Design and Experiments of a Waveform Generator Based on DDS Technology

Author:

Chen Linlin1ORCID,Sun Qun1ORCID,Zhao Ying1ORCID,Wang Chong1ORCID

Affiliation:

1. School of Mechanical and Automotive Engineering, Liaocheng University, Liaocheng, China

Abstract

Background: Signal generator plays a crucial role in the field of automatic measurement. However, Domestic signal generator usually uses a number of discrete phases locked loop components, whose circuits are usually complex with low precision and are easily affected by the external environment. Objective: Based on direct digital synthesis (DDS) technology, a small sized high precision economic waveform generator with a simple structure and operational convenience is developed. Methodology: The hardware circuit is designed with an AT89S52 controller, and the corresponding peripheral circuit. A DDS integrated chip AD9834 is employed as a signal source, and the modular programming principle with C and assembly language is used to accomplish the software design, through which the sine wave, square wave, triangular wave signals with adjustable amplitude, frequency, and TTL signal with adjustable duty ratio can be generated. Conclusion: The whole system is advantageous with several aspects such as high frequency precision, wide frequency range, and operational convenience. The experimental results show that the stability and reliability of the waveform generator are good with a simple hardware circuit structure.

Publisher

Bentham Science Publishers Ltd.

Subject

General Engineering

Reference24 articles.

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2. Ben Sneath; Preethichandra D.M.G.; Design

3. Cahill J. P.; Markowitz W. M.; Phase-coherent frequency synthesis with a DDS circuit 2000

4. Nicholas H.T.; Samueli H.; An Analysis of the Output Spectrum of Direct Digital Frequency Synthesizers in the Presence of Phase-Accumulator Truncation 41st Annual Frequency Control Symposium 1987,495-502

5. May D.; Direct digital synthesis-aspects of operation and application IEE Colloquium on Direct Digital Frequency Synthesis, vol 6, no 9, pp 1-7, 2012

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