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Average Ratings 0 Ratings

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ease
features
design
support

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Description

Ansys Sherlock stands out as the sole reliability physics-based tool for electronics design that delivers quick and precise life expectancy assessments for electronic components, boards, and systems during the initial design phases. By automating the design analysis process, Ansys Sherlock enables the rapid generation of life predictions, thus eliminating the "test-fail-fix-repeat" cycle that often hampers development. Designers can effectively model the interactions between silicon–metal layers, semiconductor packaging, printed circuit boards (PCBs), and assemblies, allowing for accurate predictions of potential failure risks stemming from thermal, mechanical, and manufacturing stresses, all prior to creating prototypes. Additionally, Sherlock's extensive libraries, which house over 500,000 components, facilitate the seamless transformation of electronic computer-aided design (ECAD) files into computational fluid dynamics (CFD) and finite element analysis (FEA) models. Each of these models is equipped with precise geometries and material properties, ensuring that stress information is accurately conveyed for reliable predictions. This capability not only enhances design efficiency but also significantly reduces the risk of costly errors in the later stages of product development.

Description

Discover your comprehensive online resource for all things SystemC, the premier language tailored for system-level design, high-level synthesis, as well as modeling and verification. SystemC™ fulfills the requirement for a versatile design and verification language that encompasses both hardware and software components. This language is an extension of standard C++, enhanced through the introduction of specialized class libraries. Its design is particularly effective for modeling system partitioning, assessing and validating the allocation of blocks for hardware or software solutions, and architecting as well as quantifying the interactions among various functional blocks. Major players in the realms of intellectual property (IP), electronic design automation (EDA), semiconductor manufacturing, electronic systems, and embedded software development actively utilize SystemC for architectural exploration. They leverage it to produce high-performance hardware components across different levels of abstraction and to create virtual platforms that facilitate hardware/software co-design. Overall, SystemC stands as an essential tool in the ever-evolving landscape of system design and verification.

API Access

Has API Yes 

API Access

Has API No 

Screenshots View All

Screenshots View All

Integrations

Coco Code Coverage No 
ModelSim No 

Integrations

Coco Code Coverage Yes 
ModelSim Yes 

Pricing Details

No price information available.
Free Trial Yes 
Free Version No 

Pricing Details

Free
Free Trial No 
Free Version Yes 

Deployment

Web-Based Yes 
On-Premises No 
iPhone App No 
iPad App No 
Android App No 
Windows No 
Mac No 
Linux No 
Chromebook No 

Deployment

Web-Based No 
On-Premises No 
iPhone App No 
iPad App No 
Android App No 
Windows Yes 
Mac Yes 
Linux Yes 
Chromebook No 

Customer Support

Business Hours Yes 
Live Rep (24/7) No 
Online Support Yes 

Customer Support

Business Hours No 
Live Rep (24/7) No 
Online Support Yes 

Types of Training

Training Docs Yes 
Webinars Yes 
Live Training (Online) Yes 
In Person No 

Types of Training

Training Docs Yes 
Webinars No 
Live Training (Online) No 
In Person No 

Vendor Details

Company Name

Ansys

Founded

1970

Country

United States

Website

www.ansys.com/products/structures/ansys-sherlock

Vendor Details

Company Name

SystemC

Website

systemc.org

Product Features

CFD

Computer-Aided Engineering (CAE)

CAD/CAM Compatibility No 
Finite Element Analysis No 
Fluid Dynamics No 
Import / Export Files No 
Integrated 3D Modeling No 
Manufacturing Process Simulation No 
Mechanical Event Simulation No 
Multibody Dynamics No 
Thermal Analysis No 

Product Features

Alternatives

Alternatives