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    • 9. 发明授权
    • Distance detecting device and a focus control system utilizing the same
    • 距离检测装置和利用其的聚焦控制系统
    • US4329033A
    • 1982-05-11
    • US121690
    • 1980-02-15
    • Makoto MasunagaTakao KinoshitaToshio SakaneTokuichi TsunekawaKazuya HosoeTakashi AmikuraIsao Harigaya
    • Makoto MasunagaTakao KinoshitaToshio SakaneTokuichi TsunekawaKazuya HosoeTakashi AmikuraIsao Harigaya
    • G03B13/36G02B7/28G02B7/30G03B3/10G01C3/08
    • G02B7/28G02B7/30
    • A distance detecting device in which, with respect to an object whose distance is to be detected, the images of a first and a second field following different lines of sight and containing the object and different in range are scanned while, at the same time, continuous M quantized image element data regarding the first field image and continuous N (N>M) quantized image element data regarding the second field image are obtained and the M image element data regarding the first field image are stored in a first circulation type shift register while the first M image element data of the N image element data regarding the second field image are stored in a second circulation type shift register and the remaining N-M image element data are stored in a third shift register, and the comparison between the stored data of the first and second shift registers during one circulation of said stored data and the relative shift of n bits each of the stored data of the second and third shift registers with respect to the stored data of the first shift register are repeatedly effected to thereby detect the distance to the object, characterized in that in the circulation circuit of the first shift register, bypass means is provided for delaying one circulation of the stored data of the first shift register by n bits relative to one circulation of the stored data of the second shift register and the stored data of the first shift register are circulated through the bypass means, whereby for each one circulation of the stored data of the first shift register, the stored data of the second shift register are shifted by n bits each relative to the stored data of the first shift register.
    • 一种距离检测装置,其中,对于要检测距离的物体,扫描不同视线并包含物体并且在不同范围内的第一场和第二场的图像,同时, 获得关于第一场图像和关于第二场图像的连续N(N> M)个量化图像元素数据的连续M量化图像元素数据,并且关于第一场图像的M个图像元素数据被存储在第一循环型移位寄存器 而关于第二场图像的N个图像元素数据的第一M个图像元素数据被存储在第二循环型移位寄存器中,并且剩余的NM图像元素数据被存储在第三移位寄存器中,并且存储的数据 在所述存储的数据的一个循环期间的第一和第二移位寄存器以及第二和第三移位寄存器的每个存储的数据的n位的相对移位 相对于第一移位寄存器的存储数据重复进行,从而检测到对象的距离,其特征在于,在第一移位寄存器的循环电路中,提供旁路装置,用于延迟所存储的数据的一个循环 第一移位寄存器相对于第二移位寄存器的存储数据的一个循环和第一移位寄存器的存储数据的n个位循环通过旁路装置循环,由此对于第一移位寄存器的存储数据的每个循环 ,第二移位寄存器的存储数据相对于第一移位寄存器的存储数据分别移位n位。
    • 10. 发明授权
    • Film scanner
    • 电影扫描仪
    • US6100960A
    • 2000-08-08
    • US892133
    • 1997-07-14
    • Hidekage SatoTakashi Amikura
    • Hidekage SatoTakashi Amikura
    • G03B17/00G03B17/24G03B27/32G03B27/46H04N1/00H04N1/04H04N1/387H04N3/38H04N5/253G03B29/00G03B27/52H04N1/27
    • H04N1/3873H04N3/38H04N5/253
    • A film scanner is capable of reading an image formed on a film in accordance with a photographing mode recorded in each frame of the film. In this film scanner, an image formed in each frame of a film held by a film holder is projected onto a linear image sensor by a focusing optical system to read the image with the linear image sensor. A magnetic information detection unit detects magnetic information recorded in each frame of the film, and a system controller identifies a photographing mode of each frame of the film. In accordance with the identified photographing mode, an image read area of each frame is set and a subscanning motor is driven in accordance with this image read area. The subscanning motor is driven in the area outside of the image read area at a faster speed than in the image read area. Therefore, a read time can be shortened as compared to the case wherein all frames are read in the broadest image read area. Trimming works can be omitted.
    • 电影扫描器能够根据记录在胶片每帧中的拍摄模式来读取形成在胶片上的图像。 在这种胶片扫描器中,由胶片保持器保持的胶片的每帧中形成的图像通过聚焦光学系统投射到线性图像传感器上,以用线性图像传感器读取图像。 磁信息检测单元检测记录在胶卷每帧中的磁信息,系统控制器识别胶片每帧的拍摄模式。 根据识别的拍摄模式,设置每帧的图像读取区域,并根据该图像读取区域驱动副扫描电动机。 副扫描电动机以比图像读取区域更快的速度在图像读取区域外部的区域中被驱动。 因此,与在最宽的图像读取区域中读取所有帧的情况相比,可以缩短读取时间。 修剪作品可以省略。