Skip to main content

Mastering Static Timing Analysis (STA) for VLSI Design

$299.00
When you get access:
Course access is prepared after purchase and delivered via email
How you learn:
Self-paced • Lifetime updates
Your guarantee:
30-day money-back guarantee — no questions asked
Who trusts this:
Trusted by professionals in 160+ countries
Toolkit Included:
Includes a practical, ready-to-use toolkit with implementation templates, worksheets, checklists, and decision-support materials so you can apply what you learn immediately - no additional setup required.
Adding to cart… The item has been added

Mastering Static Timing Analysis (STA) for VLSI Design

Mastering Static Timing Analysis (STA) for VLSI Design

This comprehensive course is designed to help participants master the concepts of Static Timing Analysis (STA) for VLSI design. Upon completion of the course, participants will receive a certificate issued by The Art of Service.



Course Features

  • Interactive: Engage with our expert instructors and fellow participants through interactive discussions and activities.
  • Engaging: Learn through a combination of lectures, quizzes, and hands-on projects that keep you engaged and motivated.
  • Comprehensive: Cover all aspects of STA for VLSI design, from basic concepts to advanced techniques.
  • Personalized: Get personalized feedback and guidance from our expert instructors.
  • Up-to-date: Stay up-to-date with the latest developments and advancements in STA for VLSI design.
  • Practical: Apply theoretical concepts to real-world problems and projects.
  • Real-world applications: Learn how to apply STA concepts to real-world VLSI design projects.
  • High-quality content: Access high-quality course materials, including video lectures, notes, and quizzes.
  • Expert instructors: Learn from experienced instructors who are experts in STA for VLSI design.
  • Certification: Receive a certificate upon completion of the course, issued by The Art of Service.
  • Flexible learning: Learn at your own pace, anytime and anywhere.
  • User-friendly: Access course materials through our user-friendly online platform.
  • Mobile-accessible: Access course materials on your mobile device or tablet.
  • Community-driven: Join a community of learners and professionals who are passionate about STA for VLSI design.
  • Actionable insights: Gain actionable insights and practical skills that you can apply to your work or projects.
  • Hands-on projects: Work on hands-on projects that help you apply theoretical concepts to real-world problems.
  • Bite-sized lessons: Learn through bite-sized lessons that are easy to digest and understand.
  • Lifetime access: Get lifetime access to course materials, including updates and new content.
  • Gamification: Engage with our gamification features, including points, badges, and leaderboards.
  • Progress tracking: Track your progress and stay motivated through our progress tracking features.


Chapter 1: Introduction to Static Timing Analysis (STA)

  • What is Static Timing Analysis (STA)?
  • Importance of STA in VLSI design
  • Overview of the STA process
  • STA vs. Dynamic Timing Analysis (DTA)


Chapter 2: Basic Concepts of STA

  • Timing paths and timing graphs
  • Timing constraints and timing exceptions
  • Setup and hold time
  • Clock skew and clock jitter


Chapter 3: STA Algorithms and Techniques

  • Graph-based STA algorithms
  • Path-based STA algorithms
  • Hybrid STA algorithms
  • STA techniques for clock domain crossing (CDC)


Chapter 4: STA for Sequential Circuits

  • STA for flip-flops and latches
  • STA for counters and registers
  • STA for finite state machines (FSMs)
  • STA for sequential circuits with feedback


Chapter 5: STA for Combinational Circuits

  • STA for logic gates and networks
  • STA for arithmetic circuits
  • STA for combinational circuits with feedback
  • STA for combinational circuits with timing exceptions


Chapter 6: STA for Clock Domain Crossing (CDC)

  • STA techniques for CDC
  • CDC analysis and optimization
  • STA for CDC with feedback
  • STA for CDC with timing exceptions


Chapter 7: STA for Low Power Design

  • STA techniques for low power design
  • Power-aware STA algorithms
  • STA for low power sequential circuits
  • STA for low power combinational circuits


Chapter 8: STA for High-Speed Design

  • STA techniques for high-speed design
  • High-speed STA algorithms
  • STA for high-speed sequential circuits
  • STA for high-speed combinational circuits


Chapter 9: STA for Analog and Mixed-Signal Design

  • STA techniques for analog and mixed-signal design
  • Analog and mixed-signal STA algorithms
  • STA for analog and mixed-signal sequential circuits
  • STA for analog and mixed-signal combinational circuits


Chapter 10: Advanced STA Techniques

  • Machine learning-based STA techniques
  • STA techniques for 3D ICs and stacked dies
  • STA techniques for emerging technologies (e.g. quantum computing, neuromorphic computing)
  • STA techniques for secure and trustworthy design


Chapter 11: STA Tools and Methodologies

  • Overview of commercial STA tools
  • Methodologies for STA tool usage
  • STA tool integration with other design automation tools
  • Best practices for STA tool usage


Chapter 12: Case Studies and Real-World Examples

  • Case studies of STA in real-world designs
  • Real-world examples of STA challenges and solutions
  • ,