BSC027N10NS5ATMA1 Overview
The BSC027N10NS5ATMA1 is a robust N-channel MOSFET designed for high-performance switching applications. Engineered for efficiency, it features a low RDS(on), making it ideal for minimizing conduction losses and supporting high-current handling. This device is housed in a compact SuperSO8 package, enabling space-saving layouts in demanding power designs. Its advanced construction ensures reliable operation in automotive, industrial, and other high-stress environments. With its optimized electrical characteristics, the device brings designers a strong balance of power density and thermal performance. For more details, visit IC Manufacturer.
BSC027N10NS5ATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 100V |
| Continuous Drain Current (ID) | 120A |
| RDS(on) (max) | 2.7 m?? |
| Gate Charge (Qg) | 79 nC |
| Package Type | SuperSO8 |
| Operating Temperature Range | -55??C to +175??C |
| Mounting Style | Surface Mount |
BSC027N10NS5ATMA1 Key Features
- Ultra-low RDS(on) ensures minimal conduction losses, resulting in higher system efficiency and reduced heat generation.
- High current capability (up to 120A) supports demanding power switching and motor drive applications, providing robust performance where it matters.
- Compact SuperSO8 package allows for dense PCB layouts and saves board space in industrial and automotive designs.
- Wide operating temperature range ensures reliable operation in environments exposed to extreme thermal conditions.
BSC027N10NS5ATMA1 Advantages vs Typical Alternatives
This device stands out among power MOSFETs by combining a very low RDS(on) with high current handling and a compact package. Its efficiency and thermal performance make it a preferred choice for engineers aiming to reduce power losses and save PCB space. The robust temperature range and surface-mount design further enhance reliability and facilitate automated assembly, offering significant advantages over standard alternatives.
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Typical Applications
- High-efficiency DC-DC converters, where low conduction loss and high current capability translate to improved overall system performance and cooler operation.
- Motor control circuits in automotive or industrial environments, benefiting from the device??s robust thermal characteristics and efficient switching capability.
- Battery management systems requiring reliable, low-loss switching for energy storage and distribution solutions.
- Power supplies and inverters where compact size and high reliability are essential for space-constrained designs.
BSC027N10NS5ATMA1 Brand Info
This device is part of a reputable portfolio of high-performance MOSFET solutions. It exemplifies the brand??s commitment to delivering components that meet strict requirements for efficiency, reliability, and scalability in modern electronic designs. The product is engineered for demanding applications and reflects a focus on innovation, quality, and support for industrial and automotive sectors.
FAQ
What is the primary benefit of using the BSC027N10NS5ATMA1 in power switching applications?
The primary benefit lies in its ultra-low RDS(on) and high current handling, which significantly reduce conduction losses. This translates to higher efficiency and less heat generation in power switching environments, making it well-suited for demanding applications.
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Is this MOSFET suitable for automotive environments?
Yes, the broad operating temperature range and robust construction make it suitable for automotive systems that require reliable performance under wide-ranging thermal conditions and high current loads.
How does the SuperSO8 package benefit PCB design?
The SuperSO8 package offers a compact footprint, enabling higher component density and space savings on the PCB. This is especially valuable in designs where board real estate is at a premium or in modular systems.
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What mounting method is recommended for this device?
This MOSFET is designed for surface mount technology (SMT), which allows for efficient and automated assembly processes. SMT also improves thermal management and electrical performance in most modern applications.
Can this device be used in high-frequency switching applications?
With its optimized gate charge and low RDS(on), this MOSFET is suitable for high-frequency switching, supporting efficient operation in converters, inverters, and other fast-switching circuits where performance and reliability are critical.






