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8-Channel Logic Analyser Controller Design Using Field Programmable Gate Array

Haron N.Z., and Aziz A.S.A., and Ibrahim M.M., and Salim S.I.M., (2007) 8-Channel Logic Analyser Controller Design Using Field Programmable Gate Array. Journal of Advanced Manufacturing Technology, Vol. 1 (No. 1). pp. 87-96. ISSN 1985-3157

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Official URL: http://www.utem.edu.my

Affiliations

Universiti Teknikal Malaysia Melaka. Faculty of Electronics and Computer Engineering
Universiti Teknikal Malaysia Melaka. Faculty of Electronics and Computer Engineering
Universiti Teknikal Malaysia Melaka. Faculty of Electronics and Computer Engineering
Universiti Teknikal Malaysia Melaka. Faculty of Electronics and Computer Engineering

Abstract

This paper presents a Field Programmable Gate Array (FPGA) based logic analyser controller. The controller circuit is capable of performing data acquisition and signal display on a 600x480 VGA monitor. The controller was designed using a Very High Speed Integrated Circuit Hardware Description Language (VHDL) coding and schematic capture. For validation, behavioural simulations are carried out using Xilinx ISE simulator. The synthesis and implementation of the controller onto Xilinx Spartan XC3S200-4FT256 FPGA chip are also presented. The motivation of this project is to
explore the capability of designing a complete digital system in a single FPGA chip.

Item Type:Journal
Keywords:Logic Analyser, Field Programmable Gate Array (FPGA), Very High Speed Integrated Circuit Hardware Description Language (VHDL).
Subjects:T Technology, Engineering
ID Code:8062

[1] Hammond, B.J., 1989, Development in Logic Analyser, IEE Colloquium on Instrumentation in Electronic Product Manufacture, London, UK, pg. 2/1-2/3.

[2] Hyder, N., 1988, Logic Analysers: Principle and Application, IEE Colloquium on Techniques for Testing and Measuring Digital Systems, London, UK, pg. 1/1-1/2.

[3] Lee, B.H., Makki, R.Z., Rohe, C., 1991, A VLSI based logic analyser interface for a microprocessor development system, Proc. 23rd Southeastern Symposium on System Theory, Columbia, SC, USA, pg 101-105.

[4] Maya, G., Paul, S. G., 2006, Reconfigurable Computing: Accelerating Computation with Field-Programmable Gate Arrays, Springer Publishing.

[5] Amir Mohamed Reda Mallah, et al. VHDL Implemented of Digital Oscilloscope Using FPGA bachelor diss., Alexandria University.

[6] Texas Instruments, ADS7842 ADC datasheet, http://focus.ti.com/lit/ds/symlink/ads7842.pdf.

[7] Xilinx Inc., Xilinx ISE Webpack v8.21, http://download.xilinx.com.

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