Survey
* Your assessment is very important for improving the work of artificial intelligence, which forms the content of this project
* Your assessment is very important for improving the work of artificial intelligence, which forms the content of this project
SUPER FAST GLASS PASSIVATED RECTIFIER SF161C THRU SF166C VOLTAGE RANGE 50 to 400 Volts CURRENT 16.0 Ampere FEATURES • • • • • • • • • TO-220AB Super fast switching speed Glass passivated chip junction Low power loss, high efficiency Low leakage High surge capacity High temperature soldering guaranteed 250℃/10 second, 0.16″(4.06mm) lead length Also available with common Anode, add an “A” suffix, i.e. SF161CA, add as a doubler, add a “D” suffix, i.e. SF161CD Also available in an isolated package, SFF161C Also available in the single chip version, SF81 MECHANICAL DATA • • • • • • Dimensions in inches and (millimeters) Case: Transfer molded plastic Epoxy: UL94V-0 rate flame retardant Lead: Solderable per MIL-STD-202E method 208C Polarity: as marked Mounting position: Any, 5 in-lbs Torque Max Weight: 0.08ounce, 2.24 gram MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS • • • Ratings at 25℃ ambient temperature unless otherwise specified Single Phase, half wave, 60Hz, resistive or inductive load For capacitive load derate current by 20% SYMBOLS SF161C SF162C Maximum Repetitive Peak Reverse Voltage VRRM 50 100 Maximum RMS Voltage VRMS 35 70 Maximum DC Blocking Voltage VDC 50 100 Maximum Average Forward Rectified Current At Tc=100℃ Peak Forward Surge Current 8.3ms single half sine wave superimposed on rated load (JEDEC method) SF163C 150 105 150 IFSM 125 Amps IR 0.975 trr 1.4 10 500 A Storage Temperature Range UNIT Volts Volts Volts Amps VF Operating Junction Temperature SF166C 400 280 400 16.0 Maximum DC Reverse Current at rated TA = 25℃ DC Blocking Voltage at T = 125℃ Typical Thermal Resistance (Note 1) SF165C 300 210 300 I(AV) Maximum Instantaneous Forward Voltage per at 8.0A Maximum Reverse Recovery Time Test conditions IF =0.5A, IR =1.0A, IRR =0.25A Typical Junction Capacitance (Measured at 1.0MHz and applied reverse voltage of 4.0V) SF164C 200 140 200 35 Volts µA 50 nS CJ 40 pF RθJC TJ TSTG 2.5 (-55 to +150) (-55 to +150) ℃/W Notes: 1. Unit mounted on heatsink www.BDTIC.com/MIC E-mail: [email protected] Web Site: www.cnmic.com ℃ ℃ SUPER FAST GLASS PASSIVATED RECTIFIER SF161C THRU SF166C VOLTAGE RANGE 50 to 400 Volts CURRENT 16.0 Ampere RATING AND CHRACTERISTIC CURVES SF161C THRU SF166C FIG.1-TYPICAL FORWARD CURRENT DERATING CURVE FIG.2-MAXIMUM NON-REPETITIVE PEAK FORWARD SURGE CURRENT 20 (A) 16 12 Single Phase Half Wave 60Hz Resistive or Inductive Load 0.375″(9.5mm) Lead Length 8.0 4.0 150 CURRENT, (A) PEAK FORWARD SURGE AVERAGE FORWARD CURRENT, 24 8.3ms Single Half Sine-Wave (JEDEC Method) T= Tjmax 100 50 1 Cycle 0 0 25 50 100 75 125 150 175 0 1 2 AMBIENT TEMPERATURE, (° C) 4 8 10 6 40 20 60 100 NUMBER OF CYCLES AT 60 Hz FIG.4-TYPICAL REVERSE CHARACTERISTICS PER LEG FIG.3-TYPICAL INSTANTANEOUS 100 FORWARD CHARACTERISTICS PER LEG INSTANTANEOUS REVERSE CURRENT, (μA) TJ =125° C 0V 30 0/ 40 0V 0/ 1 50 / 20 10 50 /1 0 (A) INSTANTANEOUS FORWARD CURRENT, 100 1.0 TJ =25° C Pulse Width=300us 1% Duty Cycle 0.1 0.4 0.8 1.2 10 1.0 TJ=25° C 0.1 1.6 INSTANTANEOUS FORWARD VOLTAGE,(V) 0.01 0 20 FIG.5-TYPICAL JUNCTION CAPACITANCE 60 40 100 80 120 140 PERCENT OF RATED PEAK PER LEG REVERSE VOLTAGE,(%) JUNCTION CAPACITANCE,(pF) 100 F1G.6-TEST CIRCUIT DIAGRAM AND REVERSE RECOVERY TIME CHARACTERISTIC Trr 50Ω 10Ω NONINDUCTIVE NONINDUCTIVE +0.5A (-) 10 (+) 25 Vdc (approx.) (-) T J =25° C f=1MHz Vsig=50mVp-p 1.0 1Ω NON INDUCTIVE PULSE GENERATIOR (NOTE 2) 0 -0.25A (+) OSCILLOSCOPE (NOTE 1) -1.0A 1cm 1 0.1 D.U.T. 10 100 REVERSE VOLTAGE,(V) NOTES : 1.Rise Time=7ns mas. Input Impedance= 1 magohm. 22pF 2.Rise time=10ns max. Source Impedance= 50 ohms www.BDTIC.com/MIC E-mail: [email protected] Web Site: www.cnmic.com SET TIME BASE FOR 50/100ns/cm