نتایج جستجو برای: Nanoelectronic circuits

تعداد نتایج: 62444  

2007
Konstantin K. Likharev

This is a very brief review of the recent work on the development of hybrid semiconductor/nanodevice integrated circuits. Such a circuit will combine a CMOS subsystem, and a nanowire crossbar with simple bistable two-terminal devices formed at each crosspoint, connected with an area-distributed “CMOL” interface. Simulations have shown that the hybrid circuits may serve as the basis for (i) tera...

Journal: :I. J. Circuit Theory and Applications 2004
Özgür Türel Jung Hoon Lee Xiaolong Ma Konstantin K. Likharev

This paper reviews recent important results in the development of neuromorphic network architectures (‘CrossNets’) for future hybrid semiconductor=nanodevice-integrated circuits. In particular, we have shown that despite the hardware-imposed limitations, a simple weight import procedure allows the CrossNets using simple two-terminal nanodevices to perform functions (such as image recognition an...

Journal: :International Journal of Circuit Theory and Applications 2013

2009
Konstantin K. Likharev

This extended abstract outlines my invited keynote presentation of the recent work on neuromorphic networks (“CrossNets”) based on hybrid CMOS/nanoelectronic (“CMOL”) circuits, in the space-saving Q/A format.

2005
Jung Hoon Lee Xiaolong Ma Konstantin Likharev

Hybrid “CMOL” integrated circuits, combining CMOS subsystem with nanowire crossbars and simple two-terminal nanodevices, promise to extend the exponential Moore-Law development of microelectronics into the sub-10-nm range. We are developing neuromorphic network (“CrossNet”) architectures for this future technology, in which neural cell bodies are implemented in CMOS, nanowires are used as axons...

2006
C. Dong

CMOS molecular (CMOL) circuits promise great opportunities for future hybrid nanoscale IC implementation. Two new CMOL building blocks using transmission gates have been introduced to obtain efficient combinational and sequential logic for CMOL designs. Compared with the existing CMOL circuits, the proposed CMOL designs based on these blocks can achieve more than 30% improvement in speed and up...

1997
KARL F. GOSER ANDREAS KANSTEIN

A tremendous number of devices, a limitation of wiring, and very low power dissipation density are design constraints of future nanoelectronic circuits composed of quantum-effect devices. Furthermore, functional integration, which is the possibility of exploiting quantum effects to obtain a function specific behavior, becomes a core design principle. This paper analyzes the effect of this techn...

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