转盘,所述第二转盘上设置有至少一个第一磁性件,所述第一转盘上设置有至少一个第二磁性件,所述第一磁性件面向第一转盘的一面与第二磁性件面向第二转盘的一面极性相同;该电磁遥控器还包括根据所述第一磁性件与所述第二磁性件的相对位置对应生成遥控信号的控制电路。
  2. 根据权利要求1所述的遥控器,其特征在于,所述控制电路包括控制器,与所述控制器电连接且设置在所述第一磁性件或第二磁性件上的压力传感器,及与所述控制器电连接的信号收发器,所述控制器在所述压力传感器检测到的压力增加时,控制所述信号收发器生成并发送对应的遥控信号。
  3. 根据权利要求2所述的遥控器,其特征在于,还包括与所述控制器信号连接的控制按键,所述控制器用于接收到所述控制按键按下的信号时,切换所述遥控器的模式,开启遥控器当前模式所对应的压力传感器,并关闭遥控器其它模式所对应的压力传感器。
  4. 根据权利要求3所述的遥控器,其特征在于,所述第一转盘上相对于所述第一磁性件设置有两个第二磁性件,所述第一磁性件位于两个第二磁性件之间。
  5. 根据权利要求1所述的遥控器,其特征在于,还包括与所述控制器信号连接的菜单按键,所述控制器还用于在接收到所述菜单按键按下的信号时,控制所述信号收发器发送菜单调出指令,以及在发送菜单调出指令之后,压力传感器检测到的压力增加时,控制所述信号收发器发送选择指令。
  6. 根据权利要求5所述的遥控器,其特征在于,所述控制器还用于当所述菜单按键按下的信号为持续信号时,控制所述信号收发器发送菜单调出指令,以及当所述菜单按键按下的信号为短暂信号时,控制所述信号收发器发送确认指令。
  7. 根据权利要求1所述的遥控器,其特征在于,所述第一转盘上设置有用于对应一定调节等级的多个刻度。
  8. 根据权利要求1所述的遥控器,其特征在于,所述第一转盘为环形。
  9. 根据权利要求1所述的遥控器,其特征在于,所述第一转盘与第二转盘同轴设置。
  10. 一种如权利要求3所述的电磁遥控器的控制方法,其特征在于,包括:
       侦测所述压力传感器产生的压力递增信号;
       根据所述压力递增信号中的压力值与指令之间的映射关系发送相应的控制指令。
  11. 根据权利要求10所述的方法,其特征在于,侦测所述压力传感器检测到的压力递增信号的步骤之前还包括:
       侦测控制按键的触发信号;
       当侦测到控制按键的触发信号时,切换所述遥控器的模式;
       开启当前遥控器模式所对应的压力传感器,并关闭其它遥控器模式所对应的压力传感器。
  12. 根据权利要求11所述的方法,其特征在于,当侦测到所述压力传感器检测到的压力递增信号时,根据指令与压力值之间的映射关系发送相应的控制指令的步骤包括:
       当侦测到所述压力递增信号时,获取所述压力递增信号所对应的指令类型;
       根据指令类型以及指令与所述压力递增信号中的压力值之间的映射关系发送相应的控制指令。
  13. 根据权利要求11所述的方法,其特征在于,所述当侦测到所述压力传感器检测到的压力递增信号时,根据指令与压力值之间的映射关系发送相应的控制指令的步骤之前还包括:
       当侦测到所述压力递增信号时,判断在预设时间内是否侦测到的压力递减信号;
       若在预设时间内侦测到压力递减信号,则继续侦测所述压力传感器产生的压力增加的信号;
       若在预设时间内未侦测到的压力减小的信号,则根据所述压力递增信号中的压力值与指令之间的映射关系发送相应的控制指令。
  14. 一种如权利要求5所述的电磁遥控器的控制方法,其特征在于,包括:
       侦测菜单按键的触发信号;
       侦测到所述菜单按键的触发信号时,发送菜单调出指令;
       侦测压力传感器产生的压力递增信号;
       当侦测到所述压力递增信号时,发送菜单选择指令。
  15. 根据权利要求14所述的方法,其特征在于,所述侦测菜单按键的触发信号步骤之后还包括:
       侦测到菜单按键的触发信号时,判断侦测到的菜单按键的触发信号是否为持续信号;
       当侦测到的菜单按键的触发信号为持续信号时,则发送菜单调出指令;
       当侦测到的菜单按键的触发信号为短暂信号时,则发送确认指令。
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Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103440752B (zh) * 2013-08-15 2017-07-25 深圳Tcl新技术有限公司 电磁遥控器及电磁遥控器的控制方法
DE102016125810A1 (de) 2015-12-31 2017-07-06 Lenovo (Beijing) Limited Verfahren zur Informationsverarbeitung und elektronisches Gerät
CN105677029B (zh) * 2015-12-31 2018-12-14 联想(北京)有限公司 一种电子设备及信息处理方法
EP3279881A1 (de) * 2016-08-05 2018-02-07 Alexander Hakenjos Fernbedienung und verfahren zu deren kontrolle
CN106774292B (zh) * 2016-12-30 2023-11-24 歌尔科技有限公司 一种控制无人机的手表和一种控制无人机的方法
CN106973229A (zh) * 2017-04-19 2017-07-21 上海小蚁科技有限公司 一种拍摄设备的控制方法及装置
CN112584071A (zh) * 2020-12-04 2021-03-30 四川长虹电器股份有限公司 一种用于遥控器的触摸转盘结构及遥控器
CN114582112A (zh) * 2022-03-03 2022-06-03 深圳市镭润科技有限公司 一种遥控器控制方法及遥控器

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2174820Y (zh) * 1993-07-05 1994-08-17 罗波 拨盘式电视遥控发射器
JPH11284878A (ja) * 1998-03-27 1999-10-15 Mitsumi Electric Co Ltd リモコン装置
CN1447593A (zh) * 2003-03-29 2003-10-08 齐荣生 具有频道转换旋轮的电视遥控器及其制造方法
DE202008003086U1 (de) * 2008-03-04 2008-05-21 Hesse, Torsten Einfache Fernbedienung
US20090121905A1 (en) * 2007-11-08 2009-05-14 Griffin Jr Paul P Cylindrical Remote Control
CN101667331A (zh) * 2008-09-01 2010-03-10 Smk株式会社 遥控发送机
CN101827228A (zh) * 2009-03-02 2010-09-08 新巨企业股份有限公司 电视遥控器及其遥控方法
CN103440752A (zh) * 2013-08-15 2013-12-11 深圳Tcl新技术有限公司 电磁遥控器及电磁遥控器的控制方法

Family Cites Families (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5844516A (en) * 1993-12-03 1998-12-01 Oy Helvar Method and apparatus for wireless remote control
JP3698586B2 (ja) * 1999-04-22 2005-09-21 アルプス電気株式会社 多方向入力装置
US6326945B1 (en) * 1999-12-13 2001-12-04 Williams, Iii Carl K. Magnetic writing board
JP4121730B2 (ja) * 2001-01-19 2008-07-23 富士通コンポーネント株式会社 ポインティングデバイス及び携帯型情報機器
US7336006B2 (en) * 2002-09-19 2008-02-26 Fuji Xerox Co., Ltd. Magnetic actuator with reduced magnetic flux leakage and haptic sense presenting device
US7310084B2 (en) * 2004-06-29 2007-12-18 Matsushita Electric Industrial Co., Ltd. Multi-way operation switch, input device and input unit
CN101133385B (zh) * 2005-03-04 2014-05-07 苹果公司 手持电子设备、手持设备及其操作方法
CN1841273A (zh) * 2005-03-31 2006-10-04 王宇 旋转式指令输入装置及其使用方法
EP2587345A3 (en) 2007-08-19 2013-06-26 Ringbow Ltd. Finger-worn devices and related methods of use
KR101008361B1 (ko) * 2007-09-06 2011-01-14 (주)마이크로인피니티 조절 장치 및 방법
CN101515991B (zh) * 2008-02-21 2012-06-06 爱思奇想(北京)科技有限公司 一种遥控方法、影像设备、处理控制装置及遥控器
CN201541243U (zh) * 2009-09-29 2010-08-04 华为终端有限公司 一种终端的音量调节装置
CN201535896U (zh) * 2009-10-13 2010-07-28 致伸科技股份有限公司 滚轮装置
KR101160942B1 (ko) * 2010-09-17 2012-06-28 (주)엠에스테크비젼 복합 포인팅 디바이스 및 이를 구비하는 전자 장치
CN102339130B (zh) * 2011-10-24 2014-08-06 Tcl集团股份有限公司 一种球形遥控器的遥控方法及控制芯片
CN202435745U (zh) * 2011-12-27 2012-09-12 Tcl集团股份有限公司 一种棒状飞轮式电视遥控器
CN203086313U (zh) * 2013-01-05 2013-07-24 佛山职业技术学院 一种无刷直流电动机

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2174820Y (zh) * 1993-07-05 1994-08-17 罗波 拨盘式电视遥控发射器
JPH11284878A (ja) * 1998-03-27 1999-10-15 Mitsumi Electric Co Ltd リモコン装置
CN1447593A (zh) * 2003-03-29 2003-10-08 齐荣生 具有频道转换旋轮的电视遥控器及其制造方法
US20090121905A1 (en) * 2007-11-08 2009-05-14 Griffin Jr Paul P Cylindrical Remote Control
DE202008003086U1 (de) * 2008-03-04 2008-05-21 Hesse, Torsten Einfache Fernbedienung
CN101667331A (zh) * 2008-09-01 2010-03-10 Smk株式会社 遥控发送机
CN101827228A (zh) * 2009-03-02 2010-09-08 新巨企业股份有限公司 电视遥控器及其遥控方法
CN103440752A (zh) * 2013-08-15 2013-12-11 深圳Tcl新技术有限公司 电磁遥控器及电磁遥控器的控制方法

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP3035312A4 *

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