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    • 28. 发明授权
    • Method and apparatus for wireless web time and expense entry via time keeping and expense tracking server access
    • 通过时间和费用跟踪服务器访问进行无线网络时间和费用输入的方法和装置
    • US06753884B1
    • 2004-06-22
    • US09606438
    • 2000-06-29
    • Curtis L. Finch, IIWilliam LeakeWilliam R. MillerChris V. Anderson
    • Curtis L. Finch, IIWilliam LeakeWilliam R. MillerChris V. Anderson
    • G09G500
    • G06Q10/00
    • A system and method for building GUI screens for a time keeping and expense tracking system includes a time keeping and expense tracking (TKET) server that includes computer instructions that define logic for building GUI screens according to user definitions, communication channel throughput capacity, and terminal capacity. Initially, the TKET server examines a user's ID to determine his group affiliations and ability levels for modifying the parameters, objects and layout of a GUI screen. Thereafter, the TKET server allows the user to make changes according to his defined abilities. For subsequent sessions, the TKET server builds a GUI screen according to the previously defined parameters. The TKET server is operable to act as a remote time clock. Accordingly, the TKET server is formed to receive and interpret signals that define the user ID, an account code, and whether a start or stop timekeeping event has been selected.
    • 用于构建用于时间维护和费用跟踪系统的GUI屏幕的系统和方法包括时间维护和费用跟踪(TKET)服务器,其包括根据用户定义,通信信道吞吐能力和终端定义用于构建GUI屏幕的逻辑的计算机指令 容量。 最初,TKET服务器检查用户的身份信息,以确定他的团队关系和能力水平,以修改GUI屏幕的参数,对象和布局。 此后,TKET服务器允许用户根据他定义的能力进行更改。 对于后续会话,TKET服务器根据先前定义的参数构建GUI屏幕。 TKET服务器可用作远程时钟。 因此,TKET服务器被形成为接收和解释定义用户ID,帐户代码以及是否已经选择了开始或停止计时事件的信号。
    • 30. 发明授权
    • Expansible shaft for roll core
    • 卷芯可膨胀轴
    • US5445342A
    • 1995-08-29
    • US318072
    • 1994-10-05
    • William R. MillerTimothy J. Becker
    • William R. MillerTimothy J. Becker
    • B65H18/04B65H75/24
    • B65H75/243
    • An elongate expansible shaft for a roll core has a peripheral surface defining multiple separate elongate slots helically intertwined and oriented at a pitch angle no greater than about 30.degree. measured from a longitudinal axis. Each slot is T-shaped in cross section and contains a respective separate, elongate, resilient bladder pneumatically expandable into frictional engagement with the core. The bladder has a unitary construction with hinge portions for minimizing the loss of force due to expansion of the bladder. An air inlet fitting is inserted in one end of each bladder and is independently connected to a respective separate valve for preventing the escape of air from the bladder irrespective of the air pressure in any other bladder.
    • 用于卷芯的细长的可扩展轴具有限定多个分离的细长狭槽的外周表面,所述细长槽螺旋缠结并且以从纵向轴线测量的俯仰角不大于约30°定向。 每个槽的横截面为T形,并且包含气动地可扩展成与芯部摩擦接合的相应的单独的,细长的弹性气囊。 膀胱具有一体结构,具有铰链部分,用于使由于膀胱膨胀引起的力的损失最小化。 空气入口配件插入每个气囊的一端,并且独立地连接到相应的单独的阀,以防止空气从气囊逸出,而与任何其它气囊中的空气压力无关。