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    • 31. 发明申请
    • PATTERN MEASURING APPARATUS AND COMPUTER PROGRAM
    • 图案测量装置和计算机程序
    • US20120037801A1
    • 2012-02-16
    • US13263826
    • 2010-04-07
    • Yuzuru MochizukiMaki TanakaMiki IsawaSatoru Yamaguchi
    • Yuzuru MochizukiMaki TanakaMiki IsawaSatoru Yamaguchi
    • G01N23/00
    • G01B15/04G01B15/00H01L22/12H01L2924/0002H01L2924/00
    • Provided are a pattern measuring apparatus and a computer program which determine whether a gap formed in a sample (201) is a core gap (211) or a spacer gap (212). The secondary electron profile of the sample (201) is acquired, the feature quantities of the secondary electron profile at the positions of edges (303, 305) are detected, and based on the detected feature quantities, whether each gap adjacent to each of the edges (303, 305) is the core gap (211) or the spacer gap (212) is determined. Furthermore, the waveform profile of the spacer (207) is previously stored, the secondary electron profile of the sample (201) is acquired, a matching degree of the secondary electron profile and the stored waveform profile at the position of each spacer (207) is detected, and based on the detected matching degree, whether the each gap adjacent to each spacer (207) is the core gap (211) or the spacer gap (212) is determined.
    • 提供了一种图案测量装置和计算机程序,其确定样品(201)中形成的间隙是否为芯间隙(211)或间隔物间隙(212)。 获取样品(201)的二次电子分布,检测边缘(303,305)位置处的二次电子分布的特征量,并且基于检测到的特征量,确定与每个 边缘(303,305)是芯间隙(211)或确定间隔物间隙(212)。 此外,预先存储间隔物(207)的波形图,获取样品(201)的二次电子分布,二次电子分布的匹配度和在每个间隔物(207)的位置处存储的波形分布, 并且基于检测到的匹配度,确定与每个间隔物(207)相邻的每个间隙是否为芯间隙(211)或间隔物间隙(212)。
    • 32. 发明授权
    • Pattern search method
    • 模式搜索方式
    • US07941008B2
    • 2011-05-10
    • US11104632
    • 2005-04-13
    • Norio SatouAkiyuki SugiyamaOsamu KomuroSatoru Yamaguchi
    • Norio SatouAkiyuki SugiyamaOsamu KomuroSatoru Yamaguchi
    • G06K9/54
    • G06T7/001
    • According to the pattern search method of the present invention, detection of a detection image region relative to an observation image is performed by a pattern matching. An image whose size is substantially the same as that of the observation image is used as the detection image region. The detection image region is relatively displaced with reference to the observation image, thereby detecting a degree of similarity for a common region which is common to both of the region and the image. Displacement range of the detection image region is set in advance. If area of the common region is larger than a predetermined value, calculating the degree of similarity will be performed.
    • 根据本发明的图案搜索方法,通过图案匹配来执行相对于观察图像的检测图像区域的检测。 使用与观察图像基本相同的图像作为检测图像区域。 检测图像区域相对于观察图像相对移位,从而检测对于区域和图像两者共同的公共区域的相似度。 预先设定检测图像区域的位移范围。 如果公共区域的面积大于预定值,则将执行相似度的计算。
    • 33. 发明授权
    • Auto focus unit and digital camera
    • 自动对焦单元和数码相机
    • US07826735B2
    • 2010-11-02
    • US11677183
    • 2007-02-21
    • Satoru Yamaguchi
    • Satoru Yamaguchi
    • G03B3/10
    • G03B13/36
    • An auto focus unit, comprising a pursuit block, a lens driver, a detection block, and a controller, is provided. The pursuit block pursues the movements of an optical image of the target-object. The auto focus unit brings an optical image of the target-object into focus on a light-receiving surface. The target-object is desired to be brought into focus. The lens driver causes a focus lens to move so that an optical image of a scanning-area is brought into focus. The detection block detects the light intensity of an area including the scanning area. The controller causes the pursuit block to suspend a pursuit of the target-object when the light intensity detected by the detection block is lower than a predetermined threshold value.
    • 提供了包括追踪块,镜头驱动器,检测块和控制器的自动对焦单元。 追求块追求目标对象的光学图像的运动。 自动对焦单元将目标物体的光学图像聚焦在光接收表面上。 目标对象希望被聚焦。 透镜驱动器使聚焦透镜移动,使得扫描区域的光学图像被聚焦。 检测块检测包括扫描区域的区域的光强度。 当由检测块检测到的光强度低于预定阈值时,控制器使追踪块暂停对目标对象的追踪。
    • 38. 发明申请
    • Extrusion molding apparatus and extrusion molding method
    • 挤出成型设备和挤出成型方法
    • US20060012073A1
    • 2006-01-19
    • US11181025
    • 2005-07-14
    • Yasunao MiuraToshio HaradaSatoru Yamaguchi
    • Yasunao MiuraToshio HaradaSatoru Yamaguchi
    • B29C47/00B29C47/12B29C47/38
    • B28B13/04B28B3/20B29C31/002B29C48/0022B29C48/11B29C48/355B29C2793/0027
    • An extrusion molding apparatus and an extrusion molding method is provided that permits deformation of molded body to be prevented and a sound extrusion molded body to be obtained even in the case where a soft extrusion molded body having low rigidity in a direction perpendicular to extrusion direction is molded. An extrusion molding apparatus 1 comprises a screw extruder 12 that kneads a molding raw material 80 and extrudes an extrusion molded body 8 from a molding die 11, and a conveying apparatus 3 that supports said extrusion molded body 8 extruded continuously from the screw extruder 12 and conveys same in the extrusion direction. The screw extruder 12 has an inclination angle θ between the extrusion axis A and horizontal axis H in the range of 15° to 85°. The conveying apparatus 3 is constructed so as to move a reception stage 32 that supports said extrusion molded body 8 extruded along said extrusion axis A on the outer circumferential surface thereof, generally in parallel to said extrusion axis A. The inclination angle θ is preferably in the range of 30° to 75°.
    • 即使在与挤出方向垂直的方向上具有低刚性的软质挤出成型体的情况下,也能够得到能够防止成型体变形的挤出成型装置和挤出成型方法, 模制。 挤压成型装置1包括:螺杆挤出机12,其将成型原料80揉合并从成型模具11挤出挤出成型体8;以及输送装置3,其支撑从螺杆挤出机12连续挤出的挤出成型体8, 在挤出方向传送相同。 螺杆挤出机12在挤出轴线A和水平轴线H之间具有在15°至85°的范围内的倾斜角度θ。 传送装置3被构造成使大致平行于所述挤出轴线A的沿着所述挤出轴线A挤压的所述挤出成型体8的接收台32移动到其外周面上。倾斜角θ优选为 范围为30°至75°。
    • 39. 发明授权
    • Method of fabricating honeycomb body
    • 制造蜂窝体的方法
    • US06932932B2
    • 2005-08-23
    • US10045085
    • 2002-01-15
    • Yasunao MiuraSatoru YamaguchiHiromi Katou
    • Yasunao MiuraSatoru YamaguchiHiromi Katou
    • H05B6/78H05B6/64
    • H05B6/804B28B11/241B28B11/243B28B11/247H05B6/78H05B2206/046
    • Method of fabricating at least a honeycomb body include drying a plurality of honeycomb bodies, each having a multiplicity of cells arranged in the shape of a honeycomb and having a wall thickness of 0.125 mm or less, without cracking or wrinkling in the outer peripheral skin portion of the mold. Extrusion-molded argillaceous honeycomb bodies may be dried by placement on porous ceramics trays, having a dielectric loss of 0.1 or less, a porosity of 10% or more and a sectional open area ratio of 50% or more, exposure to at least 70% humidity and simultaneous irradiation with microwaves of 1,000 to 10,000 MHz. Alternatively, extrusion-molded argillaceous honeycomb bodies may be dried by exposure to at least 70% humidity and simultaneous irradiation with microwaves of 1,000 to 10,000 MHz, after which hot air is passed through the cells of the honeycomb bodies.
    • 至少制造蜂窝体的方法包括干燥多个蜂窝体,每个蜂窝体具有排列成蜂窝形状的多个孔,壁厚为0.125mm以下,不会在外周皮肤部分发生龟裂或起皱 的模具。 挤出成型的泥质蜂窝体可以通过放置在多孔陶瓷盘上,其介电损耗为0.1以下,孔隙率为10%以上,截面开口率为50%以上,暴露于至少70% 湿度和同步照射的微波1000至10,000 MHz。 或者,挤出成型的泥质蜂窝体可以通过暴露于至少70%的湿度并且同时照射1,000至10,000MHz的微波来干燥,之后热空气通过蜂窝体的孔。