DocumentCode
114791
Title
An efficient ROM compression technique for linear- interpolated direct digital frequency synthesizer
Author
Omran, Qahtan Khalaf ; Islam, Mohammad Tariqul ; Misran, N. ; Faruque, Mohammad Rashed Iqbal
Author_Institution
Dept. of Electr., Electron. & Syst. Eng., Univ. Kebangsaan Malaysia, Bangi, Malaysia
fYear
2014
fDate
27-29 Aug. 2014
Firstpage
182
Lastpage
185
Abstract
A direct digital frequency synthesizer (DDFS) based on piecewise linear approximation method is presented in this paper. The proposed method allows sequential read access to memory cells per one clock cycle using time sharing. The output values will be momentarily stowed and read at a later time; thereby the slope is simply derived from these sinusoid points at successive phase angles. As a consequence, the DDFS only needs to store fewer coefficients and the hardware complexity is significantly shortened. The proposed DDFS has been analyzed using MATLAB Simulink and examined over entire Nyquist frequency band. The simulation results show a promising result of 84 dBc spurious free dynamic range (SFDR). The resultant low complexity architecture along with high spectral purity synthesized signal meets the specifications of recent portable battery-driven products.
Keywords
approximation theory; direct digital synthesis; interpolation; MATLAB Simulink; Nyquist frequency band; ROM compression technique; SFDR; direct digital frequency synthesizer; hardware complexity; linear interpolation; memory cells per one clock cycle; piecewise linear approximation method; portable battery-driven products; sequential read; sinusoid points; spectral purity signal synthesis; spurious free dynamic range; successive phase angles; time sharing; Clocks; Computer architecture; Frequency synthesizers; Interpolation; Piecewise linear approximation; Read only memory; DDFS; DDS; Linear interpolation;
fLanguage
English
Publisher
ieee
Conference_Titel
Semiconductor Electronics (ICSE), 2014 IEEE International Conference on
Conference_Location
Kuala Lumpur
Type
conf
DOI
10.1109/SMELEC.2014.6920826
Filename
6920826
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