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5.5.22-Efficient-AI-Jesús-delAlamo
Conference Video
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Duration: 16:01
May 5, 2022
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5.5.22-Efficient-AI-Jesús-delAlamo
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Advances in hardware performance thanks to Moore’s Law and chip architectural innovations constitute one of the pillars on top of which the recent roaring progress in artificial intelligence applications has been built. Future gains in AI capabilities hinge on continuous hardware advances. With core CMOS technology evolution on a path of diminishing returns, new architectural innovations, new system and circuit paradigms and new devices and materials that operate on new physical principles are going to be required. Innovation up and down the abstraction stack is mandatory. This creates wonderful opportunities for engineers and scientists of all disciplines and operating at all levels to propel the next wave of the electronics revolution.
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Advances in hardware performance thanks to Moore’s Law and chip architectural innovations constitute one of the pillars on top of which the recent roaring progress in artificial intelligence applications has been built. Future gains in AI capabilities hinge on continuous hardware advances. With core CMOS technology evolution on a path of diminishing returns, new architectural innovations, new system and circuit paradigms and new devices and materials that operate on new physical principles are going to be required. Innovation up and down the abstraction stack is mandatory. This creates wonderful opportunities for engineers and scientists of all disciplines and operating at all levels to propel the next wave of the electronics revolution.
Locked Interactive transcript
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