会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 8. 发明授权
    • Apparatus and method for multiplexing bi-directional data onto a low pin count bus between a host CPU and co-processor
    • 将双向数据复用到主机CPU和协处理器之间的低引脚数总线上的装置和方法
    • US06434650B1
    • 2002-08-13
    • US09176571
    • 1998-10-21
    • Jeff C. MorrisRobert J. GreinerNarayana S. IyerPranav H. MehtaShreekant ThakkarPeter Ruscito
    • Jeff C. MorrisRobert J. GreinerNarayana S. IyerPranav H. MehtaShreekant ThakkarPeter Ruscito
    • G06F1300
    • G06F13/4291
    • An apparatus and method for communication between a host CPU and a security co-processor are disclosed, in which a bus having a bi-directional data and command bus, a bi-directional control line, and a uni-directional clock line, is coupled to the CPU and to the co-processor. The bus supports data transfer between the CPU and the co-processor, including read operations and write operations, where each such operation includes a command phase, a data transfer phase, and an error check phase. The CPU and the co-processor have a dual master slave mode wherein either may be master of the bus, while the other is the slave. The bi-directional data and command bus carries command information from the master to the slave 10 during the command phase, and carries data from the master to the slave during the data transfer phase for a write operation, and from the slave to the master for a read operation. The bi-directional control line specifies the start and end of each transfer. The uni-directional clock line synchronously clocks both the bi-directional data and command bus and the bi-directional control line. Data is transferred a packet at a time; each packet consists of an octet of data, which 15 is transferred during 8 clocks. Flow control need only be applied once for each packet of data, and thus, only once per 8 clocks.
    • 公开了一种用于主机CPU和安全协处理器之间通信的装置和方法,其中具有双向数据和命令总线,双向控制线和单向时钟线的总线被耦合 到CPU和协处理器。 总线支持CPU和协处理器之间的数据传输,包括读操作和写操作,其中每个这样的操作包括命令阶段,数据传输阶段和错误校验阶段。 CPU和协处理器具有双主从模式,其中也可以是总线的主机,而另一个是从机。 双向数据和命令总线在命令阶段将命令信息从主机传送到从机10,并在写操作的数据传输阶段将数据从主机传送到从机,从从机到主机, 一个读操作。 双向控制线指定每次传输的开始和结束。 单向时钟线同时对双向数据和命令总线以及双向控制线进行时钟同步。 数据一次传送一个数据包; 每个数据包由八位字节的数据组成,在8个时钟周期内传输15个数据。 流量控制只需对每个数据包应用一次,因此每8个时钟只需一次。
    • 9. 发明申请
    • METHOD AND APPARATUS FOR EXTERNAL PROCESSOR THERMAL CONTROL
    • 外部处理器热控制的方法和装置
    • US20110090640A1
    • 2011-04-21
    • US12980648
    • 2010-12-29
    • Eric C. SamsonJohn William HoriganRobert T. JacksonShreekant Thakkar
    • Eric C. SamsonJohn William HoriganRobert T. JacksonShreekant Thakkar
    • G06F1/20
    • G06F1/206
    • A system and method for throttling a slave component of a computer system to reduce an overall temperature of the computing system upon receiving a first signal is disclosed. The first signal may be from a master component indicating that a temperature for the master component has exceeded its threshold temperature. The slave component or the master component may be a central processing unit, a graphics memory and controller hub, or a central processing unit memory controller hub. The slave component may send a second signal to indicate that a temperature for the slave component has exceeded its temperature. The master component would then initiate throttling of the master component to reduce the overall temperature of the computing system. The master component may be throttled to a degree less than the slave component. A first component may be designated the master component and the second component may be designated the slave component based on a selection policy. The selection policy may be received from a user through a graphical user interface. The selection policy may be based on an action being performed by the computing system.
    • 公开了一种用于节流计算机系统的从属组件以在接收到第一信号时降低计算系统的总体温度的系统和方法。 第一信号可以来自主组件,指示主组件的温度已经超过其阈值温度。 从属组件或主组件可以是中央处理单元,图形存储器和控制器集线器,或中央处理单元存储器控制器集线器。 从组件可以发送第二信号以指示从组件的温度已超过其温度。 然后,主组件将启动主组件的节流以降低计算系统的整体温度。 主部件可以被节流到比从属部件小的程度。 可以将第一组件指定为主组件,并且可以基于选择策略将第二组件指定为从组件。 可以通过图形用户界面从用户接收选择策略。 选择策略可以基于由计算系统执行的动作。