BSC340N08NS3GATMA1 Overview
The BSC340N08NS3GATMA1 is a robust N-channel MOSFET engineered for high-efficiency switching in demanding power management applications. Designed to deliver low on-resistance and high current capability, this device is well-suited for modern industrial and automotive systems where thermal efficiency, compact packaging, and rugged performance are essential. Its advanced design ensures reliable operation in various switching environments, helping engineers achieve optimal system performance and energy savings. For sourcing and integration, visit IC Manufacturer.
BSC340N08NS3GATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-channel MOSFET |
| Drain-Source Voltage (VDS) | 80 V |
| Continuous Drain Current (ID) | 34 A |
| RDS(on) (Max) | 0.034 ?? |
| Gate Threshold Voltage (VGS(th)) | 1 V – 3 V |
| Package | SuperSO8 |
| Polarity | N-Channel |
| Operating Temperature Range | -55??C to +150??C |
BSC340N08NS3GATMA1 Key Features
- Low RDS(on) enhances power efficiency, minimizing conduction losses in high-current applications.
- High drain current capability supports demanding loads, offering flexibility for engineers in power circuit design.
- SuperSO8 package provides a compact footprint with improved thermal performance, ideal for space-constrained environments.
- Wide operating temperature range ensures reliable operation in industrial and automotive applications.
BSC340N08NS3GATMA1 Advantages vs Typical Alternatives
This N-channel MOSFET stands out due to its combination of low on-resistance and high current rating in a compact SuperSO8 package. Compared to typical alternatives, it offers superior switching efficiency, enhanced thermal management, and greater reliability, making it an optimal choice for applications demanding both robust power handling and board space savings.
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Typical Applications
- DC-DC converters: The device??s low RDS(on) and high current handling make it an excellent fit for efficient conversion in industrial and automotive power supplies, reducing energy losses and improving overall power delivery.
- Motor drives: With its high drain current capability, the MOSFET is suitable for controlling motors in automation and robotics, providing responsive and reliable switching.
- Power management modules: Its robust characteristics enable integration into advanced power distribution networks where thermal stability and efficiency are required.
- Load switching: The device??s fast switching properties and rugged design make it suitable for high-side or low-side load switches in electronic control units.
BSC340N08NS3GATMA1 Brand Info
This device is part of a trusted family of MOSFETs known for their performance and reliability in industrial and automotive sectors. The BSC340N08NS3GATMA1 exemplifies this standard, providing a balanced solution of efficiency, compactness, and ruggedness. Its proven SuperSO8 package and robust electrical characteristics have made it a go-to choice for engineers seeking dependable switching solutions in modern electronic systems.
FAQ
What makes the BSC340N08NS3GATMA1 suitable for high-efficiency power applications?
Its low RDS(on) significantly reduces conduction losses, ensuring minimal heat generation and higher energy efficiency. This allows for more compact designs and less intensive thermal management in power supplies and converters.
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Can this MOSFET handle automotive environments?
Yes, the device??s wide operating temperature range and robust SuperSO8 package make it well-suited for automotive environments, where reliable switching and efficient thermal dissipation are required under varying load and temperature conditions.
How does the SuperSO8 package benefit my PCB design?
The SuperSO8 package offers a smaller footprint compared to traditional packages, allowing for higher component density on PCBs. It also provides improved thermal performance, which is crucial for high-current, high-power applications.
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Is the BSC340N08NS3GATMA1 compatible with standard gate drive voltages?
The MOSFET??s gate threshold voltage range of 1 V to 3 V means it is compatible with a wide variety of standard gate drivers, facilitating easy integration into existing designs without the need for specialized control circuitry.
What are common use cases for this device?
Typical use cases include DC-DC converters, motor controls, power management modules, and load switching circuits in both industrial and automotive sectors. Its performance enables efficient and reliable switching for these demanding applications.






