15ETL06 IRF | Alldatasheet
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www.irf.com Absolute Maximum Ratings VRRM Peak Repetitive Reverse Voltage 600 V IF(AV) Average Rectified Forward Current @ TC = 154°C 15 A @ TC = 120°C (FULLPACK) IFSM Non Repetitive Peak Surge Current @ TJ = 25°C 250 IFM Peak Repetitive Forward Current 30 TJ, TSTG Operating Junction and Storage Temperatures - 65 to 175 °C Parameters Max Units
15ETL06, 15ETL06S, 15ETL06-1, 15ETL06FP Bulletin PD-20695 rev. B 02/04 www.irf.com VBR, Vr Breakdown Voltage, 600 - - V I R = 100µA Blocking Voltage VF Forward Voltage - 0.99 1.05 V I F = 15A, TJ = 25°C - 0.85 0.92 V I F = 15A, TJ = 150°C IR Reverse Leakage Current - 0.1 10 µA V R = VR Rated - 15 120 µA T J = 150°C, VR = VR Rated CT Junction Capacitance - 20 - pF V R = 600V LS Series Inductance - 8.0 - nH Measured lead to lead 5mm from package body Electrical Characteristics @ TJ = 25°C (unless otherwise specified) Parameters Min Typ Max Test ConditionsUnits trr Reverse Recovery Time - 60 120 ns I F = 1A, diF/dt = 100A/µs, VR = 30V - 190 270 I F = 15A, diF/dt = 100A/µs, VR = 30V - 220 - T J = 25°C - 320 - T J = 125°C IRRM Peak Recovery Current - 19 - A T J = 25°C -2 6 - T J = 125°C Qrr Reverse Recovery Charge - 2.2 - µC T J = 25°C Dynamic Recovery Characteristics @ TC = 25°C (unless otherwise specified) IF = 15A diF /dt = 200A/µs VR = 390V Parameters Min Typ Max Test ConditionsUnits Parameters Min Typ Max Units TJ Max. Junction Temperature Range - - 175 °C TStg Max. Storage Temperature Range - 65 - 175 RthJC Thermal Resistance, Junction to Case Per Leg - 1.0 1.3 °C/W Fullpack (Per Leg) - 3.0 3.5 RthJA Thermal Resistance, Junction to Ambient Per Leg - - 70 RthCS Thermal Resistance, Case to Heatsink - 0.5 - Weight - 2.0 - g - 0.07 - (oz) Mounting Torque 6.0 - 12 Kg-cm 5.0 - 10 lbf.in Thermal - Mechanical Characteristics c Typical Socket Mount d Mounting Surface, Flat, Smooth and Greased d c
15ETL06, 15ETL06S, 15ETL06-1, 15ETL06FP Bulletin PD-20695 rev. B 02/04 www.irf.com Fig. 1 - Typical Forward Voltage Drop Characteristics Fig. 4 - Max. Thermal Impedance Z thJC Characteristics Forward Voltage Drop - VFM (V) Instantaneous Forward Current - I F (A) Reverse Voltage - VR (V) Reverse Voltage - VR (V) Junction Capacitance - C T ( p F ) t1, Rectangular Pulse Duration (Seconds) Thermal Impedance Z thJC (°C/W) Fig. 3 - Typical Junction Capacitance Vs. Reverse Voltage Reverse Current - I R (µA) Fig. 2 - Typical Values Of Reverse Current Vs. Reverse Voltage 100 T = 175˚C T = 150˚C T = 25˚C J J J 100 0 100 200 300 400 500 600 T = 25˚CJ 0.01 0.1 Single Pulse (Thermal Resistance) D = 0.50 D = 0.20 D = 0.10 D = 0.05 D = 0.02 D = 0.01 2t PDM Notes: 1. Duty factor D = t1/ t2 2. Peak Tj = Pdm x ZthJC + Tc 0.001 0.01 0.1 100 0 100 200 300 400 500 600 100˚C 75˚C 50˚C 25˚C Tj = 175˚C 125˚C 150˚C
15ETL06, 15ETL06S, 15ETL06-1, 15ETL06FP Bulletin PD-20695 rev. B 02/04 www.irf.com Fig. 6 - Max. Allowable Case Temperature Vs. Average Forward Current Fig. 8 - Forward Power Loss Characteristics Average Forward Current - IF(AV) (A) Average Forward Current - IF(AV) (A) Allowable Case Temperature (°C)Average Power Loss ( Watts ) 0 5 10 15 20 25 DC RMS Limit D = 0.01 D = 0.02 D = 0.05 D = 0.1 D = 0.2 D = 0.5 130 140 150 160 170 180 0 5 10 15 20 25 DC see note (3) Square wave (D = 0.50) Rated Vr applied Fig. 5 - Max. Thermal Impedance Z thJC Characteristics (FULLPACK) t1, Rectangular Pulse Duration (Seconds) Thermal Impedance Z thJC (°C/W) Fig. 7 - Max. Allowable Case Temperature Vs. Average Forward Current (FULLPACK) Average Forward Current - IF(AV) (A) Allowable Case Temperature (°C) (3) Formula used: TC = TJ - (Pd + PdREV) x RthJC ; Pd = Forward Power Loss = IF(AV) x VFM @ (IF(AV) / D) (see Fig. 8); PdREV = Inverse Power Loss = VR1 x IR (1 - D); IR @ VR1 = rated VR 0.01 0.1 Single Pulse (Thermal Resistance) D = 0.50 D = 0.20 D = 0.10 D = 0.05 D = 0.02 D = 0.01 PDM Notes: 1. Duty factor D = t1/ t2 2. Peak Tj = Pdm x ZthJC + Tc 100 120 140 160 180 0 5 10 15 20 25 DC Square wave (D = 0.50) 80% Rated Vr applied see note (3)
15ETL06, 15ETL06S, 15ETL06-1, 15ETL06FP Bulletin PD-20695 rev. B 02/04 www.irf.com Fig. 10 - Typical Stored Charge vs. di F /dtFig. 9 - Typical Reverse Recovery vs. di F /dt trr ( ns ) Qrr ( nC ) di F /dt (A/µs )di F /dt (A/µs ) 1000 2000 3000 4000 5000 6000 7000 8000 9000 100 1000 IF = 30 A IF = 15 A R J J V = 390V T = 125˚C T = 25 ˚C 100 200 300 400 500 100 1000 IF = 30 A IF = 15 A R J J V = 390V T = 125˚C T = 25 ˚C IRFP250 D.U.T. L = 70µH V = 200VR 0.01 Ω G D S dif/dt ADJUST Fig. 11- Reverse Recovery Parameter Test Circuit Reverse Recovery Circuit diF /dt
15ETL06, 15ETL06S, 15ETL06-1, 15ETL06FP Bulletin PD-20695 rev. B 02/04 www.irf.com 3.78 (0.15) 3.54 (0.14) 10.54 (0.41) MAX. DIA. 15.24 (0.60) 14.84 (0.58) 2.92 (0.11) 2.54 (0.10) TERM 2 14.09 (0.55) 13.47 (0.53) 3.96 (0.16) 3.55 (0.14) 0.94 (0.04) 0.69 (0.03) 4.57 (0.18) 4.32 (0.17) 3 0.61 (0.02) MAX. 5.08 (0.20) REF. 1.32 (0.05) 1.22 (0.05) 6.48 (0.25) 6.23 (0.24) 0.10 (0.004) 1.40 (0.05) 1.15 (0.04) 2.89 (0.11) 2.64 (0.10) 2.04 (0.080) MAX. Conforms to JEDEC Outline TO-220AC Dimensions in millimeters and (inches) Outline Table Anode 1 3 Cathode Base Cathode ta tb trr Qrr IF IRRM I RRM0.5 di(rec)M/dt
0.75 IRRM
Fig. 12 - Reverse Recovery Waveform and Definitions diF /dt 4. Qrr - Area under curve defined by t rr and IRRM 5. di (rec) M / dt - Peak rate of change of current during t b portion of t rr 1. diF/dt - Rate of change of current through zero crossing 2. IRRM - Peak reverse recovery current 3. trr - Reverse recovery time measured from zero crossing point of negative going I F to point where a line passing through 0.75 IRRM and 0.50 IRRM extrapolated to zero current Q rr = t rr x I RRM
15ETL06, 15ETL06S, 15ETL06-1, 15ETL06FP Bulletin PD-20695 rev. B 02/04 www.irf.com 10.16 (0.40) REF. 8.89 (0.35) 4.57 (0.18) 4.32 (0.17) 0.61 (0.02) MA X. 5.08 (0.20) RE F. 1.32 (0.05) 1.22 (0.05) 6.47 (0.25) 6.18 (0.24)93° REF. 2.61 (0.10) 2.32 (0.09) 5.28 (0.21) 4.78 (0.19) 4.69 (0.18) 4.20 (0.16) 0.55 (0.02) 0.46 (0.02) 14.73 (0.58) 15.49 (0.61) 1.40 (0.055) 1.14 (0.045)3X 0.93 (0.37) 0.69 (0.27)2X 11.43 (0.45) 17.78 (0.70) 8.89 (0.35) 3.81 (0.15) 2.08 (0.08) 2X 2.54 (0.10) MINIMUM RECOMMENDED FOOTPRINT Modified JEDEC outline TO-262 Dimensions in millimeters and (inches) NC Anode 1 3 N/C Outline Table Conforms to JEDEC Outline D2PAK Dimensions in millimeters and (inches) Anode 1 3 Base Cathode N/C
15ETL06, 15ETL06S, 15ETL06-1, 15ETL06FP Bulletin PD-20695 rev. B 02/04 www.irf.com 5°± 0.5° 3.1 3.3 13.5 13.7 R0.5 R0.7 (2 PLACES) 3.1 HOLE ø 3.4 10.4 0.7 4.6 TYP. 5°± 0.5° 4.8 0.9 2.54 TYP. 2.54 10.6 16.4 16.0 3.7 7.1 0.48 2.85 2.8 1.4 1.15 15.4 3.2 6.7 15.8 1.05 1.3 0.44 2.65 2.6 TYP 10° Outline Table Ordering Information Table Device Code 1 524 3 1 - Current Rating (15 = 15A) 2 - E = Single Diode 3 - T = TO-220, D 2Pak 4 - L = Ultra-low V F HyperFast Recovery 5 - Voltage Rating (06 = 600V) 6 - "-1" = TO-262 Option S= D 2Pak None = TO-220AC FP = TO-220 FULLPACK
15 E T L 06 - 1
Conforms to JEDEC Outline TO-220 FULLPACK Dimensions in millimeters and (inches) Anode 1 3 Cathode
15ETL06, 15ETL06S, 15ETL06-1, 15ETL06FP Bulletin PD-20695 rev. B 02/04 www.irf.com IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, USA Tel: (310) 252-7105 TAC Fax: (310) 252-7309 Visit us at www.irf.com for sales contact information. 02/04 Data and specifications subject to change without notice. This product has been designed and qualified for Industrial Level. Qualification Standards can be found on IR's Web site.