IXTH36N50P IXYS | Alldatasheet

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Features

l International standard packages l Unclamped Inductive Switching (UIS) rated l Low package inductance - easy to drive and to protect TO-247 (IXTH) (TAB) TO-268 (IXTT) G S D (TAB) G S D PLUS220 (IXTV) TO-3P (IXTQ) G D S (TAB) PLUS220 SMD(IXTV..S) D (TAB) D (TAB) G S

IXYS reserves the right to change limits, test conditions, and dimensions. IXTH 36N50P IXTQ 36N50P IXTT 36N50P IXTV36N50P IXTV 36N50PS IXYS MOSFETs and IGBTs are covered by 4,835,592 4,931,844 5,049,961 5,237,481 6,162,665 6,404,065 B1 6,683,344 6,727,585 one or moreof the following U.S. patents: 4,850,072 5,017,508 5,063,307 5,381,025 6,259,123 B1 6,534,343 6,710,405B2 6,759,692 4,881,106 5,034,796 5,187,117 5,486,715 6,306,728 B1 6,583,505 6,710,463 6,771,478 B2 Symbol Test Conditions Characteristic Values (TJ = 25° C unless otherwise specified) Min. Typ. Max. gfs VDS= 20 V; ID = 0.5 ID25, pulse test 23 36 S Ciss 5500 pF Coss VGS = 0 V, VDS = 25 V, f = 1 MHz 510 pF Crss 40 pF td(on) 25 ns tr VGS = 10 V, VDS = 0.5 VDSS, ID = ID25 27 ns td(off) RG = 3 Ω (External) 75 ns tf 21 ns Qg(on) 85 nC Qgs VGS= 10 V, VDS = 0.5 VDSS, ID = 0.5 ID25 30 nC Qgd 31 nC RthJC 0.23 ° C/W RthCS (TO-247 and TO-3P) 0.21 ° C/W (PLUS220) 0.21 ° C/W Source-Drain Diode Characteristic Values (TJ = 25° C unless otherwise specified) Symbol Test Conditions Min. Typ. Max. IS VGS = 0 V 36 A ISM Repetitive 108 A VSD IF = IS, VGS = 0 V, 1.5 V Pulse test, t ≤ 300 µs, duty cycle d ≤ 2 % trr IF = 25 A, -di/dt = 100 A/ µs 400 ns VR = 100 V, VGS = 0 V Fig. 2. E xtended Output Characteristics @ 25 ºC 0 2 4 6 8 1 01 21 41 61 82 02 22 4 VD S - Volts I D - Amperes VGS = 10V 5.5V 6.5V Fig. 1. Output Characteristics @ 25 ºC 01234567 VD S - Volts I D - Amperes VGS = 10V 5.5V Characteristic Curves

© 2006 IXYS All rights reserved IXTH 36N50P IXTQ 36N50P IXTT 36N50P IXT V36N50P IXTV 36N50PS Fig. 3. Output Characteristics @ 125 ºC 02468 1 0 1 2 1 4 1 6 VD S - Volts I D - Amperes VGS = 10V 4.5V 5.5V Fig. 4. RDS(on ) Norm alized to I D = 18A Value vs. Junction Tem perature 0.4 0.7 1.3 1.6 1.9 2.2 2.5 2.8 3.1 -50 -25 0 25 50 75 100 125 150 TJ - Degrees Centigrade R D S ( o n ) - Normalized ID = 36A ID = 18A VGS = 10V Fig. 6. Drain Current vs. Case Temperature -50 -25 0 25 50 75 100 125 150 TC - Degrees Centigrade I D - Amperes Fig. 5. RDS(on) Norm alized to ID = 18A Value vs. Drain Current 0.6 1.4 1.8 2.2 2.6 3.4 0 1 02 03 04 05 06 07 08 0 I D - Amperes R D S ( o n ) - Normalized TJ = 125ºC TJ = 25ºC VGS = 10V Fig. 7. Input Admittance 44 . 555 . 566 . 57 VG S - Volts I D - Amperes TJ = 125ºC 25ºC -40ºC Fig. 8. Transconductance 0 1 02 03 04 05 06 07 08 09 0 I D - Amperes g f s - Siemens TJ = -40ºC 25ºC 125ºC

IXYS reserves the right to change limits, test conditions, and dimensions. IXTH 36N50P IXTQ 36N50P IXTT 36N50P IXTV36N50P IXTV 36N50PS Fig. 11. Capacitance 100 1000 10000 0 5 10 15 20 25 30 35 40 VD S - Volts Capacitance - picoFarads Ciss Coss Crssf = 1 M Hz Fig. 10. Gate Charge 0 1 02 03 04 05 06 07 08 09 0 1 0 0 Q G - nanoCoulombs VG S - Volts VDS = 250V ID = 18A IG = 10mA Fig. 9. Source Current vs. Source-To-Drain Voltage 100 VS D - Volts I S - Amperes TJ = 125ºC TJ = 25ºC Fig. 12. Forw ard-Bias Safe Operating Area 100 1000 10 100 1000 VD S - Volts I D - Amperes 100µs 1ms DC TJ = 150ºC TC = 25ºC RDS(on) Limit 10ms 25µs Fig. 13. Maximum Transient Thermal Resistance 0.01 0.10 1.00 0.0001 0.001 0.01 0.1 1 10 Pulse Width - Seconds R ( t h ) J C - ºC / W

© 2006 IXYS All rights reserved TO-247 AD (IXTH) Outline Terminals: 1 - Gate 2 - Drain 3 - Source TO-268 (IXTT) Outline IXTH 36N50P IXTQ 36N50P IXTT 36N50P IXTV 36N50P IXTV 36N50PS PLUS220SMD (IXTV_S) Outline PLUS220 (IXTV) Outline TO-3P (IXTQ) Outline 1 2 3 Dim. Millimeter Inches Min. Max. Min. Max. A 4.7 5.3 .185 .209 A1 2.2 2.54 .087 .102 A2 2.2 2.6 .059 .098 b 1.0 1.4 .040 .055 b1 1.65 2.13 .065 .084 b2 2.87 3.12 .113 .123 C .4 .8 .016 .031 D 20.80 21.46 .819 .845 E 15.75 16.26 .610 .640 e 5.20 5.72 0.205 0.225 L 19.81 20.32 .780 .800 L1 4.50 .177 ∅P 3.55 3.65 .140 .144 Q 5.89 6.40 0.232 0.252 R 4.32 5.49 .170 .216 S 6.15 BSC 242 BSC