LIQUID TANK AND BASE STATION
    61.
    发明公开

    公开(公告)号:US20230148823A1

    公开(公告)日:2023-05-18

    申请号:US17898842

    申请日:2022-08-30

    CPC classification number: A47L11/4091 B08B3/041 A47L2201/028

    Abstract: A liquid tank for a base station includes a first liquid storage structure and a second liquid storage structure. The second liquid storage structure is positioned in the first liquid storage structure. The second liquid storage structure is flexible and variable in volume. A space is defined between a structural wall of the first liquid storage structure and a structural wall of the second liquid storage structure and is configured to store liquid. The first liquid storage structure includes an anti-sticking structure. The anti-sticking structure is positioned on a bottom surface of the first liquid storage structure facing the second liquid storage structure.

    Removing debris from cleaning robots
    63.
    发明授权
    Removing debris from cleaning robots 有权
    从清洁机器人中清除碎屑

    公开(公告)号:US09492048B2

    公开(公告)日:2016-11-15

    申请号:US14140099

    申请日:2013-12-24

    Abstract: A cleaning robot system including a robot and a robot maintenance station. The robot includes a robot body, a drive system, a cleaning assembly, and a cleaning bin carried by the robot body and configured to receive debris agitated by the cleaning assembly. The robot maintenance station includes a station housing configured to receive the robot for maintenance. The station housing has an evacuation passageway exposed to a top portion of the received robot. The robot maintenance station also includes an air mover in pneumatic communication with the evacuation passageway and a collection bin carried by the station housing and in pneumatic communication with the evacuation passageway. The station housing and the robot body fluidly connect the evacuation passageway to the cleaning bin of the received robot. The air mover evacuates debris held in the robot cleaning bin to the collection bin through the evacuation passageway.

    Abstract translation: 一种包括机器人和机器人维护站的清洁机器人系统。 机器人包括机器人主体,驱动系统,清洁组件和由机器人主体承载并构造成接收由​​清洁组件搅动的碎屑的清洁仓。 机器人维护站包括被配置为接收机器人进行维护的站外壳。 车站外壳具有暴露于所接收的机器人的顶部的抽空通道。 机器人维护站还包括与排气通道气动连通的送风机和由车站外壳携带并与抽空通道气动连通的收集箱。 车站外壳和机器人体将排气通道流体地连接到接收的机器人的清洁箱。 空气推进器通过疏散通道将机器人清洁箱中保持的碎屑抽空到收集箱。

    ROBOT CLEANER HAVING DUST SENSING UNIT
    64.
    发明申请
    ROBOT CLEANER HAVING DUST SENSING UNIT 审中-公开
    机器清洁器具有传感器

    公开(公告)号:US20160029865A1

    公开(公告)日:2016-02-04

    申请号:US14885357

    申请日:2015-10-16

    Abstract: A robot cleaner includes a body; a driving unit; at least one sensor configured to detect an obstacle; a cleaning unit, the cleaning unit including a brush unit and a fan unit; a dust box to store dust inside of the dust box, the dust box being detachably mounted to the body; and a dust sensing unit including a light emitting unit to transmit light and a light receiving sensor to sense the light transmitted by the light emitting unit, the light emitting unit and the light receiving sensor being fixed on the body and outside of the dust box, and the light emitting unit being configured to transmit light through the inside of the dust box. The driving unit, the at least one sensor, the cleaning unit, the dust box, and the dust sensing unit are positioned on or in the body of the robot cleaner.

    Abstract translation: 机器人清洁器包括一个主体; 一个驱动单元; 至少一个传感器,被配置为检测障碍物; 清洁单元,所述清洁单元包括刷单元和风扇单元; 一个集尘盒,用于存放灰尘箱内的灰尘,该集尘盒可拆卸地安装在本体上; 以及尘埃检测单元,其包括用于透射光的发光单元和用于感测由发光单元透射的光的光接收传感器,所述发光单元和所述光接收传感器被固定在所述主体和所述集尘盒的外部, 并且所述发光单元被配置为透过所述集尘盒的内部的光。 驱动单元,至少一个传感器,清洁单元,集尘箱和灰尘感测单元位于机器人清洁器的主体上或其中。

    Robotic Vacuum Cleaning System
    66.
    发明申请
    Robotic Vacuum Cleaning System 有权
    机器人真空清洁系统

    公开(公告)号:US20150107037A1

    公开(公告)日:2015-04-23

    申请号:US14588077

    申请日:2014-12-31

    Abstract: An autonomous coverage robot includes a cleaning assembly having forward roller and rearward rollers counter-rotating with respect to each other. The rollers are arranged to substantially maintain a cross sectional area between the two rollers yet permitting collapsing therebetween as large debris is passed. Each roller includes a resilient elastomer outer tube and a partially air-occupied inner resilient core configured to bias the outer tube to rebound. The core includes a hub and resilient spokes extending between the inner surface of the outer tube and the hub. The spokes suspend the outer tube to float about the hub and transfer torque from the hub to the outer tube while allowing the outer tube to momentarily deform or move offset from the hub during impact with debris larger than the cross sectional area between the two rollers.

    Abstract translation: 自动覆盖机器人包括具有相对于彼此反向旋转的前滚筒和后滚筒的清洁组件。 辊被布置成基本上保持两个辊之间的横截面积,但是当大的碎屑通过时,辊允许它们之间的折叠。 每个辊包括弹性弹性体外管和被配置为偏置外管以回弹的部分空气的内部弹性芯。 芯部包括在外管的内表面和毂之间延伸的毂和弹性辐条。 辐条悬挂外管以围绕毂浮动并将扭矩从轮毂传递到外管,同时允许外管在碰撞期间瞬间变形或移动偏离轮毂,碎屑大于两个辊之间的横截面积。

    Robotic vacuum
    67.
    发明授权
    Robotic vacuum 有权
    机器人真空

    公开(公告)号:US08881339B2

    公开(公告)日:2014-11-11

    申请号:US13460261

    申请日:2012-04-30

    Abstract: An autonomous coverage robot includes a chassis having forward and rearward portions. A drive system is mounted to the chassis and configured to maneuver the robot over a cleaning surface. A cleaning assembly is mounted on the forward portion of the chassis and has two counter-rotating rollers mounted therein for retrieving debris from the cleaning surface, the longitudinal axis of the forward roller lying in a first horizontal plane positioned above a second horizontal plane on which the longitudinal axis of the rearward roller lies. The cleaning assembly is movably mounted to the chassis by a linkage affixed at a forward end to the chassis and at a rearward end to the cleaning assembly. When the robot transitions from a firm surface to a compressible surface, the linkage lifts the cleaning assembly from the cleaning surface.

    Abstract translation: 自动覆盖机器人包括具有前部和后部的底盘。 驱动系统安装在底盘上,并配置为使机器人在清洁表面上操纵。 清洁组件安装在底盘的前部上并且具有安装在其中的两个反转辊,用于从清洁表面回收碎屑,前辊的纵向轴线位于第一水平面上方,第一水平面位于第二水平面上方, 后辊的纵轴位于。 清洁组件通过连接件固定在底盘上的连杆机构的可移动地安装到底架上并且在后端附接到清洁组件。 当机器人从牢固的表面转移到可压缩表面时,联动装置将清洁组件从清洁表面上提升。

    REMOVING DEBRIS FROM CLEANING ROBOTS
    68.
    发明申请
    REMOVING DEBRIS FROM CLEANING ROBOTS 有权
    从清洁机器人去除车辆

    公开(公告)号:US20140109339A1

    公开(公告)日:2014-04-24

    申请号:US14140099

    申请日:2013-12-24

    Abstract: A cleaning robot system including a robot and a robot maintenance station. The robot includes a robot body, a drive system, a cleaning assembly, and a cleaning bin carried by the robot body and configured to receive debris agitated by the cleaning assembly. The robot maintenance station includes a station housing configured to receive the robot for maintenance. The station housing has an evacuation passageway exposed to a top portion of the received robot. The robot maintenance station also includes an air mover in pneumatic communication with the evacuation passageway and a collection bin carried by the station housing and in pneumatic communication with the evacuation passageway. The station housing and the robot body fluidly connect the evacuation passageway to the cleaning bin of the received robot. The air mover evacuates debris held in the robot cleaning bin to the collection bin through the evacuation passageway.

    Abstract translation: 一种包括机器人和机器人维护站的清洁机器人系统。 机器人包括机器人主体,驱动系统,清洁组件和由机器人主体承载并构造成接收由​​清洁组件搅动的碎屑的清洁仓。 机器人维护站包括被配置为接收机器人进行维护的站外壳。 车站外壳具有暴露于所接收的机器人的顶部的抽空通道。 机器人维护站还包括与排气通道气动连通的送风机和由车站外壳携带并与抽空通道气动连通的收集箱。 车站外壳和机器人体将排气通道流体地连接到接收的机器人的清洁箱。 空气推进器通过疏散通道将机器人清洁箱中保持的碎屑抽空到收集箱。

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