Residential Grid-Tied Solar Design

About this course
Perfect for new professionals entering the solar industry, experienced electricians expanding their service offerings, or anyone interested in learning the fundamentals of PV design, this course bridges the gap between theoretical knowledge and real-world application. You'll learn about properly sizing systems based on energy consumption, designing roof layouts following safety requirements, calculating appropriate wire and conduit sizes, and implementing NEC-compliant rapid shutdown and interconnection methods.
What sets this course apart is the hands-on approach using OpenSolar, free solar design software that allows you to apply concepts immediately. You'll work through practical examples that demonstrate how to address common challenges like shading considerations, voltage drop calculations, and various interconnection scenarios. By the end of the course, you'll have developed important skills that contribute to designing grid-tied systems that maximize energy production while meeting necessary code requirements.
Join your instructor, Baker Makarem, and start building your practical PV design knowledge!
Learning Objectives
- Understand the terminology and basic concepts of solar design
- Design roof layout following NFPA 1, the NEC, and rapid shutdown requirements
- Properly size PV systems
- Understand design considerations using the NEC; including, wire size, conduit size, voltage drop, overcurrent protection device, and interconnection methods
- Learn how to design using OpenSolar
- Design a PV grid-tied system
- Bonus: Identify different scenarios for interconnection methods as per NEC 705
- Bonus: Identify considerations for ground mount and voltage drop/rise
- Bonus: Identify considerations for ground mount and shading
Course outline
Welcome • 3 assignments
Orientation Materials
Module 1 • 5 assignments
The Basics of Residential Grid-Tied Solar
Now, what kind of concepts?
Embrace yourselves for a journey in: azimuth, inclination, irradiance, sun hours, STC, temperature coefficients, and more...
Module 2 • 3 assignments
Considerations for Rooftop Solar
Module 3 • 10 assignments
PV System Sizing
Module 4 • 9 assignments
Applying the NEC
Module 5 • 3 assignments
Bonus: Videos and Lessons
Conclusion • 3 assignments
Feedback and Additional Resources
Continuing Education Units
Instructor
I’m Baker Makarem — a Mechanical Engineer and NABCEP-certified ESIP, PVIP, and PVSI professional. I'm the founder of Bakertech, a company specialized in the photovoltaic (PV) and energy storage systems (ESS) industry. Since diving into the renewable energy field in 2017. I haven’t looked back. I’m passionate about helping others grow in this incredible industry. I’ve...