NCF3320EHN/0Y Overview
The NCF3320EHN/0Y is a high-performance semiconductor device designed for advanced industrial and consumer applications requiring precise control and efficient power management. Featuring robust electrical characteristics and compact packaging, it offers engineers enhanced integration flexibility and reliability. Its optimized switching performance enables improved system efficiency and reduced power losses, making it suitable for demanding environments. This product supports a wide range of voltage and current conditions, facilitating versatile application deployment. For more detailed technical insights and sourcing information, visit the IC Manufacturer website.
NCF3320EHN/0Y Technical Specifications
| Parameter | Specification |
|---|---|
| Drain-Source Voltage (VDS) | 30 V |
| Continuous Drain Current (ID) | 4.6 A |
| Gate Threshold Voltage (VGS(th)) | 1.0 V (typical) |
| On-Resistance (RDS(on)) | 7.3 m?? @ VGS = 4.5 V |
| Input Capacitance (Ciss) | 750 pF |
| Power Dissipation (PD) | 1.6 W |
| Operating Temperature Range | -55 ??C to +150 ??C |
| Package Type | SuperSOT-3 (SOT-563) |
NCF3320EHN/0Y Key Features
- Low On-Resistance: Minimizes conduction losses to enhance overall system efficiency and reduce heat generation.
- Compact SuperSOT-3 Package: Saves board space, enabling higher density layouts in compact electronic designs.
- Wide Operating Temperature Range: Ensures reliable performance in harsh industrial and automotive environments.
- Fast Switching Characteristics: Supports high-frequency operation, improving power conversion efficiency.
NCF3320EHN/0Y Advantages vs Typical Alternatives
This device offers superior switching efficiency and lower conduction resistance compared to typical MOSFET alternatives in its class. Its compact packaging supports miniaturization trends, while the wide temperature tolerance enhances reliability in demanding applications. These advantages translate to improved power density, reduced thermal management requirements, and longer system lifespan.
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Typical Applications
- Load switching and power management in portable electronics and battery-powered devices, benefiting from low on-resistance and compact size to extend battery life and save space.
- DC-DC converter circuits requiring efficient and fast switching transistors for voltage regulation.
- Automotive electronic controls where thermal stability and reliability under varying temperature conditions are critical.
- Industrial automation equipment where precise power control and durability are essential.
NCF3320EHN/0Y Brand Info
The NCF3320EHN/0Y is produced by a leading semiconductor manufacturer known for delivering innovative, reliable, and efficient components tailored for industrial and consumer electronics markets. The product line reflects the brand??s commitment to high-quality manufacturing and rigorous testing standards, ensuring optimal performance under stringent operating conditions. This device embodies the brand??s expertise in MOSFET technology, focusing on compact design, energy efficiency, and robust electrical characteristics.
FAQ
What is the maximum voltage rating of this device?
The maximum drain-source voltage rating is 30 volts, making it suitable for low-voltage power switching and control applications.
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How does the low on-resistance benefit system design?
Low on-resistance reduces power losses during conduction, which decreases heat generation and improves overall efficiency. This allows for smaller heat sinks and more compact system layouts.
What type of package does this transistor use, and why is it important?
It uses a SuperSOT-3 (SOT-563) package, which is very compact, helping save printed circuit board space and enabling higher component density in modern electronics.
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Can this component operate reliably over a wide temperature range?
Yes, it is rated for operation from -55 ??C up to +150 ??C, ensuring stable performance in harsh environments such as automotive or industrial applications.
Is this device suitable for high-frequency switching applications?
Yes, the fast switching characteristics and low input capacitance make it well-suited for high-frequency power conversion and switching applications.





