BYW96D THRU BYW96E SINTERED GLASS JUNCTION FAST SWITCHING PLASTIC RECTIFIER VOLTAGE:800 TO 1000V CURRENT: 3.0A FEATURE DO-201AD High temperature metallurgic ally bonded construction Sintered glass cavity free junction Capability of meeting environmental standard of MIL-S-19500 High temperature soldering guaranteed 350°C /10sec/0.375”lead length at 5 lbs tension Operate at Ta =55°C with no thermal run away Typical Ir<0.1µA MECHANICAL DATA Terminal: Plated axial leads solderable per MIL-STD 202E, method 208C Case: Molded with UL-94 Class V-0 recognized Flame Retardant Epoxy Polarity: color band denotes cathode Mounting position: any Dimensions in inches and (millimeters) MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS (single-phase, half-wave, 60HZ, resistive or inductive load rating at 25°C, unless otherwise stated) SYMBOL BYW96D BYW96E units Maximum Recurrent Peak Reverse Voltage Vrrm 800 1000 Maximum RMS Voltage Vrms 560 700 Vdc 800 1000 V V V 900 1100 V Maximum DC blocking Voltage Reverse avalanche breakdown voltage at IR = 0.1 mA Maximum Average Forward Rectified Current 3/8”lead length at Ta =55°C Peak Forward Surge Current 8.3ms single half sine-wave superimposed on rated load Maximum Forward Voltage at rated Forward Current and 25°C Non-repetitive peak reverse avalanche energy (Note 1) Maximum DC Reverse Current at rated DC blocking voltage Ta =25°C Ta =150°C Maximum Reverse Recovery Time Typical Junction Capacitance Typical Thermal Resistance (Note 2) (Note 3) (Note 4) Storage and Operating Junction Temperature V(BR)R (min) If(av) 3.0 A Ifsm 70 A Vf 1.50 V Ersm 10 mJ Ir 5.0 150 µA µA Trr 300 Cj 60 nS pF R(ja) 16 Tstg, Tj -65 to +175 °C /W °C Note: 1.R=400mA; Tj=Tjmax prior to surge; inductive load switched off 2.Reverse Recovery Condition If =0.5A, Ir =1.0A, Irr =0.25A 3.Measured at 1.0 MHz and applied reverse voltage of 4.0Vdc 4.Thermal Resistance from Junction to Ambient at 3/8”lead length, P.C. Board Mounted Rev.A1 www.gulfsemi.com RATINGS AND CHARACTERISTIC CURVES BYW96D THRU BYW96E 1 1 Rev.A1 www.gulfsemi.com