© 2014 IEEE. Realizable power grid reduction becomes a key to efficient design and verification of nowadays large-scale power delivery networks. Existing state-of-the-art realizable reduction techniques for interconnect circuits, such as the TICER algorithm, cannot be well suited for effective power grid reductions, since reducing the mesh-structured power grids by TICER\u27s nodal elimination scheme may introduce excessive number of new edges in the reduced grids that can be even harder to solve than the original grid due to the drastically increased sparse matrix density. In this paper, we present a novel geometric template-based reduction technique for reducing large-scale flip-chip power grids. Our method first creates geometric templat...
Abstract—Power grid verification has become an indispensable step to guarantee a functional and robu...
To ensure the robustness of an integrated circuit design, its power distribution network (PDN) must ...
With increasing design complexity, as well as continued scaling of supplies, the design and analysis...
Realizable power grid reduction becomes key to efficient design and verification of nowadays large-s...
© 2014 IEEE. Existing state-of-The-Art realizable RC reduction methods may not be suitable for scala...
Simulation and verification of the on-die power delivery network (PDN) is one of the key steps in th...
Simulation and verification of the on-die power delivery network (PDN) is one of the key steps in th...
Efficient analysis of massive on-chip power delivery networks is among the most challenging problems...
Verifying the power grid requires checking if the voltage drops on all the nodes do not exceed the t...
This paper presents an efficient method for optimizing the design of power/ground (P/G) networks by ...
Abstract—In this paper, we present a novel pattern-based method to simulate large-scaled power/groun...
Abstract — This paper presents an efficient method for optimizing the design of power/ground (P/G) n...
The US power grid is an engineering marvel. However, it was not designed with the consideration of r...
Abstract—We propose a block-diagonal structured model or-der reduction (BDSM) scheme for fast power ...
Leveraging the power of nowadays graphics processing units for robust power grid simulation remains ...
Abstract—Power grid verification has become an indispensable step to guarantee a functional and robu...
To ensure the robustness of an integrated circuit design, its power distribution network (PDN) must ...
With increasing design complexity, as well as continued scaling of supplies, the design and analysis...
Realizable power grid reduction becomes key to efficient design and verification of nowadays large-s...
© 2014 IEEE. Existing state-of-The-Art realizable RC reduction methods may not be suitable for scala...
Simulation and verification of the on-die power delivery network (PDN) is one of the key steps in th...
Simulation and verification of the on-die power delivery network (PDN) is one of the key steps in th...
Efficient analysis of massive on-chip power delivery networks is among the most challenging problems...
Verifying the power grid requires checking if the voltage drops on all the nodes do not exceed the t...
This paper presents an efficient method for optimizing the design of power/ground (P/G) networks by ...
Abstract—In this paper, we present a novel pattern-based method to simulate large-scaled power/groun...
Abstract — This paper presents an efficient method for optimizing the design of power/ground (P/G) n...
The US power grid is an engineering marvel. However, it was not designed with the consideration of r...
Abstract—We propose a block-diagonal structured model or-der reduction (BDSM) scheme for fast power ...
Leveraging the power of nowadays graphics processing units for robust power grid simulation remains ...
Abstract—Power grid verification has become an indispensable step to guarantee a functional and robu...
To ensure the robustness of an integrated circuit design, its power distribution network (PDN) must ...
With increasing design complexity, as well as continued scaling of supplies, the design and analysis...