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    • 6. 发明授权
    • System-on-chip (SOC), design structure and method
    • 片上系统(SOC),设计结构和方法
    • US07904873B2
    • 2011-03-08
    • US12125269
    • 2008-05-22
    • Jonathan P. EbbersTodd E. LeonardKyle E. SchneiderPeter A. Twombly
    • Jonathan P. EbbersTodd E. LeonardKyle E. SchneiderPeter A. Twombly
    • G06F17/50
    • G06F17/5045G06F2217/66
    • Disclosed is a system-on-chip (SOC) structure that allows for automated integration of multiple intellectual cores. The SOC structure incorporates a plurality of cells connected to a common bus on a chip. Each cell incorporates a functional core and an automated integration unit (AIU) connected to the functional core. Each AIU communicates integration information for its functional core over the common bus to the AIUs in the other cells. The exchange of information between the AIUs is controlled either by the integration units themselves or by a controller. Based on received integration information, each AIU can automatically make any required configuration adjustments for integration. Furthermore, based on this exchange of information, the functional cores can interact, as necessary, during SOC operation. Also disclosed are an associated method of forming such a SOC structure and a design structure for such an SOC structure.
    • 公开了一种片上系统(SOC)结构,允许多个智能核心的自动化集成。 SOC结构包括连接到芯片上的公共总线的多个单元。 每个单元结合功能核心和连接到功能核心的自动化集成单元(AIU)。 每个AIU通过公共总线将其功能核心的集成信息传送到其他单元中的AIU。 AIU之间的信息交换由集成单元本身或控制器控制。 基于接收的集成信息,每个AIU可以自动进行任何必要的配置调整进行集成。 此外,基于这种信息交换,功能核心可以根据需要在SOC操作期间进行交互。 还公开了形成这种SOC结构的相关方法和用于这种SOC结构的设计结构。
    • 8. 发明申请
    • System-On-Chip (SOC), Design Structure and Method
    • 片上系统(SOC),设计结构与方法
    • US20090292828A1
    • 2009-11-26
    • US12125255
    • 2008-05-22
    • Jonathan P EbbersTodd E. LeonardKyle E. SchneiderPeter A. Twombly
    • Jonathan P EbbersTodd E. LeonardKyle E. SchneiderPeter A. Twombly
    • G06F3/00
    • G06F15/7807
    • Disclosed is a system-on-chip (SOC) structure that allows for automated integration of multiple intellectual cores. The SOC structure incorporates a plurality of cells connected to a common bus on a chip. Each cell incorporates a functional core and an automated integration unit (AIU) connected to the functional core. Each AIU communicates integration information for its functional core over the common bus to the AIUs in the other cells. The exchange of information between the AIUs is controlled either by the integration units themselves or by a controller. Based on received integration information, each AIU can automatically make any required configuration adjustments for integration. Furthermore, based on this exchange of information, the functional cores can interact, as necessary, during SOC operation. Also disclosed are an associated method of forming such a SOC structure and a design structure for such an SOC structure.
    • 公开了一种片上系统(SOC)结构,允许多个智能核心的自动化集成。 SOC结构包括连接到芯片上的公共总线的多个单元。 每个单元结合功能核心和连接到功能核心的自动化集成单元(AIU)。 每个AIU通过公共总线将其功能核心的集成信息传送到其他单元中的AIU。 AIU之间的信息交换由集成单元本身或控制器控制。 基于接收的集成信息,每个AIU可以自动进行任何必要的配置调整进行集成。 此外,基于这种信息交换,功能核心可以根据需要在SOC操作期间进行交互。 还公开了形成这种SOC结构的相关方法和用于这种SOC结构的设计结构。