Skip to content
Merged
Changes from all commits
Commits
File filter

Filter by extension

Filter by extension

Conversations
Failed to load comments.
Loading
Jump to
Jump to file
Failed to load files.
Loading
Diff view
Diff view
16 changes: 13 additions & 3 deletions apps/qcadesigner-e
Original file line number Diff line number Diff line change
@@ -1,7 +1,17 @@
# qcadesigner-e
===
Extended QCADesigner with estimation of energy dissipation..
The QCADesigner-E is an extension of the QCADesigner (version 2.0.3) [1] and has been developed at the University of Bremen. The tool, which has been presented in [2] (https://doi.org/10.1109/TCAD.2018.2789782), implements the estimation of the power dissipation of QCA circuits based on the works of Timler and Lent et al. [3-5]. The extension is integrated as an additional simulation module that is based on the Coherence Vector Simulation Engine (CVSE). Further, The QCADesigner-E is fully compatible to QCA designs generated with the QCADesigner version 2.0.3.
QCADesigner-E is free to use and to modify. However, you must add following references in case of any publication:
- F. Sill Torres, R. Wille, P. Niemann, and R. Drechsler, “An energy-aware model for the logic synthesis of quantum-dot cellular automata,” IEEE Trans. on CAD of Integrated Circuits and Systems, 2018
- K. Walus, T. J. Dysart, G. A. Jullien, and R. A. Budiman, “QCADesigner: a rapid design and Simulation tool for quantum-dot cellular automata,” IEEE Transactions on Nanotechnology, vol. 3, pp. 26-31, 2004.

References:
[1] K. Walus, T. J. Dysart, G. A. Jullien, and R. A. Budiman, “QCADesigner: a rapid design and Simulation tool for quantum-dot cellular automata,” IEEE Transactions on Nanotechnology, vol. 3, pp. 26-31, 2004.
[2] F. Sill Torres, R. Wille, P. Niemann, and R. Drechsler, “An energy-aware model for the logic synthesis of quantum-dot cellular automata,” IEEE Trans. on CAD of Integrated Circuits and Systems, accepted, to be published in 2018.
[3] J. Timler and C. S. Lent, “Power gain and dissipation in quantum-dot cellular automata,” Journal of Applied Physics, vol. 91, pp. 823-831, Jan 15 2002.
[4] C. S. Lent, L. Mo, and L. Yuhui, “Bennett clocking of quantum-dot cellular automata and the limits to binary logic scaling,” Nanotechnology, vol. 17, p. 4240, 2006.
[5] J. Timler and C. S. Lent, “Maxwell’s demon and quantum-dot cellular automata,” Journal of Applied Physics, vol. 94, pp. 1050-1060, 2003.
===
# SCREENSHOTS: https://camo.githubusercontent.com/103346fda5391337ae0a2707ad08a6d8b60f967a11d0b6bf4e89c6fc338b1bd9/68747470733a2f2f73362e696d6763646e2e6465762f594a4e774c672e706e67
# SITES: https://github.com/pratyay360/qcadesigner-e
# BUTTONS: Site::https://fsillt.github.io/QCADesigner-E Donation_Link::https://pratyayupi.surge.sh
# SITES: https://fsillt.github.io/QCADesigner-E https://github.com/pratyay360/qcadesigner-e
# BUTTONS: Donation_Link::https://pratyayupi.surge.sh
Loading