Ternary Toward Binary: Circuit-Level Implementation of Ternary Logic Using Depletion-Mode and Conventional MOSFETs
The work
| Authors | Hyundong Lee; Seonghoon Kim; Jongbeom Kim; Jaehoon Jeong; Jeonggyu Yang; Taigon Song |
|---|---|
| Type | article |
| Year | 2025 |
| Citekey | lee2025ternary |
Where it appeared
| Published in | IEEE Access |
|---|---|
| Publisher | Institute of Electrical and Electronics Engineers (IEEE) |
| Volume | 13 |
| Pages | 1193--1207 |
Identifiers
| DOI | 10.1109/access.2024.3523344 |
|---|---|
| OpenAlex | W4405844780 |
| ISSN | 2169-3536 |
Access
| Landing page | https://doi.org/10.1109/access.2024.3523344 |
|---|
Related
| Distinct from | brusentsov2011ternary The modern proposal and the historical precedent for it: Setun was a working balanced-ternary machine, and this paper proposes balanced ternary logic on silicon. Different works sixty years apart, linked so the thread is visible. |
|---|
Abstract
The application of artificial intelligence (AI) requires advanced computation to address complex problems. However, the improvement of binary computing systems supporting these applications is approaching their limits due to atomic-level scaling. Regarding this challenging situation, ternary computing is gaining more attention due to its better data saving/computing/moving capability. Thus, ternary logic based on various devices was proposed, but these circuits are still encountering issues of high-power consumption, low operating speed, and challenges in manufacturing compared to silicon-based circuits. Therefore, this paper presents a methodology for designing ternary logic based on Depletion-mode metal-oxide-semiconductor field-effect transistor (DEPFET) and multi-threshold voltage complementary metal-oxide–semiconductor (MTCMOS). Our silicon-based devices are easier to manufacture and support high-speed/low-power operations through our complementary ternary logic. Our balanced ternary full adder (BTFA) is\(9.70\times \)better energy efficiency than the latestcarbon nanotube field-effect transistor (CNTFET) based BTFA. We also propose the first methodology to design a ternary cell layout in multi-height standard cell design. We propose an algorithm for the best ternary cell layout and a concept of integrated layout that reduces area when required cells are close to each other.
A copy is held
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How it got here
| How it got here | agent via bibtex |
|---|---|
| Added | 2026-08-29 10:29 UTC |
| Approved by | a person 2026-08-29 23:56 UTC |
Filed under
Cite it as
@article{lee2025ternary,
title = {Ternary Toward Binary: Circuit-Level Implementation of Ternary Logic Using Depletion-Mode and Conventional MOSFETs},
author = {Hyundong Lee and Seonghoon Kim and Jongbeom Kim and Jaehoon Jeong and Jeonggyu Yang and Taigon Song},
year = {2025},
journal = {IEEE Access},
volume = {13},
pages = {1193--1207},
publisher = {Institute of Electrical and Electronics Engineers (IEEE)},
issn = {2169-3536},
doi = {10.1109/access.2024.3523344},
}
This record lives at https://refs.drheap.org/lee2025ternary/ and will keep doing so.