Designing a Small Integrated 500W LLC Transformer

In this blog article Sotiris Zorbas, MSc, Frenetic Power Εlectronics Εngineer is explaining how to design a small integrated LLC transformer for 500W PSU application.

Let’s see the specs of this LLC center tapped PSU that we want to design Magnetics for. We are talking about a charger with 71.5V/7A output:

Figure 1. PSU/Transformer specs list

Based on the findings from previous blog

In previous blog, we built some nice 2-chamber Transformers from 500W to 2kW. In all cases, the actual Transformer total losses amounted to approximately 0.6% of the total power delivered to the load. That observation is in line with our experience in Frenetic, and we will use it to minimize our design iterations.

Also, the power density for naturally cooled designs to achieve approx. ~50°C of temperature rise is somewhere between 5-9kW/L. But in our case, we have some variable fan cooling when the Transformer gets hot. That said, we will push power density more than 50% to about 12-15kW/L. Of course, these are preliminary assumptions and should be treated as such.

Figure 2.  The Core Optimizer helping us quickly find a core 
Figure 3.  PQ32/30 Bobbin/Transformer dimensions and PCB pinout

Plotting PQ core sets I quickly found a match for my specifications:

The windings part

All necessary info for the Winding is here. As you can see in Figure 4., we predict a 39-40 μH of leakage with 3mm of separation. The wires used are simple in stock Litz wires with different strand diameters, and my comment here is that this is a manufacturable design with the necessary margins as far as fitting goes, in place.

Figure 4.  Winding configuration and losses

The worst case condition

We get the following performance:

✅ Tmax at 91°C below 100°C

✅ Pmax = 3.8W in line with our 3W prediction.

✅ Integrated 40μH of leakage inductance

Of course, with air cooling or higher input voltages (close to 400V) the Transformer may as well operate at 50°C under full load!

And the best part: design time, just 2hr!

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