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    • 1. 发明申请
    • LIGHT-EMITTING DIODE
    • 发光二极管
    • US20120043524A1
    • 2012-02-23
    • US13284294
    • 2011-10-28
    • Hiroyuki TANAKANobuaki NagaoTakahiro HamadaEiji Fujii
    • Hiroyuki TANAKANobuaki NagaoTakahiro HamadaEiji Fujii
    • H01L33/06
    • H01L33/42H01L2933/0083H01L2933/0091
    • An light emitting diode includes an n-type nitride semiconductor layer, a multiple quantum well layer, a p-type nitride semiconductor layer, a window electrode layer, a p-side electrode, and an n-side electrode, which are stacked in this order. The n-side electrode is electrically connected to the n-type nitride semiconductor layer. The window electrode layer comprises an n-type single-crystalline ITO transparent film and an n-type single-crystalline ZnO transparent film. The p-type nitride semiconductor layer is in contact with the n-type single-crystalline ITO transparent film. The light-emitting diode further comprises a plurality of single-crystalline ZnO rods formed on the n-type single-crystalline ZnO transparent film. The respective lower portions of the single-crystalline ZnO rods have a shape of an inverted taper, which sharpens from the single-crystalline n-type ZnO transparent film toward the n-type nitride semiconductor layer.
    • 发光二极管包括堆叠在其中的n型氮化物半导体层,多量子阱层,p型氮化物半导体层,窗口电极层,p侧电极和n侧电极 订购。 n侧电极与n型氮化物半导体层电连接。 窗口电极层包括n型单晶ITO透明膜和n型单晶ZnO透明膜。 p型氮化物半导体层与n型单晶ITO透明膜接触。 发光二极管还包括形成在n型单晶ZnO透明膜上的多个单晶ZnO棒。 单晶ZnO棒的各自的下部具有从单晶n型ZnO透明膜朝向n型氮化物半导体层而锐化的倒锥形。
    • 2. 发明申请
    • LIGHT-EMITTING DIODE
    • 发光二极管
    • US20120104354A1
    • 2012-05-03
    • US13283985
    • 2011-10-28
    • Hiroyuki TANAKANobuaki NAGAOTakahiro HAMADAEiji FUJII
    • Hiroyuki TANAKANobuaki NAGAOTakahiro HAMADAEiji FUJII
    • H01L33/04
    • H01L33/42H01L33/32
    • A light-emitting diode includes an n-type nitride semiconductor layer, a multiple quantum well, a p-type nitride semiconductor layer, a window electrode layer, a p-side electrode, and an n-side electrode, which are stacked in this order. The window electrode layer comprises an n-type single-crystalline ITO transparent film and an n-type single-crystalline ZnO transparent film. The p-type nitride semiconductor layer is in contact with the n-type single-crystalline ITO transparent film, the n-type single-crystalline ITO transparent film is in contact with the n-type single-crystalline ZnO transparent film, and the p-side electrode is in connected with the n-type single-crystalline ZnO transparent film. The n-type single-crystalline ITO transparent film contains Ga, a molar ratio of Ga/(In+Ga) being not less than 0.08 and not more than 0.5. Thickness of the n-type single-crystalline ITO transparent film is not less than 1.1 nm and not more than 55 nm.
    • 发光二极管包括堆叠在其中的n型氮化物半导体层,多量子阱,p型氮化物半导体层,窗口电极层,p侧电极和n侧电极 订购。 窗口电极层包括n型单晶ITO透明膜和n型单晶ZnO透明膜。 p型氮化物半导体层与n型单晶ITO透明膜接触,n型单晶ITO透明膜与n型单晶ZnO透明膜接触,p型 侧电极与n型单晶ZnO透明膜连接。 n型单晶ITO透明膜含有Ga,Ga /(In + Ga)的摩尔比不小于0.08且不大于0.5。 n型单晶ITO透明膜的厚度不小于1.1nm且不大于55nm。
    • 4. 发明申请
    • COMPOUND, LIQUID CRYSTAL COMPOSITION AND LIQUID CRYSTAL DISPLAY DEVICE
    • 化合物,液晶组合物和液晶显示装置
    • US20120313043A1
    • 2012-12-13
    • US13493533
    • 2012-06-11
    • Taketo MAEDATakayoshi YANAIHiroyuki TANAKANorikatsu HATTORI
    • Taketo MAEDATakayoshi YANAIHiroyuki TANAKANorikatsu HATTORI
    • C09K19/30C07C43/225C09K19/34
    • C09K19/20C09K19/3066C09K2019/0459C09K2019/0466
    • To provide a liquid crystal composition satisfying at least one of characteristics such as a high maximum temperature of a nematic phase, a low minimum temperature thereof, a small viscosity, a large optical anisotropy, a large dielectric anisotropy, a large specific resistance, a large elastic constant, a high stability to ultraviolet light and heat, or a liquid crystal composition having a suitable balance regarding at least two of the characteristics; and an AM device having a short response time, a large voltage holding ratio, a large contrast ratio, a long service life and so forth; wherein a liquid crystal composition has a nematic phase and contains a specific compound having a high maximum temperature and a large dielectric anisotropy as a first component, and a specific compound having a small viscosity as a second component, and may contain a specific compound having a large dielectric anisotropy as a third component.
    • 为了提供满足以下特征中的至少一种的液晶组合物:向列相的上限温度高,其最低温度低,粘度小,光学各向异性大,介电各向异性大,电阻率大, 弹性常数,对紫外线和热的高稳定性,或者对于至少两种特性具有适当平衡的液晶组合物; 以及响应时间短,电压保持率大,对比度大,使用寿命长等的AM装置。 其中液晶组合物具有向列相,并且含有作为第一成分的具有高的最高温度和大的介电各向异性的特定化合物和具有小粘度的特定化合物作为第二组分,并且可以含有具有 作为第三组分的大介电各向异性。
    • 5. 发明申请
    • CENTRALIZED MONITORING SYSTEM, ANALYZING SYSTEM AND CENTRALIZED MONITORING METHOD
    • 集中监控系统,分析系统和集中监控方法
    • US20110223077A1
    • 2011-09-15
    • US13052909
    • 2011-03-21
    • Hiroyuki TANAKAHiroyoshi Nishio
    • Hiroyuki TANAKAHiroyoshi Nishio
    • G01N33/50
    • G01N35/00663G01F23/56G01N33/49G01N33/491G01N35/1002G01N2035/00217G01N2035/00326
    • An analyzing system, including: a plurality of inspection lines, each including a reagent supplying apparatus, and a plurality of hematology analyzers, each analyzing a measurement sample prepared from a blood sample and a reagent supplied from the reagent supplying apparatus; and a computer connected to the reagent supplying apparatuses, wherein each reagent supplying apparatus includes a storing part adapted to store a concentrated reagent, a detector adapted to detect a weight of or liquid level in the storing part, a first controller adapted to calculate a remaining amount of the concentrated reagent from an output of the detector and to transmit the calculated amount to the computer, and wherein the computer includes a display, and a second controller adapted to receive the amount data transmitted from the reagent supplying apparatuses, to generate display data integrating the plurality of received amount data and to show the display data on the display.
    • 一种分析系统,包括:多个检查线,各自包括试剂供应装置和多个血液分析仪,每个分析从由所述试剂供应装置供应的血液样品和试剂制备的测量样品; 连接到试剂供应装置的计算机,其中每个试剂供应装置包括适于存储浓缩试剂的存储部分,适于检测存储部分中的重量或液位的检测器,适于计算剩余物质的第一控制器 并且将计算出的量传送到计算机,并且其中计算机包括显示器和适于接收从试剂供应装置发送的量数据的第二控制器,以产生显示数据 整合多个接收量数据并在显示器上显示显示数据。
    • 6. 发明申请
    • FUEL CELL STACK
    • 燃料电池堆
    • US20110183227A1
    • 2011-07-28
    • US13007676
    • 2011-01-17
    • Hiroyuki TANAKANarutoshi SUGITAKentaro ISHIDAKeisuke ANDO
    • Hiroyuki TANAKANarutoshi SUGITAKentaro ISHIDAKeisuke ANDO
    • H01M8/04H01M8/24
    • H01M8/04201H01M8/0206H01M8/0247H01M2008/1095H01M2250/20Y02E60/50Y02T90/32
    • A fuel cell stack includes a plurality of unit cells stacked in a stacking direction substantially along a direction of gravity. Each of the plurality of unit cells includes a first metal separator, a second metal separator, and a membrane electrode assembly sandwiched between the first metal separator and the second metal. A reactant gas channel allows a reactant gas to flow along a surface of each of the first and second metal separators. A reactant gas inlet manifold and a reactant gas outlet manifold allow the reactant gas to flow the reactant gas inlet manifold and the reactant gas outlet manifold in the stacking direction. A bridge portion forms a connection channel to connect at least the reactant gas outlet manifold to the reactant gas channel. The bridge portion includes a guide portion to break a continuity of condensed water.
    • 燃料电池堆包括沿着重力方向沿层叠方向堆叠的多个单电池。 多个单元电池中的每一个包括第一金属隔板,第二金属隔板和夹在第一金属隔板和第二金属之间的膜电极组件。 反应气体通道允许反应气体沿着第一和第二金属分离器的每一个的表面流动。 反应气体入口歧管和反应物气体出口歧管允许反应气体在堆叠方向上流过反应气体入口歧管和反应气体出口歧管。 桥接部分形成连接通道以至少将反应气体出口歧管连接到反应气体通道。 桥接部分包括引导部分,以破坏冷凝水的连续性。