PITTSBURGH, April 30, 2020 /PRNewswire/ -- Samsung
Foundry certified Ansys®
RaptorH™ electromagnetic (EM) simulation
solution for developing advanced systems-on-chip (SoC) and two and
a half dimensional/three-dimensional integrated circuits
(2.5D/3D-IC). The certification enables Ansys (NASDAQ: ANSS)
to help Samsung designers and Samsung Foundry customers more
accurately analyze and mitigate risks from EM effects when adopting
Samsung's new signoff flow — significantly expediting the
advancement of state-of-the-art artificial intelligence (AI),
high-performance computing (HPC) and 5G semiconductor designs.
Samsung's series of advanced nanometer silicon and 2.5D/3D-IC
technologies require a signoff methodology for validating EM
interference that negatively impacts complex multi-chip assemblies
— a task that traditional tools are not designed to handle.
Engineers require a high-capacity EM analysis tool to accurately
model the signal integrity of very large SoCs and 2.5D/3D
assemblies which process signals at very high data rates. The
hard-to-quantify interactions among signals in 2.5D/3D-ICs are
critical points of failure and limit the rate of new technology
adoption.
Combining the high-fidelity, high-frequency electromagnetic
solvers of Ansys®
HFSS™ with the tremendous speed and
robust architecture of
Ansys® RaptorX™,
RaptorH's highly integrated analysis solution helps Samsung
designers model EM phenomena and push higher frequencies in their
2.5D/3D chip assemblies with confidence that parasitic effects will
not compromise the system. This will drive a faster ramp to
mainstream production for these new packaging technologies with
significantly reduced risk.
"Increasing data rates, higher levels of electronic system
integration and packaging density are leading to a greater demand
for new EM analysis capabilities on an unprecedented scale," said
Dr. Jaehong Park, executive vice
president of Foundry Design Platform Development at Samsung
Electronics. "Leveraging Ansys RaptorH empowers our talented
engineering team to overcome unwelcome EM phenomena, in order to
shrink design cycles, decreases budgets and increase
performance."
"Continuing our deep relationship with Samsung, RaptorH provides
an enhanced signoff flow for eliminating risks from EM interference
and directly supports Samsung's development of cutting-edge AI, HPC
and 5G semiconductor designs. RaptorH will help Samsung
designers and foundry customers shrink chip size, slash power
demands, reduce costs and speed their products to market," said
Yorgos Koutsoyannopoulos, vice president of engineering at
Ansys. "This solution also demonstrates Ansys' ability to
not only integrate a new acquisition, like Helic, into our
portfolio quickly but also accelerate growth and bring much needed
solutions to customers around the world."
About Ansys
If you've ever seen a rocket launch, flown on an airplane,
driven a car, used a computer, touched a mobile device, crossed a
bridge or put on wearable technology, chances are you've used a
product where Ansys software played a critical role in its
creation. Ansys is the global leader in engineering
simulation. Through our strategy of Pervasive Engineering
Simulation, we help the world's most innovative companies deliver
radically better products to their customers. By offering the best
and broadest portfolio of engineering simulation software, we help
them solve the most complex design challenges and create products
limited only by imagination. Founded in 1970, Ansys is
headquartered south of Pittsburgh,
Pennsylvania, U.S.A. Visit www.ansys.com for more
information.
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.
Contact
|
Media
|
Mary Kate
Joyce
724.820.4368
marykate.joyce@ansys.com
|
|
Investors
|
Virginea
Gibson
724.820.4225
virginea.gibson@ansys.com
|
ANSS-T
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SOURCE Ansys