PITTSBURGH and SANTA CLARA, Calif., Jan. 29, 2014 /PRNewswire/ -- Designing and optimizing complex high-speed electronic devices from end-to-end is faster, easier and more accurate thanks to an expanded suite and new functionality for ANSYS(®) (NASDAQ: ANSS) SIwave(TM). ANSYS' electromagnetic (EM) simulation suite for the design of high-speed printed circuit boards (PCB) and integrated circuit (IC) packages is now available via three targeted products, SIwave-DC, SIwave-PI, and SIwave. Users can quickly identify potential power and signal integrity problems with increased flexibility and easier access to a complete set of analysis capabilities that can be leveraged throughout the PCB design flow.

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Powered by its hybrid, full-wave finite element EM solver engine, the new SIwave suite delivers a complete signal integrity analysis solution in a single user interface. SIwave-DC targets the DC analysis of low-voltage, high-current PCB and IC packages, enabling the assessment of critical end-to-end voltage margins for reliable power delivery. SIwave-PI includes all SIwave-DC features and adds alternating current (AC) analysis to accurately model power delivery networks and noise propagation on PCBs. SIwave combines all SIwave-DC and SIwave-PI functionality and adds a robust time-domain circuit simulation engine for end-to-end signal integrity design and compliance.

"It's becoming increasingly important for our customers to be able to quickly recognize potential pre- and post-layout power and signal integrity problems for today's high-speed digital designs," said Steven Pytel, product manager at ANSYS. "In consultation with our customers, we identified demand for targeted analysis for DC, power integrity, and full systems. The new SIwave technology and workflow provides a complete set of analysis software based on the highest fidelity electromagnetic numerical analyses to address all aspects of PCB and IC package design."

ANSYS SIwave highlights include:


    --  New Application-Specific Product Offerings
        --  SIwave-DC allows users to perform pre- and post-layout DC voltage
            drop, DC current density and DC power density analyses. This will
            ensure that power distribution networks (PDNs) can source the proper
            power to integrated circuits by checking that the PDN has the proper
            bump, ball and pin sizes as well as proper copper weighting to
            minimize losses and identify areas of excess current resulting in
            thermal hot spots to reduce risk of field failure.
        --  Using sophisticated genetic algorithms, SIwave-PI allows the
            specification of various constraints (capacitor price, total number
            of capacitors, desired network impedance, etc.) for consideration in
            its cost function. Accurate frequency-dependent S-parameter
            capacitor models are utilized during simulation. In addition, the
            impact of capacitor physical location and mounting technique is
            captured by the full-wave electromagnetic extraction engine.
            SIwave-PI significantly improves engineering productivity by
            automating decoupling capacitor selection, placement and
            optimization for printed circuit boards and IC packages.
        --  With SIwave, signal integrity engineers can easily import electrical
            CAD geometry, extract GHz-accurate interconnect models for the IC,
            package and PCB, include transistor level models of drivers and
            receivers and run signal sign off analysis, impedance matching and
            power delivery system optimization. This solution includes common
            Input/Output Buffer Information Specification (IBIS) analyses such
            as "Power-Aware IBIS" and "IBIS-AMI" to provide virtual compliance
            to design engineers.

Other key features in SIwave include virtual compliance, advanced simulation performance and high-performance computing (HPC) acceleration and bi-directional links to ANSYS(®) Icepak(®) and ANSYS(®) Mechanical(TM) to predict temperature rise, thermal induced stress and structural integrity.

The new release will ship in March 2014. To learn more about the new SIwave, please visit: http://www.ansys.com/Products/Simulation+Technology/Electromagnetics/Signal+Integrity/ANSYS+SIwave.

About ANSYS, Inc.
ANSYS brings clarity and insight to customers' most complex design challenges through fast, accurate and reliable engineering simulation. Our technology enables organizations ? no matter their industry ? to predict with confidence that their products will thrive in the real world. Customers trust our software to help ensure product integrity and drive business success through innovation. Founded in 1970, ANSYS employs more than 2,500 professionals, many of them expert in engineering fields such as finite element analysis, computational fluid dynamics, electronics and electromagnetics, and design optimization. Headquartered south of Pittsburgh, U.S.A., ANSYS has more than 75 strategic sales locations throughout the world with a network of channel partners in 40+ countries. Visit www.ansys.com for more information.

ANSYS also has a strong presence on the major social channels. To join the simulation conversation, please visit: www.ansys.com/Social@ANSYS

ANSYS and any and all ANSYS, Inc. brand, product, service and feature names, logos and slogans are registered trademarks or trademarks of ANSYS, Inc. or its subsidiaries in the United States or other countries. All other brand, product, service and feature names or trademarks are the property of their respective owners.

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    Contact         Media                            Jackie Mavin

                                                     724.514.3053

                                                     Jackie.mavin@ansys.com

                           Investors                 Annette Arribas, CTP

                                                     724.514.1782

                                                     Annette.arribas@ansys.com

SOURCE ANSYS, Inc.