68 W Insulated Gate Bipolar Transistors (IGBT) 19

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Part RoHS Manufacturer Polarity or Channel Type Configuration Surface Mount Maximum Power Dissipation (Abs) Maximum Collector Current (IC) Package Body Material Transistor Application Maximum Emitter Current Maximum Rise Time (tr) Maximum VCEsat Terminal Form Package Shape Operating Mode No. of Elements Maximum Fall Time (tf) Maximum Drain Current (Abs) (ID) Nominal Turn Off Time (toff) No. of Terminals Package Style (Meter) Sub-Category Field Effect Transistor Technology Maximum Power Dissipation Ambient Maximum Operating Temperature Transistor Element Material Maximum Collector-Emitter Voltage Maximum Turn On Time (ton) Minimum Operating Temperature Maximum Gate-Emitter Voltage Maximum Turn Off Time (toff) Maximum Gate-Emitter Threshold Voltage Terminal Finish Minimum Intrinsic Stand-off Ratio Maximum Drain Current (ID) Terminal Position JESD-30 Code Moisture Sensitivity Level (MSL) Case Connection Qualification Maximum Intrinsic Stand-off Ratio Minimum Static Inter-Base Resistance Additional Features JEDEC-95 Code JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Nominal Turn On Time (ton) Reference Standard

STGP3NB60KD

STMicroelectronics

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

NO

68 W

10 A

PLASTIC/EPOXY

POWER CONTROL

THROUGH-HOLE

RECTANGULAR

1

220 ns

3

FLANGE MOUNT

Insulated Gate BIP Transistors

150 Cel

SILICON

600 V

20 V

7 V

MATTE TIN

SINGLE

R-PSFM-T3

Not Qualified

TO-220AB

e3

19 ns

STGB3NB60KDT4

STMicroelectronics

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

YES

68 W

10 A

PLASTIC/EPOXY

POWER CONTROL

GULL WING

RECTANGULAR

1

220 ns

2

SMALL OUTLINE

Insulated Gate BIP Transistors

150 Cel

SILICON

600 V

20 V

7 V

MATTE TIN

SINGLE

R-PSSO-G2

1

Not Qualified

e3

19 ns

STGP3NB60M

STMicroelectronics

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

NO

68 W

6 A

PLASTIC/EPOXY

MOTOR CONTROL

THROUGH-HOLE

RECTANGULAR

1

859 ns

3

FLANGE MOUNT

Insulated Gate BIP Transistors

150 Cel

SILICON

600 V

20 V

5 V

TIN LEAD

SINGLE

R-PSFM-T3

Not Qualified

TO-220AB

e0

14 ns

STGD4M65DF2

STMicroelectronics

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

YES

68 W

8 A

PLASTIC/EPOXY

POWER CONTROL

2.1 V

GULL WING

RECTANGULAR

1

296 ns

2

SMALL OUTLINE

175 Cel

SILICON

650 V

-55 Cel

20 V

7 V

SINGLE

R-PSSO-G2

COLLECTOR

TO-252

NOT SPECIFIED

NOT SPECIFIED

19.6 ns

STGP4M65DF2

STMicroelectronics

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

NO

68 W

8 A

PLASTIC/EPOXY

POWER CONTROL

2.1 V

THROUGH-HOLE

RECTANGULAR

1

296 ns

3

FLANGE MOUNT

175 Cel

SILICON

650 V

-55 Cel

20 V

7 V

SINGLE

R-PSFM-T3

COLLECTOR

TO-220AB

NOT SPECIFIED

NOT SPECIFIED

19.6 ns

STGB3NB60FDT4

STMicroelectronics

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

YES

68 W

6 A

PLASTIC/EPOXY

MOTOR CONTROL

GULL WING

RECTANGULAR

1

535 ns

2

SMALL OUTLINE

Insulated Gate BIP Transistors

150 Cel

SILICON

600 V

20 V

5 V

TIN LEAD

SINGLE

R-PSSO-G2

Not Qualified

e0

16.5 ns

STGP3NB60F

STMicroelectronics

N-CHANNEL

SINGLE

NO

68 W

6 A

PLASTIC/EPOXY

MOTOR CONTROL

THROUGH-HOLE

RECTANGULAR

1

535 ns

3

FLANGE MOUNT

Insulated Gate BIP Transistors

150 Cel

SILICON

600 V

20 V

5 V

MATTE TIN

SINGLE

R-PSFM-T3

Not Qualified

TO-220AB

e3

16.5 ns

STGB4M65DF2

STMicroelectronics

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

YES

68 W

8 A

PLASTIC/EPOXY

POWER CONTROL

2.1 V

GULL WING

RECTANGULAR

1

296 ns

2

SMALL OUTLINE

175 Cel

SILICON

650 V

-55 Cel

20 V

7 V

SINGLE

R-PSSO-G2

COLLECTOR

TO-263AB

NOT SPECIFIED

NOT SPECIFIED

19.6 ns

STGP3NB60FD

STMicroelectronics

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

NO

68 W

6 A

PLASTIC/EPOXY

MOTOR CONTROL

THROUGH-HOLE

RECTANGULAR

1

535 ns

3

FLANGE MOUNT

Insulated Gate BIP Transistors

150 Cel

SILICON

600 V

20 V

5 V

MATTE TIN

SINGLE

R-PSFM-T3

Not Qualified

TO-220AB

e3

16.5 ns

FB10R06W1E3ENG

Infineon Technologies

N-Channel

68 W

18 A

2 V

260 ns

150 Cel

SILICON

600 V

-40 Cel

20 V

6.5 V

ISOLATED

26 ns

FB10R06W1E3

Infineon Technologies

N-CHANNEL

COMPLEX

NO

68 W

18 A

UNSPECIFIED

2 V

UNSPECIFIED

RECTANGULAR

6

260 ns

23

FLANGE MOUNT

Insulated Gate BIP Transistors

175 Cel

SILICON

600 V

20 V

UPPER

R-XUFM-X23

ISOLATED

Not Qualified

NOT SPECIFIED

NOT SPECIFIED

26 ns

SKP06N60

Infineon Technologies

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

NO

68 W

12 A

PLASTIC/EPOXY

MOTOR CONTROL

22 ns

THROUGH-HOLE

RECTANGULAR

1

84 ns

318 ns

3

FLANGE MOUNT

Insulated Gate BIP Transistors

150 Cel

SILICON

600 V

20 V

5 V

SINGLE

R-PSFM-T3

COLLECTOR

Not Qualified

LOW CONDUCTION LOSS

TO-220AB

NOT SPECIFIED

NOT SPECIFIED

41 ns

FP10R06W1E3

Infineon Technologies

N-CHANNEL

COMPLEX

NO

68 W

16 A

UNSPECIFIED

POWER CONTROL

2 V

UNSPECIFIED

RECTANGULAR

7

260 ns

23

FLANGE MOUNT

Insulated Gate BIP Transistors

175 Cel

SILICON

600 V

20 V

UPPER

R-XUFM-X23

ISOLATED

Not Qualified

NOT SPECIFIED

NOT SPECIFIED

26 ns

FP10R06W1E3_B11

Infineon Technologies

N-CHANNEL

COMPLEX

NO

68 W

16 A

UNSPECIFIED

POWER CONTROL

2 V

UNSPECIFIED

RECTANGULAR

7

260 ns

23

FLANGE MOUNT

Insulated Gate BIP Transistors

175 Cel

SILICON

600 V

20 V

UPPER

R-XUFM-X23

ISOLATED

Not Qualified

NOT SPECIFIED

NOT SPECIFIED

26 ns

UL RECOGNIZED

SKB06N60

Infineon Technologies

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

YES

68 W

12 A

PLASTIC/EPOXY

POWER CONTROL

22 ns

GULL WING

RECTANGULAR

1

84 ns

318 ns

2

SMALL OUTLINE

Insulated Gate BIP Transistors

150 Cel

SILICON

600 V

20 V

5 V

SINGLE

R-PSSO-G2

1

COLLECTOR

Not Qualified

LOW CONDUCTION LOSS

TO-263AB

245

41 ns

SKB06N60HS

Infineon Technologies

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

YES

68 W

12 A

PLASTIC/EPOXY

MOTOR CONTROL

GULL WING

RECTANGULAR

1

245 ns

2

SMALL OUTLINE

Insulated Gate BIP Transistors

150 Cel

SILICON

600 V

20 V

5 V

MATTE TIN

SINGLE

R-PSSO-G2

1

COLLECTOR

Not Qualified

TO-263AB

e3

245

23 ns

MUBW20-06A6

Littelfuse

N-CHANNEL

COMPLEX

NO

68 W

23 A

UNSPECIFIED

POWER CONTROL

2.5 V

UNSPECIFIED

RECTANGULAR

7

325 ns

25

FLANGE MOUNT

Insulated Gate BIP Transistors

150 Cel

SILICON

600 V

20 V

MATTE TIN

UPPER

R-XUFM-X25

ISOLATED

Not Qualified

FAST

e3

80 ns

IXBH5N160G

Littelfuse

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

NO

68 W

5.7 A

PLASTIC/EPOXY

POWER CONTROL

7.2 V

THROUGH-HOLE

RECTANGULAR

1

190 ns

3

FLANGE MOUNT

150 Cel

SILICON

1600 V

-55 Cel

20 V

5.5 V

MATTE TIN

SINGLE

R-PSFM-T3

COLLECTOR

TO-247AD

e3

10

260

340 ns

IXBP5N160G

Littelfuse

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

NO

68 W

5.7 A

PLASTIC/EPOXY

POWER CONTROL

7.2 V

THROUGH-HOLE

RECTANGULAR

1

190 ns

3

FLANGE MOUNT

150 Cel

SILICON

1600 V

-55 Cel

20 V

5.5 V

SINGLE

R-PSFM-T3

COLLECTOR

TO-220AB

340 ns

Insulated Gate Bipolar Transistors (IGBT)

Insulated Gate Bipolar Transistors (IGBT) are electronic devices used in power electronics to control and switch high voltage and high current levels. They are commonly used in applications such as motor drives, power supplies, and welding equipment.

The IGBT is a three-terminal device that combines the high-speed switching capability of a MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) with the low conduction losses of a bipolar transistor. The IGBT consists of a p-type and n-type semiconductor material, which are sandwiched between two electrodes, and an insulated gate electrode.

The IGBT is operated by applying a voltage to the gate electrode, which creates a conductive channel between the p-type and n-type material, allowing current to flow through the device. The IGBT is turned off by reducing the gate voltage, which reduces the conductivity of the channel and stops the flow of current.

IGBTs are designed to handle high voltage and high current levels, and have a low on-resistance and high switching speed. They are typically used in applications that require efficient and precise control of power, such as motor drives and power supplies.

IGBTs are subject to various standards and regulations, such as UL (Underwriters Laboratories) and CE (Conformité Européenne), to ensure their safety and performance. Proper selection and use of IGBTs are critical to ensure reliable and efficient operation of power electronics systems. IGBTs are often used in conjunction with other components, such as diodes and capacitors, to form complete power electronics circuits.