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NTP75N03L09G

Onsemi

NTP75N03L09G by Onsemi

NTP75N03L09G by Onsemi is a Power FET with 30V DS Breakdown Voltage, 225A IDM, and 0.008 ohm RDS(on). Ideal for SWITCHING applications due to its N-CHANNEL configuration and ENHANCEMENT MODE operation. Package style is FLANGE MOUNT with SILICON transistor element material.

Median Price

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Lifecycle Status

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3

In-Stock Inventory

1k+

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Chip Stock

USA . 27,000 parts In-Stock

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Vyrian

USA . 11,436 parts In-Stock

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Digiode

USA . 342 parts In-Stock

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AZTECH Wire

Italy . 94 parts In-Stock

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$20.650

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Component Stockers USA

USA . 521 parts In-Stock

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$99.990

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Metaverse IC Inc.

Canada . 56,986 parts In-Stock

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QUARKTWIN TECHNOLOGY LTD

USA . 18,461 parts In-Stock

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Kepictronics

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TANS Electronics

Latvia . 5,799 parts In-Stock

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A-Z Elektronik GmbH

Germany . 5,469 parts In-Stock

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Problanco Electronics

Mexico . 5,322 parts In-Stock

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SupplyDigital Components

Austria . 3,051 parts In-Stock

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Corphita

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UHIMA Technologies

Türkiye . 882 parts In-Stock

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Kulean Microsystems

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South Africa . 227 parts In-Stock

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Overview

Experience superior performance and reliability with the NTP75N03L09G by Onsemi. As a leading manufacturer in the industry, Onsemi delivers high-quality Power Field Effect Transistors (FET) that are ideal for various switching applications. With its N-CHANNEL polarity and built-in diode, this transistor offers exceptional value and benefits to customers seeking enhanced efficiency and durability. Trust Onsemi to provide top-notch products like the NTP75N03L09G that meet your power management needs with ease and precision.

Feature Benefit Bullets

Package Body Material: PLASTIC/EPOXY

The plastic/epoxy package body material makes the transistor lightweight and durable, suitable for various applications.

Polarity or Channel Type: N-CHANNEL

N-channel FETs typically have better performance and lower resistance compared to P-channel FETs, making them ideal for many switching applications.

Configuration: SINGLE WITH BUILT-IN DIODE

The built-in diode simplifies circuit design and protects against reverse voltage spikes, making the transistor more versatile and reliable.

Transistor Application: SWITCHING

Designed specifically for switching applications, this FET offers fast switching speeds and low power dissipation, making it efficient for various tasks.

Minimum DS Breakdown Voltage: 30 V

With a minimum breakdown voltage of 30V, this FET can handle higher voltages, providing a wider range of applications.

Package Shape: RECTANGULAR

The rectangular shape allows for easy mounting and placement on circuit boards, maximizing space efficiency.

Operating Mode: ENHANCEMENT MODE

Enhancement mode FETs require no gate voltage to turn off, improving efficiency and reducing power consumption in circuit designs.

Maximum Pulsed Drain Current (IDM): 225 A

High maximum pulsed drain current capability allows for handling large current spikes without damaging the transistor, ensuring reliability in high-power applications.

Avalanche Energy Rating (EAS): 1500 mJ

The high avalanche energy rating makes this FET suitable for applications with high energy transient events, providing robust protection against voltage spikes.

Maximum Drain Current (Abs) (ID): 75 A

A high maximum drain current rating of 75A allows this FET to handle substantial current flows, making it suitable for high-power applications.

No. of Terminals: 3

The 3 terminals provide easy connections for the FET in a circuit, simplifying installation and ensuring proper functionality.

Maximum Power Dissipation (Abs): 150 W

With a maximum power dissipation of 150W, this FET can handle high operating temperatures and power levels without overheating or failing.

Package Style (Meter): FLANGE MOUNT

The flange mount package style allows for secure and stable mounting of the FET, ensuring proper heat dissipation and electrical connections.

Field Effect Transistor Technology: METAL-OXIDE SEMICONDUCTOR

Metal-oxide semiconductor technology offers improved performance and reliability compared to other FET technologies, making this transistor a dependable choice.

Maximum Operating Temperature: 150 °C

With a maximum operating temperature of 150 °C, this FET is suitable for high-temperature environments and applications, ensuring stable performance under harsh conditions.

Transistor Element Material: SILICON

Silicon is a commonly used material for transistors, known for its reliability, efficiency, and performance, making this FET a dependable choice for various applications.

Terminal Finish: TIN

The tin terminal finish provides good electrical conductivity and corrosion resistance, ensuring reliable connections and long-term performance of the FET.

Maximum Drain Current (ID): 75 A

The high maximum drain current of 75A allows the FET to handle large current loads, making it suitable for high-power switching applications.

Maximum Drain-Source On Resistance: 0.008 ohm

The low drain-source on resistance results in minimal power loss and heat generation, improving efficiency and performance in switching applications.

Terminal Position: SINGLE

Having a single terminal position simplifies the installation and connection of the FET in a circuit, reducing complexity and potential errors.

Case Connection: DRAIN

The drain case connection allows for efficient heat dissipation and electrical connection, ensuring stable and reliable performance of the FET.

Peak Reflow Temperature °C: 260

The peak reflow temperature of 260 °C indicates the FET's ability to withstand high-temperature soldering processes, ensuring proper mounting and soldering during assembly.

Technical Specifications

Power Field Effect Transistors (FET) NTP75N03L09G attributes and parameters. Explore more Power Field Effect Transistors (FET) devices from Onsemi

Specs

Additional Features:

AVALANCHE RATED

Avalanche Energy Rating (EAS):

1500 mJ

Case Connection:

DRAIN

Minimum DS Breakdown Voltage:

30 V

Maximum Drain Current (Abs) (ID):

75 A

Maximum Drain Current (ID):

75 A

Maximum Drain-Source On Resistance:

.008 ohm

Field Effect Transistor Technology:

METAL-OXIDE SEMICONDUCTOR

JEDEC-95 Code:

TO-220AB

JESD-30 Code:

R-PSFM-T3

JESD-609 Code:

e3

No. of Elements:

1

No. of Terminals:

3

Operating Mode:

ENHANCEMENT MODE

Maximum Operating Temperature:

150 Cel

Package Body Material:

PLASTIC/EPOXY

Package Shape:

RECTANGULAR

Package Style (Meter):

FLANGE MOUNT

Peak Reflow Temperature (C):

260

Polarity or Channel Type:

Maximum Power Dissipation (Abs):

Maximum Pulsed Drain Current (IDM):

225 A

Qualification:

Not Qualified

Sub-Category:

FET General Purpose Power

Surface Mount:

NO

Terminal Finish:

TIN

Terminal Form:

THROUGH-HOLE

Terminal Position:

SINGLE

Transistor Application:

SWITCHING

Transistor Element Material:

SILICON

Trade Compliance

NTP75N03L09G Transistors trade compliance attributes, and parameters.

ECCN

EAR99

ECCN Governance

EAR

PCN

Manufacturer Highlights

Onsemi

Established in 1999, Onsemi is a leading global provider of power and image-sensing technologies. They are dedicated to building a better future for the automotive, industrial, cloud, medical, and IoT markets. Onsemi's core technologies include analog, digital, and mixed-signal products that offer innovative solutions for advanced automotive systems; highly reliable power management products for industrial applications; low-cost imaging solutions for medical equipment and consumer electronics; and robust communication architectures for the Internet of Things (IoT).

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Management team

President, CEO

Hassane El-Khoury

Executive VP, CFO, Treasurer

Thad Trent

Senior VP

Ross F. Jatou

Manufacturer fab locations 15

Fab name Location Fab Initiation Wafer Capacity

Aizu Fab

Fabrication

Fab Initiation

1995

Japan

Aizu Wakamatsu

Wafer Capacity

52,000

1995

52,000

Si/EPI Fab

Fabrication

Fab Initiation

2018

Czech Republic

Rožnov pod Radhoštěm

Wafer Capacity

10,000

2018

10,000

Expansion Phase 1 for SiC / EPI

Fabrication

Fab Initiation

2019

Czech Republic

Rožnov pod Radhoštěm

Wafer Capacity

14,500

2019

14,500

Expansion Phase 2 for SiC / EPI

Fabrication

Fab Initiation

2024

Czech Republic

Rožnov pod Radhoštěm

Wafer Capacity

2024

SiC Fab

Fabrication

Fab Initiation

2022

USA

Hudson

Wafer Capacity

2022

Bucheon

Fabrication

Fab Initiation

2013

South Korea

Bucheon

Wafer Capacity

61,000

2013

61,000

ISMF - Malaysia

Fabrication

Fab Initiation

1990

Malaysia

Seremban

Wafer Capacity

95,000

1990

95,000

Roznov Device Fab

Fabrication

Fab Initiation

1987

Czech Republic

Rožnov pod Radhoštěm

Wafer Capacity

80,000

1987

80,000

Fab 10

Fabrication

Fab Initiation

2002

USA

East Fishkill

Wafer Capacity

15,000

2002

15,000

Burlington

Fabrication

Fab Initiation

1986

Canada

Burlington

Wafer Capacity

1986

Gresham

Fabrication

Fab Initiation

1998

USA

Gresham

Wafer Capacity

45,000

1998

45,000

Bucheon 150mm

Fabrication

Fab Initiation

2000

South Korea

Bucheon

Wafer Capacity

50,000

2000

50,000

Rochester

Fabrication

Fab Initiation

1983

USA

Rochester

Wafer Capacity

10,000

1983

10,000

Nampa

Fabrication

Fab Initiation

1995

USA

Nampa

Wafer Capacity

1995

Pennsylvania

Fabrication

Fab Initiation

1997

USA

Mountain Top

Wafer Capacity

36,000

1997

36,000

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