Title :
LLC converter with Taiwan Tech center-tapped rectifier (LLC-TCT) for solar power conversion applications
Author :
Ching-Shan Leu ; Pin-Yu Huang ; Wei-Kai Wang
Author_Institution :
Dept. Electr. Eng., Nat. Taiwan Univ. of Sci. & Technol. (Taiwan Tech), Taipei, Taiwan
Abstract :
An LLC converter with Taiwan Tech center-tapped rectifier (LLC-TCT) is proposed in this paper. In addition to having zero-voltage switching operation on the MOSFETs and zero-current switching on the rectifier diodes inherited from its predecessor, the proposed converter has several additional features. For instance, the rectifier diodes are clamped to the output voltage due to the utilization of the clamping series-diode technique and the recovery of the transformer secondary leakage energy. Besides the output filter capacitor, the load currents are partly provided by the L-C-L filter cell constructed with the leakage inductance of the secondary windings and one clamping capacitor. As a result, the rectifier diode losses and the required high-voltage output filter capacitor can be reduced. These characteristics make it desirable for high frequency, high efficiency and high input-voltage and high output-voltage power conversion applications such as solar power conversion or larger size LED backlit LCD display applications. In addition to the operation principle and design considerations, an LLC with conventional center-tapped rectification circuit (LLC-CT) and the proposed LLC-TCT with 300-400-V input and 200V/400W output are implemented to demonstrate the feasibility and the superiority of the LLC-TCT over the LLC-CT.
Keywords :
MOSFET; rectifying circuits; solar power stations; transformer windings; zero current switching; zero voltage switching; L-C-L filter cell; LED backlit LCD display application; LLC converter; LLC-CT; LLC-TCT; LLC-conventional center-tapped rectification circuit; MOSFET; Taiwan Tech center-tapped rectifier; clamping capacitor; design consideration; high-voltage output filter capacitor; input-voltage power conversion application; leakage inductance; load currents; operation principle; output filter capacitor; output-voltage power conversion application; power 400 W; rectifier diode loss; rectifier diodes; secondary windings; series-diode technique clamping; solar power conversion; solar power conversion application; transformer secondary leakage energy recovery; voltage 200 V; voltage 300 V to 400 V; zero-current switching; zero-voltage switching operation; Indexes; MOSFET; Rectifiers; Switches; Video recording; Center-tapped rectifier; LLC converter; Taiwan Tech rectifier;
Conference_Titel :
Future Energy Electronics Conference (IFEEC), 2013 1st International
Conference_Location :
Tainan
Print_ISBN :
978-1-4799-0071-8
DOI :
10.1109/IFEEC.2013.6687560