Limited Seats! Join AvyaktiTech’s Next Batch — Build Real Projects, Get Internship Experience & Land Your Dream Job.
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MOSFET, Verilog HDL, RTL Design, FPGA & ASIC Flow. LTspice, NGspice & FPGA tools.
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MOSFET, Verilog HDL, RTL Design, FPGA & ASIC Flow. LTspice, NGspice & FPGA tools.
AvyaktiTech is a technology-focused training and upskilling organization committed to building industry-ready talent in IT and Electronics. We deliver practical, project-driven VLSI Design training aligned with real-world semiconductor industry requirements. Our VLSI course in Bhubaneswar is an intensive 3 Months Program covering both Analog VLSI and Digital VLSI — from MOSFET Modeling and CMOS Logic Design to Verilog HDL, RTL Design, FPGA&ASIC Flow, Physical Design, Timing Analysis, and Low Power Design. Students train on industry-standard tools including LTspice, NGspice, Cadence (conceptual), Magic VLSI, and FPGA Tools — and complete real projects including Amplifier Design, Op-Amp Simulation, ALU / FPGA Design, and a final Capstone Project. Avyakti Tech's VLSI Design course in Bhubaneswar is your direct pathway to becoming a job-readyAnalog Design Engineer, RTL Design Engineer, FPGA Engineer, Physical Design Engineer, or Verification Engineer in the semiconductor industry.
Learn how AvyaktiTech’s VLSI Design program has helped students upskill and land their dream job in the semiconductor industry.
Introduction to semiconductor physics — energy bands, carrier concentration, drift and diffusion, p-n junction diode operation and I-V characteristics, MOSFET structure, operation, and modeling — threshold voltage, drain current equations, channel length modulation, and body effect, MOSFET as a switch and as an amplifier — small signal model and large signal behavior, CMOS Logic Design — CMOS inverter, NAND, NOR, complex logic gates, transmission gates, and pass transistor logic, Static and dynamic CMOS logic families — comparison, power, and speed trade-offs, Introduction to LTspice — setting up MOSFET simulations, DC operating point, AC analysis, and transient simulation. Students simulate their first CMOS circuit by end of this module using LTspice and NGspice.
Single-stage MOSFETAmplifiers — common source, common drain (source follower), and common gate configurations, Differential amplifiers and Current Mirrors — basic current mirror, Wilson mirror, and cascode current source, Operational Amplifiers (Op-Amps) — two-stage op-amp design, gain, bandwidth, slew rate, input/output swing, and CMRR, Frequency Response and stability — Bode plots, dominant pole, unity gain bandwidth, and phase margin, Noise in analog circuits — thermal noise, flicker noise, and noise figure analysis, Layout Techniques for analog design — matching strategies, common centroid layout, guard rings, and substrate isolation using Magic VLSI, ADC/DAC Basics — Flash ADC, SAR ADC, R-2R ladder DAC architectures and their VLSI implementation. Students complete Amplifier Design and Op-Amp Simulation projects in this module.
Verilog HDL fundamentals — module structure, data types, operators, procedural blocks (always, initial), continuous assignments, and simulation with testbenches, RTL Design — combinational circuits (MUX, decoder, encoder, adder, comparator) and sequential circuits (flip-flops, registers, counters, FSMs) in Verilog, FPGA Design workflow — synthesis, place and route, timing constraints, and implementation using FPGA Tools, ASIC Design Flow overview — RTL to GDSII flow, synthesis, floorplanning, placement, routing, and signoff, Simulation and verification — writing testbenches, functional simulation, waveform analysis, and basic assertions, Students implement ALU / FPGA Design project — a complete Arithmetic Logic Unit synthesized and verified on FPGA in this module.
Physical Design flow — floorplanning, power planning, placement, clock tree synthesis (CTS), routing, and design rule check (DRC) and layout versus schematic (LVS) verification, Static Timing Analysis (STA) — setup and hold timing, timing paths, slack, clock skew, and timing closure techniques, Low Power Design techniques — clock gating, power gating, multi-voltage design, and dynamic voltage and frequency scaling (DVFS) concepts, Introduction to Cadence tools (conceptual) — understanding Cadence Virtuoso for analog and Cadence Genus/Innovus for digital design flows, Final Capstone Project — students design, simulate, verify, and document a complete VLSI project of their choice — either analog (custom op-amp or amplifier circuit) or digital (RTL design synthesized to FPGA/ASIC flow), Capstone project documentation, GitHub portfolio setup, Resume Building, Mock Interviews targeting Analog Design Engineer, RTL Design Engineer, FPGA Engineer, Physical Design Engineer, and Verification Engineer roles.
Learn how AvyaktiTech’s VLSI Design program has helped students upskill and break into the semiconductor industry.
Choosing the right VLSI training institute in Bhubaneswar is one of the most important decisions you will make for your semiconductor engineering career. Avyakti Tech combines an industry-aligned curriculum covering both Analog + Digital VLSI, experienced semiconductor design trainers, Hands-on Lab Training with real EDA tools, and genuine Placement Assistance to give every student the best possible outcome. Here is what makes our best VLSI course in Bhubaneswar stand apart from every other option.
Whether you are a fresh ECE or EEE graduate trying to break into the semiconductor industry, a working electronics engineer wanting to transition into VLSI Design, or an engineering student who wants practical VLSI tools exposure beyond what college labs provide — this course is built for you. Avyakti Tech’s VLSI Design course in Bhubaneswar covers both Analog + Digital VLSI in a focused 3 Months Intensive Program, with weekly hands-on labs, real project deliverables, semiconductor tool training, and 100% Placement Assistance. We prepare you for real VLSI engineer roles — as Analog Design Engineers, RTL Design Engineers, FPGA Engineers, Physical Design Engineers, and Verification Engineers — in India’s fastest-growing semiconductor industry.
Learn how Avyakti Tech‘s VLSI Design program has helped students upskill and break into the semiconductor industry.
Avyakti Tech's VLSI Design course in Bhubaneswar is genuinely one of the best decisions I made after completing my B.Tech in ECE. The combination of Analog VLSI and Digital VLSI in a single 3 Months Program is rare — most courses only cover one track. The hands-on labs with LTspice for analog simulation and Verilog for RTL design gave me the practical confidence I was missing. My Capstone Project — a fully simulated Op-Amp design — became the talking point in every semiconductor interview I attended. Avyakti Tech's Placement Assistance and Mock Interviews specifically prepared me for the kind of technical questions analog design companies ask. I am now placed as an Analog Design Engineer and couldn't be more grateful.
I had studied Verilog HDL in college but never really understood how RTL Design connects to FPGA implementation and the ASIC Flow. Avyakti Tech's structured VLSI Design course took me through the complete Digital VLSI journey — from writing RTL code to running timing analysis and understanding Physical Design concepts. The weekly assignments kept me consistently practising, and the mentor's code reviews on my ALU / FPGA Design project were invaluable. The MASS support system meant I could get answers at any time of day, which was critical during intensive lab weeks. I am now working as an RTL Design Engineer thanks to Avyakti Tech.
What sets Avyakti Tech's VLSI course apart from other training institutes in Bhubaneswar is the tools exposure. I worked with LTspice, NGspice, Magic VLSI, and FPGA Tools during the labs — not just heard about them in lectures. That practical experience made a visible difference when I went for VLSI job interviews. The trainers are real VLSI engineers who understand what semiconductor companies actually look for in a fresher. The Resume Building sessions helped me tailor my CV specifically for VLSI Design roles, and the Mock Interviews covered real Verilog coding challenges and MOSFET theory questions. Highly recommended for any ECE student targeting the semiconductor industry.
I enrolled in Avyakti Tech's VLSI Design course after struggling to find placement through campus for semiconductor roles. The 3 Months Intensive Program was exactly what I needed — structured, rigorous, and completely practical. The Analog VLSI modules on MOSFET Modeling, Op-Amps, and Layout Techniques gave me depth I had never gotten from textbooks alone. The Digital VLSI modules on RTL Design and FPGA&ASIC Flow gave me the confidence to tackle technical interview rounds. Avyakti Tech's Job Referrals connected me directly with semiconductor hiring companies, and I received my first offer as a Verification Engineer within six weeks of completing the course."
AvyaktiTech is a technology-focused training and upskilling organization committed to building industry-ready talent in IT and Electronics. We deliver practical, project-driven VLSI Design training aligned with semiconductor industry requirements. Our VLSI course in Bhubaneswar is a 3 Months Intensive Program covering both Analog VLSI and Digital VLSI — open to ECE/EEE/EE graduates, working engineers, and career changers who want to become job-readyAnalog Design Engineers, RTL Design Engineers, FPGA Engineers, Physical Design Engineers, or Verification Engineers.
The course is ideal for students and professionals from ECE, EEE, EE, Physics, and Instrumentation backgrounds. A basic understanding of electronic circuits — Ohm's law, transistor operation, basic logic gates — is helpful but not mandatory. Our curriculum starts from semiconductor fundamentals and MOSFET basics, making the program accessible to motivated beginners while being rigorous enough for students with prior electronics background who want structured VLSI specialization.
Our instructors are active VLSI engineers, analog circuit designers, RTL developers, and physical design specialists with real semiconductor industry experience. They teach every module through hands-on lab sessions using LTspice, NGspice, Magic VLSI, Verilog, and FPGA Tools, live circuit design and RTL coding demonstrations, and structured project reviews. They also prepare students specifically for VLSI technical interviews — covering MOSFET theory, Op-Amp design questions, Verilog coding challenges, RTL design problems, timing analysis, and physical design concepts.
Avyakti Tech's VLSI faculty includes analog design engineers, RTL designers, FPGA developers, physical design engineers, and verification specialists who have worked on production semiconductor projects. They bring current tools expertise (LTspice, NGspice, Verilog, FPGA Tools, Magic VLSI, Cadence conceptual understanding), real design experience, and up-to-date hiring insights into every session — ensuring you learn exactly what semiconductor companies expect from VLSI Design Engineer candidates right now.
Each student is assigned a dedicated VLSI mentor who provides personalized technical support throughout the 3 Months Intensive Program. Your mentor guides you through LTspice and NGspice simulation challenges, RTL code reviews, FPGA implementation issues, Physical Design concepts, and Capstone Project design decisions. They also prepare you for Placement Assistance — from Resume Building tailored to Analog Design, RTL Design, FPGA, and Physical Design roles to Mock Interviews with real semiconductor interview questions — staying with you through the placement process to your first offer letter.
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