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    • 4. 发明申请
    • POWER DELIVERY OVER DIGITAL INTERACTION INTERFACE FOR VIDEO AND AUDIO (DiiVA)
    • 视频和音频数字交互界面的电源传输(DiiVA)
    • US20100283324A1
    • 2010-11-11
    • US12636063
    • 2009-12-11
    • Dongyun LeeEdward PakJohn HahnMayank Gupta
    • Dongyun LeeEdward PakJohn HahnMayank Gupta
    • H02J1/08
    • H02J3/02G06F13/14H04L12/10H04L12/40045H04L2012/2849H04N5/63H04N7/108H04N21/436Y10T307/492Y10T307/56
    • A system for delivering power over a network of devices connected through a serial link includes a first and second differential pairs of wires. Each differential pair of wires is double AC coupled by a HPF on one side and by another HPF on an opposite side. An LPF connects a portion of each differential pair of wires between the HPFs to a voltage source, and another LPF connects that portion of each differential pair to a load. The system further includes a third and fourth differential pairs of wires. All four differential pairs of wires are located within a single cable, such as a CAT6 cable. The first, second and third differential pair of wires are used for video links, and the fourth differential pair of wires are used for the bi-directional hybrid link. A power delivery circuit in each device includes a voltage source, a power relay switch, a signature resistor for detection, and a load detector.
    • 用于通过串联链路连接的设备的网络上传送电力的系统包括第一和第二差分线对。 每条差分对的导线在一侧由HPF双相交流耦合,另一侧的另一个HPF耦合。 LPF将HPF之间的每对差分对导线的一部分连接到电压源,另一个LPF将每个差分对的该部分连接到负载。 该系统还包括第三和第四差动对的导线。 所有四条差分对的导线位于单根电缆内,如CAT6电缆。 第一,第二和第三差分线对用于视频链路,并且第四差分对导线用于双向混合链路。 每个装置中的电力输送电路包括电压源,功率继电器开关,用于检测的签名电阻器和负载检测器。
    • 5. 发明授权
    • Power delivery over digital interaction interface for video and audio (DiiVA)
    • 视频和音频数字交互接口(DiiVA)
    • US08680712B2
    • 2014-03-25
    • US12636063
    • 2009-12-11
    • Dongyun LeeEdward PakJohn HahnMayank Gupta
    • Dongyun LeeEdward PakJohn HahnMayank Gupta
    • H02J1/00G06F3/00
    • H02J3/02G06F13/14H04L12/10H04L12/40045H04L2012/2849H04N5/63H04N7/108H04N21/436Y10T307/492Y10T307/56
    • A system for delivering power over a network of devices connected through a serial link includes a first and second differential pairs of wires. Each differential pair of wires is double AC coupled by a HPF on one side and by another HPF on an opposite side. An LPF connects a portion of each differential pair of wires between the HPFs to a voltage source, and another LPF connects that portion of each differential pair to a load. The system further includes a third and fourth differential pairs of wires. All four differential pairs of wires are located within a single cable, such as a CAT6 cable. The first, second and third differential pair of wires are used for video links, and the fourth differential pair of wires are used for the bi-directional hybrid link. A power delivery circuit in each device includes a voltage source, a power relay switch, a signature resistor for detection, and a load detector.
    • 用于通过串联链路连接的设备的网络上传送电力的系统包括第一和第二差分线对。 每条差分对导线在一侧由HPF双相交流耦合,另一侧的另一HPF耦合。 LPF将HPF之间的每对差分对导线的一部分连接到电压源,另一个LPF将每个差分对的该部分连接到负载。 该系统还包括第三和第四差动对的导线。 所有四条差分对的导线位于单根电缆内,如CAT6电缆。 第一,第二和第三差分线对用于视频链路,并且第四差分对导线用于双向混合链路。 每个装置中的电力输送电路包括电压源,功率继电器开关,用于检测的签名电阻器和负载检测器。
    • 10. 发明授权
    • Scalable replacement method and system in a cache memory
    • 缓存中可扩展的替代方法和系统
    • US06694408B1
    • 2004-02-17
    • US09562062
    • 2000-05-01
    • Javier VillagomezMayank GuptaEdward T. Pak
    • Javier VillagomezMayank GuptaEdward T. Pak
    • G06F1200
    • G06F12/121G06F12/124
    • The invention provides a system and method for executing a replacement selection algorithm embedded in each associativity of a cache memory architecture. Each associativity in a cache has an internal control logic that governs the process for replacing a cache line when a certain condition occurs, such as a presence of a TagHit. A designated set of control signals is used in an associativity control logic for corresponding with an external control logic. An associativity control logic within an associativity provides an internal capability to determine whether a TagHit condition occurs as well as volunteering the associativity for replacement. The preferred replacement algorithm is implemented using an approximation to Not the Most Recently Used Associativity (NMRU).
    • 本发明提供了一种用于执行嵌入在高速缓存存储器架构的每个关联性中的替换选择算法的系统和方法。 高速缓存中的每个关联性具有内部控制逻辑,该内部控制逻辑控制在特定条件发生时替换高速缓存行的过程,例如TagHit的存在。 指定的一组控制信号用于与外部控制逻辑对应的关联控制逻辑。 关联性内的关联性控制逻辑提供内部能力来确定TagHit条件是否发生,以及志愿者的替代关联性。 使用不是最近使用的关联性(NMRU)的近似来实现优选的替换算法。