Not every device needs a complete computer system, and it is always easier to implement function in software over complex hardware design. Embedded systems are here to stay. In fact, I just built a few products centered around microcontrollers. Although I could have done the same thing with a PC, having a standalone device offloads the work. I know a few engineers in the making, they say they have hardly faced embedded design in the college course path. It is a sad day.. This is why jobs are shipped out of the USA (and other places).
Hi Vineet--interesting article and good focus on how much modular capability exists for embedded functionality. You didn't mention it so I thought I would add that the wireless M2M space is offering lots of embedded capability, including modules with wireless chipsets, and ARM processor, and loads of I/O. I touched on a few of these in a blog on a sister community to DesignNews called TheConnectingEdge.com:
Vineet, It just makes sense that embedded platforms would play a role in Next-Gen Designs. With chip-level integration and system-on-a-chip continuing to evolve, there is just a great opportunity to develop intelligent systems using these high performance building blocks and COTS solutions. Thanks.
To get to a trillion sensors in the IoT that we all look forward to, there are many challenges to commercialization that still remain, including interoperability, the lack of standards, and the issue of security, to name a few.
From design feasibility, to development, to production, having the right information to make good decisions can ultimately keep a product from failing validation. The key is highly focused information that doesn’t come from conventional, statistics-based tests but from accelerated stress testing.
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