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    • 5. 发明授权
    • White light-emitting organic electroluminescence (EL) device and method of adjusting chromaticity of the device
    • 白色发光有机电致发光(EL)装置及其调节色度的方法
    • US07812521B2
    • 2010-10-12
    • US12221763
    • 2008-08-05
    • Kenji MoriIchiro YamamotoTakanori Murasaki
    • Kenji MoriIchiro YamamotoTakanori Murasaki
    • H01L51/50
    • H01L51/5036H01L51/5016
    • The white light-emitting organic EL device of the present invention comprises: an anode, a cathode, at least a red light-emitting layer, a blue light-emitting layer and a green light-emitting layer provided between the anode and the cathode, and an intermediate layer between any two adjacent layers of the respective light-emitting layers, wherein, when CIE chromaticity coordinates of a dopant incorporated into the red light-emitting layer are represented by (xR, yR), CIE chromaticity coordinates of a dopant incorporated into the blue light-emitting layer are represented by (xB, yB), CIE chromaticity coordinates of a dopant incorporated into the green light-emitting layer are represented by (xG, yG), and target CIE chromaticity coordinates of white light emitted from the device are represented by (xt, yt), Δy represented as a difference between yR and yB, and Δx represented as a difference between xG and xt satisfy the following relationships: Δy≦0.18 Δx≦0.10.
    • 本发明的白色发光有机EL元件包括阳极,阴极,至少红色发光层,蓝色发光层和设置在阳极和阴极之间的绿色发光层, 以及在各发光层的任意两个相邻层之间的中间层,其中当掺入到红色发光层中的掺杂剂的CIE色度坐标由(xR,yR)表示时,掺杂掺杂的CIE色度坐标 通过(xB,yB)表示蓝色发光层,掺入到绿色发光层中的掺杂剂的CIE色度坐标由(xG,yG)表示,并且由(xG,yG)表示的白色光的目标CIE色度坐标 器件由(xt,yt)表示,&Dgr; y表示为yR和yB之间的差,并且表示为xG和xt之间的差的&Dgr; x满足以下关系:&Dgr; y≦̸ 0.18&Dgr; x≦̸ 0.10。
    • 7. 发明授权
    • Fuse circuit
    • 保险丝电路
    • US07668033B2
    • 2010-02-23
    • US12185183
    • 2008-08-04
    • Kenji MoriMasayuki Takori
    • Kenji MoriMasayuki Takori
    • G11C17/18
    • G11C17/16
    • A fuse circuit in accordance with one embodiment of the present invention includes a first power supply line, a second power supply line, a current source connected between the first power supply line and an output terminal, a first transistor having a drain or a collector connected to the output terminal, the first transistor having a current supply capability or a current draw capability larger than that of the current source for the output terminal, a second transistor having a gate or a base connected in common with the gate or the base of the first transistor, a first resistive element and a fuse connected in series between the source or the emitter of either one of the first or second transistor and the second power supply line, and a second resistive element connected between the source or the emitter of the other one of the first or second transistor and the second power supply line.
    • 根据本发明的一个实施例的熔丝电路包括第一电源线,第二电源线,连接在第一电源线和输出端之间的电流源,连接有漏极或集电极的第一晶体管 至所述输出端子,所述第一晶体管具有大于所述输出端子的电流源的电流供应能力或电流消耗能力的第二晶体管,具有与所述栅极或所述栅极或基极共同连接的栅极或基极的第二晶体管 第一晶体管,第一电阻元件和熔丝串联连接在第一或第二晶体管和第二电源线中的任一个的源极或发射极之间,以及连接在另一个的源极或发射极之间的第二电阻元件 第一或第二晶体管和第二电源线之一。
    • 10. 发明申请
    • Method of adjusting timing difference between pre-corrected source program and post-corrected source program, compiler and information processor
    • 调整预校正源程序与经过校正的源程序,编译器和信息处理器之间的时序差异的方法
    • US20090083713A1
    • 2009-03-26
    • US12232005
    • 2008-09-09
    • Kenji Mori
    • Kenji Mori
    • G06F9/44
    • G06F11/3612G06F8/4441
    • A method of adjusting a control timing accompanying a program correction of a machine language program executed by an information processor includes preparing a first machine language program obtained by compiling a first source program and generating a second intermediate language program from a second source program, the second source program being corrected from the first source program. Then, the method computes a first number of clock cycles, that is a number of clock cycles to execute a first machine language program obtained by compiling the first source program and computes a second number of clock cycles, that is a number of clock cycles to execute a second machine language program obtained by compiling the second source program, using the second intermediate language program, the second intermediate language program including an instruction that is uniquely correlated with a machine language instruction of the second machine language program. Then, the second number of clock cycles with the first number of clock cycles are compared and the second machine language program is adjusted by performing at least one of addition, deletion and modification of the second machine language program to reduce a difference between the first number of clock cycles and second number of clock cycles, based on the second intermediate language program.
    • 一种调整伴随由信息处理机执行的机器语言程序的程序校正的控制定时的方法包括准备通过编译第一源程序并从第二源程序生成第二中间语言程序而获得的第一机器语言程序,第二 源程序正在从第一个源程序修正。 然后,该方法计算第一数量的时钟周期,即执行通过编译第一源程序而获得的第一机器语言程序并计算第二数量的时钟周期的多个时钟周期,即第几个时钟周期 执行通过使用第二中间语言程序编译第二源程序而获得的第二机器语言程序,第二中间语言程序包括与第二机器语言程序的机器语言指令唯一相关的指令。 然后,比较具有第一数量时钟周期的第二数量的时钟周期,并且通过执行第二机器语言程序的添加,删除和修改中的至少一个来调整第二机器语言程序,以减少第一个数字之间的差异 的时钟周期和第二数量的时钟周期,基于第二中间语言程序。