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PCB Designing Program

Discover an exceptional PCB designing program built to equip aspiring electronics professionals with complete expertise in transforming circuit ideas into manufacturable boards. This hands-on experience covers every stage from concept to production, blending essential theory with real software practice and fabrication knowledge. It prepares participants for successful roles in electronic product development through detailed skill-building in modern design workflows.
★★★★★
4.9
(420 reviews)

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₹2,900
Months Training
0
Core Modules
0
Live Projects
0 +
Job Placement
0 %
Learning Outcomes

What You Will Learn

Full Syllabus

Course Curriculum

12 modules · 260+ hours · 5 live projects
  • Overview of printed circuit board concepts and importance in electronic product design
  • Types of PCBs and their applications
  • Basic design flow and industry standards
  • Understanding design challenges and best practices
  • Introduction to schematic and layout integration
  • Schematic capture fundamentals and symbol creation
  • Component selection and connection principles
  • Hierarchical design methods
  • Netlist generation and verification
  • Error checking in schematic stage
  • Interface navigation in tools like KiCad, Eagle, and Altium Designer
  • Layer management and configuration
  • Grid settings and design environment customization
  • Basic drawing and editing tools
  • Importing schematics into layout environment
  • Creating accurate component footprints
  • Library management and organization
  • Footprint verification and 3D models
  • Standard component package types
  • Custom part creation techniques
  • Board outline definition and mechanical constraints
  • Component placement strategies
  • Basic routing for single and double layer boards
  • Ground plane implementation
  • Design optimization for manufacturability
  • Manual and auto-routing methods
  • Trace width calculations and current handling
  • High-speed design considerations and signal integrity basics
  • Differential pair routing
  • Via placement and thermal management
Tech Stack

Tools & Technologies

STM32
🐧
Linux
🔧
GCC ARM
🕐
Free RTOS
📡
ESP32
🔌
KiCad
🗂️
Git
🔍
GDB
📊
CMake
🏗️
Yocto
Hands-On Learning

Live Projects You'll Build

Project 01 · Schematic & Layout

Basic Power Supply Board

Design and develop a complete regulated power supply PCB including schematic creation, component placement, routing, and Gerber file preparation for reliable voltage output.
Project 02 · Double Layer Design

Microcontroller Development Board

Create a functional double-layer board with microcontroller, crystal, power sections, and peripheral connectors, focusing on proper layout techniques and signal integrity.
Project 03 · Advanced Routing

Sensor Interface Module

Build a multi-sensor interface PCB with optimized routing for analog and digital signals, incorporating ground planes and protection circuits.
Project 04 · Full Integration

IoT Node Prototype Board

Develop a complete IoT-enabled PCB featuring wireless module integration, power management, and multiple interfaces, ready for fabrication and testing.
Eligibility

Who Should Enroll?

Electronics Engineering Students

This program perfectly suits those studying electrical or electronics fields who want to gain specialized skills in circuit board design and development for better career readiness.

Diploma Holders & Freshers

Ideal for diploma graduates and beginners seeking structured guidance to enter the field of electronics hardware design through practical, project-based learning.

Working Professionals

Suitable for engineers already in the industry looking to upgrade their abilities in modern PCB workflows and advanced design methodologies.

Electronics Enthusiasts

Open to anyone passionate about creating physical electronic products, offering clear progression from basic concepts to professional-grade board development.

Your Trainer

Meet Your Instructor

Sajadh K M

Embedded Systems & Robotics Trainer | Co-Founder, MicroSkill Lab
With over 16 years in embedded systems, robotics, and industrial automation, Sajadh has worked across IoT platforms, marine electronics, and aviation ground support systems at King Abdulaziz International Airport. As Co-Founder of MicroSkill Lab, he brings real industry experience in microcontrollers, embedded Linux, PCB design, PLC automation, and humanoid robotics to every session. His project-based teaching method consistently produces confident, industry-ready embedded engineers.
16+

Years Industry Exp.

800+

Students Trained

4.9★

Avg. Rating

FAQ

Frequently Asked Questions

The program provides extensive coverage of all essential aspects including introduction to printed circuit board concepts, electronic schematic creation, various PCB design software tools such as KiCad training, Eagle PCB training, and Altium Designer training. Participants deeply explore component footprints and libraries, single and double layer board creation, advanced PCB routing techniques, design rule checking, Gerber file generation, and the complete PCB manufacturing process. Additional focus areas include multilayer PCB design principles, signal integrity basics, component placement strategies, and practical considerations for electronics hardware design. Through detailed explanations and hands-on practice, learners develop strong capabilities in turning circuit ideas into production-ready boards while understanding real-world constraints like fabrication tolerances and assembly processes. This balanced approach ensures participants gain both theoretical knowledge and the practical confidence needed for professional electronic product design.
Practical work forms the foundation of every module with extensive time spent on actual design projects using industry-standard software. Learners engage in creating schematics, building custom libraries, performing detailed routing, running design rule checks, and generating manufacturing files. Each concept is immediately applied through guided exercises and progressively complex projects that simulate real product development scenarios. This method helps build proficiency in PCB layout design, troubleshooting common issues, and optimizing designs for manufacturing. Participants also receive guidance on PCB prototyping and fabrication processes, ensuring they understand how their digital designs translate into physical boards. The emphasis on real projects allows learners to create portfolio pieces that demonstrate complete competency in professional PCB design workflows.
Yes, the structure starts with fundamental concepts of PCB design and gradually advances to more complex topics. No prior experience in board design is assumed, as initial modules carefully explain basic principles, software interfaces, and design flows. Instructors provide step-by-step support during schematic creation, footprint development, and initial routing exercises. This gentle progression makes the material accessible while still delivering professional-level outcomes by the end. Practical sessions reinforce learning through immediate application, helping beginners quickly gain confidence in handling tools and producing functional designs. The curriculum also addresses common challenges faced by newcomers, making it one of the most supportive options available for those entering this specialized field.
The program offers thorough exposure to leading industry tools including KiCad for open-source design, Eagle for efficient workflows, Altium Designer for advanced features, and elements of Orcad PCB design. Learners become comfortable with schematic capture, library management, layout editing, routing capabilities, and output generation in each environment. Comparative discussions help understand when to choose specific software based on project requirements. This multi-tool approach ensures flexibility and prepares participants for diverse work environments while building deep skills in PCB design software usage. Hands-on assignments in each tool reinforce learning and allow direct comparison of features and limitations.
Graduates gain highly marketable abilities in PCB layout design, schematic work, and full product development cycles. These competencies open opportunities in electronic product companies, hardware design firms, and manufacturing sectors. The combination of software proficiency, practical project experience, and manufacturing knowledge creates a strong professional profile ready for roles involving circuit board development and optimization. Many participants find enhanced career prospects through demonstrated ability to deliver production-ready designs efficiently.

What's Included

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