BSC016N06NSATMA1 Overview
The BSC016N06NSATMA1 is a high-efficiency N-channel MOSFET designed for demanding industrial and power management applications. With advanced silicon technology and low RDS(on), it is optimized for switching applications requiring minimal conduction losses and high current handling. Its compact SuperSO8 package supports automated assembly, while enhanced thermal characteristics make it suitable for dense layouts. The device offers robust performance, reliability, and versatility for engineers seeking efficient solutions in power supply, motor control, and general switching circuits. For more details, visit IC Manufacturer.
BSC016N06NSATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Drain-Source Voltage (Vds) | 60V |
| Continuous Drain Current (Id) | 120A |
| RDS(on) @ Vgs=10V | 1.6 m?? |
| Operating Temperature Range | -55??C to 150??C |
| Package Type | SuperSO8 |
| Gate Charge (Qg) | 128 nC |
| Mounting Style | Surface Mount (SMD/SMT) |
BSC016N06NSATMA1 Key Features
- Ultra-low RDS(on) minimizes conduction losses, enhancing overall system efficiency in high-current switching applications.
- High drain current rating of 120A supports robust power delivery, vital for motor drives and power conversion circuits.
- SuperSO8 package provides a compact footprint with excellent thermal management, simplifying PCB layout and assembly.
- Wide operating temperature range (-55??C to 150??C) ensures reliable operation in industrial and automotive environments.
- Optimized gate charge (128 nC) enables fast switching, reducing switching losses and improving system response.
- Surface mount design supports automated manufacturing, lowering assembly costs and increasing throughput.
BSC016N06NSATMA1 Advantages vs Typical Alternatives
Compared to standard MOSFETs, this device offers superior low RDS(on), allowing for higher current handling and reduced power dissipation. Its SuperSO8 package enhances heat dissipation and enables compact designs. Engineers benefit from improved efficiency, reliability, and simplified integration in power electronics and industrial automation systems, all supported by robust manufacturing quality and advanced MOSFET technology.
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Typical Applications
- Switch mode power supplies: The low on-resistance and high current capability make it ideal for primary or synchronous rectification in SMPS topologies, boosting efficiency in industrial and commercial power systems.
- Motor control circuits: Its robust current rating and thermal performance are suited for driving DC motors, stepper motors, and actuators in automation and robotics.
- DC-DC converters: High-speed switching and low losses support efficient voltage regulation in point-of-load and isolated converter designs.
- Battery management systems: Suitable for protection and switching in high-current battery packs, ensuring efficiency and safety in energy storage and electric mobility.
BSC016N06NSATMA1 Brand Info
This product integrates advanced MOSFET design and manufacturing expertise, providing engineers with a reliable solution for high-performance switching tasks. The device stands out for its low conduction losses, high current capability, and compact SuperSO8 packaging, making it a preferred choice for demanding power management and industrial electronics applications. Its robust parameters reflect a commitment to quality and innovation in semiconductor components.
FAQ
What is the maximum drain-source voltage supported by this MOSFET?
The device is rated for a maximum drain-source voltage of 60V, making it suitable for various medium-voltage switching applications in industrial and power systems.
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How does the low RDS(on) benefit my design?
A low RDS(on) of 1.6 m?? reduces conduction losses during operation, which improves efficiency and minimizes heat generation, especially in high-current circuits and compact PCB layouts.
Is the SuperSO8 package suitable for automated assembly?
Yes, the SuperSO8 surface mount package is optimized for automated pick-and-place processes, supporting high-volume manufacturing and ensuring consistent device placement on PCBs.
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Can this MOSFET operate in harsh environments?
With an operating temperature range from -55??C to 150??C, this device is engineered to maintain reliable performance in wide-ranging industrial and automotive environments.
What types of applications are best suited for this MOSFET?
This component excels in switch mode power supplies, motor drivers, DC-DC converters, and battery management systems, due to its high current handling, fast switching, and efficient power management capabilities.






