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    • 6. 发明授权
    • Amplifying-type solid-state imaging device
    • 放大型固态成像装置
    • US07476837B2
    • 2009-01-13
    • US12012054
    • 2008-01-31
    • Eiji Koyama
    • Eiji Koyama
    • H01L27/146H04N5/335
    • 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,将来自多个光电转换部10的信号电荷转换成 电压由转换电容放大器部分20转换,转换后的信号由电流放大部分21进行电流放大,并输出到垂直信号线9.因此,可以获得较低噪声,高质量的图像,同时减少 通过减少每像素的晶体管数量来实现像素尺寸。
    • 9. 发明授权
    • Method of apparatus for realizing a logical operation by modifying a
flow of energy
    • 通过修改能量流来实现逻辑运算的装置的方法
    • US4875181A
    • 1989-10-17
    • US60936
    • 1987-06-09
    • Friedrich-Wilhelm Hagemeyer
    • Friedrich-Wilhelm Hagemeyer
    • H03K19/00H03K19/14
    • H03K19/00H03K19/14
    • A device for realizing logical operations operates extremely fast and exhibits the particular advantage that it can be converted from one logical operation to another so that a plurality of logical operations can be realized with a single component. The device comprises an operation channel which includes a light path for linearly-polarized light, an analyzer which comprises a polarization filter and an operation control which influences the plane of polarization of the polarized light and can controllably alter its rotary position. The rotary position of the plane of polarization of the light is binarily evaluated by the analyzer. The operation control is controlled by logical variables and the logical operation can be modified by one or more separate inputs. Such an embodiment exploits the Faraday effect. A similar device in another embodiment exploits the Pockels effect in which the phase of the light is changed and evaluated with respect to a reference phase.
    • 用于实现逻辑操作的设备操作非常快,并且具有其可以从一个逻辑操作转换成另一个的特殊优点,使得可以用单个组件实现多个逻辑操作。 该装置包括包括用于线性偏振光的光路的操作通道,包括偏振滤光器的分析器和影响偏振光的偏振平面并且可以可控地改变其旋转位置的操作控制。 光的偏振面的旋转位置由分析仪二次评价。 操作控制由逻辑变量控制,逻辑运算可由一个或多个单独的输入修改。 这样的实施例利用了法拉第效应。 另一实施例中的类似装置利用了Pockels效应,其中相对于参考相位改变和评估光的相位。
    • 10. 发明授权
    • Signal processing apparatus and method
    • 信号处理装置及方法
    • US4519046A
    • 1985-05-21
    • US293225
    • 1981-08-07
    • Trevor W. Cole
    • Trevor W. Cole
    • G02F3/00G06E3/00H03K19/14H03K19/20G06G9/00
    • H03K19/14G06E3/005
    • Signal processing, particularly correlation and auto-correlation, is effected using a "light panel". The light panel consists of (a) an array of two-terminal light-emitting or light-modulating elements (10), the optical state of each element being changed from a first state to a second state when a voltage difference is applied across its terminals, and (b) a complementary array of photo-diodes (12), each arranged to receive light from a respective element of the array of light-emitting or light-modulation elements (10). The interconnection between the two arrays may be simply an optical lens (11). For auto-correlation, each array may be a linear array, with the signal from a single signal source applied to the terminals of each element (10) both instantaneously and after a predetermined time delay. For cross-correlation, each element (10) will be located at a cross-over point of an m x n matrix of conductors (insulated from each other) with its terminals connected to respective conductors at the cross-over point. When the light panel is used for correlation, the photodiodes act as charge integrators. Uses of the apparatus and method include image processing, image analysis and speckle interferometry.
    • PCT No.PCT / AU80 / 00109 Sec。 371日期1981年8月7日 102(e)日期1981年8月7日PCT提交1980年12月16日PCT公布。 出版物WO81 / 01927 日期:1981年7月9日。信号处理,特别是相关和自相关,使用“亮面板”进行。 该光板包括(a)两端发光或光调制元件阵列(10),当在其上施加电压差时,每个元件的光学状态从第一状态改变到第二状态 端子,以及(b)互补阵列的光电二极管(12),每个光电二极管(12)被布置成接收来自发光或光调制元件阵列(10)的相应元件的光。 两个阵列之间的互连可以仅仅是光学透镜(11)。 对于自相关,每个阵列可以是线性阵列,其中来自单个信号源的信号瞬时地和在预定时间延迟之后施加到每个元件(10)的端子。 对于互相关,每个元件(10)将位于m×n矩阵的导体(彼此绝缘)的交叉点处,其端子在交叉点处连接到相应的导体。 当光板用于相关时,光电二极管充当电荷积分器。 该装置和方法的使用包括图像处理,图像分析和斑点干涉测量。