期刊文献+

浅谈FPGA器件设计技术发展综述 被引量:9

Discussion on the design summary of the development of FPGA devices
下载PDF
导出
摘要 现场可编程门阵列(FPGA)器件作为一种可编程逻辑器件,在社会发展的推动下,迎来了前所未有的发展机遇且实现了较大的突破,已经引起了人们的高度重视。近年来,社会各生产领域应用的需求走向多样化,更为该器件的设计技术的改革和发展注入了新活力,使其在计算机、通信、汽车电子等诸多领域得到了广泛的运用。在此背景下,FPGA器件设计技术的发展逐渐成为了人们谈论的重要课题。故此,笔者以FPGA的概念为切入点,对其以往的发展历程进行了回顾,并对当前主流现场可编程门阵列(FPGA)器件的前沿设计技术进行了总结,为其今后的发展前景进行展望。 Field-programmable gate array (FPGA) device as a programmable logic device,in promoting social development,ushered in an unprecedented development opportunities and achieve a major breakthrough,has attracted much attention.In recent years, the needs of the society towards the production of diverse areas of application,the more the reform and development of the device design technology has injected new vitality to the computer,communications, automotive electronics and many other fields has been widely used. Therefore,the development of FPGA device design technology is becoming an important issue that people are talking about.Therefore,the author of the concept of FPGA as a starting point,conduct a review of its past development process,and cutting-edge design technology mainstream scene programmable gate array(FPGA) devices are summarized,prospects for its future development prospects.
作者 张鹏
出处 《电子测试》 2014年第5X期41-43,共3页 Electronic Test
关键词 现场可编程门阵列 设计 发展 Field Programmable Gate Array design development
  • 相关文献

参考文献4

二级参考文献111

  • 1Slimane-Kadi M, Brasen D, and Saucier G. A fast-FPGA prototyping system that uses inexpensive high-performance FPIC. Proc. 2nd Annual Workshop on FPGAs, Berkeley, 1994: 147-156.
  • 2Chinnery D and Keutzer K. Closing the Gap Between ASIC and Custom Tools and Techniques for High-Performance ASIC Design. Netherland: Kluwer Academic Publishers, 2002 157-158.
  • 3Altera Corporation. Hardcopy series handbook, http://www. altera.com.cn/literature/hb/hrd/hc_handbook.pdf, 2008, 9.
  • 4Kuon I and Rose J. Measuring the gap between FPGAs and ASICs. IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems, 2007, 26(2): 203-215.
  • 5Hamdy E and McCollum J, et al.. Dielectric based antifuse for logic and memory IC. International Electron Devices Meeting Technical Digest, San Francisco, 1988: 786-789.
  • 6Birkner J and Chan A, et al.. A very-high-speed field-programmable gate array using metalto-metal antifuse programmable elements. Microelectronics Yournal, 1992, 23(7): 561-568.
  • 7Birkner J and Chua H T. Programmable array logic circuit. U.S.Patent, 4124899, 1978.
  • 8Brown S and Rose J. FPGA and CPLD architectures. A tutorial. IEEE Design and Test of Computers, 1996, 12(2): 42-57.
  • 9Frohman-Dentchkowsky D. A fully-decoded 2048-bit electrically programmable MOS ROM. IEEE International Solid State Circuits Conference Digest of Technical Papers, Philadelphia, 1971: 80-81.
  • 10Guterman D C and Rimawi L H, et al.. An electrically alterable nonvolatile memory cell using a floating-gate structure. IEEE Transactions on Electron Devices, 1997, 26(4): 576-586.

共引文献224

同被引文献81

引证文献9

二级引证文献17

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部