Trench 9 Automotive MOSFETs

Nexperia’s automotive power MOSFETs are designed for performance and endurance and are qualified to AEC-Q101

Image of Nexperia's Trench 9 Automotive MOSFETsNexperia’s Trench 9 power MOSFETs primarily target the automotive industry, combining low voltage superjunction technology with advanced packaging capabilities to deliver high performance and ruggedness. Nexperia has expanded its portfolio to include ultra-low RDS(on) parts that address the ever-increasing demand for higher power density in many typical automotive applications. The Trench 9 devices are all qualified to AEC-Q101 and exceed the requirements of this international automotive standard by as much as two times on key reliability tests, including temperature cycling, high-temperature gate bias, high-temperature reverse bias, and intermittent operating life.

Features
  • Very robust superjunction technology with exceptional SOA and avalanche capability
  • Improved efficiency and power density through lower RDS(on) and enhanced switching performance
  • Tight Vth limits enable easy paralleling of MOSFETs in high current applications
  • Enhanced LFPAK56E design allows up to 30% improvement in RDS(on) and power density
Applications
  • Engine management
  • Reverse battery protection
  • DC/DC converters
  • Motor controls (brushless and brushed)
  • Power steering
  • Transmission controls
  • Pumps for water, oil, and fuel

Trench 9 Automotive MOSFETs

ImageManufacturer Part NumberDescriptionAvailable QuantityPriceView Details
BUK7S2R5-40H/SOT1235/LFPAK88BUK7S2R5-40HJBUK7S2R5-40H/SOT1235/LFPAK88826 - Immediate$16.30View Details
MOSFET N-CH 40V 325A LFPAK88BUK7S1R0-40HJMOSFET N-CH 40V 325A LFPAK88976 - Immediate$22.31View Details
MOSFET N-CH 40V 300A LFPAK88BUK7S1R2-40HJMOSFET N-CH 40V 300A LFPAK884578 - Immediate$21.65View Details
MOSFET N-CH 40V 260A LFPAK88BUK7S1R5-40HJMOSFET N-CH 40V 260A LFPAK881946 - Immediate$13.50View Details
MOSFET N-CH 40V 120A LFPAK56BUK7Y3R5-40HXMOSFET N-CH 40V 120A LFPAK565256 - Immediate$8.73View Details
Published: 2022-03-18