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    • 3. 发明授权
    • Controlled-environment package for limited-play optical disc
    • 有限播放光盘的受控环境包
    • US07438184B2
    • 2008-10-21
    • US10162417
    • 2002-06-04
    • Robert F. ThompsonYannis Bakos
    • Robert F. ThompsonYannis Bakos
    • B65D85/57B65D85/84
    • G11B23/282G11B33/0422
    • Limited play optical discs (LPOD's) are optical discs readable by a reading device for a limited period of time. After removal from it's packaging, an LPOD becomes unusable after a relatively short period of time. LPOD's can be provided with a limited shelf life by storing the LPOD's in a special package. The packaging includes a portion that controls the environment inside the package until a preset period of time passes, at which point reading-inhibit action of a material in the optical disc is allowed to go forward, which causes the disc to become unreadable. Hence, once the product exceeds its shelf life, it becomes unusable regardless of whether or not the package has been opened.
    • 有限播放光盘(LPOD)是读取设备在一段有限的时间内可读的光盘。 在从包装中取出后,LPOD在相对较短的时间内变得不可用。 LPOD可以通过将LPOD存储在特殊包装中而提供有限的保质期。 包装包括控制包装内的环境的部分,直到经过预设的时间段,此时光盘中的材料的禁止读取动作被允许向前移动,这导致盘变得不可读。 因此,一旦产品超过其保质期,无论包装是否打开,它都不可用。
    • 4. 发明授权
    • Limited play optical devices with interstitial reactive layer and methods of making same
    • 有限播放具有间隙反应层的光学器件及其制造方法
    • US06917579B2
    • 2005-07-12
    • US10163821
    • 2002-06-05
    • Robert F. ThompsonYannis BakosArthur R. LeBlanc, III
    • Robert F. ThompsonYannis BakosArthur R. LeBlanc, III
    • G11B7/244G11B7/257G11B20/00G11B23/28B11B7/24
    • G11B23/282G11B7/24038G11B7/244G11B7/252G11B7/2533G11B7/2534G11B7/2542G11B7/256G11B7/257G11B7/259G11B20/00086G11B20/00586G11B20/0084G11B20/00876
    • Methods and apparatus are provided for making an optically readable storage media in which the reading beam passes through a bonding layer configured with a reactive material that transforms from an optically transparent state to an optically opaque state after exposure to a predefined stimulus, thereby inhibiting access to the data encoded on the optically readable storage media. The method includes steps of synthesizing a blocked dye combining the blocked dye with a carrier material curing the resultant combination deblocking the dye to produce a reduced dye in the resultant bonding layer exposing the optically readable storage media with the reactive material in its bonding layer to a predetermined stimulus. In a further aspect of the present invention methods and apparatus are provided for making an optically readable storage media wherein the reading light passes through the bonding layer and the data encoded information is encoded on the L1 substrate. In yet another aspect of the present invention methods and apparatus are provided for making an optically readable storage media with at least two mechanisms for limiting access to the encoded data of the optically readable storage media.
    • 提供了用于制造光学可读存储介质的方法和装置,其中读取光束通过配置有在暴露于预定义的刺激之后从光学透明状态转换为光学不透明状态的反应性材料的结合层,从而禁止访问 编码在光学可读存储介质上的数据。 该方法包括以下步骤:合成封闭的染料与封端染料组合的载体材料,固化所得组合物解封染料以在所得粘合层中产生还原染料,将光学可读存储介质与其结合层中的反应性材料暴露于 预定刺激。 在本发明的另一方面,提供了用于制造光学可读存储介质的方法和装置,其中读取光通过结合层并且数据编码信息被编码在L 1衬底上。 在本发明的另一方面,提供了用于制造具有用于限制对光学可读存储介质的编码数据的访问的至少两种机制的光学可读存储介质的方法和装置。
    • 8. 发明授权
    • Injection molding nozzle structured for cooling at extreme tip
    • 注射喷嘴结构用于在尖端冷却
    • US07175416B2
    • 2007-02-13
    • US10814000
    • 2004-03-31
    • Frank J. BaresichRobert F. Thompson
    • Frank J. BaresichRobert F. Thompson
    • B29C45/20
    • B29C45/20B29C2045/207
    • A nozzle for injection molding is made of at thermally conductive metal material but is thermally conductively blocked or interrupted. An abrupt reduction in wall thickness and/or a gap in the continuity of thermally conductive material occur along the nozzle material passageway. This provides a localized restriction to thermal conduction, causing a reduction in heat flow from the mold to the material supply while cooling the melt material near the end of the nozzle. This material, which is relatively cooled to near the mold temperature, becomes the last injected material when filling of the mold is completed, occupying the area of the sprue. As a result, the sprue is relatively cool, thus reducing stringing and shortening mold cycle time.
    • 用于注射成型的喷嘴由导热金属材料制成,但是导热阻塞或中断。 沿着喷嘴材料通道发生壁厚和/或导热材料的连续性的间隙的突然减小。 这提供了对热传导的局部限制,从而导致从模具到材料供应的热流的减少,同时冷却在喷嘴端部附近的熔体材料。 相对冷却到接近模具温度的这种材料在填充模具完成时成为最后注入的材料,占据浇口的区域。 结果,浇道相对较冷,从而减少了模具循环时间的缩短和缩短。
    • 10. 发明申请
    • DEVICES FOR DELIVERING AT LEAST ONE ACTIVE AGENT TO TISSUE
    • 用于将至少一个活性剂递送到组织的装置
    • US20120109082A1
    • 2012-05-03
    • US13284892
    • 2011-10-29
    • Charles LeahyRobert F. ThompsonEdward Ellis
    • Charles LeahyRobert F. ThompsonEdward Ellis
    • A61F9/00
    • A61F9/0017A61F2250/0068A61K9/0051
    • A device for delivering an active agent to target tissue at a site that includes a bodily fluid includes a body having a first exterior surface including a first section having a local, discrete recessed area formed in the body for holding the active agent. The body includes a surface flow feature in the form of a canal that is formed in the body and is recessed relative to the exterior surface. The surface flow feature interfaces with the first section and the local recessed area and is configured so as to guide or modify flow of the bodily fluid relative to the body such that fluid communication is provided between the bodily fluid and the local recessed area. The local recessed area is recessed relative to at least a portion of the canal.
    • 用于将活性剂递送到包括体液的部位的靶组织的装置包括具有第一外表面的主体,所述第一外表面包括第一部分,所述第一部分具有形成在所述主体中的用于保持活性剂的局部离散凹陷区域。 主体包括形成在体内并相对于外表面凹陷的管形式的表面流动特征。 表面流动特征与第一部分和局部凹陷区域相接合,并且构造成引导或改变体液相对于身体的流动,从而在体液和局部凹陷区域之间提供流体连通。 局部凹陷部分相对于运河的至少一部分凹进。