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    • 3. 发明申请
    • PHOTOELECTRIC CONVERSION DEVICE AND ELECTRONIC DEVICE HAVING THE SAME
    • 光电转换装置和具有该光电转换装置的电子装置
    • US20100035661A1
    • 2010-02-11
    • US12512280
    • 2009-07-30
    • Seiko AMANOHiroyuki MIYAKE
    • Seiko AMANOHiroyuki MIYAKE
    • H04M1/00H03K4/94
    • H03K4/06
    • To output a digital signal corresponding to illuminance without being adversely affected by circuit delay. A photoelectric conversion device includes a photoelectric conversion element; a ramp-wave output circuit; a first comparator for comparing the ramp-wave signal and a first potential; a second comparator for comparing the ramp-wave signal and a second potential; a flip-flop circuit for generating a clock signal whose frequency is changed in accordance with the amount of photocurrent; a circuit for calculating a negative OR of the output signal of the first comparator and the output signal of the second comparator; a counter circuit for counting the pulse number of the clock signal; and a pulse output circuit for generating a period during which the pulse number is counted in the counter circuit. The pulse output circuit includes a switch for stopping the generation of the period during which the pulse number is counted.
    • 输出对应于照度的数字信号,而不受电路延迟的不利影响。 光电转换装置包括光电转换元件; 斜坡输出电路; 第一比较器,用于比较斜坡波信号和第一电位; 第二比较器,用于比较斜坡波信号和第二电位; 用于产生频率根据光电流量而变化的时钟信号的触发器电路; 用于计算第一比较器的输出信号和第二比较器的输出信号的负OR的电路; 用于对时钟信号的脉冲数进行计数的计数器电路; 以及用于产生在计数器电路中对脉冲数进行计数的周期的脉冲输出电路。 脉冲输出电路包括用于停止脉冲数被计数的周期的产生的开关。
    • 4. 发明申请
    • LIGHT EMITTING DEVICE
    • 发光装置
    • US20130001608A1
    • 2013-01-03
    • US13612249
    • 2012-09-12
    • Seiko AMANO
    • Seiko AMANO
    • H01L33/08
    • H01L27/3276H01L27/1214H01L27/1244H01L27/3262H01L51/5246H01L51/5253H01L2251/5338H05B33/04
    • It is an object of the present invention to prevent an insulating film from peeling in a section where the insulating film is adjacent to a sealing region. Over a first substrate 104, a pixel portion 100 provided with a light emitting element, a source driver 101, a gate driver 102, and a sealing region 103 are provided. A light emitting element is sealed between the first substrate 104 and a second substrate 110 by a sealant 108. An insulating film 107 serves as a partition wall of the light emitting element. An end portion of the insulating film 107 which is adjacent to the sealing region 103 does not overlap with a step formed by a side surface and an upper surface of a conductive film 106 which serves as a wiring.
    • 本发明的目的是防止绝缘膜在绝缘膜与密封区域相邻的部分中剥离。 在第一基板104上设置有设置有发光元件的像素部分100,源极驱动器101,栅极驱动器102和密封区域103。 发光元件通过密封剂108密封在第一基板104和第二基板110之间。绝缘膜107用作发光元件的分隔壁。 与密封区域103相邻的绝缘膜107的端部与由用作布线的导电膜106的侧面和上表面形成的台阶不重叠。
    • 6. 发明申请
    • PHOTOMETRIC DEVICE
    • 光学设备
    • US20090324244A1
    • 2009-12-31
    • US12487287
    • 2009-06-18
    • Jun KOYAMASeiko AMANO
    • Jun KOYAMASeiko AMANO
    • H04B10/00
    • G01J1/44G01J2001/4426H03F3/08
    • A photometric device with a wide dynamic range. The photometric device includes a constant current generation circuit, a fixed clock signal generation circuit which generates a fixed clock signal having a fixed frequency, a photoelectric conversion element, a variable clock signal generation circuit and a digital signal generation circuit. The fixed clock signal generation circuit generates a fixed clock signal that oscillates at a fixed frequency, from constant current The variable clock signal generation circuit generates a variable clock signal that oscillates at a frequency proportional to the amount of photocurrent, from photocurrent generated in the photoelectric conversion element. The digital signal generation circuit sets a measurement period using the fixed clock signal, counts the number of pulses of the variable clock signal that oscillates for the measurement period, and outputs a digital signal including the count value as data.
    • 具有宽动态范围的光度测量装置。 测光装置包括恒流产生电路,产生具有固定频率的固定时钟信号的固定时钟信号产生电路,光电转换元件,可变时钟信号产生电路和数字信号产生电路。 固定时钟信号产生电路从恒定电流产生以固定频率振荡的固定时钟信号。可变时钟信号发生电路产生以与光电流量成比例的频率振荡的可变时钟信号,光电流产生的光电流 转换元素。 数字信号发生电路使用固定时钟信号设置测量周期,对在测量周期中振荡的可变时钟信号的脉冲数进行计数,并将包括计数值的数字信号作为数据输出。