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PMEG060V100EPDAZ
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PMEG060V100EPDAZ Description
PMEG060V100EPDAZ Description
The PMEG060V100EPDAZ from Nexperia is a high-performance 60V, 10A Schottky diode in a compact CFP15 surface-mount package. Designed for automotive-grade applications, it features fast recovery (<500ns) and low forward voltage (560mV @ 10A), ensuring efficient power management with minimal losses. With a reverse recovery time (trr) of just 33ns, it outperforms standard diodes in switching applications. The device operates at a junction temperature up to 175°C, making it suitable for harsh environments. Compliant with ROHS3 and REACH, it meets stringent environmental and safety standards.
PMEG060V100EPDAZ Features
- Low Vf & Fast Recovery: 560mV @ 10A and 33ns trr enhance efficiency in high-frequency circuits.
- High Current Handling: 10A average rectified current (Io) with low reverse leakage (700µA @ 60V).
- Automotive Grade: AEC-Q101 qualified for reliability in automotive systems.
- Compact & Robust: CFP15 package (Tape & Reel) ensures space-saving and automated assembly compatibility.
- Wide Temp Range: Operates up to 175°C, ideal for high-heat environments like engine control units.
- Low Capacitance: 350pF @ 10V reduces switching noise in high-speed applications.
PMEG060V100EPDAZ Applications
- Automotive Electronics: DC-DC converters, motor drives, and load switches in 48V systems.
- Power Supplies: Synchronous rectification in SMPS and OR-ing circuits.
- Industrial Systems: Freewheeling diodes in relays and solenoids.
- Consumer Electronics: High-efficiency voltage clamping in portable devices.
- Renewable Energy: Solar panel bypass diodes for minimizing shadowing losses.
Conclusion of PMEG060V100EPDAZ
The PMEG060V100EPDAZ stands out for its low-loss, high-speed performance in demanding applications. Its automotive-grade reliability, compact form factor, and superior thermal characteristics make it a preferred choice for designers prioritizing efficiency and durability. While marked "Not For New Designs", it remains a proven solution for legacy systems requiring robust Schottky diode performance. Ideal for engineers seeking a balance between power handling and switching speed in constrained spaces.



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