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    • 42. 发明授权
    • Reflective coating for an optical disc
    • 光盘反光涂层
    • US08277919B2
    • 2012-10-02
    • US12507868
    • 2009-07-23
    • Neil DeemanJerry E. Hurst, Jr.
    • Neil DeemanJerry E. Hurst, Jr.
    • B32B3/02
    • C23C14/205G11B7/2585G11B7/266Y10T428/12736Y10T428/12743Y10T428/21
    • An optical disc includes a substrate layer, a cover layer, and an aluminum alloy layer that is between the substrate layer and cover layer, and is adjacent to the substrate layer. The aluminum alloy layer includes a majority amount of aluminum and an additional metal selected from the group consisting of: chromium, titanium, tantalum, and any combination thereof. A method of making an optical disc includes the steps of: forming a substrate layer; sputtering an aluminum alloy target onto the substrate layer to form an aluminum alloy layer; and forming a cover layer; wherein the aluminum alloy layer comprises a majority amount of aluminum and an additional metal selected from the group consisting of: chromium, titanium, tantalum, and any combination thereof.
    • 光盘包括衬底层,覆盖层和位于衬底层和覆盖层之间并且与衬底层相邻的铝合金层。 铝合金层包括大量的铝和选自铬,钛,钽及其任何组合的另外的金属。 制造光盘的方法包括以下步骤:形成衬底层; 将铝合金靶溅射到基底层上以形成铝合金层; 并形成覆盖层; 其中所述铝合金层包含多数量的铝和选自以下的另外的金属:铬,钛,钽及其任何组合。
    • 44. 发明授权
    • Method and apparatus for constant linear velocity electron beam substrate processing
    • 恒定线速度电子束衬底加工的方法和装置
    • US07382711B2
    • 2008-06-03
    • US10783263
    • 2004-02-19
    • Sundeep ChauhanLawrence BryantNeil DeemanChristopher FormatoDavid Kuo
    • Sundeep ChauhanLawrence BryantNeil DeemanChristopher FormatoDavid Kuo
    • G11B9/10
    • G11B7/26G11B5/8404G11B9/10H01J37/3023H01J2237/31735
    • Embodiments of the invention generally provide an electron beam substrate processing system. In one embodiment, the present invention provides an electron beam substrate processing system where a spindle shaft used to rotate substrates during processing includes at least one optical encoder wheel assembly. The optical encoder wheel assembly is configured to provide rotational speed data signal to a rotational speed control system and a pattern generation clock circuit configured to a provide an angular pattern generator clock signal and to a pattern generator circuit. The pattern generation circuit is configured to control modulation of an electron beam used for substrate processing. In one aspect of the present invention, while the spindle shaft is rotated at a constant linear velocity, the pattern generation circuit controls the modulation of an electron beam such that written mark lengths are sized to be about constant in angular dimension.
    • 本发明的实施例通常提供电子束基板处理系统。 在一个实施例中,本发明提供一种电子束基板处理系统,其中用于在加工过程中旋转基板的主轴用于至少一个光学编码器轮组件。 光学编码器轮组件被配置为向旋转速度控制系统和图案生成时钟电路提供转速数据信号,其被配置为提供角度图形发生器时钟信号和模式发生器电路。 图案生成电路被配置为控制用于基板处理的电子束的调制。 在本发明的一个方面,当主轴以恒定的线速度旋转时,图案产生电路控制电子束的调制,使得书写标记长度的尺寸在角度尺寸上约为恒定。
    • 46. 发明授权
    • Utilizing permanent master for making stampers/imprinters for patterning of recording media
    • 利用永久主人制作刻印机/打印机来记录媒体的图案化
    • US07105280B1
    • 2006-09-12
    • US10436057
    • 2003-05-13
    • Neil DeemanGennady GauznerChristopher FormatoNobuo Kurataka
    • Neil DeemanGennady GauznerChristopher FormatoNobuo Kurataka
    • G11B5/20
    • G11B5/855B81C99/009
    • A method of manufacturing a stamper/imprinter for use in patterning of a recording medium, comprising sequential steps of: (a) providing a permanent master comprising a body of a substantially rigid material having a surface with a topographical pattern formed therein comprising a patterned plurality of spaced-apart recesses with a plurality of non-recessed areas therebetween, the topographical pattern corresponding to a pattern to be formed in a recording medium; (b) forming a layer of a substantially rigid material over the surface of the permanent master with the topographical pattern formed therein; (c) separating the layer of a substantially rigid material from the master, the layer of a substantially rigid material having an imprinting surface with a topographical pattern formed therein replicating the topographical pattern of the permanent master; and (d) repeating steps (b) and (c) multiple times with the permanent master provided in step (a) to form a plurality of stampers/imprinters.
    • 一种用于制造用于记录介质图案化的压模/打印机的方法,包括以下顺序的步骤:(a)提供永久性主机,其包括具有形成在其中的形状图案的表面的基本刚性材料的主体,包括图案化多个 间隔开的凹部,其间具有多个非凹陷区域,所述形状图案对应于要在记录介质中形成的图案; (b)在永久性主体的表面上形成基本上刚性的材料层,其中形成有形貌图案; (c)将基本上刚性的材料层与主体分离,具有压印表面的基本刚性材料的层,其中形成有形成图形的图案,复制永久性主体的形貌图案; 和(d)用步骤(a)中提供的永久主机重复步骤(b)和(c)多次以形成多个冲压机/冲压机。
    • 50. 发明申请
    • Dry passivation process for stamper/imprinter family making for patterned recording media
    • 干式钝化工艺用于压模/印刷机家族制作图案化记录介质
    • US20050082700A1
    • 2005-04-21
    • US10685462
    • 2003-10-16
    • Neil DeemanHong WangGennady GauznerNobuo Kurataka
    • Neil DeemanHong WangGennady GauznerNobuo Kurataka
    • B29D11/00C25D1/00C25D1/20
    • C25D1/20C25D1/00C25D1/10
    • A method of manufacturing a stamper/imprinter for use in patterning of a recording medium comprises sequential steps of: (a) providing a substrate/workpiece comprising a topographically patterned surface including a plurality of projections and depressions corresponding to a pattern to be formed in a surface of the recording medium; (b) forming a thin release layer in conformal contact with the topographically patterned surface by means of a dry process; (c) forming a thicker layer of a material in conformal contact with the thin passivation layer on the topographically patterned surface; and (d) separating the thicker layer of material from the topographically patterned surface to form therefrom a stamper/imprinter including an imprinting surface having a negative image replica of the topographically patterned surface, separation of the thicker layer of material from the topographically patterned surface being facilitated by the thin release layer formed by the dry process.
    • 一种制造用于记录介质图形化的压模/打印机的方法包括以下步骤:(a)提供基板/工件,该基板/工件包括地形图形表面,其包括对应于待形成的图案的多个凸起和凹陷 记录介质的表面; (b)通过干法形成与地形图形表面保形接触的薄释放层; (c)在地形图形表面上形成与薄钝化层保形接触的材料的较厚层; 以及(d)将厚层材料与地形图案化的表面分离以形成压模/打印机,其包括具有地形图形表面的负图像复制品的压印表面,较厚的材料层与地形图形表面的分离是 由通过干法形成的薄释放层促进。