中国半导体行业协会封装分会会刊

中国电子学会电子制造与封装技术分会会刊

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电子与封装 ›› 2023, Vol. 23 ›› Issue (4): 040302 . doi: 10.16257/j.cnki.1681-1070.2023.0018

• 电路与系统 • 上一篇    下一篇

一种SATA接口扩展电路的设计与实现

林凡淼;张磊;邓甜甜   

  1. 中国电子科技集团公司第五十八研究所,江苏 无锡 214035
  • 收稿日期:2022-07-13 出版日期:2023-04-27 发布日期:2022-12-29
  • 作者简介:林凡淼(1988—),男,江苏无锡人,硕士,工程师,现从事IC应用测试及电路设计工作。

Design andImplementation of SATA Interface Extension Circuit

LIN Fanmiao, ZHANG Lei, DENG Tiantian   

  1. China Electronics Technology GroupCorporation No.58 Research Institute, Wuxi 214035, China
  • Received:2022-07-13 Online:2023-04-27 Published:2022-12-29

摘要: 信息技术的飞速发展对存储设备的存储容量、传输速率和稳定性等提出了更高的要求。为了满足多种设备之间高速传输的需求,高速串行大容量存储设备规范(SATA)接口作为主流存储设备接口,需要扩展。设计了一种SATA接口扩展电路,基于国产桥片搭建了外围电路及测试平台。详细介绍了硬件设计及测试方法,结果显示,下游5个SATA接口均能连接成功且传输速率均能达到6 Gbit/s,其他外设也均能正常读写。

关键词: SATA接口, 扩展电路, 传输速率

Abstract: The rapid development of information technology has put forward higher requirements for storage capacity, transmission rate and stability of storage devices. In order to meet the demand for high-speed transmission between multiple devices, the high-speed serial advanced technology attachment (SATA) interface, as the mainstream storage device interface, needs to be expanded. A SATA interface expansion circuit is designed, and the peripheral circuit and test platform are built based on a domestic bridge chip. The hardware design and test method are introduced in detail, and the results show that all five downstream SATA interfaces can be connected successfully, the transmission rate can reach 6 Gbit/s, andthe rest of the peripherals can also read and write normally.

Key words: SATA interface, expansion circuit, transmission speed

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