Zobrazeno 1 - 10
of 20
pro vyhledávání: '"Chun‐Chia Tan"'
Autor:
Kian‐Guan Lim, Shao‐Xiang Go, Chun‐Chia Tan, Yu Jiang, Kui Cai, Tow‐Chong Chong, Stephen R. Elliott, Tae‐Hoon Lee, Desmond K. Loke
Publikováno v:
Advanced Physics Research, Vol 3, Iss 3, Pp n/a-n/a (2024)
Abstract Memristive hardware with reconfigurable conductance levels are leading candidates for achieving artificial neural networks (ANNs). However, owing to difficulties in device character design and circuit combination, the ability to perform comp
Externí odkaz:
https://doaj.org/article/4cd0785974f34a4c991d68526e6d8b76
Autor:
Shang Sun, Weikang Wu, Yu Jiang, Cheng-Wei Qiu, Chun Chia Tan, Le Yang, Rong Zhao, Zheng Zhang, Zhiyuan Yan, Xinglong Ji, Chong Tow Chong
Publikováno v:
Nature Nanotechnology. 16:795-801
Thin-film architectures are a staple in a wide range of technologies, such as semiconductor devices, optical coatings, magnetic recording, solar cells and batteries. Despite the industrial success of thin-film technology, mostly due to the easy fabri
Publikováno v:
ACS Applied Materials & Interfaces. 11:20965-20972
Neuromorphic computing has emerged as a highly promising alternative to conventional computing. The key to constructing a large-scale neural network in hardware for neuromorphic computing is to develop artificial neurons with leaky integrate-and-fire
Autor:
Zhiyuan Yan, Zheng Zhang, Weikang Wu, Xinglong Ji, Shang Sun, Yu Jiang, Chun Chia Tan, Le Yang, Chong Tow Chong, Cheng-Wei Qiu, Rong Zhao
Publikováno v:
Nature Nanotechnology. 17:560-560
Autor:
Zhiyuan, Yan, Zheng, Zhang, Weikang, Wu, Xinglong, Ji, Shang, Sun, Yu, Jiang, Chun Chia, Tan, Le, Yang, Chong Tow, Chong, Cheng-Wei, Qiu, Rong, Zhao
Publikováno v:
Nature nanotechnology. 16(7)
Thin-film architectures are a staple in a wide range of technologies, such as semiconductor devices, optical coatings, magnetic recording, solar cells and batteries. Despite the industrial success of thin-film technology, mostly due to the easy fabri
Publikováno v:
ECS Journal of Solid State Science and Technology. 4:N137-N140
Autor:
Tow Chong Chong, Chun Chia Tan, Hwee Kuan Lee, Rong Zhao, Hongxin Yang, Luping Shi, Leong Tat Law
Publikováno v:
physica status solidi (b). 249:1925-1931
Superlattice-like (SLL) structure has been proposed to manipulate phase change materials' properties and applied in phase change random access memory to not only reduce programming current but also overcome the trade-off between crystallization speed
Autor:
Engkeong Chua, Jian Cheng Huang, Tuviah E. Schlesinger, Chong Tow Chong, Jeyanandh Paramesh, Cheng-Yuan Wen, James A. Bain, Rong Zhao, Chun Chia Tan, Luping Shi, Hsinyi Lo
Publikováno v:
IEEE Transactions on Electron Devices. 57:312-320
We present the realization of a novel three-terminal electronic switch using phase-change (PC) chalcogenide material. This device subdivides a single PC switch into a parallel array of three-terminal subvias which are addressed with atomic-force-micr
Autor:
Minghua Li, Wendong Song, Kian Guan Lim, Hongxin Yang, Rong Ji, Wei He, Weijie Wang, Y. Jiang, Victor Yi-Qian Zhuo, Chun Chia Tan, Yi Yang, E. K. Chua
Publikováno v:
2015 Symposium on VLSI Technology (VLSI Technology).
We present a novel selector made of doped-chalcogenide material. This selector not only achieves low holding voltage (0.2 V) and large on/off ratio (>107), but also exhibits the high on-current density (>1.6 MA/cm2) and large hysteresis window (1.2 V
Publikováno v:
2015 IEEE International Conference on Electron Devices and Solid-State Circuits (EDSSC).
In this work, tantalum oxide (TaOJ based ring contact Resistive Random Access Memory (RRAM) devices with varying TaO x thicknesses (5, 10 and 15 nm) were demonstrated and evaluated. TaO x layers were deposited using atomic layer deposition and were i