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    • 1. 发明授权
    • System and method for software application scoping
    • 软件应用范围的系统和方法
    • US07984437B2
    • 2011-07-19
    • US11841354
    • 2007-08-20
    • Mark SpotswoodSanjeev ChopraStephen R. FanshierDon Ferguson
    • Mark SpotswoodSanjeev ChopraStephen R. FanshierDon Ferguson
    • G06F9/45
    • G06F8/60
    • A system and method for application scoping that can be added to the application model for an application server, making it less global-centric and more application-centric. The JNDI tree is configured to allow for an application-private JNDI section. This private JNDI section then acts as a private data repository for the application. Resources that are needed by the application can be stored in the application-specific JNDI tree, and thus “scoped” to that particular application. As applications are added to the system, they can be specified in this way. The overall result is fewer changes at the system-wide or global level. The application scoping features provided by the invention include: Use of application scoped JNDI tree; Application Scoped JDBC DataSources; and Application Scoped Security. Application scoped resources provide two primary advantages—Security, in that resources owned by one application can't be used by another; and Simplified packaging and configuration.
    • 应用程序范围的系统和方法,可以添加到应用程序服务器的应用程序模型中,使其以全球为中心,以更多的以应用为中心。 JNDI树配置为允许应用程序私有JNDI部分。 这个私有JNDI部分然后充当应用程序的私有数据存储库。 应用程序需要的资源可以存储在应用程序特定的JNDI树中,因此可以“限定”到该特定应用程序。 随着应用程序被添加到系统中,可以以这种方式指定它们。 总体结果是系统范围或全球层面的变化较小。 本发明提供的应用范围特征包括:使用应用范围的JNDI树; 应用范围的JDBC DataSources; 和应用范围安全性。 应用范围资源提供两个主要优点 - 安全性,一个应用所拥有的资源不能被另一个应用使用; 和简化包装和配置。
    • 2. 发明授权
    • Configurable lane architecture in source synchronous systems
    • 源同步系统中可配置的通道架构
    • US08686754B2
    • 2014-04-01
    • US13542539
    • 2012-07-05
    • Sanjeev ChopraHiten Advani
    • Sanjeev ChopraHiten Advani
    • H03K19/177
    • H04L7/0012H04N5/225
    • A system and method for utilizing multiple configurable lanes for clock and data transfer in source synchronous systems that may utilize a clock signal from another source for interpreting data received from the source. In an embodiment, a system may include a transmitter configured to transmit at least one clock signal and at least one data signal to a receiver device. The receiver device may have at least one clock lane and at least one data lane for receiving signals from the transmitter device. The clock lane(s) and data lane(s) can be arranged in any order as per requirement of system design. In the receiver, after manufacture, each data lane may be configured to be clocked by any clock lane.
    • 一种用于在源同步系统中利用多个可配置通道进行时钟和数据传输的系统和方法,其可利用来自另一源的时钟信号来解释从源接收的数据。 在一个实施例中,系统可以包括被配置为将至少一个时钟信号和至少一个数据信号发射到接收机设备的发射机。 接收机设备可以具有至少一个时钟通道和用于从发射机设备接收信号的至少一个数据通道。 时钟通道和数据通道可根据系统设计的要求以任何顺序排列。 在接收机中,在制造之后,每个数据通道可被配置成由任何时钟通道进行时钟控制。
    • 3. 发明申请
    • CONFIGURABLE LANE ARCHITECTURE IN SOURCE SYNCHRONOUS SYSTEMS
    • 来源同步系统中的可配置LANE架构
    • US20140009633A1
    • 2014-01-09
    • US13542539
    • 2012-07-05
    • Sanjeev CHOPRAHiten ADVANI
    • Sanjeev CHOPRAHiten ADVANI
    • H03L7/00H03K3/00H04N5/225H04L7/04H04B3/00
    • H04L7/0012H04N5/225
    • A system and method for utilizing multiple configurable lanes for clock and data transfer in source synchronous systems that may utilize a clock signal from another source for interpreting data received from the source. In an embodiment, a system may include a transmitter configured to transmit at least one clock signal and at least one data signal to a receiver device. The receiver device may have at least one clock lane and at least one data lane for receiving signals from the transmitter device. The clock lane(s) and data lane(s) can be arranged in any order as per requirement of system design. In the receiver, after manufacture, each data lane may be configured to be clocked by any clock lane.
    • 一种用于在源同步系统中利用多个可配置通道进行时钟和数据传输的系统和方法,其可利用来自另一源的时钟信号来解释从源接收的数据。 在一个实施例中,系统可以包括被配置为将至少一个时钟信号和至少一个数据信号发射到接收机设备的发射机。 接收机设备可以具有至少一个时钟通道和用于从发射机设备接收信号的至少一个数据通道。 时钟通道和数据通道可根据系统设计的要求以任何顺序排列。 在接收机中,在制造之后,每个数据通道可被配置成由任何时钟通道进行时钟控制。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR SOFTWARE APPLICATION SCOPING
    • 用于软件应用程序的系统和方法
    • US20070288920A1
    • 2007-12-13
    • US11841354
    • 2007-08-20
    • Mark SpotswoodSanjeev ChopraStephen FanshierDon Ferguson
    • Mark SpotswoodSanjeev ChopraStephen FanshierDon Ferguson
    • G06F9/48
    • G06F8/60
    • A system and method for application scoping that can be added to the application model for an application server, making it less global-centric and more application-centric. The JNDI tree is configured to allow for an application-private JNDI section. This private JNDI section then acts as a private data repository for the application. Resources that are needed by the application can be stored in the application-specific JNDI tree, and thus “scoped” to that particular application. As applications are added to the system, they can be specified in this way. The overall result is fewer changes at the system-wide or global level. The application scoping features provided by the invention include: Use of application scoped JNDI tree; Application Scoped JDBC DataSources; and Application Scoped Security. Application scoped resources provide two primary advantages—Security, in that resources owned by one application can't be used by another; and Simplified packaging and configuration.
    • 应用程序范围的系统和方法,可以添加到应用程序服务器的应用程序模型中,使其以全球为中心,以更多的以应用为中心。 JNDI树配置为允许应用程序私有JNDI部分。 这个私有JNDI部分然后充当应用程序的私有数据存储库。 应用程序需要的资源可以存储在应用程序特定的JNDI树中,因此可以“限定”到该特定应用程序。 随着应用程序被添加到系统中,可以以这种方式指定它们。 总体结果是系统范围或全球层面的变化较小。 本发明提供的应用范围特征包括:使用应用范围的JNDI树; 应用范围的JDBC DataSources; 和应用范围安全性。 应用范围资源提供两个主要优点 - 安全性,一个应用所拥有的资源不能被另一个应用使用; 和简化包装和配置。
    • 5. 发明授权
    • System and method for software application scoping
    • 软件应用范围的系统和方法
    • US07260819B2
    • 2007-08-21
    • US10369892
    • 2003-02-20
    • Mark SpotswoodSanjeev ChopraStephen R. FanshierDon Ferguson
    • Mark SpotswoodSanjeev ChopraStephen R. FanshierDon Ferguson
    • G06F9/45
    • G06F8/60
    • A system and method for application scoping that can be added to the application model for an application server, making it less global-centric and more application-centric. The JNDI tree is configured to allow for an application-private JNDI section. This private JNDI section then acts as a private data repository for the application. Resources that are needed by the application can be stored in the application-specific JNDI tree, and thus “scoped” to that particular application. As applications are added to the system, they can be specified in this way. The overall result is fewer changes at the system-wide or global level. The application scoping features provided by the invention include: Use of application scoped JNDI tree; Application Scoped JDBC DataSources; and Application Scoped Security. Application scoped resources provide two primary advantages—Security, in that resources owned by one application can't be used by another; and Simplified packaging and configuration.
    • 应用程序范围的系统和方法,可以添加到应用程序服务器的应用程序模型中,使其以全球为中心,以更多的以应用为中心。 JNDI树配置为允许应用程序私有JNDI部分。 这个私有JNDI部分然后充当应用程序的私有数据存储库。 应用程序需要的资源可以存储在应用程序特定的JNDI树中,因此可以“限定”到该特定应用程序。 随着应用程序被添加到系统中,可以以这种方式指定它们。 总体结果是系统范围或全球层面的变化较小。 本发明提供的应用范围特征包括:使用应用范围的JNDI树; 应用范围的JDBC DataSources; 和应用范围安全性。 应用范围资源提供两个主要优点 - 安全性,一个应用所拥有的资源不能被另一个应用使用; 和简化包装和配置。
    • 6. 发明授权
    • Latch-type sense amplifier
    • 锁存型读出放大器
    • US07227798B2
    • 2007-06-05
    • US10679941
    • 2003-10-06
    • Anuj GuptaSanjeev Chopra
    • Anuj GuptaSanjeev Chopra
    • G11C7/00
    • G11C7/065
    • An improved latch-type sense amplifier circuit having two cross-coupled inverters forming a latch, a supply coupling device for selectively connecting the latch to a supply source, and a bit line coupling circuits for selectively connecting the inputs of each inverter to the complimentary bit line from the memory array. The circuit is configured to sense a voltage difference between the bit lines with improved reliability by providing a delayed sense amplifier enable signal to pass transistors for delaying disconnection of the bit lines from the sense amplifier until the latching action is completed, and adding two transistors in series with the existing transistors of the conventional latch for correcting the offset between the threshold voltages of the inverters of the latch.
    • 具有形成锁存器的两个交叉耦合的反相器的改进的锁存型读出放大器电路,用于选择性地将锁存器连接到电源的电源耦合装置和用于选择性地将每个反相器的输入连接到补充位的位线耦合电路 线从内存阵列。 该电路被配置为通过提供延迟读出放大器使能信号来传递晶体管来延迟位线从读出放大器的断开直到闭锁动作完成,并且将两个晶体管加到 与常规锁存器的现有晶体管串联,用于校正锁存器的反相器的阈值电压之间的偏移。