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PMV280ENEA
+BOMNexperia
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ManufacturerNexperia
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Mfr. Part #PMV280ENEA
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In Stock28355
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Specifications
| Attribute | Value |
Overview
Description
The curriculum may include lectures, practical labs, and projects that encourage students to apply theoretical knowledge to real-world scenarios. It is designed for individuals pursuing a degree in engineering or energy-related disciplines and aims to enhance their understanding and skills in managing and implementing efficient energy solutions.
Through this course, participants may gain insights into cutting-edge technologies and methodologies driving the energy sector forward, preparing them for careers focused on innovation and environmental responsibility. The course may also address the economic, policy, and technological challenges facing the energy industry today.
Equivalent
1. NXP PMV20XNER
2. ON Semiconductor NTD3055-150T4G
3. Vishay Si2302CDS
4. Infineon BSS138
Always verify the datasheets to ensure full compatibility in terms of electrical characteristics and package type before substituting.
Features
1. Power Output: It delivers consistent and efficient power suitable for a range of applications.
2. Efficiency: Optimized for high energy efficiency, minimizing energy loss and maximizing output.
3. Compatibility: Supports a variety of systems and devices, ensuring broad applicability.
4. Durability: Built with quality materials for enhanced longevity and resistance to wear and tear.
5. User-friendly Interface: Features intuitive controls and indicators for easy monitoring and management.
6. Safety Standards: Complies with industry safety standards, offering protection against overloads and short circuits.
7. Cooling System: Equipped with an effective cooling mechanism to maintain optimal operating temperatures.
8. Noise Levels: Designed to operate quietly, making it suitable for environments where noise is a concern.
These features make the PMV280ENEA a reliable choice for those needing a dependable power solution.
Pinout
1. Gate (G): This pin controls the MOSFET's switching operation. Applying a voltage to the gate creates an electric field that allows current to flow between the drain and source.
2. Drain (D): This pin is the terminal through which the current flows from the drain to the source when the MOSFET is in the 'on' state.
3. Source (S): This is the terminal through which current exits the MOSFET. In N-channel MOSFETs, the source is typically connected to a lower voltage compared to the drain.
For precise details about the PMV280ENEA, including its exact pin configuration and electrical characteristics, it's best to refer to the datasheet provided by the manufacturer.