7 W Power Bipolar Junction Transistors (BJT) 16

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Part RoHS Manufacturer Polarity or Channel Type Configuration Surface Mount Nominal Transition Frequency (fT) Maximum Power Dissipation (Abs) Maximum Collector Current (IC) Package Body Material Transistor Application Maximum Rise Time (tr) Maximum VCEsat Terminal Form Package Shape Operating Mode No. of Elements Maximum Fall Time (tf) Maximum Drain Current (Abs) (ID) No. of Terminals Package Style (Meter) Sub-Category Field Effect Transistor Technology Maximum Power Dissipation Ambient Minimum DC Current Gain (hFE) Maximum Operating Temperature Maximum Collector-Base Capacitance 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 Maximum Drain Current (ID) Terminal Position JESD-30 Code Moisture Sensitivity Level (MSL) Case Connection Qualification Additional Features JEDEC-95 Code JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Reference Standard

KSC3503DS

Onsemi

NPN

SINGLE

NO

150 MHz

7 W

.1 A

PLASTIC/EPOXY

AMPLIFIER

THROUGH-HOLE

RECTANGULAR

1

3

FLANGE MOUNT

Other Transistors

60

150 Cel

SILICON

300 V

MATTE TIN

SINGLE

R-PSFM-T3

Not Qualified

TO-126

e3

KSC3503DSTU

Onsemi

NPN

SINGLE

NO

150 MHz

7 W

.1 A

PLASTIC/EPOXY

AMPLIFIER

THROUGH-HOLE

RECTANGULAR

1

3

FLANGE MOUNT

Other Transistors

60

150 Cel

SILICON

300 V

MATTE TIN

SINGLE

R-PSFM-T3

Not Qualified

TO-126

e3

KSC3503D

Fairchild Semiconductor

NPN

SINGLE

NO

150 MHz

7 W

.1 A

PLASTIC/EPOXY

AMPLIFIER

THROUGH-HOLE

RECTANGULAR

1

3

FLANGE MOUNT

Other Transistors

60

150 Cel

SILICON

300 V

TIN LEAD

SINGLE

R-PSFM-T3

ISOLATED

Not Qualified

TO-126

e0

KSA1381ESTU

Onsemi

PNP

SINGLE

NO

150 MHz

7 W

.1 A

PLASTIC/EPOXY

AMPLIFIER

THROUGH-HOLE

RECTANGULAR

1

3

FLANGE MOUNT

Other Transistors

100

150 Cel

SILICON

300 V

MATTE TIN

SINGLE

R-PSFM-T3

Not Qualified

TO-126

e3

JANS2ST3360KG

STMicroelectronics

NPN AND PNP

SEPARATE, 2 ELEMENTS

YES

7 W

.8 A

CERAMIC, METAL-SEALED COFIRED

AMPLIFIER

.38 V

FLAT

RECTANGULAR

2

8

FLATPACK

1.4 W

160

200 Cel

45 pF

SILICON

60 V

175 ns

-65 Cel

2500 ns

DUAL

R-CDFP-F8

Not Qualified

HIGH RELIABILITY

MIL-19500

J2ST3360K1

STMicroelectronics

NPN AND PNP

SEPARATE, 2 ELEMENTS

YES

7 W

.8 A

CERAMIC, METAL-SEALED COFIRED

AMPLIFIER

.38 V

FLAT

RECTANGULAR

2

8

FLATPACK

1.4 W

160

200 Cel

45 pF

SILICON

60 V

175 ns

-65 Cel

2500 ns

DUAL

R-CDFP-F8

HIGH RELIABILITY

NOT SPECIFIED

NOT SPECIFIED

JANS2ST3360KT

STMicroelectronics

NPN AND PNP

SEPARATE, 2 ELEMENTS

YES

7 W

.8 A

CERAMIC, METAL-SEALED COFIRED

AMPLIFIER

.38 V

FLAT

RECTANGULAR

2

8

FLATPACK

1.4 W

160

200 Cel

45 pF

SILICON

60 V

175 ns

-65 Cel

2500 ns

DUAL

R-CDFP-F8

Not Qualified

HIGH RELIABILITY

MIL-19500

2ST3360RKG

STMicroelectronics

NPN AND PNP

SEPARATE, 2 ELEMENTS

YES

7 W

.8 A

UNSPECIFIED

SWITCHING

.38 V

FLAT

RECTANGULAR

2

8

SMALL OUTLINE

1.4 W

160

200 Cel

45 pF

SILICON

60 V

175 ns

-65 Cel

2500 ns

DUAL

R-XDSO-F6

EUROPEAN SPACE AGENCY; RH-100K Rad(Si)

JANSR2ST3360KT

STMicroelectronics

NPN AND PNP

SEPARATE, 2 ELEMENTS

YES

7 W

.8 A

CERAMIC, METAL-SEALED COFIRED

AMPLIFIER

.38 V

FLAT

RECTANGULAR

2

8

FLATPACK

1.4 W

160

200 Cel

45 pF

SILICON

60 V

175 ns

-65 Cel

2500 ns

DUAL

R-CDFP-F8

Not Qualified

HIGH RELIABILITY

MIL-19500; RH - 100K Rad(Si)

2ST3360K1

STMicroelectronics

NPN AND PNP

SEPARATE, 2 ELEMENTS

YES

7 W

.8 A

UNSPECIFIED

SWITCHING

.38 V

FLAT

RECTANGULAR

2

8

SMALL OUTLINE

1.4 W

160

200 Cel

45 pF

SILICON

60 V

175 ns

-65 Cel

2500 ns

DUAL

R-XDSO-F6

JANSR2ST3360KG

STMicroelectronics

NPN AND PNP

SEPARATE, 2 ELEMENTS

YES

7 W

.8 A

CERAMIC, METAL-SEALED COFIRED

AMPLIFIER

.38 V

FLAT

RECTANGULAR

2

8

FLATPACK

1.4 W

160

200 Cel

45 pF

SILICON

60 V

175 ns

-65 Cel

2500 ns

DUAL

R-CDFP-F8

Not Qualified

HIGH RELIABILITY

MIL-19500; RH - 100K Rad(Si)

2ST3360RKT

STMicroelectronics

NPN AND PNP

SEPARATE, 2 ELEMENTS

YES

7 W

.8 A

UNSPECIFIED

SWITCHING

.38 V

FLAT

RECTANGULAR

2

8

SMALL OUTLINE

1.4 W

160

200 Cel

45 pF

SILICON

60 V

175 ns

-65 Cel

2500 ns

DUAL

R-XDSO-F6

EUROPEAN SPACE AGENCY; RH-100K Rad(Si)

KSC3503

Samsung

NPN

SINGLE

NO

150 MHz

7 W

.1 A

PLASTIC/EPOXY

THROUGH-HOLE

RECTANGULAR

1

3

FLANGE MOUNT

Other Transistors

40

150 Cel

SILICON

300 V

SINGLE

R-PSFM-T3

Not Qualified

TO-126

KSA1406

Samsung

PNP

SINGLE

NO

400 MHz

7 W

.1 A

PLASTIC/EPOXY

SWITCHING

THROUGH-HOLE

RECTANGULAR

1

3

FLANGE MOUNT

Other Transistors

20

SILICON

200 V

SINGLE

R-PSFM-T3

ISOLATED

Not Qualified

TO-126

KSA1381

Samsung

PNP

SINGLE

NO

150 MHz

7 W

.1 A

PLASTIC/EPOXY

SWITCHING

THROUGH-HOLE

RECTANGULAR

1

3

FLANGE MOUNT

Other Transistors

40

150 Cel

SILICON

300 V

SINGLE

R-PSFM-T3

ISOLATED

Not Qualified

TO-126

KSC5036

Samsung

NPN

SINGLE

NO

80 MHz

7 W

.15 A

PLASTIC/EPOXY

THROUGH-HOLE

RECTANGULAR

1

3

FLANGE MOUNT

Other Transistors

40

150 Cel

SILICON

200 V

SINGLE

R-PSFM-T3

ISOLATED

Not Qualified

TO-126

Power Bipolar Junction Transistors (BJT)

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

The Power BJT is a three-layer device that consists of an emitter, base, and collector region. The emitter and collector are heavily doped, while the base region is lightly doped. The power BJT works by controlling the flow of majority charge carriers (electrons or holes) from the emitter to the collector region through the base region. When a voltage is applied to the base-emitter junction, a current flows through the base, allowing a larger current to flow from the emitter to the collector.

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

Power BJTs are available in various types and configurations, including NPN and PNP bipolar transistors, and can handle power levels ranging from a few watts to several kilowatts. They 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 Power BJTs are critical to ensure safe and reliable operation of power electronics systems. Power BJTs are often used in conjunction with other components, such as diodes and capacitors, to form complete power electronics circuits.