BSC031N06NS3GATMA1 Overview
The BSC031N06NS3GATMA1 is a high-performance N-channel MOSFET optimized for efficient power management and switching applications. With a low on-resistance and robust design, it supports demanding requirements in industrial and automotive electronics. This component is well-suited for use in power conversion, load switching, and motor drive circuits. Its compact SuperSO8 package allows for easy integration into modern, space-constrained layouts. To learn more about sourcing and availability, visit IC Manufacturer.
BSC031N06NS3GATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Drain-to-Source Voltage (Vds) | 60V |
| Continuous Drain Current (Id) | 100A |
| Rds(on) (Max, @ Vgs=10V) | 3.1 m?? |
| Vgs (Gate-Source Voltage) | ?I20V |
| Power Dissipation (Pd) | 150W |
| Package / Case | SuperSO8 |
| Operating Temperature Range | -55??C to +150??C |
BSC031N06NS3GATMA1 Key Features
- Ultra-low Rds(on): Reduces conduction losses, ensuring high energy efficiency in power switching applications.
- High Current Handling: Supports continuous drain currents up to 100A, making it ideal for demanding load switching and motor drives.
- Robust Package Design: The SuperSO8 package offers a compact footprint and excellent thermal performance, supporting reliable operation in dense PCB layouts.
- Wide Operating Temperature Range: Designed to withstand harsh industrial and automotive environments from -55??C to +150??C.
BSC031N06NS3GATMA1 Advantages vs Typical Alternatives
This device offers a significantly lower Rds(on) compared to many standard MOSFETs in a similar voltage class, resulting in reduced power dissipation and improved system efficiency. Its high current capability and robust SuperSO8 package provide enhanced reliability and enable more compact designs. These attributes make it an excellent choice where power density, efficiency, and thermal management are critical.
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Typical Applications
- Power switching for industrial motor drives, where high current and efficiency are essential for reliable machine operation and energy savings.
- DC-DC converters in power management systems, leveraging the low Rds(on) for minimal switching losses and stable voltage regulation.
- Automotive electronic control units (ECUs) that require robust, high-current MOSFETs capable of withstanding wide temperature ranges.
- Battery management systems in energy storage or electric vehicle platforms, where compact, thermally efficient power switching is needed.
BSC031N06NS3GATMA1 Brand Info
This product is part of a renowned portfolio of power semiconductors known for precision and reliability. The device is engineered for high-performance applications, offering a trusted solution to engineers and system designers seeking efficiency and robust operation. Its integration into demanding environments underscores the commitment to quality and innovation associated with this line of MOSFETs.
FAQ
What is the maximum drain-to-source voltage supported by this MOSFET?
The maximum drain-to-source voltage for this device is 60V, which enables use in a broad range of industrial and automotive applications where higher voltage tolerance is required.
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How does the low Rds(on) benefit my application?
The device’s low Rds(on) of 3.1 m?? (max at Vgs=10V) minimizes conduction losses during operation. This increases overall efficiency and reduces heat generation, supporting more compact and reliable power systems.
Can this MOSFET be used in high-current switching applications?
Yes, with a continuous drain current rating of up to 100A and robust thermal management, this MOSFET is well-suited for high-current switching tasks such as motor control and power distribution in demanding environments.
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What type of package does this device use, and why is it beneficial?
This MOSFET utilizes the SuperSO8 package, which combines a compact footprint with excellent thermal performance. This enables high power density designs and improves reliability in space-constrained PCBs.
Is the device suitable for harsh environments?
Yes, with an operating temperature range from -55??C to +150??C, this MOSFET is engineered to perform reliably in both industrial and automotive settings where environmental conditions can be challenging.






