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    • 22. 发明授权
    • Sun roof device
    • 太阳屋顶装置
    • US06390545B1
    • 2002-05-21
    • US09714959
    • 2000-11-20
    • Hiroshi MakinoTakashi KitaniYouji NagashimaKenji Maeta
    • Hiroshi MakinoTakashi KitaniYouji NagashimaKenji Maeta
    • B60J705
    • B60J7/05B60J7/02
    • A vehicle sun-roof device includes a movable panel for fully covering and uncovering an opening in the vehicle roof, a guide rail provided along a side of the opening in the vehicle longitudinal direction, and a link mechanism associated with the movable panel for tilting the movable panel. The link mechanism includes a bracket supporting the movable panel, a link member for restricting the rotational position of the bracket, a drive shoe slidably disposed in the guide rail and associated with the bracket via the link member, and a driven shoe slidably disposed in the guide rail and rotatably supporting one end of the bracket. A checking mechanism restricts the movement of the driven shoe in the vehicle longitudinal direction and includes a restriction portion formed at the bracket and a guide block fixed to the guide rail. When the rotational position of the bracket is within a range between a first rotational position at which the opening is fully covered by the movable panel and a second rotational position at which the movable panel is tilted at a maximum angle, the restriction portion and the guide block continue to be engaged in the vehicle longitudinal direction.
    • 车辆屋顶装置包括用于完全覆盖和露出车顶的开口的可移动面板,沿着车辆纵向方向沿着开口侧设置的导轨,以及与可移动面板相关联的连杆机构, 活动面板 连杆机构包括支撑可移动面板的支架,用于限制支架的旋转位置的连杆构件,可滑动地设置在导轨中并通过连杆构件与支架相关联的驱动滑靴,以及可滑动地设置在支架中的从动鞋 导轨并可旋转地支撑支架的一端。 检查机构限制从动鞋在车辆纵向的移动,并且包括形成在支架上的限制部分和固定到导轨的引导块。 当托架的旋转位置在开口被可动面板完全覆盖的第一旋转位置与可动面板以最大角度倾斜的第二旋转位置之间的范围内时,限制部分和导向件 块继续从事车辆纵向。
    • 23. 发明授权
    • Multiplier carrying out numeric calculation at high speed
    • 乘数高速进行数值计算
    • US5666301A
    • 1997-09-09
    • US460948
    • 1995-06-05
    • Hiroshi Makino
    • Hiroshi Makino
    • G06F7/487G06F7/52G06F7/38
    • G06F7/4876
    • Luminance value data including data of R, G, and B and data .alpha. representing transparency, each of 8 bits, and a coefficient expressed by floating-point data are directly applied to an operation unit. The operation unit includes four 8.times.8 bit multiply unit for multiplying 8-bit data of each component forming the luminance value data by the most significant 8 bits of data of the mantissa of the coefficient. An output of each of the multiply units is shifted by corresponding shifters, whereby data of 8 bits is output for each component. Luminance value data of a format identical to that provided is output from the operation unit. Thus, a multiplier is provided having the operation unit that can carry out luminance calculation at high speed.
    • 包括R,G和B的数据的亮度值数据和表示透明度的数据α,每个8位,以及由浮点数据表示的系数直接应用于操作单元。 操作单元包括四个8×8位乘法单元,用于将形成亮度值数据的每个分量的8位数据乘以该系数的尾数的最高有效8位数据。 每个乘法器的输出由相应的移位器移位,由此为每个分量输出8位数据。 从操作单元输出与提供的格式相同格式的亮度值数据。 因此,提供具有可以高速执行亮度计算的操作单元的乘法器。
    • 27. 发明授权
    • Charged particle ray apparatus and pattern measurement method
    • 带电粒子装置和图案测量方法
    • US08890068B2
    • 2014-11-18
    • US14002275
    • 2012-01-27
    • Yuji KasaiMakoto SuzukiHiroshi Makino
    • Yuji KasaiMakoto SuzukiHiroshi Makino
    • H01J37/05H01J37/244H01J37/28G01N23/225G06T1/00
    • H01J37/05G01N23/2251G06T1/00H01J37/244H01J37/28H01J2237/24475H01J2237/24485H01J2237/2449H01J2237/24495
    • Provided is a technique to automatize a synthesis function of signal charged particles having different energies. A charged particle beam apparatus includes: a charged particle source configured to irradiate a sample with a primary charged particle ray; a first detector configured to detect a first signal electron having first energy from signal charged particles generated from the sample; a second detector configured to detect a second signal electron having second energy from signal charged particles generated from the sample; a first operation part configured to change a synthesis ratio of a signal intensity of the first signal electron and a signal intensity of the second signal electron and to generate a detected image corresponding to each synthesis ratio; a second operation part configured to calculate a ratio of signal intensities corresponding to predetermined two areas of the detected image generated for each synthesis ratio; and a third operation part configured to determine a mixture ratio to be used for acquisition of the detected image on a basis of a change of the ratio of signal intensities.
    • 提供了一种使具有不同能量的信号带电粒子的合成功能自动化的技术。 带电粒子束装置包括:带电粒子源,被配置为用一次带电粒子射线照射样品; 第一检测器,被配置为检测从所述样品产生的信号带电粒子的具有第一能量的第一信号电子; 第二检测器,被配置为检测从样品产生的信号带电粒子的具有第二能量的第二信号电子; 第一操作部,被配置为改变第一信号电子的信号强度和第二信号电子的信号强度的合成比,并且生成与每个合成比相对应的检测图像; 第二操作部,被配置为计算与针对每个合成比生成的检测图像的预定的两个区域相对应的信号强度的比率; 以及第三操作部件,被配置为基于信号强度比的变化来确定用于获取检测到的图像的混合比率。