Fast Parameters Extraction of Multilayer and Multiconductor Interconnects Using Geometry Independent Measured Equation of Invariance
نویسندگان
چکیده
Measured Equation of Invariance(MEI) is a new concept in computational electromagnetics. It has been demonstrated that the MEI is such an eecient boundary truncation technique that the meshes can be terminated very close to the object and still strictly preserves the sparsity of the FD equations. Therefore, the nal system matrix encountered by MEI is a sparse matrix with size similar to that of integral equation methods. However, complicated Green's function and disagreeable Sommerfeld integrals make the traditional MEI very diicult, if not impossible, to be applied to analyze multilayer and multiconductor interconnects. In this paper, we propose the Geometry Independent MEI(GIMEI) which substantially improved the original MEI method. We use GIMEI for capacitance extraction of general two-dimension VLSI multilayer and multiconductor interconnect. Numerical results are in good agreement with various published data. We also include a simple three-dimensional example and compared GIMEI with FASTCAP from MITT1]. The accuracy is maintained while GIMEI are generally an order of magnitude faster than FASTCAP with much less memory usage.
منابع مشابه
Fast Parameters Extraction of General Three - DimensionInterconnects Using Geometry Independent Measured Equation ofInvarianceWeikai
Measured Equation of Invariance(MEI) is a new concept in computational electromagnetics. It has been demonstrated that the MEI technique can be used to terminate the meshes very close to the object boundary and still strictly preserves the sparsity of the FD equations. Therefore, the nal system matrix encountered by MEI is a sparse matrix with size similar to that of integral equation methods. ...
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