Completion Detection in Asynchronous Circuits
☆☆☆☆☆
(0 reviews)
Lowest price (incl. delivery)
109,99 USD
Typical price83,83 PLN
Lowest (90 days)59,99 PLN
Offers6
Last updated1 неделю назад
Price history (90 days)
Full history
2026-08-08
2026-08-15
| Обновлено | Цена |
|---|---|
| 2026-08-08 | 71,68 |
| 2026-08-15 | 59,99 |
| Продавец | Product price | Delivery | Всего | Наличие | Updated | |
|---|---|---|---|---|---|---|
| SP SpringerNatureLink Shop INT | 84,99 USD | 25,00 USD | 109,99 USD | Доступно | 4 дня назад | View offer |
| SP SpringerNatureLink Shop INT | 84,99 USD | 19,00 USD | 103,99 USD | Доступно | 4 дня назад | View offer |
| SP SpringerNatureLink Shop INT | 74,99 GBP | 29,00 GBP | 103,99 GBP | Доступно | 4 дня назад | View offer |
| SP SpringerNatureLink Shop INT | 99,99 USD | 29,00 USD | 128,99 USD | Доступно | 4 дня назад | View offer |
| SP SpringerNatureLink Shop INT | 99,99 USD | 15,00 USD | 114,99 USD | Доступно | 4 дня назад | View offer |
| SP Springer Nature Author | 99,99 USD | 29,00 USD | 128,99 USD | Доступно | 1 неделю назад | View offer |
Цены и наличие могут меняться. Последнее обновление: 08.08.2026 13:37.
0,0
☆☆☆☆☆
0 reviews
5★
0%
4★
0%
3★
0%
2★
0%
1★
0%
Product reviews
No reviews yet — be the first!
This book is intended for designers with experience in traditional (clocked) circuit design, seeking information about asynchronous circuit design, in order to determine if it would be advantageous to adopt asynchronous methodologies in their next design project. The author introduces a generic approach for implementing a deterministic completion detection scheme for asynchronous bundled data circuits that incorporates a data-dependent computational process, taking advantage of the average-case delay. The author validates the architecture using a barrel shifter, as shifting is the basic operation required by all the processors. The generic architecture proposed in this book for a deterministic completion detection scheme for bundled data circuits will facilitate researchers in considering the asynchronous design style for developing digital circuits.