SGP15N120_09 INFINEON [Infineon Technologies AG], SGP15N120_09 Datasheet

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SGP15N120_09

Manufacturer Part Number
SGP15N120_09
Description
Fast IGBT in NPT-technology 40% lower Eoff compared to previous generation
Manufacturer
INFINEON [Infineon Technologies AG]
Datasheet
Fast IGBT in NPT-technology
• 40% lower E
• Short circuit withstand time – 10 µs
• Designed for:
• NPT-Technology offers:
• Qualified according to JEDEC
• Pb-free lead plating; RoHS compliant
• Complete product spectrum and PSpice Models :
Type
SGP15N120
SGW15N120
Maximum Ratings
Parameter
Collector-emitter voltage
DC collector current
T
T
Pulsed collector current, t
Turn off safe operating area
V
Gate-emitter voltage
Avalanche energy, single pulse
I
Short circuit withstand time
V
Power dissipation
T
Operating junction and storage temperature
Soldering temperature, 1.6mm (0.063 in.) from case for 10s
1
2
Power Semiconductors
C
C
C
C
CE
GE
J-STD-020 and JESD-022
Allowed number of short circuits: <1000; time between short circuits: >1s.
= 15A, V
= 25°C
= 100°C
= 25°C
≤ 1200V, T
= 15V, 100V≤ V
- Motor controls
- Inverter
- SMPS
- very tight parameter distribution
- high ruggedness, temperature stable behaviour
- parallel switching capability
CC
= 50V, R
off
j
≤ 150°C
compared to previous generation
1200V
1200V
CC
V
GE
≤1200V, T
CE
= 25Ω, start at T
p
limited by T
2
15A
15A
1
I
C
for target applications
j
≤ 150°C
jmax
1.5mJ
1.5mJ
j
E
= 25°C
off
http://www.infineon.com/igbt/
150°C
150°C
T
1
j
SGW15N120 PG-TO-247-3
GP15N120
Marking
V
I
I
-
V
E
t
P
T
-
Symbol
C
C p u l s
S C
j
C E
G E
A S
t o t
, T
s t g
PG-TO-220-3-1
Package
PG-TO-220-3-1
SGW15N120
SGP15N120
-55...+150
Value
1200
±20
198
260
30
15
52
52
85
10
Rev. 2.6
PG-TO-247-3
G
Unit
V
A
V
mJ
µs
W
°C
Nov. 09
C
E

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SGP15N120_09 Summary of contents

Page 1

Fast IGBT in NPT-technology • 40% lower E compared to previous generation off • Short circuit withstand time – 10 µs • Designed for: - Motor controls - Inverter - SMPS • NPT-Technology offers: - very tight parameter distribution - ...

Page 2

Thermal Resistance Parameter Characteristic IGBT thermal resistance, junction – case Thermal resistance, junction – ambient = 25 °C, unless otherwise specified Electrical Characteristic Parameter Static Characteristic Collector-emitter breakdown voltage Collector-emitter saturation voltage Gate-emitter threshold voltage Zero gate ...

Page 3

Switching Characteristic, Inductive Load Parameter IGBT Characteristic Turn-on delay time Rise time Turn-off delay time Fall time Turn-on energy Turn-off energy Total switching energy Switching Characteristic, Inductive Load Parameter IGBT Characteristic Turn-on delay time Rise time ...

Page 4

T =80°C C 30A T =110°C C 20A I c 10A 0A 10Hz 100Hz 1kHz 10kHz f, SWITCHING FREQUENCY Figure 1. Collector current as a function of switching frequency ≤ 150° 0. ...

Page 5

V =17V G E 15V 30A 13V 11V 9V 20A 7V 10A COLLECTOR EMITTER VOLTAGE CE Figure 5. Typical output characteristics (T = 25°C) j 50A 40A 30A T ...

Page 6

I , COLLECTOR CURRENT C Figure 9. Typical switching times as a function of collector current (inductive load 150° 800V, ...

Page 7

E and E include losses on ts due to diode recovery. 12mJ 10mJ 8mJ 6mJ 4mJ 2mJ 0mJ 0A 10A 20A 30A I , COLLECTOR CURRENT C Figure 13. Typical switching energy losses as a function of collector ...

Page 8

Q , GATE CHARGE GE Figure 17. Typical gate charge (I = 15A) C µ µ µ µ s 10V 11V 12V 13V V , ...

Page 9

Power Semiconductors PG-TO220-3-1 9 SGP15N120 SGW15N120 Rev. 2.6 Nov. 09 ...

Page 10

Power Semiconductors SGP15N120 SGW15N120 10 Rev. 2.6 Nov. 09 ...

Page 11

Figure A. Definition of switching times Figure B. Definition of switching losses Power Semiconductors SGP15N120 SGW15N120 i Figure C. Definition of diodes switching characteristics τ τ ...

Page 12

Edition 2006-01 Published by Infineon Technologies AG 81726 München, Germany © Infineon Technologies AG 11/19/09. All Rights Reserved. Attention please! The information given in this data sheet shall in no event be regarded as a guarantee of conditions or characteristics ...

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