网站综合信息 www.lencova.com
    • 标题:
    • EOD - Electron Optical Design software 
    • 关键字:
    • EOD software Electron optical design 
    • 描述:
    • Electron and ion optics 
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    • 域名年龄:15年11个月19天  注册日期:2008年05月19日  到期时间:2020年05月19日
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    lencova.com

    域名年龄: 15年11个月19天
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    网站首页快照(纯文字版)
    抓取时间:2019年07月11日 03:55:26
    网址:http://www.lencova.com/
    标题:EOD - Electron Optical Design software, electron and ion op
    关键字:EOD software, Electron optical design
    描述:Electron and ion optics
    主体:
    EODNewsContactDownloadsSitemap
    Home
    EOD
    EODUser interfaceFEMTracingExamplesDownloadsWho are wePublicationsVideo tutorialsEOD versions
    News
    Publications - 13 Dec 18
    EOD - Electron Optical Design software,  electron and ion optics - 28 Nov 18
    User interface - 28 Nov 18
    EOD versions - 12 Jul 18
    Asymmetric electrostatic lens - 15 Nov 17
    EOD (Electron optical design) - software for design of charged particle optics devices
    EOD is program integrating Software for Particle Optics Computations (SPOC) programs MLD, ELD, MMD, EMD and TRC
    EOD is based on potential computation with well-established first order finite element method, allowing to solve the 2D potential with high accuracy
    EOD is a complete environment with interface for the input of FEM data, input of data for optical computations and ray tracing, and graphical output of computation results
    EOD is a Windows© program with CAD-like look
    The user interface enables the input of data with complicated geometry and the solution of complex electron and ion optical problems in EOD
    
    EOD capabilities
    Electric and magnetic field computation
    Saturated magnetic electron lenses of complicated geometry - (built in error estimation)
    Saddle or toroidal deflectors inside magnetic lenses
    Electrostatic lenses (with dieletrics) - (built in error estimation)
    Electrostatic and magnetic multipoles
    Import of fields calculated outside EOD possible
    Optical properties computation
    Optical properties – including aberration coefficients – with high accuracy
    Signal electron ray paths
    Optimizations
    Output of field and particle data along trajectory and at selected planes
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