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    • 4. 发明授权
    • Stage apparatus, method for controlling the same, exposure apparatus, and method for manufacturing device
    • 舞台装置及其控制方法,曝光装置及其制造方法
    • US07738080B2
    • 2010-06-15
    • US11687798
    • 2007-03-19
    • Satoru Itoh
    • Satoru Itoh
    • G03B27/62
    • G03F7/70766
    • A stage apparatus includes a base, a stage that can move on a surface of the base, a first imparting unit arranged inside the base, which has a mass body and an actuator that is fixed to the base and moves the mass body in a direction vertical to the surface, the first imparting unit being configured to apply a force to the base by moving the mass body, and a controlling unit that controls the movement of the mass body in the vertical direction in the first imparting unit in accordance with movement of the stage, so that a force, which is generated in the base by the movement of the stage in a rotational direction around an axis parallel to the surface, is reduced.
    • 舞台装置包括基座,能够在基座的表面上移动的台架,布置在基座内部的第一施加单元,其具有质量体和致动器,该主体和致动器固定到基座并沿着方向 所述第一赋予单元构造成通过移动所述质量体而向所述基座施加力;以及控制单元,其根据所述质量体的移动来控制所述质量体在所述第一赋予单元中的垂直方向上的移动 使得通过台架围绕平行于表面的轴线的旋转方向的运动在基座中产生的力减小。
    • 5. 发明授权
    • Facsimile scanner
    • 传真扫描仪
    • US4177487A
    • 1979-12-04
    • US891249
    • 1978-03-29
    • Mutsuo TakenouchiTakashi OzawaSyoji WakoSatoru Itoh
    • Mutsuo TakenouchiTakashi OzawaSyoji WakoSatoru Itoh
    • H01J43/24H04N1/031H04N1/032H04N1/193H04N1/29H04N1/04
    • H04N1/031H01J43/24H04N1/032H04N1/1931H04N1/29
    • An electro-optical picture signal processing system, wherein an optical image is converted into time sequential electrical picture signals, or, conversely, time sequential electrical picture signals into an optical image or an electrostatic latent image, is provided with an electron emission plane arranged in one-dimension, a control electrode positioned face to face with said plane to control the passing of electrons from the electron emission plane, a secondary-electron multiplying device yielding secondary-electrons in response to the electrons passing through the control electrode, and an anode collecting the multiplied secondary-electrons. At least one of the electron emission plane and the control electrode is divided into a number of segments each as large as a picture-element, arranged in one-dimension, and one of the segments is selected from one end to the other. When an optical image is converted into time sequential electrical signals, the number of the electrons passing through a selected segment portion is controlled in response to brightness of each picture-element of the optical image. On the other hand, when time sequential electrical signals are converted into an optical image or an electrostatic latent image, the potential difference between the selected part of the electron emission plane and the control electrode is controlled by time sequential picture signals.
    • 一种电光图像信号处理系统,其中光学图像被转换成时间顺序的电子图像信号,或者相反地,将时间顺序的电子图像信号转换成光学图像或静电潜像,设置有布置在 一维的控制电极,与所述平面面对面地控制电子从电子发射平面的通过;响应于通过控制电极的电子产生二次电子的二次电子倍增装置,以及阳极 收集相乘的二次电子。 电子发射平面和控制电极中的至少一个被分成多个排列成一维的图像元素的片段,并且其中一个片段从一端到另一端被选择。 当光学图像被转换为​​时间顺序的电信号时,响应于光学图像的每个图像元素的亮度来控制通过所选择的段部分的电子的数量。 另一方面,当时间顺序的电信号被转换为光学图像或静电潜像时,电子发射平面的所选部分与控制电极之间的电位差由时间顺序的图像信号控制。
    • 8. 发明授权
    • Optical scanning device having a temperature compensation unit
    • 具有温度补偿单元的光学扫描装置
    • US07012724B2
    • 2006-03-14
    • US10912231
    • 2004-08-06
    • Hiromichi AtsuumiSeizo SuzukiSatoru Itoh
    • Hiromichi AtsuumiSeizo SuzukiSatoru Itoh
    • G02B26/08
    • G02B26/128Y10S359/90
    • In an optical scanning device and image forming apparatus according to the present invention, a light source emits a light beam, and a scanning optical unit deflects the light beam from the light source and focuses the deflected light beam to form a light spot on a scanned surface, the scanned surface being scanned by the light beam from the scanning optical unit. A temperature detection unit detects a temperature of the scanning optical unit and its neighboring locations. A temperature compensation unit adjusts a focal-point position of the light beam on the scanned surface in accordance with a change in the temperature detected by the temperature detection unit, the temperature compensation unit adjusting the focal-point position of the light beam by directly varying a focusing effect of a corrector lens on the light beam from the light source by a controlled amount of movement of the corrector lens along its optical axis that corresponds to the temperature change.
    • 在根据本发明的光学扫描装置和图像形成装置中,光源发射光束,扫描光学单元使来自光源的光束偏转并聚焦偏转的光束,以在扫描的光束上形成光点 表面,被扫描的表面被来自扫描光学单元的光束扫描。 温度检测单元检测扫描光学单元及其相邻位置的温度。 温度补偿单元根据由温度检测单元检测到的温度变化来调整扫描面上的光束的焦点位置,温度补偿单元通过直接变化来调整光束的焦点位置 通过对应于温度变化的校正透镜沿着其光轴的受控量的运动,校正透镜对来自光源的光束的聚焦效果。
    • 9. 发明申请
    • Filter controller system
    • 过滤器控制器系统
    • US20120116645A1
    • 2012-05-10
    • US10488199
    • 2002-08-13
    • Toshihiro HamahataSatoru Itoh
    • Toshihiro HamahataSatoru Itoh
    • F01N11/00F01N3/023
    • F01N9/002F01N3/0256F01N13/011F01N2410/04F01N2900/1606Y02T10/47
    • In order to calculate an estimation of the amount of deposited particulates in a first filter (61) or a second filter (62), a first estimation calculating section (100) for outputting first estimation data (XA) based on pressure differential across the filter and a second estimation calculating section (110) for outputting second estimation data (XB) based on engine operating state are provided, the data between the first estimation data (XA) and the second estimation data (XB) that is the more reliable estimation data in light of engine (2) rotation is selected and whether or not filter regeneration should be conducted is decided. In addition, the difference between the first and second estimation data (XA, XB) is considered and when the difference is larger than a prescribed value, then even if the engine (2) rpm is high, selection of the first estimation data XA, which is apt to be an estimated value of low reliability owing to cracking of the deposited particulates, is avoided.
    • 为了计算第一滤波器(61)或第二滤波器(62)中沉积的微粒量的估计,第一估计计算部分(100)用于基于滤波器上的压差输出第一估计数据(XA) 并且提供用于基于发动机运行状态输出第二估计数据(XB)的第二估计计算部(110),作为更可靠的估计数据的第一估计数据(XA)和第二估计数据(XB)之间的数据 根据发动机(2)的选择,决定是否进行过滤器再生。 此外,考虑第一和第二估计数据(XA,XB)之间的差异,并且当差值大于规定值时,即使发动机(2)rpm高,则选择第一估计数据XA, 这是容易成为由于沉积的微粒的破裂导致的低可靠性的估计值。