free download Analog V5.03 (simulation analogical digital SPICE Fourier Laplace circuits electronic linear capture schema simulator optimisation calculus symbolic diode transistor hysteresis line delay filter gate flip-flop transfer)

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[98498] Electronic analogical & digital simulation. Schema capture  simulator  results graphical editing  optimization. Native models of transformers  diodes  transistors  delay lines  filters  stimulus  gates  flip-flop  display. Library of components.

Analog V5.03


Category:
Home & Desktop :: Science
Platform: Windows 95/98/Me/NT/2000/XP
Publisher:
Price: $70
File Size: 21.15 Mb
Date added: October 25, 2009
Screenshot: View screenshot
Product page: Click to visit

Description from the Publisher:

Analog is a simulation software for analogical, digital or mixed, linear and non-linear electronic circuits. It includes a schema capture, a simulator, a module for editing results (time domain, Fourier domain) and a module for optimising circuits. The simulator uses the symbolic computation techniques for solving the system of equations of the circuit. By principle this resolution is performed accurately, without any iteration and without any numerical round off generating errors. Its main functions are the following: Hierarchical and graphical schema capture. Analogical, linear and non-linear components. Native models of non-linear capacitors and inductors, temperature dependent resistors, magnetic core inductors and transformers with hysteresis, delay lines and filters of Butterworth, Bessel, Chebycheff and Legendre, current or voltage sources of different types, voltage or current multipliers, diodes, bipolar, JFET, MOST and MESFET transistors. Native models of gates, flip-flops, different types of digital stimulus and displays. Library of analogical and digital components. Linear, non-linear, analogical, digital and mixed simulations. Graphical results in the time domain and in the Fourier domain. Analogical and discrete Fourier transforms. Norton and Thévenin equivalent circuits. Transfer functions. Sensitivity calculus, Monte-Carlo simulation, worse case analysis. Parameters optimisation. Context dependent help. Its main strengths are the following: Remarkable accuracy of numerical results. No convergence defects. No numerical integration defects. All circuit topologies accepted. No options to be tuned by empirical means.




  Free download

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