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    • 1. 发明申请
    • Recording apparatus and medium transporting method
    • 记录装置和介质传送方式
    • US20080063449A1
    • 2008-03-13
    • US11897434
    • 2007-08-30
    • Jun FukasawaHiroshi Katayama
    • Jun FukasawaHiroshi Katayama
    • B65H1/08B41F13/004
    • B65H5/34B65H2301/4452B65H2513/20B65H2801/12B65H2220/02
    • Disclosed herein is a recording apparatus including a control device which controls a transportation of a medium by controlling a feeding device and a transporting device; under the control of the control device, the feeding device is stopped or decelerated when a previous medium is transported to a predetermined position, and a next medium is accelerated by the feeding device so as to continuously transport the previous medium and the next medium when a gap between those becomes a predetermined distance, the speed of the transporting device is changed from a first transporting speed to a second transporting speed when the previous medium passes through the predetermined position, under a condition that the first transporting speed of the previous medium is different from the second transporting speed of the next medium by the feeding device.
    • 本文公开了一种记录装置,包括:控制装置,其通过控制进给装置和传送装置来控制介质的传送; 在控制装置的控制下,当将先前的介质运送到预定位置时,馈送装置停止或减速,并且由馈送装置加速下一个介质,以便当一个介质和下一个介质在 它们之间的间隙变为预定距离,当前一介质通过预定位置时,在先前介质的第一传送速度不同的条件下,传送装置的速度从第一传送速度变为第二传送速度 从下一个介质的第二传送速度通过进给装置。
    • 2. 发明授权
    • Recording apparatus and medium transporting method
    • 记录装置和介质传送方式
    • US08387978B2
    • 2013-03-05
    • US11897434
    • 2007-08-30
    • Jun FukasawaHiroshi Katayama
    • Jun FukasawaHiroshi Katayama
    • B65H5/34B65H83/00
    • B65H5/34B65H2301/4452B65H2513/20B65H2801/12B65H2220/02
    • Disclosed herein is a recording apparatus including a control device which controls a transportation of a medium by controlling a feeding device and a transporting device; under the control of the control device, the feeding device is stopped or decelerated when a previous medium is transported to a predetermined position, and a next medium is accelerated by the feeding device so as to continuously transport the previous medium and the next medium when a gap between those becomes a predetermined distance, the speed of the transporting device is changed from a first transporting speed to a second transporting speed when the previous medium passes through the predetermined position, under a condition that the first transporting speed of the previous medium is different from the second transporting speed of the next medium by the feeding device.
    • 本文公开了一种记录装置,包括:控制装置,其通过控制进给装置和传送装置来控制介质的传送; 在控制装置的控制下,当将先前的介质运送到预定位置时,馈送装置停止或减速,并且由馈送装置加速下一个介质,以便当一个介质和下一个介质在 它们之间的间隙变为预定距离,当前一介质通过预定位置时,在先前介质的第一传送速度不同的条件下,传送装置的速度从第一传送速度变为第二传送速度 从下一个介质的第二传送速度通过进给装置。
    • 5. 发明授权
    • Video reproducing apparatus and reproducing method
    • 视频再现装置和再现方法
    • US07454124B2
    • 2008-11-18
    • US11075600
    • 2005-03-09
    • Yoshihito OsawaHiroshi Katayama
    • Yoshihito OsawaHiroshi Katayama
    • H04N5/91
    • H04N21/4305H04N5/4401H04N5/46H04N7/01H04N19/40H04N19/587H04N19/85
    • For a plurality of digital video signals whose frame frequencies are different, a pixel number converting circuit to convert the number of pixels is provided so that differences of the frame frequencies are replaced to differences of the numbers of pixels and a plurality of digital video signals whose frame frequencies are different can be processed by a common clock frequency. The frame frequency is detected by a frame frequency value decoder and the number of pixels in the horizontal direction of the pixel number converting circuit is properly set in accordance with the frame frequency. As mentioned above, if the differences of the frame frequencies are replaced to the differences of the numbers of pixels and the images are converted into the image in which the frame frequencies are the same and the numbers of pixels are different, the frame frequencies are equalized and the signals can be processed by the same clock.
    • 对于帧频不同的多个数字视频信号,提供转换像素数目的像素数转换电路,使得帧频的差异被替换为像素数量和多个数字视频信号的差异 帧频不同可以通过公共时钟频率进行处理。 帧频由帧频值解码器检测,并且像素数转换电路的水平方向的像素数根据帧频适当地设定。 如上所述,如果将帧频的差异替换为像素数的差异,并且将图像转换为帧频相同且像素数不同的图像,则将帧频均衡 信号可以通过相同的时钟进行处理。
    • 6. 发明授权
    • Apparatus for decoding an MPEG picture stream
    • 用于解码MPEG图像流的装置
    • US07415070B2
    • 2008-08-19
    • US11093790
    • 2005-03-30
    • Hiroshi Katayama
    • Hiroshi Katayama
    • H04B1/66H04N7/12
    • H04N21/23424H04N19/107H04N19/61H04N21/4384H04N21/44016
    • When a digital broadcast receiver selects a channel and thereby changes an MPEG picture stream, a video decoder starts a decoding operation in response to an instruction to start decoding. When a predictive coded picture includes an intra slice and an intra macroblock, the video decoder decodes the intra slice and the intra macroblock of the predictive coded picture without waiting for an intra picture to be decoded. When a macroblock to be referred to has previously been decoded, the video decoder further decodes a non-intra slice and a non-intra macroblock of the predictive coded picture by using a decoding result of the macroblock to be referred to. Thus, when changing the channel, for example, it is possible to quickly obtain output picture data, shorten interruption of the pictures, and check a picture of the next channel in a short time.
    • 当数字广播接收机选择信道并从而改变MPEG图像流时,视频解码器响应于开始解码的指令开始解码操作。 当预测编码图像包括帧内和帧内宏块时,视频解码器解码预测编码图像的帧内和帧内宏块,而不必等待帧内图像被解码。 当要参考的宏块先前被解码时,视频解码器通过使用要参考的宏块的解码结果进一步解码预测编码图像的非帧内和非帧内宏块。 因此,当改变频道时,例如,可以快速获得输出图像数据,缩短图像的中断,并在短时间内检查下一个频道的图像。