System and method for transmission of data
    1.
    发明授权
    System and method for transmission of data 失效
    用于传输数据的系统和方法

    公开(公告)号:US08572279B2

    公开(公告)日:2013-10-29

    申请号:US13018420

    申请日:2011-01-31

    Abstract: A system and method for data communication connecting on-line networks with on-line and off-line computers. The present system provides for broadcast of up to the minute notification centric information thereby providing an instant call to action for users who are provided with the ability to instantaneously retrieve further detailed information. The notification centric portions of information is wirelessly broadcast to wireless receiving devices which are attached to computing devices. Upon receipt of the information at the personal computer, the user is notified through different multimedia alerts that there is an incoming message. Wirelessly broadcasted URL's, associated with the data, are embedded in data packets and provide an automated wired or wireless connection back to the information source for obtaining detailed data.

    Abstract translation: 用于在线和离线计算机连接在线网络的数据通信系统和方法。 本系统提供广播最多以通知为中心的信息,从而为被提供能够即时检索更多详细信息的用户提供即时呼叫。 将通知中心部分的信息无线地广播到附接到计算设备的无线接收设备。 在个人计算机上接收到信息时,通过不同的多媒体警报通知用户存在传入消息。 与数据相关联的无线广播URL被嵌入在数据分组中,并提供到信息源的自动有线或无线连接以获得详细数据。

    Waterproof shape-shifting surface
    10.
    发明授权

    公开(公告)号:US10336028B1

    公开(公告)日:2019-07-02

    申请号:US15222258

    申请日:2016-07-28

    Abstract: The first objective of this paper is to take an existing design for a shape-shifting surface (SSS) and make it waterproof, making it an effective barrier to fluid flow. The second objective is to minimize internal stresses in the device during operation, by optimizing the kinematic geometry of the SSS. The first objective was achieved by adding a waterproof membrane between the layers of the SSS, where the membrane had an origami fold pattern that enables the membrane to mimic the kinematics of the SSS. The second objective was achieved by creating a two objective optimization routine, which determined the kinematic geometry of the SSS which would minimize the internal stresses due to compression/tension of the flexure portion of the SSS during operation. The resulting SSS is easier to operate due to lower stresses, and has a membrane which prevents transverse fluid flow and mimics its motion.

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