VLSI Digital Design for measuring Galvanic Skin Resistance(GSR) to measure Hypertension level & its Real Time Implementation over CPLD
In this projects we will be use Altera Corporation MAX II EPM240T100C5 CPLD. The MAX II EPM240T100C5 is non-volatile CPLD with densities from 240 logic elements (LEs) and non-volatile storage of 8 Kbits. The analog value from the GSR is measured using analog to digital converter (ADC).The digital values are further processed by the CPLD to check the GSR and give the alert if value is crossed a certain limits. The multi segments are used for the display purpose.
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Technologies Covered
Analog & Digital Sensors, Biomedical Thesis Projects, Featured Projects, VLSI | FPGA | CPLD
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Related Keywords
GSR, Body Resistance, Lie Detection, Hypertension, Transducer, Measurement, Device Control, ASIC, CPLD, FPGA, Chip Designing, multiplying circuits, Automation, Analog Sensors, Featured Projects, Starred Projects, Exciting Projects, BioMedical, Body Parameters, Bio Feedback, VLSI, Verilog, VHDL, Very Large Scale Integration, IC Fabrication, Logic Gates, Digital Signal Processing Chips, Digital Sensors, Transducers, Sensing Units
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VLSI using CPLD and FPGA
This is a process of stemming or creating integrated circuits by combing several thousands of transistors together on a single chip. VLSI stands for very large scale integration which in short has a purpose of integrating several numbers of semiconductors on a single chip. There are various VLSI technologies used as 45nm, 65nm. They have been named so depending on the length of the gate used in the transistors. A microprocessor is also a VLSI device. Structured VLSI design is a modular methodology originated just with an aim of saving microchip area by minimizing the interconnection area.
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