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    • 52. 发明授权
    • Anodic oxidation apparatus
    • 阳极氧化装置
    • US07569124B2
    • 2009-08-04
    • US10924830
    • 2004-08-25
    • Yasushi YagiMitsuru UshijimaYoshifumi WatabeTakuya KomodaKoichi Aizawa
    • Yasushi YagiMitsuru UshijimaYoshifumi WatabeTakuya KomodaKoichi Aizawa
    • C25D17/00C25D11/02
    • C25D11/02C25D11/005C25D11/32C25F3/12C25F3/14C25F7/00H01L21/02203H01L21/02238H01L21/02258H01L21/3167H01L21/31675Y10S204/07
    • In an anodic oxidation apparatus and an anodic oxidation method and a panel for a display device manufactured by them, a large target substrate is treated by a smaller component. The anodic oxidation apparatus includes a lamp which emits light; a treatment bath which has a stage capable of mounting a target substrate thereon with a treatment part thereof directed upward and is provided at a position where the emitted light reaches and a frame located on the stage; a cathode electrode which is provided on the way of the emitted light to reach the mounted target substrate and includes an opening to allow the light to pass therethrough; a seal member which establishes a liquid sealing property between the frame and the mounted target substrate; a conductive contact member which is provided to be contactable with a plurality of electrode patterns formed on the target substrate outside an annular shape of the seal member and moves along side of the target substrate; and a current source which is electrically connected to the contact member and sets an output current value in accordance with the number of electrode patterns of the mounted target substrate in contact as the contact member moves.
    • 在阳极氧化装置和阳极氧化法以及由它们制造的显示装置的面板中,通过较小的成分处理大的靶基板。 阳极氧化装置包括发光的灯; 处理槽,其具有能够在其上安装目标基板的台阶,其处理部分向上指向并设置在发射光到达的位置和位于台上的框架; 阴极,其设置在所发射的光的路上,以到达所安装的目标基板,并且包括允许光通过的开口; 密封构件,其在所述框架和所安装的目标基板之间建立液体密封性; 导电接触构件,其设置成可与形成在所述目标基板上的多个电极图案接触,所述多个电极图案位于所述密封构件的环形形状的外侧,并且沿着所述目标基板的侧面移动; 以及电流源,其电连接到所述接触构件,并且当所述接触构件移动时,根据所接触的安装的目标衬底的电极图案的数量设定输出电流值。
    • 55. 发明申请
    • Capsule Endoscope Image Display Controller
    • 胶囊内窥镜图像显示控制器
    • US20080119691A1
    • 2008-05-22
    • US11883551
    • 2005-12-19
    • Yasushi YagiTomio EchigoRyusuke SagawaHai Vu
    • Yasushi YagiTomio EchigoRyusuke SagawaHai Vu
    • A61B1/045
    • A61B1/00009A61B1/00016A61B1/041A61B1/042A61B5/7264G06F19/00G06T7/0012G06T7/20G06T2207/10068G06T2207/30028H04N2005/2255
    • The present invention discloses a capsule endoscope image display controller (26) including: an image-to-image similarity calculating unit (36) that calculates, for each image included in an image sequence captured by a capsule endoscope which moves within the digestive organs, a similarity between the image and its temporally consecutive image; an amount-of-movement calculating unit (47) that calculates, for each image included in the image sequence, an amount of movement of a feature area included in the image; a video state classifying unit (41) that classifies, for each image included in the image sequence, a video state of the image into one of the following states, based on the video state, the similarity, and the amount of movement of the image: (a) “stationary state” indicating that the capsule endoscope is stationary, (b) “digestive organs deformation state” indicating that the digestive organs are deformed, and (c) “capsule moving state” indicating that the capsule endoscope is moving, based on the similarity and the amount of movement of the image; a rendering duration determining unit (42) that determines, for each image included in the image sequence, a rendering duration between the image and its temporally consecutive image; and a display controlling unit (44) that sequentially displays, on a screen, the images included in the image sequence with the determined rendering durations.
    • 本发明公开了一种胶囊型内窥镜图像显示控制器(26),包括:图像相似度计算单元,对于在消化器官内移动的胶囊型内窥镜拍摄的图像序列中包含的各图像, 图像与其时间上连续的图像之间的相似性; 移动量计算单元(47)针对包括在图像序列中的每个图像计算图像中包括的特征区域的移动量; 视频状态分类单元,根据视频状态,相似度和图像的移动量​​,将包括在图像序列中的每个图像的图像的视频状态分类为以下状态之一: (a)表示胶囊型内窥镜静止的“静止状态”,(b)表示消化器官变形的“消化器官变形状态”,(c)表示胶囊型内窥镜正在移动的“胶囊移动状态” 基于图像的相似性和移动量; 对于包括在图像序列中的每个图像,确定图像与其时间上连续的图像之间的渲染持续时间的渲染持续时间确定单元(42) 以及显示控制单元,其在屏幕上依次在所确定的渲染持续时间内显示包括在图像序列中的图像。
    • 56. 发明申请
    • Endoscope system
    • 内窥镜系统
    • US20070161853A1
    • 2007-07-12
    • US10587881
    • 2005-02-17
    • Yasushi YagiTomio EchigoRyusuke Sagawa
    • Yasushi YagiTomio EchigoRyusuke Sagawa
    • A61B1/04
    • A61B1/00177A61B1/00009A61B1/041A61B1/126
    • An endoscope that is free from a dead area and capable of preventing the physician from overlooking any nidus is an endoscope for taking the inside of digestive organs, and the endoscope is provided with an omnidirectional camera (32), a light (34), a forceps (36) and a rinse water injection port (38) at the tip (24). The omnidirectional camera (32) is a device for taking the inside of digestive organs, and is able to take 360-degree images of its surroundings. A probe-type endoscope (20) is provided with a receiver (26) composed of orthogonal coils, and the receiver (26) is used for estimating the position and attitude of the probe-type endoscope (20). An image taken by the omnidirectional camera (32) is presented on a display unit (28) of an image processing device (22) connected to the probe-type endoscope (20). In the image processing device, a video mosaicking process is performed on a plurality of images obtained by the omnidirectional camera (32) to generate a panoramic image of the inside of a digestive organ.
    • 一种无死角并能够防止医生俯瞰任何痣的内窥镜,是用于摄取消化器官内部的内窥镜,内窥镜设置有全向照相机(32),光(34), 镊子(36)和尖端(24)处的冲洗水注入口(38)。 全方向摄像机(32)是用于摄取消化器官内部的装置,能够拍摄周围360度的图像。 探针型内窥镜(20)具有由正交线圈构成的接收器(26),所述接收器(26)用于估计所述探针型内窥镜(20)的位置和姿势。 由全向照相机(32)拍摄的图像呈现在连接到探针型内窥镜(20)的图像处理装置(22)的显示单元(28)上。 在图像处理装置中,对由全向照相机(32)获得的多个图像执行视频镶嵌处理,以产生消化器官内部的全景图像。
    • 57. 发明授权
    • Thermal treatment method and apparatus
    • 热处理方法及装置
    • US06473993B1
    • 2002-11-05
    • US09537768
    • 2000-03-30
    • Yasushi YagiTakeshi SakumaWataru OkaseMasayuki KitamuraHironori YagiEisuke Morisaki
    • Yasushi YagiTakeshi SakumaWataru OkaseMasayuki KitamuraHironori YagiEisuke Morisaki
    • F26B304
    • H01L21/67109
    • A semiconductor wafer is mounted on a susceptor disposed in a processing chamber, the wafer is heated at a temperature on the order of 1000° C. for annealing, and a gas is supplied from a gas supply device disposed opposite to the wafer. When raising the temperature of the wafer and/or when lowering the temperature of the wafer, intra-surface temperature difference is limited to a small value to suppress the occurrence of slips. A gas supply device is divided into sections corresponding to a central part and a peripheral part, respectively, of the wafer to supply the gas at different flow rates onto the central part and the peripheral part, respectively. When raising the temperature of the wafer, for example, a gas of a temperature higher (lower) than that of the wafer is supplied at a flow rate per unit area greater (lower) than that at which the gas is supplied to the peripheral part to the central part. When lowering the temperature of the wafer, for example, a gas of a temperature higher (lower) than that of the wafer is supplied at a flow rate per unit area lower (higher) than that at which the gas is supplied to the peripheral part to the central part.
    • 将半导体晶片安装在设置在处理室中的基座上,将晶片在约1000℃的温度下加热退火,并且从与晶片相对设置的气体供给装置供给气体。 当提高晶片的温度和/或当降低晶片的温度时,将表面内温度差限制在较小的值以抑制滑移的发生。 气体供给装置分别对应于晶片的中心部分和周边部分,以将不同流量的气体分别供应到中心部分和周边部分。 当提高晶片的温度时,例如以比晶片的温度更高(低于)的温度的气体以比将气体供应到周边部分的流量更大(下) 到中部。 当降低晶片的温度时,例如以比晶片的温度更高(更低)的温度的气体以比供应气体的周边部分低的(高)的单位面积的流量被供给 到中部。
    • 58. 发明授权
    • Omnidirectional visual sensor having a plurality of mirrors with
surfaces of revolution
    • 具有多个具有旋转表面的反射镜的全方位视觉传感器
    • US6130783A
    • 2000-10-10
    • US311275
    • 1999-05-14
    • Yasushi YagiMasahiko Yachida
    • Yasushi YagiMasahiko Yachida
    • G02B17/00G02B13/06H04N5/225G02B27/10G02B5/08G02B13/22
    • H04N5/2259G02B13/06
    • An omnidirectional visual sensor which can observe a 360-degree panoramic field area, obtain a sharp image and correctly transform a central projection with respect to the image and can be minimized as a whole includes a convex mirror with a surface of revolution having a focal point, a plurality of mirrors with surfaces of revolutions having at least one focal point, a photoreceiving lens system receiving light reflected by the convex mirror with the surface of revolution and the plurality of mirrors with surfaces of revolutions and an image acquisition surface receiving the light received in the photoreceiving lens system and converting the same to an electric signal, and the convex mirror with the surface of revolution and the plurality of mirrors with surfaces of revolutions are so arranged that the focal point of a first mirror included in the convex mirror with the surface of revolution and the plurality of mirrors with surfaces of revolutions aligns with the focal point of a second mirror, included in the convex mirror with the surface of revolution and the plurality of mirrors with surfaces of revolutions, further reflecting light reflected by the first mirror.
    • 可以观察360度全景场区域的全向视觉传感器,获得清晰图像并相对于图像正确地变换中心投影,并且可以最小化,整体包括具有具有焦点的旋转表面的凸面镜 具有至少一个焦点的具有转动表面的多个反射镜,接收由凸面镜反射的光与旋转表面的光接收透镜系统,以及具有转动表面的多个反射镜和接收接收到的光的图像获取表面 在光接收透镜系统中并将其转换为电信号,并且具有旋转表面的凸面镜和具有转动表面的多个反射镜被布置成使得包括在凸面镜中的第一反射镜的焦点与 旋转表面和具有转动表面的多个反射镜与焦点的秒对准 包括在具有旋转表面的凸面镜和具有转动表面的多个反射镜的反射镜中,进一步反射由第一反射镜反射的光。