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Average Ratings 0 Ratings

Total
ease
features
design
support

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Write a Review

Description

Ansys Path FX provides the capability to perform timing analysis with variations across an entire System on Chip (SoC) without compromising accuracy. With its distinct cell modeling, it achieves SPICE-level timing accuracy for various voltage and variation scenarios using a single library. The architecture of Path FX is fully threaded and distributed, enabling it to scale efficiently to thousands of CPUs. Furthermore, Path FX employs path-based timing analysis technology that effectively considers all significant factors influencing delay and constraints across different process, voltage, and temperature conditions. It also has the functionality to automatically detect and simulate each clock path present in your design. In the current landscape, two major hurdles in chip design include reducing power consumption through lower supply voltages and navigating the complexities associated with advanced silicon processes, particularly at 7nm and beyond. This makes tools like Ansys Path FX indispensable for modern semiconductor development.

Description

Setfos is a sophisticated simulation tool developed by Fluxim, aimed at modeling and enhancing the performance of OLEDs, organic and perovskite solar cells, photodetectors, and various thin-film optoelectronic devices. This software integrates electrical, optical, and electrothermal simulations within a single platform, providing a comprehensive approach to device analysis. Within Setfos, users can model essential processes such as charge injection, transport, trapping, recombination, exciton generation, light emission, optical interference, as well as absorption and light outcoupling. It offers calculations for current-voltage characteristics, luminance, electroluminescence spectra, quantum efficiency, electric fields, carrier densities, optical generation profiles, and the parameters of reflection, transmission, and absorption. The software leverages drift-diffusion semiconductor modeling alongside transfer-matrix optical simulation to effectively address multilayer structures. Widely utilized by both academic and industrial researchers, Setfos supports the design of devices, conducts parameter studies, aids in the interpretation of experimental data, analyzes losses, and optimizes OLEDs, solar cells, and a variety of semiconductor devices, making it an essential tool in the field. Its versatility and depth ensure that researchers can thoroughly explore and enhance the intricacies of their optoelectronic projects.

API Access

Has API

API Access

Has API

Screenshots View All

Screenshots View All

Integrations

Python

Integrations

Python

Pricing Details

No price information available.
Free Trial
Free Version

Pricing Details

Pricing is dependant on the number of modules purchased and use case.
Free Trial
Free Version

Deployment

Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook

Deployment

Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook

Customer Support

Business Hours
Live Rep (24/7)
Online Support

Customer Support

Business Hours
Live Rep (24/7)
Online Support

Types of Training

Training Docs
Webinars
Live Training (Online)
In Person

Types of Training

Training Docs
Webinars
Live Training (Online)
In Person

Vendor Details

Company Name

Ansys

Founded

1970

Country

United States

Website

www.ansys.com/products/semiconductors/ansys-path-fx

Vendor Details

Company Name

Fluxim AG

Founded

2006

Country

Switzerland

Website

www.fluxim.com

Product Features

PCB Design

3D Visualization
Autorouting
Collaboration Tools
Component Library
Design Rule Check
Differential Pair Routing
Schematic Editor

Product Features

Simulation

1D Simulation
3D Modeling
3D Simulation
Agent-Based Modeling
Continuous Modeling
Design Analysis
Direct Manipulation
Discrete Event Modeling
Dynamic Modeling
Graphical Modeling
Industry Specific Database
Monte Carlo Simulation
Motion Modeling
Presentation Tools
Stochastic Modeling
Turbulence Modeling

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