IXGT40N120B2D1 IXYS, IXGT40N120B2D1 Datasheet
IXGT40N120B2D1
Specifications of IXGT40N120B2D1
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IXGT40N120B2D1 Summary of contents
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... I = 250μ GE(th CES CE CES 0V ± 20V GES 40A 15V, Note 1 CE(sat © 2009 IXYS CORPORATION, All RrightsRreserved IXGH40N120B2D1 IXGT40N120B2D1 Maximum Ratings 1200 Ω 1200 ± 20 ± 200 Ω ≤ @ 0.8 V CES 380 -55 ... +150 150 -55 ... +150 300 260 1.13/ Characteristic Values Min ...
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... Characteristic Values Min. Typ 150°C 1 100° 100°C 100 J (Clamp) > 0.8 • CES 4,931,844 5,049,961 5,237,481 6,162,665 5,017,508 5,063,307 5,381,025 6,259,123 B1 5,034,796 5,187,117 5,486,715 6,306,728 B1 IXGH40N120B2D1 IXGT40N120B2D1 TO-247 (IXGH) Outline Max Terminals Gate 3 - Source ns Dim. Millimeter Min 4 2 2.2 270 ...
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... GE 13V 1.5 11V 1.4 1.3 9V 1.2 1.1 7V 1.0 0.9 0.8 5V 0.7 0.6 2.5 3.0 3.5 4.0 4.5 120 T = 25ºC J 100 IXGH40N120B2D1 IXGT40N120B2D1 Fig. 2. Extended Output Characteristics @ 25º 15V GE 13V 11V Volts CE Fig. 4. Dependence of V Junction Temperature V = 15V 40A 20A C ...
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... IXYS Reserves the Right to Change Limits, Test Conditions and Dimensions 40ºC 25ºC 125º 100 110 120 ies oes res Fig. 11. Maximum Transient Thermal Impedance 0.01 Pulse Width - Seconds IXGH40N120B2D1 IXGT40N120B2D1 Fig. 8. Gate Charge 600V 40A NanoCoulombs G Fig. 10. Reverse-Bias Safe Operating Area T = 125º ...
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... I = 20A, 80A C 160 240 120 210 85 95 105 115 125 IXGH40N120B2D1 IXGT40N120B2D1 Fig. 13. Inductive Switching Energy Loss vs. Junction Temperature off 2Ω 15V 960V 20A ...
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... I - Amperes C IXYS Reserves the Right to Change Limits, Test Conditions and Dimensions. 120 30 29 110 I = 80A 28 C 100 40A 20A IXGH40N120B2D1 IXGT40N120B2D1 Fig. 19. Inductive Turn-on Switching Times vs. Junction Temperature d(on 2Ω 15V 960V Degrees Centigrade 80A 40A 20A 105 115 125 IXYS REF: G_40N120B2(6ZC) 3-30-06 ...
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... Fig. 22. Reverse recovery charge Q F versus -di / 60A 30A 15A 160 0 200 400 600 -di /dt F Fig. 25. Recovery time t rr 0.01 0.1 IXGH40N120B2D1 IXGT40N120B2D1 100° 300V 60A 30A 15A A/μs 1000 0 200 400 /dt F Fig. 23. Peak reverse current I r versus - 100°C = 100° ...