Based on the Max038 Digital Function Signal Generator Design

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£oIn this paper, based on analysis of existing signal generator according to the system of indicators to a reasonable use of single-chip high-frequency precision function generator MAX038 control to produce the periodic waveform of the triangle wave, sine wave and square wave three. MAX038 chip as the core, the use of converters, digitally controlled potentiometers, electronic switches, proportional amplifier waveform type, amplitude, frequency programmable to adjust. The design frequency of mediation a wide range of high stability, and display are intuitive and easy to control. The high precision affordable price can be widely used in a variety of electronic measurement and control applications. Confirmed by the measurement of the effectiveness and feasibility of this program.

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1252-1255

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March 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Jue Sheng Zhang, Ji-Yu Zheng, Wan Xin Ping. Lock-in technique [M]. Xi'an: Xidian University Press, 2004.

Google Scholar

[2] [date] the Inaba protection design and application of the oscillation circuit: RC oscillator circuit to the digital frequency synthesizer of the experimental resolution. He Xi, Euclid, translated. Beijing: Science Press, 2004.

Google Scholar

[3] Liu Qiang. High Frequency Waveform Generator MAX038 and its application [J]. Application of Electronic Technique, 1995 (3): 32 - 34.

Google Scholar

[4] Xie Jiakui, Xuanyue Qing, Feng electronic circuit - non-linear part of the [M]. 4. Beijing: Higher Education Press, 2000.

Google Scholar

[5] Zhou Hangci microcontroller application design [M] Beijing: Beijing University of Aeronautics and Astronautics Press, 2002.

Google Scholar

[6] Xu Liang, Jiang-Jun Ruan, Gan Yan decoupling capacitors in the PCB design applications [J]. Electrical Measurement & Instrumentation, 2002, 39 (4): 5 - 8.

Google Scholar