mrinalmani
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I designed a high frequency transformer (100kHz) for an inverter (12V/230V, 800VA).
The leakage inductance turned out to be approximately 1uH. Now, although small (or is it larger than typical?), the reactance when referred to the primary turns out to be 600 ohms @100KHz, This is 10 times larger than the load resistance at full load!!
So I decided to add a capacitor at the secondary side with an impedance of -600 ohm. This comes out to be approximately 2.2nF.
Since the capacitor must carry the load current in series (≈3.5A) the voltage across the capacitor turns out to be a whooping 2.5KV. Also since it is handling 10 times the rated VA, even a slight loss due to dissipation factor will be magnified 10 times.
1. Please suggest an appropriate capacitor type.
2. What type of capacitors are generally used in resonance tank?
3. Is this approach of adding a series capacitor a standard practice, or do there exist other better ways to reduce the effect of leakage inductance?
The leakage inductance turned out to be approximately 1uH. Now, although small (or is it larger than typical?), the reactance when referred to the primary turns out to be 600 ohms @100KHz, This is 10 times larger than the load resistance at full load!!
So I decided to add a capacitor at the secondary side with an impedance of -600 ohm. This comes out to be approximately 2.2nF.
Since the capacitor must carry the load current in series (≈3.5A) the voltage across the capacitor turns out to be a whooping 2.5KV. Also since it is handling 10 times the rated VA, even a slight loss due to dissipation factor will be magnified 10 times.
1. Please suggest an appropriate capacitor type.
2. What type of capacitors are generally used in resonance tank?
3. Is this approach of adding a series capacitor a standard practice, or do there exist other better ways to reduce the effect of leakage inductance?