自動駆動される掃除機
    433.
    发明专利
    自動駆動される掃除機 审中-公开
    自动驱动清洁装置

    公开(公告)号:JP2015217303A

    公开(公告)日:2015-12-07

    申请号:JP2015095087

    申请日:2015-05-07

    Abstract: 【課題】面の掃除又は処理のための装置並びにこの装置を操作する方法を提供する。 【解決手段】装置は、面(2)を光で照射するための光源(3)と、面(2)により反射された光を検知するための光検知ユニット(4)とを有する。従来技術よりも種々の面をより高い解像度で区別する、課題とする面を掃除又は処理する装置並びに方法を実現するために、光検知ユニット(4)が少なくとも1つのフィルタ要素(5)と、少なくとも1つのセンサ要素(6)を具備し、それらは面(2)から反射された光を少なくとも4つの異なるスペクトル範囲について検知するために配置されかつ設計されている。 【選択図】図3

    Abstract translation: 要解决的问题:提供一种用于清洁或处理表面的装置和操作该装置的方法。解决方案:一种用于清洁或处理表面的装置,包括用于用光照射表面(2)的光源(3) 以及用于检测由所述表面(2)反射的光的光学检测单元(4)。 为了创建用于清洁或处理表面的装置和所讨论类型的方法,其以比现有技术更好的分辨率区分各种表面,提出了光学检测单元(4)具有至少一个滤光器 元件(5)和至少一个传感器元件(6),其布置和设计成相对于至少四个不同的光谱范围来检测从表面(2)反射的光。

    自走式掃除機
    436.
    发明专利
    自走式掃除機 审中-公开
    自吸式真空清洁器

    公开(公告)号:JP2014236838A

    公开(公告)日:2014-12-18

    申请号:JP2013120632

    申请日:2013-06-07

    Inventor: SOEJIMA RYOICHI

    Abstract: 【課題】床面の状態によらず、塵埃の取り残しが少なく且つ掃除の効率を向上させた自走式掃除機を提供する。【解決手段】筐体を走行させる走行手段と、床面の塵埃を筐体内部に吸引するための気流を発生させる送風手段と、気流に含まれる塵埃を検知する塵埃検知手段と、塵埃検知手段の検出結果に応じて、掃除モードを切り替えるように走行手段及び/又は送風手段を制御する制御手段とを備え、制御手段は、掃除モードを切り替える閾値を変更することが可能である【選択図】図6

    Abstract translation: 要解决的问题:提供一种自推进式真空吸尘器,其不考虑地板表面的状况,减少未被吸收的灰尘并提高清洁效率。解决方案:真空吸尘器包括:用于使壳体行进的行进装置; 用于产生用于将地板表面上的灰尘吸入壳体内部的气流的吹风装置; 用于检测包括在空气流中的灰尘的灰尘检测装置; 以及控制装置,用于根据灰尘检测装置的检测结果控制行进装置和/或吹风装置切换清洁模式。 控制装置能够改变用于切换清洁模式的阈值。

    Automatically traveling floor cleaner, and operation method for the same
    437.
    发明专利
    Automatically traveling floor cleaner, and operation method for the same 有权
    自动行驶地板清洗机及其操作方法

    公开(公告)号:JP2014061375A

    公开(公告)日:2014-04-10

    申请号:JP2013193801

    申请日:2013-09-19

    Inventor: HARALD WINDORFER

    Abstract: PROBLEM TO BE SOLVED: To provide an automatically traveling floor cleaner, and to provide an operation method for the same.SOLUTION: A floor cleaner can overcome an obstacle by traveling in a traveling direction at right angles or acute angles to the longitudinal direction of the obstacle which typically has a low rising obstacle surface with a height like that of a carpet rim. Furthermore, the floor cleaner (1) includes means for obstacle detection. In order to improve the floor cleaner and the operation method, the floor cleaner (1) executes traveling procedures for cleaning the obstacle or an area near the same, and the floor cleaner (1) takes in the relation to the obstacle surface, a traveling direction (R or V) along the longitudinal direction of the obstacle. In the traveling procedures, the boundary edge of the floor cleaner along the traveling direction performs traveling on a floor area in front of the obstacle with a horizontal direction distance from the obstacle surface. The distance is shorter than a distance (b) corresponding to the width of the floor cleaner (1) in a direction perpendicular to the traveling direction.

    Abstract translation: 要解决的问题:提供一种自动行驶的地板清洁剂,并提供一种自动行驶的地板清洁剂,并提供一种操作方法。解决方案:一种地板清洁剂可以通过沿行进方向行进而与其纵向方向成直角或锐角 障碍物通常具有低的上升障碍物表面,其高度类似于地毯边缘的高度。 此外,地板清洁器(1)包括用于障碍物检测的装置。 为了改善地板清洁剂和操作方法,地板清洁器(1)执行用于清洁障碍物或其附近区域的行驶程序,并且地板清洁器(1)与障碍物表面相关联,行驶 方向(R或V)沿着障碍物的纵向方向。 在行驶过程中,沿着行驶方向的地板清洁器的边界沿距离障碍物表面的水平方向距离在障碍物前方的地板区域上行驶。 该距离比与地板清洁器(1)在与行进方向垂直的方向上的宽度相应的距离(b)短。

    Vacuum cleaner
    438.
    发明专利

    公开(公告)号:JP5321869B2

    公开(公告)日:2013-10-23

    申请号:JP2012531170

    申请日:2012-03-28

    Inventor: 友和 吉岡

    Abstract: This electric vacuum cleaner has a vacuum cleaner main unit housing an electrically powered fan (18). The electric vacuum cleaner has an air trunk in communication with the suction side of the electrically powered fan (18). The electric vacuum cleaner is movable upon a surface to be cleaned, and has a floor brush (23) dividing a portion of the air trunk. The electric vacuum cleaner has an optical sensor (53) which detects the amount of dirt and dust passing within the air trunk as a result of operation of the electrically powered fan (18). The electric vacuum cleaner has a cleaning efficiency calculation unit (59) for calculating cleaning efficiency on the basis of the accumulated amount of the amount of dirt and dust which has been detected by the optical sensor (53), the amount of movement upon the surface to be cleaned of the floor brush (23), and the amount of time of the movement upon the surface to be cleaned of the floor brush (23). The electric vacuum cleaner has a display means (20) capable of displaying the cleaning efficiency which has been calculated by the cleaning efficiency calculation unit (59).

    Self-propelled electronic device
    439.
    发明专利
    Self-propelled electronic device 审中-公开
    自激式电子设备

    公开(公告)号:JP2013146302A

    公开(公告)日:2013-08-01

    申请号:JP2012007398

    申请日:2012-01-17

    Inventor: NOIRI JUNICHI

    Abstract: PROBLEM TO BE SOLVED: To reduce time to return a self-propelled vacuum cleaner having a rechargeable battery to a charging stand by quickly detecting a direction where the charging stand is present in a case such as where the self-propelled vacuum cleaner needs to be charged.SOLUTION: A self-propelled electronic device is configured to receive power supply from a charging stand placed at a predetermined position and to automatically travel to positions away from the charging stand. The self-propelled electronic device includes: a travel control part that controls the rotation of wheels and automatically moves the device; a rechargeable battery that supplies power, used for performing travel control, during the automatic travel; a charging stand searching part that searches the position of the charging stand; and a control part. When the control part determines that the electronic device needs to return to the charging stand, the control part executes return processing in which the electronic device is rotated in a static state after being put into the static state by the travel control part, and then, moved in a direction, where the charging stand is present, when the charging stand searching part searches the direction, where the charging stand is present, and detects the direction of the charging stand.

    Abstract translation: 要解决的问题:为了缩短将具有可再充电电池的自推进真空吸尘器返回到充电座的时间,通过快速检测充电架存在于诸如自推式真空吸尘器需要的情况下的方向 自动推进电子设备被配置为从放置在预定位置的充电座接收电力供给,并且自动地行进到远离充电座的位置。 自行式电子装置包括:行驶控制部,其控制车轮的旋转并自动移动所述装置; 在自动行驶期间提供动力用于执行行驶控制的可充电电池; 充电台搜索部分,其搜索充电台的位置; 和控制部分。 当控制部分确定电子设备需要返回到充电台时,控制部分执行返回处理,其中电子设备在由行驶控制部分进入静态之后以静止状态旋转,然后, 当充电台搜索部分在充电台上存在的方向上进行检查时,朝向充电台的方向移动,并且检测充电架的方向。

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