WO2021052082A1 - 一种防误触操作器 - Google Patents

一种防误触操作器 Download PDF

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Publication number
WO2021052082A1
WO2021052082A1 PCT/CN2020/109656 CN2020109656W WO2021052082A1 WO 2021052082 A1 WO2021052082 A1 WO 2021052082A1 CN 2020109656 W CN2020109656 W CN 2020109656W WO 2021052082 A1 WO2021052082 A1 WO 2021052082A1
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Prior art keywords
switch
mistouch
touch sensing
control unit
housing
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PCT/CN2020/109656
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English (en)
French (fr)
Inventor
陈雪莉
章浙康
周少萍
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浙江捷昌线性驱动科技股份有限公司
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Publication of WO2021052082A1 publication Critical patent/WO2021052082A1/zh

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    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03KPULSE TECHNIQUE
    • H03K17/00Electronic switching or gating, i.e. not by contact-making and –breaking
    • H03K17/94Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the way in which the control signals are generated
    • H03K17/96Touch switches

Definitions

  • the utility model relates to the field of manipulators, in particular to an anti-mistouch manipulator.
  • Electric adjustable furniture such as electric lifting tables, electric tatami mats, electric sofas, electric beds, massage chairs, massage beds and other electric lifting mechanisms, can be adjusted in height or inclination according to different user needs to make it the most comfortable Therefore, it is increasingly used in offices, schools, homes, hospitals and other places.
  • the button is the control switch, and you only need to press a separate operating button to execute the corresponding
  • the operation is very convenient in daily use, but it is easy to be touched by mistake. It consumes power and easily causes damage to equipment and objects.
  • the technical problem to be solved by the utility model is to overcome the shortcomings in the prior art and design a highly safe anti-mistouch operator.
  • the utility model adopts the following technical solutions:
  • An anti-mistouch operator includes a casing and a cover plate supported in the casing.
  • the casing is provided with a circuit board, and the circuit board contains a main control unit that detects an actuation signal, the main control unit and the casing
  • a first switch that generates a first actuation signal is provided between the bottom wall
  • a second switch that generates a second actuation signal is provided between the main control unit and the cover
  • the first switch and the second switch are simultaneously actuated
  • the main control unit detects the first actuation signal and the second actuation signal at the same time, it sends out an actuation command.
  • the first switch is a first capacitive sensing touch switch.
  • the inner side wall of the bottom wall of the housing is provided with a first touch sensing area
  • the first switch includes a first capacitive touch sensing element arranged in the first touch sensing area.
  • a groove touch portion is provided at a position corresponding to the first capacitive touch sensing element on the outer side wall of the bottom wall of the housing.
  • the first switch is an electromechanical switch
  • the movable part of the electromechanical switch is provided on the bottom wall of the housing.
  • the second switch is a second capacitive sensing touch switch.
  • a second touch sensing area is provided on the inner side wall of the cover plate, and the second switch includes a second capacitive touch sensing element provided in the second touch sensing area.
  • a switch mark is provided at a position corresponding to the second capacitive touch sensing element on the outer side wall of the cover plate.
  • the second switch is an electromechanical switch, and the movable part of the electromechanical switch is provided on the cover plate.
  • the first switch is added on the back of the manipulator to actuate any switch individually.
  • the main control unit detects an actuation signal , No actuation command will be issued. Only when the front and back switches are actuated at the same time, the main control unit will send out the actuation command when the two actuation signals from the front and back are detected at the same time, and the newly added anti-inadvertent touch
  • the first switch of is located on the back of the operator and is generally difficult to touch. Therefore, it is difficult to actuate the two switches at the above positions at the same time. If it is not deliberately operated, the probability of accidentally touching the two switches at the same time is extremely low, which effectively reduces the operation The false touch rate of the device, thereby reducing the safety hazards in the furniture adjustment process, and improving the operation safety, and this misoperation process.
  • Fig. 1 is a schematic diagram of the three-dimensional structure of the manipulator in the first embodiment of the utility model.
  • Figure 2 is a cross-sectional view of the manipulator in the first embodiment of the utility model.
  • Fig. 3 is a schematic view of the three-dimensional structure of the manipulator in the first embodiment of the utility model from another perspective.
  • Fig. 4 is a schematic diagram of the three-dimensional structure of the manipulator in the second embodiment of the utility model.
  • Figure 5 is a cross-sectional view of the manipulator in the second embodiment of the utility model.
  • an anti-mistouch operator includes a housing 1 and a cover plate 2 supported in the housing 1.
  • the housing 1 is provided with a circuit board 3, and the circuit board 3 contains an actuator for detecting actuation signals.
  • the main control unit, a first switch that generates a first actuation signal is provided between the main control unit and the bottom wall of the housing 1, and a second switch that generates a second actuation signal is provided between the main control unit and the cover plate 2. Actuating the first switch and the second switch enables the main control unit to issue an actuation command when the first actuation signal and the second actuation signal are detected at the same time.
  • the first switch is added on the back of the manipulator to actuate any switch individually.
  • the main control unit detects an actuation signal, it does not The activation command will be issued. Only when the front and back switches are activated at the same time, the main control unit will issue the activation command when the two activation signals from the front and back are detected at the same time.
  • a switch is located on the back of the manipulator and is generally difficult to touch. Therefore, it is difficult to actuate the two switches at the above positions at the same time.
  • the first switch and the second switch in this embodiment are both capacitive sensing touch A switch
  • the inner side wall of the bottom wall of the housing 1 is provided with a first touch sensing area 4
  • the first switch includes a first capacitive touch sensing element provided in the first touch sensing area 4
  • the first touch sensing area is provided on the outer side wall of the bottom wall of the housing 1.
  • the corresponding position of the capacitive touch sensing element is provided with a groove touch portion 11; the inner side wall of the cover plate 2 is provided with a second touch sensing area 5, and the second switch includes a second capacitive touch set in the second touch sensing area 5
  • a switch mark 21 is provided at a position corresponding to the second capacitive touch sensing element on the outer side wall of the cover plate 2.
  • the finger, the bottom wall of the housing 1 and the first capacitive touch sensing element form the first capacitor
  • the finger, the cover plate 2 and the second capacitive touch sensing element form the second capacitor.
  • the first capacitor and the second capacitor can be used accurately and accurately.
  • the effective touch of the finger is detected, and a current actuation signal is generated and sent to the main control unit, which ensures the sensitivity, stability and reliability of the switch.
  • the first capacitive touch sensor and the second capacitive touch sensor are located inside the manipulator , Waterproof, strong anti-interference, little influence from the external environment, and the operator can be completely sealed, improve the overall appearance of the operator, and the capacitive sensor touch switch has no loss, no life limit, long use time, and saving Maintenance and replacement costs; as shown in Figure 1, the second switch is set on the front, which is easy for human eyes to recognize. Therefore, the switch mark 21 is set to determine the touch position by vision. As shown in Figure 3, the first switch is set on the back, which is not easy for human eyes. Therefore, the groove touch part 11 is provided, and the touch position is determined by the tactile sense. Through the switch mark 21 and the groove touch part 11, the finger can touch the second capacitive touch sensing element and the corresponding first capacitive touch sensing element faster and more accurately. Position, turn on the second switch and the first switch to save operating time and improve operating accuracy.
  • the difference between this embodiment and the first embodiment is that the first switch is the first electromechanical switch 6 provided on the back of the circuit board 3, and the second switch is the first electromechanical switch 6 provided on the front of the circuit board 3. 2.
  • the movable element 8 of the first switch such as a button, a lever, etc.
  • the finger presses the key to turn on the circuit turns on the switch, and generates an actuation signal
  • releases the key to disconnect the circuit closes the switch, and the actuation signal disappears.
  • a switch It is a toggle switch.
  • the first switch and the second switch can be a combination of a capacitive inductive touch switch and an electromechanical switch.
  • the first switch is a capacitive inductive touch switch
  • the second switch is an electromechanical switch
  • the first switch is an electromechanical switch
  • the second switch is a capacitive sensor touch switch.
  • multiple switch units composed of the above-mentioned first switch and second switch can be integrated into one manipulator to control different movements of the furniture, such as rising and falling at different speeds or adjusting different tilt angles, etc., by using Corresponding markings on the surface of the cover 2 are designed to distinguish and operate.
  • the second switch can be a plurality of switches arranged on the front of the operator, and the plurality of switches share the first switch, and different movements of the furniture can be controlled by the cooperation of different switches in the second switch with the first switch. It is distinguished and operated by means of corresponding marking design on the surface of the cover plate 2.

Landscapes

  • Switch Cases, Indication, And Locking (AREA)
  • Switches That Are Operated By Magnetic Or Electric Fields (AREA)

Abstract

一种防误触操作器,属于操作器领域。防误触操作器,包括外壳(1)和支撑在外壳(1)中的盖板(2),外壳(1)中设有线路板(3),线路板(3)上包含检测致动信号的主控单元,主控单元与外壳(1)底壁之间设有生成第一致动信号的第一开关,主控单元与盖板(2)之间设有生成第二致动信号的第二开关,同时致动第一开关和第二开关使主控单元同时检测到第一致动信号和第二致动信号时发出致动命令,操作器采用上述设置,同时误碰到两个开关的概率极低,有效减少了操作器的误触率,从而降低了家具调节过程中的安全隐患,提高了操作安全性。

Description

一种防误触操作器 【技术领域】
实用新型涉及操作器领域,具体涉及一种防误触操作器。
【背景技术】
电动可调节家具,如电动升降桌、电动榻榻米、电动沙发、电动床、按摩椅、按摩床等电动升降机构,可以根据用户不同的使用需求进行高度或倾斜角度的调整,使之达到最舒适的状态,因此越来越多地被应用到办公室、学校、家庭、医院等场所中,传统的电动可调节家具的操作装置中,按键即为控制开关,只需按单独的操作键即可执行相应的操作,日常使用中很方便,但很容易被误碰,既耗电又容易导致设备和物品的损坏,特别在近年来,随着技术和工艺的不断提升,节省了操作时间,更好的满足年轻消费者的快节奏生活,电动可调节家具的调节速度也大幅度提升,速度提升的背后存在相应的安全隐患问题,一旦出现误操作,很可能会造成物品损坏或人体伤害,特别不懂得操作规则的儿童,好奇心较重,会随意操作,但自我保护意识又较差,极易因反应不及时造成人身伤害。
【发明内容】
实用新型所要解决的技术问题在于克服现有技术中的不足,设计一种安全性高的防误触操作器。
解决上述技术问题,实用新型采用如下技术方案:
一种防误触操作器,包括外壳和支撑在外壳中的盖板,所述外壳中设有线路板,所述线路板上包含检测致动信号的主控单元,所述主控单元与外壳底壁之间设有生成第一致动信号的第一开关,所述主控单元与盖板之间设有生成第二致动信号的第二开关,同时致动第一开关和第二开关使主控单元同时检测到第一致动信号和第二致动信号时发出致动命令。
作为优选,所述第一开关为第一电容式感应触摸开关。
作为优选,所述外壳底壁的内侧壁上设有第一触摸感应区,所述第一开关包括设在第一触摸感应区内的第一电容触摸感应件。
作为优选,所述外壳底壁的外侧壁上第一电容触摸感应件对应的位置处设 有凹槽触摸部。
作为优选,所述第一开关为机电开关,所述机电开关的可动件设在外壳底壁上。
作为优选,所述第二开关为第二电容式感应触摸开关。
作为优选,所述盖板的内侧壁上设有第二触摸感应区,所述第二开关包括设在第二触摸感应区内的第二电容触摸感应件。
作为优选,所述盖板的外侧壁上第二电容触摸感应件对应的位置处设有开关标记。
作为优选,所述第二开关为机电开关,所述机电开关的可动件设在盖板上。
采用实用新型的有益效果:
1、本方案中的操作器,在传统操作器正面设置第二开关的基础上,在操作器的背面增设了第一开关,单独致动任一开关,主控单元检测到一个致动信号时,不会发出致动命令,只有同时致动正面和背面的开关,主控单元同时检测到来自正面和背面的两个致动信号时才会发出致动命令,且新增设的防误触的第一开关位于操作器的背面,一般很难碰到,因此同时致动上述位置的两个开关具有一定难度,若非刻意操作,同时误碰到两个开关的概率极低,有效减少了操作器的误触率,从而降低了家具调节过程中的安全隐患,提高了操作安全性,且此误操作过程。
2、本方案中不改变操作器外形的情况下,仅在原操作器基础上在背面增设一个开关,即可实现防误触功能,成本较低,结构简单,需要调节时的操作步骤也不复杂,实施起来较为便捷,实用性强。
实用新型的这些特点和优点将会在下面的具体实施方式、附图中详细的揭露。
【附图说明】
下面结合附图对实用新型做进一步的说明:
图1为实用新型实施例一中操作器的立体结构示意图。
图2为实用新型实施例一中操作器的剖视图。
图3为实用新型实施例一中操作器另一视角的立体结构示意图。
图4为实用新型实施例二中操作器的立体结构示意图。
图5为实用新型实施例二中操作器的剖视图。
【具体实施方式】
下面结合实用新型实施例的附图对实用新型实施例的技术方案进行解释和说明,但下述实施例仅为实用新型的优选实施例,并非全部。基于实施方式中的实施例,本领域技术人员在没有做出创造性劳动的前提下所获得其他实施例,都属于实用新型的保护范围。
在下文描述中,出现诸如术语“内”、“外”、“上”、“下”、“左”、“右”等指示方位或者位置关系的,仅是为了方便描述实施例和简化描述,而不是指示或暗示所指的装置或者元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对实用新型的限制。
实施例一:
如图1至图5所示,一种防误触操作器,包括外壳1和支撑在外壳1中的盖板2,外壳1中设有线路板3,线路板3上包含检测致动信号的主控单元,主控单元与外壳1底壁之间设有生成第一致动信号的第一开关,主控单元与盖板2之间设有生成第二致动信号的第二开关,同时致动第一开关和第二开关使主控单元同时检测到第一致动信号和第二致动信号时发出致动命令。
本方案中的操作器,在传统操作器正面设置第二开关的基础上,在操作器的背面增设了第一开关,单独致动任一开关,主控单元检测到一个致动信号时,不会发出致动命令,只有同时致动正面和背面的开关,主控单元同时检测到来自正面和背面的两个致动信号时才会发出致动命令,且新增设的防误触的第一开关位于操作器的背面,一般很难碰到,因此同时致动上述位置的两个开关具有一定难度,若非刻意操作,同时误碰到两个开关的概率极低,有效减少了操作器的误触率,从而降低了家具调节过程中的安全隐患,提高了操作安全性,且此误操作过程。同时不改变操作器外形的情况下,仅在原操作器基础上在背面增设一个开关,即可实现防误触功能,成本较低,结构简单,需要调节时的操作步骤也不复杂,实施起来较为便捷,实用性强。
经常需要通过触碰开关对家具进行调节,为了延长开关的使用寿命,同时保持操作器整体的美观,如图2所示,本实施例中的第一开关和第二开关均为电容式感应触摸开关,外壳1底壁的内侧壁上设有第一触摸感应区4,第一开关包括设在第一触摸感应区4内的第一电容触摸感应件,外壳1底壁的外侧壁上第一电容触摸感应件对应的位置处设有凹槽触摸部11;盖板2的内侧壁上设有第二触摸感应区5,第二开关包括设在第二触摸感应区5内的第二电容触摸感应件,盖板2的外侧壁上第二电容触摸感应件对应的位置处设有开关标记21。
触摸时,手指、外壳1底壁和第一电容触摸感应件组成第一电容器,手指、盖板2和第二电容触摸感应件组成第二电容器,通过第一电容器和第二电容器可以准确无误地侦测到手指的有效触摸,并产生电流致动信号传送至主控单元,保证了开关的灵敏度、稳定性和可靠性,第一电容触摸感应件和第二电容触摸感应件设在操作器内部,防水、抗干扰性强,受外界环境影响小,并使操作器可以做到完全密封,提高操作器的整体外观档次,且电容式感应触摸开关无损耗,无寿命限制,使用时间长,节省维修和更换费用;如图1所示,第二开关设置在正面,人眼容易辨识,因此设置开关标记21通过视觉确定触摸位置,如图3所示,第一开关设置在背面,人眼不易辨识,因此设置凹槽触摸部11,触觉确定触摸位置,通过开关标记21和凹槽触摸部11,使手指更快更准确的触摸到第二电容触摸感应件和第一电容触摸感应件对应的位置,打开第二开关和第一开关,节省操作时间,提高操作精准度。
实施例二:
如图4和图5所示,本实施例与第一实施例的区别在于,第一开关为设在线路板3背面的第一机电开关6,第二开关为设在线路板3正面的第二机电开关7,如按键开关、拨动开关等,第一开关的可动件8,如按键、拨杆等设在外壳1底壁,第二开关的可动件9设在盖板2上,如第一开关或第二开关为按键开关,则手指按下按键接通电路,打开开关,生成致动信号,松开按键断开电路,关闭开关,致动信号消失,同理,如开关为拨动开关,则拨杆拨至一端时,接通电路,打开开关,拨杆拨至另一端时,断开电路,关闭开关,机电开关常见易得,价格便宜,降低了操作器整体造价。
可以理解的是,第一开关和第二开关可以为电容式感应触摸开关和机电开关的组合,如第一开关为电容式感应触摸开关,第二开关为机电开关,或第一开关为机电开关,第二开关为电容式感应触摸开关。
可以理解是,一个操作器中可以集成多个由上述第一开关和第二开关组成的开关单元,从而控制家具的不同运动,如不同速度的上升、下降或调整不同倾斜角度等等,通过借助于盖板2表面的相应标记设计来区分和操作。
可以理解是,第二开关可以为设在操作器正面的多个开关,此多个开关共用第一开关,通过第二开关中的不同开关与第一开关的配合,来控制家具的不同运动,通过借助于盖板2表面的相应标记设计来区分和操作。
以上所述,仅为实用新型的具体实施方式,但实用新型的保护范围并不局限于此,熟悉该本领域的技术人员应该明白实用新型包括但不限于附图和上面具体实施方式中描述的内容。任何不偏离实用新型的功能和结构原理的修改都将包括在权利要求书的范围中。

Claims (9)

  1. 一种防误触操作器,包括外壳和支撑在外壳中的盖板,其特征在于,所述外壳中设有线路板,所述线路板上包含检测致动信号的主控单元,所述主控单元与外壳底壁之间设有生成第一致动信号的第一开关,所述主控单元与盖板之间设有生成第二致动信号的第二开关,同时致动第一开关和第二开关使主控单元同时检测到第一致动信号和第二致动信号时发出致动命令。
  2. 根据权利要求1所述的防误触操作器,其特征在于,所述第一开关为第一电容式感应触摸开关。
  3. 根据权利要求2所述的防误触操作器,其特征在于,所述外壳底壁的内侧壁上设有第一触摸感应区,所述第一开关包括设在第一触摸感应区内的第一电容触摸感应件。
  4. 根据权利要求3所述的防误触操作器,其特征在于,所述外壳底壁的外侧壁上第一电容触摸感应件对应的位置处设有凹槽触摸部。
  5. 根据权利要求1所述的防误触操作器,其特征在于,所述第一开关为第一机电开关,所述第一机电开关的可动件设在外壳底壁上。
  6. 根据权利要求1所述的防误触操作器,其特征在于,所述第二开关为第二电容式感应触摸开关。
  7. 根据权利要求2所述的防误触操作器,其特征在于,所述盖板的内侧壁上设有第二触摸感应区,所述第二开关包括设在第二触摸感应区内的第二电容触摸感应件。
  8. 根据权利要求7所述的防误触操作器,其特征在于,所述盖板的外侧壁上第二电容触摸感应件对应的位置处设有开关标记。
  9. 根据权利要求1所述的防误触操作器,其特征在于,所述第二开关为第二机电开关,所述第二机电开关的可动件设在盖板上。
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