
Embedded Processing Design Made Easy
The ADI BF518F FMC
Reference Design
, designed and available exclusively from Avnet, provides a simple-to-use platform using the BF518F low-power Blackfin processor and the Microsoft .NET Micro Framework.
Learn more.

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best websites for esl:
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books, archives, overviews
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top ten, free stuff, & vendors for esl:
e-clips
"eReport: "
best websites for esl
esl vendor guide
esl services guide

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Express Logic develops, markets and supports the ThreadX® real-time operating system (RTOS), NetX TCP/IP networking stack, USBX USB stack, and FileX® embedded file system, and PEGX GUI toolkit for embedded applications.
ThreadX is a royalty-free, full source code, small-footprint, low-overhead RTOS that is extremely easy to learn and use. ThreadX is one of the most widely deployed RTOS products in the world, with over 700 million products based on ThreadX.
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Definition: Electronic System Level (ESL) design and verification is an emerging electronic design methodology that focuses on the higher abstraction level concerns first and foremost.
It is defined in the ESL Design and Verification book [1] as: 'the utilization of appropriate abstractions in order to increase comprehension about a system, and to enhance the probability of a successful implementation of functionality in a cost-effective manner.' The basic premise is to model the behavior of the entire system using a high-level language such as C, C++, or MATLAB.
Rapid and correct-by-construction implementation of the system can be automated using EDA and embedded software tools, although much of it is performed manually today.
ESL can also be accomplished through the use of SystemC as an abstract modeling language.
Electronic System Level is now an established approach at most of the worlds leading System-on-a-chip (SoC) design companies, and is being used increasingly in system design.
From its genesis as an algorithm modeling methodology with no links to implementation, ESL is evolving into a set of complementary methodologies that enable embedded system design, verification, and debugging through to the hardware and software implementation of custom SoC, system-on-FPGA, system-on-board, and entire multi-board systems.
Source: Wikipedia (http://en.wikipedia.org/wiki/Electronic_system_level)
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