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Empower Electronic Skills!

We help you ignite your passion for innovation

Explore the World of
Circuits and Components

You will benefit from studying electronics, whether you want a career in electronics or just to gain a deeper understanding of this fascinating field.

Personal Tasks:

Creating IoT gadgets, automating systems, and making custom electronics.

Collaboration

Group projects in electronics classes teach teamwork, which is useful in the workplace.

Networking

Build a career network with classmates, professors, and industry professionals.

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We found 71 courses available for you
Course Meta
5 Weeks
₹7500
Embedded Systems Development:
(5.0 /7 Rating)

Gain experience in embedded systems programming, real-time operating systems (RTOS), and IoT integration.

  • 14 Lessons
  • 20 Students
Engineering
Embedded Systems Development:
(5)
  • 14 Lessons
  • 20 hrs
  • All Levels
What You’ll Learn?
  • Program microcontrollers for robots and Internet of Things devices, and integrate them into electronic systems.
  • Discover the RTOS fundamentals and hone your real-time system design and implementation skills.
  • Learn how to create smart, linked devices by integrating embedded systems with the Internet of Things (IoT).
Course Meta
4 Weeks
₹5500
Power System Electronics
(5.0 /7 Rating)

Find out more about power electronics, converters, and the components of power systems.

  • 12 Lessons
  • 32 Students
Engineering
Power System Electronics
(5)
  • 12 Lessons
  • 20 hrs
  • All Levels
What You’ll Learn?
  • Learn how inverters, rectifiers, and converters are utilized in power systems and how they are power electronic components.
  • Learn about electric motors, motor drives, motor control methods, and applications.
  • Research the use of power electronics in renewable energy systems, such as wind and solar energy production.
Course Meta
5 Weeks
₹7200
Quantum Electronics
(5.0 /7 Rating)

Discover the secrets of quantum electronics, quantum computing, and quantum information processing.

  • 14 Lessons
  • 25 Students
Engineering
Quantum Electronics
(5)
  • 14 Lessons
  • 20 hrs
  • All Levels
What You’ll Learn?
  • Lay the groundwork for understanding quantum electronic devices by delving into the fundamentals of quantum physics and quantum states.
  • Understand the principles underlying quantum algorithms, quantum gates, and quantum computers.
  • Discover the use of quantum optics in quantum communication and information processing.
Course Meta
4 Weeks
₹6500
Analog Integrated Circuit Design
(5.0 /7 Rating)

Build op-amps and voltage references, as well as design and simulate analog integrated circuits.

  • 12 Lessons
  • 26 Students
Engineering
Analog Integrated Circuit Design
(5)
  • 12 Lessons
  • 20 hrs
  • All Levels
What You’ll Learn?
  • Learn the specifications, simulations, layout, and fabrication steps of the integrated circuit (IC) design process.
  • Master the design of operational amplifiers (op-amps), among other analog amplifiers, to achieve desired performance criteria.
  • Learn to create precise voltage references necessary for accurate and reliable analog circuits.
Course Meta
5 Weeks
₹7500
Advanced Robotics and Control Systems
(5.0 /7 Rating)

Focus on controlling systems, robotic vision, and advanced robotic principles.

  • 14 Lessons
  • 22 Students
Engineering
Advanced Robotics and Control Systems
(5)
  • 14 Lessons
  • 20 hrs
  • All Levels
What You’ll Learn?
  • Examine cutting-edge control techniques for robotic systems, such as adaptive control, neural networks, and fuzzy logic.
  • Discover how image processing, computer vision, and robotic vision systems are used.
  • Examine the practical uses of cutting-edge robotics in manufacturing, medicine, and autonomous cars.
Course Meta
4 Weeks
₹6000
Electronic Materials Science
(5.0 /7 Rating)

Get an in-depth understanding of electronic and semiconductor materials, Mechatronics, and Technological Science.

  • 12 Lessons
  • 25 Students
Engineering
Electronic Materials Science
(5)
  • 12 Lessons
  • 20 hrs
  • All Levels
What You’ll Learn?
  • Learn about the characteristics of semiconductors, conductors, insulators, and other electronic materials.
  • Explore band theory, semiconductor device behavior, and semiconductor physics.
  • Learn about methods for spectroscopy and microscopy to characterize electronic materials.
Course Meta
5 Weeks
₹7200
Nanoelectronics and Nanotechnology
(5.0 /7 Rating)

Discover nanoscale electronic devices, nanofabrication techniques, and nanotechnology applications.

  • 14 Lessons
  • 22 Students
Engineering
Nanoelectronics and Nanotechnology:
(5)
  • 14 Lessons
  • 20 hrs
  • All Levels
What You’ll Learn?
  • Examine the materials, nanofabrication methods, and nanoelectronics applications of the nanoscale.
  • Learn about quantum dots and how they are used in nanoelectronic devices like screens and solar cells.
  • Learn about nanoscale electronics, such as quantum point contacts, nanowires, and nanotransistors.
Course Meta
4 Weeks
₹6000
Automotive Electronics and Control
(5.0 /7 Rating)

Get an understanding of auto electronic systems, sensors, and control algorithms.

  • 12 Lessons
  • 26 Students
Engineering
Automotive Electronics and Control
(5)
  • 12 Lessons
  • 20 hrs
  • All Levels
What You’ll Learn?
  • Recognize the advanced driver assistance systems (ADAS) and engine control units (ECUs) utilized in contemporary vehicles.
  • Discover the Controller Area Network (CAN) bus's function in controlling and communicating with vehicles.
  • Learn about electronic components in hybrid and electric cars, such as battery management and regenerative braking.
Course Meta
5 Weeks
₹7500
Biomedical Electronics and Devices
(5.0 /7 Rating)

Learn about bioelectronic systems for healthcare applications and electronics used in healthcare.

  • 14 Lessons
  • 28 Students
Engineering
Biomedical Electronics and Devices
(5)
  • 14 Lessons
  • 20 hrs
  • All Levels
What You’ll Learn?
  • Develop your skills in building electronic medical devices such as patient monitoring and diagnostic tools.
  • Find out how to use biosensors to identify biological signals and analytes for medical purposes.
  • Research the electronic components used in X-ray, MRI, and ultrasound systems for medical imaging.