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    • 62. 发明申请
    • IMAGE PROCESSING DEVICE
    • 图像处理装置
    • US20110239012A1
    • 2011-09-29
    • US13070843
    • 2011-03-24
    • Nobuaki KOHINATAJun SatoYoshihiro SaitoNobuhiro Yokoi
    • Nobuaki KOHINATAJun SatoYoshihiro SaitoNobuhiro Yokoi
    • G06F1/32
    • G06F1/3203
    • The image processing device involves a power-saving condition, which achieves the reduction in power consumption on standby, and the high-speed recovery from its power-saving condition to the normal condition. The image processing device has: a data processing unit which executes the processing of stream data; a communication-processing section which accepts input of a processing request from the data processing unit, and controls the data processing unit; and a nonvolatile memory unit which stores control information involved with data processing. The data processing unit has a power-saving mode in which no power source is supplied, and a normal operation mode in which the power source is supplied. In the power-saving operation mode, the communication-processing section causes the data processing unit to transition to the normal operation mode when detecting a processing request for data processing. Then, the data processing unit acquires control information from the nonvolatile memory, and executes data processing.
    • 图像处理装置具有省电状态,能够实现待机时的功耗降低,从省电状态到正常状态的高速恢复。 图像处理装置具有:数据处理单元,其执行流数据的处理; 通信处理部,接受来自所述数据处理部的处理请求的输入,并控制所述数据处理部; 以及存储涉及数据处理的控制信息的非易失性存储单元。 数据处理单元具有不提供电源的省电模式,以及提供电源的正常操作模式。 在省电运行模式中,当检测到数据处理的处理请求时,通信处理部使数据处理单元转换到正常操作模式。 然后,数据处理单元从非易失性存储器获取控制信息,并执行数据处理。
    • 66. 发明授权
    • Logical unit number increasing device, and logical unit number increasing method
    • 逻辑单元数增加装置和逻辑单元数增加方法
    • US07418570B2
    • 2008-08-26
    • US11038135
    • 2005-01-21
    • Yoshihiro Saito
    • Yoshihiro Saito
    • G06F12/10
    • G06F3/0644G06F3/0607G06F3/0689
    • According to an embodiment, virtual logical units are each provided with correlative data between a virtual logical unit number and a real logical unit number. In response to an access request specifying a virtual logical unit number from a host, a correlated real logical unit number is obtained by referring to the correlative data, thereby accessing a real logical unit having the obtained real logical unit number. By changing a real logical unit number correlated to a virtual logical unit number, it is possible to access a plurality of real logical units in a time sharing manner through one virtual logical unit number. Accordingly, it is possible to set the number of accessible logical units to be greater than the number of using logical unit numbers.
    • 根据一个实施例,虚拟逻辑单元中的虚拟逻辑单元号和虚拟逻辑单元号之间各自具有相关数据。 响应于从主机指定虚拟逻辑单元号的访问请求,通过参考相关数据获得相关的真实逻辑单元号,从而访问具有获得的真实逻辑单元号的真实逻辑单元。 通过改变与虚拟逻辑单元号相关联的真实逻辑单元号,可以通过一个虚拟逻辑单元号以分时方式访问多个真实逻辑单元。 因此,可以将可访问逻辑单元的数量设置为大于使用逻辑单元号的数量。
    • 68. 发明申请
    • RETINAL SCANNING IMAGE DISPLAY APPARATUS AND IMAGE DISPLAY SYSTEM
    • 视频扫描图像显示设备和图像显示系统
    • US20080151185A1
    • 2008-06-26
    • US11951583
    • 2007-12-06
    • Yoshihiro SaitoAkira YamamotoTakashi Tsuyuki
    • Yoshihiro SaitoAkira YamamotoTakashi Tsuyuki
    • A61B3/14
    • A61B3/12A61B3/113G02B26/10G02B27/0101G02B2027/0187
    • A retinal scanning image display apparatus includes a light source, a scanning unit that scans a light flux from the light source, a reflective surface that reflects the light flux from the scanning unit, and an ocular unit that guides the light flux from the reflective surface to an eye of an observer. Optical paths of the light flux scanned by the scanning unit intersect at an exit pupil position of the ocular unit, and the image display apparatus causes the scanning unit and the reflective surface to shift so that the optical paths of the scanned light flux toward the same image position are respectively moved in parallel to move the intersecting position of those optical paths. This realizes a small retinal scanning image display apparatus capable of keeping the image position substantially constant even when an observer moves their pupil.
    • 视网膜扫描图像显示装置包括光源,扫描来自光源的光束的扫描单元,反射来自扫描单元的光束的反射表面和从反射表面引导光束的眼单元 到观察者的眼睛。 由扫描单元扫描的光束的光路在眼单元的出射光瞳位置相交,图像显示装置使扫描单元和反射面移动,使得扫描光的光路朝向相同 图像位置分别平行移动以移动那些光路的相交位置。 这实现了即使当观察者移动其瞳孔时也能够使图像位置保持基本恒定的小型视网膜扫描图像显示装置。