Full wave buck boost power converter with buck power...

H - Electricity – 02 – M

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H02M 3/335 (2006.01) B01D 21/26 (2006.01) C02F 1/78 (2006.01)

Patent

CA 2182263

A continuous mode full wave power converter topology which integrates the buck-boost (flyback) and buck converter properties. The voltage transfer function is M = (D/(1-D)), characteristic of the buck-boost (flyback) converter. Characteristic of the full wave buck converter, the inductor current is source continuous during the alternate D intervals, source discontinuous during the simultaneous (1-D) intervals, and load continuous during both the D and (I-D) intervals. A continuous mode full wave power converter topology which integrates the buck-boost (flyback) and buck converter properties. The voltage transfer function is Eout = Ein (D/(1-D)), characteristic of the buck-boost (flyback) converter. Characteristic of the buck converter, the inductor current is source continuous during the alternate D intervals, source discontinuous during the simultaneous (I-D) intervals, and load continuous during both the D and (I-D) intervals.

Nouvelle topologie de transformateur à ondes pleines en mode continu, qui intègre les propriétés d'un transformateur survolteur-dévolteur et celles d'un transformateur dévolteur. La fonction de transfert de la tension est M = (D/(1-D)), caractéristique du transformateur survolteur-dévolteur. De manière caractéristique du transformateur dévolteur à ondes pleines, le courant d'induction est continu à la source pendant les intervalles D alternés, discontinu à la source pendant les intervalles (1-D) simultanés, et continu en charge pendant les intervalles D et (1-D). Une topologie de transformateur à ondes pleines en mode continu intègre les propriétés des transformateurs survolteurs-dévolteurs et dévolteurs. La fonction de transfert de la tension est E¿sortie? = E¿entrée? (D/(1-D)), caractéristique du transformateur survolteur-dévolteur. De manière caractéristique du transformateur dévolteur, le courant d'induction est continu à la source pendant les intervalles D alternés, discontinu à la source pendant les intervalles (1-D) simultanés, et continu en charge pendant les intervalles D et (1-D).

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