IPD90N10S4L06ATMA1 Overview
The IPD90N10S4L06ATMA1 is a power MOSFET designed to deliver efficient, reliable switching performance in demanding industrial environments. With its optimized structure and robust SMD package, this device is well-suited for high-frequency, high-current power management applications. Its low on-resistance and high current handling ensure minimal power loss and increased system efficiency. For engineers seeking a balance of performance and integration, this MOSFET offers a practical solution for modern power electronics. Discover more from IC Manufacturer.
IPD90N10S4L06ATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Device Type | N-Channel MOSFET |
| Drain-Source Voltage (Vds) | 100 V |
| Continuous Drain Current (Id) | 90 A |
| Rds(on) (Max) | 6 m?? |
| Mounting Type | Surface Mount (SMD) |
| Package | TO-252 (DPAK) |
| Polarity | N-Channel |
| Technology | MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) |
IPD90N10S4L06ATMA1 Key Features
- Low Rds(on) of 6 m??: Minimizes conduction losses, enhancing overall power efficiency in high-current paths.
- 100V Drain-Source Voltage: Provides ample voltage headroom, ensuring safe operation in automotive and industrial switching environments.
- High Continuous Current Capability: Supports up to 90A continuous drain current, ideal for demanding applications requiring robust current handling.
- Surface Mount SMD Package (TO-252/DPAK): Enables compact PCB layouts and automated assembly, supporting high-density circuit designs.
IPD90N10S4L06ATMA1 Advantages vs Typical Alternatives
This power MOSFET stands out due to its low on-resistance and high current capacity, which together offer reduced heat generation and superior efficiency compared to standard devices. Its robust SMD package streamlines integration and reliability in densely packed boards, making it a strong choice for engineers who require effective, space-saving power management solutions with high switching performance.
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Typical Applications
- Motor Control Systems: The device??s high current capability and low on-resistance make it suitable for efficient motor drive circuits in industrial automation, robotics, and automotive powertrain solutions.
- DC-DC Power Conversion: Ideal for use in switching regulators, buck or boost converters, and power supplies that demand efficient, high current switching elements.
- Load Switching: Provides reliable high-side or low-side switching of large loads in distribution panels, battery management systems, or protection circuits.
- Inverter Circuits: Well-suited for inverter designs in renewable energy systems or uninterruptible power supplies (UPS) where robust voltage and current ratings are essential.
IPD90N10S4L06ATMA1 Brand Info
This device is part of a reputable semiconductor manufacturer??s lineup, known for robust, high-efficiency components tailored to industrial and automotive sectors. The IPD90N10S4L06ATMA1 integrates advanced MOSFET technology to address the needs of high-current switching and power management. Its inclusion in the manufacturer??s portfolio reflects a commitment to quality, reliability, and performance, ensuring confidence for engineers and sourcing professionals in mission-critical projects.
FAQ
What are the key benefits of using the IPD90N10S4L06ATMA1 in high-current applications?
With its low on-resistance and high continuous current rating, this MOSFET enables efficient power delivery with minimal heat buildup. This helps reduce thermal management requirements and increases overall system reliability in applications such as motor drives or power supplies.
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Which package format does this device use, and why is it advantageous?
The device utilizes a TO-252 (DPAK) surface-mount package, which supports automated assembly processes and facilitates compact, high-density PCB layouts. This enhances integration and manufacturing efficiency for industrial and automotive electronics.
Is this MOSFET suitable for automotive or industrial environments?
Yes, its voltage and current capabilities, along with robust packaging, make it a strong candidate for automotive and industrial power switching, where reliability, safety, and thermal performance are critical design considerations.
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How does the low Rds(on) value impact system efficiency?
Low Rds(on) means the MOSFET produces less power loss during conduction, which directly improves overall energy efficiency and reduces the need for extensive cooling solutions. This is especially beneficial in high-current switching applications.
What types of circuits or systems benefit most from this device?
Motor controllers, DC-DC converters, load switches, and inverter circuits all benefit from the device??s high current capacity and voltage tolerance, especially where efficient, reliable switching is essential for performance and longevity.






