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  (text "Valeur datasheet\n" (at 110.49 82.55 0)
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  (text "Cette partie remplace l'utilisation de la diode schottky en sortie du flyback ce qui réduit le \"stress\" ressenti en sortie lors \nd'ondulations du système\n(peak). Ce système permet donc de jouer le rôle de diode sans diode soud forme de switch ce qui minimise les pertes \nlors de la pente de montée typique d'une diode. \n\nEn d'autres termes, la puissance dissipée par la schottky est plus importante lors de la transition entre passant \net pas passant que pour le mosfet. Moins de puissance perdue par la diode en sortie équivaut \nà moins de puissance en entrée perdue et donc un meilleur rendement. \n\nPour le moment, cette partie restera non-populée et sera discutée avec Monsieur Alaime car \nelle n'a pas été validée lors de la remise du 09/11/2023.\n\nÀ suivre\n"
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  (text "REG et VS" (at 13.97 66.04 0)
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  (text "La résistance assure \nune valeur de résistance en entrée\ncomme nous ne connaissons pas \nl'impédance du système\nDonc on s'assure d'avoir une valeur pour \n\"être sûr\" que le courant passe"
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  (text "Commentaires : " (at 19.05 149.86 0)
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  (text "Capa de découplage\nrésistance de \"bonne pratique\"\nvu qu'on peut alimenter le chip \navec nos 24V"
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  (text "Snubber pour atténuer \nvariations de fréquences\n" (at 120.65 33.02 0)
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  (text "Basiquement, \n\nC'est une \"Rolls-royce\" en ce qui concerne une diode\ncar elle rectifie en fonction de la fréquence et atténue les \"peak\" en interne\ntout en fournissant le côté passant et non passant d'une diode"
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  (text "Dans cette partie, on utilise \nles labels 24+ et GND1\nOn remanie simplement les labels pour que cela soit plus clair\n"
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