Function-mapping on defective nano-crossbars with enhanced reliability

Author:

Kule MalayORCID,Rahaman Hafizur,Bhattacharya Bhargab B.

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Modelling and Simulation,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

Reference27 articles.

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2. Butts, M., DeHon, A., Glodstein, S.C.: Molecular electronics: devices, systems and tools for gigagate, gigabit chips. ICCAD 2002, 440–443 (2002)

3. Goldstein, S.C., Budiu, M.: Nanofabrics: spatial computing using molecular nanoelectronics. In: 28th International Symposium on Computer Architecture, pp. 178–189 (2001)

4. Goldstein, S.C., Rosewater, D.: Digital logic using molecular electronics. In: International Solid-State Circuits Conferences, p. 125 (2002)

5. Mishra, M., Goldstein, S.: Scalable defect tolerance for molecular electronics. In: Non-Silicon Computation (NSC-1), p. 78 (2002)

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1. Bio-Inspired Methods for Defect-Tolerant Function-Mapping in Nano-Crossbar Arrays;IETE Journal of Research;2022-11-22

2. A Fault-Tolerant Structure for Nano-Power Communication Based on the Multidimensional Crossbar Switch Network;International Transactions on Electrical Energy Systems;2022-08-24

3. On Defect Tolerance of Nanocrossbar Arrays using Divide and Conquer Technique;2021 International Symposium on Devices, Circuits and Systems (ISDCS);2021-03-03

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