Low-power and high-SFDR direct digital frequency synthesizer based on hybrid CORDIC algorithm

Tze‐Yun Sung, Lyu-Ting Ko, Hsi‐Chin Hsin · 2009

This paper describes the architecture and VLSI (very large scale integration) implementation of a direct digital frequency synthesizer (DDFS) based on a hybrid CORDIC (COordinate Rotation DIgital Computer) algorithm. It is shown that the architecture can be implemented as a multiplier-less, small ROM ( 4 × 16 -bit) and pipelined data path. A SoC (system on chip) has been designed with 0/18µm 1P6M CMOS, and emulated on Xilinx FPGA (field programmable gate array). The proposed technique uses hybrid CORDIC algorithm of sine and cosine functions to achieve more than 84.4-dBcspurious free dynamic range (SFDR). The performances of novel DDFS based on hybrid CORDIC algorithm compares favorably with digital circuit design, power consumption and SFDR.

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