2007Unpublished venueRequires access

Area-Driven Decoupling Capacitance Allocation in Noise-Aware Floorplan for Signal Integrity

Jin-Tai Yan, Zhiwei Chen, Ming-Yuen Wu

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Abstract

In this paper, based on a flexible decap estimation model to predict the allocated decap of any circuit module in a given floorplan, an area-driven allocation approach is proposed to integrate the decap estimation and allocation to assign feasible decaps around or near all the circuit modules to release all the IR-drop noises in the floorplan. The experimental results show that our proposed area-driven allocation approach obtains very promising timing and area results for MCNC benchmark circuits.

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What this paper is about

In this paper, based on a flexible decap estimation model to predict the allocated decap of any circuit module in a given floorplan, an area-driven allocation approach is proposed to integrate the decap estimation and allocation to assign feasible decaps around or near all the circuit modules to release all the IR-drop noises in the floorplan. The experimental results show that our proposed area-driven allocation approach obtains very promising timing and area results for MCNC benchmark circuits.

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Available abstract

In this paper, based on a flexible decap estimation model to predict the allocated decap of any circuit module in a given floorplan, an area-driven allocation approach is proposed to integrate the decap estimation and allocation to assign feasible decaps around or near all the circuit modules to release all the IR-drop noises in the floorplan. The experimental results show that our proposed area-driven allocation approach obtains very promising timing and area results for MCNC benchmark circuits.

Key concepts: Floorplan, Signal integrity, Decoupling (probability), Benchmark (surveying), Capacitance, Computer science, Integrated circuit layout, Electronic engineering

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