BSC014NE2LSIATMA1 Overview
The BSC014NE2LSIATMA1 is an advanced N-channel MOSFET designed for efficiency and high-performance power management applications. Engineered to deliver low on-resistance and robust switching performance, this device supports demanding industrial and commercial circuits. Its compact SuperSO8 package ensures ease of integration in dense PCB layouts. With a strong balance of current handling and voltage ratings, the component is well-suited for professional designs seeking to optimize energy efficiency, thermal management, and operational reliability. For further details, visit the IC Manufacturer.
BSC014NE2LSIATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Polarity | N-Channel |
| Maximum Drain-Source Voltage (VDS) | 25 V |
| Maximum Drain Current (ID) | 100 A |
| On-Resistance (RDS(on)) | 1.4 m?? @ 10 V |
| Gate-Source Voltage (VGS) | ?I20 V |
| Package Type | SuperSO8 (PG-TDSON-8) |
| Operating Temperature Range | -55??C to 175??C |
| Power Dissipation (PD) | 136 W |
BSC014NE2LSIATMA1 Key Features
- Ultra-low on-resistance of 1.4 m?? at 10 V delivers minimal conduction losses, improving overall system efficiency in power electronics designs.
- High current capability up to 100 A supports demanding load requirements, making it suitable for industrial power stages and motor drives.
- Compact SuperSO8 package offers a reduced footprint and excellent thermal performance, facilitating dense PCB layouts and efficient heat dissipation.
- Wide operating temperature range from -55??C to 175??C ensures reliable function in both harsh industrial and automotive environments.
BSC014NE2LSIATMA1 Advantages vs Typical Alternatives
This N-channel MOSFET provides a significant advantage over typical alternatives by combining ultra-low RDS(on) with high current handling, resulting in reduced power losses and enhanced energy efficiency. Its robust package and wide temperature tolerance make it a strong choice for applications requiring both reliability and compactness. The combination of electrical and physical characteristics supports advanced integration in modern designs.
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Typical Applications
- Power supply circuits in industrial automation, where high efficiency and low heat generation are essential for reliable long-term operation, especially in high-density control cabinets.
- Motor control modules for automotive and industrial systems, leveraging the device??s high current capability and robust voltage ratings for precise and efficient drive solutions.
- DC-DC converters in communication infrastructure or server equipment, benefiting from the low on-resistance and thermal performance for stable, continuous power delivery.
- Switching regulators and synchronous rectification stages in high-performance power management, where minimizing conduction losses is a critical design goal.
BSC014NE2LSIATMA1 Brand Info
This product is part of a portfolio of advanced power MOSFETs engineered for industrial and high-efficiency applications. Designed to meet the stringent demands of modern electronics, it offers a blend of low on-resistance, high current capability, and thermal efficiency. The device??s SuperSO8 package and robust design philosophy reflect the brand??s commitment to delivering reliable, compact, and high-performing components for professional use.
FAQ
What are the primary benefits of using this N-channel MOSFET in industrial applications?
The device??s low on-resistance and high current handling enable efficient power conversion with reduced thermal stress. Its robust operational temperature range and compact SuperSO8 package enhance reliability and integration in demanding industrial environments.
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How does the SuperSO8 package benefit PCB design and thermal management?
The SuperSO8 (PG-TDSON-8) package provides a smaller footprint compared to traditional packages while supporting high power dissipation. This allows for more compact layouts and effective heat transfer, which is critical for high-density systems.
Is the device suitable for automotive environments?
Yes, with an operating temperature range from -55??C to 175??C, the device is well-suited for automotive and harsh environment applications, maintaining stability and reliability under wide temperature fluctuations.
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What makes this component preferable for high-efficiency DC-DC converters?
The combination of ultra-low RDS(on) and high current capability translates to lower conduction losses and higher efficiency, which are essential in DC-DC conversion where power savings and thermal management are paramount.
Can this MOSFET be used in switching regulators?
Absolutely. Its electrical characteristics, including fast switching performance and low on-resistance, make it ideal for switching regulator topologies that demand efficiency, reliability, and compact integration on the PCB.






