CSD25484F4
- Manufacturer's Part No.:CSD25484F4
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- Series:FemtoFET™
- Description:MOSFET P-CH 20V 2.5A 3-PICOSTAR
- Quantity:RFQAdd to RFQ List
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- In Stock: 84000
- Available: 48000
Reference Price(In US Dollars)
Qty | Unit Price | Ext.Price |
---|---|---|
1+ | US $0.27720 | US $0.28 |
10+ | US $0.18480 | US $1.85 |
30+ | US $0.13860 | US $4.16 |
100+ | US $0.11088 | US $11.09 |
500+ | US $0.10164 | US $50.82 |
1000+ | US $0.09240 | US $92.40 |
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- Description
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CSD25484F4 is a specific model of a power MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) produced by Texas Instruments, a well-known semiconductor manufacturer based in Texas. This component is designed for high-efficiency switching applications, making it suitable for various electronic devices and power management systems.
The CSD25484F4 features a compact, surface-mount package that allows for easy integration into circuit boards. Its design typically includes a low on-resistance, which minimizes power loss during operation, enhancing overall efficiency. The device is capable of handling high voltage and current levels, making it ideal for applications such as DC-DC converters, motor drivers, and power supplies.
In terms of electrical characteristics, the CSD25484F4 boasts a high breakdown voltage, ensuring reliable performance in demanding environments. It also has a fast switching speed, which is crucial for applications that require rapid on-off control. The thermal performance of the MOSFET is optimized to dissipate heat effectively, allowing it to operate at higher power levels without overheating.
The CSD25484F4 is often used in conjunction with other components in power management circuits, and its specifications make it a versatile choice for engineers looking to design efficient and reliable electronic systems. Overall, this MOSFET represents a blend of performance, efficiency, and reliability, making it a valuable component in modern electronics.
Functional Equivalent (FE) materials, including Fused Filament Fabrication (FFF) form, assembly, and functionally compatible substitute materials.
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