• Part: DSA70C200HB
  • Description: Schottky Diode
  • Category: Diode
  • Manufacturer: IXYS
  • Size: 338.92 KB
Download DSA70C200HB Datasheet PDF
IXYS
DSA70C200HB
DSA70C200HB is Schottky Diode manufactured by IXYS.
Features / Advantages: - Very low Vf - Extremely low switching losses - Low Irm values - Improved thermal behaviour - High reliability circuit operation - Low voltage peaks for reduced protection circuits - Low noise switching Applications: - Rectifiers in switch mode power supplies (SMPS) - Free wheeling diode in low voltage converters Package: TO-247 - Industry standard outline - Ro HS pliant - Epoxy meets UL 94V-0 Disclaimer Notice Information furnished is believed to be accurate and reliable. However, users should independently evaluate the suitability of and test each product selected for their own applications. Littelfuse products are not designed for, and may not be used in, all applications. Read plete Disclaimer Notice at .littelfuse./disclaimer-electronics. IXYS reserves the right to change limits, conditions and dimensions. © 2021 IXYS all rights reserved Data according to IEC 60747and per semiconductor unless otherwise specified 20210309c Schottky Symbol VRSM VRRM IR VF I FAV Definition Conditions max. non-repetitive reverse blocking voltage max. repetitive reverse blocking voltage reverse current, drain current forward voltage drop average forward current VR = 200 V VR = 200 V IF = 35 A IF = 70 A IF = 35 A IF = 70 A TC = 150°C rectangular d = 0.5 VF0 r F R th JC R th CH Ptot I FSM CJ threshold voltage slope resistance for power loss calculation only thermal resistance junction to case thermal resistance case to heatsink total power dissipation max. forward surge current junction capacitance t = 10 ms; (50 Hz), sine; VR = 0 V VR = 24 V f = 1 MHz DSA70C200HB preliminary TVJ = 25°C TVJ = 25°C TVJ = 25°C TVJ = 125°C TVJ = 25°C TVJ = 125 °C TVJ = 175°C Ratings min. typ. max. Unit 200 V 200 V 640 µA 7 m A 0.93 V 1.07 V 0.79 V 0.95 V 35 A TVJ = 175°C TC = TVJ = TVJ = 25°C 45°C 25°C 0.55 V 4.8 mΩ 0.7...