VLSI (Very Large Scale Integration) Design and Development

Welcome to the VLSI Design and Development course! This comprehensive course is designed to equip you with the knowledge and skills needed to excel in the field of Very Large Scale Integration (VLSI) design and development. VLSI is a crucial aspect of modern electronics, enabling the creation of complex integrated circuits that power a wide range of devices, from smartphones to supercomputers.

What You Will Learn:

  • Introduction to VLSI Design: Understand the fundamentals of VLSI design, including its history, significance, and applications in various industries.
  • VLSI Design Flow: Learn about the complete VLSI design flow, from specification and architecture design to verification and testing. Explore the different stages involved in creating a VLSI chip, including RTL design, synthesis, place and route, and physical design.
  • Digital Logic Design: Gain a solid foundation in digital logic design principles. Learn about combinational and sequential circuits, logic gates, flip-flops, and state machines. Understand how to design and analyze digital circuits using hardware description languages (HDLs) like VHDL and Verilog.
  • Circuit Design Techniques: Explore various circuit design techniques used in VLSI design. Learn about CMOS technology, transistor-level design, and the principles of low-power design. Understand how to optimize circuit performance, power consumption, and area.
  • VLSI Design Tools: Familiarize yourself with industry-standard VLSI design tools and software. Learn how to use tools for simulation, synthesis, place and route, and verification. Gain hands-on experience with popular VLSI design tools like Cadence, Synopsys, and Mentor Graphics.
  • Verification and Testing: Understand the importance of verification and testing in VLSI design. Learn about verification methodologies, including functional verification, formal verification, and testbench creation.
  • Advanced Topics: Explore advanced topics in VLSI design, such as analog and mixed-signal design, system-on-chip (SoC) design, and emerging trends in VLSI technology. Understand the challenges and opportunities in the field of VLSI design and how to stay updated with the latest advancements.

Why Choose This Course:

  • Comprehensive Curriculum: This course covers all essential aspects of VLSI design and development, providing you with a solid foundation in both theoretical concepts and practical skills. Whether you are a beginner or have some experience in VLSI design, this course will help you enhance your knowledge and expertise.
  • Hands-On Experience: Gain practical experience through hands-on projects and exercises. Work on real-world VLSI design challenges and apply your knowledge to create functional VLSI circuits. This hands-on approach will reinforce your understanding of VLSI design principles and prepare you for real-world applications.
  • Expert Instructors: Learn from industry experts and experienced instructors who have a deep understanding of VLSI design and development. Benefit from their insights, tips, and best practices to excel in your VLSI design journey. Our instructors are passionate about teaching and are dedicated to helping you succeed in this course.
  • Flexible Learning: Access course materials online at your own pace. Whether you prefer to study in the morning, afternoon, or evening, this course allows you to learn at your convenience. You can revisit the course content anytime, ensuring that you can grasp the concepts thoroughly and reinforce your learning.
  • Supportive Community: Benefit from a supportive learning environment with access to the course forum, where you can ask questions, share insights, and collaborate with fellow learners.
Ideal For:
  • Students and professionals interested in pursuing a career in VLSI design and development.
  • Engineers looking to enhance their skills in digital logic design, circuit design, and VLSI design tools.
  • Anyone passionate about electronics and eager to learn about the fascinating world of VLSI design and its applications.
Enroll Today:
  • Don't miss out on this opportunity to master VLSI design and development. Enroll now and take the first step towards a rewarding career in the field of electronics and integrated circuits.

Join us in this exciting journey of VLSI design and development. Whether you are a beginner or an experienced professional, this course will provide you with the knowledge and skills needed to excel in the field. Get ready to explore the world of VLSI design, unleash your creativity, and make your mark in the electronics industry!

Curriculum

Overview of VLSI technology and its importance30:25🔒
VLSI design flow25:40🔒
Basic fabrication process20:15🔒
Design hierarchy and abstraction levels15:30🔒

Combinational logic circuits35:15🔒
Sequential logic circuits28:40🔒
Logic gates, multiplexers, decoders, and flip-flops18:20🔒
Finite State Machines (FSMs)32:10🔒

MOSFET basics26:45🔒
CMOS fabrication process38:20🔒
CMOS inverter22:15🔒
Static and dynamic behavior of CMOS circuits29:30🔒

Layout design rules31:50🔒
Stick diagrams27:35🔒
Layout of basic logic gates19:40🔒
Design for testability24:15🔒

Full-custom design34:50🔒
Semi-custom design21:30🔒
FPGA-based design26:15🔒
Standard cell-based design31:40🔒

Floorplanning36:40🔒
Clock tree synthesis28:15🔒
Placement22:30🔒
Routing19:45🔒
Design rule checking (DRC)28:15🔒

Basics of analog circuits32:20🔒
Operational amplifiers29:15🔒
Analog-to-digital and digital-to-analog converters24:40🔒
Noise and interference in analog circuits35:25🔒

Fault models30:10🔒
Test generation33:45🔒
Design for testability (DFT)38:20🔒
Built-in self-test (BIST)26:30🔒
Verification techniques26:30🔒

Introduction to EDA tools35:15🔒
Schematic capture and simulation42:10🔒
Layout design tools31:25🔒
Timing analysis tools28:40🔒

Overview of VLSI Technology28:45🔒
Evolution of VLSI22:30🔒
Applications of VLSI18:15🔒
Introduction to Semiconductor Devices15:20🔒
Basics of semiconductor physics15:20🔒
Diodes, transistors (BJT, MOSFET)15:20🔒

Binary numbers, Boolean algebra32:10🔒
Logic gates and truth tables24:35🔒
Multiplexers, decoders, encoders, adders36:50🔒
Flip-flops, registers, counters29:25🔒
Finite State Machines (FSMs) ○ Design and analysis of FSMs29:25🔒

Introduction to CMOS ○ CMOS logic, characteristics, and scaling38:15🔒
CMOS Inverter ○ Static and dynamic behavior26:40🔒
Basic CMOS Circuits ○ NAND, NOR, XOR gates33:20🔒

Overview of Fabrication Steps ○ Wafer preparation, photolithography, etching, doping34:25🔒
Layout Design Rules ○ Design rules and design rule checking (DRC)31:10🔒

Combinational and Sequential CMOS Logic Circuits42:15🔒
Design of Arithmetic Circuits ○ Adders, multipliers35:40🔒
Power and Delay Analysis ○ Power dissipation, timing analysis, and optimization29:20🔒

Full-Custom vs. Semi-Custom Design39:10🔒
Standard Cell Design ○ Libraries, layout, and characterization32:25🔒
ASIC Design Flow ○ Specification, RTL design, synthesis, place and route44:15🔒

Introduction to Hardware Description Languages (HDLs) ○ VHDL/Verilog syntax and semantics28:45🔒
RTL Design and Simulation ○ Writing testbenches, simulation tools35:20🔒
Synthesis and Verification ○ Synthesis tools, static timing analysis, formal verification31:15🔒

Introduction to FPGAs ○ Architecture and applications24:30🔒
FPGA Design Flow ○ Design entry, synthesis, implementation, and testing41:20🔒
FPGA Development Boards and Tools ○ Hands-on labs with FPGA boards33:45🔒

Analog Circuit Design ○ Operational amplifiers, comparators, data converters (ADC/DAC)43:25🔒
Mixed-Signal Design ○ PLLs, VCOs, and signal integrity issues48:15🔒

Testing Techniques ○ Fault models, fault simulation, test pattern generation38:30🔒
Design for Testability (DFT) ○ Scan chains, Built-In Self-Test (BIST)42:15🔒
Verification Methodologies ○ Functional verification, UVM51:20🔒

Low Power Design Techniques ○ Techniques for power reduction at the architectural and circuit level46:20🔒
High-Speed VLSI Design ○ Design considerations for high-frequency circuits52:35🔒
3D ICs and Advanced Packaging ○ 3D stacking, Through-Silicon Vias (TSVs)39:15🔒

Design for Manufacturability (DFM)48:30🔒
Yield and Reliability Analysis55:20🔒
Industry Standards and Tools ○ EDA tools, standard design flows43:15🔒
Price
From

₹3500

Courses Title
VLSI
Lessons
16 Videos
Language
English
Course Level
Beginner
Reviews
4.7(5.5k)
Quizzes
08
Duration
7 Weeks
Students
2.5k
Certifications
Yes
Pass Percentage
88%
Deadline
01 Jun, 2024
Instructor
Denial Lie
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FAQs

The duration is of 2 months for recorded & 3 months for live.

Yes at the end of the course completion you will get certificates.

ABCPanda team will arrange a doubt clearance session accordingly.

Yes for recorded sessions access duration 1 year. Live session access duration 2 years.

No our mentors will teach from basic. If you have experience, it would add an advantage.