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V375B2T160B Datasheet(PDF) 1 Page - Vicor Corporation |
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V375B2T160B Datasheet(HTML) 1 Page - Vicor Corporation |
1 / 8 page Vicor Corp. Tel: 800-735-6200, 978-470-2900 Fax: 978-475-6715 V375A2C160A DC-DC Converter Rev. 5.2 Page 1 of 8 Set your site on VICOR at www.vicorpower.com Shown actual size: 4.6 x 2.2 x 0.5 in 117 x 56 x 12,7 mm 45 Absolute Maximum Ratings Parameter Min Typ Max Unit Baseplate to sink; flat, greased surface 0.08 °C/Watt Baseplate to sink; thermal pad (P/N 20263) 0.07 °C/Watt Baseplate to ambient 4.9 °C/Watt Baseplate to ambient; 1000 LFM 1.1 °C/Watt Thermal capacity 165 Watt-sec/°C Thermal Resistance and Capacity 375Vin / 2Vout / 160Watts DC-DC Converter Module Model Number V375A2C160A* See part numbering chart on this page for other product grades. V 375 A 5 C 400 A Input Voltage 24 = 24Vin 48 = 48Vin 300 = 300Vin 375 = 375Vin A = Maxi B = Mini C = Micro Output Voltage Product Grade Temperatures (°C) Grade Storage Operating C = - 40 to +125 - 20 to +100 T = - 40 to +125 - 40 to +100 H = - 55 to +125 - 40 to +100 M = - 65 to +125 - 55 to +100 Pin Style Base- plate Output Power Features • DC input range: 250 - 425V • Input surge withstand: 500V for 100ms • DC output: 2V • Programmable output: 10 to 110% • Regulation: ±0.2% no load to full load • Efficiency: 74.5% • Maximum operating temperature: 100°C at full load • Power density: 32W/cubic inch • Height above board: 0.43 in. (10,9 mm) • Parallelable, with N+M fault tolerance • Low noise ZCS/ZVS architecture Typical Applications: distributed power; off-line systems using power PFC front-ends; electric vehicles Product Overview This DC-DC converter module uses 2nd Generation power processing, control and packaging technologies to provide the performance, flexibility and cost effectiveness expected of a mature power component. For example, a plated-cavity core transformer couples widely separated primary and secondary windings, resulting in low in-to- out parasitic capacitance and noise. High frequency ZCS/ZVS switching, advanced power semiconductor packaging and thermal management provide high power density with low temperature gradients. Extensive use of silicon integration results in 1/3 the part count of a 1st Generation converter. * Part Numbering For pin styles see page 6. Slotted baseplate (style 1) requires no designator. For threaded baseplate add a “2” to the end of the part number. For thru-hole, add a “3”. See page 7 for dimensions. Parameter Rating Unit Notes +In to –In voltage -0.5 to +425.0 Vdc +In to –In voltage 500 Vdc <100ms PC to –In voltage -0.5 to +7.0 Vdc PR to –In voltage -0.5 to +7.0 Vdc +Out to –Out voltage -0.5 to +3.1 Vdc +Sense to –Out voltage -0.5 to +3.1 Vdc –Sense to –Out voltage 1.0 Vdc SC to –Out voltage -0.5 to +1.5 Vdc Isolation voltage (in to out) 3000 Vrms Isolation voltage (in to base) 1550 Vrms Isolation voltage (out to base) 500 Vrms Storage temperature (C– Grade) -40 to +125 °C Operating temperature (C– Grade) -20 to +100 °C Baseplate Pin soldering temperature 500 (260) °F (°C) <5 sec; wave solder Pin soldering temperature 750 (390) °F (°C) <7 sec; hand solder Mounting torque 5 (0.57) in-lbs (N-m) 6 each, # 4-40 or M3 |
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