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Timing closure is the process by which an FPGA or a VLSI design is modified to meet its timing requirements. Most of the modifications are handled by EDA tools based on directives given by a designer. The term is also used for the goal that is achieved, when such a design has reached the end of the flow and its timing requirements are satisfied. A timing requirement needs to be translated into a static timing constraint for an EDA tool to be able to handle it.

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  • Timing closure
  • 时序收敛
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  • 时序收敛(英语:Timing closure)是现场可编程逻辑门阵列、特殊應用積體電路等集成电路设计过程中,调整、修改设计,从而使得所设计的电路满足时序要求的过程。为了完成上述过程,工程师常常需要在电子设计自动化工具辅助下工作。“时序收敛”一词有时也用于表达这些要求最终被满足的状态。
  • Timing closure is the process by which an FPGA or a VLSI design is modified to meet its timing requirements. Most of the modifications are handled by EDA tools based on directives given by a designer. The term is also used for the goal that is achieved, when such a design has reached the end of the flow and its timing requirements are satisfied. A timing requirement needs to be translated into a static timing constraint for an EDA tool to be able to handle it.
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  • Timing closure is the process by which an FPGA or a VLSI design is modified to meet its timing requirements. Most of the modifications are handled by EDA tools based on directives given by a designer. The term is also used for the goal that is achieved, when such a design has reached the end of the flow and its timing requirements are satisfied. The main steps of the design flow, which may be involved in this process, are logic synthesis, placement, clock-tree synthesis and routing. With present technologies all of them need to be timing-aware for a design to properly meet its timing requirements, but with technologies in the range of the micrometre only logic synthesis EDA tools had such a prerequisite. Nevertheless, even if timing-awareness was extended to all these steps starting from well-established principles used for logic synthesis, the two phases, logic and physical, of the timing closure process are conventionally handled by different design teams and different EDA tools. Design Compiler by Synopsys, Encounter RTL Compiler by Cadence Design Systems and BlastCreate by Magma Design Automation are examples of logic synthesis tools. IC Compiler by Synopsys, SoC Encounter by Cadence Design Systems and Blast Fusion by Magma Design Automation are examples of tools capable of timing-aware placement, clock tree synthesis and routing and therefore used for physical timing closure. A timing requirement needs to be translated into a static timing constraint for an EDA tool to be able to handle it.
  • 时序收敛(英语:Timing closure)是现场可编程逻辑门阵列、特殊應用積體電路等集成电路设计过程中,调整、修改设计,从而使得所设计的电路满足时序要求的过程。为了完成上述过程,工程师常常需要在电子设计自动化工具辅助下工作。“时序收敛”一词有时也用于表达这些要求最终被满足的状态。
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