会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Optical recording method and optical recording medium
    • 光记录方法和光记录介质
    • US06999392B2
    • 2006-02-14
    • US09971703
    • 2001-10-09
    • Tatsuya KatoHajime UtsunomiyaHiroyasu InoueHiroshi ShingaiYoshitomo Tanaka
    • Tatsuya KatoHajime UtsunomiyaHiroyasu InoueHiroshi ShingaiYoshitomo Tanaka
    • G11B7/00G11B7/24
    • G11B7/24085G11B7/00454G11B7/006
    • Increase of jitter in a phase change optical recording medium is suppressed with no extreme decrease in the crystallization speed of the recording layer when the medium is overwritten at a high linear velocity. In addition, in a disk-shaped medium operated at a constant angular velocity, the overwriting is accomplished with the increase of jitter suppressed over the entire area of the medium. Provided is an optical recording method for recording a disk-shaped optical recording medium having a phase change recording layer which is rotated at a constant angular velocity, wherein amorphous recorded marks are formed in the recording layer. In this method, the minimum recorded mark is formed such that WL/ML incrementally or gradually decreases from the radially inner side to the radially outer side of the optical recording medium, when the minimum signal has a length of SL, and when the minimum recorded mark corresponding to said minimum signal has its maximum width of MW, EW is 0.1 MW; the position on the leading edge side of the recorded mark at the width of EW is designated effective leading edge; and the position on the trailing edge side of the recorded mark at the width of EW is designated effective trailing edge; the distance between the effective leading edge and the effective trailing edge is designated effective length ML; and the distance between the effective leading edge and the position at which the width starts to decrease on the trailing edge side is designated WL.
    • 当以高线速度重写介质时,抑制了相变光记录介质中的抖动的增加,而在记录层的结晶速度没有极度降低的情况下。 另外,在以恒定的角速度操作的盘形介质中,通过在介质的整个区域上抑制的抖动的增加来实现重写。 提供了一种用于记录具有以恒定角速度旋转的相变记录层的盘形光学记录介质的光学记录方法,其中在记录层中形成非晶体记录标记。 在该方法中,形成最小记录标记,使得W L L / M L L从光记录介质的径向内侧向径向外侧逐渐地逐渐减小 当最小信号具有长度为S L L时,当对应于所述最小信号的最小记录标记具有M W的最大宽度时,E W 为0.1MW; 记录标记的前缘侧的位置在E 的宽度被指定为有效前沿; 并且在E< W>宽度的记录标记的后缘侧的位置被指定为有效后缘; 有效前沿和有效后沿之间的距离被指定为有效长度M L L; 并且有效前沿与后缘侧宽度开始减小的位置之间的距离被指定为W L L。
    • 3. 发明授权
    • Optical recording medium and its designing method
    • 光记录介质及其设计方法
    • US06618349B2
    • 2003-09-09
    • US09788589
    • 2001-02-21
    • Hiroyasu InoueHajime UtsunomiyaHiroshi ShingaiTetsuro MizushimaTatsuya Kato
    • Hiroyasu InoueHajime UtsunomiyaHiroshi ShingaiTetsuro MizushimaTatsuya Kato
    • G11B700
    • G11B7/007
    • In an optical recording medium of land/groove recording system, a sufficient tilt margin and a reduced cross talk are realized simultaneously with a sufficiently increased output. Provided is an optical recording medium having a light-transmitting substrate formed with grooves wherein the grooves and the region between adjacent grooves are used for the recording track, and a reading beam is irradiated through the light-transmitting substrate, wherein the relations: −12.6T+15.6≦x≦25T−3.8, and 0.55≦T≦0.68 are satisfied when the reading beam has a wavelength of &lgr;, the light-transmitting substrate has a refractive index at the wavelength &lgr; of n, the reading optical system has a numerical aperture of NA, recording track pitch is PT, the groove has a depth of &lgr;/(x·n), and T is PT/(&lgr;/NA).
    • 在平台/凹槽记录系统的光记录介质中,充分提高输出同时实现足够的倾斜余量和减少的串扰。 提供了一种光记录介质,其具有形成有沟槽的光透射基板,其中沟槽和相邻凹槽之间的区域用于记录轨道,并且通过透光基板照射读取光束,其中满足关系: 当读取光束具有lambd的波长时,透光衬底的折射率为n的波长,读取光学系统具有NA的数值孔径,记录轨道间距为PT,槽具有lambd的深度 /(xn),T为PT /(lambd / NA)。
    • 7. 发明授权
    • Information readout method for non mask layer type optical information medium
    • 非掩模层型光信息介质的信息读出方法
    • US07859968B2
    • 2010-12-28
    • US12352304
    • 2009-01-12
    • Takashi KikukawaTatsuya KatoHajime UtsunomiyaHiroshi Shingai
    • Takashi KikukawaTatsuya KatoHajime UtsunomiyaHiroshi Shingai
    • G11B7/0045
    • 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。
    • 8. 发明授权
    • Information readout method for non mask layer type optical information medium
    • 非掩模层型光信息介质的信息读出方法
    • US07496019B2
    • 2009-02-24
    • US10125476
    • 2002-04-19
    • Takashi KikukawaTatsuya KatoHajime UtsunomiyaHiroshi Shingai
    • Takashi KikukawaTatsuya KatoHajime UtsunomiyaHiroshi Shingai
    • G11B7/0045
    • 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。