Arbor Technology ITX-i45M2 Manual de usuario Pagina 21

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AMD EMBEDDED SOLUTIONS GUIDE
WWW.AMD.COM/EMBEDDED
21
With factory-oor and other industrial
applications becoming increasingly
sophisticated and complex, AMD’s
embedded solutions for Industrial Control and
Automation address the evolving demands
of these markets with very low power,
scalable, x86 performance-based solutions.
AMD Industrial Control and Automation
solutions serve diverse applications ranging
from headless sensor and control systems
to complex display systems with easy-to-use
human-machine interfaces (HMIs) and highly
integrated controllers.
INDUSTRY SPOTLIGHT:
Power and Performance Scalability with the Key Features
for Industrial Control and Automation Solutions
AMD Embedded APUs feature a
variety of attributes for Industrial
Control and Automation applications:
For more information about AMD’s embedded
solutions for Industrial Control and Automation,
please visit http:\\www.amd.com/industrial
AMD MAKES NO REPRESENTATIONS OR WARRANTIES WITH RESPECT TO THE CONTENTS HEREOF AND ASSUMES NO RESPONSIBILITY FOR ANY INACCURACIES, ERRORS OR OMISSIONS THAT
MAY APPEAR IN THIS INFORMATION.
©2013 AMD, AMD-V, the AMD Arrow logo and combinations thereof, are trademarks of Advanced Micro Devices. Windows is a registered trademarks of Microsoft Corporation in the U.S. and/or other
jurisdictions. Linux is a registered trademark of Linus Torvalds. Other names are for informational purposes only and may be trademarks of their respective owners.
1. The average power for the AMD GX-210HA SOC is 4.1 Watts, determined by averaging
the results of the measured average power of the SOC running the following benchmarks;
3DMark® 11, AMD Sys Stress Test CPU, AMD Sys Stress Test CPU & GPU, AMD Sys Stress Test
GPU, Winbench® 99, CoreMark, Game:Meat Boy, PCMark® 7, POV-Ray, Sandra 2011, Game:
Street Fighter. Testing was performed on an AMD E1-2100 (Rev A1) that is equivalent to the
AMD GX-210HA SOC. System conguration: AMD E1-2100 @ 70°C, “Larne” development
platform, 4GB RAM, Windows 7 Ultimate. Please see AMD Publication ID 53395A for more
information. EMB 41
2. Calculated SP GFLOPs = (# of x86 cores x (128 bit (FPUs) / 32 bit (SP Operation)) * CPU Base
Frequency) + (# of shader units * (64 bit (shader) / 32 bit (SP Operation)) * GPU Max Frequency).
EMB-21
3. The 3DMark06® score for the AMD GX-210HA SOC was 2184, and for the Intel Atom D2700 was
501. System congurations: AMD GX-415GA, AMD “Larne” Development Board, 4GB DDR3,
> For small form factor programmable automation controllers
and battery powered portable operator panels, AMD G-Series
SOCs are available with average power as low as 4.1W or
the AMD GX-210HA SOC.
1
> For PC based machine vision smart cameras that require
high image processing performance or for multi axis motion
controllers that must perform linear algebra on large matrices,
AMD G-Series SOCs can deliver between 85 and 185
calculated SP GFLOPS of compute performance in a compact
and power efcient solution.
> For machine vision servers or compact vision systems, the
AMD R-Series APUs with between 128 and 384 compute
units can deliver a calculated 172 to 563 SP GFLOPS
2
of
performance and helps enable high performance image
processing applications to be built that are low power and
t into small form factors.
> For thin and small form factor operator panels that require
the latest consumer-like interfaces and gesture based input,
the AMD GX-210HA SOC offers over 4X the graphics
performance of the competitors platform at only 4.1W
average power.
3
> For industrial box PCs, the AMD G-Series SOCs offer footprint
compatible options to easily scale the system performance,
power, cost and features to meet the specic needs of the
application.
> For high performance operator panels, automation panels
and industrial box PCs, the AMD R-Series APUs help to
facilitate the integration of visualization and multi-axis motion
control onto a single platform through a combination of high
CPU and graphics performance.
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