Embedded Systems
Wireless patient and athlete monitoring system
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Overtook the opportunity to build a prototype of a device for treating muscle soreness for helping various physiotherapists and athlete trainers
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Designed and developed a lightweight device easy to use, intended for well-being of society
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Worked on a principle of electronic pulsing embedding various sensors and ESP8266 microcontroller
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Utilized electrodes and sensors such as SPO2, BP, heartbeat, skin, and accelerometer in project
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Programmed using Arduino IDE in C/C++ language
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Prepared market-ready model with 92% efficiency
Home automation
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Undertook an opportunity to manage and automate physics lab at university
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Incorporated components into an easily accessible manner with the help of Arduino and NodeMCU
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Automated 70% of things such as lights, fans, doors, and air conditioning systems easily operable with Blynk application
Digital Clock using AVR Atmega32
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Implemented a digital clock using counter logic
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Tested a circuit after assembly using an oscilloscope and vector network analyzer
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Programmed an IC using C/C++ language
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Enhanced accuracy by 5% using a crystal oscillator and transistor
H-Bridge Design and Fabrication
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Created an H-bridge PCB layout using eagle software and printed its design
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Fabricated/embedded PCB through steps such as itching, drilling, and shouldering
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Validated designed PCB for different power inputs to drive motor and inverters