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    • 4. 发明授权
    • Intermittent driving type imaging device for portable terminal
    • 便携式终端的间歇式驱动型成像装置
    • US07324147B2
    • 2008-01-29
    • US10259452
    • 2002-09-30
    • Kozo IshidaTetsuya KunoKoichi YamashitaHiroaki SugiuraTakashi Itow
    • Kozo IshidaTetsuya KunoKoichi YamashitaHiroaki SugiuraTakashi Itow
    • H04N3/14H04N5/335
    • H04N5/2353H04N1/00307H04N5/217H04N5/2351
    • An imaging system controller (5) outputs a control signal (VC). The control signal (VC) gives a command to output driving clocks (φVn, φHm) of an imaging element (1) in a signal transmission period, and a command to suspend output of the clocks (φVn, φHm) in an idle period subsequent to the signal transmission period. The length of the idle period is a multiple of the length of the signal transmission period by a natural number. The imaging system controller (5) periodically repeats output of the control signal (VC) giving these commands a number of times corresponding to the number of horizontal lines of the imaging element (1). In response to the commands of the control signal (VC), a timing generator (2) generates and outputs the clocks (φVn, φHm), and suspends generation and output of the same. An imaging device (10) thereby intermittently drives the imaging element (1), to generate and output a picked-up image signal (V2).
    • 成像系统控制器(5)输出控制信号(VC)。 控制信号(VC)给出了在信号发送期间输出摄像元件(1)的驱动时钟(phiVn,phiHm)的命令,以及在空闲时段中暂停时钟(phiVn,phiHm)的输出的命令 到信号传输周期。 空闲周期的长度是信号传输周期的长度乘以自然数的倍数。 成像系统控制器(5)周期性地重复控制信号(VC)的输出,给出这些命令与成像元件(1)的水平线数相对应的次数。 响应于控制信号(VC)的命令,定时发生器(2)产生并输出时钟(phiVn,phiHm),并暂停其产生和输出。 成像装置(10)由此间歇地驱动成像元件(1),以产生并输出拾取图像信号(V 2)。
    • 7. 发明申请
    • Pixel signal processor and pixel signal processing method
    • 像素信号处理器和像素信号处理方法
    • US20070019087A1
    • 2007-01-25
    • US10582501
    • 2005-07-22
    • Tetsuya KunoJunko MakitaHiroaki SugiuraNarihrio MatobaMasashi Tamura
    • Tetsuya KunoJunko MakitaHiroaki SugiuraNarihrio MatobaMasashi Tamura
    • H04N9/04
    • H04N9/045
    • A pixel signal having a k-th spectral characteristic at a pixel interpolation position occupied by a pixel signal having an h-th spectral characteristic is generated from a set of pixel signals arrayed in a two-dimensional plane, each having one of a plurality of spectral characteristics, by calculating a difference between low-frequency components, corresponding to a degree of correlation between pixel signals having the k-th and h-th spectral characteristics in a neighborhood of the pixel interpolation position (8r, 8g, 8b, 24k, 24h, 26), calculating a non-correlation value corresponding to a degree of non-correlation between the pixel signals having the k-th and h-th spectral characteristics in the neighborhood of the pixel interpolation position (7r, 7g, 7b, 23k, 23h, 25), and obtaining the pixel signal having the k-th spectral characteristic at the pixel interpolation position by using the calculated difference and the non-correlation value (27, 28, 29). Accurate interpolation can be performed despite various different correlation relationships between color component values.
    • 在由二维平面中排列的像素信号的集合中生成具有由具有第h个光谱特性的像素信号占据的像素插值位置处的第k个光谱特性的像素信号,每个像素信号具有多个 频谱特性,通过计算与像素内插位置(8 r,8 g,8 b)相邻的第k和第h个光谱特性的像素信号之间的相关度相对应的低频分量之间的差异 ,24k,24h,26),计算与像素内插位置(7r)附近的第k和第h光谱特性的像素信号之间的非相关程度对应的非相关值 ,7g,7b,23k,23h,25),并且通过使用所计算的差异和非相关值(27,28,29)获得具有在像素插值位置处的第k个光谱特性的像素信号 )。 尽管颜色分量值之间存在各种不同的相关关系,仍可进行准确的插值。