WO2020124411A1 - 电气输入装置、电气设备及电气输入装置的控制方法 - Google Patents

电气输入装置、电气设备及电气输入装置的控制方法 Download PDF

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Publication number
WO2020124411A1
WO2020124411A1 PCT/CN2018/121984 CN2018121984W WO2020124411A1 WO 2020124411 A1 WO2020124411 A1 WO 2020124411A1 CN 2018121984 W CN2018121984 W CN 2018121984W WO 2020124411 A1 WO2020124411 A1 WO 2020124411A1
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Prior art keywords
control signal
touch
input device
processor
area
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PCT/CN2018/121984
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English (en)
French (fr)
Inventor
杨颖�
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深圳市柔宇科技有限公司
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Application filed by 深圳市柔宇科技有限公司 filed Critical 深圳市柔宇科技有限公司
Priority to CN201880097609.1A priority Critical patent/CN113168990A/zh
Priority to PCT/CN2018/121984 priority patent/WO2020124411A1/zh
Publication of WO2020124411A1 publication Critical patent/WO2020124411A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H36/00Switches actuated by change of magnetic field or of electric field, e.g. by change of relative position of magnet and switch, by shielding

Definitions

  • This application relates to the field of electrical equipment, in particular to an electrical input device, electrical equipment, and a control method of the electrical input device.
  • electrical equipment generally controls the operating state of electrical equipment through a planar touch switch, such as clicking the touch plane of the touch switch to control the turning on and off of the electric lamp, or sliding the touch plane to adjust the brightness of the electric lamp
  • a planar touch switch such as clicking the touch plane of the touch switch to control the turning on and off of the electric lamp, or sliding the touch plane to adjust the brightness of the electric lamp
  • the touch effect of the flat type touch switch is poor, and it is not easy for the user to distinguish and adjust each touch switch, and the three-dimensional feel of the flat type touch switch is poor, and the appearance is not beautiful.
  • the embodiments of the present application provide an electric input device, an electric device, and a control method of the electric input device.
  • the electric input device of the embodiment of the present application includes a curved touch component and a processor.
  • the curved touch component includes a body and a flexible touch sensor.
  • the body is provided with a curved touch area, and the flexible touch sensor is attached to the body.
  • the processor is connected to the flexible touch sensor, and the processor is configured to generate a corresponding control signal according to an input signal generated by a gesture operation acting on the touch area.
  • the flexible touch sensor since the flexible touch sensor is attached to the curved touch area, the curved touch component has a better three-dimensional feeling, rich appearance differences, and is easy for the user to distinguish and touch.
  • the flexible touch sensor can sense the gesture operation acting on the touch area and the processor can generate the corresponding control signal according to the input signal generated by the gesture operation, so that the state of other devices can be accurately and quickly controlled, the operation is convenient, and the user Experience is good.
  • An electrical device includes a load and the electrical input device described above, the processor is connected to the load, and is used to control the load according to the control signal.
  • the flexible touch sensor since the flexible touch sensor is attached to the curved touch area, the stereo touch of the curved touch component is better, the appearance difference is rich, and the user can easily distinguish and touch.
  • the flexible touch sensor can sense the gesture operation acting on the touch area and the processor can generate the corresponding control signal according to the input signal generated by the gesture operation, so that the state of other devices can be accurately and quickly controlled, the operation is convenient, and the user Experience is good.
  • the electric input device includes a curved touch component and a processor.
  • the curved touch component includes a body and a flexible touch sensor.
  • the body is provided with a curved touch area.
  • the flexible touch sensor is attached to the touch area, the processor is connected to the flexible touch sensor, and the control method includes: receiving an input signal generated by a gesture operation acting on the touch area; according to the input The signal generates the corresponding control signal.
  • the flexible touch sensor since the flexible touch sensor is attached to the curved touch area, the curved touch component has a better three-dimensional feeling, rich appearance differences, and is easy for users to distinguish and touch.
  • the flexible touch sensor can sense the gesture operation acting on the touch area and the processor can generate the corresponding control signal according to the input signal generated by the gesture operation, so that the state of other devices can be accurately and quickly controlled, the operation is convenient, and the user Experience is good.
  • FIG. 1 is a schematic structural diagram of an electric input device according to an embodiment of the present application.
  • FIG. 2 is a schematic block diagram of an electrical device according to an embodiment of the present application.
  • FIG. 3 is a flowchart of a control method of an electric input device according to an embodiment of the present application.
  • FIG 4 is another schematic diagram of the structure of the electrical input device according to the embodiment of the present application.
  • FIG. 5 is another schematic structural diagram of the electrical input device according to the embodiment of the present application.
  • FIG. 6 is another schematic flowchart of a control method of an electric input device according to an embodiment of the present application.
  • FIG 7 is another schematic flowchart of the control method of the electric input device according to the embodiment of the present application.
  • first and second are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features.
  • the features defined as “first” and “second” may explicitly or implicitly include one or more of the features.
  • the meaning of “plurality” is two or more, unless otherwise specifically limited.
  • connection should be understood in a broad sense, for example, it can be fixed or detachable Connected, or integrally connected; may be mechanical, electrical, or may communicate with each other; may be directly connected, or may be indirectly connected through an intermediary, may be the connection between two elements or the interaction of two elements relationship.
  • installation should be understood in a broad sense, for example, it can be fixed or detachable Connected, or integrally connected; may be mechanical, electrical, or may communicate with each other; may be directly connected, or may be indirectly connected through an intermediary, may be the connection between two elements or the interaction of two elements relationship.
  • Embodiments of the present application provide an electrical input device 100 and a control method of the electrical input device 100.
  • the control method of the electrical input device 100 can be applied to the electrical input device 100.
  • the electrical input device 100 includes a curved touch component 10 and a processor 20.
  • the curved touch component 10 includes a body 12 and a flexible touch sensor 14.
  • the body 12 is provided with a curved touch area 122, and the flexible touch sensor 14 is attached to the touch area 122.
  • the processor 20 is connected to the flexible touch sensor 14.
  • the control method of the electrical input device 100 includes:
  • Step S10 Receive an input signal generated by a gesture operation acting on the touch area 122;
  • step S20 a corresponding control signal is generated according to the input signal.
  • step S10 may be implemented by the flexible touch sensor 14, and step S20 may be implemented by the processor 20.
  • the flexible touch sensor 14 is used to receive an input signal generated by a gesture operation acting on the touch area 122; the processor 20 is used to generate a corresponding control signal according to the input signal.
  • the electric input device 100 and the control method of the electric input device 100 because the flexible touch sensor 14 is attached to the curved touch area 122, which makes the curved touch component 10 have a better three-dimensional feel and rich appearance differences. Users can easily distinguish and touch.
  • the flexible touch sensor 14 can sense the gesture operation acting on the touch area 122 and the processor 20 can generate a corresponding control signal according to the input signal generated by the gesture operation, so that the state and operation of other devices can be accurately and quickly controlled. Convenient and good user experience.
  • the present application also provides an electrical device 1000.
  • the electrical device 1000 includes a load 200 and an electrical input device 100.
  • the processor 20 is connected to the load 200 and is used to control the load 200 according to a control signal.
  • the electrical equipment 1000 may be lighting appliances, electric fans, air conditioners, refrigerators and other electrical appliances, and the load 200 may be light sources, electric fan motors, air conditioner compressors, fans, etc.
  • the curved touch component 10 in the present application can be disposed on the wood grain of a wooden wall or the leather grain of a furniture, so that the curved touch component 10 can use a smooth planar concave-convex structure of wood grain or plain grain as the body 12 without the need Make any structural changes and treatments on the wood grain of the wooden wall or the leather grain of the furniture. In this way, it is convenient to obtain materials, and the overall structure of the curved touch component 10 is good, the appearance is rich in differences, and the user can easily identify and touch.
  • the flexible touch sensor 14 has good flexibility, ductility, and can be bent and folded freely.
  • the structure is flexible and diverse, and can be arbitrarily arranged according to the requirements of measurement conditions, and the detection data has high sensitivity. Therefore, the flexible touch sensor 14 according to the embodiment of the present application can be completely attached to the curved touch area 122 and used to generate an input signal during a gesture operation on the touch area 122.
  • the flexible touch sensor 14 includes a flexible substrate and a sensing circuit formed on the flexible substrate, the sensing circuit can form an electric field induction with a human finger or other conductor, and sense the user's gesture operation through the change value of the electric field induction .
  • the flexible substrate can be polydimethylsiloxane.
  • the flexible substrate can also use other transparent and insulating flexible materials.
  • the processor 20 of the present application is connected to the flexible touch sensor 14 so that the input signal generated by the user's gesture operation sensed by the flexible touch sensor 14 can be transmitted to the processor 20, and the processor 20 can generate corresponding control according to the input signal Signal to control the state of the load 200.
  • the user can touch the curved surface touch assembly 10 in a touch or non-touch manner to control different loads 200.
  • the non-touch mode can be understood as long as the user's finger is close to the touch curved surface touch component 10 and generates a corresponding gesture operation, a corresponding control signal can be generated.
  • the curved touch component 10 includes two touch areas 122.
  • the body 12 is provided with an invalid area 124, and the invalid area 124 is located between the two touch areas 122.
  • the two touch areas 122 can be separated by the invalid area 124 to avoid misoperation caused by the two touch areas 122 being too close.
  • control method includes:
  • the invalid area 124 may be provided with a flexible touch sensor 14, the flexible touch sensor 14 may generate an input signal when the invalid area 124 has a gesture operation, but the processor 20 does not respond to the input signal from the invalid area 124 In response, that is, when the user touches the invalid area 124, the processor 20 does not generate any control signal.
  • the invalid area 124 may not be provided with the flexible touch sensor 14. When the user touches the invalid area 124, no control signal is generated.
  • the body 12 includes two convex portions 126 and a concave portion 128 between the two convex portions 126.
  • the concave portion 128 connects the two convex portions 126, and the two touch areas 122 are respectively provided in On the surfaces of the two convex portions 126, the inactive area 124 is provided in the concave portion 128. In this way, erroneous operations caused by the two touch regions 122 being too close can be further avoided, and at the same time, the operation of the electrical input device 100 can be made more three-dimensional.
  • two touch areas 122 and one invalid area 124 are connected to form a continuous and wavy curved surface area.
  • the touch area 122 is located at the peak and the invalid area 124 is located at the valley.
  • this application can design a plurality of convex portions 126 and a plurality of concave portions 128 according to actual needs, each convex portion 126 and each concave portion 128 are alternately arranged, so that the two touch areas 122 are separated by an invalid area 124 open.
  • the gesture operation includes a click operation
  • the control signal includes a switch control signal
  • the control method includes: generating a switch control signal according to an input signal generated by the click operation.
  • the above control method may be implemented by the processor 20 in the embodiment of the present application.
  • the processor 20 is used to generate a switch control signal according to the input signal generated by the click operation. In this way, the operation is convenient and the accuracy is high.
  • the area b between the two dashed lines L1 and L2 is the invalid area 124 in the embodiment of the present application
  • the area a and the area c other than the area b are the two in the embodiment of the present application.
  • the input signal from the area a can generate an on control signal
  • the input signal from the area c can generate an off control signal.
  • the flexible touch sensor 14 will scan the specific position coordinates of E as (x 1 , y 1 ). Since the position of the point E is in the invalid area 124, the processor 20 receives The input signal of the invalid area 124 does not generate a control signal.
  • the flexible touch sensor 14 When the user's finger clicks on the F point, the flexible touch sensor 14 will scan the specific position coordinates of the F point as (x 2 , y 2 ). Since the F point position is in the touch area 122, the processor 20 according to the specific position of the F point The coordinate information generates a switch control signal.
  • the switch control signal generated by the processor 20 can control the light source to turn on.
  • the flexible touch sensor 14 scans the coordinate information of the specific position of the point, and the processor 20 generates a switch control signal to control the light source to turn off. To explain, click any point of the touch area 122 to turn on the light, and the light source will turn on with the preset color and brightness.
  • the gesture operation includes a sliding operation
  • the control signal includes an adjustment control signal
  • the control method includes: generating an adjustment control signal according to an input signal generated by the sliding operation.
  • the above control method may be implemented by the processor 20 of the present application.
  • the processor 20 is used to generate an adjustment control signal according to the input signal generated by the sliding operation. In this way, the operation is convenient, flexible and highly accurate.
  • the adjustment control signal includes at least one of a light source brightness adjustment control signal and a light source color adjustment control signal. In this way, different dimming functions can be achieved.
  • the light source brightness adjustment control signal can control the light emission brightness of the light source to become darker or brighter, and the light source color adjustment control signal can control the light emission color of the light source to change.
  • the adjustment control signal includes at least one of a light source brightness adjustment control signal and a light source color adjustment control signal. It can be understood that the adjustment control signal is a light source brightness adjustment control signal or a light source color adjustment control signal, and the adjustment control signal includes a light source brightness adjustment control Signal and light source color adjustment control signal.
  • the sliding operation includes a first sliding operation in a first direction and a second sliding operation in a second direction
  • the adjustment control signal includes a first adjustment control signal and a second adjustment control signal
  • the control method includes: Generating a first adjustment control signal according to the input signal generated by the first sliding operation; and generating a second adjustment control signal according to the input signal generated by the second sliding operation.
  • the above control method may be implemented by the processor 20 of the present application.
  • the processor 20 is used to generate a first adjustment control signal according to the input signal generated by the first sliding operation, and used to generate a second adjustment control signal according to the input signal generated by the second sliding operation.
  • first direction and the second direction are different directions.
  • the first direction and the second direction are opposite.
  • the first direction is the sliding direction from left to right in the horizontal direction
  • the second direction is the sliding method from right to left in the horizontal direction, and as in the first direction, the sliding direction from right to left in the horizontal direction
  • the second direction is the sliding direction from left to right in the horizontal direction.
  • the first direction is the sliding direction from top to bottom in the vertical direction
  • the second direction is the sliding direction from bottom to top in the vertical direction.
  • the first direction is from bottom to top in the vertical direction
  • the second direction is the sliding direction from top to bottom in the vertical direction.
  • the load 200 is a light source
  • the first sliding operation and the second sliding operation can cause the processor 20 to generate a light source adjustment control signal to control the light emitting brightness of the light source.
  • the first sliding operation is from left to right (first direction)
  • the second sliding operation is from right to left (second direction)
  • the processor 20 controls the light emitting brightness of the light source to change from dark to bright.
  • the processor 20 controls the light emission brightness of the light source from bright to dark.
  • the load 200 is a light source
  • the first sliding operation and the second sliding operation can cause the processor 20 to generate a light source color control signal to control the light emission color of the light source
  • the first sliding operation is from above Sliding operation to the bottom (first direction)
  • the second sliding operation is a sliding operation from bottom to top (second direction).
  • the processor 20 controls the light source color of the electric lamp from light to dark.
  • the processor 20 controls the light source color of the electric lamp from dark to light.
  • the load 200 is a light source
  • the area b between the two dashed lines L1 and L2 is the invalid area 124 in the embodiment of the present application, and the area a and the area c other than the area b This is the touch area 122 according to an embodiment of the present application.
  • the flexible touch sensor 14 senses the coordinate of the point, and the processor 20 generates a switch control signal according to the coordinate data of the point to control the light source to turn on.
  • the light source is turned on with a preset brightness and a preset color.
  • the flexible touch sensor 14 When the user's finger slides from point C(x 3 , y 3 ) to point D(x 4 , y 4 ) in the touch area 122a, the flexible touch sensor 14 will sense the gesture operation from point C to point D, That is, the flexible touch sensor 14 now senses the trajectory of the slide operation from left to right, and the processor 20 generates a light source brightness adjustment control signal according to the input signal generated by the slide operation to control the light source from dark to bright.
  • the device 20 When the user's finger slides from D(x 4 , y 4 ) to C(x 3 , y 3 ) again, that is to say, the flexible touch sensor 14 now senses the trajectory of the sliding operation from right to left, processing The device 20 generates a light source brightness adjustment control signal according to the input signal generated by the sliding operation to control the light source from bright to dark.
  • the flexible touch sensor 14 When the user's finger slides from point H (x 5 , y 5 ) to point G (x 6 , y 6 ) in the touch area 122a, the flexible touch sensor 14 will sense the gesture operation from point H to point G, That is, the flexible touch sensor 14 now senses the trajectory of the sliding operation from top to bottom, and the processor 20 controls the generation of the light source color adjustment control signal according to the input signal generated by the sliding operation to control the color of the light source from light to dark.
  • the processor 20 Generate a light source color adjustment control signal according to the input signal generated by the sliding operation to control the light source from deep to light.
  • the flexible touch sensor 14 When the user's finger touches any point in the area of the inactive area 124b, for example, the position of point E, the flexible touch sensor 14 will scan the specific position coordinates of E as (x 1 , y 1 ), and the flexible touch sensor 14 can receive the user's The gesture operation of the area, but the processor 20 receives the input signal from the invalid area 124 and does not respond to the gesture operation of the b-free area.
  • Any process or method description in a flowchart or otherwise described herein may be understood as representing a module, segment, or portion of code that includes one or more executable instructions for performing specific logical functions or steps of the process , And the scope of the preferred embodiment of the present application includes additional executions, which may not be performed in the order shown or discussed, including performing the functions in a substantially simultaneous manner or in reverse order according to the functions involved, which should It is understood by those skilled in the art to which the embodiments of the present application belong.
  • a "computer-readable medium” may be any device that can contain, store, communicate, propagate, or transmit a program for use by or in connection with an instruction execution system, apparatus, or device.
  • computer-readable media include the following: electrical connections (electronic devices) with one or more wires, portable computer cartridges (magnetic devices), random access memory (RAM), Read only memory (ROM), erasable and editable read only memory (EPROM or flash memory), fiber optic devices, and portable compact disk read only memory (CDROM).
  • the computer-readable medium may even be paper or other suitable medium on which the program can be printed, because, for example, by optically scanning the paper or other medium, followed by editing, interpretation, or other appropriate if necessary Process to obtain the program electronically and then store it in computer memory.
  • each part of the present application may be implemented by hardware, software, firmware, or a combination thereof.
  • multiple steps or methods may be performed using software or firmware stored in memory and executed by a suitable instruction execution system.
  • a logic gate circuit for performing a logic function on a data signal
  • PGA programmable gate arrays
  • FPGA field programmable gate arrays
  • each functional unit in each embodiment of the present application may be integrated into one processing module, or each unit may exist alone physically, or two or more units are integrated into one module.
  • the above-mentioned integrated modules may be executed in the form of hardware or software function modules. If the integrated module is executed in the form of a software function module and sold or used as an independent product, it may also be stored in a computer-readable storage medium.
  • the storage medium mentioned above may be a read-only memory, a magnetic disk or an optical disk.

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Abstract

一种电气输入装置(100)、电气设备(1000)及电气输入装置(100)的控制方法。电气输入装置(100)包括曲面触摸组件(10)和处理器(20),曲面触摸组件(10)包括本体(12)和柔性触摸传感器(14),本体(12)设有呈曲面状的触摸区(122),柔性触摸传感器(14)贴合在触摸区(122),处理器(20)连接柔性触摸传感器(14),处理器(20)用于根据作用于触摸区(122)的手势操作所产生的输入信号产生对应的控制信号。

Description

电气输入装置、电气设备及电气输入装置的控制方法 技术领域
本申请涉及电气设备领域,特别涉及一种电气输入装置、电气设备及电气输入装置的控制方法。
背景技术
在相关技术中,电气设备一般都是通过平面式的触摸开关对电气设备的运行状态进行控制,例如通过点击触摸开关的触摸平面以控制电灯的开启和关闭,或者滑动触摸平面以调节电灯的亮度,但是,平面式的触摸开关的触摸效果差,并且用户不容易辨别和调节各个触摸开关,而且平面式的触摸开关的立体感较差,外形不美观。
发明内容
本申请的实施方式提供一种电气输入装置、电气设备及电气输入装置的控制方法。
本申请的实施方式的电气输入装置包括曲面触摸组件和处理器,所述曲面触摸组件包括本体和柔性触摸传感器,所述本体设有呈曲面状的触摸区,所述柔性触摸传感器贴合在所述触摸区,所述处理器连接所述柔性触摸传感器,所述处理器用于根据作用于所述触摸区的手势操作所产生的输入信号产生对应的控制信号。
上述实施方式的电气输入装置,由于柔性触摸传感器贴合在呈曲面状的触摸区,这样使得曲面触摸组件的立体感较好,外观差异丰富,用户容易辨别和触摸。另外,通过柔性触摸传感器可感测作用于触摸区的手势操作及处理器可根据手势操作所产生的输入信号产生相应的控制信号,这样可以准确并快速地控制其它设备的状态,操作方便,用户体验性好。
本申请的实施方式的电气设备,包括负载和上述电气输入装置,所述处理器连接所述负载,并用于根据所述控制信号控制所述负载。
上述实施方式的电气设备,由于柔性触摸传感器贴合在呈曲面状的触摸区,这样使得曲面触摸组件的立体感较好,外观差异丰富,用户容易辨别和触摸。另外,通过柔性触摸传感器可感测作用于触摸区的手势操作及处理器可根据手势操作所产生的输入信号产生相应的控制信号,这样可以准确并快速地控制其它设备的状态,操作方便,用户体验性好。
本申请的实施方式的电气输入装置的控制方法,所述电气输入装置包括曲面触摸组件和处理器,所述曲面触摸组件包括本体和柔性触摸传感器,所述本体设有呈曲面状的触摸区,所述柔性触摸传感器贴合在所述触摸区,所述处理器连接所述柔性触摸传感器,所述 控制方法包括:接收作用在所述触摸区的手势操作所产生的输入信号;根据所述输入信号产生对应的控制信号。
上述实施方式的电气输入装置的控制方法,由于柔性触摸传感器贴合在呈曲面状的触摸区,这样使得曲面触摸组件的立体感较好,外观差异丰富,用户容易辨别和触摸。另外,通过柔性触摸传感器可感测作用于触摸区的手势操作及处理器可根据手势操作所产生的输入信号产生相应的控制信号,这样可以准确并快速地控制其它设备的状态,操作方便,用户体验性好。
本申请的实施方式的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实施方式的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施方式的描述中将变得明显和容易理解,其中:
图1是本申请实施方式的电气输入装置的结构示意图。
图2是本申请实施方式的电气设备的模块示意图。
图3是本申请实施方式的电气输入装置的控制方法的流程图。
图4是本申请实施方式的电气输入装置的另一结构示意图。
图5是本申请实施方式的电气输入装置的又一结构示意图。
图6是本申请实施方式的电气输入装置的控制方法的另一流程示意图。
图7是本申请实施方式的电气输入装置的控制方法的又一流程示意图。
主要附图标号:
电气设备1000、电气输入装置100、曲面触摸组件10、本体12、触摸区122、无效区124、凸部126、凹部128、柔性触摸传感器14、处理器20、负载200。
具体实施方式
下面详细描述本申请的实施方式,所述实施方式的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施方式是示例性的,仅用于解释本申请,而不能理解为对本申请的限制。
在本申请的描述中,需要理解的是,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个所述特征。在本申请的描述中,“多 个”的含义是两个或两个以上,除非另有明确具体的限定。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接或可以相互通信;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
下文的公开提供了许多不同的实施方式或例子用来实现本申请的不同结构。为了简化本申请的公开,下文中对特定例子的部件和设置进行描述。当然,它们仅仅为示例,并且目的不在于限制本申请。此外,本申请可以在不同例子中重复参考数字和/或参考字母,这种重复是为了简化和清楚的目的,其本身不指示所讨论各种实施方式和/或设置之间的关系。此外,本申请提供了的各种特定的工艺和材料的例子,但是本领域普通技术人员可以意识到其他工艺的应用和/或其他材料的使用。
请参阅图1至图3,本申请的实施方式提供一种电气输入装置100和电气输入装置100的控制方法。电气输入装置100的控制方法可应用于电气输入装置100。电气输入装置100包括曲面触摸组件10和处理器20,曲面触摸组件10包括本体12和柔性触摸传感器14,本体12设有呈曲面状的触摸区122,柔性触摸传感器14贴合在触摸区122,处理器20连接柔性触摸传感器14。
电气输入装置100的控制方法包括:
步骤S10,接收作用在触摸区122的手势操作所产生的输入信号;
步骤S20,根据输入信号产生对应的控制信号。
本申请实施方式的电气输入装置100的控制方法可以由本申请的电气输入装置100实现。其中,步骤S10可由柔性触摸传感器14实现,步骤S20可由处理器20实现。柔性触摸传感器14用于接收作用在触摸区122的手势操作所产生的输入信号;处理器20用于根据输入信号产生对应的控制信号。
本申请实施方式的电气输入装置100和电气输入装置100的控制方法,由于柔性触摸传感器14贴合在呈曲面状的触摸区122,这样使得曲面触摸组件10的立体感较好,外观差异丰富,用户容易辨别和触摸。另外,通过柔性触摸传感器14可感测作用于触摸区122的手势操作及处理器20可根据手势操作所产生的输入信号产生相应的控制信号,这样可以准确并快速地控制其它设备的状态,操作方便,用户体验性好。
请参阅图2,本申请还提供一种电气设备1000,电气设备1000包括负载200和电气输入装置100,处理器20连接负载200,并用于根据控制信号控制负载200。其中,电气设备1000可为照明装置、电风扇、空调、冰箱等电器,负载200可为光源、电风扇的电机及 空调的压缩机、风机等。
具体地,本申请中的曲面触摸组件10可以设置在木质墙壁的木纹上或者家具的皮纹上,这样曲面触摸组件10可以利用木纹或者平纹的光滑平面的凹凸结构作为本体12,而无需对木质墙壁的木纹上或者家具的皮纹上做任何结构的改变和处理,如此,这样取材方便,而且曲面触摸组件10的整体结构良好,外观差异丰富,用户容易辨别和触摸。
柔性触摸传感器14具有良好的柔韧性、延展性、并且可自由弯曲和折叠,结构形式灵活多样,可根据测量条件的要求任意布置,检测数据灵敏度高。因此,本申请实施方式柔性触摸传感器14可以完全贴合在呈曲面状的触摸区122并用于在作用于触摸区122的手势操作时产生输入信号。
另外,柔性触摸传感器14包括柔性基材和形成在柔性基材上的感测电路,感测电路可以与人的手指或其他导体形成电场感应,通过电场感应的变化值来感测用户的手势操作。柔性基材可为聚二甲基硅氧烷,当然,柔性基材也可以采用其他透明和绝缘的柔性材料。
本申请的处理器20与柔性触摸传感器14连接,这样通过柔性触摸传感器14所感测到的用户的手势操作所产生的输入信号可以传输至处理器20,处理器20可根据输入信号产生对应的控制信号以控制负载200的状态。
需要说明的是,用户可以通过触摸或者非触摸的方式触控曲面触摸组件10以控制不同的负载200。其中,非触摸的方式可以理解为只要用户的手指靠近触控曲面触摸组件10并产生相应的手势操作便可以产生相应的控制信号。
请参阅图1,在某些实施方式中,曲面触摸组件10包括两个触摸区122,本体12设有无效区124,无效区124位于两个触摸区122之间。如此,通过无效区124可以隔开两个触摸区122,以避免两个触摸区122距离太近而导致的误操作。
在某些实施方式中,控制方法包括:
判断所产生的输入信号是在触摸区122还是无效区124;及若所产生的输入信号是在无效区124,则处理器20不对无效区124的输入信号作出响应。
具体地,在一个实施例中,无效区124可设置有柔性触摸传感器14,柔性触摸传感器14可以在无效区124有手势操作时产生的输入信号,但是处理器20不对来自无效区124的输入信号作出响应,也就是说,当用户触摸到无效区124,处理器20不会产生任何的控制信号。
在另一个实施方式中,无效区124可不设置柔性触摸传感器14。当用户触摸到无效区124时,也不会产生任何的控制信号。
请参阅图4,在某些实施方式中,本体12包括两个凸部126和位于两个凸部126之间的凹部128,凹部128连接两个凸部126,两个触摸区122分别设在两个凸部126的表面, 无效区124设在凹部128。如此,可进一步避免两个触摸区122距离太近而导致的误操作,同时,也能够使得电气输入装置100的操作更具立体性。
在图1的示例中,两个触摸区122和一个无效区124连接形成连续且呈波浪状的曲面区域,触摸区122位于波峰处,无效区124位于波谷处。
需要说明的是,本申请可以根据实际需求设计多个凸部126和多个凹部128,每个凸部126和每个凹部128交替设置,这样可使得两个触摸区122由一个无效区124隔开。
在某些实施方式中,手势操作包括点击操作,控制信号包括开关控制信号,控制方法包括:根据点击操作所产生的输入信号产生开关控制信号。
上述控制方法可以由本申请实施方式的处理器20实现。其中,处理器20用于根据点击操作所产生的输入信号产生开关控制信号。如此,这样操作方便,准确性高。
请参阅图4,在一个实施例中,两条虚线L1、L2之间的区域b为本申请实施方式的无效区124,区域b之外的a区域和c区域为本申请实施方式的两个触摸区122,来自a区域的输入信号可产生开启的控制信号,来自c区域的输入信号可产生关闭的控制信号。当用户的手指点击到位于无效区的E点位置,柔性触摸传感器14会扫描到E的具体位置坐标为(x 1、y 1),由于E点位置处于无效区124,处理器20接收到来自无效区124的输入信号而不产生控制信号。当用户的手指点击到F点位置,柔性触摸传感器14会扫描到F点的具体位置坐标为(x 2、y 2),由于F点位置处于触摸区122,处理器20根据F点的具体位置坐标信息产生开关控制信号。当负载200为光源时,处理器20产生的开关控制信号可以控制光源开启。当用户的手指点击c区域的任何一点时,柔性触摸传感器14会扫描到该点的具体位置坐标信息,并且处理器20产生开关控制信号以控制光源关闭。需要说明的时,点击触摸区122的任何一点以使得电灯开启时,光源会以预设的颜色和亮度开启。
在某些实施方式中,手势操作包括滑动操作,控制信号包括调节控制信号,控制方法包括:根据滑动操作所产生的输入信号产生调节控制信号。
上述控制方法可以由本申请的处理器20实现。其中,处理器20用于根据滑动操作所产生的输入信号产生调节控制信号。如此,这样操作方便、灵活及准确性高。
在某些实施方式中,调节控制信号包括光源亮度调节控制信号、光源颜色调节控制信号中的至少一种。如此,可以实现不同的调光功能。
具体地,光源亮度调节控制信号可以控制光源的发光亮度变暗或变亮,光源颜色调节控制信号可以控制光源的发光颜色改变。
调节控制信号包括光源亮度调节控制信号、光源颜色调节控制信号中的至少一种,可以理解为,调节控制信号为光源亮度调节控制信号或光源颜色调节控制信号,以及调节控制信号包括光源亮度调节控制信号和光源颜色调节控制信号。
在某些实施方式中,滑动操作包括沿第一方向的第一滑动操作和沿第二方向的第二滑动操作,调节控制信号包括第一调节控制信号和第二调节控制信号,控制方法包括:根据第一滑动操作所产生的输入信号产生第一调节控制信号;及根据第二滑动操作所产生的输入信号产生第二调节控制信号。
上述控制方法可以由本申请的处理器20实现。其中,处理器20用于根据第一滑动操作所产生的输入信号产生第一调节控制信号,及用于根据第二滑动操作所产生的输入信号产生第二调节控制信号。
如此,根据不同的滑动操作产生不同的调节控制信号,这样使得电气输入装置100的功能多样化,并且用户操作方便。
具体地,第一方向和第二方向是不同的方向。在一个实施例中,第一方向和第二方向相反。例如第一方向为,沿水平方向从左至右的滑动方向,第二方向为沿水平方向从右至左的滑动方法,又如第一方向为,沿水平方向从右至左的滑动方向,第二方向为沿水平方向从左至右的滑动方向。又如,第一方向为,沿竖直方向从上至下的滑动方向,第二方向为沿竖直方向从下至上的滑动方向,又如,第一方向为,沿竖直方向从下至上的滑动方向,第二方向为沿竖直方向从上至下的滑动方向。
在本申请的一个实施例中,负载200为光源,第一滑动操作和第二滑动操作可使处理器20产生光源调节控制信号,以控制光源的发光亮度。例如,第一滑动操作为从左至右(第一方向)的滑动操作,第二滑动操作为从右至左(第二方向)的滑动操作,当柔性触摸传感器14感测到从左至右的滑动操作时,处理器20控制光源的发光亮度由暗变亮。当柔性触摸传感器14感测到从右至左的滑动操作时,处理器20控制光源的发光亮度由亮变暗。
在本申请的另一实施例中,负载200为光源,第一滑动操作和第二滑动操作可使处理器20产生光源颜色控制信号以控制光源的发光颜色,例如,第一滑动操作为从上至下(第一方向)的滑动操作,第二滑动操作为从下至上(第二方向)的滑动操作。当柔性触摸传感器14感测到从上至下的滑动操作时,处理器20控制电灯的光源颜色由浅变深。当柔性触摸传感器14感测到从下至上的滑动操作时,处理器20控制电灯的光源颜色由深变浅。
请参阅图5至图7,在一个实施例中,负载200为光源,两条虚线L1、L2之间的区域b为本申请实施方式的无效区124,区域b之外的a区域和c区域为本申请实施方式的触摸区122。
当用户的手指触摸待触摸区122a区域的任何一点时,柔性触摸传感器14感测到该点的坐标,处理器20根据该点的坐标数据产生开关控制信号,以控制光源打开。此时,光源以预设的亮度和预设颜色开启。当用户的手指从触摸区122a中的C(x 3、y 3)点滑动至D(x 4、y 4)点时,柔性触摸传感器14会感测到从C点至D点的手势操作,也就是说,柔性 触摸传感器14现在感测到从左至右的滑动操作的轨迹,处理器20根据滑动操作所产生的输入信号产生光源亮度调节控制信号,以控制光源由暗变亮。当用户的手指再次从D(x 4、y 4)点滑动至C(x 3、y 3)时,也就是说,柔性触摸传感器14现在感测到从右至左的滑动操作的轨迹,处理器20根据滑动操作所产生的输入信号产生光源亮度调节控制信号,以控制光源由亮变暗。
当用户的手指从触摸区122a中的H(x 5、y 5)点滑动至G(x 6、y 6)点时,柔性触摸传感器14会感测到从H点至G点的手势操作,也就是说,柔性触摸传感器14现在感测到从上至下的滑动操作的轨迹,处理器20根据滑动操作所产生的输入信号控制产生光源颜色调节控制信号,以控制光源的颜色由浅变深。当用户的手指再次从G(x 6、y 6)点滑动至H(x 5、y 5)时,也就是说,柔性触摸传感器14现在感测到从下至上的滑动操作的轨迹,处理器20根据滑动操作所产生的输入信号产生光源颜色调节控制信号,以控制光源由深变浅。
当用户的手指触摸到无效区124b区域的任何一点时,例如E点位置,柔性触摸传感器14会扫描到E的具体位置坐标为(x 1、y 1),柔性触摸传感器14可以接收用户在b区域的手势操作,但是处理器20接收到来自无效区124的输入信号而不对无b区域的手势操作作出响应。
在本说明书的描述中,参考术语“一个实施方式”、“一些实施方式”、“示意性实施方式”、“示例”、“具体示例”、或“一些示例”等的描述意指结合所述实施方式或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施方式或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施方式或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施方式或示例中以合适的方式结合。
流程图中或在此以其他方式描述的任何过程或方法描述可以被理解为,表示包括一个或更多个用于执行特定逻辑功能或过程的步骤的可执行指令的代码的模块、片段或部分,并且本申请的优选实施方式的范围包括另外的执行,其中可以不按所示出或讨论的顺序,包括根据所涉及的功能按基本同时的方式或按相反的顺序,来执行功能,这应被本申请的实施例所属技术领域的技术人员所理解。
在流程图中表示或在此以其他方式描述的逻辑和/或步骤,例如,可以被认为是用于执行逻辑功能的可执行指令的定序列表,可以具体执行在任何计算机可读介质中,以供指令执行系统、装置或设备(如基于计算机的系统、包括处理器的系统或其他可以从指令执行系统、装置或设备取指令并执行指令的系统)使用,或结合这些指令执行系统、装置或设备而使用。就本说明书而言,"计算机可读介质"可以是任何可以包含、存储、通信、传播或传输程序以供指令执行系统、装置或设备或结合这些指令执行系统、装置或设备而使用的装置。计算机可读介质的更具体的示例(非穷尽性列表)包括以下:具有一个或多个布线的电连 接部(电子装置),便携式计算机盘盒(磁装置),随机存取存储器(RAM),只读存储器(ROM),可擦除可编辑只读存储器(EPROM或闪速存储器),光纤装置,以及便携式光盘只读存储器(CDROM)。另外,计算机可读介质甚至可以是可在其上打印所述程序的纸或其他合适的介质,因为可以例如通过对纸或其他介质进行光学扫描,接着进行编辑、解译或必要时以其他合适方式进行处理来以电子方式获得所述程序,然后将其存储在计算机存储器中。
应当理解,本申请的各部分可以用硬件、软件、固件或它们的组合来执行。在上述实施方式中,多个步骤或方法可以用存储在存储器中且由合适的指令执行系统执行的软件或固件来执行。例如,如果用硬件来执行,和在另一实施方式中一样,可用本领域公知的下列技术中的任一项或他们的组合来执行:具有用于对数据信号执行逻辑功能的逻辑门电路的离散逻辑电路,具有合适的组合逻辑门电路的专用集成电路,可编程门阵列(PGA),现场可编程门阵列(FPGA)等。
本技术领域的普通技术人员可以理解执行上述实施方法携带的全部或部分步骤是可以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可读存储介质中,该程序在执行时,包括方法实施例的步骤之一或其组合。
此外,在本申请各个实施例中的各功能单元可以集成在一个处理模块中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个模块中。上述集成的模块既可以采用硬件的形式执行,也可以采用软件功能模块的形式执行。所述集成的模块如果以软件功能模块的形式执行并作为独立的产品销售或使用时,也可以存储在一个计算机可读取存储介质中。
上述提到的存储介质可以是只读存储器,磁盘或光盘等。尽管上面已经示出和描述了本申请的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本申请的限制,本领域的普通技术人员在本申请的范围内可以对上述实施例进行变化、修改、替换和变型。

Claims (16)

  1. 一种电气输入装置,其特征在于,包括曲面触摸组件和处理器,所述曲面触摸组件包括本体和柔性触摸传感器,所述本体设有呈曲面状的触摸区,所述柔性触摸传感器贴合在所述触摸区,所述处理器连接所述柔性触摸传感器,所述处理器用于根据作用于所述触摸区的手势操作所产生的输入信号产生对应的控制信号。
  2. 如权利要求1所述的电气输入装置,其特征在于,所述曲面触摸组件包括两个所述触摸区,所述本体设有无效区,所述无效区位于两个所述触摸区之间。
  3. 如权利要求2所述的电气输入装置,其特征在于,所述本体包括两个凸部和位于所述两个凸部之间的凹部,所述凹部连接所述两个凸部,所述两个触摸区分别设在所述两个凸部的表面,所述无效区设在所述凹部。
  4. 如权利要求1所述的电气输入装置,其特征在于,所述手势操作包括点击操作,所述控制信号包括开关控制信号,所述处理器用于根据所述点击操作所产生的输入信号产生所述开关控制信号。
  5. 如权利要求1所述的电气输入装置,其特征在于,所述手势操作包括滑动操作,所述控制信号包括调节控制信号,所述处理器用于根据所述滑动操作所产生的输入信号产生所述调节控制信号。
  6. 如权利要求5所述的电气输入装置,其特征在于,所述调节控制信号包括光源亮度调节控制信号、光源颜色调节控制信号中的至少一种。
  7. 如权利要求5所述的电气输入装置,其特征在于,所述滑动操作包括沿第一方向的第一滑动操作和沿第二方向的第二滑动操作,所述调节控制信号包括第一调节控制信号和第二调节控制信号,所述处理器用于根据所述第一滑动操作产生所述第一调节控制信号,及用于根据所述第二滑动操作产生所述第二调节控制信号。
  8. 如权利要求7所述的电气输入装置,其特征在于,所述第一方向与所述第二方向相反。
  9. 一种电气设备,其特征在于,包括负载和权利要求1-8任一项所述的电气输入装置,所述处理器连接所述负载,并用于根据所述控制信号控制所述负载。
  10. 一种电气输入装置的控制方法,其特征在于,所述电气输入装置包括曲面触摸组件和处理器,所述曲面触摸组件包括本体和柔性触摸传感器,所述本体设有呈曲面状的触摸区,所述柔性触摸传感器贴合在所述触摸区,所述处理器连接所述柔性触摸传感器,
    所述控制方法包括:
    接收作用在所述触摸区的手势操作所产生的输入信号;
    根据所述输入信号产生对应的控制信号。
  11. 如权利要求10所述的控制方法,其特征在于,所述曲面触摸组件包括两个所述触摸区,所述本体设有无效区,所述无效区位于两个所述触摸区之间,所述控制方法包括:
    判断所产生的所述输入信号是在触摸区还是无效区;及
    若所产生的所述输入信号是在所述无效区,则所述处理器不对所述无效区的所述输入信号作出响应。
  12. 如权利要求10所述的控制方法,其特征在于,所述手势操作包括点击操作,所述控制信号包括开关控制信号,所述控制方法包括:根据所述点击操作所产生的输入信号产生所述开关控制信号。
  13. 如权利要求10所述的控制方法,其特征在于,所述手势操作包括滑动操作,所述控制信号包括调节控制信号,所述控制方法包括:根据所述滑动操作所产生的输入信号产生所述调节控制信号。
  14. 如权利要求13所述的控制方法,其特征在于,所述调节控制信号包括光源亮度调节控制信号、光源颜色调节控制信号中的至少一种。
  15. 如权利要求13所述的控制方法,其特征在于,所述滑动操作包括沿第一方向的第一滑动操作和沿第二方向的第二滑动操作,所述调节控制信号包括第一调节控制信号和第二调节控制信号,所述控制方法包括:
    根据所述第一滑动操作所产生的输入信号产生所述第一调节控制信号;及
    根据所述第二滑动操作所产生的输入信号产生所述第二调节控制信号。
  16. 如权利要求15所述的控制方法,其特征在于,所述第一方向与所述第二方向相反。
PCT/CN2018/121984 2018-12-19 2018-12-19 电气输入装置、电气设备及电气输入装置的控制方法 WO2020124411A1 (zh)

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