Debugging Low-Power ESP32 Sleep Node Cycles
Refining an external timer wakeup latch circuit to reduce idle currents down to microamps on my latest outdoor environment sensor node.
I am an Electronics and Communication Engineering student translating microarchitectures, clean software loops, and telemetry into physical systems. Let's design what comes next.
Electronics Engineering Student | Tech content creator | Prototypist | Hobbyist
LBS College of Engineering
Kasaragod, Kerala
I focus on acquiring concrete execution habits across silicon ecosystems, programming languages, and manufacturing tools. My technical background spans direct bare-metal processing setup, electronic layout fabrication, and logical scripting pipelines.
As a team driver and technical organizer, I have spearheaded peer-led system development rooms, managed real-time structural assemblies, and trained classmates on modular circuit building blocks.
To bring advanced automation models smoothly down onto the physical plane—whether by configuring localized ultra-low-power telemetry tracking networks, streamlining system interfaces, or deploying non-blocking algorithm paradigms inside critical edge nodes.
Students and Peers Mentored
Hands-on Labs & Workshops Led
HARDWARE LAYER
Developing robust, stable systems across diverse silicon architectures, configuring registers, and optimizing peripheral pin assignments.
LOGIC LAYER
Writing deterministic scripts, real-time calculation handlers, and structured logic routines for automated hardware interaction.
DATA LAYER
Deploying smart, connected sensor networks and configuring ultra-low power states for independent monitoring devices.
NETWORK LAYER
Building reliable short and long-range over-the-air communication channels, including custom HID transceiver linkages.
INTELLIGENCE LAYER
Integrating real-time digital signal transformations and localized computing directly into minimal physical setups.
MANUFACTURING LAYER
Designing custom, structurally sound structural enclosures and moving mechanical assemblies to within precise millimeter standards.
CIRCUIT LAYER
Tracing distinct circuit tracking paths, arranging system components, and troubleshooting discrete hardware arrays.
Leading immersive peer environments, coordinating modular learning setups, and showing others how to move confidently from abstract schematics to working physical builds.
A custom hardware terminal leveraging contactless RFID sensing links to record real-time system state handshakes and execute distinct logic sequences.
Engineered a dedicated BLE Human Interface Device peripheral configured to run non-blocking control tracking matrices for enhanced 3D design tasks.
Designed a custom multirotor aerial system stabilizing real-time processing routines and over-the-air command links for standard video capture configurations.
A structurally optimized, ultralight pultruded stick-frame component system calculated to achieve precise weight tolerances and motor sleeve clearances.
An autonomous vehicle relying strictly on discrete integrated circuits and active-low tracking sensor signals without deploying a microcontroller code loop.
Conducted a structured technical training program for classmates and peers at LBS College of Engineering, detailing layout tracing, schematic captures, and hands-on modular printing methods.
Raw captures and firmware documentation notes pulled directly from my lab desk. Click images to expand schematics.
Refining an external timer wakeup latch circuit to reduce idle currents down to microamps on my latest outdoor environment sensor node.
Wrote a quick custom C++ serial parser framework alongside a Python desktop dashboard interface to plot multi-channel telemetry streams in real-time.
I love helping peers design robust, functioning engineering systems. Whether it is a confusing microcontroller signal error, complex Python automation script, or a wireless protocol link, let's build it next.