I'm a B.Tech student at LPU who took the hardware path β while everyone else chases full-stack frameworks, I chase setup time violations.
Domain : VLSI Design & Verification
Languages : Verilog Β· SystemVerilog Β· VHDL Β· C Β· C++ Β· Java
Protocols : AMBA AHB Β· AMBA APB Β· SPI Β· I2C Β· UART
Toolchain : Xilinx Vivado Β· Cadence Virtuoso Β· Spring Boot Β· MySQL
Currently : Building UVM testbenches that catch bugs before tape-out
Fun fact : I've written more testbenches than test cases β and I'm proud of it|
βοΈ RTL Design 100+ digital circuits in Verilog β adders, FIR filters, alarm clocks, FSMs. If it has flip-flops, it's probably in a repo below. π IP Verification Constrained-random stimulus, functional coverage, scoreboards β the full UVM stack. Verified APB-based controllers and dual-port RAMs end-to-end. π Protocol Design Built an AHB-to-APB bridge from scratch, because protocols don't bridge themselves. |
π¬ CMOS Circuits A Mealy machine sequence detector in 90nm CMOS and a VCO-based ADC, simulated entirely in Cadence Virtuoso. ποΈ FPGA An audio equalizer implemented in VHDL on FPGA β proof that hardware can groove too. π» Software When I need a break from waveforms, I build full-stack apps in Java + Spring Boot. Versatility isn't a weakness. |
Hardware Description Languages
Programming
VLSI Domains
Protocols
Tools & Platforms
β οΈ This image goes live only after you add the workflow file below and it runs once. See the setup notes under the code block.
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β "Software engineers have stack overflow. β
β I have timing violations at 3 AM." β
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β β Eswar, probably after tape-out β
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If you've scrolled this far, you should probably just hire me. π€