首页> 外文期刊>American journal of engineering and applied sciences >APPLICATION SPECIFIC INTEGRATED CIRCUITS DESIGN AND IMPLEMENTATION OF RADEMACHER AND WALSH FUNCTIONS | Science Publications
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APPLICATION SPECIFIC INTEGRATED CIRCUITS DESIGN AND IMPLEMENTATION OF RADEMACHER AND WALSH FUNCTIONS | Science Publications

机译:特定应用集成电路的设计和RADEMACHER和WALSH函数的实现|科学出版物

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> The orthogonal functions, specially the Rademacher and Walsh functions are being increasingly used in Digital Signal Processing (DSP). Today?s DSP applications require fast processing time in order to meet the challenges of the real time systems. State-of-the-art implementation technologies are therefore being used. This study describes the design and implementation of Rademacher and Walsh functions targeted to the state-of-the-art Cell Based Integrated Circuits (CBIC) technology. High level design techniques are used with the help of advanced EDA tools from SYNOPSYS International. Optimized VHDL models have been developed and used for design entry. The design is thoroughly verified using advanced verifications tools. The design is implemented and processing has been done with 90 nm CMOS Technology from TSMC foundry. It is observed that the results obtained, are far better than the FPGA implementation reported earlier in the literature.
机译: >正交函数,特别是Rademacher和Walsh函数正越来越多地用于数字信号处理(DSP)中。当今的DSP应用需要快速的处理时间,才能应对实时系统的挑战。因此,正在使用最新的实施技术。这项研究描述了针对最先进的基于单元的集成电路(CBIC)技术的Rademacher和Walsh函数的设计和实现。在SYNOPSYS International的高级EDA工具的帮助下,使用了高级设计技术。已开发出优化的VHDL模型并将其用于设计输入。使用高级验证工具可以对设计进行彻底验证。通过台积电(TSMC)铸造厂的90 nm CMOS技术实现了设计并完成了处理。可以看出,所获得的结果远远优于文献中先前报道的FPGA实现。

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