ISC009N06LM5ATMA1 Overview
The ISC009N06LM5ATMA1 is a high-performance N-channel MOSFET designed for demanding industrial and power management applications. Featuring low on-resistance and robust voltage handling, this device enables efficient switching and thermal performance. Its advanced silicon technology ensures reliable operation in compact systems, making it a preferred solution for engineers focused on minimizing losses and maximizing power density. The compact footprint further supports high-density board layouts. For full technical details and sourcing, visit the IC Manufacturer.
ISC009N06LM5ATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 60 V |
| Continuous Drain Current (ID) | 90 A |
| RDS(on) (Max) | 0.9 m?? |
| Gate Charge (Qg) | 64 nC |
| Package / Case | SuperSO8 |
| Operating Temperature Range | -55??C to 150??C |
| Mounting Type | Surface Mount (SMD) |
ISC009N06LM5ATMA1 Key Features
- Ultra-low RDS(on) of 0.9 m?? maximizes conduction efficiency, reducing power loss during operation.
- High current handling capability (up to 90 A) enables use in applications requiring substantial load switching without thermal stress.
- Compact SuperSO8 package supports space-constrained designs, facilitating higher PCB density and ease of integration.
- Broad operating temperature range (-55??C to 150??C) ensures stable performance in harsh industrial environments.
ISC009N06LM5ATMA1 Advantages vs Typical Alternatives
Compared to standard MOSFETs, this device offers lower on-resistance and higher current capability, resulting in reduced heat generation and improved efficiency. Its optimized gate charge supports faster switching, which is essential for modern high-frequency designs. With robust thermal characteristics and a compact SuperSO8 form factor, it enables reliable, space-saving solutions for advanced electronic systems.
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Typical Applications
- Switching power supplies: Ideal for high-frequency, high-efficiency DC-DC converters due to low RDS(on) and fast switching capabilities, ensuring minimal losses and reliable thermal management.
- Motor drives: Suitable for controlling motors in industrial automation, robotics, and HVAC systems where high current and rugged reliability are required.
- Battery management systems: Enhances energy efficiency and safety in lithium-ion battery packs, ensuring effective current flow and thermal stability.
- Load switch circuits: Provides robust switching for resistive or inductive loads in a wide range of industrial control systems.
ISC009N06LM5ATMA1 Brand Info
The ISC009N06LM5ATMA1 represents a commitment to advanced MOSFET technology, delivering a balance of efficiency, reliability, and form factor optimization. Designed for demanding industrial and high-power applications, this component leverages refined silicon processes to achieve industry-leading on-resistance and current handling. Its SuperSO8 package and thoughtful design support modern engineering needs for compact, robust, and easy-to-integrate solutions across a wide array of power electronics platforms.
FAQ
What is the maximum continuous drain current supported by this MOSFET?
The device supports a continuous drain current of up to 90 A, making it suitable for high-current applications such as power supplies, motor drives, and battery management systems in industrial settings.
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How does the low RDS(on) benefit circuit efficiency?
A low RDS(on) of 0.9 m?? significantly reduces conduction losses, which translates to improved efficiency in switching and power conversion circuits. This helps minimize heat generation and power waste in demanding applications.
Which package type is used for this MOSFET and why is it important?
The device is offered in a SuperSO8 surface-mount package. This compact format is crucial for designers looking to maximize PCB real estate while maintaining excellent thermal and electrical performance in dense circuit layouts.
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Is this MOSFET suitable for high-temperature environments?
Yes, it is rated for operation from -55??C to 150??C, ensuring reliable performance even in harsh industrial or automotive environments where temperature extremes are common.
What are typical application areas for this device?
The device is commonly used in switching power supplies, motor drives, battery management systems, and load switches, offering efficiency, reliability, and compactness for a broad range of power management and industrial automation tasks.






