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    • 5. 发明申请
    • PROJECTION APPARATUS
    • 投影设备
    • US20150109261A1
    • 2015-04-23
    • US14516144
    • 2014-10-16
    • Makoto MASUDA
    • Makoto MASUDA
    • G06F3/042
    • G06F3/0426G06F3/04886H04N9/3129
    • A projection apparatus includes light source modules (a first light source module, and a second light source module) equipped with a laser light source emitting a laser beam, a light deflection unit configured to perform a two-dimensional scanning with the laser beam emitted from the light source module and project a projection image on an image projection surface, a light detection unit configured to detect a reflection light beam of the laser beam from an operation executor on the projection image, and a control unit configured to determine a position of the projection image with which the operation executor is in contact based on information from the light detection unit and information from the projection image.
    • 投影装置包括配备有发射激光束的激光光源的光源模块(第一光源模块和第二光源模块),光偏转单元,被配置为利用从...射出的激光束进行二维扫描 光源模块,投影图像投影面上的投影图像;光检测单元,被配置为从投影图像上的操作执行器检测激光束的反射光束;以及控制单元,被配置为确定投影图像的位置, 基于来自光检测单元的信息和来自投影图像的信息,操作执行器与其接触的投影图像。
    • 7. 发明申请
    • METHOD FOR REUSING RESOURCE AND STORAGE SUB-SYSTEM USING THE SAME
    • 使用该方法重新使用资源和存储子系统的方法
    • US20130232377A1
    • 2013-09-05
    • US13395025
    • 2012-03-01
    • Shinobu KakiharaMakoto MasudaMitsuhide Sato
    • Shinobu KakiharaMakoto MasudaMitsuhide Sato
    • G06F11/20
    • G06F11/0793G06F11/073G06F11/0787G11C29/72
    • In a storage sub-system adopting a redundant configuration for preventing data loss and continuing processing during failure, when failure occurs, a controller unit in which failure has occurred is blocked so as not to affect the normal controller unit, so that the performance of the storage sub-system is deteriorated and the redundancy thereof is lost until maintenance and component replacement is performed. According to the present invention, self diagnosis of the blocked area is executed and a failure area is isolated. Then, the blocked area is reconnected to the storage sub-system, so as to prevent deterioration of performance and overload of the device until maintenance and replacement is performed, and to reduce the time of failure analysis during maintenance by specifying the detailed failure area via self diagnosis.
    • 在采用冗余配置的存储子系统中,用于防止数据丢失和故障期间的持续处理,当故障发生时,发生故障的控制器单元被阻塞,从而不影响正常控制器单元 存储子系统恶化,并且在执行维护和组件更换之前,其冗余性将被丢失。 根据本发明,执行阻塞区域的自诊断,并且隔离故障区域。 然后,将阻塞区域重新连接到存储子系统,以便在执行维护和更换之前防止设备的性能下降和过载,并且通过指定详细的故障区域来通过指定详细的故障区域来减少维护期间的故障分析时间 自我诊断。
    • 9. 发明申请
    • SIGNAL CONVERTING CIRCUIT
    • 信号转换电路
    • US20100141302A1
    • 2010-06-10
    • US12706412
    • 2010-02-16
    • Satoshi MIURAMakoto MASUDA
    • Satoshi MIURAMakoto MASUDA
    • H03K5/22
    • H03F3/45183H03F1/223H03F3/345H03F3/45475H03F3/505H03F2203/45288H03F2203/45352H03F2203/45612H03F2203/45652H03F2203/45702H03K17/04106
    • A signal conversion circuit 2 comprises a differential amplifier portion 10 and a source follower portion 20. When differential voltage signals INp and INn are input to a first input terminal 5 and second input terminal 6 respectively, operations occurs either in a mode in which only the differential amplifier portion 10 operates, or a mode in which both the differential amplifier portion 10 and the source follower portion 20 operate, or a mode in which only the source follower portion 20 operates, according to the levels of the differential voltage signals INp and INn. The differential amplifier portion 10 and source follower portion 20 have fewer components compared with a circuit comprising two differential amplifier circuits. By this means, the circuit area can be reduced, and in addition current consumption can be reduced. Also, because the source follower portion 20 performs non-inverting amplification of the differential voltage signals INp and INn, high-speed operation is possible.
    • 信号转换电路2包括差分放大器部分10和源极跟随器部分20.当差分电压信号INp和INn分别输入到第一输入端子5和第二输入端子6时,操作发生在只有 差分放大器部分10或者差分放大器部分10和源极跟随器部分20工作的模式或仅源极跟随器部分20工作的模式,根据差分电压信号INp和INn的电平 。 与包括两个差分放大器电路的电路相比,差分放大器部分10和源极跟随器部分20具有较少的部件。 通过这种方式,可以减少电路面积,并且可以减少电流消耗。 此外,由于源极跟随器部分20执行差分电压信号INp和INn的非反相放大,因此可以进行高速操作。