会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 11. 发明授权
    • Mobile robot and controlling method thereof
    • 移动机器人及其控制方法
    • US08489234B2
    • 2013-07-16
    • US12669208
    • 2008-07-16
    • Ho-Seon RewDong-Hoon YiYoung-Gie KimYoung-Gyu JungMoon-Kee ChungJong-Il ParkWoo-Jin Choi
    • Ho-Seon RewDong-Hoon YiYoung-Gie KimYoung-Gyu JungMoon-Kee ChungJong-Il ParkWoo-Jin Choi
    • G06F19/00
    • A47L9/009A47L2201/04G05D1/0255G05D2201/0215
    • Disclosed are a mobile robot and a controlling method thereof. The mobile robot comprises: a case; and a sensor unit having two or more sending portions and two or more receiving portions arranged on an outer surface of the case separately and alternately. The plurality of sending portions and receiving portions are arranged in an alternating manner, thereby having a directivity. Also, since signals received through the receiving portions are judged based on a reference value, an area unallowable to be detected for an obstacle sensing is minimized, which allows an obstacle to be detected more accurately. When the obstacle corresponds to a side wall on the basis of a moving path of the mobile robot, a distance between the side wall and the mobile robot is calculated based on signals received by the receiving portion closest to the side wall. Accordingly, the mobile robot can move with maintaining a constant distance from the side wall.
    • 公开了一种移动机器人及其控制方法。 移动机器人包括:壳体; 以及传感器单元,其具有两个或更多个发送部分和两个或更多个接收部分,分别和交替地布置在壳体的外表面上。 多个发送部分和接收部分以交替的方式布置,从而具有方向性。 此外,由于基于参考值判断通过接收部分接收到的信号,所以不容易被检测用于障碍物感测的区域被最小化,这允许更准确地检测障碍物。 当障碍物基于移动机器人的移动路径对应于侧壁时,基于最靠近侧壁的接收部分接收的信号来计算侧壁和移动机器人之间的距离。 因此,移动机器人可以在与侧壁保持恒定距离的情况下移动。
    • 15. 发明授权
    • Blower apparatus
    • 鼓风机
    • US06677564B1
    • 2004-01-13
    • US10320484
    • 2002-12-17
    • Sang-Bum SohnWan-Ho JeonHo-Seon RewSeung-Bae Song
    • Sang-Bum SohnWan-Ho JeonHo-Seon RewSeung-Bae Song
    • H05B680
    • F04D29/422F04D25/166H05B6/6423Y10T29/49329
    • A blower apparatus which is used inside an Over-The-Range (OTR) microwave oven and the like, includes a centrifugal fan, a bracket which is fixed and combined with a side of the driving unit and a fan housing having a suction port which rotably accommodates the centrifugal fan, is fixed and combined with the bracket, and is formed in the shaft direction of the centrifugal fan, for sucking gas by rotation of the centrifugal fan, and a discharge port for discharging gas which is sucked through the suction port, being formed vertically to the suction port. The edge of the discharge port is formed in a convex shape in the shaft direction by the first inclined surface of a protrusion portion which is protruded in the shaft direction from the bracket and second inclined surface formed in the fan housing, and an inflection point is formed at the contact point of the first inclined surface and second inclined surface.
    • 在超范围(OTR)微波炉等内部使用的鼓风机装置包括离心式风扇,与驱动单元的一侧固定并组合的支架,以及具有吸入口的风扇壳体, 可旋转地容纳离心式风扇,与支架固定并组合,并形成在离心风扇的轴向上,用于通过离心风扇的旋转吸入气体,以及用于排出吸入口的排出口 垂直于吸入口形成。 排出口的边缘通过突出部分的第一倾斜表面沿轴向形成为凸起,该突出部分沿轴向从支架突出并形成在风扇壳体中的第二倾斜面,拐点为 形成在第一倾斜表面和第二倾斜表面的接触点处。
    • 17. 发明申请
    • Air purifying robot and operation method thereof
    • 空气净化机器人及其运行方法
    • US20060059872A1
    • 2006-03-23
    • US11078424
    • 2005-03-14
    • Seong-Bin LeeHo-Seon Rew
    • Seong-Bin LeeHo-Seon Rew
    • B01D46/00
    • B01D46/10B01D46/46B01D2259/4558F24F3/1603F24F11/30F24F11/56F24F2110/50F24F2221/42
    • An air purifying robot and its operation method capable of purifying air using a mobile robot are disclosed. To this end, an air purifying robot comprises: a main body casing having a certain space therein, and provided with a suction hole for sucking ambient air and a discharge hole for discharging the purified air; a fan motor installed in the main body casing, and rotating so as to suck the ambient air of the main body casing through the suction hole; a dust collecting filter for filtering pollutants contained in the ambient air having been sucked through the suction hole; main wheels installed at a lower surface of the main body casing at a certain interval therebetween, and driven by the motor; an auxiliary wheel installed so as to maintain a horizontal state of the main casing, and moving the air purifying robot together with the main wheels; and a control unit for controlling the fan motor, the dust collecting filter and the main wheels.
    • 公开了一种能够使用移动机器人净化空气的空气净化机器人及其操作方法。 为此,空气净化机器人包括:具有一定空间的主体壳体,并且设置有用于吸入环境空气的吸入孔和用于排出净化空气的排出孔; 风扇马达,其安装在所述主体壳体中,并且旋转以便通过所述吸入孔吸附所述主体壳体的周围空气; 用于过滤已经通过吸入孔吸入的环境空气中所含的污染物的集尘过滤器; 主轮在主体壳体的下表面以一定间隔安装在其中,并由电动机驱动; 辅助轮安装成保持主壳体的水平状态,并且使空气净化机器人与主轮一起移动; 以及用于控制风扇电动机,集尘过滤器和主轮的控制单元。
    • 18. 发明申请
    • Suction valve and reciprocating compressor having the same
    • 吸入阀和往复式压缩机具有相同的功能
    • US20050129548A1
    • 2005-06-16
    • US10912178
    • 2004-08-06
    • Jong-Hoon KimHo-Seon RewJeong-Ho Lee
    • Jong-Hoon KimHo-Seon RewJeong-Ho Lee
    • F04B39/10F04B53/10
    • F04B39/1073
    • Disclosed is a reciprocating compressor comprising: a motor part mounted inside a hermetic container for generating a rotational driving force; and a compression part for sucking a refrigerant into a cylinder and discharging the refrigerant through a suction channel and a discharge channel of a head accordingly as a piston is linearly reciprocated in the cylinder by the rotational driving force of the motor part, in the reciprocating compressor, a suction valve seat is included, the suction valve seat composed of: an open/close portion fixed between the cylinder and the head of the compression part and opposite to the suction channel for opening and closing the suction channel; and an elastic portion formed as a curved line at the periphery of the open/close portion for elastically supporting the open/close portion.
    • 公开了一种往复式压缩机,包括:安装在密封容器内部以产生旋转驱动力的马达部件; 以及用于将制冷剂吸入气缸并且通过吸入通道排出制冷剂的压缩部件,并且作为活塞的喷头的排出通道由于电动机部件的旋转驱动力而在气缸中线性地往复运动,在往复式压缩机 包括吸入阀座,所述吸入阀座由以下部件组成:打开/关闭部分,其固定在所述气缸和所述压缩部件的头部之间并且与用于打开和关闭所述吸入通道的吸入通道相对; 以及在打开/关闭部分的周边处形成为曲线的弹性部分,用于弹性地支撑打开/关闭部分。