N-Channel Power MOSFET
OptiMOS™, StrongIRFET™, and CoolMOS™, low, medium and high voltage power MOSFETs for low-, medium-, and high-power applications.
N-Channel Power MOSFET subcategories
Collapse all subcategories Expand all subcategoriesAn N-channel MOSFET uses electrons to create a current channel. This allows electrons to move quickly and easily through the current when the MOSFET is activated and switched on. Because of the specific characteristics of N-channel MOSFETs, the mobility of the carriers is approximately two to three times higher than that of a P-channel for the same RDS(on) value, and the P-channel chip must be two to three times the size of the N-channel. For this reason, using MOSFET transistor N-channels for high current applications is often the preferred choice.
Infineon's OptiMOS™ N-channel power MOSFETs were developed to increase efficiency, power density, and cost-effectiveness. Designed for high-performance applications and optimized for high switching frequencies, OptiMOS™ products offer the industry's best figure of merit.
Now complemented by StrongIRFET™ and StrongIRFET™ 2 N-channel MOSFETs, this extended portfolio creates a truly compelling combination. StrongIRFET™ and StrongIRFET™ 2 N-channel power MOSFETs add robust design and excellent price/performance to the best-in-class technology of OptiMOS™ MOSFETs. Both product families meet the highest quality and performance demands.
The CoolMOS™ N-Channel MOSFET product range targets a broad range of applications from low power to higher power levels. Furthermore, the automotive qualified superjunction (SJ) MOSFETs offer the highest reliability in the field and are compliant with automotive lifetime requirements. Infineon’s 600 V, 650 V, and 800 V N-channel power MOSFETs are making automotive applications more compact and higher performing.
To learn more about the Infineon’s innovative N-channel power MOSFET solutions, discover the complete portfolio of products now!
N-channel power MOSFET offerings
Infineon offers a wide-ranging product portfolio of N-channel power MOSFETs. Explore our product offerings below.
The joint portfolio of OptiMOS™ and StrongIRFET™ N-channel power MOSFETs gives designers the widest choice of voltage ratings, extending from 12 V MOSFETs all the way up to 250 V and 300 V MOSFETs.
Infineon’s N-channel power MOSFET product portfolio is available in a wide range of space-saving packages. The low voltage characteristics of N-channel MOSFETs meet the performance demands of applications requiring high current carrying capabilities.
With the innovative OptiMOS™ and StrongIRFET™ low and medium voltage power MOSFETs, as well as the revolutionary CoolMOS™ superjunction MOSFET families, Infineon is setting new standards in the industry.
At the same time, our portfolio of automotive MOSFET products ensures superior performance based on Infineon’s leading MOSFET technology, excellent quality, and robust packaging.
Explore the complete range of N-channel power MOSFETs here:
- 12 V-40 V N-channel MOSFETs
- 45 V-80 V N-channel MOSFETs
- 85 V-300 V N-channel MOSFETs
- 500 V-950 V N-channel MOSFETs
N-channel trench MOSFETs provide very low RDS(on) performance for power applications with low to medium voltages. Infineon’s single N-channel trench MOSFETs offer extremely fast switching and efficient performance.
N-channel power MOSFET applications
This broad portfolio of OptiMOS™, StrongIRFET™ and CoolMOS™ solutions reduces footprint, boosts current ratings, and optimizes thermal performance across a wide range of industrial and automotive applications.
The Industrial applications of N-channel MOSFETs cover the full spectrum of low to high switching frequencies, and are ideal for applications such as:
The unique characteristics of N-channel MOSFETs make them ideal for use in a large variety of automotive applications from electric drives and motors to seat adjustment and sunroof features. With excellent RDS(on) and robust package technologies, Infineon’s range of automotive N-channel power MOSFETs are qualified according to AEC-Q101.
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Key takeaways:
- Be provided with a MOSFET overview and learn more about MOSFET types and classifications
- Learn about MOSFET structure, different modes of operation and use cases
After this course, you will know about several parameters effecting MOSFET use, namely:
- Maximum operating temperature
- Heat generation
- Heat dissipation
- Packaging technologies
- Gate charge
- Understand the basic structure of a DC-DC brick and how it works
- Be familiar with the key parameters of MOSFETs and their design considerations in a DC-DC brick
- Know how to quickly and accurately select the right MOSFETs for your DC-DC brick
Key takeaways:
- Get an insight how a P-Channel MOSFET works
- Understand the benefits of P-channel MOSFETs in low-power applications
- Be guided through application examples
The purpose of this training is to introduce you to the D2PAK 7pin+ package and know why you would choose it over a traditional D2PAK 7pin. You will also learn about the key features of the package, the portfolio, and the intended applications.
This training qualitatively and quantitatively describes the current sharing in paralleled MOSFETs.
This training explains the benefits of using the TOLG and the target industrial and automotive applications of this package. It also lists the current available portfolio and explains what you will gain by using the package.
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Choosing the right MOSFET can be challenging. Watch the webminar and learn how to make a safe choice when selecting a MOSFET for your design.
- Know more about Infineon’s wide MOSFET selection for 48 V mild-hybrid electric vehicle, or MHEV, applications
- Understand why and how Infineon is strengthening its position in the 40 V MOSFET market, and be familiar with Infineon’s newest 60 V MOSFETs
In this training you will learn how to read and use datasheet parameters and diagrams and how to use them in applications.
Watch latest webinars
Learn how the application affects the choice of the MOSFET for motor drives, robotics, power supply, chargers, uninterrupted power supply (UPS), how to overcome some design challenges, and success stories.
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In this webinar, we will talk about the various characteristics of MOSFETs and how the technology they are developed in plays a role in their suitability for different applications. You will hear how the application impacts the choice of FETs and why FETs are offered in different technologies.
You will learn to calculate maximum power losses for an application and gain confidence in selecting the right FET based on your application needs.