BSC072N08NS5ATMA1 Overview
The BSC072N08NS5ATMA1 is an advanced N-channel MOSFET designed for efficient power management and high-speed switching in demanding industrial and commercial electronics. Engineered with state-of-the-art process technology, this component delivers low on-resistance and robust thermal performance, making it highly suitable for applications where energy efficiency and reliable operation are essential. Its compact SuperSO8 package allows for high-density board layouts, while ensuring optimal electrical characteristics and mechanical robustness. For engineers seeking a versatile power transistor for modern designs, this MOSFET provides a blend of performance and reliability. For more details, visit IC Manufacturer.
BSC072N08NS5ATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 80 V |
| Continuous Drain Current (ID) | 120 A |
| RDS(on) (Max) | 7.2 m?? |
| Gate Threshold Voltage (VGS(th)) | 2.0ÿ4.0 V |
| Power Dissipation (PD) | 150 W |
| Package Type | SuperSO8 |
| Operating Temperature Range | -55??C to +150??C |
BSC072N08NS5ATMA1 Key Features
- Low RDS(on): The on-resistance of just 7.2 m?? minimizes conduction losses, improving system efficiency and reducing heat generation in power switching designs.
- High Current Capability: Supports up to 120 A continuous drain current, allowing robust performance in high-load environments such as motor drives and power supplies.
- High Voltage Tolerance: Withstands drain-source voltages up to 80 V, making it suitable for industrial and automotive applications requiring wide voltage margins.
- SuperSO8 Package: The compact, thermally enhanced package supports high-density PCB layouts while maintaining reliable thermal management.
BSC072N08NS5ATMA1 Advantages vs Typical Alternatives
Compared to standard MOSFETs, this device offers a notably lower RDS(on) and higher current handling within a compact SuperSO8 package. This combination ensures superior efficiency, reduced heat dissipation, and optimized board space. Its robust voltage and current ratings provide reliable operation in demanding applications, minimizing the risk of thermal or electrical failure.
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Typical Applications
- Motor Control Circuits: Ideal for switching and regulating high currents in DC motor drives, industrial automation, and robotics, where precise control and low losses are critical for performance.
- Power Supply Units: Used as a switching element in high-efficiency DC-DC converters and SMPS designs requiring fast switching and high reliability.
- Battery Management Systems: Supports high-load switching and protection functions in battery-powered industrial and automotive systems.
- Inverter Circuits: Suitable for use in inverters that demand efficient power switching, compact footprint, and robust thermal performance.
BSC072N08NS5ATMA1 Brand Info
This MOSFET is produced by a leading semiconductor manufacturer known for high-quality power transistors. The device is engineered using advanced manufacturing processes to deliver consistent electrical performance and mechanical reliability, even under harsh environmental conditions. The SuperSO8 package offers enhanced thermal characteristics, allowing designers to achieve optimal power density and system efficiency. This MOSFET stands as a trusted solution for engineers needing reliable, high-performance switching in compact form factors.
FAQ
What makes the BSC072N08NS5ATMA1 suitable for high-current applications?
Its continuous drain current rating of 120 A and low on-resistance allow it to efficiently handle substantial loads with minimal power loss. This makes it ideal for demanding tasks such as industrial motor drives and high-power DC-DC converters.
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Can this MOSFET be used in automotive systems?
Yes, its 80 V drain-source voltage rating and robust thermal design make it suitable for automotive applications that require both high efficiency and reliability in varying environmental conditions.
How does the SuperSO8 package benefit PCB design?
The SuperSO8 package provides a compact footprint while enhancing thermal dissipation. This allows for higher board density and improved power handling without sacrificing reliability or increasing system size.
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Is this device suitable for fast switching circuits?
Yes, the device??s MOSFET structure and low gate threshold voltage enable rapid switching, which is crucial in power supplies, inverters, and other circuits that demand high-speed operation.
What precautions should be considered during implementation?
Proper thermal management and adequate PCB layout are essential to maximize performance and reliability. Ensuring the device operates within its specified voltage, current, and temperature ratings will help prevent degradation or failure in critical applications.






