Designing a bi-directional logic translator
Bibliographic Data
| ID | 20296554 |
|---|---|
| Authors | Lawrence V Hmurcik (University of Bridgeport), Luu Pham (University of Bridgeport), Luu Pham Luu Pham, Wen Shu (0000-0001-5634-4396, University of Bridgeport), Wen Shu Wen Shu |
| Year | 1994 |
| Volume | 37 |
| Issue | 3 |
| Pages | 293-298 |
| Publication date | 1994-01-01 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | IEEE Transactions on Education (JOURNAL) |
| Journal identifiers | ISSN: 0018-9359 • E-ISSN: 1557-9638 |
| Publisher | Institute of Electrical and Electronics Engineers (IEEE) (PUBLISHER) |
| DOI | 10.1109/13.312141 |
| OpenAlex | W2164353172 |
| Language | EN |
| References cited | 5 |
The design of a bi-directional logic translator requires a clear understanding of the parameters of logic design: Boolean algebra, voltage transfer, fanout, time delay, and power dissipation. Also, it requires the use of tri-state logic and latches in control lines, and it introduces several of the many logic families used in an actual digital system. This design project is suitable for a course in digital electronics, and it can lead to further developments in a senior thesis or in a graduate-level project. The simplest translator design (CMOS to TTL) can be a homework project. The most complex (a silicon to gallium-arsenide translator) is a research grade project for a graduate student. Exact specifications are determined by the instructor. >
Algorithm · Boolean algebra · Computer engineering · Digital electronics · Electrical engineering · Electronic circuit · Electronic engineering · Logic gate · Logic synthesis · Programming language · Register-transfer level · State (computer science) · Computer Science · Engineering · Experimental Learning in Engineering · Low-power high-performance VLSI design · Quantum-Dot Cellular Automata · Theoretical Computer Science
| Citation velocity | historical |
|---|---|
| Highly cited | No |