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    • 21. 发明申请
    • Amplifying-type solid-state imaging device
    • 放大型固态成像装置
    • US20080185502A1
    • 2008-08-07
    • US12012054
    • 2008-01-31
    • Eiji Koyama
    • Eiji Koyama
    • H03K19/14
    • H03K19/14
    • An amplification type solid-state image pickup device of the invention includes a plurality of photoelectric conversion sections 10 each having an embedded photodiode 1 and a transfer transistor 2, a switched capacitor amplifier section 20 whose input side is connected to a charge detection node 8 to which output terminals of the plurality of photoelectric conversion sections 10 are connected in common, and a current amplification section 21 connected between the switched capacitor amplifier section 20 and a vertical signal line 9. Signal charge from the plurality of photoelectric conversion sections 10 is converted into voltage by the switched capacitor amplifier section 20, and the converted signal is current-amplified by the current amplification section 21 and outputted to the vertical signal line 9. Thus, a less-noise, high-quality image can be obtained while a reduction of the pixel size is achieved by reducing the number of transistors per pixel.
    • 本发明的放大型固态摄像装置具有:多个光电转换部10,分别具有嵌入式光电二极管1和转移晶体管2,开关电容放大部20的输入侧与电荷检测节点8连接, 多个光电转换部10的输出端子共同连接,连接在开关电容放大部20和垂直信号线9之间的电流放大部21。 来自多个光电转换部10的信号电荷被切换电容放大部20转换成电压,转换后的信号由电流放大部21进行电流放大后输出到垂直信号线9。 因此,可以通过减少每像素的晶体管数量来实现像素尺寸的减小,而获得较低噪声,高质量的图像。
    • 22. 发明申请
    • Amplification type solid-state imaging device
    • US20060237631A1
    • 2006-10-26
    • US11405752
    • 2006-04-18
    • Eiji Koyama
    • Eiji Koyama
    • H03F3/08
    • H04N5/37457H04N5/3559
    • In the amplification type solid-state imaging device of the present invention, the input side of a switched capacitor amplifier portion 20 is connected to the output side of each transfer transistor 2 of a photoelectric conversion and transfer portion group obtained by grouping a plurality of photoelectric conversion and transfer portions 10 having a photodiode 1 and a transfer transistor 2, and the output side of the switched capacitor amplifier portion 20 is connected to a vertical signal line 9. The switched capacitor amplifier portion 20 has a signal charge storage portion 8, an amplification transistor 3 whose input side is connected to the signal charge storage portion 8, and a capacitor 6 and a reset transistor 5 connected between the input and output of the amplification transistor 3. By controlling the reset transistor 5 and a switchover portion 12 by a control section 25, the input side voltage of the inverting amplifier constructed of the amplification transistor 3 and the constant current load transistor 4 is controlled. According to the device, a high-quantity image can be obtained, and the pixel size can be reduced.
    • 27. 发明申请
    • LIQUID CRYSTAL DISPLAY
    • 液晶显示器
    • US20110157521A1
    • 2011-06-30
    • US13055158
    • 2009-07-22
    • Katsusuke ShimazakiYoichi OgawaEiji KoyamaMasataka Sato
    • Katsusuke ShimazakiYoichi OgawaEiji KoyamaMasataka Sato
    • G02F1/13357
    • G02B5/045G02B6/0038G02B6/0051G02B6/0053G02B6/0055G02F1/133504
    • A liquid crystal display according to the present invention includes a light source, an optical control member, and a liquid crystal display panel. Said optical control member includes a base having optical transparency and a plurality of linear structures provided on said base, a section of the linear structure orthogonal to its extending direction includes a first sectional portion having a triangular shape defined by first to third sides, and a second sectional portion having a plurality of triangular structures each having a smaller area than the first sectional portion and defined by fourth to sixth sides, the first side of the first sectional portion is abutted on and parallel to a surface of said base, the second sectional portion is provided on the second side of the first sectional portion, and the fourth side of the second sectional portion is abutted on and parallel to the second side of the first sectional portion. Said liquid crystal display panel having a polarizing plate arranged in a direction to transmit a P-polarized component is provided on the side of the light output surface of said optical control member. Therefore, the liquid crystal display according to the present invention can solve the problems of color separation and insufficient luminance.
    • 根据本发明的液晶显示器包括光源,光学控制部件和液晶显示面板。 所述光学控制构件包括具有光学透明度的基座和设置在所述基座上的多个线性结构,与其延伸方向垂直的线性结构的一部分包括具有由第一至第三侧限定的三角形形状的第一截面部分,以及 第二截面部分具有多个三角形结构,每个三角形结构具有比第一截面部分更小的面积并且由第四至第六侧限定,第一截面部分的第一侧邻接并平行于所述基部的表面,第二部分 部分设置在第一截面部分的第二侧上,第二截面部分的第四侧邻接并平行于第一截面部分的第二侧。 在所述光学控制部件的光输出面的一侧,设置具有配置在透射P偏振成分的方向上的偏光板的液晶显示面板。 因此,根据本发明的液晶显示器可以解决色彩分离和亮度不足的问题。
    • 29. 发明授权
    • Amplifying solid-state imaging device
    • 放大固态成像装置
    • US07667754B2
    • 2010-02-23
    • US11090473
    • 2005-03-24
    • Eiji Koyama
    • Eiji Koyama
    • H04N3/14H04N5/335
    • H04N5/37457H04N5/3559
    • An input side of a switched capacitor amplifier section is connected to output sides of transfer transistors of a photoelectric conversion transfer section group comprised of a prescribed number of a plurality of photoelectric conversion transfer sections, each of which has a photodiode and a transfer transistor. An output side of the switched capacitor amplifier section is connected to a vertical signal line. The switched capacitor amplifier section has a signal charge storage section, an amplification transistor whose an input side is connected to the signal charge storage section, a capacitor connected between input and output sides of the amplification transistor and a reset transistor. A voltage at the ground terminal of an inverting amplifier, which is constructed of a constant current load transistor connected to the output side of the amplification transistor via the vertical signal line and the amplification transistor, is controlled by a vertical scanning circuit.
    • 开关电容放大器部分的输入侧连接到由规定数量的多个光电转换转移部分组成的光电转换转移部分组的转移晶体管的输出侧,每个光电转换转移部分都具有光电二极管和转移晶体管。 开关电容放大器部分的输出侧连接到垂直信号线。 开关电容放大器部分具有信号电荷存储部分,其输入侧连接到信号电荷存储部分的放大晶体管,连接在放大晶体管的输入和输出侧之间的电容器和复位晶体管。 反相放大器的接地端的电压由垂直扫描电路控制,该反相放大器的接地端由经由垂直信号线和放大晶体管连接到放大晶体管的输出侧的恒流负载晶体管构成。
    • 30. 发明授权
    • Air-conditioning system and method of installing energy recovery apparatus
    • 空调系统及安装能量回收装置的方法
    • US07296429B2
    • 2007-11-20
    • US10808625
    • 2004-03-24
    • Yuji TanakaYukihiro FujitaEiji KoyamaKouich Satou
    • Yuji TanakaYukihiro FujitaEiji KoyamaKouich Satou
    • F25D17/02F25D17/00F25B27/00
    • F24F12/00F24F3/06F24F11/83Y02E10/28Y02E60/17Y10S165/902
    • There is provided an energy recovery apparatus capable of recovering a hydraulic energy in a regenerative air-conditioning system including a pressure sustaining valve and capable of coping with a discharge change caused by variation in air-conditioning load, the air-conditioning system being capable of carrying out normal operation even in a case where the energy recovery apparatus fails. The energy recovery apparatus is configured so as to feed water from a water tank to air-conditioning loads such as a heat source or a fan coil at a higher place through a feed pipe line by a pump and to lead the water passed through the air-conditioning loads into the water tank via a return pipe line including the pressure sustaining valve, a branch pipe line is disposed so as to branch into the water tank from the return pipe line in upstream of the pressure sustaining valve, and the energy recovery apparatus is connected in to the branch pipe line.
    • 提供一种能够回收包括压力维持阀的再生空调系统中的液压能量并能够应对由空调负荷变化引起的排出变化的能量回收装置,该空调系统能够 即使在能量回收装置发生故障的情况下也进行正常动作。 能量回收装置被配置为通过泵将来自水箱的水通过供给管线从水供给到较高处的诸如热源或风扇盘管的空调负载,并引导通过空气的水 通过包括压力维持阀的返回管路将负载转移到水箱中,分支管线设置成从压力维持阀上游的回流管路分支到水箱中,能量回收装置 连接到分支管路。