Harrison A, Hayes-Gill B R, Crowe J A, Chang S T
Department of Electrical and Electronic Engineering, University of Nottingham, UK.
J Med Eng Technol. 1995 Nov-Dec;19(6):198-204. doi: 10.3109/03091909509030289.
Field Programmable Gate Arrays (FPGAs) allow digital circuitry to be integrated on to a single device without the long time penalty incurred with mask programmable Application Specific Integrated Circuits (ASICs). This makes FPGA technology an attractive option to engineer involved in designing digital circuitry where space is at a premium. Furthermore, the relatively low cost of FPGAs at low volume, compared to mask programmable ASICs make them an excellent prototyping option for designers who are considering low cost volume production with mask programmable ASICs. There are several different types of FPGAs available which thus creates confusion for prospective users uncertain of their relative benefits. This paper serves as an introduction to FPGA technology and the stages involved in implementing a design, via the application of an Actel FPGA to the development of an ambulatory long term electrocardiogram (ECG) based RR interval recorder.
现场可编程门阵列(FPGA)允许将数字电路集成到单个设备上,而无需像掩膜可编程专用集成电路(ASIC)那样花费很长时间。对于参与设计数字电路且空间非常宝贵的工程师来说,这使得FPGA技术成为一个有吸引力的选择。此外,与掩膜可编程ASIC相比,FPGA在小批量生产时成本相对较低,这使其成为考虑采用掩膜可编程ASIC进行低成本批量生产的设计师的理想原型设计选择。有几种不同类型的FPGA可供选择,这给不确定其相对优势的潜在用户带来了困惑。本文通过将Actel FPGA应用于基于动态长期心电图(ECG)的RR间期记录器的开发,介绍了FPGA技术以及实现设计所涉及的各个阶段。