IPD200N15N3GATMA1 Overview
The IPD200N15N3GATMA1 is a robust N-channel MOSFET engineered for industrial and high-power applications requiring reliable switching and efficient power management. Designed with advanced trench technology, this device offers low on-state resistance and high current handling capabilities. Its compact TO-252 (DPAK) surface-mount package streamlines integration into densely populated PCBs, making it ideal for cost-sensitive and space-constrained designs. With a voltage rating up to 150V and optimized thermal performance, this component provides a balanced combination of efficiency, durability, and electrical performance for demanding environments. For more details, visit IC Manufacturer.
IPD200N15N3GATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 150 V |
| Continuous Drain Current (ID) | 27 A |
| RDS(on) (Max) | 0.020 ?? |
| Gate Charge (Qg) | 49 nC |
| Package | TO-252 (DPAK) |
| Mounting Type | Surface Mount |
| Technology | Trench |
| Polarity | N-Channel |
IPD200N15N3GATMA1 Key Features
- Low RDS(on) of 0.020 ?? enables efficient power conversion and minimizes conduction losses in switching circuits.
- High voltage capability (150 V) supports safe operation in motor drives, power supplies, and industrial automation systems.
- Surface-mount TO-252 (DPAK) package ensures compact PCB layouts and efficient thermal dissipation, reducing system size and complexity.
- High continuous drain current (27 A) allows robust performance in applications demanding substantial load switching.
IPD200N15N3GATMA1 Advantages vs Typical Alternatives
Compared to conventional power MOSFETs, this device provides significantly lower on-resistance and higher current capacity, resulting in improved energy efficiency and reduced heat generation. Its advanced trench technology and surface-mount package also simplify integration, support higher switching frequencies, and deliver greater reliability for industrial electronics and demanding power management tasks.
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Typical Applications
- Switching power supplies: Utilized for efficient voltage regulation and high-speed switching, contributing to minimized losses and improved thermal performance in industrial and commercial power systems.
- Motor control circuits: Offers reliable high-current switching for DC motors and stepper motors in automation and robotics.
- DC-DC converters: Ideal for step-down and step-up power conversion in telecommunications, automotive, and data center applications.
- Battery management systems: Supports precise charge/discharge switching and protection in energy storage and backup power solutions.
IPD200N15N3GATMA1 Brand Info
This product is part of a comprehensive portfolio of power MOSFETs designed to meet the needs of industrial and high-reliability sectors. It leverages advanced trench technology to deliver a low RDS(on) and high current capability in a compact surface-mount package. The device is engineered for manufacturers and engineers seeking reliable, high-performance switching solutions for demanding electronic designs where efficiency and durability are crucial.
FAQ
What mounting package does the IPD200N15N3GATMA1 use?
The device comes in a TO-252 (DPAK) surface-mount package, which allows for compact board layouts and efficient heat dissipation, making it suitable for automated PCB assembly processes.
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Is this MOSFET suitable for high-current applications?
Yes, with a continuous drain current rating of 27 A, it is well-suited for applications that require handling substantial currents, such as power supplies and motor drives in industrial environments.
What is the maximum drain-source voltage supported?
The maximum drain-source voltage is 150 V, providing ample headroom for use in circuits where higher voltages are present, such as industrial power management systems and converters.
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How does the device support thermal management?
The surface-mount TO-252 (DPAK) package is designed for efficient thermal dissipation. This helps maintain device reliability and performance even under high-load or continuous operation conditions.
Can the device be used in battery management systems?
Absolutely. Its high current handling, low on-resistance, and robust voltage capability make it ideal for precise switching and protection tasks in battery management and energy storage systems.





