Low-voltage DC-DC converter including zero voltage switching and method of driving same
A low-voltage DC-DC converter includes a switch configured to convert a high voltage supplied from a high-voltage battery to an alternating current (AC) voltage, a transformer including an air gap in a core region and configured to lower the AC voltage to a low voltage using an adjusted turns ratio, and a power supply configured to rectify the low voltage and supply the rectified low voltage to a load.
1. A method for setting an air gap in a core region and a turns ratio of a transformer of a low-voltage DC-DC converter, the method comprising:
setting a power switching element based on a voltage/current capacity and a parasitic capacitance;
setting a minimum inductance to secure a zero voltage switching operation of the power switching element;
adjusting the air gap in the core region and the turns ratio of the transformer based on an input voltage range of the transformer;
calculating a leakage inductance of the transformer;
comparing the minimum inductance with the leakage inductance; and
adaptively adjusting the air gap and the turns ratio based on a result of the comparing,
wherein the air gap in the core region is set on a basis of a magnetizing inductance, the number of primary turns, a magnetic resistance of the core region, and a magnetic resistance of the air gap.
2. The method of claim 1 , wherein the minimum inductance is set on a basis of a parasitic capacitance of power switching element.
3. The method of claim 1 , wherein the turns ratio is set on a basis of a primary input current, a secondary input current, and a magnetizing current of the transformer.
4. The method of claim 1 , wherein the leakage inductance is calculated on a basis of a primary leakage inductance, the number of primary turns, and a primary circuit resistance.