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NDB6030PL
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NDB6030PL Description
NDB6030PL Description
The NDB6030PL from onsemi is a P-channel power MOSFET designed for high-efficiency switching applications. With a 30V drain-to-source voltage (Vdss) and 30A continuous drain current (Id), it offers robust performance in power management circuits. The device features a low on-resistance (Rds(on)) of 25mΩ at 10V gate drive, ensuring minimal conduction losses. Packaged in a D2PAK (TO-263) surface-mount format with Tape & Reel (TR) packaging, it is optimized for automated assembly processes. Though marked as Obsolete, its specifications remain competitive for legacy designs requiring reliable P-channel MOSFETs.
NDB6030PL Features
- Low Gate Charge (Qg): 36nC at 5V reduces switching losses, enhancing efficiency in high-frequency applications.
- High Power Handling: 75W (Tc) power dissipation ensures thermal stability under demanding conditions.
- Wide Gate-Source Voltage Range: ±16V Vgs(max) provides flexibility in drive circuitry design.
- Low Threshold Voltage (Vgs(th)): 2V at 250µA enables compatibility with low-voltage control signals.
- Low Input Capacitance (Ciss): 1570pF at 15V minimizes gate drive requirements.
- REACH Unaffected & MSL 1: Compliant with environmental regulations and suitable for extended storage.
NDB6030PL Applications
- Power Management: Ideal for DC-DC converters, load switches, and battery protection circuits due to its low Rds(on) and high current capability.
- Motor Control: Suitable for H-bridge configurations in low-voltage motor drives.
- Automotive Systems: Legacy designs in 12V/24V automotive power distribution benefit from its ruggedness.
- Industrial Switching: Efficient in solenoid drivers and relay replacements where low conduction loss is critical.
Conclusion of NDB6030PL
The NDB6030PL is a high-performance P-channel MOSFET offering a balance of low on-resistance, high current handling, and efficient switching. While obsolete, its D2PAK packaging and robust specs make it a viable choice for legacy or cost-sensitive designs requiring reliable power switching. Engineers should evaluate alternative onsemi models for new designs but can leverage this component for proven applications in power conversion, motor control, and industrial systems.



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