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    • 11. 发明授权
    • Reflective optical switch
    • 反光光开关
    • US07233717B2
    • 2007-06-19
    • US10938366
    • 2004-09-10
    • Hiroaki OnoShohei AbeHideo TakeshitaHiroki TataraKazuhide Kubo
    • Hiroaki OnoShohei AbeHideo TakeshitaHiroki TataraKazuhide Kubo
    • G02B6/12G02B6/38G02B6/00G02B26/02
    • G02F1/31G02F1/09
    • A reflective optical switch comprises an input/output port portion; a polarization separator/combiner for separating lights in the same optical path and combining lights in different optical paths; a Faraday rotation angle changer; a polarization rotator for changing the relationship in polarizing direction between lights in different optical paths; a birefringence element for optical path control for controlling optical path shift in response to polarizing direction; and a polarization rotating reflector for rotating polarizing direction 90 degrees on forward and return paths. The input/output port portion, the polarization separator/combiner, the Faraday rotation angle changer, the polarization rotator, the birefringence element for optical path control, and the polarization rotating reflector are arranged along the optical path, and the Faraday rotation angle changer includes a Faraday element and an electromagnet for controlling 90-degree change in polarizing direction of transmitted light thereof.
    • 反射型光开关包括输入/​​输出端口部分; 用于分离相同光路中的光并组合不同光路中的光的偏振分离器/组合器; 法拉第旋转角度变换器 用于改变不同光路中的光之间的偏振方向的关系的偏振旋转器; 用于控制响应于偏振方向的光路偏移的光路控制的双折射元件; 以及用于在正向和返回路径上将偏振方向旋转90度的偏振旋转反射器。 沿着光路布置输入输出端口部分,偏振分离器/组合器,法拉第旋转角度变换器,偏振旋转器,用于光路控制的双折射元件和偏振旋转反射器,并且法拉第旋转角度变换器包括 用于控制其透射光的偏振方向的90度变化的法拉第元件和电磁体。
    • 12. 发明申请
    • Dynamic image editing system, the same apparatus and mobile device
    • 动态图像编辑系统,相同的设备和移动设备
    • US20070097147A1
    • 2007-05-03
    • US11260181
    • 2005-10-28
    • Keisuke InataHiroaki Ono
    • Keisuke InataHiroaki Ono
    • G09G5/00
    • G06T11/60
    • In a moving image editing system, when a recorded encoded image file is to be edited, an editing process or a decoding process for editing is executed for an encoded image file with a low process load recorded for editing or corresponding editing information, to reduce a consumption power of editing. By using editing information on the encoded image file for editing and correlation information representative of correlation between encoded image files for storage and for editing, editing information on the encoded image file for storage is generated from the editing information on the encoded image file for editing, to reduce an editing load of the encoded image file for storage.
    • 在运动图像编辑系统中,当要编辑记录的编码图像文件时,执行用于编辑的编辑处理或解码处理,用于编辑的编辑图像文件具有记录为编辑的低处理负载或相应的编辑信息,以减少 消费力的编辑。 通过使用用于编辑的编码图像文件的编辑信息和表示用于存储和编辑的编码图像文件之间的相关性的相关信息,根据编辑图像文件的编辑信息来编辑用于存储的编辑图像文件的编辑信息, 以减少用于存储的编码图像文件的编辑负载。
    • 13. 发明申请
    • Sheet supplying unit and sheet width detecting unit
    • 供纸单元和纸张宽度检测单元
    • US20070040326A1
    • 2007-02-22
    • US11504577
    • 2006-08-16
    • Yasuo NodaHiroaki OnoToru Koike
    • Yasuo NodaHiroaki OnoToru Koike
    • B65H7/02
    • B65H9/006B65H2511/20B65H2511/242B65H2553/81B65H2220/01B65H2220/03B65H2220/11
    • A sheet supplying unit having no need to place a great many skew sensors and enabling printing apparatus to simplify structure and to reduce cost. The sheet supplying unit moves a skew sensor to a most left sensor position in which the table sensor detected that the print medium exists, detects the upper edge of print medium, and executes a skew detection; in the case that the print medium is narrow, moves a skew sensor, detects the upper edge of print medium, and executes a skew detection; in the case that a position of skew sensor does not place at a position keeping a predetermined margin at the inside of the print medium, moves skew sensor to the inside of the print medium and executes again an inclination detection; or according to print medium width and skew sensor width, changes a skew judgment quantity.
    • 片材供应单元不需要放置大量偏斜传感器,并且使打印装置能够简化结构并降低成本。 纸张供给单元将偏斜传感器移动到表传感器检测到的打印介质存在的最左侧的传感器位置,检测打印介质的上边缘,并执行歪斜检测; 在打印介质窄的情况下,移动偏斜传感器,检测打印介质的上边缘,并执行偏斜检测; 在偏移传感器的位置不位于保持打印介质内部的预定余量的位置的情况下,将偏移传感器移动到打印介质的内部,并再次执行倾斜检测; 或根据打印介质宽度和偏移传感器宽度,更改偏斜判定量。
    • 14. 发明申请
    • Information recording/play-backing apparatus
    • 信息记录/播放装置
    • US20060222317A1
    • 2006-10-05
    • US11367382
    • 2006-03-06
    • Hiroaki OnoOsamu Komoda
    • Hiroaki OnoOsamu Komoda
    • H04N5/91
    • H04N9/87G11B27/034G11B2220/455H04N5/772H04N5/781H04N5/85
    • It is possible to save power in an HDD/optical disc combination camera. During a normal recording operated by a battery, only the hard disk is operated and operation of the optical drive is stopped. Alternatively, only the optical drive is operated and the operation of the hard disk is stopped. During dubbing, both of the HDD and the optical drive are operated when performing play-back/display during the dubbing and a large current is consumed. Accordingly, the operation is permitted only by external power supply. In the case of dubbing not performing play-back/display, the battery remaining amount is checked and dubbing is permitted only if the amount is equal to or greater than a threshold value.
    • 可以在HDD /光盘组合相机中节省电力。 在由电池操作的正常记录期间,仅硬盘被操作并停止光驱的操作。 或者,只有光驱被操作并停止硬盘的操作。 在配音期间,在配音期间执行回放/显示时,HDD和光驱均可操作,并且消耗大电流。 因此,仅通过外部电源允许操作。 在不执行回放/显示的情况下进行复制的情况下,检查电池剩余量,并且仅当该量等于或大于阈值时才允许转录。
    • 16. 发明授权
    • Optical circulator and optical switch
    • 光环行器和光开关
    • US07050232B2
    • 2006-05-23
    • US10381474
    • 2001-10-01
    • Shusuke WadaShohei AbeTomokazu ImuraHiroaki OnoTsugio Tokumasu
    • Shusuke WadaShohei AbeTomokazu ImuraHiroaki OnoTsugio Tokumasu
    • G02B27/28G02B5/30
    • G02F1/093G02B5/3083G02B6/2746G02B27/28G02F1/31Y10S372/703
    • A first separating/combining birefringent element 10, first and second optical-path controlling birefringent elements 11, 12, and a second separating/combining birefringent element 13 are spaced apart. Between the first separating/combining birefringent element and the first optical-path controlling birefringent element, a first polarization rotating means 14 is arranged for changing a polarization direction from an orthogonal relationship to a parallel relationship, or from a parallel relationship to an orthogonal relationship. Also, between the second optical-path controlling birefringent element and the second separating/combining birefringent element, a second polarization rotating means 17 is arranged. The first and second optical-path controlling birefringent elements are oppositely arranged symmetrically on optical axis about an arrangement center thereof, between which is arranged a ½-wavelength plate for rotating a polarization direction of a light on a central optical path 90 degrees, thereby structuring an optical circulator. With a similar structure, an optical switch can be structured by using a ±45-degree variable Faraday rotator in the first and second polarization rotation switch means.
    • 第一分离/组合双折射元件10,第一和第二光路控制双折射元件11,12和第二分离/组合双折射元件13间隔开。 在第一分离/组合双折射元件和第一光路控制双折射元件之间,设置第一偏振旋转装置14,用于将偏振方向从正交关系改变为平行关系,或者从平行关系改变为正交关系。 此外,在第二光路控制双折射元件和第二分离/组合双折射元件之间,布置有第二偏振旋转装置17。 第一和第二光路控制双折射元件围绕其布置中心在光轴上对称地布置,其间布置有1/2波长板,用于将中心光路上的光的偏振方向旋转90度,从而构造 光环行器。 具有类似的结构,可以通过在第一和第二偏振旋转开关装置中使用±45度的可变法拉第旋转器来构造光学开关。