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STGP10NB60S STGP10NB60SFP- STGB10NB60S N-CHANNEL 10A - 600V - TO-220/TO-220FP/DPAK PowerMESHTM IGBT Table 1: General Features TYPE STGP10NB60S STGP10NB60SFP STGB10NB60S s Figure 1: Package IC @100C 10 A 10 A 10 A 1 2 VCES 600 V 600 V 600 V VCE(sat) (Max) @25C < 1.7 V < 1.7 V < 1.7 V 3 1 2 3 s s s HIGHT INPUT IMPEDANCE (VOLTAGE DRIVEN) VERY LOW ON-VOLTAGE DROP( Vcesat ) HIGH CURRENT CAPABILITY OFF LOSSES INCLUDE TAIL CURRENT TO-220FP TO-220 DESCRIPTION Using the latest high voltage technology based on a patented strip layout, STMicroelectronics has designed an advanced family of IGBTs, the PowerMESHTM IGBTs, with outstanding performances. The suffix "S" identifies a family optimized achieve minimum on-voltage drop for low frequency applications (<1kHz). 3 1 DPAK Figure 2: Internal Schematic Diagram APPLICATIONS LIGHT DIMMER s STATIC RELAYS s MOTOR CONTROL s Table 2: Order Codes SALES TYPE STGP10NB60S STGP10NB60SFP STGB10NB60ST4 MARKING GP10NB60S GP10NB60SFP GB10NB60S PACKAGE TO-220 TO-220FP DPAK PACKAGING TUBE TUBE TAPE & REEL Rev.2 February 2005 1/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S Table 3: Absolute Maximum ratings Symbol VCES VECR VGE IC IC ICM (1) PTOT VISO Tstg Tj Parameter Collector-Emitter Voltage (VGS = 0) Reverse Battery Protection Gate-Emitter Voltage Collector Current (continuous) at 25C Collector Current (continuous) at 100C Collector Current (pulsed) Total Dissipation at TC = 25C Derating Factor Insulation Withstand Voltage A.C.(t=1sec, Tc=25C) Storage Temperature Operating Junction Temperature 80 0.64 -- 55 to 150 Value TO-220/DPAK 600 20 20 20 10 80 25 0.20 2500 TO-220FP V V V A A A W W/C V C Unit (1)Pulse width limited by max. junction temperature. Table 4: Thermal Data Min. Rthj-case Thermal Resistance Junction-case TO-220 DPAK TO-220FP Rthj-amb TL Thermal Resistance Junction-ambient Maximum Lead Temperature for Soldering Purpose (1.6 mm from case, for 10 sec.) 300 Typ. Max. 1.56 5.0 62.5 Unit C/W C/W C/W C ELECTRICAL CHARACTERISTICS (TCASE =25C UNLESS OTHERWISE SPECIFIED) Table 5: Off Symbol VBR(CES) VBR(ECS) ICES IGES Parameter Collectro-Emitter Breakdown Voltage Emitter-Collector Breakdown Voltage Collector cut-off (VGE = 0) Gate-Emitter Leakage Current (VCE = 0) Test Conditions IC = 250 A, VGE = 0 IC = 1mA, VGE = 0 VGE = Max Rating, Tc=25C VCE = Max Rating, Tc=125C VGE = 20 V , VCE = 0 Min. 600 20 10 100 100 Typ. Max. Unit V V A A nA Table 6: On Symbol VGE(th) VCE(SAT) Parameter Gate Threshold Voltage Collector-Emitter Saturation Voltage Test Conditions VCE= VGE, IC= 250 A VGE=15 V, IC= 5 A, VGE=15 V, IC= 10 A, VGE=15 V, IC= 10 A, Tj= 125C Min. 2.5 1.15 1.35 1.25 Typ. Max. 5 1.7 Unit V V V V 2/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S ELECTRICAL CHARACTERISTICS (CONTINUED) Table 7: Dynamic Symbol gfs (1) Cies Coes Cres Qg Parameter Forward Transconductance Input Capacitance Output Capacitance Reverse Transfer Capacitance Total Gate Charge VCE = 400 V, IC = 10 A, VGE = 15 V (see Figure 20) Vclamp = 480 V , Tj = 150C RG = 1 k 20 Test Conditions VCE = 25 V , IC = 10 A VCE = 25 V, f= 1 MHz, VGE = 0 Min. Typ. 7 610 65 12 33 Max. Unit S pF pF pF nC ICL Latching Current A Table 8: Switching On Symbol td(on) tr (di/dt)on Eon (1) Parameter Turn-on Delay Time Current Rise Time Turn-on Current Slope Turn-on Switching Losses Test Conditions VCC = 480 V, IC = 10 A RG=1K VGE = 15 V (see Figure 18) VCC= 480 V, IC = 10 A RG=1K VGE =15 V,Tj = 125C Min. Typ. 0.7 0.46 8 0.6 Max. Unit s s A/s mJ Table 9: Switching Off Symbol tc tr(Voff) tf Eoff (**) tc tr(Voff) tf Eoff (**) Parameter Cross-Over Time Off Voltage Rise Time Current Fall Time Turn-off Switching Loss Cross-Over Time Off Voltage Rise Time Current Fall Time Turn-off Switching Loss Vcc = 480 V, IC = 10 A, RG = 10 , VGE = 15 V TJ = 125 C (see Figure 18) Test Conditions Vcc = 480 V, IC = 10 A, RG = 10 , VGE = 15 V TJ = 25 C (see Figure 18) Min. Typ. 2.2 1.2 1.2 5.0 3.8 1.2 1.9 8.0 Max. Unit s s s mJ s s s mJ (1)Pulse width limited by max. junction temperature. (**)Losses Include Also the Tail ( Jedec Standardization) 3/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S Figure 3: Output Characteristics Figure 6: Transfer Characteristics Figure 4: Transconductance Figure 7: Collector-Emitter On Voltage vs Temperature Figure 5: Collector-Emitter On Voltage vs Collector Current Figure 8: Gate Thereshold vs Temperature 4/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S Figure 9: Capacitance Variations Figure 12: Gate Charge vs Gate-Emitter Voltage Figure 10: Off Losses vs Gate Resistance Figure 13: Off Losses vs Temperature Figure 11: Normalized Breakdown Voltage vs Temperature Figure 14: Off Losses vs Collector Current 5/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S Figure 15: Thermal Impedance For TO-220/ DPAK Figure 17: Thermal Impedance For TO-220FP Figure 16: Turn-Off SOA 6/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S Figure 18: Test Circuit for Inductive Load Switching Figure 20: Gate Charge Test Circuit Figure 19: Switching Waveforms 7/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S TO-220 MECHANICAL DATA DIM. A b b1 c D E e e1 F H1 J1 L L1 L20 L30 mm. MIN. 4.40 0.61 1.15 0.49 15.25 10 2.40 4.95 1.23 6.20 2.40 13 3.50 16.40 28.90 3.75 2.65 3.85 2.95 0.147 0.104 TYP MAX. 4.60 0.88 1.70 0.70 15.75 10.40 2.70 5.15 1.32 6.60 2.72 14 3.93 MIN. 0.173 0.024 0.045 0.019 0.60 0.393 0.094 0.194 0.048 0.244 0.094 0.511 0.137 0.645 1.137 0.151 0.116 inch TYP. MAX. 0.181 0.034 0.066 0.027 0.620 0.409 0.106 0.202 0.052 0.256 0.107 0.551 0.154 oP Q 8/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S TO-220FP MECHANICAL DATA mm. MIN. 4.4 2.5 2.5 0.45 0.75 1.15 1.15 4.95 2.4 10 16 28.6 9.8 2.9 15.9 9 3 30.6 10.6 3.6 16.4 9.3 3.2 1.126 .0385 0.114 0.626 0.354 0.118 TYP MAX. 4.6 2.7 2.75 0.7 1 1.7 1.7 5.2 2.7 10.4 MIN. 0.173 0.098 0.098 0.017 0.030 0.045 0.045 0.195 0.094 0.393 0.630 1.204 0.417 0.141 0.645 0.366 0.126 inch TYP. MAX. 0.181 0.106 0.108 0.027 0.039 0.067 0.067 0.204 0.106 0.409 DIM. A B D E F F1 F2 G G1 H L2 L3 L4 L5 L6 L7 O A B L3 L6 L7 F1 D F G1 H F2 L2 L5 E 123 L4 G 9/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S TO-263 (D 2PAK) MECHANICAL DATA mm. DIM. MIN. A A1 b b2 c c2 D D1 E e H L L1 L2 L4 V2 13.10 1.30 1.15 1.27 2.70 0 4.32 0.00 0.71 1.15 0.46 1.22 8.89 8.01 10.04 2.54 13.70 1.70 1.39 1.77 3.10 8 0.515 0.051 0.045 0.050 0.106 0 10.28 9.02 TYP MAX. 4.57 0.25 0.91 1.40 0.61 1.40 9.40 MIN. 0.178 0.00 0.028 0.045 0.018 0.048 0.350 0.315 0.395 0.010 0.540 0.067 0.054 0.069 0.122 8 0.404 0.355 TYP. MAX. 0.180 0.009 0.350 0.055 0.024 0.055 0.370 inch 10/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S D2PAK FOOTPRINT TUBE SHIPMENT (no suffix)* TAPE AND REEL SHIPMENT (suffix "T4")* REEL MECHANICAL DATA DIM. A B C D G N T 1.5 12.8 20.2 24.4 100 30.4 26.4 13.2 mm MIN. MAX. 330 0.059 0.504 0795 0.960 3.937 1.197 BULK QTY 1000 1.039 0.520 inch MIN. MAX. 12.992 TAPE MECHANICAL DATA DIM. A0 B0 D D1 E F K0 P0 P1 P2 R T W mm MIN. 10.5 15.7 1.5 1.59 1.65 11.4 4.8 3.9 11.9 1.9 50 0.25 23.7 0.35 24.3 MAX. 10.7 15.9 1.6 1.61 1.85 11.6 5.0 4.1 12.1 2.1 inch MIN. 0.413 0.618 0.059 0.062 0.065 0.449 0.189 0.153 0.468 0.075 1.574 0.0098 0.0137 0.933 0.956 MAX. 0.421 0.626 0.063 0.063 0.073 0.456 0.197 0.161 0.476 0.082 BASE QTY 1000 * on sales type 11/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S Table 10: Revision History Date 10-Nov-2004 28-Feb-2005 Revision 1 2 Description of Changes First release Some values changed in table 6 12/13 STGP10NB60S - STGP10NB60SFP - STGB10NB60S Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics. The ST logo is a registered trademark of STMicroelectronics All other names are the property of their respective owners (c) 2005 STMicroelectronics - All Rights Reserved STMicroelectronics group of companies Australia - Belgium - Brazil - Canada - China - Czech Republic - Finland - France - Germany - Hong Kong - India - Israel - Italy - Japan Malaysia - Malta - Morocco - Singapore - Spain - Sweden - Switzerland - United Kingdom - United States of America 13/13 |
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