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    • 1. 发明申请
    • AUTOMATIC ANALYZER
    • 自动分析仪
    • US20080310999A1
    • 2008-12-18
    • US11833650
    • 2007-08-03
    • Kenichi YAGITakayuki NodaKenichi TakahashiKenji TeshigawaraAtsushi Suzuki
    • Kenichi YAGITakayuki NodaKenichi TakahashiKenji TeshigawaraAtsushi Suzuki
    • G01N35/02G01N35/10
    • G01N35/00603G01N35/02Y10T436/113332
    • The present invention provides an automatic analysis system that is capable of quickly performing reinspection The automatic analysis system comprises: a sample rack which holds a sample vessel containing a sample; a sample rack input unit in which the sample rack is input; a carrier line which carries the sample rack; a plurality of automatic analyzers arranged along the carrier line; a sample rack holding unit which holds the sample rack storing an analyzed sample; a sample rack collection unit which collects the sample rack storing an analyzed sample; a carrier line for reinspection which returns the sample rack containing a sample subjected to reinspection depending on analysis results; and control means for returning the sample rack from the sample rack holding unit through the carrier line for reinspection and controlling any one of automatic analyzers different from one that has previously performed analysis to perform reanalysis of the sample.
    • 本发明提供一种能够快速执行再检测的自动分析系统。该自动分析系统包括:样架,其容纳包含样品的样品容器; 样品架输入单元,其中输入样品架; 承载样品架的载体线; 沿着载体线布置的多个自动分析器; 样品架保持单元,其容纳存储分析样品的样品架; 样本架收集单元,其收集存储分析样本的样架; 用于重新检查的载体线,其根据分析结果返回包含经受再检查的样品的样品架; 以及控制装置,用于使样本架从样品架保持单元通过用于再次检测的载体管线并且控制与先前执行分析不同的自动分析仪之一进行样品的再分析。
    • 2. 发明授权
    • Automatic analyzer
    • 自动分析仪
    • US08758684B2
    • 2014-06-24
    • US11833650
    • 2007-08-03
    • Kenichi YagiTakayuki NodaKenichi TakahashiKenji TeshigawaraAtsushi Suzuki
    • Kenichi YagiTakayuki NodaKenichi TakahashiKenji TeshigawaraAtsushi Suzuki
    • G01N35/02G01N35/00
    • G01N35/00603G01N35/02Y10T436/113332
    • An automatic analysis system, which is capable of quickly performing reinspection, includes a sample rack which holds a sample vessel containing a sample; a sample rack input unit in which the sample rack is input; a carrier line which carries the sample rack; a plurality of automatic analyzers arranged along the carrier line; a sample rack holding unit which holds the sample rack storing an analyzed sample; a sample rack collection unit which collects the sample rack storing an analyzed sample; a carrier line for reinspection which returns the sample rack containing a sample subjected to reinspection depending on analysis results; and a controller for returning the sample rack from the sample rack holding unit through the carrier line for reinspection and controlling any one of automatic analyzers different from one that has previously performed analysis to perform reanalysis of the sample.
    • 能够快速进行再检测的自动分析系统包括容纳样品的样品容器的样架, 样品架输入单元,其中输入样品架; 承载样品架的载体线; 沿着载体线布置的多个自动分析器; 样品架保持单元,其容纳存储分析样品的样品架; 样本架收集单元,其收集存储分析样本的样本架; 用于重新检查的载体线,其根据分析结果返回包含经受再检查的样品的样品架; 以及控制器,用于通过载体线从样品架保持单元返回样品架,用于再次检测,并且控制与先前进行的分析不同的自动分析仪之一以进行样品的再分析。
    • 6. 发明授权
    • Imaging lens
    • 成像镜头
    • US07706086B2
    • 2010-04-27
    • US11936686
    • 2007-11-07
    • Takayuki Noda
    • Takayuki Noda
    • G02B9/12
    • G02B13/22G02B9/12
    • An imaging lens includes: in order from an object side, an aperture diaphragm; a first lens of a positive lens having a convex surface on the object side; a second lens of a meniscus lens having a concave surface on the object side; and a third lens. The imaging lens satisfies: f/f3
    • 成像透镜包括:从物体侧开始的是孔径光阑; 在物体侧具有凸面的正透镜的第一透镜; 在物体侧具有凹面的弯月透镜的第二透镜; 和第三透镜。 成像透镜满足f / f3 <0.95和BR2 <0。 BR2满足BR2 = A / D4,A表示从第二透镜的物体侧表面上的顶点位置和光轴到光线通过的第二透镜的图像侧表面上的位置的距离 只要光线的行进方向为正方向,并且D4表示第二透镜的中心厚度,则朝向图像高度的角落。 f表示摄像透镜的焦距。 f3表示第三透镜的焦距。
    • 7. 发明授权
    • Processing device capable of implementing flexible access control
    • 能够实现灵活访问控制的处理装置
    • US07540019B2
    • 2009-05-26
    • US10998751
    • 2004-11-30
    • Takashi NoguchiTakayuki NodaHiromitsu KatoKatsumi Kawano
    • Takashi NoguchiTakayuki NodaHiromitsu KatoKatsumi Kawano
    • H04L9/00
    • G06F21/35G06F21/32G06F21/6254
    • A processing device has a personal authentication information receiving unit for receiving personal authentication information, a security information DB, and a processing information managing unit. The processing information managing unit converts the personal authentication information received by the personal authentication receiving unit to a user ID, detects an event concerning a processing operation, and associates the event with the user ID, thereby creating or updating an access management table for processing performance information, for storage in the security information DB. The processing information management unit then controls access to the processing performance information based on the access management table and the user ID obtained by conversion of the personal authentication information received by the personal authentication information receiving unit.
    • 处理装置具有用于接收个人认证信息的个人认证信息接收单元,安全信息DB和处理信息管理单元。 处理信息管理单元将由个人认证接收单元接收的个人认证信息转换为用户ID,检测与处理操作有关的事件,并将事件与用户ID相关联,从而创建或更新用于处理性能的访问管理表 信息,用于存储在安全信息DB中。 处理信息管理单元然后基于由个人认证信息接收单元接收的个人认证信息的转换而获得的访问管理表和用户ID来控制对处理性能信息的访问。
    • 8. 发明申请
    • Variable-power imaging optical system and imaging device
    • 可变功率成像光学系统和成像装置
    • US20070171544A1
    • 2007-07-26
    • US11654592
    • 2007-01-18
    • Takayuki Noda
    • Takayuki Noda
    • G02B15/14
    • G02B15/177
    • A variable-power imaging optical system is provided and includes three, negative, positive and positive lenses. A first group includes a negative lens and a positive lens. A second lens group includes a positive lens, a negative lens and an aberration-correcting lens. A third lens group includes an aberration-correcting lens L6. During zooming, the first and second lens groups are independently moved from each other. During focusing, the first and second lens groups are moved jointly. Ng2>1.6, νg2
    • 提供了可变功率成像光学系统,并且包括三个负的,正的和正的透镜。 第一组包括负透镜和正透镜。 第二透镜组包括正透镜,负透镜和像差校正透镜。 第三透镜组包括像差校正透镜L 6。 在变焦期间,第一和第二透镜组彼此独立地移动。 在聚焦期间,第一和第二透镜组共同移动。 Ng2> 1.6,nug2 <29和TL / YIM <11.0。 (Ng2:第二透镜L 2的折射率,第二透镜2:第二透镜L 2的阿贝数,TL:最大透镜 - 系统总长度,YIM:图像高度(对角线的一半长度))
    • 9. 发明授权
    • Imaging lens including three lens components
    • 成像镜头包括三个镜头组件
    • US07072123B2
    • 2006-07-04
    • US10860134
    • 2004-06-04
    • Takayuki Noda
    • Takayuki Noda
    • G02B13/18G02B3/02G02B15/14
    • G02B13/0035G02B3/04G02B13/18
    • An imaging lens includes, in order from the object side: a first lens component with a convex surface on the object side near the optical axis; a second lens component with a meniscus shape and a concave surface on the object side near the optical axis; and, a third lens component of positive refractive power with a convex surface on the object side. The first and second lens components may include aspheric surfaces and be made of plastic, and the third lens component may be made of glass. A stop may be placed on the object side of the first lens component or between the first lens component and the second lens component. Each lens component that forms the imaging lens may consist of a lens element. Specified conditions are satisfied in order to reduce aberrations and to insure that a sufficient back focus is provided.
    • 成像透镜从物体侧依次包括:物体侧的靠近光轴的凸面的第一透镜部件; 具有弯月面形状的第二透镜部件和物体侧的靠近光轴的凹面; 以及在物体侧具有凸面的正屈光力的第三透镜部件。 第一和第二透镜部件可以包括非球面并且由塑料制成,并且第三透镜部件可以由玻璃制成。 可以在第一透镜部件的物体侧或第一透镜部件和第二透镜部件之间放置止动件。 形成成像透镜的每个透镜部件可以由透镜元件组成。 满足指定条件以减少像差并确保提供足够的后焦点。
    • 10. 发明授权
    • Readout lens
    • 读出镜头
    • US5731915A
    • 1998-03-24
    • US729693
    • 1996-10-07
    • Takayuki Noda
    • Takayuki Noda
    • G02B9/34G02B13/24G02B9/36G02B9/60
    • G02B9/34G02B13/24
    • In a Xenotar type image-readout lens of a four-group five-element configuration, predetermined conditional expressions are satisfied so as to attain a bright lens system, while favorably correcting chromatic aberration. In a Xenotar type lens system composed of five sheets of lenses (L.sub.1 to L.sub.5), the second lens (L.sub.2) and the third lens (L.sub.3) are cemented together, a stop (i) is disposed between the third lens (L.sub.3) and the fourth lens (L.sub.4), and the following conditional expressions are satisfied: 1.78.ltoreq.N.sub.1, 47.0
    • 在四组五元件配置的Xenotar型图像读出透镜中,满足预定的条件表达式,以便获得明亮的透镜系统,同时有利地校正色差。 在由五片透镜(L1至L5)组成的Xenotar型透镜系统中,第二透镜(L2)和第三透镜(L3)胶合在一起,在第三透镜(L3)和 第四透镜(L4)和以下条件表达式被满足:1.78