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    • 51. 发明授权
    • Endothermic reaction apparatus
    • 吸热反应装置
    • US5096674A
    • 1992-03-17
    • US322466
    • 1989-03-13
    • Hiroshi Shingai
    • Hiroshi Shingai
    • B01J8/06B01J8/02C01B3/38H01M8/06
    • H01M8/0631B01J8/0285C01B3/384B01J2208/00495B01J2208/00504B01J2208/0053C01B2203/0227C01B2203/0811C01B2203/0816C01B2203/0866
    • An endothermic reaction apparatus for converting a raw gas, or a feed gas, into a reaction gas or a produced gas, under the influence of an endothermic reaction catalyst includes a reaction tube having a pair of inner and outer vertical tubular spaces which are separated by a vertical partition wall and communicate with each other at their lower ends. The endothermic reaction catalyst is disposed in the inner and outer tubular spaces to form a continuous catalyst structure. The catalyst structure has an inlet portion for introducing the raw gas into the catalyst structure and an outlet portion for discharging the reaction gas from the catalyst structure. The inlet and outlet portions of the catalyst structure are disposed generally at the same level. A burner is disposed inwardly of the inner tubular space for heating the catalyst structure. The reaction tube is received in a furnace container, and a combustion gas from the burner flows downwardly inwardly of that portion of the inner tubular space containing the catalyst and further flows upwardly outwardly of that portion of the outer tubular space containing the catalyst. A heat-insulating layer is mounted on the partition wall and disposed at least at that portion of the cylindrical partition wall disposed between the inlet and outlet portions of the catalyst structure.
    • 在吸热反应催化剂的作用下,将原料气体或原料气体转化为反应气体或产生气体的吸热反应装置包括:具有一对内,外垂直管状空间的反应管, 垂直分隔壁,并在其下端相互连通。 吸热反应催化剂设置在内部和外部管状空间中以形成连续的催化剂结构。 催化剂结构具有用于将原料气体引入催化剂结构的入口部分和用于从催化剂结构排出反应气体的出口部分。 催化剂结构的入口和出口部分通常设置在相同的高度。 燃烧器设置在内部管状空间的内部,用于加热催化剂结构。 反应管被容纳在炉容器中,并且来自燃烧器的燃烧气体从包含催化剂的内部管状空间的该部分的内部向下流动,并且进一步向外从包含催化剂的外部管状空间的那部分向外流动。 绝热层安装在分隔壁上,至少设置在设置在催化剂结构的入口和出口部分之间的圆筒形分隔壁的至少一部分处。
    • 52. 发明申请
    • INFORMATION READOUT METHOD FOR NON MASK LAYER TYPE OPTICAL INFORMATION MEDIUM
    • 用于非掩蔽层类型光信息介质的信息读出方法
    • US20090135711A1
    • 2009-05-28
    • US12352304
    • 2009-01-12
    • Takashi KIKUKAWATatsuya KatoHajime UtsunomiyaHiroshi Shingai
    • Takashi KIKUKAWATatsuya KatoHajime UtsunomiyaHiroshi Shingai
    • G11B7/00
    • G11B7/005G11B7/1263G11B7/24
    • An information readout method for an optical information medium comprising an information recording layer having pits or recorded marks representative of information data involves the step of irradiating a laser beam to the information recording layer through an objective lens for providing readings of the pits or recorded marks. When the laser beam has a wavelength λ of 400 to 410 nm, the objective lens has a numerical aperture NA of 0.70 to 0.85, and the pits or recorded marks have a minimum size PL of up to 0.36λ/NA, readout is carried out at a power Pr of at least 0.4 mW for the laser beam. When the laser beam has a wavelength λ of 630 to 670 nm, the objective lens has a numerical aperture NA of 0.60 to 0.65, and the pits or recorded marks have a minimum size PL of up to 0.36λ/NA, readout is carried out at a power Pr of at least 1.0 mW for the laser beam. Pits or recorded marks of a size approximate to the resolution limit determined by diffraction can be read out at a high C/N.
    • 包括具有表示信息数据的凹坑或记录标记的信息记录层的光信息介质的信息读出方法包括通过用于提供凹坑或记录标记的读数的物镜将激光束照射到信息记录层的步骤。 当激光束具有400至410nm的波长λ时,物镜的数值孔径NA为0.70至0.85,并且凹坑或记录标记具有高达0.36λ/ NA的最小尺寸PL,读出被执行 在激光束的功率Pr为至少0.4mW。 当激光束具有630至670nm的波长λ时,物镜的数值孔径NA为0.60至0.65,并且凹坑或记录的标记具有高达0.36λ/ NA的最小尺寸PL,读出被执行 在激光束的功率Pr为至少1.0mW。 通过衍射确定的大小接近分辨率极限的刻痕或记录标记可以高C / N读出。
    • 53. 发明授权
    • Optical recording method, optical recorder, and optical recording medium
    • 光记录方法,光记录器和光记录介质
    • US07336580B2
    • 2008-02-26
    • US10468202
    • 2002-02-14
    • Tatsuya KatoHiroshi Shingai
    • Tatsuya KatoHiroshi Shingai
    • G11B7/00
    • G11B7/126G11B7/006G11B7/0062
    • The object of the present invention is to provide an optical recording method for recording data in an optical recording medium, which can reduce jitter of a reproduced signal even in the case where data are recorded at a plurality of linear recording velocities.The optical recording method according to the present invention can record data at a plurality of linear recording velocities or a continuously changing linear recording velocity and a recording waveform for modulating a recording beam includes a direct current section and a recording pulse section. Data are recorded so that the intensity Pbi of the direct current section and the intensity Pw of the recording pulse section satisfy PbiH/PbiL
    • 本发明的目的是提供一种用于在光学记录介质中记录数据的光学记录方法,即使在以多个线性记录速度记录数据的情况下,也可以减少再现信号的抖动。 根据本发明的光学记录方法可以以多个线性记录速度或连续变化的线性记录速度记录数据,并且用于调制记录光束的记录波形包括直流部分和记录脉冲部分。 记录数据,使得直流部分的强度Pbi和记录脉冲部分的强度Pw满足PbiH / PbiL <1和(PbiH / PwH)/(PbiL / PwL)<1,其中PwL和PbiL为Pw和Pbi 当以线性记录速度V L L记录数据时,PwH和PbiH是Pw和Pbi,当数据要以高于 线性记录速度V L L并且满足1.1≤VH / V L L。 结果,即使在宽范围的线速度下记录数据的情况下,也可以减少再生信号的抖动。
    • 55. 发明申请
    • Optical recording medium
    • 光记录介质
    • US20060165944A1
    • 2006-07-27
    • US11332538
    • 2006-01-17
    • Hironori KakiuchiHiroshi ShingaiKenji Yamaga
    • Hironori KakiuchiHiroshi ShingaiKenji Yamaga
    • B32B3/02
    • G11B7/243G11B7/24038G11B7/257G11B2007/24314G11B2007/25706G11B2007/25715
    • [Object]In order to provide an optical recording medium having an excellent repetitive overwrite property even when the optical recording medium includes a plurality of information layers stacked on a substrate through at least a transparent intermediate layer, and the information layers other than the farthest one from a light incident surface of a laser beam among a plurality of information layers include a recording film formed of a phase transition material having an Sb-based eutectic crystal structure. [Solving Means]There is provided an optical recording medium comprising a plurality of information layers stacked on a substrate through at least a transparent intermediate layer, wherein the information layers other than the farthest one from a light incident surface of a laser beam among a plurality of information layers include an L1 recording film 34 formed of a phase transition material having an Sb-based eutectic crystal structure, a reflection film 32 disposed at a side of the substrate with respect to the L1 recording film 34, first and second dielectric films 33 and 31 disposed across and adjacent to the reflection film 32 and formed of a material containing a mixed oxide of Zr-based oxide and Cr-based oxide as a major component.
    • 为了提供具有优异重复覆盖特性的光学记录介质,即使当光学记录介质包括通过至少透明中间层堆叠在基板上的多个信息层时,除了最远的一个之外的信息层 在多个信息层中的来自激光束的光入射表面的记录膜包括由具有Sb基共晶晶体结构的相变材料形成的记录膜。 提供了一种光记录介质,其包括通过至少透明中间层堆叠在基板上的多个信息层,其中除了多个信号层中的激光束的光入射表面以外的信息层之外的信息层 的信息层包括由具有Sb基共晶体结构的相变材料形成的L1记录膜34,相对于L1记录膜34设置在基板侧的反射膜32,第一和第二电介质膜33 和31设置在反射膜32上并邻近反射膜32,并由含有Zr基氧化物和Cr基氧化物的混合氧化物的材料形成。