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A RTL asynchronous FIFO design using modified micropipeline

Tutkimustuotosvertaisarvioitu

Standard

A RTL asynchronous FIFO design using modified micropipeline. / Wang, Xin; Nurmi, Jari.

BEC 2006 - 2006 International Baltic Electronics Conference; Proceedings of the 10th Biennial Baltic Electronics Conference. 2006. s. 95-98.

Tutkimustuotosvertaisarvioitu

Harvard

Wang, X & Nurmi, J 2006, A RTL asynchronous FIFO design using modified micropipeline. julkaisussa BEC 2006 - 2006 International Baltic Electronics Conference; Proceedings of the 10th Biennial Baltic Electronics Conference. Sivut 95-98, Tallinn, Viro, 2/10/06. https://doi.org/10.1109/BEC.2006.311069

APA

Wang, X., & Nurmi, J. (2006). A RTL asynchronous FIFO design using modified micropipeline. teoksessa BEC 2006 - 2006 International Baltic Electronics Conference; Proceedings of the 10th Biennial Baltic Electronics Conference (Sivut 95-98) https://doi.org/10.1109/BEC.2006.311069

Vancouver

Wang X, Nurmi J. A RTL asynchronous FIFO design using modified micropipeline. julkaisussa BEC 2006 - 2006 International Baltic Electronics Conference; Proceedings of the 10th Biennial Baltic Electronics Conference. 2006. s. 95-98 https://doi.org/10.1109/BEC.2006.311069

Author

Wang, Xin ; Nurmi, Jari. / A RTL asynchronous FIFO design using modified micropipeline. BEC 2006 - 2006 International Baltic Electronics Conference; Proceedings of the 10th Biennial Baltic Electronics Conference. 2006. Sivut 95-98

Bibtex - Lataa

@inproceedings{0febcb73b0c647a48e56bdfb6e785397,
title = "A RTL asynchronous FIFO design using modified micropipeline",
abstract = "An asynchronous FIFO which applies fourphase handshake protocol to read or write data has been designed in Register-Transfer Level (RTL) using VHDL. The asynchronous FIFO in this paper avoids data movement in a flow-through FIFO by applying token passing scheme in its control pipelines and multiplexer in its data register bank. Two control pipelines which base on micropipeline structure are proposed and used as the control logic for the asynchronous FIFO. An asynchronous arbiter and C-element RTL structures used in the proposed asynchronous FIFO are also presented.",
author = "Xin Wang and Jari Nurmi",
year = "2006",
doi = "10.1109/BEC.2006.311069",
language = "English",
isbn = "1424404150",
pages = "95--98",
booktitle = "BEC 2006 - 2006 International Baltic Electronics Conference; Proceedings of the 10th Biennial Baltic Electronics Conference",

}

RIS (suitable for import to EndNote) - Lataa

TY - GEN

T1 - A RTL asynchronous FIFO design using modified micropipeline

AU - Wang, Xin

AU - Nurmi, Jari

PY - 2006

Y1 - 2006

N2 - An asynchronous FIFO which applies fourphase handshake protocol to read or write data has been designed in Register-Transfer Level (RTL) using VHDL. The asynchronous FIFO in this paper avoids data movement in a flow-through FIFO by applying token passing scheme in its control pipelines and multiplexer in its data register bank. Two control pipelines which base on micropipeline structure are proposed and used as the control logic for the asynchronous FIFO. An asynchronous arbiter and C-element RTL structures used in the proposed asynchronous FIFO are also presented.

AB - An asynchronous FIFO which applies fourphase handshake protocol to read or write data has been designed in Register-Transfer Level (RTL) using VHDL. The asynchronous FIFO in this paper avoids data movement in a flow-through FIFO by applying token passing scheme in its control pipelines and multiplexer in its data register bank. Two control pipelines which base on micropipeline structure are proposed and used as the control logic for the asynchronous FIFO. An asynchronous arbiter and C-element RTL structures used in the proposed asynchronous FIFO are also presented.

U2 - 10.1109/BEC.2006.311069

DO - 10.1109/BEC.2006.311069

M3 - Conference contribution

SN - 1424404150

SN - 9781424404155

SP - 95

EP - 98

BT - BEC 2006 - 2006 International Baltic Electronics Conference; Proceedings of the 10th Biennial Baltic Electronics Conference

ER -