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AMD EMBEDDED SOLUTIONS GUIDE
08
JULY 2013
W
ith the introduction of
AMD Embedded G-
Series Accelerated Pro-
cessing Units (APUs)
in 2011, AMD set a
new bar for multimedia and parallel pro-
cessing performance, energy efficiency and
silicon integration optimized for a new gen-
eration of small form factor x86 embedded
systems. e combination of a low-power
CPU and a discrete-class GPU into a single
APU yielded an elegant two-chip platform –
comprised of the APU and a companion I/O
controller hub – that defied the form factor
AMD Embedded
G-Series SOC
Platform: Excellent
Performance in
an Ultra Compact
Footprint with
Enterprise-class
ECC Support
and performance-per-watt constraints that
had previously limited design flexibility for
embedded applications spanning digital sig-
nage, digital gaming, industrial control and
automation, and beyond.
With the introduction of the new
AMD Embedded G-Series System-on-
Chip (SOC) platform, AMD is building
on the strength of the G-Series processor
architecture to deliver multimedia- and
heterogeneous processing capabilities that
promise superior performance-per-watt in
the low-power x86-capable microprocessor
class of products when running multiple
industry standard benchmarks
1
. Designed
with breakthrough innovation from CPU
to GPU, hardware acceleration and ad-
vanced capabilities including enterprise-
class error-correction code (ECC) memory
support, AMD Embedded G-Series SOCs
again raise the bar for power-efficient x86
processing agility. Additionally, with the
silicon-level integration of the I/O control-
ler hub, AMD G-Series SOCs reduce the
two-chip G-Series APU architecture to one
single die, yielding a staggering 33% foot-
print reduction
2
.
Superior Performance
Per Watt and Enhanced
Multimedia Capabilities
Featuring AMD’s next-generation
“Jaguar” CPU core and an enhanced in-
tegrated AMD Radeon™ GPU core with
frequency increase and instructions per
cycle (IPC) improvement, AMD G-Series
SOCs – available in dual and quad-core
variants – deliver up to a 113% CPU
performance improvement compared to
AMD G-Series APUs, and a 125% CPU
improvement versus Intel Atom when run-
ning multiple industry-standard compute-
intensive benchmarks
3
. New features in-
clude enhanced Universal Video Decode
(UVD) hardware acceleration (H.264,
VC-1, MPEG 2 and more
4
) and new video
encode capabilities, with enhanced clock
gating and C6 ‘deep power down’ capa-
bilities that lower overall power consump-
tion. AMD G-Series SOCs also support
remote wireless display capabilities with
minimal latency
5
.
e integrated GPU supports Di-
rectX® 11.1, OpenGL 4.2 and OpenCL
1.2
6
, enabling high-speed parallel process-
ing and high-performance graphics pro-
cessing that provides up to 20% improve-
ment over AMD G-Series APUs and 5X
improvement versus Intel Atom
7
. Support
for these computing frameworks affords a
host of software development options with
advanced graphics APIs, while extending
application lifetime thereby helping maxi-
mize software development costs and ROI.
OpenCL-enabled CPU/GPU parallel
processing can be especially beneficial to
high-precision applications such as indus-
New AMD Embedded G-Series SOC platform enables superior
HD multimedia experiences and high performance parallel
processing for the next-generation of energy efcient x86
embedded applications
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