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    • 3. 发明授权
    • Techniques for managing the transmission and reception of data fragments
    • 用于管理数据片段的发送和接收的技术
    • US08386667B2
    • 2013-02-26
    • US12198860
    • 2008-08-26
    • Yalun LiWilliam Li
    • Yalun LiWilliam Li
    • G06F3/00G06F13/38G06F1/14G06F11/00H04L1/00G08C25/02
    • H04L5/0078H04L1/08H04L1/18H04L1/1835H04L1/1841H04L1/1848H04L1/188H04L69/28H04W84/12
    • This invention relates to techniques for managing the transmission and reception of data fragments that contains one or more data blocks using a single timer. One embodiment of the invention includes the following steps: processing the fragments sequentially, wherein each fragment has a processing index that corresponds to sequential processing of that fragment; processing each of the fragments until a termination upon meeting a first pre-defined condition; assigning a timer to an un-terminated fragment having a lowest processing index; starting said timer having a timeout value; and running said timer until the processing of said un-terminated fragment is terminated. This invention uses only one timer for each connection and therefore reduces memory and operational needs in the management of the data fragments that are being received or transmitted.
    • 本发明涉及用于使用单个定时器来管理包含一个或多个数据块的数据片段的发送和接收的技术。 本发明的一个实施例包括以下步骤:顺序地处理片段,其中每个片段具有对应于该片段的顺序处理的处理索引; 处理每个片段直到满足第一预定义条件的终止; 将定时器分配给具有最低处理索引的未终止的片段; 启动所述定时器具有超时值; 并运行所述定时器,直到终止所述未终止片段的处理。 本发明对于每个连接仅使用一个定时器,因此减少了正在接收或发送的数据片段的管理中的存储器和操作需要。
    • 5. 发明申请
    • Methods for Managing the Transmission and Reception of Data Fragments
    • 管理数据片段传输和接收的方法
    • US20100058102A1
    • 2010-03-04
    • US12198860
    • 2008-08-26
    • Yalun LiWilliam Li
    • Yalun LiWilliam Li
    • G06F1/14
    • H04L5/0078H04L1/08H04L1/18H04L1/1835H04L1/1841H04L1/1848H04L1/188H04L69/28H04W84/12
    • This invention relates to methods for managing the transmission and reception of data fragments that contains one or more data blocks using a single timer. The methods include the following steps: A method for managing the transceiving of data fragments, comprising the steps of: processing said fragments sequentially, wherein each fragment having a processing index that corresponds to the sequential processing of that fragment; processing each of said fragments until a termination upon the meeting of a first pre-defined condition; assigning a timer to an un-terminated fragment having the lowest processing index; starting said timer having a timeout value; and running said timer until the processing of said un-terminated fragment is terminated. The methods of this invention use only one timer for each connection and therefore reduce memory and operational needs in the management of the data fragments that are being received or transmitted.
    • 本发明涉及使用单个定时器来管理包含一个或多个数据块的数据片段的发送和接收的方法。 所述方法包括以下步骤:一种用于管理数据片段的收发的方法,包括以下步骤:依次处理所述片段,其中每个片段具有与该片段的顺序处理相对应的处理索引; 处理每个所述片段,直到在第一预定条件满足时终止; 向具有最低处理索引的未终止片段分配定时器; 启动所述定时器具有超时值; 并运行所述定时器,直到终止所述未终止片段的处理。 本发明的方法对于每个连接仅使用一个定时器,因此减少了正在接收或发送的数据片段的管理中的存储器和操作需要。
    • 7. 发明申请
    • Flexible tubing connector
    • 柔性管接头
    • US20070052231A1
    • 2007-03-08
    • US11210353
    • 2005-08-24
    • William Li
    • William Li
    • F16L33/00
    • F16L33/223
    • A connector for use in securing a length of flexible tubing with another object is set forth. The connector comprises a fitting and a collar. The fitting includes a neck that is adapted to receive the flexible tubing thereon. The neck, in turn, includes an exteriorly disposed barb for engaging the interior walls of the flexible tubing. The collar is adapted to engage the fitting at least about the neck and barb and includes an interiorly disposed flange portion having a contour that is shaped to cooperate with the surfaces of the barb to drive the flexible tubing over the barb and the neck as the collar and fitting are assembled with one another. The shape and contour of the flange portion also cooperates with the surfaces of the barb to provide a compressive force that may be used to provide a seal between the flexible tubing and neck. For example, the compressive force may be used to prevent disengagement of the flexible tubing and neck where the contents of the tubing is pressurized and/or where a pulling force is exerted on the tubing with respect to the neck. In one embodiment, the flange portion has a generally hour-glass shaped cross-section with smooth overall contour.
    • 阐述了用于将一段柔性管与另一物体固定的连接器。 连接器包括配件和套环。 配件包括适于在其上接收柔性管的颈部。 颈部又包括用于接合柔性管的内壁的外部设置的倒钩。 套环适于至少围绕颈部和倒刺接合配件,并且包括内部设置的凸缘部分,其具有轮廓,该轮廓被成形为与倒钩的表面协作以将柔性管道作为套环驱动倒钩和颈部 并且配件彼此组装。 凸缘部分的形状和轮廓也与倒钩的表面配合以提供可用于在柔性管和颈部之间提供密封的压缩力。 例如,可以使用压缩力来防止柔性管和颈部脱离,其中管道的内容物被加压和/或在相对于颈部对管道施加拉力的地方。 在一个实施例中,凸缘部分具有通常具有平滑整体轮廓的小时玻璃形横截面。
    • 8. 发明申请
    • Embedded bio-sensor system
    • 嵌入式生物传感器系统
    • US20070038054A1
    • 2007-02-15
    • US11582790
    • 2006-10-18
    • Peter ZhouDexing PangWilliam Li
    • Peter ZhouDexing PangWilliam Li
    • A61B5/05
    • A61B5/14865A61B5/0031A61B5/14532A61B2562/08G06F19/00G06F19/3418
    • Provided is a bio-sensor system which utilizes radio frequency identification technology and which includes a remote transponder in wireless communication with an implantable passively-powered on-chip transponder. The bio-sensor system is specifically adapted to provide a substantially stable and precise sensor reference voltage to a sensor assembly that is included with the on-chip transponder. The remote transponder is also configured to remotely receive data representative of a physiological parameter of the patient as well as identification data and may enable readout of one or more of the physiological parameters that are measured, processed and transmitted by the on-chip transponder upon request by the remote transponder. The precision and stability of the sensor reference voltage is enhanced by the specific circuit architecture of the glucose sensor to allow for relatively accurate measurement of the physiological parameter such as measurement of glucose concentration by a glucose sensor without the use of a microprocessor.
    • 提供了一种利用射频识别技术的生物传感器系统,其包括与可植入式被动供电的片上转发器进行无线通信的远程转发器。 生物传感器系统特别地适于向片上转发器附带的传感器组件提供基本上稳定和精确的传感器参考电压。 远程转发器还被配置为远程接收表示患者的生理参数的数据以及识别数据,并且可以使得能够读出由片上应答器根据请求测量,处理和传输的一个或多个生理参数 由远程转发器。 传感器参考电压的精度和稳定性通过葡萄糖传感器的具体电路结构得到增强,以允许相对精确地测量生理参数,例如葡萄糖传感器测量葡萄糖浓度而不使用微处理器。
    • 10. 发明授权
    • Fabric roof for scale model vehicle and method of assembly
    • 规模车辆的织物屋顶和组装方法
    • US5190493A
    • 1993-03-02
    • US816995
    • 1992-01-03
    • William Li
    • William Li
    • A63H17/26
    • A63H17/26
    • A fabric covered roof for model vehicles. The roof is constructed by providing an upper frame having ribs formed on the upper surface thereof. A fabric cover is stretched over the ribs, covering the entire frame. The edges of the fabric cover are folded under the frame and secured to pegs on the bottom surface of the frame by washers. A lower plate, conforming to the contour of the bottom surface of the upper frame, having bores arranged in a matching pattern with the pegs is fitted within the frame and covering the edges of the fabric cover. The bottom surface of the lower plate having texture to simulate the visual texture of the fabric cover. Support posts are mounted in spaces between the lower plate and the upper frame at locations inline with the ribs to simulate completed bows for supporting the roof on the vehicle. A rear window insert is also press-fitted into matching openings in the back panels of the upper frame and lower plate.
    • 用于示范车辆的织物覆盖的屋顶。 屋顶是通过提供在其上表面上形成有肋的上框架构成的。 织物覆盖物覆盖肋骨,覆盖整个框架。 织物盖的边缘在框架下方折叠,并通过垫圈固定在框架的底部表面上的钉上。 符合上框架底面轮廓的下板,其具有与钉匹配的图案布置的孔布置在框架内并覆盖织物盖的边缘。 下板的底面具有纹理以模拟织物罩的视觉纹理。 支撑柱安装在下板和上框架之间的空间中,与肋排成直线,以模拟完成的弓以支撑车辆上的屋顶。 后窗插入件还压配合到上框架和下板的后面板中的匹配开口中。