SK
S.V. KIRUTHIKA
About
To work in a professional environment, take up responsibility, try for the collective growth and development, always keeping the organizations goal as the priority and accept challenging assignment.
Skills & Expertise
C/C++
NS2
XILINX
MATLAB
FPGA
Digital Image Processing
Electronic Devices and Circuits
Environmental Science and Engineering
Communication Engineering
Communication Theory
VLSI Design
Microprocessor and Microcontroller
Electromagnetic & wave guides
Data structure
Industrial Economic and Management
Electrical Engineering and Instrumentation
Electronic Devices and Circuits
Design of Electrical Machines
Measurements and Instrumentation
Raspberry Pi
Arduino
Pick and Place Robot
Reversible Multiplexer Logic
Research Interests
Sincere
Hardworking
Optimistic
Connect With Me
Experience
Assistant Professor
Subject Handled 1. Digital Image Processing 2. Electronic Devices and Circuits 3. Environmental Science and Engineering 4. Communication Engineering 5. Communication Theory 6. VLSI Design 7. Microprocessor and Microcontroller Laboratory Handled 1. Electronic Devices and Circuits Laboratory 2. VLSI Design Laboratory 3. Circuits and Devices Laboratory 4. Engineering Practice Laboratory 5. Microprocessor and Microcontroller Laboratory
Assistant Professor
Subject Handled 1. Electromagnetic & wave guides 2. Data structure 3. Industrial Economic and Management Laboratory Handled 1. Data structure Laboratory
Assistant Professor
Subject Handled Electrical Engineering and Instrumentation Electronic Devices and Circuits Design of Electrical Machines Measurements and Instrumentation Laboratory Handled 1. Electronic Devices and Circuits Laboratory 2. Microprocessor and Microcontroller Laboratory
Education
Avinashilingam University
United Institute Of Technology
Sri Ramakrishna Polytechnic College
Projects
Implementation of Multiprecision Razor Based Dynamic Voltage Scaling Multiplier
The project was aimed to reduce the multiplier power, depending upon bits of operations.
FPGA Implementation of High Resolution All-Digital Duty Cycle Corrector Using NAND Based and Reversible Multiplexer Logic
The project was aimed to achieve an exact 50% duty cycle output with short locking time for low power application.
Publications (3)
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