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商品描述
Feko Suite V3.0.5 正式版
破解說明:安裝說明請參見光碟\crack
軟體簡介:
Feko Suite V3.0.5 正式版
《EMSS 公司、專業PCB電路設計軟體最新版!》
【軟體簡介】
FEKO is a full wave, method of moments (MoM) based, computer code for
the analysis of electromagnetic problems such as:
EMC, shielding, coupling, antenna design, antenna placement analysis,
microstrip antennas and circuits, striplines, dielectric bodies,
scattering analysis etc.
The implementation is comprehensive and has been extended for the
analysis of thin dielectric sheets, multiple homogeneous dielectric
bodies and planar stratified media. Modules are available for
parametric optimisation, time domain analysis and the analysis of
complex cable harnesses in their 3D environment.
In order to solve electrically large problems the MoM has been
hybridised with the asymptotic high frequency techniques, physical
optics (PO) and the uniform theory of diffraction (UTD). This true
hybridisation reduces the computational resource requirements,
enabling the analysis of very large problems.
Parallel processing and other techniques can be used to speed up the
solution of the CEM problems. A professional graphical user interface
is available for pre- and post-processing as well as importation of
different CAD formats.
破解說明:安裝說明請參見光碟\crack
軟體簡介:
Feko Suite V3.0.5 正式版
《EMSS 公司、專業PCB電路設計軟體最新版!》
【軟體簡介】
FEKO is a full wave, method of moments (MoM) based, computer code for
the analysis of electromagnetic problems such as:
EMC, shielding, coupling, antenna design, antenna placement analysis,
microstrip antennas and circuits, striplines, dielectric bodies,
scattering analysis etc.
The implementation is comprehensive and has been extended for the
analysis of thin dielectric sheets, multiple homogeneous dielectric
bodies and planar stratified media. Modules are available for
parametric optimisation, time domain analysis and the analysis of
complex cable harnesses in their 3D environment.
In order to solve electrically large problems the MoM has been
hybridised with the asymptotic high frequency techniques, physical
optics (PO) and the uniform theory of diffraction (UTD). This true
hybridisation reduces the computational resource requirements,
enabling the analysis of very large problems.
Parallel processing and other techniques can be used to speed up the
solution of the CEM problems. A professional graphical user interface
is available for pre- and post-processing as well as importation of
different CAD formats.
