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INSULATED GATE BIPOLAR TRANSISTOR (on) Punch Through IGBT Technol


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94741
INSULATED GATE BIPOLAR TRANSISTOR
(on) Punch Through IGBT Technology. 10µs Short Circuit Capability. Square RBSOA. Positive (on) Temperature Coefficient. Maximum Junction Temperature rated 150°C.
IRGS30B60K IRGSL30B60K
VCES 600V 30A, TC=100°C
10µs, TJ=150°C
n-channel
VCE(on) typ. 1.95V
Benefits
Benchmark Efficiency Motor Control. Rugged Transient Performance. EMI. Excellent Current Sharing Parallel Operation.
IRGS30B60K
TO-262 IRGSL30B60K
Absolute Maximum Ratings
Parameter
VCES 25°C 100°C VISOL 25°C TSTG Collector-to-Emitter Voltage Continuous Collector Current Continuous Collector Current Pulse Collector Current (Ref.Fig.C.T.5) Clamped Inductive Load current
Max.
Units
2500 +150 (0.063 (1.6mm) from case) (1.1
Isolation Voltage, Terminal Case, min. Gate-to-Emitter Voltage Maximum Power Dissipation Operating Junction Storage Temperature Range Soldering Temperature, sec. Mounting Torque, 6-32 Screw
100°C Maximum Power Dissipation
Thermal Mechanical Characteristics
Parameter
Junction-to-Case- IGBT Case-to-Sink, flat, greased surface Weight Junction-to-Ambient (PCB Mount, Steady State)
Min.
Typ.
0.50 1.44
Max.
0.41
Units
°C/W
www.irf.com
07/31/03
IRGS/SL30B60K
Electrical Characteristics 25°C (unless otherwise specified)
Parameter
V(BR)CES V(BR)CES/TJ VCE(on) VGE(th) VGE(th)/TJ ICES IGES
Collector-to-Emitter Breakdown Voltage Temperature Coeff. Breakdown Voltage Collector-to-Emitter Voltage
Min. Typ. Max. Units
0.40 1.95 2.40 1000
Conditions
Ref.Fig.
Gate Threshold Voltage Threshold Voltage temp. coefficient Forward Transconductance Zero Gate Voltage Collector Current Gate-to-Emitter Leakage Current
500µA V/°C (25°C-150°C) 30A, 15V, 25°C 2.35 2.75 30A, 15V, 150°C VGE, 250µA mV/°C VGE, 1.0mA (25°C-150°C) 50V, 50A, 80µs 600V 600V, 150°C 2000 ±100 ±20V,
5,6,7 8,9,10 8,9,10
Switching Characteristics 25°C (unless otherwise specified)
Parameter
Eoff Etot td(on) td(off) Eoff Etot td(on) td(off) Cies Coes Cres RBSOA SCSOA (Peak) Total Gate Charge (turn-on) Gate-to-Emitter Charge (turn-on) Gate-to-Collector Charge (turn-on) Turn-On Switching Loss Turn-Off Switching Loss Total Switching Loss Turn-On delay time Rise time Turn-Off delay time Fall time Turn-On Switching Loss Turn-Off Switching Loss Total Switching Loss Turn-On delay time Rise time Turn-Off delay time Fall time Internal Emitter Inductance Input Capacitance Output Capacitance Reverse Transfer Capacitance Reverse Bias Safe Operating Area Short Circuit Safe Operating Area Peak Short Circuit Collector Current
Min. Typ. Max. Units
1175 1575 1085 1150 1350 1785 2435 1750 FULL SQUARE
Conditions
400V 30A, 400V 15V, 200µH 25°C 30A, 400V 15V, 200µH 25°C
Ref.Fig.
30A, 400V 15V, 200µH 150°C 30A, 400V 15V, 200µH 150°C
12,14 WF1,WF2 13,15
Measured from package 1.0MHz 150°C, 120A, 600V VCC=500V,VGE +15V 0V,RG 150°C, 600V, VCC=360V,VGE +15V
Note page
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IRGS/SL30B60K
Ptot
(°C)
(°C)
Fig. Maximum Collector Current Case Temperature
Fig. Power Dissipation Case Temperature
1000
1000
1000 10000
1000
Fig. Forward 25°C; 150°C
Fig. Reverse Bias 150°C; =15V
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IRGS/SL30B60K
8.0V
8.0V
Fig. Typ. IGBT Output Characteristics -40°C; 80µs
Fig. Typ. IGBT Output Characteristics 25°C; 80µs
8.0V
Fig. Typ. IGBT Output Characteristics 150°C; 80µs
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IRGS/SL30B60K
Fig. Typical -40°C
Fig. Typical 25°C
25°C 150°C
150°C 25°C
Fig. Typical 150°C
Fig. Typ. Transfer Characteristics 50V; 10µs
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IRGS/SL30B60K
3000 2500 2000
Energy (µJ)
1000
EOFF 1500 1000
Swiching Time (ns)
tdOFF
Fig. Typ. Energy Loss 150°C; L=200µH; VCE= 400V, VGE=
Fig. Typ. Switching Time 150°C; L=200µH; VCE= 400V VGE=
3000
10000
2500
Swiching Time (ns)
2000
1000
Energy (µJ)
EOFF
1500
tdOFF
1000
tdON
Fig. Typ. Energy Loss 150°C; L=200µH; VCE= 400V ICE= 30A; VGE=
Fig. Typ. Switching Time 150°C; L=200µH; VCE= 400V ICE= 30A; VGE=
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IRGS/SL30B60K
10000
Cies
200V 400V
Capacitance (pF)
1000
Coes
Cres
Total Gate Charge (nC)
Fig. Typ. Capacitance VGE= 1MHz
Fig. Typical Gate Charge 30A; 600µH
Thermal Response thJC
0.50 0.20 0.10 0.05 0.02 0.01
0.01
(°C/W) (sec) 0.200 0.000428 0.209 0.013031
i/Ri i/Ri
0.001
SINGLE PULSE THERMAL RESPONSE
0.0001 1E-006 1E-005 0.0001 0.001 0.01
Notes: Duty Factor t1/t2 Peak Zthjc
Rectangular Pulse Duration (sec)
Maximum Transient Thermal Impedance, Junction-to-Case (IGBT)
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IRGS/SL30B60K
480V
Fig.C.T.1 Gate Charge Circuit (turn-off)
Fig.C.T.2 RBSOA Circuit
diode clamp
Driver
360V
DRIVER
Fig.C.T.3 S.C.SOA Circuit
Fig.C.T.4 Switching Loss Circuit
Fig.C.T.5 Resistive Load Circuit
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IRGS/SL30B60K
TEST CURRENT
test current
Loss
test current
Eoff Loss
-100 -0.20
0.00
0.20
0.40
0.60
0.80
-100 15.90
16.00
16.10 Time (µs)
16.20
16.30
Time(µs)
Fig. WF1- Typ. Turn-off Loss Waveform 150°C using Fig. CT.4
Fig. WF2- Typ. Turn-on Loss Waveform 150°C using Fig. CT.4
-5.00
0.00
5.00 time (µS)
10.00
15.00
Fig. WF3- Typ. Waveform 150°C using Fig. CT.3
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IRGS/SL30B60K
D2Pak Package Outline
Dimensions shown millimeters (inches)
D2Pak Part Marking Information
THIS IRF530S WITH CODE 8024 EMBLED 2000 SEMBLY LINE INTERNATIONAL RECTIFIER LOGO EMBLY CODE PART NUMBER F530S CODE YEAR 2000 WEEK LINE
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IRGS/SL30B60K
TO-262 Package Outline
Dimensions shown millimeters (inches)
IGBT GATE COLLECTOR EMITTER COLLECTOR
TO-262 Part Marking Information
EXAMPLE: IRL3103L CODE 1789 EMBLED 1997 EMBLY LINE ERNATIONAL RECTIFIER LOGO SEMBLY CODE PART NUMBER
DATE CODE YEAR 1997 WEEK LINE
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IRGS/SL30B60K
D2Pak Tape Reel Information
Dimensions shown millimeters (inches)
1.60 (.063) 1.50 (.059) 4.10 (.161) 3.90 (.153)
1.60 (.063) 1.50 (.059) 0.368 (.0145) 0.342 (.0135)
FEED DIRECTION 1.85 (.073)
1.65 (.065)
11.60 (.457) 11.40 (.449)
15.42 (.609) 15.22 (.601)
24.30 (.957) 23.90 (.941)
10.90 (.429) 10.70 (.421) 1.75 (.069) 1.25 (.049) 16.10 (.634) 15.90 (.626) 4.72 (.136) 4.52 (.178)
FEED DIRECTION
13.50 (.532) 12.80 (.504)
27.40 (1.079) 23.90 (.941)
330.00 (14.173) MAX.
60.00 (2.362) MIN.
NOTES COMFORMS EIA-418. CONTROLLING DIMENSION: MILLIMETER. DIMENSION MEASURED HUB. INCLUDES FLANGE DISTORTION OUTER EDGE.
26.40 (1.039) 24.40 (.961)
30.40 (1.197) MAX.
Notes: (VCES), 15V, 28µH, This applied D2Pak, when mounted square FR-4 G-10 Material
recommended footprint soldering techniques refer application note #AN-994.
Energy losses include "tail" diode reverse recovery. Data specifications subject change without notice. This product been designed qualified Industrial market. Qualification Standards found IR's site.
WORLD HEADQUARTERS: Kansas St., Segundo, California 90245, Tel: (310) 252-7105 Fax: (310) 252-7903 Visit www.irf.com sales contact information. 07/03
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