R
© Atmel Corporation 2000
Terms and product names
may be trademarks of others.
All figures in this brochure are
for illustrative purposes only.
See Atmel data books for definitive
figures and for applicable limitations and
warranties.
0746D-04/00/12M
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SLI A SINGLE-CHIP SOLUTION FOR Y OUR APPLICATION
Atmel understands that to get a highly complex system-on-chip to today’s market,
you need an optimal mix of hardware for power and software for flexibility. You
need to take full advantage of re-usable IP blocks. Everything must plug together
seamlessly. To launch your system in its limited market window, you need to do as
much as possible in parallel: development and integration of blocks, hardware/
software co-simulation, system emulation at operational speed, rapid prototype
fabrication, fast ramp-up to volume.
Atmel can provide all of this. We can apply our expertise at every step of the SLI
design flow.
System Specification
We listen, carefully. Once we
understand clearly what your system must
do, we’re up and running.
Partition Hardware/Software
We apply our experience from a
number of market-leading hybrid
MCU/DSP architectures to advise
you on the best block configuration
and signal flow for your system.
Multiple software streams exchanging
data via FIFOs are well known to us. If
necessary, we put you in touch with an
expert in software development for
embedded systems to ensure that your
application runs exactly as intended.
Integrate Hardware
Atmel has one of the richest libraries
of qualified blocks in the industry. They
range from advanced DSP and RISC
MCUs with plug-compatible peripherals to
optical image sensors, baseband signal
processors and whatever configuration of
RAM, ROM, EEPROM or Flash memories
you require. You can contribute the IP
blocks that make your device unique.
Our HDL-based design flow is
supported on all leading CAD tools.
Integrate Software
Our MCUs support Linux®, Windows®,
MULTOSTM, JavaTM and other open
operating systems, and all our peripheral
blocks are supplied with software device
drivers. This leaves you free to
concentrate on the application level. Our
application software libraries provide
many basic functions.
Advanced software development tools
help you at every step. You can simulate
hardware and software together – giving
you a precise indication of how your
application will run on its platform, before
anything is committed to silicon.
A plus: our MCU cores are industry-
leaders in code compactness from C or
C++ source. This keeps on-chip program
memory to a minimum.
Emulate Hardware and Software
Experience shows that most SLI
problems are due to the interaction
between modules, particularly between
hardware and software. This has led us to
develop the centerpiece of our system-on-
chip (SoC) design flow – an FPGA-based
emulator that runs your system software
at close to operational speed. We select
the closest match to your system
architecture from one of our MCU-based
platforms and map system-specific blocks
onto an FPGA. The result is a very close
approximation to how your IC will perform
in operational use.
This emulation platform enables you to
refine your system, both hardware and
software, while avoiding the cost and
delays of prototype re-spins.
Rapid Prototyping
We map your design onto the latest in
CMOS with embedded NVM silicon
technology and advanced packaging, and
produce the prototype at one of our state-
of-the-art fabrication plants. There are no
outsourcing delays. Running the software
serves to confirm what has already been
established in emulation – it’s a right-first
time system.
Volume Production
We can apply our worldwide
fabrication capacity to ramp your
product up to volume in whatever
timescale you require.
Support
Our network of expert support
engineers in all time zones is there give
you whatever help you need to ensure
that your application works as specified.
System Clock Source
Flash/ROM
Program
EEPROM
Data
Master
Clock
Embedded
Microcontroller
Core
SRAM
Workspace
Cache
Memory
System-specific
Logic
Analog Interfacing and Processing
Standard
Interfaces
Microcontroller
Peripherals
DPRAM
FIFO
Embedded
DSP Core
Data
In/Out
DSP
Data Flow
Data
In/Out
Analog In/Out
Typical architecture of a system-on-chip