Master Digital Logic, RTL Design, SystemVerilog, UVM, and ASIC Verification workflows. Design synthesizable RTL, build reusable verification environments, and develop industry-ready VLSI verification skills using modern EDA tools.
Industry-grade toolchain and standards you'll master
Master the complete VLSI Design and Verification flow through four industry-focused specialization tracks.
Learn digital electronics, Boolean algebra, FSM design, timing analysis, and ASIC design fundamentals.
Develop synthesizable RTL using Verilog, simulation techniques, timing controls, and memory modeling.
Build advanced verification environments using OOP, assertions, constrained random testing, and functional coverage.
Develop reusable UVM environments, protocol VIPs, scoreboards, agents, and regression frameworks.
A structured curriculum covering Digital Logic, Verilog RTL Design, SystemVerilog Verification, and Universal Verification Methodology (UVM) for ASIC and FPGA design careers.
Design and simulate a digital system using combinational logic, sequential circuits, and finite state machines.
Design an ALU, UART Controller, FIFO, and Memory Controller using synthesizable Verilog RTL.
Develop reusable SystemVerilog verification environments with assertions and functional coverage.
Build a complete UVM Verification Environment for an AXI/APB peripheral including agents, scoreboards, assertions, coverage, and regression testing.
Master the complete RTL Design, FPGA Development, ASIC Verification, and Digital Design toolchain used across the semiconductor industry.
Four structured phases covering Digital Logic, RTL Design, SystemVerilog Verification, and UVM.
Digital Logic Foundations →
Learn Boolean algebra, combinational logic, sequential circuits, FSMs, and digital system fundamentals.
Deliverable: Digital Logic Design Portfolio
Verilog RTL Design →
Build synthesizable RTL modules, simulate digital circuits, and develop FPGA-ready designs.
Deliverable: RTL Modules & FPGA Projects
SystemVerilog Verification →
Create advanced testbenches using assertions, constrained random verification, and functional coverage.
Deliverable:Verification Testbench
UVM & ASIC Verification →
Build reusable UVM environments, verify AXI/APB protocols, and complete an industry-style verification project.
Deliverable:Complete UVM Verification ProjectBuild practical engineering expertise in Electric Vehicles, Battery Management Systems, Power Electronics, and Autonomous Driving using industry-standard Model-Based Design workflows.
Limited exposure to digital logic, HDL programming, and semiconductor workflows.
No practical experience writing synthesizable Verilog or FPGA-ready RTL.
Limited understanding of SystemVerilog, assertions, coverage, or UVM methodology.
Design synthesizable Verilog RTL for FPGA and ASIC applications.
Build reusable SystemVerilog and UVM verification environments using industry-standard methodologies.
Complete multiple RTL Design, FPGA, SystemVerilog, and UVM projects ready for semiconductor interviews.
Join future ASIC and FPGA engineers mastering Digital Logic, Verilog, SystemVerilog, and UVM.
Build real-world FPGA, ASIC, RTL Design, SystemVerilog, and UVM projects that demonstrate industry-ready semiconductor engineering skills.
Description here.
Hear how aspiring engineers transformed their careers through Digital Logic, RTL Design, SystemVerilog, FPGA, and UVM training.
"The RTL Design & Verification Program completely transformed my career. I progressed from a fresh graduate to an RTL Design Engineer working on FPGA and ASIC projects, achieving a 150% salary increase within a year."
Senior RTL Design Engineer
@ AMD
"The Verilog and FPGA implementation modules gave me the confidence to work on real hardware projects."
@ Intel
"The hands-on RTL coding sessions and simulation labs prepared me for real semiconductor projects."
@ Synopsys
"The SystemVerilog and UVM labs helped me confidently develop reusable verification environments."
@ Cadence
"I transitioned from Embedded Systems to ASIC Verification and landed my dream semiconductor job."
@ Qualcomm
"The FPGA implementation projects became the strongest part of my interview portfolio."
@ Microchip
"The practical UVM projects helped me secure my first role as a Verification Engineer."
@ NVIDIA
Seamlessly blend online theoretical depth with offline real-world practicals. Gain hands-on exposure to industrial hardware, live projects, and internship opportunities.
Live sessions paired with in-lab practicals.
Work on FPGA boards and live ASIC/RTL projects.
Apply your skills with real industry teams.
Flexible learning paths tailored to your career milestones. Select the track that fits your background.
Total INR 59,160* (Inclusive of taxes)
*Estimates based on market placement reports. Individual outcomes may vary.
Your certification formally validates your skill set in recruiter searches.
Unique cryptographic hashes registered on global validation boards.
Add directly to your credentials panel with pre-filled ID tracking.
Your name will be printed exactly like this on your official Pantech certificate.
Track 01 • Embedded Systems
Master microcontroller programming, real-time operating systems, sensor interfacing, and firmware development for production-grade embedded devices.
Track 02 • AI Full Stack
Build end-to-end AI applications spanning model training, backend APIs, and deployment pipelines using modern full-stack frameworks.
Track 03 • Robotics
Design and program autonomous robots with SLAM, motion planning, sensor fusion, and real-world navigation systems.
Digital Logic, RTL Design, FPGA, ASIC Design and Verification Engineers power the world's most advanced semiconductor technologies. Hover over each card to explore career opportunities.
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Design high-performance digital circuits, processors, controllers and custom ASICs using Verilog HDL.
45% Industry Growth
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Develop, prototype and validate digital systems on Xilinx and Intel FPGA platforms.
High Demand
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Build reusable verification environments using SystemVerilog, Assertions, Functional Coverage and UVM.
Top Hiring
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Work on next-generation processors, communication interfaces, memory controllers and AMBA-based SoC architectures.
Global CareersNo. The program starts with Digital Logic fundamentals before progressing to Verilog HDL, SystemVerilog, RTL Design, FPGA implementation, and UVM Verification.
You'll gain hands-on experience with industry-standard tools including ModelSim, Vivado, QuestaSim, SystemVerilog simulators, FPGA development environments, and UVM-based verification workflows.
Yes. You'll build multiple industry-style projects including ALU Design, UART Controller, FIFO Memory Controller, FSM Design, FPGA implementations, and UVM Verification environments.
A Windows or Linux computer with at least an Intel Core i5 or equivalent processor, 16GB RAM, 100GB free storage, and a stable internet connection is recommended for simulation and FPGA development tools.
Yes. Learners who successfully complete the program and projects receive an industry-recognized certificate that can be shared with employers and on professional networking platforms.
Yes. Career support includes resume building, LinkedIn profile optimization, mock technical interviews, portfolio reviews, and interview preparation for semiconductor and FPGA companies.
This program is ideal for ECE, EEE, E&I, CSE graduates, engineering students, embedded developers, FPGA enthusiasts, and professionals looking to transition into the semiconductor industry.
After completion, you can pursue roles such as RTL Design Engineer, FPGA Engineer, ASIC Design Engineer, Verification Engineer, SoC Design Engineer, Digital Design Engineer, and Hardware Design Engineer.
Master Digital Logic, Verilog HDL, SystemVerilog, FPGA Design, ASIC Design Flow, and UVM Verification through industry-focused projects. Enroll in the next batch and build a portfolio that semiconductor recruiters value.