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A CORDIC processor for FFT computation and its implementation using gallium arsenide technology

机译:用于FFT计算的CORDIC处理器及其使用砷化镓技术的实现

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In this paper, the architecture and the implementation of a complex fast Fourier transform (CFFT) processor using 0.6 /spl mu/m gallium arsenide (GaAs) technology are presented. This processor computes a 1024-point FFT of 16 bit complex data in less than 8 /spl mu/s, working at a frequency beyond 700 MHz, with a power consumption of 12.5 W. The architecture of the processor is based on the COordinate Rotation DIgital Computer (CORDIC) algorithm, which avoids the use of conventional multiplication-and-accumulation (MAC) units, but evaluates the trigonometric functions using only add and shift operations, Improvements to the basic CORDIC architecture are introduced in order to reduce the area and power of the processor. This together with the use of pipelining and carry save adders produces a very regular and fast processor, The CORDIC units were fabricated and tested in order to anticipate the final performance of the processor. This work also demonstrates the maturity of GaAs technology for implementing ultrahigh-performance signal processors.
机译:本文介绍了采用0.6 / spl mu / m砷化镓(GaAs)技术的复杂快速傅里叶变换(CFFT)处理器的体系结构和实现。该处理器以低于8 / spl mu / s的速度计算16位复杂数据的1024点FFT,工作频率超过700 MHz,功耗为12.5W。该处理器的体系结构基于坐标旋转数字计算机(CORDIC)算法避免使用传统的乘加(MAC)单元,但仅使用加法和移位运算来评估三角函数。为了减少面积和面积,引入了对基本CORDIC体系结构的改进。处理器的功率。结合使用流水线和进位保存加法器,可以生产出非常规则和快速的处理器。对CORDIC单元进行了制造和测试,以期预期处理器的最终性能。这项工作还证明了用于实现超高性能信号处理器的GaAs技术的成熟度。

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