NVMFS5C404NLWFAFT1G
Manufacturer: ON Semiconductor
Part Number: NVMFS5C404NLWFAFT1G
Attribute | Value |
cate_name | MOSFETs |
Datasheet | NVMFS5C404NLWFAFT1G ON Semiconductor |
rohs | Compliance |
reference_package | SO |
mounting | SMD mount |
application_level | Automotive |
lifecycle | On sale |
spm | Tape & Reel |
min_operating_temperature | -55℃(TJ) |
max_operating_temperature | 175℃(TJ) |
length_width_height | 5.1mm(length) |
ciss_max_input_capacitance_at_different_vds | 12.168nF@25V |
configure | Freestanding |
drain_current | 370A |
drain_source_resistance | 670μΩ@ 50A,10V |
drain_source_voltage | 40V |
fet_type | 1individualNChannel |
gate_charge | 81nC@ 4.5 V |
gate_source_threshold_voltage | 2V@ 250µA |
gate_source_voltage | 20V |
max_power_dissipation | 200W(Tc) |
number_of_channels | 1 |
Overview:
The ON Semiconductor NVMFS5C404NLWFAFT1G is a high-performance MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) designed to meet the demands of modern electronic systems that require efficient power management and high reliability. This device is part of ON Semiconductor's extensive range of power semiconductors, offering a combination of low on-resistance, high current handling capacity, and excellent thermal performance.
Features:
1. Low On-Resistance: The NVMFS5C404NLWFAFT1G boasts a low on-resistance, which minimizes power losses and improves efficiency in power conversion applications.
2. High Current Capacity: Capable of handling high current loads, this MOSFET is suitable for applications that demand robust power handling capabilities.
3. Super Junction Technology: Utilizing super junction technology, the device offers improved performance over traditional MOSFETs in terms of efficiency and power density.
4. Advanced Packaging: The FLAT Power 3x3 package provides excellent thermal performance and ease of integration into complex electronic systems.
5. Robustness: Designed with a focus on reliability, this MOSFET can withstand harsh operating conditions and is suitable for long-term use in critical applications.
Development Support:
ON Semiconductor provides comprehensive development support for the NVMFS5C404NLWFAFT1G, including:
- Technical Documentation: Detailed datasheets, application notes, and design guides to assist engineers in integrating the MOSFET into their designs.
- Design Tools: Software tools and simulation models to predict the device's performance in various operating conditions.
- Technical Support: Access to ON Semiconductor's team of experts for personalized support during the development process.
Application Fields:
The NVMFS5C404NLWFAFT1G is well-suited for a variety of applications, including:
- Power Supplies: In switching power supplies for computers, servers, and telecommunications equipment.
- Motor Drives: For industrial and automotive applications, where high torque and efficiency are required.
- Renewable Energy Systems: In solar inverters and wind turbine converters for efficient energy conversion.
- Battery Management Systems: For electric and hybrid vehicles, ensuring optimal battery performance and longevity.
Parameter Introduction:
- Vds (Voltage Drain-Source): The maximum voltage that can be applied between the drain and source terminals.
- Id (Continuous Drain Current): The maximum continuous current that the device can handle without overheating.
- Rds(on) (On-Resistance): The resistance between the drain and source terminals when the MOSFET is fully turned on.
- Qg (Gate Charge): The charge required to turn on the MOSFET.
- Vgs(th) (Threshold Voltage): The minimum gate-to-source voltage required to turn on the MOSFET.
Frequently Asked Questions (FAQs):
1. Q: How does the NVMFS5C404NLWFAFT1G differ from other MOSFETs?
A: The NVMFS5C404NLWFAFT1G stands out due to its low on-resistance, high current capacity, and super junction technology, which provide superior efficiency and power density.
2. Q: What are the key benefits of using super junction technology in this MOSFET?
A: Super junction technology allows for a reduction in on-resistance without increasing the die size, leading to higher efficiency and better thermal performance.
3. Q: Can I use this MOSFET in high-temperature environments?
A: Yes, the NVMFS5C404NLWFAFT1G is designed with robustness in mind and can operate in harsh conditions, making it suitable for high-temperature applications.
4. Q: What kind of support can I expect from ON Semiconductor during development?
A: ON Semiconductor offers a range of development support, including technical documentation, design tools, and access to technical experts for personalized assistance.
5. Q: Are there any specific considerations when integrating this MOSFET into my design?
A: It is important to consider the thermal management, proper gate drive requirements, and the specific application parameters to ensure optimal performance and longevity of the device.
This introduction provides a comprehensive overview of the ON Semiconductor NVMFS5C404NLWFAFT1G, highlighting its key features, development support, application fields, and technical parameters. For more detailed information, it is recommended to consult the official datasheet and technical documentation provided by ON Semiconductor.
Please refer to the product rule book for details.
ON Semiconductor operates a responsive, reliable, world-class supply chain and quality program, and a network of manufacturing facilities, sales offices and design centers in key markets throughout North America, Europe, and the Asia Pacific regions. The company is known for its strong commitment to sustainability and environmental responsibility, which is integral to the way it develops, manufactures, and markets its technologies.
Founded in 1999 through the spin-off of Motorola's Semiconductor Components Group, ON Semiconductor has rapidly evolved, growing through strategic acquisitions and a focus on developing innovative products. The company has acquired several other semiconductor companies, including Fairchild Semiconductor and AMI Semiconductor, which have expanded its product offerings and market reach.
ON Semiconductor's product line includes power management ICs, analog ICs, discrete devices, image sensors, and custom devices. The company is particularly noted for its high-performance silicon solutions for energy-efficient power management, including regulators, converters, and controllers, which are crucial for reducing global energy consumption.
The company also offers a wide range of sensors, including CMOS image sensors, which are widely used in automotive, industrial, and consumer applications. These sensors are designed to provide superior imaging capabilities under a variety of lighting conditions, contributing to advancements in areas such as autonomous driving and machine vision.
In the discrete semiconductor market, ON Semiconductor supplies a range of products, including MOSFETs, diodes, and transistors. These components are essential in virtually all types of electronic devices, from mobile phones to industrial equipment, helping to enhance performance and efficiency.
ON Semiconductor is dedicated to innovation and quality. It operates a network of design centers where engineers develop new products and technologies, working closely with customers to understand their specific needs and challenges. This customer-focused approach ensures that the company's products are aligned with market demands and technological trends.
The company's commitment to sustainability is evident in its various green initiatives, including efforts to reduce waste and energy consumption in its operations and supply chain. ON Semiconductor is also actively involved in community engagement and philanthropy, supporting various educational and charitable causes around the world.
Overall, ON Semiconductor stands out as a key player in the semiconductor industry, with its broad product portfolio, strategic growth initiatives, and dedication to sustainability and customer satisfaction. Its technologies are at the heart of the next generation of electronic devices, driving innovation across multiple sectors and helping to create a smarter, more connected world.
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