Design of distribution transformers

This course author and presenter – Mario Salano – is experienced in technical design of electrical machines and power electronics, as well as in project management in the same areas. As the majority of other courses at the Transformers Academy, this one too is going to be conducted via three levels: basic, intermediate and master’s.

Its target audience are mostly professionals in the areas of transformer distribution, electrical utilities, students of secondary technical schools, university students looking for specialisations, electrical machines graduates, inspector and supervisors in testing.

To see the entire syllabus, check the course brochure. Then you can choose the level which suits your needs best.

Check out the course brochure
Design of distribution transformers
All Levels

Intermediate level

Design of Distribution Transformers – e-lesson #5 – Construction elements

This lesson covers the fundamental principles of transformer design, focusing on the electromagnetic aspects. The presenter, Mario Solano, explains that transformer design involves balancing various requirements and constraints, including power, voltage, losses, temperature, insulation, and short-circuit performance. The key principle is Faraday's law of electromagnetic induction, which states that the induced voltage is proportional to […]

Design of distribution transformers - e-lesson #11 - illustration 850 x 400

Intermediate level

Design of distribution transformers – e-lesson #11: Practical transformer design calculation (elective)

This lesson covers the fundamental principles of transformer design, focusing on the electromagnetic aspects. The presenter, Mario Solano, explains that transformer design involves balancing various requirements and constraints, including power, voltage, losses, temperature, insulation, and short-circuit performance. The key principle is Faraday's law of electromagnetic induction, which states that the induced voltage is proportional to […]

Design of distribution transformers – e-lesson #12 Advanced materials for transformers (elective) - 850 x 400

Intermediate level

Design of distribution transformers – e-lesson #12: Advanced materials for transformers (elective)

This lesson covers the fundamental principles of transformer design, focusing on the electromagnetic aspects. The presenter, Mario Solano, explains that transformer design involves balancing various requirements and constraints, including power, voltage, losses, temperature, insulation, and short-circuit performance. The key principle is Faraday's law of electromagnetic induction, which states that the induced voltage is proportional to […]

Master’s level

Design of distribution transformers – e-lesson #13: Amorphous Transformers

This lesson covers the fundamental principles of transformer design, focusing on the electromagnetic aspects. The presenter, Mario Solano, explains that transformer design involves balancing various requirements and constraints, including power, voltage, losses, temperature, insulation, and short-circuit performance. The key principle is Faraday's law of electromagnetic induction, which states that the induced voltage is proportional to […]

DoDT course - e-lesson #14 - illustration 850 x 400 px

Master’s level

Design of distribution transformers – e-lesson #14: Cast resin & dry type transformers

This lesson covers the fundamental principles of transformer design, focusing on the electromagnetic aspects. The presenter, Mario Solano, explains that transformer design involves balancing various requirements and constraints, including power, voltage, losses, temperature, insulation, and short-circuit performance. The key principle is Faraday's law of electromagnetic induction, which states that the induced voltage is proportional to […]

Design of distribution transfomrers - e-lesson #15 - illustration - 850 x 400 px

Master’s level

Design of distribution transformers – e-lesson #15: Leakage inductance considerations and proximity losses

This lesson covers the fundamental principles of transformer design, focusing on the electromagnetic aspects. The presenter, Mario Solano, explains that transformer design involves balancing various requirements and constraints, including power, voltage, losses, temperature, insulation, and short-circuit performance. The key principle is Faraday's law of electromagnetic induction, which states that the induced voltage is proportional to […]

DoDT course -e-leeson #16 - illustration 850 x 400 px

Master’s level

Design of distribution transformers – e-lesson #16: Advanced methodologies in custom design with special requirements

This lesson covers the fundamental principles of transformer design, focusing on the electromagnetic aspects. The presenter, Mario Solano, explains that transformer design involves balancing various requirements and constraints, including power, voltage, losses, temperature, insulation, and short-circuit performance. The key principle is Faraday's law of electromagnetic induction, which states that the induced voltage is proportional to […]

DoDT course - e-lesson #17 - 850 x 400 px illustration

Master’s level

Design of distribution transformers – e-lesson #17: Effects of DC components in magnetization currents

This lesson covers the fundamental principles of transformer design, focusing on the electromagnetic aspects. The presenter, Mario Solano, explains that transformer design involves balancing various requirements and constraints, including power, voltage, losses, temperature, insulation, and short-circuit performance. The key principle is Faraday's law of electromagnetic induction, which states that the induced voltage is proportional to […]

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