NCF2984AHN/T0BE/UY Overview
The NCF2984AHN/T0BE/UY is a high-performance semiconductor device designed for robust switching and amplification applications. This component integrates advanced features that ensure low on-resistance and fast switching speeds, making it ideal for power management and control circuits. Engineered with precision manufacturing standards, it offers excellent thermal stability and durability under demanding operating conditions. Its compact packaging supports efficient PCB layout and heat dissipation. Sourcing this device from a reliable IC Manufacturer guarantees consistent quality and performance for industrial and automotive electronics.
NCF2984AHN/T0BE/UY Technical Specifications
| Parameter | Specification |
|---|---|
| Device Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 30 V |
| Continuous Drain Current (ID) | 7.8 A |
| Gate Threshold Voltage (VGS(th)) | 1.0 ?C 2.5 V |
| On-Resistance (RDS(on)) | 11 m?? @ VGS = 4.5 V |
| Total Gate Charge (Qg) | 6.5 nC |
| Operating Temperature Range | -55 ??C to +150 ??C |
| Package Type | HFN (Power SO-8) |
NCF2984AHN/T0BE/UY Key Features
- Low On-Resistance: Enables minimal conduction losses, enhancing energy efficiency in power switching applications.
- Fast Switching Speed: Reduces switching losses, beneficial for high-frequency circuits and improving overall system performance.
- Wide Operating Temperature Range: Suitable for automotive and industrial environments that require reliable operation under extreme conditions.
- Compact HFN Package: Facilitates space-saving PCB designs while ensuring effective thermal dissipation.
NCF2984AHN/T0BE/UY Advantages vs Typical Alternatives
This device offers superior switching efficiency and lower on-resistance compared to typical MOSFETs in the same voltage class. Its optimized gate charge reduces switching losses, improving system power efficiency. Additionally, the broad temperature tolerance and compact packaging provide enhanced reliability and integration flexibility, making it a preferred choice for demanding industrial and automotive applications.
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Typical Applications
- DC-DC converters requiring efficient power switching and low loss to maximize battery life and system performance in portable and automotive electronics.
- Load switching in industrial automation systems where reliable control and thermal management are critical.
- Power management modules in telecommunications equipment, supporting stable and efficient voltage regulation.
- Motor control circuits benefiting from fast switching and high current handling capabilities for optimal performance.
NCF2984AHN/T0BE/UY Brand Info
This product is part of a semiconductor portfolio designed by a leading manufacturer specializing in innovative power MOSFETs. The NCF2984AHN/T0BE/UY reflects the brand??s commitment to quality, reliability, and advanced technology integration. It is engineered to meet rigorous industry standards, offering end-users consistent performance and longevity in demanding applications across automotive, industrial, and consumer electronics markets.
FAQ
What is the maximum drain-source voltage rating of this device?
The maximum drain-source voltage is 30 volts, ensuring safe operation within low to medium voltage power management circuits without risk of breakdown under normal conditions.
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How does the on-resistance affect the device??s efficiency?
Lower on-resistance reduces conduction losses during switching, which improves overall energy efficiency and reduces heat generation, thus enhancing system reliability and performance.
What package type does this MOSFET come in, and why is it important?
It comes in a compact HFN Power SO-8 package, which supports efficient PCB layout and thermal dissipation, crucial for maintaining device performance in high-current applications.
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Can this device operate reliably in high-temperature environments?
Yes, the operating temperature range extends from -55 ??C to +150 ??C, making it suitable for automotive and industrial applications where temperature extremes are common.
What applications benefit most from the fast switching speed of this MOSFET?
High-frequency switching applications such as DC-DC converters and motor control circuits benefit significantly, as fast switching reduces losses and improves overall system responsiveness.





