Design of bridge chip based on EMIF bus interface

EMIF is an external storage interface on a DSP (digital signal processor) device, and this paper proposes a bridge chip design method based on the EMIF interface of the TMS320VC5510 circuit. The bridge chip contains low-speed peripherals I2C, UART and SDIO interface, while integrating IDO, ADC analo...

Full description

Bibliographic Details
Main Authors: Shen Jing, Tao Qingping, Qiang Xiaoyan
Format: Article
Language:zho
Published: National Computer System Engineering Research Institute of China 2023-01-01
Series:Dianzi Jishu Yingyong
Subjects:
Online Access:http://www.chinaaet.com/article/3000157970
_version_ 1797447749073895424
author Shen Jing
Tao Qingping
Qiang Xiaoyan
author_facet Shen Jing
Tao Qingping
Qiang Xiaoyan
author_sort Shen Jing
collection DOAJ
description EMIF is an external storage interface on a DSP (digital signal processor) device, and this paper proposes a bridge chip design method based on the EMIF interface of the TMS320VC5510 circuit. The bridge chip contains low-speed peripherals I2C, UART and SDIO interface, while integrating IDO, ADC analog IP. This design has been fully EDA simulation and FPGA verification, and tapeout for silicon verification. The implementation test results show that the EMIF interface can communicate with the bridge chip without error, and realize the peripheral expansion function of the TMS320VC5510 circuit. The design method of this bridge chip greatly increases the flexibility of SoC design on the market, effectively reduces the design cycle, and saves design costs.
first_indexed 2024-03-09T14:00:25Z
format Article
id doaj.art-dfafe655c18c47e8a3063c1d7085d594
institution Directory Open Access Journal
issn 0258-7998
language zho
last_indexed 2024-03-09T14:00:25Z
publishDate 2023-01-01
publisher National Computer System Engineering Research Institute of China
record_format Article
series Dianzi Jishu Yingyong
spelling doaj.art-dfafe655c18c47e8a3063c1d7085d5942023-11-30T09:14:31ZzhoNational Computer System Engineering Research Institute of ChinaDianzi Jishu Yingyong0258-79982023-01-01491364010.16157/j.issn.0258-7998.2228923000157970Design of bridge chip based on EMIF bus interfaceShen Jing0Tao Qingping1Qiang Xiaoyan2NO.58 Rerearch Institute of China Electronics Technology Group Corporation, Wuxi 214035,ChinaNO.58 Rerearch Institute of China Electronics Technology Group Corporation, Wuxi 214035,ChinaNO.58 Rerearch Institute of China Electronics Technology Group Corporation, Wuxi 214035,ChinaEMIF is an external storage interface on a DSP (digital signal processor) device, and this paper proposes a bridge chip design method based on the EMIF interface of the TMS320VC5510 circuit. The bridge chip contains low-speed peripherals I2C, UART and SDIO interface, while integrating IDO, ADC analog IP. This design has been fully EDA simulation and FPGA verification, and tapeout for silicon verification. The implementation test results show that the EMIF interface can communicate with the bridge chip without error, and realize the peripheral expansion function of the TMS320VC5510 circuit. The design method of this bridge chip greatly increases the flexibility of SoC design on the market, effectively reduces the design cycle, and saves design costs.http://www.chinaaet.com/article/3000157970emifdspbridge chipsilicon verificationsoc design
spellingShingle Shen Jing
Tao Qingping
Qiang Xiaoyan
Design of bridge chip based on EMIF bus interface
Dianzi Jishu Yingyong
emif
dsp
bridge chip
silicon verification
soc design
title Design of bridge chip based on EMIF bus interface
title_full Design of bridge chip based on EMIF bus interface
title_fullStr Design of bridge chip based on EMIF bus interface
title_full_unstemmed Design of bridge chip based on EMIF bus interface
title_short Design of bridge chip based on EMIF bus interface
title_sort design of bridge chip based on emif bus interface
topic emif
dsp
bridge chip
silicon verification
soc design
url http://www.chinaaet.com/article/3000157970
work_keys_str_mv AT shenjing designofbridgechipbasedonemifbusinterface
AT taoqingping designofbridgechipbasedonemifbusinterface
AT qiangxiaoyan designofbridgechipbasedonemifbusinterface