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    • 13. 发明授权
    • Image forming apparatus, image forming method, and image forming program product
    • 图像形成装置,图像形成方法和图像形成程序产品
    • US07961208B2
    • 2011-06-14
    • US12094558
    • 2006-10-27
    • Shinichi SuzukiKazumi IshimaMinoru Morikawa
    • Shinichi SuzukiKazumi IshimaMinoru Morikawa
    • B41J2/435
    • B41J2/447
    • An image is formed by dividing rasterized original image data into regions in accordance with N recording heads, and scanning a recording body by simultaneously irradiating recording beams from the N recording heads. Corrected image data divided into regions in accordance with the recording heads are generated by changing the rasterized original image data based on information including positional displacements of the recording beams, so that the positional displacements are corrected. Scanning information is generated based on the positional displacement information. The scanning information includes positions and orders for the recording beams to scan the recording body to record the corrected image data.
    • 通过根据N个记录头将光栅化的原始图像数据划分成区域并且通过同时照射来自N个记录头的记录光束来扫描记录体来形成图像。 通过基于包括记录光束的位置位移的信息改变光栅化的原始图像数据来生成根据记录头被划分为区域的校正图像数据,从而校正位置偏移。 基于位置偏移信息生成扫描信息。 扫描信息包括用于扫描记录体以记录校正图像数据的记录光束的位置和顺序。
    • 17. 发明申请
    • Nano-Precision Sintering System
    • 纳米精密烧结系统
    • US20080175936A1
    • 2008-07-24
    • US11666616
    • 2005-11-02
    • Masao TokitaShinichi SuzukiKatsuyuki Nakagawa
    • Masao TokitaShinichi SuzukiKatsuyuki Nakagawa
    • B22F3/105B29C35/08
    • F27B19/04B22F3/14B22F2998/00B22F2999/00F27B9/04B22F1/0044B22F2201/10B22F2201/20
    • The present invention provides a nano-precision sintering system 1 for sintering a nano-sized powder of a material in the pulse energization and pressure sintering process to obtain a highly purified sintered compact having a nano-sized grain structure, said nano-precision sintering system 1 comprising: at least one pre-process chamber 20 defined by at least one sealed housing 21 having at least one glove and designed to be controlled into a predetermined atmosphere; a sintering process chamber 30 defined by a sealed housing 31 having at least one glove and designed to be controlled into a predetermined atmosphere; a shut-off system 26 disposed in a passage providing communication between the pre-process chamber and the sintering process chamber so as to block the communication between the two chambers selectively while keeping it in an air tight condition; and a pulse energization and pressure sintering machine 50 having a vacuum chamber “C” allowing for the sintering process to be carried out under a vacuum atmosphere, wherein the vacuum chamber is disposed in the sintering process chamber such that the former can be isolated from the latter.
    • 本发明提供了一种纳米精密烧结系统1,用于在脉冲通电和加压烧结过程中烧结材料的纳米尺寸粉末,以获得具有纳米尺寸晶粒结构的高纯度烧结体,所述纳米精密烧结体系 1包括:由至少一个密封壳体21限定的至少一个预处理室20,所述至少一个密封壳体21具有至少一个手套并设计成被控制在预定的气氛中; 烧结处理室30由具有至少一个手套的密封壳体31限定,并被设计成被控制在预定的气氛中; 设置在提供预处理室和烧结处理室之间的连通的通道中的截止系统26,以便在保持其处于气密状态的同时有选择地阻止两个室之间的连通; 以及具有允许在真空气氛下进行烧结过程的真空室“C”的脉冲通电和加压烧结机50,其中真空室设置在烧结处理室中,使得前者可与 后者。
    • 19. 发明授权
    • Discharge lamp lighting apparatus
    • 放电灯照明装置
    • US07315133B2
    • 2008-01-01
    • US11488661
    • 2006-07-19
    • Shinichi Suzuki
    • Shinichi Suzuki
    • H05B37/02
    • H05B41/2827H05B41/2828H05B41/3927
    • A discharge lamp lighting apparatus is provided which includes: a high-voltage transformer; a switching circuit to drive the primary side of the transformer; a frequency changing means to change an operating frequency of the switching circuit according to lighting conditions of a discharge lamp; and first and second resonant circuits formed respectively at the primary and secondary sides of the transformer and having respective specific resonant frequencies different from each other. The switching circuit, before the discharge lamp is turned on, operates at a frequency ranging in proximity of the series resonant frequency of the secondary resonant circuit, and after the discharge lamp is turned on, operates at a frequency ranging in proximity of a frequency at which a voltage-current phase difference at the primary side of the transformer is minimized. The capacitance component of the second resonant circuit is constituted by a parasitic capacitance only.
    • 一种放电灯点亮装置,包括:高压变压器; 用于驱动变压器初级侧的开关电路; 频率改变装置,用于根据放电灯的照明条件改变开关电路的工作频率; 以及第一和第二谐振电路,分别形成在变压器的一次侧和次侧,并具有彼此不同的各自的特定谐振频率。 在放电灯导通之前的开关电路在次级谐振电路的串联谐振频率附近的频率下工作,并且在放电灯导通之后,以接近频率 变压器初级侧的电压 - 电流相位差最小化。 第二谐振电路的电容分量仅由寄生电容构成。
    • 20. 发明申请
    • Discharge lamp lighting apparatus
    • 放电灯照明装置
    • US20070024205A1
    • 2007-02-01
    • US11488661
    • 2006-07-19
    • Shinichi Suzuki
    • Shinichi Suzuki
    • H05B39/04
    • H05B41/2827H05B41/2828H05B41/3927
    • A discharge lamp lighting apparatus is provided which includes: a high-voltage transformer; a switching circuit to drive the primary side of the transformer; a frequency changing means to change an operating frequency of the switching circuit according to lighting conditions of a discharge lamp; and first and second resonant circuits formed respectively at the primary and secondary sides of the transformer and having respective specific resonant frequencies different from each other. The switching circuit, before the discharge lamp is turned on, operates at a frequency ranging in proximity of the series resonant frequency of the secondary resonant circuit, and after the discharge lamp is turned on, operates at a frequency ranging in proximity of a frequency at which a voltage-current phase difference at the primary side of the transformer is minimized. The capacitance component of the second resonant circuit is constituted by a parasitic capacitance only.
    • 一种放电灯点亮装置,包括:高压变压器; 用于驱动变压器初级侧的开关电路; 频率改变装置,用于根据放电灯的照明条件改变开关电路的工作频率; 以及第一和第二谐振电路,分别形成在变压器的一次侧和次侧,并具有彼此不同的各自的特定谐振频率。 在放电灯导通之前的开关电路在次级谐振电路的串联谐振频率附近的频率下工作,并且在放电灯导通之后,以接近频率范围内的频率工作 变压器初级侧的电压 - 电流相位差最小化。 第二谐振电路的电容分量仅由寄生电容构成。