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EN1C21 Datasheet(PDF) 9 Page - Vicor Corporation |
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EN1C21 Datasheet(HTML) 9 Page - Vicor Corporation |
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9 / 13 page ![]() ENMODS™ Rev 3.3 vicorpower.com Page 9 of 13 06/2017 800 927.9474 EN1xxx Operating Power (W) 0 5 10 15 20 25 30 35 40 500 250 * 2,200 µF 1,600 µF 1,300 µF * 1,100 µF 820 µF 680 µF Figure 13 — Power fail warning time vs. operating power and total bus capacitance, series combination of C1, C2 (see Figure 1a) Operating Power (W) 0 10 20 30 40 50 60 70 80 90 100 90 Vac 115 Vac 500 250 N EMI GND SR L + BOK ST EN – Micro- controller 15 Vdc 27 k +5 Vdc Secondary referenced FARM3 Figure 12 — Bus OK (BOK) isolated power status indicator +In PC (Gate In) PR (Gate Out) –In N EMI GND SR L + B OK ST EN – 150 k 15 Vdc Vicor DC-DC Converter Micro- controller FARM3 250 Figure 11 — Enable (EN) function Figure 14 — Ride-through time vs. operating power Application Note (Cont.) Hold-up Capacitors Hold-up capacitor values should be determined according to output bus voltage ripple, power fail hold-up time, and ride-through time (see Figure 15). Many applications require the power supply to maintain output regulation during a momentary power failure of specified duration, i.e., the converters must hold- up or ride through such an event while maintaining undisturbed output voltage regulation. Similarly, many of these same systems require notification of an impending power failure in order to allow time to perform an orderly shutdown. The energy stored on a capacitor which has been charged to voltage V is: Energy is given up by the capacitors as they are discharged by the converters. The energy expended (the power-time product) is: Rearranging Equation 2 to solve for the required capacitance: (1) ε = 1/2(CV2) Where: ε = stored energy C = capacitance V = voltage across the capacitor (3) C = 2Pt / (V 1 2 –V 2 2 ) (2) ε = Pt = C(V 1 2 –V 2 2 ) / 2 Where: P = operating power t = discharge interval V 1 = capacitor voltage at the beginning of t V 2 = capacitor voltage at the end of t |
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