会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Biomedical optical device and biomedical optical measuring method
    • 生物医学光学器件和生物医学光学测量方法
    • US07342652B2
    • 2008-03-11
    • US11333523
    • 2006-01-17
    • Taeko Urano
    • Taeko Urano
    • G01N33/48
    • A61B5/0073A61B5/0062
    • Light having a wavelength to be absorbed by a target object is irradiated from a light irradiating unit toward a subject while varying its intensity in the course of time. At least two detecting elements arrayed along a scanning direction detect a component having a large time delay out of the light propagated through the subject, for example, as departing from the light irradiating unit. By comparing measured data on the basis of the light detected by the at least two detecting elements with measured data in the case where the target object is not present in a light irradiation region, the depth of the target object at a location of the light irradiating unit is acquired.
    • 具有被目标物体吸收的波长的光从照射单元朝向被摄体照射,同时随时间改变其强度。 沿着扫描方向排列的至少两个检测元件例如在离开光照射单元时检测从通过被摄体传播的光中具有大的时间延迟的分量。 通过基于由至少两个检测元件检测的光与在光照射区域中不存在目标物体的情况下的测量数据相比较的测量数据,在光照射的位置处的目标物体的深度 单位被收购。
    • 4. 发明申请
    • Biomedical optical device and biomedical optical measuring method
    • 生物医学光学器件和生物医学光学测量方法
    • US20060184050A1
    • 2006-08-17
    • US11333523
    • 2006-01-17
    • Taeko Urano
    • Taeko Urano
    • A61B5/02
    • A61B5/0073A61B5/0062
    • Light having a wavelength to be absorbed by a target object is irradiated from a light irradiating unit toward a subject while varying its intensity in the course of time. At least two detecting elements arrayed along a scanning direction detect a component having a large time delay out of the light propagated through the subject, for example, as departing from the light irradiating unit. By comparing measured data on the basis of the light detected by the at least two detecting elements with measured data in the case where the target object is not present in a light irradiation region, the depth of the target object at a location of the light irradiating unit is acquired.
    • 具有被目标物体吸收的波长的光从照射单元朝向被摄体照射,同时随时间改变其强度。 沿着扫描方向排列的至少两个检测元件例如在离开光照射单元时,检测出通过被摄体传播的光中具有大的时间延迟的分量。 通过基于由至少两个检测元件检测的光与在光照射区域中不存在目标物体的情况下的测量数据相比较的测量数据,在光照射的位置处的目标物体的深度 单位被收购。
    • 5. 发明授权
    • Liquid crystal device evaluation method and apparatus
    • 液晶装置的评价方法和装置
    • US6054870A
    • 2000-04-25
    • US981832
    • 1998-01-16
    • Taeko UranoShigeru MachidaKenji Sano
    • Taeko UranoShigeru MachidaKenji Sano
    • G01N21/88G01M11/00G02F1/13G09G3/00G01R31/00
    • G09G3/006
    • Impurities mixed in the liquid crystal device are detected by a method comprising the steps of applying a DC electric field to a liquid crystal device having a liquid crystal layer between a pair of electrodes, and irradiating the liquid crystal device with light within a specific wavelength, while an AC pulsed electric field is being applied to the liquid A crystal device after the DC electric field is removed to obtain a field response curve corresponding to time-dependent change of light intensity during a cycle of the AC pulsed electric field by time-resolved measurement of light passed through the liquid crystal layer, wherein the impurities are detected on the basis of specific quantitative change in the electric field response curve as a function of elapsed time after the DC electric field is removed.
    • PCT No.PCT / JP97 / 01651 Sec。 371日期1998年1月16日 102(e)1998年1月16日PCT PCT日期为1997年5月16日通过包括以下步骤的方法检测混合在液晶器件中的杂质:将DC电场施加到具有液晶层的液晶装置之间的一对 电极,并且在特定波长的光下照射该液晶装置,同时在除去DC电场之后,将AC脉冲电场施加到液晶A晶体装置,以获得对应于时间依赖性变化的场响应曲线 通过对通过液晶层的光进行时间分辨测量,在AC脉冲电场的周期期间的光强度,其中基于电场响应曲线中的特定定量变化来检测杂质,作为经过时间的函数 直流电场被去除。
    • 6. 发明授权
    • Illumination device and method for manufacturing same
    • 照明装置及其制造方法
    • US08283858B2
    • 2012-10-09
    • US12872281
    • 2010-08-31
    • Toshiya YoneharaTomio OnoShintaro EnomotoKeiji SugiTomoaki SawabeTaeko Urano
    • Toshiya YoneharaTomio OnoShintaro EnomotoKeiji SugiTomoaki SawabeTaeko Urano
    • H01J1/62
    • H01J1/62H01J9/24
    • According to one embodiment, an illumination device includes an organic light-emitting unit, a first electrode, a second electrode and an optical layer. The organic light-emitting unit includes an organic light-emitting layer, a first and a second major surface. The first electrode is provided on the first major surface. The second electrode is provided on the second major surface and includes a conductive layer, a first interconnection and a second interconnection. The first interconnection is electrically connected to the conductive layer and aligned in a first direction parallel to the first major surface. The second interconnection is electrically connected to the conductive layer and aligned apart from the first interconnection and parallel to the first interconnection. The optical layer is provided on a side of the second electrode opposite to the organic light-emitting unit and includes a low refractive index portion and a high refractive index portion.
    • 根据一个实施例,照明装置包括有机发光单元,第一电极,第二电极和光学层。 有机发光单元包括有机发光层,第一和第二主表面。 第一电极设置在第一主表面上。 第二电极设置在第二主表面上,并且包括导电层,第一互连和第二互连。 第一互连电连接到导电层并且在平行于第一主表面的第一方向上对齐。 第二互连电连接到导电层并且与第一互连对准并且平行于第一互连。 光学层设置在第二电极的与有机发光单元相对的一侧,并且包括低折射率部分和高折射率部分。
    • 7. 发明申请
    • ILLUMINATION DEVICE AND METHOD FOR MANUFACTURING SAME
    • 照明装置及其制造方法
    • US20110215711A1
    • 2011-09-08
    • US12872281
    • 2010-08-31
    • Toshiya YoneharaTomio OnoShintaro EnomotoKeiji SugiTomoaki SawabeTaeko Urano
    • Toshiya YoneharaTomio OnoShintaro EnomotoKeiji SugiTomoaki SawabeTaeko Urano
    • H01J1/62H01J9/24
    • H01J1/62H01J9/24
    • According to one embodiment, an illumination device includes an organic light-emitting unit, a first electrode, a second electrode and an optical layer. The organic light-emitting unit includes an organic light-emitting layer, a first and a second major surface. The first electrode is provided on the first major surface. The second electrode is provided on the second major surface and includes a conductive layer, a first interconnection and a second interconnection. The first interconnection is electrically connected to the conductive layer and aligned in a first direction parallel to the first major surface. The second interconnection is electrically connected to the conductive layer and aligned apart from the first interconnection and parallel to the first interconnection. The optical layer is provided on a side of the second electrode opposite to the organic light-emitting unit and includes a low refractive index portion and a high refractive index portion.
    • 根据一个实施例,照明装置包括有机发光单元,第一电极,第二电极和光学层。 有机发光单元包括有机发光层,第一和第二主表面。 第一电极设置在第一主表面上。 第二电极设置在第二主表面上,并且包括导电层,第一互连和第二互连。 第一互连电连接到导电层并且在平行于第一主表面的第一方向上对齐。 第二互连电连接到导电层并且与第一互连对准并且平行于第一互连。 光学层设置在第二电极的与有机发光单元相对的一侧,并且包括低折射率部分和高折射率部分。