Flagship solutions engineered for performance.
Academic timeline and milestones.
Designed a distributed IoT system utilizing Raspberry Pi, WebSockets, Arduino nodes, and sensory arrays (ultrasonic, weight) for interactive spectator voting and engagement.
Designed and integrated an IC using L-Edit, S-Edit, and Verilog on the TSMC 65 nm process, combining subcircuits (adders, UART) and ensuring full DRC compliance.
Advanced study encompassing Circuits, Programming, Digital Systems, and Signals Control & Communications.
Developed a digital bus controller on an FPGA using SystemVerilog and ModelSim, implementing a finite state machine to manage RAM/ROM arbitration without bus contention.
Designed and implemented an RFID reader based on an Atmel microcontroller, writing embedded C code, debugging over serial, and performing custom soldering with KiCad layouts.
This digital presence is designed and hosted from the ground up.
Frontend presentation with modern glassmorphism and animated scrolling.
Deep interactions and fluid client-side dynamic rendering.
High-performance web server and proxy management.
Secure, containerized deployments for robust reliability.
Headless server management and continuous integration.
Self-hosted, maintained server infrastructure running x86 architecture.