Neuron Circuit Using Coupled SQUIDs Gate with Flat Output Characteristics for Superconducting Neural Network
Author:
Affiliation:
1. Laboratory for Brainware Systems/Nanoelectronics and Spintronics, Research Institute of Electrical Communication, Tohoku University
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Link
https://www.jstage.jst.go.jp/article/transele/E97.C/3/E97.C_173/_pdf
Reference8 articles.
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2. [2] T. Onomi, M. Maenami, and K. Nakajima, “Superconducting neural network for solving a combinatorial optimization problem,” IEEE Trans. Appl. Superconduct., vol.21, no.3, pp.701-704, June 2011.
3. [3] Y. Mizugaki, K. Nakajima, Y. Sawada, and T. Yamashita, “Implementation of new superconducting neural circuits using coupled SQUIDs,” IEEE Trans. Appl. Superconduct., vol.4, no.1, pp.1-8, March 1994.
4. [4] S. Nagasawa, Y. Hashimoto, H. Numata, and S. Tahara, “A 380ps, 9.5mW Josephson 4-K bit RAM operated at a high bit yield,” IEEE Trans. Appl. Superconduct., vol.5, pp.2447-2452, June 1995.
5. [5] Y. Takefuji and K.C. Lee, “Artificial neural network for four-coloring map problems and K-colorability problems,” IEEE Trans. Circuits Syst., vol.38, no.3, pp.326-333, March 1991.
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