John A. Chandy
Professor & Department Head/Electrical and Computer Engr
Storrs Mansfield
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Scholarly Contributions
212 Scholarly Contributions
Four-state FETs Incorporating Quantum Dot Gate (QDG), Quantum Dot Channel (QDC) and Spatial Wavefunction-switched (SWS) Structures: Basis for 2-bit Processing Circuit Architectures
2011
Research Type: Conference Proceedings
Four-state FETs incorporating quantum dot gate (QDG), quantum dot channel (QDC) and spatial wavefunction-switched (SWS) structures: Basis for 2-bit processing circuit architectures
2011
Research Type: Conference Proceedings
https://dx.doi.org/10.1109/ISDRS.2011.6135287
Application of 25 nm Quantum Dot Gate FETs to the Design of ADC and DAC Circuits
2011
Research Type: Journal Article
Spatial Wavefunction Switched (SWS) InGaAs FETs with II-VI Gate Insulators
2011
Research Type: Journal Article
Design and Implementation of a Nonblocking 2-Dilated Flattened Butterfly Switching Network, vol. 9, no. 4, pp. 557-564
2011
Research Type: Journal Article
2-Dilated flattened butterfly: A nonblocking switching topology for highradix networks
2011
Research Type: Journal Article
Spatial Wavefunction-Switched (SWS)-FET: A Novel Device to Process Multiple Bits Simultaneously with Sub-Picosecond Delays
2011
Research Type: Journal Article
Communications and Protocols: Active Networks and Active Object Storage
2011
Research Type: Poster/Presentation
2-dilated flattened butterfly: A nonblocking switching network
2010
Research Type: Conference Proceedings
User space storage system stack modules with file level control
2010
Research Type: Conference Proceedings
Design and implementation of a nonblocking 2-dilated flattened butterfly switching network
2010
Research Type: Conference Proceedings
https://dx.doi.org/10.1109/LATINCOM.2010.5641117
Extendable storage framework for reliable clustered storage systems
2010
Research Type: Conference Proceedings
3-state Quantum Dot Gate FETs in Designing High Sampling Rate ADCs
2010
Research Type: Conference Proceedings
Spatial Wavefunction Switched SWS FieldEffect Transistors Computing Using More Than Few Electrons
2010
Research Type: Journal Article