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    • 26. 发明授权
    • Electrical connector configured as a fastening element
    • 电连接器构造为紧固元件
    • US07462035B2
    • 2008-12-09
    • US11190697
    • 2005-07-27
    • Kang LeeThomas ForresterTomasz JannsonAndrew KostrzewskiEugene LevinGajendra Savant
    • Kang LeeThomas ForresterTomasz JannsonAndrew KostrzewskiEugene LevinGajendra Savant
    • H01R33/00
    • H01R13/625A41D1/002H01R4/04H01R4/06H01R12/592H01R13/24H01R13/5219H01R13/6277H01R39/64
    • An entirely wearable electrical connector for power/data connectivity. The principal element of a modular network is the wearable electrical connector, which is integrated into a personal area network with USB compatibility. Several wearable connector embodiments are disclosed. The first, an O-ring based version, was subsequently replaced by a more mature second version, which is based on anisotropic pressure sensitive conductive elastomer. Both are snap-style, low-profile, 360°-moving, round, blind operable plug-and-play, reconfigurable wearable connectors with power/data daisy-lattice-style connectivity. A third embodiment comprises a non-conductive elastomeric environmental seal. A fourth embodiment utilizes a self-acting, automatic shutter-type environmental seal. A fifth embodiment comprises a smaller version that resembles a conventional snap fastener commonly used on clothing. The inventive technology will benefit the military and public safety personnel such as police, fire, EMT and other services that require special protective clothing integrated with multiple electronic devices. Other applications include special clothing for the disabled, prisoners, the mentally ill and children. A non-wearable embodiment is used to provide evidence of tampering of a container.
    • 用于电源/数据连接的完全可佩戴的电连接器。 模块化网络的主要元件是可佩戴的电连接器,它集成到具有USB兼容性的个人区域网络中。 公开了几种可穿戴式连接器实施例。 第一个基于O形圈的版本随后被更为成熟的第二版本替代,该版本基于各向异性压敏导电弹性体。 两种都是卡式,低调,360度移动,圆形,可操作的即插即用,可重新配置的可穿戴式连接器,具有电源/数据菊花格子式连接。 第三实施例包括非导电弹性体环境密封。 第四实施例利用自动的自动快门式环境密封。 第五实施例包括类似于通常用于衣服上的常规按扣的较小版本。 本发明技术将使警察,消防,EMT等需要特殊防护服的多个电子设备的军事和公共安全人员受益。 其他应用包括为残疾人士,囚犯,精神病患者和儿童提供特别服装。 使用非穿戴性实施例来提供篡改容器的证据。
    • 27. 发明申请
    • Roll-to-roll method and system for micro-replication of a pattern of large relief three-dimensional microstructures
    • 用于微复制的大型浮雕三维微结构的卷对卷方法和系统
    • US20080156421A1
    • 2008-07-03
    • US11649428
    • 2007-01-03
    • Kang LeeNanda NathanEngin ArikThomas ForresterTomasz JannsonEdward M. KaiserKevin H. Yu
    • Kang LeeNanda NathanEngin ArikThomas ForresterTomasz JannsonEdward M. KaiserKevin H. Yu
    • B32B37/12
    • G02B5/0231B29C39/148B29C39/18G02B5/0221G02B5/0268G02B5/045Y10T156/1168Y10T156/1174Y10T156/1195
    • A method and system referred to as PALM (Patterning by Adhesive of Large Relief Three-Dimensional Microstructures) with large reliefs exceeding 1 μm and being as large as 100 μm. The microstructures can be either deterministic (such as microprisms), or random (such as diffusers), the first obtained by copying an original supermaster, and latter obtained by copying a laser speckle pattern. The master process entails copying a supermaster into the form of the microstructure constituting a pattern on the patterning cylinder (called a drum), to be then continuously multiplied in the PALM system, in a continuous roll-to-roll web process. The latter method, together with the related system, is the subject of this invention. The rolls continuously repeat the master pattern, copying by adhesive with large viscosity on acrylic (hybrid) as well as by a monolithic process. The monolithic process can be accomplished using temperature and pressure, or by UV-cured polymerization. Therefore, the invention comprises three alternative processes: one, hybrid (adhesive on acrylic), and two monolithic ones. In the PALM (hybrid) process, an epoxy is wet-coated on film substrates such as polycarbonate (PC), polyester (PET), (PE), or other flexible material. The adhesive, in liquid form, is applied to the substrate by a self-metered coating sub-process. In the present invention, the adhesive is used for forming the microstructure pattern. The microstructure pattern is replicated from a master roll or image drum onto a coating roll.
    • 一种称为PALM(大型浮雕三维显微结构的图案化)的方法和系统,其具有超过1um的大浮雕并且大至100mum。 微结构可以是确定性的(例如微棱镜)或随机的(如扩散器),这是通过复制原始超高分子获得的,而后者是通过复制激光斑纹图案获得的。 主处理过程需要将超高分子复制到构图图案化圆筒(称为滚筒)上的图案的微结构的形式中,然后在连续的卷对卷网过程中在PALM系统中连续地倍增。 后一种方法与相关系统一起是本发明的主题。 辊连续重复主图案,通过丙烯酸(混合)上的粘度大的粘合剂以及通过单片工艺复印。 整体方法可以使用温度和压力,或通过UV固化聚合来完成。 因此,本发明包括三种可选方法:一种,混合型(丙烯酸粘合剂)和两种单片。 在PALM(混合)方法中,将环氧树脂湿式涂覆在诸如聚碳酸酯(PC),聚酯(PET),(PE)或其它柔性材料的薄膜基材上。 液体形式的粘合剂通过自动计量涂层子方法施加到基底上。 在本发明中,粘合剂用于形成微结构图案。 将微结构图案从主辊或图像鼓复制到涂布辊上。
    • 28. 发明申请
    • SELF-HEALING ELECTRICAL COMMUNICATION PATHS
    • 自助电气通讯系统
    • US20100122832A1
    • 2010-05-20
    • US12272616
    • 2008-11-17
    • Leonid BukshpunRanjit PradhanKang S. LeeThomas ForresterTomasz Jannson
    • Leonid BukshpunRanjit PradhanKang S. LeeThomas ForresterTomasz Jannson
    • H01B3/00A41D1/00
    • A41D1/005
    • Self-healing electrical garments and self-healing electrical conductors and components for use in electrical garments are provided. A communication medium of various forms is integrated into a garment seam that is used to join two or more portions of a garment. The communication media can be used to provide electrical or other electromagnetic connection for coupling among a plurality of electrical devices associated with the garment. The self-healing electrical conductor may be used as part of a garment portion or may be used as a joining fiber in a variety of techniques to join garment portions together. The self-healing electrical conductor comprises an electrical conductor, a conductive polymer immediately surrounding or adjacent to the electrical conductor, an insulator enclosing the electrical conductor and the conductive polymer.
    • 提供自愈式电气服装和自愈电导体和用于电气服装的部件。 将各种形式的通信介质集成到用于连接衣服的两个或更多个部分的衣服缝中。 通信介质可用于提供用于在与服装相关联的多个电气设备之间耦合的电气或其它电磁连接。 自修复电导体可以用作衣服部分的一部分,或者可以以各种技术用于连接衣服部分的连接纤维。 自修复电导体包括电导体,直接围绕或邻近电导体的导电聚合物,封闭电导体和导电聚合物的绝缘体。
    • 30. 发明授权
    • Luminaire illumination system and method
    • 灯具照明系统及方法
    • US08576406B1
    • 2013-11-05
    • US12508500
    • 2009-07-23
    • Tomasz JannsonIlya AgurokThomas ForresterRanjit PradhanMin-Yi Shih
    • Tomasz JannsonIlya AgurokThomas ForresterRanjit PradhanMin-Yi Shih
    • G01B9/02
    • F21V13/04F21K9/233F21S8/068F21V5/005F21V5/008F21V5/045F21V7/0091F21Y2115/10G02B19/0028G02B27/0927
    • A method of constructing a non-imaging beam transformer includes reducing a tailored illumination function from a predetermined light source to a source point response illumination function; calculating a plurality of transformation pairs for the predetermined light source, the transformation pairs identifying the radii of illumination of the light source at given source output angles; determining a desired lighting profile for light output at a region of interest to be illuminated by the beam transformer; determining a surface profile of a surface of the beam transformer such that for given output angles of the light source, the transformation pairs at those output angles are satisfied to correspond to the desired lighting profile; and constructing the beam transformer having the surface profile determined based on the transformation pairs. The method can include characterizing a specific angular output distribution of a light source to calculate the transformation pairs.
    • 一种构造非成像光束变换器的方法包括将定制的照明功能从预定光源减少到源点响应照明功能; 计算用于所述预定光源的多个变换对,所述变换对在给定的源输出角度处识别所述光源的照明半径; 确定用于由光束变换器照明的感兴趣区域的光输出的期望照明曲线; 确定所述光束变换器的表面的表面轮廓,使得对于所述光源的给定输出角度,满足所述输出角处的变换对以对应于期望的照明轮廓; 以及构造具有基于变换对确定的表面轮廓的光束变换器。 该方法可以包括表征光源的特定角度输出分布以计算变换对。