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'''Welcome to EMAGWARE EMAGTECH WikiGateway!'''
[[File:splash-emcube.jpg|thumb|link<strong><font color=http:"#707983" size="3">Introducing <br /></font></strong><strong><font color="#07417e" size="4">Unified Modeling, Characterization & Measurement Tools<br /></font></strong><strong><font color="#07417e" size="4">For RF Circuits, Systems & Electromagnetic Structures</www.emagtech.comfont></|500px]]strong>
EMAGWARE is the software division of EMAG Technologies Inc<table><tr><td>{|class="wikitable"|-! [[EM. EMAGWARE currently offers two families of simulation and design software productsCube]] |-|[[File: emcubePAGE.png |250px | link=EM.Cube and B2]] |-! [[RF.Spice A/D| RF. EM.Cube is a modular software environment for the modeling and analysis of Spice A/D]] & [[RF system engineering problems, featuring seven different electromagnetic simulation engines. Spice A/D | B2.Spice A/D is a comprehensive software tool for analysis and design of analog, digital and mixed]]|-mode electronic circuits, featuring an intuitive but powerful schematic editor and a versatile device editor preloaded with thousands of passive and active devices| [[File:RfspicePAGE New. png |250px | link=RF.Spice A/D | RF.Spice A/D]]|-|-! [[NeoScan | NeoScan]] |-| [[File:NeoScan_Product.png |250px | link=NeoScan | NeoScan ]] |-|}</td></tr></table>
 == EMEMAG Technologies Inc.Cube Documentation == Below are some links to help you get started using EM.Cube. Each article listed below contains a wealth offers three exciting families of information about a particular modulesoftware and hardware products for RF, as well as technical information about the numerical techniques used by the underlying simulation engines.* [[Getting_Started_with_EM.CUBE|EM.CUBE: Getting Started]]* [[CubeCAD|CubeCAD: 3D CAD Modeling]]* [[EM.Tempo|EM.Tempo: FDTD Module]]* [[EM.Picasso|EM.Picasso: Planar Module]]* [[EM.Libera|EM.Libera: MoM3D Module]]* [[EM.Illumina|EM.Illumina: Physical Optics Module]]* [[EM.Terrano|EM.Terrano: Propagation Module]]* [[EM.Ferma|EM.Ferma: Static Module]]* [[Hybrid Modeling using Multiple Simulation Engines|Hybrid Modeling]]* [[Data Visualization electronics and Processing]]* [[Parametric Modelingelectrical engineers, Sweep & Optimization]]  == B2.Spice A/D Documentation == [[File:B2BIG.png|thumb|link=http://www.emagtech.com/|500px]] Below are some links to help you get started using B2.Spice A/D. * [[B2_intro| B2.Spice A/D: Getting Started]] * [[B2_overview| An Overview of B2.Spice A/D]] * [[B2_schematic| Working with the Schematic Editor]] * [[B2_analog | Analog including electronic design automation (EDA) tools and Mixed-Mode Circuit Simulation]]* [[B2_digital | Digital Circuit Simulation]]* [[B2_database | Working with the Parts Database RF test and Device Editor]]* [[B2_symbol | Working with Symbol Editor]]* [[B2_other | Working with Other Applications]] == B2measurement systems.Spice A/D Tutorial == Below are some links to help you get started using B2.Spice A/D. Each tutorial lesson listed below walks you through Learn more about each product by clicking on the basic features respective link and access a wealth of B2.Spice A/D covering many different topics. Lessons 1-4 teach you how to set up simple analog and digital circuitsdocumentation, perform various tests tutorials and live simulations and visualize the simulation resultsvideos. In Lessons 5 and 6, you will learn how to create new parts, devices, simulation models and symbols using B2.Spice's versatile Device Editor.  * [[B2_Tutorial1| Tutorial Lesson 1 : A Simple Analog Voltage Divider Circuit]] * [[B2_Tutorial2| Tutorial Lesson 2 : Time and Frequency Analysis of an RLC Filter]] * [[B2_Tutorial3| Tutorial Lesson 3 : Analyzing an RTL Inverter]] * [[B2_Tutorial4| Tutorial Lesson 4 : Building a Digital Three-Input And Function]] * [[B2_Tutorial6| Tutorial Lesson 5 : Creating a New Part from Your Circuit]] * [[B2_Tutorial5| Tutorial Lesson 6 : Creating a Parameterized Subcircuit Part]]  == Featured Article =={{Featured|{{:Hybrid Modeling using Multiple Simulation Engines|[[Hybrid Modeling]]}}Read more: [[Hybrid Modeling using Multiple Simulation Engines|Hybrid Modeling]]}}
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