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    • 44. 发明申请
    • ORGANIC EL DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME
    • 有机EL显示装置及其制造方法
    • US20120223633A1
    • 2012-09-06
    • US13399132
    • 2012-02-17
    • Tadahiko YoshinagaToshiki MatsumotoTomoyuki Higo
    • Tadahiko YoshinagaToshiki MatsumotoTomoyuki Higo
    • H05B33/14H01J9/00
    • H01L51/50H01L27/3211H01L51/5016H01L51/504H01L51/5056H01L51/56
    • Disclosed herein is an organic EL display device, including: a lower electrode provided every first organic EL element for a blue color and every second organic EL element for another color on a substrate; a hole injection/transport layer provided every first and second organic EL elements; a second organic light emitting layer for another color provided on said hole injection/transport layer for said second organic EL element; a connection layer made of a low-molecular material and provided over an entire surface of said hole injection/transport layer for said second organic light emitting layer and said first organic EL element; a first organic light emitting layer for a blue color provided over an entire surface of said connection layer; and an electron injection/transport layer and an upper electrode provided over an entire surface of said organic light emitting layer in order.
    • 本发明公开了一种有机EL显示装置,包括:下部电极,其设置有用于蓝色的第一有机EL元件和用于基板上的另一颜色的第二有机EL元件; 每个第一和第二有机EL元件提供空穴注入/传输层; 用于所述第二有机EL元件的所述空穴注入/传输层上提供的用于另一颜色的第二有机发光层; 由低分子材料制成的连接层,设置在所述第二有机发光层和所述第一有机EL元件的所述空穴注入/输送层的整个表面上; 设置在所述连接层的整个表面上的用于蓝色的第一有机发光层; 以及依次设置在所述有机发光层的整个表面上的电子注入/传输层和上电极。
    • 45. 发明授权
    • Vehicle control system
    • 车辆控制系统
    • US07970516B2
    • 2011-06-28
    • US12080437
    • 2008-04-02
    • Toshiki MatsumotoMamoru Sawada
    • Toshiki MatsumotoMamoru Sawada
    • B60R22/00
    • F16F15/02B60C99/006B60T8/173B60T2260/08B60T2270/86B60W10/06B60W10/08B60W10/184B60W30/025B60W30/04B60W30/20B60W2050/0036
    • A vehicle control system estimates the vibration states of tires by using a vehicle vibration model that is separated into a vehicle body vibration model, a chassis vibration model, and a tire vibration model with high precision. The tire vibration model in the vehicle vibration model is formed of a rear wheel tire vibration model, a front wheel tire vibration model, and a virtual coupling element vibration model that virtually couples the rear wheel tire vibration model and the front wheel tire vibration model. Influence of the vibration state that is conducted between the front wheel tires and the rear wheel tires is considered while the tire vibration model and the chassis vibration model are separated from each other, thereby making it possible to estimate the vibrations that occur in the front wheel tires and the rear wheel tires.
    • 车辆控制系统通过使用分离成车体振动模型,底盘振动模型和轮胎振动模型的车辆振动模型来高精度地估计轮胎的振动状态。 车辆振动模型中的轮胎振动模型由实际上将后轮轮胎振动模型和前轮轮胎振动模型耦合的后轮轮胎振动模型,前轮轮胎振动模型和虚拟耦合元件振动模型形成。 在轮胎振动模型和底盘振动模型彼此分离的同时考虑在前轮轮胎和后轮轮胎之间进行的振动状态的影响,从而可以估计在前轮轮胎和后轮轮胎之间发生的振动 轮胎和后轮轮胎。
    • 48. 发明申请
    • HIGH VOLTAGE GENERATION CIRCUIT, PUNCTURE DEVICE, AND BLOOD TEST DEVICE
    • 高压发生电路,探针装置和血液测试装置
    • US20100219769A1
    • 2010-09-02
    • US12681720
    • 2008-10-14
    • Keisuke MatsumuraToshiki Matsumoto
    • Keisuke MatsumuraToshiki Matsumoto
    • H05B37/02
    • A61B5/157A61B5/150022A61B5/150099A61B5/150213A61B5/150358A61B5/150793A61B5/150824A61B5/150954A61B5/15113A61B5/15134A61B5/15138H02M3/156H03K3/57
    • A high voltage generation circuit for laser puncture in which the voltage for laser puncture can be boosted up to the laser oscillation level in a short time with low power loss. The high voltage generation circuit (21) drives a laser unit section (26) for puncturing the skin by oscillating laser light. In the high voltage generation circuit (21), a capacitor (25) is charged to supply power to the laser unit section (26). A booster circuit section (24) supplies a current to the capacitor (25), and a voltage measuring section (27) measures the voltage of the capacitor (25). A control section (28) controls the booster circuit section (24) based on an instruction from a user or the voltage of the capacitor (25) to start precharge of the capacitor (25) with a first current value at a first timing, and to start main charge of the capacitor (25) with a second current value higher than the first current value at a second timing later than the first timing.
    • 用于激光穿刺的高电压产生电路,其中用于激光穿刺的电压可以在短时间内以低功率损耗升高到激光振荡电平。 高电压发生电路21通过振荡的激光驱动用于对皮肤进行穿刺的激光单元部26。 在高电压产生电路21中,对激光单元部26供电,对电容器25进行充电。 升压电路部(24)向电容器(25)供给电流,电压测定部(27)测量电容器(25)的电压。 控制部分(28)基于来自用户的指令或电容器(25)的电压来控制升压电路部分(24),以在第一定时以第一电流值开始电容器(25)的预充电;以及 在比第一定时晚的第二定时,以比第一电流值高的第二电流值开始电容器(25)的主要充电。