324 W Power Field Effect Transistors (FET) 9

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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 Rise Time (tr) Maximum VCEsat Minimum DS Breakdown Voltage Terminal Form Package Shape Operating Mode No. of Elements Highest Frequency Band Maximum Pulsed Drain Current (IDM) Avalanche Energy Rating (EAS) 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 Minimum DC Current Gain (hFE) Maximum Operating Temperature Transistor Element Material Maximum Turn On Time (ton) Minimum Operating Temperature Maximum Turn Off Time (toff) Maximum Gate-Emitter Threshold Voltage Terminal Finish Maximum Drain-Source On Resistance 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) Nominal Turn On Time (ton) Maximum Feedback Capacitance (Crss) Reference Standard

BUK761R7-40E,118

NXP Semiconductors

N-CHANNEL

SINGLE

YES

324 W

ENHANCEMENT MODE

1

120 A

FET General Purpose Power

METAL-OXIDE SEMICONDUCTOR

175 Cel

TIN

120 A

1

e3

30

245

BUK7E1R9-40E,127

NXP Semiconductors

N-CHANNEL

SINGLE

NO

324 W

ENHANCEMENT MODE

1

120 A

FET General Purpose Power

METAL-OXIDE SEMICONDUCTOR

175 Cel

Tin (Sn)

120 A

e3

BUK764R2-80E,118

NXP Semiconductors

N-CHANNEL

SINGLE

YES

324 W

ENHANCEMENT MODE

1

120 A

FET General Purpose Power

METAL-OXIDE SEMICONDUCTOR

175 Cel

TIN

120 A

1

e3

30

245

BUK962R8-60E,118

NXP Semiconductors

N-CHANNEL

SINGLE

YES

324 W

ENHANCEMENT MODE

1

120 A

FET General Purpose Power

METAL-OXIDE SEMICONDUCTOR

175 Cel

TIN

120 A

1

e3

30

245

BUK762R6-60E,118

NXP Semiconductors

N-CHANNEL

SINGLE

YES

324 W

ENHANCEMENT MODE

1

120 A

FET General Purpose Power

METAL-OXIDE SEMICONDUCTOR

175 Cel

TIN

120 A

1

e3

30

245

BUK964R7-80E,118

NXP Semiconductors

N-CHANNEL

SINGLE

YES

324 W

ENHANCEMENT MODE

1

120 A

FET General Purpose Power

METAL-OXIDE SEMICONDUCTOR

175 Cel

TIN

120 A

1

e3

30

245

BUK761R4-30E,118

NXP Semiconductors

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

YES

324 W

PLASTIC/EPOXY

SWITCHING

30 V

GULL WING

RECTANGULAR

ENHANCEMENT MODE

1

1425 A

1096 mJ

120 A

2

SMALL OUTLINE

FET General Purpose Power

METAL-OXIDE SEMICONDUCTOR

175 Cel

SILICON

TIN

.00145 ohm

120 A

SINGLE

R-PSSO-G2

1

DRAIN

AVALANCHE RATED

e3

30

245

AEC-Q101; IEC-60134

BUK961R7-40E,118

NXP Semiconductors

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

YES

324 W

PLASTIC/EPOXY

SWITCHING

40 V

GULL WING

RECTANGULAR

ENHANCEMENT MODE

1

1260 A

801 mJ

120 A

2

SMALL OUTLINE

FET General Purpose Power

METAL-OXIDE SEMICONDUCTOR

175 Cel

SILICON

TIN

.0017 ohm

120 A

SINGLE

R-PSSO-G2

1

DRAIN

AVALANCHE RATED

e3

30

245

AEC-Q101; IEC-60134

BUK961R5-30E,118

NXP Semiconductors

N-CHANNEL

SINGLE WITH BUILT-IN DIODE

YES

324 W

PLASTIC/EPOXY

SWITCHING

30 V

GULL WING

RECTANGULAR

ENHANCEMENT MODE

1

1393 A

1096 mJ

120 A

2

SMALL OUTLINE

FET General Purpose Power

METAL-OXIDE SEMICONDUCTOR

175 Cel

SILICON

TIN

.0015 ohm

120 A

SINGLE

R-PSSO-G2

1

DRAIN

AVALANCHE RATED

e3

30

245

AEC-Q101; IEC-60134

Power Field Effect Transistors (FET)

Power Field Effect Transistors (FET) are electronic devices used in power electronics to control and switch high current and voltage levels. They are commonly used in applications such as motor drives, power supplies, and switching regulators.

The Power FET is a three-terminal device that works by controlling the flow of majority charge carriers (electrons or holes) between the source and drain regions through a gate electrode. The gate electrode is insulated from the channel region by a thin oxide layer, which can be controlled by applying a voltage to the gate terminal. When a voltage is applied to the gate electrode, it creates an electric field that modifies the conductivity of the channel, allowing current to flow between the source and drain.

Power FETs are designed to handle high current and voltage 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.

Power FETs are available in various types and configurations, including N-channel and P-channel FETs, 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.