Hello, I'm Janarthanan,from Theni. I completed my schooling at Srivalli Varadharaj Matriculation Higher Secondary School. Currently, I am pursuing my Bachelor of Engineering degree in Electronics and Communication Engineering at K.S. Rangasamy College of Technology.
My short-term goal is to enhance and upskill myself, while my long-term goal is to secure a senior position in the company where I get placed, contributing significantly to its growth and success. In my free time, I enjoy playing video games, which helps me relax and unwind.
As a passionate developer, I have gained a solid foundation in web technologies and backend systems. With strong skills in HTML and Bootstrap, I create well-structured, responsive web pages that offer excellent user experiences. My expertise in CSS allows me to bring creativity and modern design trends to life. I also have a good grasp of JavaScript, enabling me to build dynamic and interactive elements into websites. In addition, I have a solid understanding of MSSQL, which helps in managing and optimizing databases for various applications, and proficiency in Java, ensuring that I can develop scalable and efficient backend systems.
I am highly proficient in a range of development and simulation tools essential for both software and electronics projects. With Visual Studio, I efficiently build, debug, and manage code, ensuring smooth software development workflows. My expertise in Eclipse allows me to develop Java applications and web solutions with enhanced productivity. I am adept at using Multisim for simulating and analyzing complex electronic circuits, ensuring precision in circuit design. Additionally, I possess extensive experience with Xilinx, focusing on FPGA design and verification, and Tanner EDA, which I utilize for designing and simulating mixed-signal circuits.
I worked on my college website, which was developed by the company statix.pro. My responsibility was to develop the sections for the VLSI and ECE departments. For my contributions, I was offered a two-week internship.
I completed my internship at Futurik Technology, where I learned how to edit templates and develop websites. My responsibilities included filling content into specific sections of the websites.
I completed a Salesforce internship, where I gained hands-on experience with the platform's CRM tools and workflows. This opportunity allowed me to develop skills in customizing Salesforce solutions to improve business processes.
I am currently working as a Software Developer at Chattingbirds Private Limited (R&D unit), where I contribute to developing and optimizing software solutions. My role involves leveraging my technical skills to build efficient and scalable applications. I am continuously learning and adapting to new technologies to enhance my expertise.
Completed
Percentage : 85.80/100
StateBoard
Percentage : 87.50/100
Affiliated with Anna University
CGPA: 8.22 / 10
Independently developed a placement website using HTML, CSS, JavaScript, BOOTSTRAP. The website collected and stored student details in an MSSQL database, featuring a user-friendly interface for seamless data entry and retrieval. Ensured secure data handling and efficient database management to streamline the placement process
Contributed to the development of the college website by creating and designing the web pages for the VLSI department. Responsible for implementing user-friendly interfaces and ensuring smooth navigation and functionality
The project focuses on designing and constructing a voltage regulator using the LM317 integrated circuit. The primary objective is to build a regulated power supply and test its application in various circuits. One of the key tasks involves constructing a stable power source capable of providing adjustable voltage outputs. Additionally, the project aims to apply the regulated power supply to create a blinking LED circuit, showcasing its practical usage in simple electronic applications. This hands-on project emphasizes the importance of power regulation in electronic devices.
The objective of this project is to develop two types of amplifier circuits. The first is a low-noise, high-performance amplifier using the NE5534 IC, aimed at enhancing frequency response and reducing distortion. The second is a headphone amplifier constructed using a 3-transistor configuration to deliver clear audio output. The design and construction of both circuits aim to demonstrate practical applications in audio amplification systems. By utilizing the NE5534 IC and transistor-based designs, these circuits will showcase efficient amplification with minimal noise and improved sound quality.
The objective of this project is to create a digital delay timer using the LS7212 chip, with the Verilog Hardware Description Language (HDL). This involves writing Verilog code to simulate the behavior of a delay timer, focusing on precise timing control. The project aims to design, simulate, and test the Verilog code for the delay timer, ensuring that it functions as expected in hardware implementation. Through this, the practical application of digital design in Verilog is demonstrated, highlighting the efficiency and accuracy of hardware modeling in HDL.
The objective of this project is to develop a prototype for a low noise preamplifier circuit. The aim is to design a high-performance frequency amplifier using the NE5534 IC, focusing on minimizing noise and maximizing signal clarity. This involves constructing the amplifier circuit to enhance weak audio signals while maintaining signal integrity. The design aims to achieve optimal performance in various audio applications, showcasing the NE5534 IC's capabilities in delivering high-quality amplification with low distortion.
The objective of this project is to construct a rectangular waveguide operating in the TM02 mode. The aim is to design and implement a waveguide that efficiently transmits electromagnetic waves while utilizing the TM02 mode for optimal signal propagation. This mode allows for unique field distribution patterns within the waveguide, enhancing its performance in specific applications. The project focuses on developing a robust design that ensures high efficiency and minimal signal loss in guided wave applications.
The objective of this project is to develop an IoT-based rainfall detection system using ultrasonic sensors and ESP32 microcontrollers to monitor real-time precipitation via a cloud platform. This product aims to support the 13th Sustainable Development Goal (SDG) - Climate Action by helping in environmental monitoring and mitigation strategies. The system provides accurate rainfall data that can aid in better decision-making and resilience against weather-related risks. By utilizing cloud-based analytics, the solution delivers timely information, allowing for improved responses to climate challenges.
The objective of this project is to detect heart abnormalities, such as arrhythmias, and provide diagnostic readings to address potential underlying heart issues. This product aims to support the 3rd Sustainable Development Goal (SDG) - Good Health and Well-Being by contributing to improved cardiovascular health monitoring. The system helps users find their target heart rate, which is essential for maximizing the benefits of cardiovascular exercise. By calculating the target heart rate, which is 50%–85% of the maximum heart rate (220 minus the user's age), the solution encourages more effective and safer exercise routines.
The objective of this project is to detect and provide real-time soil moisture data, enabling precise irrigation scheduling and effective crop management. This approach enhances agricultural productivity and conserves water resources, aligning with the 13th Sustainable Development Goal (SDG) - Climate Action. The system aims to offer accurate measurements of moisture levels in both soil and air environments. These measurements will assist in optimizing water usage, improving agricultural output, and contributing to indoor air quality control for better environmental management.
I am pursuing a minor degree in the Department of Information Technology, specializing in Web Technology. This minor program enhances my knowledge of modern web development technologies and tools. It allows me to deepen my understanding of web frameworks, server-side and client-side scripting, and responsive web design, which aligns perfectly with my passion for full-stack development.
I am an active member of the IEEE association, where I regularly contribute by organizing various technical and non-technical events. My involvement includes coordinating workshops, seminars, and hackathons that focus on emerging technologies and innovation. This experience has helped me develop leadership, teamwork, and event management skills while staying connected with the latest advancements in the field of engineering and technology.
I presented a paper titled 'Smart Car Parking System in IoT', where I explored innovative solutions to modern parking challenges using IoT technologies. My presentation covered key aspects such as real-time parking spot detection, automated parking management, and the system's ability to reduce traffic congestion. This experience enhanced my research skills and deepened my understanding of how IoT can be integrated into everyday applications.
I participated in a paper presentation titled 'Red Bull Company Strategic', where I analyzed the strategic approaches taken by Red Bull to maintain its market leadership. The presentation covered key topics such as branding, marketing innovations, and expansion strategies. Through this, I gained a deeper understanding of the company’s business model and its competitive edge in the energy drink industry.
I created a poster presentation titled 'Revolutionizing Electronics,' highlighting the latest advancements in electronics technology and their potential impact on various industries. The presentation showcased innovative solutions and cutting-edge applications shaping the future of electronics.
In the Project Expo, I presented a project titled 'Soil and Air Moisture Sensing'. This poster presentation focused on the latest advancements in electronics technology and their application in environmental sensing. The project highlighted innovative solutions for accurately measuring moisture levels in soil and air, demonstrating the potential impact of such technologies on industries like agriculture and environmental monitoring. The emphasis was on cutting-edge electronics that provide efficient and sustainable solutions, helping optimize resource management and enhance agricultural productivity.
I attended a ReactJS workshop, where I gained hands-on experience in building dynamic web applications. The workshop enhanced my understanding of components, state management, and efficient frontend development practices.
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