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    • 1. 发明授权
    • Methods and apparatus for facilitating design, selection and/or customization of lighting effects or lighting shows
    • 用于促进照明效果或照明节目的设计,选择和/或定制的方法和装置
    • US08938468B2
    • 2015-01-20
    • US12810535
    • 2008-12-29
    • Frederick MorganIhor LysRonald Joseph Antonius Van Den OetelaarMichael Van Hartskamp
    • Frederick MorganIhor LysRonald Joseph Antonius Van Den OetelaarMichael Van Hartskamp
    • G06F17/30H05B37/02
    • H05B37/029
    • Methods and apparatus for facilitating a process of designing, selecting, and/or customizing lighting effects or lighting shows. A library of indexed (tagged) predefined lighting effects or shows is searched by a search engine, based upon information provided by a user/designer, to identify a set of effects or shows having attributes that are in some way related to the information provided by the user. The user is then presented with search results, i.e., a manageable subset of intelligently chosen lighting effects or shows, which may be ranked in terms of relevance, any one or more of which may be readily selected by the user. The user may select one or more effects or shows from the search results “as is” for execution by a lighting system, may combine one or more effects or shows from the search results, or may modify one or more effects or shows from the search results to refine some aspect of the effect(s)/show(s) in accordance with user preferences. In one exemplary implementation, the library of lighting effects/shows and/or the search engine may be hosted by a web site and accessible via the Internet.
    • 用于促进设计,选择和/或定制照明效果或照明显示的过程的方法和装置。 根据用户/设计者提供的信息,由搜索引擎搜索索引(标记)预定义的照明效果或节目的库,以识别一组效果或具有某种方式与由 用户。 然后向用户呈现搜索结果,即智能选择的照明效果或显示的可管理子集,其可以根据相关性排列,用户可以容易地选择其中的一个或多个。 用户可以从搜索结果“按原样”选择一个或多个效果或显示,以供照明系统执行,可以组合来自搜索结果的一个或多个效果或显示,或者可以从搜索中修改一个或多个效果或显示 结果根据用户偏好来改进某些方面的效果/显示。 在一个示例性实施方式中,照明效果/展示和/或搜索引擎库可以由网站托管并且可以经由因特网访问。
    • 3. 发明申请
    • OPTICAL DISC WITH POSTPONED VIEWING WINDOW
    • 带有视觉窗口的光盘
    • US20100034075A1
    • 2010-02-11
    • US12444702
    • 2007-10-04
    • Ronald Joseph Antonius Van Den OetelaarDonato Pasquariello
    • Ronald Joseph Antonius Van Den OetelaarDonato Pasquariello
    • G11B3/70
    • G11B7/252G11B7/2403
    • An optical storage medium comprising a data layer suitable to be read by means of a radiation beam in an optical scanning apparatus, and access control means for inhibiting reading of at least part of stored information for a predetermined period of time, thereby leading to a postponed viewing window. Preferably the access control means correspond to an access control layer covering at least part of the data layer, chosen to inhibit access to the data layer. The onset of the predetermined period of time may be determined by exposure of the access control layer to an activating substance. A diffusion barrier layer may control the length of the predetermined period of time. Such optical storage medium is preferably used for distributing content having a fixed release date.
    • 一种光学存储介质,包括适于在光学扫描装置中通过辐射束读取的数据层,以及访问控制装置,用于禁止在预定时间段内读取至少部分存储的信息,从而导致延迟 查看窗口。 优选地,访问控制装置对应于覆盖数据层的至少一部分的访问控制层,所述访问控制层被选择为禁止访问数据层。 预定时间段的开始可以通过将访问控制层暴露于激活物质来确定。 扩散阻挡层可以控制预定时间段的长度。 这种光存储介质优选地用于分发具有固定发布日期的内容。
    • 5. 发明授权
    • Optical storage system optical storage medium and use of such a medium
    • 光存储系统光存储介质和这种介质的使用
    • US07394751B2
    • 2008-07-01
    • US10497047
    • 2002-12-02
    • Ronald Joseph Antonius Van Den Oetelaar
    • Ronald Joseph Antonius Van Den Oetelaar
    • G11B7/24
    • G11B7/2548G11B7/2534G11B7/2575G11B2007/25417
    • A description is given of an optical storage system comprising an optical storage medium (1) and an optical head device (6). The medium has a substrate (2), a recording stack (3) and an optically transparent protective coating stack (4 and 5), for protecting the recording stack from impact by the optical head device (6). The protective coating stack comprises a multi-layer (4 and 5) of at least: a first layer (5) with a thickness smaller than 40 nm and a surface with a surface energy smaller than 1.5 J/m2, and a second layer (4), adjacent the first layer (5), with a Young's modulus E smaller than 10 GPa and larger than 0.001 GPa. This combination of layers (4 and 5) is very resistant to damage caused by mechanical impact of the optical head device (6). No lubricants are required.
    • 给出了包括光学存储介质(1)和光学头装置(6)的光学存储系统的描述。 介质具有基板(2),记录叠层(3)和光学透明的保护涂层叠层(4和5),用于保护记录叠层免受光头装置(6)的冲击。 保护涂层堆叠包括至少具有厚度小于40nm的第一层(5)和表面能小于1.5J / m 2的表面的多层(4和5) 和与第一层(5)相邻的第二层(4),杨氏模量E小于10GPa并且大于0.001GPa。 层(4和5)的这种组合非常耐受由光学头装置(6)的机械冲击引起的损坏。 不需要润滑剂。
    • 9. 发明授权
    • Optical data storage medium and use of such medium
    • 光学数据存储介质和这种介质的使用
    • US09324356B2
    • 2016-04-26
    • US10517917
    • 2003-06-13
    • Hubert Cécile François MartensRonald Joseph Antonius Van Den Oetelaar
    • Hubert Cécile François MartensRonald Joseph Antonius Van Den Oetelaar
    • G11B7/24G11B7/0045G11B7/005G11B7/007
    • G11B7/24079G11B7/00455G11B7/0052G11B7/007G11B7/24G11B7/24035
    • A multi-stack optical data storage medium (30) for recording and reading using a focused radiation beam (40) entering through an entrance face (41) of the medium (30) is described. It has a first substrate (31a) with present on a side thereof a first recording stack (33) named L0, comprising a recordable type L0 recording layer (35), formed in a first L0 guide groove (38a, 38b). A first reflective layer (39) is present between the first L0 recording layer (35) and the first substrate (31a). A second substrate (31b) with present on a side thereof a second recording stack (32) named L1 is present at a position closer to the entrance face (41) than the L0 recording stack (33) and formed in a second L1 guide groove (37). A transparent spacer layer (36) is sandwiched between the recording stacks (32, 33). The first L0 guide groove (38a, 38b) has a depth GL0
    • 描述了使用从介质(30)的入射面(41)进入的聚焦辐射束(40)进行记录和读取的多层光学数据存储介质(30)。 它具有第一衬底(31a),其一侧上具有名为L0的第一记录堆叠(33),包括形成在第一L0引导槽(38a,38b)中的可记录型L0记录层。 第一反射层(39)存在于第一L0记录层(35)和第一基板(31a)之间。 在比L0记录叠层(33)更靠近入射面(41)的位置处,存在位于其一侧的第二记录叠层(32)的第二基板(31b),形成在第二L1引导槽 (37)。 透明间隔层(36)夹在记录叠层(32,33)之间。 第一L0引导槽(38a,38b)的深度GL0 <100nm。 以这种方式,在约655nm的辐射束波长处实现了L0堆叠的相对较高的反射值。