SD453N25S20PC IRF | Alldatasheet
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High power FAST recovery diode series 2.0 to 3.0 µs recovery time High voltage ratings up to 2500V High current capability Optimized turn on and turn off characteristics Low forward recovery Fast and soft reverse recovery Compression bonded encapsulation Stud version case style B-8 Maximum junction temperature 150°C Typical Applications Snubber diode for GTO High voltage free-wheeling diode Fast recovery rectifier applications IF(AV) 400 450 A @ T C 70 70 °C IF(RMS) 630 710 A IFSM @ 50Hz 9300 9600 A @ 60Hz 9730 10050 A V RRM range 1200 to 2500 1200 to 2500 V trr 2.0 3.0 µs @ T J 25 25 °C TJ - 40 to 150 °C Parameters Units SD453N/R S20 S30 Major Ratings and Characteristics case style B-8
Bulletin I2076 rev. A 09/94 www.irf.com Voltage V RRM , maximum repetitive V RSM , maximum non- I RRM max. Type number Code peak reverse voltage repetitive peak rev. voltage @ T J = TJ max. VV m A 12 1200 1300 16 1600 1700 20 2000 2100 25 2500 2600 ELECTRICAL SPECIFICATIONS Voltage Ratings SD453N/R 50 SD453N/R S20 S30 IF(AV) Max. average forward current 400 450 A 180° conduction, half sine wave @ case temperature 70 70 °C IF(RMS) Max. RMS forward current 630 710 A @ case temperature 55 52 °C IFSM Max. peak, one-cycle forward, 9300 9600 t = 10ms No voltage non-repetitive surge current 9730 10050 t = 8.3ms reapplied 7820 8070 t = 10ms 100% V RRM 8190 8450 t = 8.3ms reapplied Sinusoidal half wave, I2t Maximum I 2t for fusing 432 460 t = 10ms No voltage Initial T J = TJ max. 395 420 t = 8.3ms reapplied 306 326 t = 10ms 100% V RRM 279 297 t = 8.3ms reapplied I2√t Maximum I 2√t for fusing 4320 4600 KA 2√s t = 0.1 to 10ms, no voltage reapplied V F(TO)1 Low level value of threshold voltage V F(TO)2 High level value of threshold voltage rf1 Low level value of forward slope resistance rf2 High level value of forward slope resistance V FM Max. forward voltage drop 2.20 1.85 V I pk= 1500A, TJ = TJ max, tp = 10ms sinusoidal wave Parameter Units Conditions Forward Conduction A KA 2s 1.09 1.04 (I > π x IF(AV)),TJ = TJ max. 1.00 0.95 (16.7% x π x IF(AV) < I < π x IF(AV)), TJ = TJ max. 0.74 0.54 (I > π x IF(AV)),TJ = TJ max. 0.80 0.60 (16.7% x π x IF(AV) < I < π x IF(AV)), TJ = TJ max.m Ω V typical trr Ipk di/dt V r trr Q rr Irr @ 25% IRRM Square Pulse @ 25% I RRM Code (µs) (A) (A/ µs) (V) ( µs) ( µC) (A) Test conditions Max. values @ TJ = 150 °C Recovery Characteristics TJ = 25 oC S20 2.0 1000 50 - 50 3.5 250 120 S30 3.0 1000 50 - 50 5.0 380 150
Bulletin I2076 rev. A 09/94 www.irf.com TJ Max. junction operating temperature range-40 to 150 Tstg Max. storage temperature range -40 to 150 R thJC Max. thermal resistance, junction to case 0.1 DC operation RthCS Max. thermal resistance, case Mounting surface, smooth, flat and to heatsink greased T Mounting torque, ± 10% 50 Nm Not lubricated threads wt Approximate weight 454 g Case style B - 8 See Outline Table 0.04 Parameter Units Conditions K/W Thermal and Mechanical Specifications SD453N/R S20 S30 120° 0.014 0.014 0.014 0.014 90° 0.017 0.017 0.019 0.019 K/W 60° 0.025 0.025 0.026 0.026 30° 0.042 0.042 0.042 0.042 Conduction angle Units Conditions S20 S30 S20 S30 ΔR thJ-hs Conduction (The following table shows the increment of thermal resistence RthJ-hs when devices operate at different conduction angles than DC) Sinusoidal conduction Rectangular conduction Ordering Information Table SD 45 3 N 25 S30 P S C 1 2 3 4 5 6 7 Device Code 8 9 1 - Diode 2 - Essential part number 3 - 3 = Fast recovery 4 - N = Stud Normal Polarity (Cathode to Stud) R = Stud Reverse Polarity (Anode to Stud) 5 - Voltage code: Code x 100 = VRRM (see Voltage Ratings table) 6 -t rr code (see Recovery Characteristics table) 7 - P = Stud base B-8 3/4" 16UNF-2A M = Stud base B-8 M24 X 1.5 8 -7 S = Isolated lead with silicone sleeve (Red = Reverse Polarity; Blue = Normal Polarity) None = Not isolated lead T = Threaded Top Terminal 3/8" 24UNF-2A 9 - C = Ceramic housing
Bulletin I2076 rev. A 09/94 www.irf.com Outlines Table Case Style B-8 All dimensions in millimeters (inches) Case Style B-8 with top thread terminal 3/8" All dimensions in millimeters (inches) 47 (1.85) 80.5 (3.17) 38 (1.5) DIA. MAX. MAX. MAX. MAX. CERAMIC HOUSING SW 45 * FOR METRIC DEVICE: M24 x 1.5 - LENGHT SCREW 21 (0.83) MAX. 21 (0.83) 3/4"-16UNF-2A * 25 (0.98) 3/8"-24UNF-2A 17 (0.67) DIA. 26 (1.023) MAX. 47 (1.85) MIN. 38 (1.5) DIA. MAX. 245 (9.645) 255 (10.04) MAX. MAX. CERAMIC HOUSING SW 45 * FOR METRIC DEVICE: M24 x 1.5 - LENGHT SCREW 21 (0.83) MAX. C.S. 70mm 80 (3.15) MAX. 21 (0.83) MA X. 3/4"-16UNF-2A *
Bulletin I2076 rev. A 09/94 www.irf.com Fig. 6 - Forward Power Loss CharacteristicsFig. 5 - Forward Power Loss Characteristics 100 110 120 130 140 150 0 100 200 300 400 500 30° 60° 90° 120° 180° Average Forward Current (A) Conduction Angle Maximum Allowable Case Temperature (°C) SD453N/R..S30 Series R (DC) = 0.1 K/WthJC 100 200 300 400 500 600 700 800 0 50 100 150 200 250 300 350 400 450 180° 120° 90° 60° 30° Average Forward Current (A) Maximum Average Forward Power Loss (W) RMS Limit Conduction Angle SD453N/R..S20 Series T = 150°CJ Fig. 3 - Current Ratings Characteristics Fig. 4 - Current Ratings Characteristics 100 110 120 130 140 150 0 200 400 600 800 30° 60° 90° 180° DC 120° Average Forward Current (A) Conduction Period Maximum Allowable Case Temperature (°C) SD453N/R..S30 Series R (DC) = 0.1 K/WthJC 100 200 300 400 500 600 700 800 900 1000 0 100 200 300 400 500 600 700 DC 180° 120° 90° 60° 30° Average Forward Current (A) RMS Limit Maximum Average Forward Power Loss (W) Conduction Period SD453N/R..S20 Series T = 150°CJ Fig. 1 - Current Ratings Characteristics Fig. 2 - Current Ratings Characteristics 100 110 120 130 140 150 0 100 200 300 400 500 600 700 30° 60° 90° 180° DC 120° Average Forward Current (A) Conduction Period Maximum Allowable Case Temperature (°C) SD453N/R..S20 Series R (DC) = 0.1 K/WthJC 100 110 120 130 140 150 0 50 100 150 200 250 300 350 400 450 30° 60° 90° 120°180° Average Forward Current (A) Conduction Angle Maximum Allowable Case Temperature (°C) SD453N/R..S20 Series R (DC) = 0.1 K/WthJC
Bulletin I2076 rev. A 09/94 www.irf.com 2000 3000 4000 5000 6000 7000 8000 9000 11 0 1 0 0 Number Of Equal Amplitude Half Cycle Current Pulses (N) Peak Half Sine Wave Forward Current (A) SD453N/R..S20 Series Initial T = 150 °C @ 60 Hz 0.0083 s @ 50 Hz 0.0100 s J At Any Rated Load Condition And With Rated V Applied Following Surge.RRM 2000 3000 4000 5000 6000 7000 8000 9000 10000 0.01 0.1 1 Pulse Train Duration (s) Peak Half Sine Wave Forward Current (A) Maximum Non Repetitive Surge Current SD453N/R..S20 Series Versus Pulse Train Duration. Initial T = 150 °C No Voltage Reapplied Rated V ReappliedRRM J Fig. 9 - Maximum Non-repetitive Surge Current Fig. 10 - Maximum Non-repetitive Surge Current 2000 3000 4000 5000 6000 7000 8000 9000 11 0 1 0 0 Number Of Equal Amplitude Half Cycle Current Pulses (N) Peak Half Sine Wave Forward Current (A) Initial T = 150 °C @ 60 Hz 0.0083 s @ 50 Hz 0.0100 s J SD453N/R..S30 Series At Any Rated Load Condition And With Rated V Applied Following Surge.RRM 2000 3000 4000 5000 6000 7000 8000 9000 10000 0.01 0.1 1 Pulse Train Duration (s) Peak Half Sine Wave For war d Curren t (A) Maximum Non Repetitive Surge Current SD453N/R..S30 Series Versus Pulse Train Duration. Initial T = 150 °C No Voltage Reapplied Rated V ReappliedRRM J Fig.12 - Maximum Non-repetitive Surge CurrentFig.11 - Maximum Non-repetitive Surge Current 100 200 300 400 500 600 700 800 900 1000 0 100 200 300 400 500 600 700 800 DC 180° 120° 90° 60° 30° Average Forward Current (A) RMS Limit Maximum Average Forward Power Loss (W) Conduction Period SD453N/R..S30 Series T = 150°CJ 100 200 300 400 500 600 700 800 0 100 200 300 400 500 180° 120° 90° 60° 30° Average Forward Current (A) Maximum Average Forward Power Loss (W) RMS Limit Conduction Angle SD453N/R..S30 Series T = 150°CJ Fig. 8 - Forward Power Loss CharacteristicsFig. 7 - Forward Power Loss Characteristics
Bulletin I2076 rev. A 09/94 www.irf.com 100 0 400 800 1200 1600 2000 T = 25°CJ Forward Recovery (V) T = 150°CJ SD453N/R..S30 Series Rate Of Rise Of Forward Current - di/dt (A/us) I VFP 0.001 0.01 0.1 0.001 0.01 0.1 1 10 Square Wave Pulse Duration (s) thJCTransient Thermal Impedance Z (K/W) Steady State Value: R = 0.1 K/W (DC Operation) thJC SD453N/R..S20/S30 Series 100 0 400 800 1200 1600 2000 T = 25°CJ Forward Recovery (V) T = 150°CJ SD453N/R..S20 Series Rate Of Rise Of Forward Current - di/dt (A/us) I VFP Fig. 15 - Thermal Impedance ZthJC Characteristic Fig. 16 - Typical Forward Recovery Characteristics Fig. 17 - Typical Forward Recovery Characteristics 100 1000 10000 0 . 511 . 522 . 533 . 5 T = 25°CJ Instantaneous Forward Voltage (V) Instantaneous Forward Current (A) T = 150°CJ SD453N/R..S20 Series Fig. 14 - Forward Voltage Drop CharacteristicsFig. 13 - Forward Voltage Drop Characteristics 100 1000 10000 0.5 1 1.5 2 2.5 3 3.5 4 T = 25°CJ Instantaneous Forward Voltage (V) Instantaneous Forward Current (A) T = 150°CJ SD453N/R..S30 Series
Bulletin I2076 rev. A 09/94 www.irf.com 1E2 1E3 1E4 1E1 1E2 1E3 1E4 Pulse Basewidth (µs) 50 Hz 200 10000 100 4000 dv/dt = 1000V/us 4001000 2000 6000 Peak Forward Current (A) Sinusoidal Pulse 1500 3000 T = 70°C, V = 800VC RR M SD453N/R. .S20 Series tp 600 Fig. 25 - Frequency CharacteristicsFig. 24 - Maximum Total Energy Loss Per Pulse Characteristics 1E2 1E3 1E4 1E1 1E2 1E3 1E4 Pulse Basewidth (µs) Peak Forward Current (A) 10 joules per pulse dv/dt = 1000V/µs Sinusoidal Pulse 0.6 0.4 0.2 0.1 SD453N/R..S20 Series T = 150°C, V = 800VJ RRM tp Fig. 23 - Recovery Current CharacteristicsFig. 22 - Recovery Charge CharacteristicsFig. 21 - Recovery Time Characteristics 2.5 3.5 4.5 5.5 6.5 10 100 1000 Rate Of Fall Of Forward Current - di/dt (A/µs) Maximum Reverse Recovery Time - Trr (µs) 500 A 150 A I = 1000 A Sine Pulse FM SD453N/R..S30 Series T = 150 °C, V > 100VJ r 200 400 600 800 1000 1200 0 50 100 150 200 250 300 Maximum Reverse Recovery Charge - Qrr (µC) Rate Of Fall Of Forward Current - di/dt (A/µs) 500 A 150 A I = 1000 A Sine Pulse FM SD453N/R..S30 Series T = 150 °C; V > 100VrJ 100 150 200 250 300 350 400 450 500 550 0 50 100 150 200 250 300 Maximum Reverse Recovery Current - Irr (A) 500 A Rate Of Fall Of Forward Current - di/dt (A/µs) 150 A I = 1000 A Sine Pulse FM SD453N/R..S30 Series T = 150 °C; V > 100VJ r 100 150 200 250 300 350 400 450 0 50 100 150 200 250 300 Maximum Reverse Recovery Current - Irr (A) 500 A Rate Of Fall Of Forward Current - di/dt (A/µs) 150 A I = 1000 A Sine Pulse FM SD453N/R..S20 Series T = 150 °C; V > 100VJ r 100 200 300 400 500 600 700 800 0 50 100 150 200 250 300 Maximum Reverse Recovery Charge - Qrr (µC) Rate Of Fall Of Forward Current - di/dt (A/µs) 500 A 150 A I = 1000 A Sine Pu lse FM SD453N/R..S20 Series T = 150 °C; V > 100VJ r 2.5 3.5 4.5 5.5 10 100 1000 Rate Of Fall Of Forward Current - di/dt (A/µs) Maximum Reverse Recovery Time - Trr (µs) 500 A 150 A I = 1000 A Sine Pu lse FM SD453N/R..S20 Series T = 150 °C; V > 100VJ r Fig. 18 - Recovery Time CharacteristicsFig. 19 - Recovery Charge CharacteristicsFig. 20 - Recovery Current Characteristics
Bulletin I2076 rev. A 09/94 www.irf.com 1E2 1E3 1E4
1 E 11 E 21 E 31 E 4
Pulse Basewidth (µs) 10 joules per pulse Trapezoidal Pulse Peak Forward Current (A) 0.6 0.4 SD453N/R..S20 Series dv/dt = 1000V/µs di/dt = 100A/µs T = 150°C, V = 800VJ RRM tp 0.2 1E2 1E3 1E4 1E1 1E2 1E3 1E4 Pulse Basewidth (µs) Trapezoidal Pulse
50 Hz100200400
Peak Forward Current (A) T = 70°C, V = 800V dv/dt = 1000V/us, di/dt = 100A/us RR MC SD453N/R..S20 Series tp 1E2 1E3 1E4 1E1 1E2 1E3 1E4 1 2 Pulse Basewidth (µs) Peak Forward Current (A) 10 joules per pulse dv/dt = 1000V/µs Sinusoidal Pulse 0.8 0.6 0.4 0.2 SD453N/R...S30 Series T = 150°C, V = 800VJ RRM tp 0.1 1E2 1E3 1E4 1E1 1E2 1E3 1E4 Pulse Basewidth (µs)
50 Hz200 100
dv/dt = 1000V/us 400 1000 2000 6000 Peak Forward Current (A) Sinusoidal Pulse 1500 3000 SD453N/R..S30 Series 6000 T = 70°C, V = 800VRR MC tp Fig. 30 - Maximum Total Energy Loss Per Pulse Characteristics Fig. 31 - Frequency Characteristics Fig. 28 - Maximum Total Energy Loss Per Pulse Characteristics Fig. 29 - Frequency Characteristics 1E2 1E3 1E4 1E1 1E2 1E3 1E4 Pulse Basewidth (µs) 10 joules per pulse T rapezoidal Pulse Peak Forward Current (A) 0.8 0.6 SD453N/R..S20 Series T = 150°C, V = 800VJ RRM dv/dt = 1000V/µs; di/dt = 300A/µstp 0.4 Fig. 26 - Maximum Total Energy Loss Per Pulse Characteristics Fig. 27 - Frequency Characteristics 1E2 1E3 1E4 1E1 1E2 1E3 1E4 Pulse Basewidth (µs) Trapezoidal Pulse Peak Forward Current (A) SD453N/R..S20 Series T = 70°C, V = 800V dv/dt = 1000V/us, di/dt = 300A/us RRMC tp
Bulletin I2076 rev. A 09/94 www.irf.com 1E2 1E3 1E4 1E1 1E2 1E3 1E4 Pulse Basewidth (µs) Trapezoidal Pulse Peak Forward Current (A) SD453N/R..S30 Series T = 70°C, V = 800V dv/dt = 1000V/us, di/dt = 100A/us C RRM tp 1E2 1E3 1E4 1E1 1E2 1E3 1E4 Pulse Basewidth (µs) 10 joules per pulse Trapezoidal Pulse Peak Forward Current (A) SD453N/R..S30 Series T = 150°C, V = 800VJ RRM 0.8 0.6 dv/dt = 1000V/µs; di/dt = 100A/µstp 0.4 Fig. 34 - Maximum Total Energy Loss Per Pulse Characteristics Fig. 35 - Frequency Characteristics 1E2 1E3 1E4 Pulse Basewidth (µs) 10 joules per pulse Trapezoidal Pulse Peak Forward Current (A) 0.8 SD 453N/R..S30 Series T = 150°C, V = 800VJ RR M 0.6 dv/dt = 1000V/µs; di/dt = 300A/µstp 1E2 1E3 1E4 Pulse Basewidth (µs) T rapez oidal Pu lse
50 Hz100200
Peak Forward Current (A) dv/dt = 1000V/us, di/dt = 300A/us T = 7 0°C, V = 800V SD453N/R..S30 Series C RR M tp Fig. 33 - Frequency CharacteristicsFig. 32 - Maximum Total Energy Loss Per Pulse Characteristics