BSZ070N08LS5ATMA1 Overview
The BSZ070N08LS5ATMA1 is a high-performance N-channel MOSFET designed for demanding power switching and load control applications. Leveraging advanced trench technology, it delivers low on-resistance and robust current handling, making it ideal for efficient power management. Its compact SuperSO8 package streamlines board layout while supporting high-density designs. Suited for industrial, automotive, and consumer electronics, this device provides reliable performance in circuits requiring fast switching and enhanced thermal management. For more details, please visit IC Manufacturer.
BSZ070N08LS5ATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Device Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 80 V |
| Continuous Drain Current (ID) | 70 A |
| RDS(on) (max, VGS=10V) | 7.3 m?? |
| Gate-Source Voltage (VGS) | ?I20 V |
| Package | SuperSO8 |
| Operating Temperature Range | -55??C to 175??C |
| Mounting Style | Surface Mount (SMD/SMT) |
BSZ070N08LS5ATMA1 Key Features
- Ultra-low RDS(on) delivers high efficiency in power switching applications, reducing conduction losses and improving thermal performance.
- High current handling up to 70A ensures suitability for demanding loads in industrial and automotive systems.
- Robust 80V drain-source voltage rating provides ample margin for circuits exposed to voltage transients, increasing system reliability.
- SuperSO8 package supports compact PCB designs while maintaining excellent thermal dissipation, enabling high-density integration.
BSZ070N08LS5ATMA1 Advantages vs Typical Alternatives
Compared to standard MOSFETs, this component offers a unique blend of low on-resistance and high current capability, minimizing power loss and heat generation. The SuperSO8 package enhances thermal management and board space efficiency. Its broad voltage and temperature ranges ensure dependable operation in harsh environments, making it a strong choice for power-critical applications where reliability and integration are essential.
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Typical Applications
- High-efficiency DC-DC converters, where low RDS(on) and high current capacity support reduced energy loss and improved system reliability in industrial or automotive electronics.
- Motor drive circuits, leveraging the device??s robust voltage and current ratings for smooth and reliable operation in motor control applications.
- Load switching in power management systems, providing fast, reliable switching for various consumer and industrial loads.
- Battery protection and management circuits, ensuring safe, efficient handling of high current in portable and backup power systems.
BSZ070N08LS5ATMA1 Brand Info
The BSZ070N08LS5ATMA1 is part of a trusted line of MOSFETs engineered for high performance and reliability. It reflects the manufacturer??s commitment to innovation in power semiconductor technology, delivering products that meet the rigorous demands of modern industrial and automotive applications. This device is recognized for its precise design, consistent quality, and suitability for both new designs and legacy system upgrades.
FAQ
What are the primary benefits of using this MOSFET in high-current applications?
Thanks to its ultra-low on-resistance and robust current handling of up to 70A, this device minimizes conduction losses and heat buildup. These characteristics help maximize efficiency and reliability in high-current designs such as power supplies, motor drives, and other demanding circuits.
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How does the SuperSO8 package improve integration and thermal performance?
The compact SuperSO8 package allows for efficient PCB layout in space-constrained applications. It also offers improved thermal dissipation, enabling the device to handle higher currents without excessive temperature rise, which is critical for long-term reliability.
In what environments can this MOSFET operate reliably?
With an operating temperature range from -55??C to 175??C and a high voltage rating, this device is suitable for use in harsh industrial, automotive, and consumer environments. It is designed to withstand voltage transients and thermal stress in demanding conditions.
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Is this MOSFET suitable for switching fast loads or high-frequency applications?
Yes, the low gate charge and fast switching performance make it well-suited for high-frequency switching and rapid load transitions. This is especially beneficial in applications such as DC-DC converters and motor drivers, where speed and efficiency are crucial.
What considerations should be made when incorporating this device into a design?
Ensure proper PCB layout for heat dissipation, and verify that the voltage and current ratings meet or exceed application requirements. Additionally, observe recommended gate drive voltages and consider transient protection for optimal long-term performance in the target environment.






