WO2022027870A1 - 一种无线控制的智能开关 - Google Patents

一种无线控制的智能开关 Download PDF

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Publication number
WO2022027870A1
WO2022027870A1 PCT/CN2020/131294 CN2020131294W WO2022027870A1 WO 2022027870 A1 WO2022027870 A1 WO 2022027870A1 CN 2020131294 W CN2020131294 W CN 2020131294W WO 2022027870 A1 WO2022027870 A1 WO 2022027870A1
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Prior art keywords
switch
free end
driving mechanism
reversing mechanism
wirelessly controlled
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PCT/CN2020/131294
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English (en)
French (fr)
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易思亮
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易思亮
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Publication of WO2022027870A1 publication Critical patent/WO2022027870A1/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
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link

Definitions

  • the present invention relates to an electrical device, in particular to a switch.
  • IoT home appliances A very important point in IoT home appliances is to wirelessly control home appliances to start or close, such as lighting fixtures in the home. It is very inconvenient to turn on the lights in the dark when getting up at night, and it is easy to hit the furniture. Through the concept of the Internet of Things, users can first turn on the lights with their mobile phones and then get up. But these are all functions that traditional electric lamps cannot achieve.
  • the main technical problem to be solved by the present invention is to provide an intelligent switch, which can cooperate with the traditional switch to realize wireless control of the traditional switch.
  • the present invention provides a wirelessly controlled intelligent switch, comprising: a main control circuit board, a driving mechanism, a reversing mechanism and a fixing surface;
  • the reversing mechanism reverses the rotation output of the driving mechanism to move up and down along the axial direction of the reversing mechanism;
  • the fixed surface is fixed to the non-operation area of the switch panel, and the free end of the reversing mechanism faces the switch panel the operating area;
  • the main control circuit board establishes a wireless connection with the smart terminal, and after receiving the operation command, the main control circuit board drives the driving mechanism to act, so as to drive the free end of the reversing mechanism to move along the axial direction toward the operation area. direction to trigger the operation area.
  • the operation area is a push button or a touch panel.
  • the invention also provides a wirelessly controlled intelligent switch, comprising: a main control circuit board, a driving mechanism, a reversing mechanism and a fixing surface;
  • the reversing mechanism reverses the rotation output of the driving mechanism to move up and down along the axial direction of the reversing mechanism; the fixed surface is fixed with the operating area of the switch panel, and the free end of the reversing mechanism is connected to the switch panel.
  • the main control circuit board establishes a wireless connection with the smart terminal, and after receiving the operation command, the main control circuit board drives the driving mechanism to act, so as to drive the free end of the reversing mechanism to form an axial direction approaching or away from The direction of the operating area moves, and the reaction force formed between the reversing mechanism and the driving mechanism pushes the fixed surface linked with the driving mechanism to press down a part of the operating area.
  • the operation areas pressed down by the fixed surface are different.
  • the free end of the driving mechanism is fixedly connected to the non-operation area of the switch panel through the second fixing surface; and the free end and the second fixing surface are in a detachable rotational connection.
  • the reversing mechanism includes a screw rod and a screw sleeve; the screw rod is connected with the output shaft of the driving mechanism to rotate along the axial direction of the screw rod itself; the screw sleeve is sleeved outside the screw rod.
  • it also includes a travel switch
  • the screw sleeve has an abutting portion matched with the travel switch; when the screw sleeve and the travel switch move relative to each other, the abutting portion abuts.
  • the limit switch is turned on, the output shaft of the drive mechanism stops rotating.
  • it further includes a base, and the base is provided with a limiting channel along the moving direction of the free end; the free end passes through the limiting channel.
  • the fixing surface and the base are detachably connected, and different fixing surfaces can be replaced according to different switch panels.
  • it also includes a casing and a power supply arranged in the casing.
  • the present invention provides a wirelessly controlled smart switch.
  • the free end of the reversing assembly is driven by the drive assembly to move, so that the free end can press or touch the operating area of the traditional switch, thereby triggering the traditional switch to open or close.
  • the user only needs to control the action of the driving component through a smart terminal such as a mobile phone, thereby realizing the purpose of wireless remote control of the traditional switch.
  • the intelligent transformation of traditional switches is realized.
  • the present invention provides a wirelessly controlled intelligent switch, which forms a relative motion trend between the free end of the reversing assembly and the driving assembly through the driving assembly, so that the reversing assembly exerts a reverse force on the driving assembly, pushing and A part of the fixed surface linked by the drive assembly presses down the operation area, so that one end of the traditional rocker switch can be pressed to open, and the other end of the switch can be pressed to close.
  • the present invention provides a wirelessly controlled smart switch, the fixed surface can be freely disassembled and replaced, and the user can select a suitable fixed surface according to the size of the operating area or non-operating area in the traditional switch panel to complete the only switch and Fixed installation of conventional switches.
  • FIG. 1 is a perspective view of an intelligent switch in preferred embodiment 1 of the present invention
  • Fig. 2 is the internal structure diagram of the intelligent switch in the preferred embodiment 1 of the present invention.
  • Fig. 3 is the sectional view of the intelligent switch in the preferred embodiment 1 of the present invention.
  • FIG. 4 is a schematic diagram of the smart switch installed on the narrow-edge touch switch in the preferred embodiment 1 of the present invention.
  • Fig. 5 is the schematic diagram that the intelligent switch is installed in the broad-side touch switch in the preferred embodiment 1 of the present invention
  • Fig. 6 is the schematic diagram of the intelligent switch installed on the push switch in the preferred embodiment 1 of the present invention.
  • Fig. 7 is the schematic diagram that the intelligent switch is installed in the boat type switch in the preferred embodiment 2 of the present invention.
  • FIG. 8 is a side view of the preferred embodiment 2 of the present invention when the rocker switch is turned on;
  • FIG. 9 is a side view of the preferred embodiment 2 of the present invention when the boat switch is closed;
  • Fig. 10 is the side view of the smart switch according to the preferred embodiment 3 of the present invention.
  • FIG. 11 is an internal side view of the smart switch according to the preferred embodiment 3 of the present invention.
  • connection should be understood in a broad sense, such as " Connection”, which can be a fixed connection, a detachable connection, or an integral connection, a mechanical connection, an electrical connection, a direct connection, or an indirect connection through an intermediate medium, or an internal connection between two components.
  • Connection can be a fixed connection, a detachable connection, or an integral connection, a mechanical connection, an electrical connection, a direct connection, or an indirect connection through an intermediate medium, or an internal connection between two components.
  • a wirelessly controlled smart switch includes: a main control circuit board, a driving mechanism 2, a reversing mechanism 3 and a fixing surface 4;
  • the reversing mechanism 3 reverses the rotation output of the driving mechanism 2 to move up and down along the axial direction of the reversing mechanism 3;
  • the fixed surface 4 is fixed to the non-operation area of the switch panel, and the The free end faces the operating area of the switch panel;
  • the main control circuit board establishes a wireless connection with the intelligent terminal, and after receiving the operation command, the main control circuit board drives the driving mechanism 2 to act, so as to drive the free end of the reversing mechanism 3 to approach the operation along the axial direction.
  • the direction of the area is moved to trigger the operation area.
  • the free end of the reversing component is driven by the driving component to move, so that the free end can press or touch the operation area of the traditional switch, thereby triggering the opening or closing of the traditional switch.
  • the user only needs to control the action of the driving component through a smart terminal such as a mobile phone, thereby realizing the purpose of wireless remote control of the traditional switch.
  • the intelligent transformation of traditional switches is realized.
  • the operation area is a pressing button or a touch panel. That is to say, the traditional switch can be a touch switch or a switch with keys or buttons.
  • the reversing mechanism 3 includes a screw 31 and a screw sleeve 32; the screw 31 is linked with the output shaft of the driving mechanism 2 to rotate along the axis of the screw 31 itself; the screw sleeve 32 is sleeved Connected to the outside of the screw 31.
  • the output shaft of the drive mechanism 2 drives the screw 31 to rotate, and the screw sleeve 32 sleeved outside the screw 31 can move up and down along the axial direction of the screw 31 .
  • this embodiment also includes a travel switch 5, and the screw sleeve 32 has an abutment portion 321 that cooperates with the travel switch 5;
  • the limit switch 5 moves relative to the limit switch 5
  • the abutting portion 321 abuts the limit switch 5
  • the output shaft of the driving mechanism 2 stops rotating. In this way, it can be avoided that the free end of the screw sleeve 32 exerts excessive pressure on the panel, resulting in damage to the panel.
  • a base 6 is also included, and the base 6 is provided with a limiting channel along the movement direction of the free end; the free end passes through the the limit channel. In this way, it can be ensured that the screw sleeve 32 can only move in the limiting channel.
  • the fixed surface 4 and the base 6 are detachably connected, and different switch panels can be replaced according to different switch panels. Fixed surface 4.
  • a power supply 7 is also included and arranged in the casing 1 , and the power supply 7 is used to supply power to the main control circuit board and the driving mechanism 2 .
  • the power source 7 can be a replaceable battery or a rechargeable battery, and a charging cable interface can be correspondingly provided on the housing 1 .
  • this embodiment provides a wirelessly controlled smart switch.
  • the difference from Embodiment 1 is that the fixing surface 4 is fixed to the operating area of the switch panel, and the free end of the reversing mechanism 3 is fixed. Hinged with the non-operating area of the switch panel;
  • the main control circuit board establishes a wireless connection with the intelligent terminal. After receiving the operation command, the main control circuit board drives the driving mechanism 2 to act, so as to drive the free end of the reversing mechanism 3 to form an axially approaching approach. Or the tendency to move away from the operating area, the reaction force formed between the reversing mechanism 3 and the driving mechanism 2 pushes the fixed surface 4 linked with the driving mechanism 2 to press down a part of the operating area.
  • the reversing mechanism 3 becomes stationary, but has a relative movement tendency, so that the fixed surface 4 is pushed to move by the reaction force, so that the fixed surface 4 presses down a part of the operation area.
  • the operation area of the pressing down of the fixing surface 4 is different. In this way, the control of the two actions of the switch in the traditional rocker switch is realized. Instead of only opening but not closing, or only closing and not opening. And since the free end and the non-operating area are hinged, when the fixed surface 4 presses down a part of the operating area, the angle between the free end and the non-operating area can be changed accordingly, so that the lower part of the operating area can be changed accordingly. The pressing process can be successfully completed.
  • the free end of the drive mechanism 2 is connected to the non-operating area of the switch panel through the second fixing surface 8; and the free end and the second fixing surface 8 are formed by a detachable rotational connection relationship the hinge.
  • the side of the second fixing surface 8 facing the free end is a hook, and the free end is hooked with the hook to form a detachable rotational connection.
  • the difference between this embodiment and Embodiment 2 is that the free end of the reversing mechanism 3 and the non-operating area of the switch panel are connected by magnetic attraction.
  • the user can release the magnetic connection between the free end and the switch panel as long as the user exerts an external force greater than the magnetic attraction force on the operating area of the switch panel, thereby realizing the purpose of manually controlling the switch panel.
  • the user can also manually operate the switch panel.
  • both the free end and the switch panel are hinged, and the user cannot manually control the switch panel.

Abstract

一种无线控制的智能开关,包括:主控电路板、驱动机构(2)、换向机构(3)和固定面(4);换向机构(3)将驱动机构(2)输出的转动换向为沿着换向机构(3)的轴向的上下移动;固定面(4)与开关面板的非操作区域固定,换向机构(3)的自由端朝向开关面板的操作区域;主控电路板与智能终端建立无线连接,主控电路板接收到操作指令后驱动驱动机构(2)动作,以带动换向机构(3)的自由端沿着轴向向着靠近操作区域的方向移动,以触发操作区域。该智能开关,能够与传统开关配合实现无线控制传统开关。

Description

一种无线控制的智能开关 技术领域
本发明涉及一种电气装置,尤其涉及开关。
背景技术
随着物联网概念的提出,越来越多的家用电器具备了联网功能,从而实现由统一的智能终端进行控制。但是这种家用电器往往是刚面世的新款,老款家电不具备该功能。用户若为了这个功能更换家中的家电则不太现实。
物联网家电中很重要的一点是无线控制家电启动或者关闭,例如家中的照明灯具,在晚上起夜时如果还需要在黑暗中开灯就很不方便,容易撞到家具。通过物联网的概念就可以实现用户先用手机开灯后再起床。但是这些都是传统的电灯无法实现的功能。
发明内容
本发明所要解决的主要技术问题是提供一种智能开关,能够与传统开关配合实现无线控制传统开关。
为了解决上述的技术问题,本发明提供了一种无线控制的智能开关,包括:主控电路板、驱动机构、换向机构和固定面;
所述换向机构将驱动机构输出的转动换向为沿着换向机构的轴向的上下移动;所述固定面与开关面板的非操作区域固定,所述换向机构的自由端朝向开关面板的操作区域;
所述主控电路板与智能终端建立无线连接,所述主控电路板接收到操作指令后驱动所述驱动机构动作,以带动所述换向机构的自由端沿着轴向向着靠近操作区域的方向移动,以触发所述操作区域。
在一较佳实施例中:所述操作区域为按压按钮或触摸面板。
本发明还提供了一种无线控制的智能开关,包括:主控电路板、驱动机构、换向机构和固定面;
所述换向机构将驱动机构输出的转动换向为沿着换向机构的轴向的上下移动;所述固定面与开关面板的操作区域固定,所述换向机构的自由端与开关面板的非操作区域铰接;
所述主控电路板与智能终端建立无线连接,所述主控电路板接收到操作指令 后驱动所述驱动机构动作,以带动所述换向机构的自由端形成沿着轴向向着靠近或远离操作区域的方向移动的趋势,换向机构与驱动机构之间形成的反作用力推动与驱动机构连动的固定面下压所述操作区域中的一部分。
在一较佳实施例中:所述换向机构形成沿着轴向向着靠近或远离操作区域的方向移动的趋势时,所述固定面下压的操作区域不相同。
在一较佳实施例中:所述驱动机构的自由端通过第二固定面与开关面板的非操作区域固定连接;并且所述自由端与第二固定面之间为可拆卸的转动连接关系。
在一较佳实施例中:所述换向机构包括螺杆、螺套;所述螺杆与驱动机构的输出转轴连动连接以沿着螺杆自身的轴向转动;所述螺套套接在螺杆外。
在一较佳实施例中:还包括一行程开关,所述螺套具有与所述行程开关配合的抵接部;当所述螺套与行程开关发生相对运动,使所述抵接部抵接行程开关时,所述驱动机构的输出转轴停止转动。
在一较佳实施例中:还包括一底座,所述底座沿着所述自由端的移动方向设置有限位通道;所述自由端穿过所述限位通道。
在一较佳实施例中:所述固定面与底座之间为可拆卸连接,根据不同的开关面板更换不同的固定面。
在一较佳实施例中:还包括外壳以及设置在外壳内的电源。
相较于现有技术,本发明的技术方案具备以下有益效果:
1.本发明提供了一种无线控制的智能开关,通过驱动组件驱动换向组件的自由端移动,从而实现了自由端对传统开关操作区域的按压或者触碰,从而触发传统开关打开或者关闭。用户只需要通过手机等智能终端控制驱动组件动作即可,从而实现了无线远程控制传统开关的目的。实现了传统开关的智能化改造。
2.本发明提供了一种无线控制的智能开关,通过驱动组件驱动换向组件的自由端与驱动组件之间形成相对运动趋势,从而使得换向组件对驱动组件施加反向作用力,推动与驱动组件连动的固定面中的一部分下压操作区域,这样就可以实现对传统的船型开关的一端按压操作开关打开,对另一端按压操作开关闭合。
3.本发明提供了一种无线控制的智能开关,固定面可以自由拆卸和更换,用户可以根据传统开关面板中操作区域或者非操作区域的大小,选择合适的固定 面,来完成只能开关与传统开关的固定安装。
附图说明
图1为本发明优选实施例1中智能开关的立体图;
图2为本发明优选实施例1中智能开关的内部结构图;
图3为本发明优选实施例1中智能开关的剖视图;
图4为本发明优选实施例1中智能开关安装在窄边触摸开关的示意图;
图5为本发明优选实施例1中智能开关安装在宽边触摸开关的示意图;
图6为本发明优选实施例1中智能开关安装在按压开关的示意图;
图7为本发明优选实施例2中智能开关安装在船型开关的示意图;
图8为本发明优选实施例2船型开关打开时的侧视图;
图9为本发明优选实施例2船型开关关闭时的侧视图;
图10为本发明优选实施例3智能开关的侧视图;
图11为本发明优选实施例3智能开关的内部侧视图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述;显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例,基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
在本发明的描述中,需要说明的是,术语“上”、“下”、“内”、“外”、“顶/底端”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。此外,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。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“设置有”、“套设/接”、“连接”等,应做广义理解,例如“连接”,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,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,对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
实施例1
参考图1‐图6,一种无线控制的智能开关,包括:主控电路板、驱动机构2、换向机构3和固定面4;
所述换向机构3将驱动机构2输出的转动换向为沿着换向机构3的轴向的上下移动;所述固定面4与开关面板的非操作区域固定,所述换向机构3的自由端朝向开关面板的操作区域;
所述主控电路板与智能终端建立无线连接,所述主控电路板接收到操作指令后驱动所述驱动机构2动作,以带动所述换向机构3的自由端沿着轴向向着靠近操作区域的方向移动,以触发所述操作区域。
上述的无线控制的智能开关,通过驱动组件驱动换向组件的自由端移动,从而实现了自由端对传统开关操作区域的按压或者触碰,从而触发传统开关打开或者关闭。用户只需要通过手机等智能终端控制驱动组件动作即可,从而实现了无线远程控制传统开关的目的。实现了传统开关的智能化改造。
由于自由端可以实现按压或者触碰两个动作效果,所述操作区域为按压按钮或触摸面板。也就是说传统开关可以是触摸开关,也可以是具有按键或按钮的开关。
本实施例中,所述换向机构3包括螺杆31、螺套32;所述螺杆31与驱动机构2的输出转轴连动连接以沿着螺杆31自身的轴向转动;所述螺套32套接在螺杆31外。驱动机构2的输出转轴带动螺杆31转动,套设在螺杆31外的螺套32就可以沿着螺杆31的轴向上下移动了。
此外,为了对换向机构3的行程进行限制,本实施例中还包括一行程开关5,所述螺套32具有与所述行程开关5配合的抵接部321;当所述螺套32与行程开关5发生相对运动,使所述抵接部321抵接行程开关5时,所述驱动机构2的输出转轴停止转动。这样就可以避免螺套32的自由端对面板施加过大的压力,造成面板损坏。
同时,为了让螺套32的移动能够准确地沿着螺杆31的轴向,还包括一底座6,所述底座6沿着所述自由端的移动方向设置有限位通道;所述自由端穿过所述限位通道。这样就可以保证螺套32只能在限位通道里面运动。
由于不同的开关面板的操作区域和非操作区域的宽度都不一样,为了适配更 多的开关面板,所述固定面4与底座6之间为可拆卸连接,根据不同的开关面板更换不同的固定面4。
本实施例中还包括以及设置在外壳1内的电源7,电源7用于给主控电路板和驱动机构2供电。电源7可以是可更换的电池,也可以是充电电池,外壳1上对应设置充电线接口即可。
实施例2
参考图7‐图9,本实施例提供了一种无线控制的智能开关,与实施例1的区别在于:所述固定面4与开关面板的操作区域固定,所述换向机构3的自由端与开关面板的非操作区域铰接;
所述主控电路板与智能终端建立无线连接,所述主控电路板接收到操作指令后驱动所述驱动机构2动作,以带动所述换向机构3的自由端形成沿着轴向向着靠近或远离操作区域的方向移动的趋势,换向机构3与驱动机构2之间形成的反作用力推动与驱动机构2连动的固定面4下压所述操作区域中的一部分。
该实施例中,换向机构3变为静止不动的,只是具备了相对运动趋势,从而利用反作用力推动固定面4运动,实现固定面4下压所述操作区域中的一部分。并且在换向机构3上移和下移两个过程中,固定面4下压的操作区域不相同。这样就实现了对传统船型开关中开关两个动作的控制。而不会只能开不能关或者只能关不能开。并且由于自由端和非操作区域之间是铰接的,这样在固定面4下压所述操作区域中的一部分时,自由端与非操作区域之间的夹角就可以随着改变,从而使得下压过程可以顺利完成。
本实施例中,所述驱动机构2的自由端通过第二固定面8与开关面板的非操作区域连接;并且所述自由端与第二固定面8之间为可拆卸的转动连接关系形成所述铰接。该第二固定面8朝向自由端的一侧为钩子,自由端与钩子钩接形成可拆卸的转动连接关系。之所以要这样设置是为了让自由端和钩子分离后,只能开关又能变回实施例1中的开关,只要按照实施例1中的连接方式就又可以和新的触摸开关或者按压开关进行适配了。
实施例3
参考图10和11,本实施例与实施2的区别在于:所述换向机构3的自由端与开关面板的非操作区域之间为磁吸连接。
这样设置后,用户只要在开关面板的操作区域上施加大于磁吸力的外力后,就可以解除自由端和开关面板的磁吸连接,从而实现手动控制开关面板的目的。这样在停电或者没有手机的情况下,用户还可以手动操作开关面板。而实施例1和2中自由端和开关面板之间都是铰接关系,用户无法手动控制开关面板。
上文所述,仅为本发明较佳的实施范例,不能依此限定本发明实施的范围。即依本发明专利范围及说明书内容所作的等效变化与修饰,皆应仍属本发明涵盖的范围内。

Claims (10)

  1. 一种无线控制的智能开关,其特征在于包括:主控电路板、驱动机构、换向机构和固定面;
    所述换向机构将驱动机构输出的转动换向为沿着换向机构的轴向的上下移动;所述固定面与开关面板的非操作区域固定,所述换向机构的自由端朝向开关面板的操作区域;
    所述主控电路板与智能终端建立无线连接,所述主控电路板接收到操作指令后驱动所述驱动机构动作,以带动所述换向机构的自由端沿着轴向向着靠近操作区域的方向移动,以触发所述操作区域。
  2. 根据权利要求1所述的一种无线控制的智能开关,其特征在于:所述操作区域为按压按钮或触摸面板。
  3. 一种无线控制的智能开关,其特征在于包括:主控电路板、驱动机构、换向机构和固定面;
    所述换向机构将驱动机构输出的转动换向为沿着换向机构的轴向的上下移动;所述固定面与开关面板的操作区域固定,所述换向机构的自由端与开关面板的非操作区域铰接或磁吸连接;
    所述主控电路板与智能终端建立无线连接,所述主控电路板接收到操作指令后驱动所述驱动机构动作,以带动所述换向机构的自由端形成沿着轴向向着靠近或远离操作区域的方向移动的趋势,换向机构与驱动机构之间形成的反作用力推动与驱动机构连动的固定面下压所述操作区域中的一部分。
  4. 根据权利要求3所述的一种无线控制的智能开关,其特征在于:所述换向机构形成沿着轴向向着靠近或远离操作区域的方向移动的趋势时,所述固定面下压的操作区域不相同。
  5. 根据权利要求3所述的一种无线控制的智能开关,其特征在于:所述驱动机构的自由端通过第二固定面与开关面板的非操作区域固定连接;并且所述自由端与第二固定面之间为可拆卸的转动连接关系。
  6. 根据权利要求1‐5中任意一项所述的一种无线控制的智能开关,其特征在于:所述换向机构包括螺杆、螺套;所述螺杆与驱动机构的输出转轴连动连接以 沿着螺杆自身的轴向转动;所述螺套套接在螺杆外。
  7. 根据权利要求6所述的一种无线控制的智能开关,其特征在于:还包括一行程开关,所述螺套具有与所述行程开关配合的抵接部;当所述螺套与行程开关发生相对运动,使所述抵接部抵接行程开关时,所述驱动机构的输出转轴停止转动。
  8. 根据权利要求6所述的一种无线控制的智能开关,其特征在于:还包括一底座,所述底座沿着所述自由端的移动方向设置有限位通道;所述自由端穿过所述限位通道。
  9. 根据权利要求8所述的一种无线控制的智能开关,其特征在于:所述固定面与底座之间为可拆卸连接,根据不同的开关面板更换不同的固定面。
  10. 根据权利要求6所述的一种无线控制的智能开关,其特征在于:还包括外壳以及设置在外壳内的电源。
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