3-bit multilevel operation with accurate programming scheme in TiOx/Al2O3 memristor crossbar array for quantized neuromorphic system.
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| Title: | 3-bit multilevel operation with accurate programming scheme in TiO |
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| Authors: | Kim, Tae-Hyeon, Lee, Jaewoong, Kim, Sungjoon, Park, Jinwoo, Park, Byung-Gook, Kim, Hyungjin |
| Source: | Nanotechnology; 7/16/2021, Vol. 32 Issue 29, p1-8, 8p |
| Subject Terms: | ARTIFICIAL intelligence, PROBLEM solving, PATTERN recognition systems, COMPUTER storage devices, MEMRISTORS |
| Abstract: | As interest in artificial intelligence (AI) and relevant hardware technologies has been developed rapidly, algorithms and network structures have become significantly complicated, causing serious power consumption issues because an enormous amount of computation is required. Neuromorphic computing, a hardware AI technology with memory devices, has emerged to solve this problem. For this application, multilevel operations of synaptic devices are important to imitate floating point weight values in software AI technologies. Furthermore, weight transfer methods to desired weight targets must be arranged for off-chip training. From this point of view, we fabricate 32 × 32 memristor crossbar array and verify the 3-bit multilevel operations. The programming accuracy is verified for 3-bit quantized levels by applying a reset-voltage-control programming scheme to the fabricated TiO |
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| Database: | Complementary Index |
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