Carbon nanotube FET‐based low‐delay and low‐power multi‐digit adder designs
The work
| Authors | B. Srinivasu; K. Sridharan |
|---|---|
| Editors | |
| Type | article |
| Year | 2016 |
| Citekey | srinivasu2016carbon |
Where it appeared
| Published in | IET Circuits, Devices & Systems |
|---|---|
| Publisher | Institution of Engineering and Technology (IET) |
| Volume | 11 |
| Issue | 4 |
| Pages | 352--364 |
Identifiers
| DOI | 10.1049/iet-cds.2016.0013 |
|---|---|
| ISSN | 1751-858X |
Access
| Landing page | https://doi.org/10.1049/iet-cds.2016.0013 |
|---|
Abstract
Several field‐effect transistor (FET)‐based device technologies are emerging as powerful alternatives to the classical metal oxide semiconductor FET (MOSFET) for computing applications. The focus of this study is on arithmetic circuit design in carbon nanotube FET (CNTFET) technology. In particular, the authors develop low‐delay and low‐power multi‐ternary digit CNTFET‐based adder designs. The proposed designs are based on unary operators of multi‐valued logic. Efficient designs for primitives such as ternary half‐adder (HA) and full‐adder are developed and they are used to obtain low‐complexity multi‐digit adders based on the notions of conditional sum and carry lookahead. Extensive HSPICE simulations reveal that the power‐delay product of the proposed CNTFET‐based HA and full‐adder are roughly 20 and 50%, respectively, of that of recent designs. Further, the proposed CNTFET‐based conditional sum adder has a power‐delay product of approximately 27% of that of a multi‐trit design derived from a recent single‐trit adder design (for a load capacitance of 2 fF). Moreover, the proposed CNTFET‐based carry lookahead adder has low delay in comparison with the conditional sum strategy for different supply voltages. Studies on robustness of the designs are also reported.
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How it got here
| How it got here | agent via crossref |
|---|---|
| Added | 2026-09-15 18:35 UTC |
| Approved by | a person 2026-09-15 18:36 UTC |
Filed under
Cite it as
@article{srinivasu2016carbon,
title = {Carbon nanotube FET‐based low‐delay and low‐power multi‐digit adder designs},
author = {B. Srinivasu and K. Sridharan},
year = {2016},
journal = {IET Circuits, Devices \& Systems},
publisher = {Institution of Engineering and Technology (IET)},
volume = {11},
number = {4},
pages = {352--364},
issn = {1751-858X},
doi = {10.1049/iet-cds.2016.0013},
}
This record lives at https://refs.drheap.org/srinivasu2016carbon/ and will keep doing so.