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Hybrid linear wire model approach to tuning transistor widths of circuits with RC interconnect

机译:混合线性线模型方法可通过RC互连来调节电路的晶体管宽度

摘要

A hybrid linear wire model for tuning the transistor widths of circuits linked by RC interconnects is described. The method uses two embedded simulators during the tuning process on netlists that contain resistors (Rs). A Timing oriented simulator is used only for timing purposes on the original netlist that includes all the Rs. A Gradient oriented simulator is then run only on the modified netlist with all Rs shorted and within the iterative loop of the tuner to compute gradients. The present hybrid method achieves a significant improvement in computational speed. The Timing oriented simulator is fast and accurate for only timing netlists with Rs, but cannot compute gradients efficiently. The Gradient oriented simulator computes gradients efficiently but cannot do so in the presence of Rs. To prevent “de-tuning” that typically occurs when all Rs are shorted, ‘wire-adjusts’ are provided that make the initial timing results using the Gradient oriented simulator on the shorted netlist match the timing results using Timing oriented simulator on the original netlist. This permits the optimizer sense initially the correct set of critical timing paths, and more significantly, it permits the wire-adjusts keep track of the changing transistor widths to guide the optimizer during the iterations until convergence is achieved.
机译:描述了一种用于调整由RC互连链接的电路的晶体管宽度的混合线性导线模型。该方法在包含电阻(Rs)的网表的调整过程中使用了两个嵌入式模拟器。面向时序的模拟器仅用于包含所有R的原始网表上的时序。然后,仅在修改了所有R的网表上运行面向梯度的模拟器,并在调谐器的迭代循环内运行梯度以计算梯度。本混合方法实现了计算速度的显着提高。面向时序的模拟器仅对于具有Rs的时序网表是快速而准确的,但不能有效地计算梯度。面向梯度的模拟器可以高效地计算梯度,但是在Rs的情况下无法实现。为了防止通常在所有Rs短路时发生的“失谐”现象,提供了“线调整”功能,使使用短路网表上的面向梯度仿真器的初始时序结果与原始网表上的面向时序仿真器的时序结果相匹配。这允许优化器最初检测到正确的一组关键时序路径,更重要的是,它允许导线调整跟踪不断变化的晶体管宽度,以在迭代过程中引导优化器,直到实现收敛为止。

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