Interactive Learning Courses | Syllabus, Skills & Practice | 38 tags
K12 Students

Academics

AI-Powered learning for Grades 8–12, aligned with major Indian and international curricula.

Professionals

Professional Courses

Industry-relevant training in Business, Technology, and Design to help professionals and graduates upskill for real-world careers.

Games

Interactive Games

Fun, engaging games to boost memory, math fluency, typing speed, and English skillsβ€”perfect for learners of all ages.

Courses

FPGA Programing

FPGA Programing

This course offers a comprehensive understanding of Field-Programmable Gate Arrays (FPGAs), focusing on FPGA architecture, programming languages (VHDL and Verilog), and their applications in digital systems. Students will gain hands-on experience and theoretical knowledge to design and implement real-world FPGA-based projects in digital prototyping.

Author
Pavan
FPGA Programing
+8 more
View Course
Design for Testability

Design for Testability

This course focuses on designing electronic circuits with testability in mind. Students will explore strategies for enhancing testing efficiency during manufacturing and operation. Topics include built-in self-test (BIST), scan chains, fault modeling, and testability considerations. Through theory, hands-on projects, and industry tools, students will develop skills to create robust, testable electronic systems

Author
Pavan
Design Testability
+7 more
View Course
AI circuits

AI circuits

This course explores the intersection of artificial intelligence (AI) and integrated circuit design, focusing on principles, techniques, and challenges in creating circuits for AI applications. Topics include neuromorphic computing, hardware accelerators, parallel processing architectures, and AI circuit implementation. Students will gain skills through theory, hands-on projects, and exposure to cutting-edge developments in AI circuit design.

Author
Pavan
AI circuits Electrical
+6 more
View Course
MEMS

MEMS

This course explores Microelectromechanical Systems (MEMS), a multidisciplinary field combining electrical, mechanical engineering, and material science. Students will study MEMS principles, design methodologies, fabrication techniques, sensing/actuation mechanisms, and modeling. Through theory, hands-on projects, and real-world applications, students will gain skills for developing MEMS devices

Author
Pavan
MEMS Electrical
+6 more
View Course
Low Power Circuit Designs

Low Power Circuit Designs

This course explores low-power circuit design, focusing on the integration of CMOS and FinFET technologies. Students will study principles, techniques, and challenges in designing energy-efficient circuits. Topics include low-power strategies, optimization, and practical considerations. Students will gain skills in designing circuits with minimal power consumption through theory, simulations, and hands-on projects

Author
Pavan
Low Power
+9 more
View Course
Mixed Signal Circuits

Mixed Signal Circuits

This course provides a comprehensive exploration of mixed signal circuits, focusing on integrating analog and digital components within a single system. Topics include ADC, DAC, signal processing, noise analysis, and the coexistence of analog and digital elements. Students will gain practical skills through simulations and hands-on projects.

Author
Pavan
Mixed Signal
+8 more
View Course
Embedded Linux

Embedded Linux

This course teaches embedded Linux system development, focusing on configuring the Linux kernel and writing custom peripheral drivers. Students gain hands-on experience with Linux architecture, building embedded systems, and debugging and profiling applications. Ideal for aspiring embedded engineers, it addresses growing industry demand across consumer, automotive, and industrial applications.

Author
Pavan
Embedded Linux
+8 more
View Course
System on Chip

System on Chip

System on Chip This course focuses on designing low-cost, efficient SoCs for IoT using Arm Cortex-M0 processors. Students explore the complete SoC development cycleβ€”specification, design, implementation, and testingβ€”on FPGAs. Emphasis is placed on meeting performance, power, and area constraints using standard hardware description and software programming languages for real-world prototyping.

Author
Pavan
System on
+9 more
View Course
CAD for VLSI

CAD for VLSI

This course explores CAD algorithms for VLSI circuit design, focusing on automation, optimization, and verification. Students learn logic synthesis, physical design, and verification techniques, gaining hands-on experience with industry tools. Emphasis is on algorithmic efficiency and solving complex design challenges using advanced CAD tools.

Author
Pavan
CAD VLSI
+7 more
View Course
SOC Design 1: Design & Verification

SOC Design 1: Design & Verification

This course explores Electronics System Design, focusing on VHDL, Verilog, and FPGA technologies. Students will gain knowledge of hardware description languages, digital system design principles, and FPGA implementation. The course includes hands-on lab work, simulations, and projects to provide practical experience in system design.

Author
Pavan
Electrical Engineering
+8 more
View Course
CMOS Integrated Circuits

CMOS Integrated Circuits

This course focuses on designing CMOS integrated circuits, covering both analog and digital domains. Topics include CMOS device characteristics, analog circuit design, digital logic, operational amplifiers, and ADCs. Students gain practical experience through lab work, simulations, and projects.

Author
Pavan
electrical Engineering
+7 more
View Course
Electronic Devices 1

Electronic Devices 1

Electronic Devices 1 To introduce the fundamental principles of electronic devices, emphasizing semiconductor physics and the operation of key components like PN junctions, JFETs, MOSFETs, and BJTs. Students will explore the behavior, characteristics, and practical applications of these devices, gaining the knowledge required for their effective design, analysis, and implementation in electronic circuits and systems.

Author
Pavan
Electrical Engineering
+6 more
View Course
Control Systems

Control Systems

Control System in engineering, focusing on concepts like feedback, open-loop and closed-loop systems, system modeling, transfer functions, and analysis in time and frequency domains. The course includes stability techniques, PID controller design, and explores linear, non-linear, analog, and digital systems through simulations, practical applications, and hands-on exercises.

Author
Pavan
Electrical Engineering
+6 more
View Course
Numerical Techniques

Numerical Techniques

A Numerical Techniques course for Electrical Engineering students focuses on solving mathematical problems using numerical methods. Key topics include error analysis, interpolation, numerical integration, solving systems of linear equations, algebraic equations, and ordinary differential equations, providing essential tools for engineering problem-solving and analysis.

Author
Pavan
Electrical Engineering
+7 more
View Course