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    • 4. 发明授权
    • Color video camera with auto-white balance control
    • 彩色摄像机具有自动白平衡控制
    • US5182636A
    • 1993-01-26
    • US654198
    • 1991-02-12
    • Akihiro KikuchiToshiharu KondoTakashi KohashiFuniaki KatoKatsuaki Hirota
    • Akihiro KikuchiToshiharu KondoTakashi KohashiFuniaki KatoKatsuaki Hirota
    • H04N9/04H04N5/232H04N5/235H04N9/73
    • H04N9/735H04N5/23212H04N5/235H04N5/2351
    • In a color video camera providing color video signal components corresponding to a light image projected on an image pickup, only the levels of the color video signals components which correspond to at least substantially white regions of the light image are detected, and such detected levels of the color video signal components are integrated so as to obtain average values thereof as white-balance detection signals. The color video signal components which correspond to at least substantially white regions of the light image, and thus have their levels detected, may be those which occur during intervals corresponding to a white-balance detecting area positioned to correspond with a selected white area of the light image. Alternatively, the color video signal components may be sampled to provide pixel-by-pixel values thereof, whereupon, only those pixel-by-pixel values which are determined to be within a predetermined range of white as defined by a black body radiation curve are subjected to integration. The predetermined range is made relatively wide when the valve of the color video signal components deviate substantially from a desired white-balance relationship and the range is reduced as the values of the conponents come near to the desired relationship.
    • 在提供与投影在图像拾取器上的光图像相对应的彩色视频信号分量的彩色摄像机中,仅检测对应于光图像的至少基本上白色区域的彩色视频信号分量的电平, 彩色视频信号分量被积分,以获得作为白平衡检测信号的平均值。 对应于光图像的至少基本上白色区域并因此检测到其水平的彩色视频信号分量可以是在对应于被定位成对应于所选择的白色区域的白平衡检测区域的间隔期间发生的 光图像。 或者,可以对彩色视频信号分量进行采样以提供其逐像素值,因此,仅由被确定为由黑体辐射曲线限定的白色的预定范围内的像素逐个值是 受到整合。 当彩色视频信号分量的阀基本上偏离期望的白平衡关系时,预定范围相对较宽,并且随着构件的值接近期望的关系,该范围减小。
    • 5. 发明授权
    • Video camera
    • 录影机
    • US5274458A
    • 1993-12-28
    • US824227
    • 1992-01-22
    • Toshiharu KondoShuji ShimizuKatsuaki HirotaFumiaki Kato
    • Toshiharu KondoShuji ShimizuKatsuaki HirotaFumiaki Kato
    • H04N5/232H04N5/765H04N5/77H04N9/82H04N5/30H04N5/76
    • H04N9/82H04N5/335H04N5/772Y10S358/906
    • A switching circuit to selectively generate either one of an image pickup signal from an image pickup device and a reproduction video signal in which when the recording mode is set, the switching circuit is set to the side on which the image pickup signal from the image pickup device is supplied. When the reproducing mode is set, the switching circuit is set to the side on which the reproduction video signal is supplied. When the instantaneous reproduction is executed in the recording mode, the optical information from an optical information detecting circuit just before the switching circuit is switched from the side on which the image pickup signal is supplied to the side on which the reproduction video signal is supplied is held. An output of the switching circuit is converted into a digital signal. The digital signal is supplied to a digital signal processing circuit to process the digital signal and is also supplied to the optical information detecting circuit to detect the optical information.
    • 一种开关电路,用于选择性地产生来自图像拾取装置的图像拾取信号中的任一个和再现视频信号,其中当记录模式被设置时,切换电路被设置在来自图像拾取器的图像拾取信号的一侧 提供设备 当再现模式被设定时,切换电路被设置在提供再现视频信号的一侧。 当在记录模式下执行瞬时再现时,来自开关电路之前的光学信息检测电路的光学信息从提供摄像信号的一侧切换到提供再现视频信号的一侧的光信息是 保持。 开关电路的输出被转换为数字信号。 数字信号被提供给数字信号处理电路以处理数字信号,并且还被提供给光学信息检测电路以检测光学信息。
    • 8. 发明申请
    • Solid-state image pickup device and drive method thereof
    • 固体摄像装置及其驱动方法
    • US20060203113A1
    • 2006-09-14
    • US10545740
    • 2004-02-20
    • Takamasa WadaEiichi FunatsuKeiji MabuchiKen NakajimaKatsuaki HirotaNobuyuki SatouTakashi AbeTomoyuki UmedaNobuo NakamuraHiroaki FujitaHiroki Sato
    • Takamasa WadaEiichi FunatsuKeiji MabuchiKen NakajimaKatsuaki HirotaNobuyuki SatouTakashi AbeTomoyuki UmedaNobuo NakamuraHiroaki FujitaHiroki Sato
    • H04N3/14H04N5/335
    • H04N9/045H04N5/3456H04N5/3458H04N5/347H04N5/374
    • When pixels are simply skipped while keeping both an order of pixel information and a spatial positional relation the same as those in all-pixel readout, since a distance between pixels to be read out increases, the Nyquist frequency decreases and aliasing noise increases. A 5×5 pixel block is set as a unit pixel block and pieces of pixel information in first, third, and fifth columns of first, third, and fifth rows of a pixel arrangement are added and outputted as an output in an ath row and an ath column of the unit pixel block. Then, pieces of pixel information in sixth, eighth, and tenth columns of the first, the third, and the fifth rows of the pixel arrangement are added and outputted as an output in the ath row and a bth column of the unit pixel block. Subsequently, pieces of pixel information are added and outputted up to a last column or a column near the last column. Thereafter, pieces of pixel information in the first, the third, and the fifth columns of the sixth, the eighth, and the tenth rows of the pixel arrangement are added and outputted as an output in a bth row and the ath column of the unit pixel block. Subsequently, all arbitrary pixels are read out while repeating the same operation and skipping and adding pieces of pixel information.
    • 当像素被简单地跳过同时保持像素信息的顺序和空间位置关系与全像素读出中的顺序相同时,由于要读出的像素之间的距离增加,所以奈奎斯特频率降低并且混叠噪声增加。 将5×5像素块设置为单位像素块,并且将像素布置的第一,第三和第五行的第一,第三和第五列中的像素信息的像素信息相加并输出为运动行中的输出,并且运动 单位像素块的列。 然后,将像素配置的第一,第三和第五行的第六列,第八列和第五列中的像素信息的像素信息相加并输出为单位像素块的运动行和第b列中的输出。 随后,将像素信息添加并输出到最后一列或靠近最​​后一列的列。 此后,将像素配置的第六行,第八行和第十行的第一列,第三列和第五列中的像素信息相加并输出为第b行的输出和单元的运动列 像素块。 随后,在重复相同的操作并跳过和添加像素信息的同时读出所有任意像素。