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    • 21. 发明授权
    • THICKNESS MEASUREMENT USING AN ATOMIC FORCE MICROSCOPE
    • WITH A原子力显微镜测量DICK
    • EP1269112B1
    • 2004-06-09
    • EP01912979.0
    • 2001-02-21
    • ADVANCED MICRO DEVICES INC.
    • PHAN, Khoi, A.RANGARAJAN, BharathSINGH, Bhanwar
    • G01B7/34G01B21/08H01L21/66G01B21/18G01N27/00
    • G01B21/18G01B7/066G01B21/08G01Q30/04G01Q80/00H01L22/12Y10S977/852
    • The present invention relates to a method (100) of determining a film thickness and comprises identifying (114) a depth associated with a defect (106) in an underlying material (108) and forming (116) the film (130) over the underlying material (108). The method (100) further comprises identifying (118) a depth associated with the defect (106) in the film (108) and then using (124) the identified depths to determine the film thickness. The present invention also relates to a system (200) for determining a film thickness and comprises a defect inspection tool (204) operable to identify a location of one or more defects (106) in an underlying material (108) and a topology measurement tool (208) operable to measure a change in topology of a surface. The system (200) also comprises a controller (206) operably coupled to the defect inspection tool (204) and the topology measurement tool (208). The controller (206) is adapted to receive location information from the defect inspection tool (204) relating to the one or more defects (106) and use the location information to generate and transmit one or more control signals to the topology measurement tool (208) to evaluate a topology of an underlying material (108) and a film (130) at the location corresponding to the one or more defects (106) to thereby generate topology information. Lastly, the controller (206) is adapted to receive the topology information from the topology measurement tool (208) and determine a film thickness using the topology information.
    • 22. 发明公开
    • Verfahren zum Ermitteln der Profiltiefe eines Fahrzeugreifens am fahrenden Fahrzeug
    • 一种用于确定在移动车辆上的车辆轮胎的胎面深度的方法
    • EP0873886A2
    • 1998-10-28
    • EP98107150.9
    • 1998-04-20
    • Continental Aktiengesellschaft
    • Oldenettel, Holger
    • B60C11/24G01B21/18
    • B60C23/062B60C11/24B60C11/246G01B21/18
    • Es wird ein Verfahren zum Ermitteln der Profiltiefe eines Fahrzeugreifens (10),am fahrenden Fahrzeug, mit folgenden Schritten vorgeschlagen:

      Bestimmen eines Winkels (ϕ) eines äußeren Reifenpunktes (2) in bezug auf ein nabenfestes Koordinatensystem, mittels eines fahrzeugfesten Sensors,
      Analysieren des von dem Sensor gelieferten, Oberschwingungen enthaltenden Signals und Bestimmen einer Eigenfrequenz (ω 0 ), die dem Drehschwingungsanteil des Reifengürtels (9) um die Felge (8) entspricht,
      Berechnen des Massenträgheitsmomentes (J) des Reifengürtels (9) um die Drehachse aus der Drehsteifigkeit (c) der Reifenwandung (11) und der ermittelten Eigenfrequenz (ω 0 ),
      Berechnen der aktuellen Masse (m) und der Durchmesserveränderung des Reifens aus dem ermittelten Massenträgheitsmoment (J) und der Massefunktion des Reifens in Abhängigkeit vom Durchmesser,
      Berechnen des Profilverlustes aus der Durchmesserveränderung.
    • 它是用于确定车辆轮胎(10)的胎面深度的方法,建议在移动的车辆,包括以下步骤:由车辆固定传感器的装置相对于轮毂固定坐标系统中确定一个外轮胎点(2)的一个角度(φ),分析所述的 输送到次谐波信号,并且确定对应于所述轮胎带束(9)的旋转振荡分量绕轮缘的固有频率(ω0)的轮胎带束(9)关于从旋转刚度的旋转轴(8)计算的惯性(J)的质量矩(含有传感器-C )轮胎壁(11)和确定的(ω0)的固有频率,计算实际质量(m)和在从所检测到的转动惯量(J)和在直径依赖轮胎的质量函数的轮胎的直径的变化,计算从在直径的变化轮廓损失。
    • 24. 发明公开
    • MOBILE DEVICE
    • 手机VORRICHTUNG
    • EP3093741A1
    • 2016-11-16
    • EP16169316.3
    • 2016-05-12
    • Kyocera Corporation
    • UENO, YasuhiroTANABE, ShigekiMORITA, HidekiMASUIKE, IsaoSAITO, ShinyaHONJO, MakotoSAKUMA, ManabuNAGATA, Yudai
    • G06F3/044G06F1/16
    • G01L19/086G01B21/18G06F1/1633G06F3/044H04B1/3827
    • A mobile device (1, 100, 200) comprises an atmospheric pressure sensor (17, 119, 219) configured to measure a value of atmospheric pressure, a touch screen (2B, 102B, 202B), and at least one controller (10, 110, 210) configured to conjecture that the mobile device (1, 100, 200) is immersed in water when the value of the atmospheric pressure satisfies a condition. The at least one controller (10, 110, 210) is configured to conjecture whether the mobile device (1, 100, 200) that has been immersed in water is out of the water on the basis of a detection result obtained by the touch screen (2B, 102B, 202B). The mobile device (1, 100, 200) is able to determine whether the mobile device (1, 100, 200) is immersed in water and whether the mobile device (1, 100, 200) is out of the water, while keeping the electric power consumption low, due to using the touch screen (2B, 102B, 202B) only when determining whether the mobile device (1, 100, 200) is out of the water.
    • 移动设备(1,100,200)包括被配置为测量大气压值的大气压力传感器(17,119,219),触摸屏(2B,102B,202B)和至少一个控制器 ,其构造成当大气压力的值满足条件时推测移动装置(1,100,200)被浸入水中。 所述至少一个控制器(10,110,210)被配置为基于由所述触摸屏获得的检测结果推测已经浸没在水中的移动设备(1,100,200)是否在水中之外 (2B,102B,202B)。 移动设备(1,100,200)能够确定移动设备(1,100,200)是否浸入水中,以及移动设备(1,100,200)是否在水中,同时保持 仅当确定移动设备(1,100,200)是否在水中时,由于使用触摸屏(2B,102B,202B)而导致的电力消耗低。
    • 28. 发明公开
    • Method and apparatus for measuring dents
    • Verfahren und Vorrichtung zur Messung von Beulen
    • EP2278260A2
    • 2011-01-26
    • EP10190138.7
    • 2009-01-21
    • Dow Corning Corporation
    • Gregory, Cortney LWheeler, Frederick Jr
    • G01B3/28G01B5/18G01B21/18
    • G01B5/18G01B3/28G01B21/18G06Q10/08
    • A method of measuring a depth of the dent (22) with a measurement apparatus (20), and measurement apparatus (20) for such a method. The apparatus comprises a frame (28); a mounting device (30) coupled to said frame (28) and engagable with the surface (24) of the shipping container (26) for mounting said frame (28) to the shipping container (26); and a measuring device (32) coupled to said frame (28) and adapted to measure the depth of the dent (22) on the surface (24) of the shipping container (26). The method comprises positioning the frame (28) with the mounting device (30) mounted to the surface (24) of the shipping container (26); aligning the measuring device (32) with the dent (22) on the surface (24) of the shipping container (26), and measuring the depth of the dent (22) on the surface (24) of the shipping container (26). The method and apparatus may be used to classify dents (22) to allows recipients of the shipping containers (26) to consistently accept or reject shipping containers (26) having dents (22) in the acceptable and unacceptable classifications, respectively.
    • 一种利用测量装置(20)测量凹陷(22)的深度的方法,以及用于这种方法的测量装置(20)。 该装置包括框架(28); 联接到所述框架(28)并与所述运输容器(26)的表面(24)接合的安装装置(30),用于将所述框架(28)安装到所述运输容器(26); 以及耦合到所述框架(28)并且适于测量所述运输容器(26)的所述表面(24)上的所述凹部(22)的深度的测量装置(32)。 该方法包括将框架(28)定位成安装在装运容器(26)的表面(24)上的安装装置(30)。 将测量装置(32)与运送容器(26)的表面(24)上的凹陷(22)对准,并测量运送容器(26)的表面(24)上的凹陷(22)的深度, 。 方法和装置可用于分类凹痕(22)以允许运输容器(26)的接收者分别一致地接受或拒绝具有凹陷(22)的运输容器(26)在可接受和不可接受的分类中。