Kavana M

Aspiring Software Engineer | IoT Developer
Davangere, IN.

About

Highly motivated Electronics and Communication Engineering student with a strong foundation in C, Python, and Data Structures, complemented by practical experience in IoT system development and robotics. Eager to apply analytical problem-solving skills and technical expertise to contribute to innovative data-driven projects and software solutions in a dynamic engineering environment.

Education

Jain Institute of Technology
Davangere, Karnataka, India

Bachelor of Engineering (B.E.)

Electronics and Communication Engineering

Grade: 75% (up to 6th sem)

Edu Asia Pre-University College
Karur, Tamil Nadu, India

Pre-University Course

Science (PUC)

Grade: 79.6%

MKET LKEM School
Harihar, Karnataka, India

High School

Secondary School Leaving Certificate (SSLC)

Grade: 76.5%

Languages

English
Kannada

Certificates

Workshop on Embedded System for Projects/Product Development

Issued By

Abeyaantrix Solutions

Cybersecurity Analyst Job Simulation

Issued By

Tata Group (via Forage)

Skills

Programming Languages

C, Python, Data Structures, Algorithms.

Tools & Platforms

MATLAB, Arduino IDE, VS Code, Turbo C++, Xilinx ISE, Electric 9.07, IoT Development, Embedded Systems.

Hardware & Robotics

Arduino, Sensors, Ultrasonic Sensors, Hardware-Software Integration, Autonomous Robotics.

Core Competencies

Data Analysis Basics, Problem Solving, Logical Thinking, Critical Thinking.

Soft Skills

Leadership, Communication, Adaptability, Teamwork, Time Management.

Interests

Technology

Technology Trends, Embedded Systems, IoT, Cybersecurity.

Analytical Pursuits

Problem Solving Challenges, Data Insights Exploration, Logic Puzzles.

Projects

Driver Drowsiness Detection System (Final Year Project - Ongoing)

Summary

Developing a hardware-based IoT system using Arduino and various sensors to detect driver fatigue and trigger alerts, aiming to enhance road safety.

Obstacle Avoidance Robot (Mini Project)

Summary

Designed and implemented an autonomous robot using Arduino and ultrasonic sensors to navigate environments efficiently by avoiding obstacles.