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    • 2. 发明授权
    • Mechanism for optimizing function execution
    • 优化功能执行的机制
    • US08020155B2
    • 2011-09-13
    • US11605540
    • 2006-11-28
    • Jiwei LuWilliam Yu-Wei Chen
    • Jiwei LuWilliam Yu-Wei Chen
    • G06F9/45
    • G06F9/4484
    • A mechanism is provided for managing the referencing of at least two versions of a function. A first version is a single threaded version that does not ensure multi-thread safety. A second version is a multi threaded version that does ensure multi-thread safety. The mechanism determines whether a set of executable code (e.g. a program) is currently executing in single-threaded mode or multi-threaded mode. If the executable code is executing in single-threaded mode, then the mechanism causes the executable code to reference the first version of the function. If the executable code is executing in multi-threaded mode, then the mechanism causes the executable code to reference the second version of the function. By doing so, the mechanism ensures that the additional overhead of ensuring multi-thread safety is incurred only when it is needed. In this manner, the mechanism makes execution of the function more optimal.
    • 提供了一种用于管理功能的至少两个版本的引用的机制。 第一个版本是单线程版本,不能确保多线程安全。 第二个版本是一个多线程版本,确保多线程安全。 该机制确定一组可执行代码(例如,程序)当前是以单线程模式还是多线程模式执行。 如果可执行代码在单线程模式下执行,则该机制将使可执行代码引用该函数的第一个版本。 如果可执行代码在多线程模式下执行,则该机制使可执行代码引用该函数的第二个版本。 通过这样做,该机制确保仅在需要时才产生确保多线程安全的额外开销。 以这种方式,该机制使得该功能的执行更加优化。
    • 3. 发明申请
    • Architecture of a Power Supply Circuit with Power Factor Correction
    • 具有功率因数校正的电源电路架构
    • US20110074372A1
    • 2011-03-31
    • US12708399
    • 2010-02-18
    • William YU
    • William YU
    • G05F1/618
    • H05B33/0809H05B33/0815
    • An improved architecture of a power supply circuit with power factor correction, the power supply circuit includes power supply circuit output terminals and a voltage negative feedback circuit, the power supply circuit output terminals include a high potential terminals and a low potential terminals, the voltage negative feedback circuit includes a first feedback circuit and a second feedback circuit connected in series in order from the high potential terminal to the low potential terminal, a connection point of the first feedback circuit and the second feedback circuit acts as a feedback signal output terminal through which the voltage negative feedback circuit outputs a feedback signal, in the improved architecture, the first feedback circuit is replaced by a light source branch including a constant-current light source, and the second feedback circuit is replaced by a resistor branch for determining a working current of the light source branch. This improved architecture can perform a constant-current supply with high power factor and high efficiency for the light source.
    • 具有功率因数校正的电源电路的改进架构,电源电路包括电源电路输出端子和电压负反馈电路,电源电路输出端子包括高电位端子和低电位端子,电压负极 反馈电路包括从高电位端子到低电位端子依次串联连接的第一反馈电路和第二反馈电路,第一反馈电路和第二反馈电路的连接点作为反馈信号输出端子,通过该反馈信号输出端子 电压负反馈电路输出反馈信号,在改进的结构中,第一反馈电路由包括恒流光源的光源支路代替,第二反馈电路由用于确定工作电流的电阻器分支代替 的光源分支。 这种改进的架构可以为光源执行高功率因数和高效率的恒流源。
    • 4. 发明申请
    • Mechanism for optimizing function execution
    • 优化功能执行的机制
    • US20080127071A1
    • 2008-05-29
    • US11605540
    • 2006-11-28
    • Jiwei LuWilliam Yu-Wei Chen
    • Jiwei LuWilliam Yu-Wei Chen
    • G06F9/44
    • G06F9/4484
    • A mechanism is provided for managing the referencing of at least two versions of a function. A first version is a single threaded version that does not ensure multi-thread safety. A second version is a multi threaded version that does ensure multi-thread safety. The mechanism determines whether a set of executable code (e.g. a program) is currently executing in single-threaded mode or multi-threaded mode. If the executable code is executing in single-threaded mode, then the mechanism causes the executable code to reference the first version of the function. If the executable code is executing in multi-threaded mode, then the mechanism causes the executable code to reference the second version of the function. By doing so, the mechanism ensures that the additional overhead of ensuring multi-thread safety is incurred only when it is needed. In this manner, the mechanism makes execution of the function more optimal.
    • 提供了一种用于管理功能的至少两个版本的引用的机制。 第一个版本是不能确保多线程安全的单线程版本。 第二个版本是一个多线程版本,确保多线程安全。 该机制确定一组可执行代码(例如,程序)当前是以单线程模式还是多线程模式执行。 如果可执行代码在单线程模式下执行,则该机制将使可执行代码引用该函数的第一个版本。 如果可执行代码在多线程模式下执行,则该机制使可执行代码引用该函数的第二个版本。 通过这样做,该机制确保仅在需要时才产生确保多线程安全的额外开销。 以这种方式,该机制使得该功能的执行更加优化。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR IMPLEMENTATION OF GLYCEMIC CONTROL PROTOCOLS
    • 用于实施糖化控制协议的系统和方法
    • US20080214919A1
    • 2008-09-04
    • US11954887
    • 2007-12-12
    • Kirk C. HarmonAnthony P. FurnaryWilliam YuStanley TelsonPaul Hausman
    • Kirk C. HarmonAnthony P. FurnaryWilliam YuStanley TelsonPaul Hausman
    • A61B5/00G09B23/28
    • G06F19/3456G06F19/3418
    • A system for implementing a wide-range of glycemic control protocols (e.g., Tight Glycemic Control protocols) in an automated, semi-closed or closed loop manner thereby eliminating common sources of system error is provided herein. More specifically, the system can include a blood glucose measuring device in communication with a wide-range of databases and/or interfaces thereby allowing for typically independent steps such as patient testing, result determination, protocol adjustment (suggestions as well as actual calculations of new dosages), meal information, scheduling of future testing in light of test results, and administration of medicine to be performed automatically in a semi-closed or closed loop manner. Furthermore, the system provides for ultimate flexibility by allowing a protocol administrator to continuously add, subtract, and/or modify various steps of the protocol while maintaining the integrity and safety of the system. Additionally, methods of implementing such glucose control protocols are also provided herein.
    • 本文提供了一种以自动化,半封闭或闭环方式实现广泛的血糖控制协议(例如,紧缩血糖控制协议)的系统,从而消除了常见的系统错误来源。 更具体地,该系统可以包括与广泛的数据库和/或接口通信的血糖测量装置,从而允许通常独立的步骤,例如患者测试,结果确定,协议调整(建议以及新的实际计算 剂量),膳食信息,根据测试结果计划未来测试,以及以半封闭或闭环方式自动执行的药物管理。 此外,该系统通过允许协议管理员在保持系统的完整性和安全性的同时不断地添加,减少和/或修改协议的各个步骤来提供极大的灵活性。 此外,本文还提供实施这种葡萄糖控制协议的方法。
    • 10. 发明授权
    • Eccentric planar fluorescent tube
    • 偏心平面荧光灯管
    • US07256539B2
    • 2007-08-14
    • US10500850
    • 2003-01-07
    • William Yu
    • William Yu
    • H01J63/04H01J5/48H01J5/50H01J5/54F21V7/10H01R33/08
    • H01J61/327H01J61/30
    • An eccentric planar fluorescent tube includes an outer planar fluorescent tubular member that extends substantially but not completely about a center point and which is extended by two inner portions that extend from a first peripheral portion of the outer tubular member and on opposite sides of the center point and terminate at ends proximate to an opposite peripheral portion of the outer tubular member and wherein the ends are connected by a leg member for supplying power to the fluorescent tube. In one embodiment, the leg member includes electrical contacts that extend substantially in a plane of the outer tubular member and, in another embodiment, a central adapter may be provided including electrical contacts that extend transversely with respect to the plane of the outer tubular member.
    • 偏心平面荧光管包括外平面荧光管状构件,该外平面荧光管状构件基本上但不完全地围绕中心点延伸并且由从外管状构件的第一周边部分延伸的两个内部部分延伸并且在中心点的相对侧上延伸 并且在靠近外部管状构件的相对周边部分的端部处终止,并且其中端部通过腿部构件连接,以向荧光管供电。 在一个实施例中,腿部构件包括基本上在外部管状构件的平面中延伸的电触点,并且在另一个实施例中,可以设置中央适配器,其包括相对于外部管状构件的平面横向延伸的电触点。