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    • 4. 发明申请
    • Resilient integrated circuit architecture
    • 弹性集成电路架构
    • US20070296459A1
    • 2007-12-27
    • US11471875
    • 2006-06-21
    • Steven Hennick KelemJaime C. CumminsJohn L. WatsonRobert PlunkettStephen L. WassonBrian A. BoxEnno WeinCharles A. Furciniti
    • Steven Hennick KelemJaime C. CumminsJohn L. WatsonRobert PlunkettStephen L. WassonBrian A. BoxEnno WeinCharles A. Furciniti
    • H03K19/173
    • H03K19/17752H03K19/17736H03K19/17756H03K19/17764
    • The exemplary embodiments provide a resilient integrated circuit. An exemplary IC comprises a plurality of composite circuit elements, a state machine element (SME), and a plurality of communication elements. Each composite circuit element comprises an element interface and a selected circuit element which may vary by element type, and which may be configurable. The state machine element assigns various functions based on element type, such as assigning a first configuration to a first element type, assigning a second configuration to a second element type, and providing a first data link for the corresponding assignments. In response to detection of a fault or failure, the state machine element re-assigns the first configuration to another composite circuit element and creates a second data link for performance of the same function. The assignment, routing, fault detection, and re-assignment and data re-routing can occur in real time for a wide variety of programs and algorithms, providing for the IC to continue the same functioning despite defects which may arise during operation.
    • 示例性实施例提供了一种弹性集成电路。 示例性IC包括多个复合电路元件,状态机元件(SME)和多个通信元件。 每个复合电路元件包括可以由元件类型变化的元件接口和所选择的电路元件,并且其可以是可配置的。 状态机元件基于元素类型分配各种功能,例如将第一配置分配给第一元素类型,将第二配置分配给第二元素类型,以及为相应的分配提供第一数据链接。 响应于故障或故障的检测,状态机元件将第一配置重新分配给另一个复合电路元件,并创建用于执行相同功能的第二数据链路。 分配,路由,故障检测和重新分配以及数据重新路由可以实现多种程序和算法的实时性,从而尽可能在运行过程中出现缺陷,使IC能够继续相同的功能。
    • 7. 发明授权
    • Resilient integrated circuit architecture
    • 弹性集成电路架构
    • US07429870B2
    • 2008-09-30
    • US11471875
    • 2006-06-21
    • Steven Hennick KelemJaime C. CumminsJohn L. WatsonRobert PlunkettStephen L. WassonBrian A. BoxEnno WeinCharles A. Furciniti
    • Steven Hennick KelemJaime C. CumminsJohn L. WatsonRobert PlunkettStephen L. WassonBrian A. BoxEnno WeinCharles A. Furciniti
    • H03K19/003
    • H03K19/17752H03K19/17736H03K19/17756H03K19/17764
    • The exemplary embodiments provide a resilient integrated circuit. An exemplary IC comprises a plurality of composite circuit elements, a state machine element (SME), and a plurality of communication elements. Each composite circuit element comprises an element interface and a selected circuit element which may vary by element type, and which may be configurable. The state machine element assigns various functions based on element type, such as assigning a first configuration to a first element type, assigning a second configuration to a second element type, and providing a first data link for the corresponding assignments. In response to detection of a fault or failure, the state machine element re-assigns the first configuration to another composite circuit element and creates a second data link for performance of the same function. The assignment, routing, fault detection, and re-assignment and data re-routing can occur in real time for a wide variety of programs and algorithms, providing for the IC to continue the same functioning despite defects which may arise during operation.
    • 示例性实施例提供了一种弹性集成电路。 示例性IC包括多个复合电路元件,状态机元件(SME)和多个通信元件。 每个复合电路元件包括可以由元件类型变化的元件接口和所选择的电路元件,并且其可以是可配置的。 状态机元件基于元素类型分配各种功能,例如将第一配置分配给第一元素类型,将第二配置分配给第二元素类型,以及为相应的分配提供第一数据链接。 响应于故障或故障的检测,状态机元件将第一配置重新分配给另一个复合电路元件,并创建用于执行相同功能的第二数据链路。 分配,路由,故障检测和重新分配以及数据重新路由可以实现多种程序和算法的实时性,从而尽可能在运行过程中出现缺陷,使IC能够继续相同的功能。