Design of a Dual-Ended Quasi Resonant Flyback Converter: A easy and safe power supply topology to meet < 92% efficiency and 2013 ErP Regulation

 
9783847306030: Design of a Dual-Ended Quasi Resonant Flyback Converter: A easy and safe power supply topology to meet < 92% efficiency and 2013 ErP Regulation
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A new Dual Switch Flyback (DSFB) topology which operates in quasi resonant mode is proposed to meet various challenge of current power supply design ranging from 75Watt to 250Watt. Current design challenge of a power supply is multifold and it continues to pursue higher efficiency, higher power density, lower standby power consumption and lower BOM cost. Among all available topology and solutions, it is not easy to find a solution to meet all requirements. DSFB could possibly achieve higher than 92% average efficiency and meet 2013 ErP lot 6 standby power requirement of less than 0.5Watt input power when the load is 0.25Watt. The operation principle and solution benefit are illustrated in this paper and some design examples are shown to demonstrate the capability of this solution.

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Dual Switch Quasi Resonant topology , a easy and safe design, proposed to meet high efficiency and low stand by power requirement.

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Chen-Hui Chan (author)
Published by LAP Lambert Academic Publishing 2012-01-03 (2012)
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Book Description Condition: New. Publisher/Verlag: LAP Lambert Academic Publishing | A easy and safe power supply topology to meet < 92% efficiency and 2013 ErP Regulation | A new Dual Switch Flyback (DSFB) topology which operates in quasi resonant mode is proposed to meet various challenge of current power supply design ranging from 75Watt to 250Watt. Current design challenge of a power supply is multifold and it continues to pursue higher efficiency, higher power density, lower standby power consumption and lower BOM cost. Among all available topology and solutions, it is not easy to find a solution to meet all requirements. DSFB could possibly achieve higher than 92% average efficiency and meet 2013 ErP lot 6 standby power requirement of less than 0.5Watt input power when the load is 0.25Watt. The operation principle and solution benefit are illustrated in this paper and some design examples are shown to demonstrate the capability of this solution. | Format: Paperback | Language/Sprache: english | 155 gr | 220x150x5 mm | 104 pp. Seller Inventory # K9783847306030

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Book Description LAP Lambert Academic Publishing Jan 2012, 2012. Taschenbuch. Condition: Neu. Neuware - A new Dual Switch Flyback (DSFB) topology which operates in quasi resonant mode is proposed to meet various challenge of current power supply design ranging from 75Watt to 250Watt. Current design challenge of a power supply is multifold and it continues to pursue higher efficiency, higher power density, lower standby power consumption and lower BOM cost. Among all available topology and solutions, it is not easy to find a solution to meet all requirements. DSFB could possibly achieve higher than 92% average efficiency and meet 2013 ErP lot 6 standby power requirement of less than 0.5Watt input power when the load is 0.25Watt. The operation principle and solution benefit are illustrated in this paper and some design examples are shown to demonstrate the capability of this solution. 104 pp. Englisch. Seller Inventory # 9783847306030

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Chen-Hui Chan
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Book Description LAP Lambert Academic Publishing Jan 2012, 2012. Taschenbuch. Condition: Neu. Neuware - A new Dual Switch Flyback (DSFB) topology which operates in quasi resonant mode is proposed to meet various challenge of current power supply design ranging from 75Watt to 250Watt. Current design challenge of a power supply is multifold and it continues to pursue higher efficiency, higher power density, lower standby power consumption and lower BOM cost. Among all available topology and solutions, it is not easy to find a solution to meet all requirements. DSFB could possibly achieve higher than 92% average efficiency and meet 2013 ErP lot 6 standby power requirement of less than 0.5Watt input power when the load is 0.25Watt. The operation principle and solution benefit are illustrated in this paper and some design examples are shown to demonstrate the capability of this solution. 104 pp. Englisch. Seller Inventory # 9783847306030

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Chen-Hui Chan
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Book Description LAP Lambert Academic Publishing. Paperback. Condition: New. 104 pages. Dimensions: 8.7in. x 5.9in. x 0.2in.A new Dual Switch Flyback (DSFB) topology which operates in quasi resonant mode is proposed to meet various challenge of current power supply design ranging from 75Watt to 250Watt. Current design challenge of a power supply is multifold and it continues to pursue higher efficiency, higher power density, lower standby power consumption and lower BOM cost. Among all available topology and solutions, it is not easy to find a solution to meet all requirements. DSFB could possibly achieve higher than 92 average efficiency and meet 2013 ErP lot 6 standby power requirement of less than 0. 5Watt input power when the load is 0. 25Watt. The operation principle and solution benefit are illustrated in this paper and some design examples are shown to demonstrate the capability of this solution. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Paperback. Seller Inventory # 9783847306030

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Chen-Hui Chan
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Book Description LAP Lambert Academic Publishing, Germany, 2012. Paperback. Condition: New. Aufl.. Language: English . Brand New Book. A new Dual Switch Flyback (DSFB) topology which operates in quasi resonant mode is proposed to meet various challenge of current power supply design ranging from 75Watt to 250Watt. Current design challenge of a power supply is multifold and it continues to pursue higher efficiency, higher power density, lower standby power consumption and lower BOM cost. Among all available topology and solutions, it is not easy to find a solution to meet all requirements. DSFB could possibly achieve higher than 92 average efficiency and meet 2013 ErP lot 6 standby power requirement of less than 0.5Watt input power when the load is 0.25Watt. The operation principle and solution benefit are illustrated in this paper and some design examples are shown to demonstrate the capability of this solution. Seller Inventory # KNV9783847306030

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Book Description LAP Lambert Academic Publishing Jan 2012, 2012. Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Neuware - A new Dual Switch Flyback (DSFB) topology which operates in quasi resonant mode is proposed to meet various challenge of current power supply design ranging from 75Watt to 250Watt. Current design challenge of a power supply is multifold and it continues to pursue higher efficiency, higher power density, lower standby power consumption and lower BOM cost. Among all available topology and solutions, it is not easy to find a solution to meet all requirements. DSFB could possibly achieve higher than 92% average efficiency and meet 2013 ErP lot 6 standby power requirement of less than 0.5Watt input power when the load is 0.25Watt. The operation principle and solution benefit are illustrated in this paper and some design examples are shown to demonstrate the capability of this solution. 104 pp. Englisch. Seller Inventory # 9783847306030

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