Design of a High-Performance Programmable Filter Based on TLC7528

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Abstract:

High-performance filter is the key to improving the detection accuracy of geophysical instruments. In order to achieve high-precision measurement of small signals, this paper presents a design of high-performance programmable filter based on TLC7528. The system design mainly included programmable amplifier circuit design, programmable filter circuit design, amplitude-frequency test circuit design, display circuit and the keyboard circuit design. The system used a microcontroller as the control center for system parameters setting and control, adopted analog switches and selected low-noise op amp to achieve programmable gain control, used TLC7528 to realize the filter cut off frequency adjustable by changing its internal resistance value and used the DDS chip and RMS conversion chip to design the circuit of amplitude-frequency characteristics, so as to test and analysis the signal amplitude and frequency of the system design filter. The experimental test data showed that the high performance filter has the characteristics of good linear, small voltage gain error, low power, flexibility and little environmental impact. It can significantly improve the accuracy of the geophysical detection equipment.

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Periodical:

Advanced Materials Research (Volumes 875-877)

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2152-2157

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Online since:

February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Luo J, Chen J, Ma D and Bai X 2010 Design of Low Power Consumption Programmable Control Filter Measurement & Control Technology pp.73-80.

Google Scholar

[2] Shen J and Yang Y 2008 16-bit MSP430 series ultra low power MCU Principles and Applications (Tsinghua University Press).

Google Scholar

[3] Qu A 2003 The Applicative Electron Technology (Science Press).

Google Scholar

[4] product from Texas Instruments TLC7528 2008 www. ti. com.

Google Scholar

[5] Xie Z 2000 electronic circuit design, experiment and test (2th edition)(Huazhong University of Science and Technology Press)pp.93-97.

Google Scholar

[6] Tong S and Hua C 2003 Analog electronic technique foundation (3rd Edition)(Higher Education Press)pp.501-551.

Google Scholar

[7] Analog Deviee Ine. 1999 CMOS 180MHz DDS/DAC Synthesizer AD9851(Teehnieal datasheet).

Google Scholar

[8] Kang H and Chen D 2003 electronic technique foundation, analog part (4th edition) pp.443-459.

Google Scholar

[9] Huang Z 2006 national undergraduate electronic design contest system design(Beijing University of Aeronautics and Astronautics Press).

Google Scholar