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    • 2. 发明申请
    • FILTER CLEANING APPARATUS AND FILTER CLEANING METHOD
    • 过滤器清洗装置和过滤器清洗方法
    • US20100258147A1
    • 2010-10-14
    • US12808259
    • 2008-01-04
    • Shigemi IsobeYasuaki MorimotoYuriko Hirai
    • Shigemi IsobeYasuaki MorimotoYuriko Hirai
    • B08B3/00
    • B08B3/102B01D41/04B08B3/04B08B3/10
    • A filter cleaning apparatus 1 is a device designed exclusively for cleaning a cartridge filter used in a fluidized bed granulator. A cleaning liquid 10 is reserved in a processing container 2. In the processing container 2, a cartridge filter 3 is placed in the state of being immersed in the cleaning liquid 10. The filter 3 is so disposed as to be capable of rotating around a rotational axis line O that is substantially horizontal in the processing container 2. Air nozzles 8 are disposed below the cartridge filter 3. An uplift pressure of bubbles rising out of the liquid into the atmosphere is added to a bubble flow BF jetted from the air nozzles 8. As a result of the synergic effect of the jet pressure of the bubble flow BF and the uplift pressure, the filter 3 rotates in an efficient way, leading to an improvement in cleaning efficiency.
    • 过滤器清洁装置1是专门用于清洁在流化床造粒机中使用的筒式过滤器的装置。 清洗液10被保留在处理容器2中。在处理容器2中,滤芯3被置于浸没在清洗液10中的状态。过滤器3设置成能够围绕 旋转轴线O在处理容器2中基本上是水平的。空气喷嘴8设置在盒式过滤器3的下方。从液体进入大气中的气泡的升高压力被加到从空气喷嘴喷射的气泡流BF 由于气泡流BF的喷射压力和提升压力的协同效应,过滤器3以有效的方式旋转,导致清洁效率的提高。
    • 9. 发明授权
    • Optical information storage medium having lands and grooves both serving as recording tracks
    • 光信息存储介质,其具有用作记录轨道的平台和凹槽
    • US06781949B2
    • 2004-08-24
    • US09788744
    • 2001-02-20
    • Yasuaki Morimoto
    • Yasuaki Morimoto
    • G11B724
    • G11B7/24085G11B7/007G11B7/00745G11B7/0938G11B11/10565G11B11/10578
    • An optical information recording medium having a plurality of grooves and a plurality of lands alternately formed, where each groove and each land function as recording tracks. The medium includes a first header region having a plurality of first phase pits respectively formed on extensions of the plurality of lands, and a second header region having a plurality of second phase pits respectively formed on extensions of the plurality of grooves. Each groove has an optical depth of about 3&lgr;/8, where &lgr; is the wavelength of a light beam to be used. Each first phase pit has an optical depth that is smaller than that of each groove. Each second phase pit has an optical depth that is substantially equal to that of each groove. The first header region and the second header region are shifted from each other along the extension of each groove.
    • 一种光学信息记录媒体,具有交替形成的多个槽和多个焊盘,每个槽和每个焊盘用作记录轨道。 所述介质包括具有分别形成在所述多个焊盘的延伸部上的多个第一相位凹坑的第一标题区域和分别形成在所述多个沟槽的延伸部上的多个第二相位坑的第二标题区域。 每个凹槽具有约3λ/ 8的光学深度,其中λ是要使用的光束的波长。 每个第一相位凹坑的光学深度小于每个凹槽的光学深度。 每个第二相位凹坑的光学深度基本上等于每个凹槽的光学深度。 第一标题区域和第二标题区域沿着每个沟槽的延伸部彼此偏移。
    • 10. 发明授权
    • Optical storage device and optical head having TES compensation shift signal compensation
    • 具有TES补偿移位信号补偿的光存储装置和光头
    • US06266301B1
    • 2001-07-24
    • US09189392
    • 1998-11-10
    • Yasuaki Morimoto
    • Yasuaki Morimoto
    • G11B7095
    • G11B7/0953G11B7/08517G11B7/08541G11B7/0901G11B7/0943G11B11/10563G11B11/10576
    • Disclosed is an optical storage device for reading information from an optical storage medium by an optical head. The optical storage device comprises an optical head including a track actuator for scanning on the skew across tracks on the optical storage medium by the laser beam, and a divided-by-4 light receiving unit for receiving the laser beam from the optical storage medium, a moving motor for moving the optical head, a first signal processing unit for calculating a track error signal on the basis of an output of the divided-by-4 light receiving unit, a second signal processing unit for calculating a shift signal of the objective lens from the output of the divided-by-4 light receiving unit, and a control unit for controlling the track actuator or the moving motor by the track error signal, and controlling the track actuator or the moving motor so that the laser beam passing through the objective lens is located at the center of the objective lens. With this construction, a lens position can be detected, and hence a lens position sensor becomes unnecessary.
    • 公开了一种用于通过光学头从光学存储介质读取信息的光学存储装置。 该光学存储装置包括一个光学头,它包括轨道致动器,用于通过激光束在光学存储介质上的轨道上进行偏斜扫描,以及一个四分之一的光接收单元,用于接收来自光学存储介质的激光束, 用于移动光头的移动电动机,用于基于所述四分之一光接收单元的输出来计算轨道误差信号的第一信号处理单元,用于计算所述目标的移位信号的第二信号处理单元 由4路光接收单元的输出端设置透镜,以及控制单元,用于通过轨道误差信号控制轨道致动器或移动电动机,并且控制轨道致动器或移动电动机,使得激光束通过 物镜位于物镜的中心。 通过这种结构,可以检测透镜位置,因此不需要透镜位置传感器。