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    • 11. 发明授权
    • Print head and image formation apparatus
    • 打印头和图像形成装置
    • US06323890B1
    • 2001-11-27
    • US09075176
    • 1998-05-11
    • Kenji MutoIzumi Narita
    • Kenji MutoIzumi Narita
    • B41J2435
    • G06K15/1247B41J2/45
    • An optical print head and an image formation apparatus which can form a satisfactory image without shortening an exposure time in an image processing at high speed. A satisfactory image is formed at high speed by alternately radiating a first light emitting element array and a second light emitting element array under a predetermined driving condition depending on a relation between a distance d in a Y direction between elements perpendicular to an array direction X of light emitting elements and an image resolution pitch P by using the optical print head composed of two light emitting element arrays.
    • 一种光学打印头和图像形成装置,其可以在不缩短图像处理中的曝光时间的同时形成令人满意的图像。 通过根据垂直于阵列方向X的元件之间的Y方向上的距离d之间的关系,在预定的驱动条件下交替地照射第一发光元件阵列和第二发光元件阵列,以高速形成令人满意的图像 发光元件和通过使用由两个发光元件阵列组成的光学打印头的图像分辨率间距P.
    • 12. 发明授权
    • Heat-sensitive recording material
    • 热敏记录材料
    • US08629082B2
    • 2014-01-14
    • US13500743
    • 2010-10-08
    • Shin-ichi DoiMasahiro MorieKenji MutoToshizo Yamamoto
    • Shin-ichi DoiMasahiro MorieKenji MutoToshizo Yamamoto
    • B41M5/337B41M5/44
    • B41M5/3377B41M5/30B41M5/42B41M2205/04B41M2205/40
    • The present invention provides a heat-sensitive recording material that suffers no defective coating and is superior in color-exhibiting sensitivity, image quality, and chemical resistance. The heat-sensitive recording material successively comprising, on a support, an undercoat layer, a heat-sensitive recording layer containing a leuco dye and a developer, and a protective layer, wherein the heat-sensitive recording layer contains, as a main pigment, kaolin having an average particle diameter of 0.1 to 0.4 μm measured by a sedimentation method in an amount of 4 to 60 mass % based on a total solids content of the heat-sensitive recording layer, and wherein the heat-sensitive recording layer and the protective layer are formed by applying a heat-sensitive recording layer coating composition and a protective layer coating composition by a simultaneous multilayer curtain coating method, and drying resulting coatings.
    • 本发明提供一种不受涂层影响的热敏记录材料,并且具有优异的显色性,图像质量和耐化学性。 该感热记录材料在载体上依次包括底涂层,含有无色染料和显影剂的热敏记录层和保护层,其中热敏记录层含有主要颜料, 基于热敏记录层的总固体含量,通过沉降法测量平均粒径为0.1至0.4μm的高岭土,其量为4至60质量%,并且其中热敏记录层和保护性 通过同时多层帘式涂布法涂布热敏记录层涂料组合物和保护层涂料组合物形成层,并干燥所得涂料。
    • 14. 发明申请
    • Image server, image acquisition device, and image display terminal
    • 图像服务器,图像采集设备和图像显示终端
    • US20060132602A1
    • 2006-06-22
    • US11294882
    • 2005-12-06
    • Kenji MutoKazuoki MatsugataniJun Kosai
    • Kenji MutoKazuoki MatsugataniJun Kosai
    • H04N7/18H04N9/47
    • H04N7/18G08G1/0962
    • Images are efficiently collected or delivered so that uncomfortable feeling given to users who view picked images picked up at vehicles and delivered by an image server is lessened. An image server is so constructed that the following operation is performed: the picked image of the surroundings of a vehicle, picked up with a camera mounted on the vehicle, and the image pickup information of the picked image, including information about the image pickup point, are stored on a storing medium; and picked images stored on the storing medium are delivered to users who view received picked images. One is selected from among picked images inputted from a vehicle with respect to each of areas to which the image pickup points of those picked images belong based on the image pickup information and a predetermined selection condition. The selected picked image is stored on the storing medium.
    • 图像被有效地收集或传送,使得给予在车辆上拍摄并且被图像服务器传送的拾取的图像的用户的不舒服的感觉被减轻。 图像服务器被构造成执行以下操作:被安装在车辆上的摄像机拾取的车辆的周围环境的拾取图像以及拾取的图像的图像拾取信息,包括关于图像拾取点的信息 存储在存储介质上; 并且将存储在存储介质上的所选择的图像传送给查看接收到的所选图像的用户。 根据摄像信息和预定的选择条件,从车辆输入的选择图像中选择相对于所选择的图像的图像拾取点所属的区域的每个区域。 所选择的图像被存储在存储介质上。
    • 15. 发明申请
    • Charging apparatus, process cartridge, and image forming apparatus
    • 充电装置,处理盒和成像装置
    • US20060120758A1
    • 2006-06-08
    • US11295733
    • 2005-12-07
    • Kenji Muto
    • Kenji Muto
    • G03G15/02
    • G03G15/09G03G15/0812
    • A charging apparatus for electrically charging a member to be charged while magnetic particles is in contact to the member to be charged, includes a first magnetic particle carrying member for carrying the magnetic particles; a second magnetic particle carrying member for carrying the magnetic particles, the second magnetic particle carrying member being disposed downstream of the first magnetic particle carrying member with respect to a feeding direction of the magnetic particles at a portion where the first magnetic particle carrying member and the member to be charged are opposed to each other, wherein the magnetic particles are commonly used by the first magnetic particle carrying member and the second magnetic particle carrying member; a regulating portion for regulating an amount of the magnetic particles carried on the first magnetic particle carrying member, at a position upstream of the portion where the first magnetic particle carrying member and the member to be charged are opposed to each other, with respect to the feeding direction of the magnetic particles; a first positioning portion for regulating movement of the first magnetic particle carrying member; a second positioning portion for regulating movement of the second magnetic particle carrying member, wherein the first positioning portion is effective to regulate the first magnetic particle carrying member against its movement in a moving direction of the member to be charged, and wherein the second positioning portion is effective to regulate the second magnetic particle carrying member against its movement in a direction of contact to the member to be charged while permitting movement in the direction of movement of the member to be charged.
    • 一种用于对磁性颗粒与待充电构件接触的被充电构件进行充电的充电装置包括用于承载磁性颗粒的第一磁性颗粒承载构件; 用于承载磁性颗粒的第二磁性颗粒承载构件,所述第二磁性颗粒承载构件相对于所述第一磁性颗粒承载构件和所述第一磁性颗粒承载构件的部分相对于所述磁性颗粒的进给方向设置在所述第一磁性颗粒承载构件的下游 被充电的构件彼此相对,其中磁性颗粒通常由第一磁性颗粒承载构件和第二磁性颗粒承载构件使用; 用于调节在第一磁性颗粒承载构件上承载的磁性颗粒的量的调节部分,在第一磁性颗粒承载构件和被填充构件的部分的上游位置相对于第一磁性颗粒载体 磁性颗粒的进给方向; 用于调节第一磁性颗粒承载构件的运动的第一定位部分; 用于调节所述第二磁性颗粒承载构件的运动的第二定位部分,其中所述第一定位部分有效地调节所述第一磁性颗粒承载构件抵抗其在待充电构件的移动方向上的运动,并且其中所述第二定位部分 有效地调节第二磁性颗粒承载构件抵抗其在与待充电构件接触的方向上的运动,同时允许沿待被充电构件的移动方向的移动。
    • 18. 发明授权
    • Apparatus for automatically setting the optimum performance
characteristics of a tape recorder
    • 用于自动设置磁带录音机的最佳性能特征的装置
    • US4484237A
    • 1984-11-20
    • US336763
    • 1982-01-04
    • Kenji Muto
    • Kenji Muto
    • G11B5/02G11B15/02G11B5/45
    • G11B5/02
    • An apparatus using microcomputing system for automatically setting the optimum performance characteristics of a magnetic tape used. When the type of a magnetic tape loaded into a tape recorder is detected, the microcomputing system sets the standard recording level and the standard recording bias level of the magnetic tape in a recording level setting circuit and a bias level setting circuit of the tape recorder, respectively. When an automatic setting instruction and a subsequent recording start instruction are issued, a test signal having a certain frequency range is recorded on the magnetic tape and reproduced therefrom. The reproduced test signal is then supplied to a level deviation detecting circuit which detects the level deviation between the test signal of a predetermined frequency and the reproduced test signal of the same frequency and the level deviation between components of the reproduced test signal which are of different frequency. The microcomputing system corrects the standard recording level and the standard bias level to the optimum recording level and to the optimum bias level on the basis of the detected level deviations, respectively. An erase head to erase the test signal recorded is disposed at a position downstream of a playback head in the running direction of the magnetic tape, and the normal recording is started immediately after completing the automatic setting without rewinding the magnetic tape.
    • 一种使用微型计算机系统自动设定使用的磁带的最佳性能特征的装置。 当检测到装载到磁带录像机中的磁带的类型时,微型计算系统将磁带的标准记录级别和标准记录偏置电平设置在磁带记录器的记录电平设置电路和偏置电平设置电路中, 分别。 当发出自动设置指令和随后的记录开始指令时,具有一定频率范围的测试信号被记录在磁带上并被再现。 然后将再现的测试信号提供给电平偏差检测电路,该电平偏差检测电路检测预定频率的测试信号与相同频率的再现的测试信号之间的电平偏差和再现的测试信号的分量之间的电平偏差不同 频率。 微计算机系统将标准记录电平和标准偏置电平分别根据检测到的电平偏差校正到最佳记录电平和最佳偏置电平。 擦除被记录的测试信号的擦除头被布置在磁带的运行方向上的重放头的下游位置,并且在完成自动设置之后立即开始正常记录而不重新卷绕磁带。
    • 19. 发明授权
    • Optical tomographic imaging apparatus
    • 光学层析成像装置
    • US09149180B2
    • 2015-10-06
    • US12842740
    • 2010-07-23
    • Kenji MutoTakeshi Kitamura
    • Kenji MutoTakeshi Kitamura
    • G01B9/02G01B11/02A61B3/10A61B5/00G01N21/47
    • A61B3/102A61B5/0066A61B5/0073G01N21/4795
    • An optical tomographic imaging apparatus is provided which includes a low-resolution mode for rough imaging and a high-resolution mode for obtaining detailed images. In particular, an optical tomographic imaging apparatus is provided which enables tomographic imaging during a high-resolution mode to be performed at higher speeds. An imaging apparatus according to the present invention captures an optical interference tomographic image based on a combined beam that combines a return beam from an object irradiated by a measuring beam and a reference beam corresponding to the measuring beam. The imaging apparatus according to the present invention further includes a beam diameter changing unit for changing a beam diameter of the measuring beam. Furthermore, the imaging apparatus according to the present invention includes a detection unit configured to detect the combined beam at a resolution according to the beam diameter.
    • 提供了一种光学断层图像成像装置,其包括用于粗糙成像的低分辨率模式和用于获得详细图像的高分辨率模式。 特别地,提供一种使得能够以更高速度进行高分辨率模式期间的断层成像的光学断层图像摄像装置。 根据本发明的成像装置基于组合的光束来捕获光学干涉断层图像,所述组合光束组合来自被测量光束照射的物体的返回光束和对应于测量光束的参考光束。 根据本发明的成像设备还包括用于改变测量光束的光束直径的光束直径改变单元。 此外,根据本发明的成像装置包括:检测单元,被配置为根据光束直径以分辨率检测组合光束。
    • 20. 发明授权
    • Ophthalmologic apparatus and control method thereof
    • 眼科装置及其控制方法
    • US08992015B2
    • 2015-03-31
    • US13634509
    • 2011-03-24
    • Kenji Muto
    • Kenji Muto
    • A61B3/14A61B3/00A61B3/10
    • A61B3/102
    • An ophthalmologic apparatus includes a scanning optical system configured to scan a plurality of different regions of a test eye with a plurality of different measurement light beams, an acquisition unit configured to acquire information about a shape of the test eye, and an adjustment unit configured to adjust a relative position between an output end of a measurement light beam that serves as a reference among the plurality of measurement light beams and an output end of other measurement light beams among the measurement light beams based on the acquired information about the shape of the test eye.
    • 一种眼科装置,包括:扫描光学系统,被配置为用多个不同的测量光束扫描测试眼的多个不同区域;获取单元,被配置为获取关于测试眼睛的形状的信息;以及调整单元, 基于所获取的关于测试形状的信息,在测量光束中调整用作多个测量光束中的基准的测量光束的输出端与其它测量光束的输出端之间的相对位置 眼。