Nexperia GANE7R0/GANE2R7/GANE1R8 100V GaN FETs

Nexperia GANE7R0/GANE2R7/GANE1R8 100V GaN FETs are general-purpose, normally off e-mode devices that deliver superior performance and very low on-state resistance.

The GANE7R0-100CBA is a 100V, 7.0mΩ Gallium Nitride (GaN) FET in a Wafer Level Chip-Scale Package (WLCSP). The GANE2R7-100CBA is 100V, 2.7mΩ Gallium Nitride (GaN) FET in a Wafer Level Chip-Scale Package (WLCSP). The GANE1R8-100QBA is a 100V, 1.8mΩ Gallium Nitride (GaN) FET in a Very-Thin-Profile Quad Flat No-Lead (VQFN) package.

The Nexperia GANE7R0/GANE2R7/GANE1R8 100V GaN FETs are ideal for high-power density and high-efficiency power conversion, class D audio amplifiers, fast battery charging, and AC-to-DC converters.

Features

  • Enhancement mode - normally-off power switch
  • Ultra-high frequency switching capability
  • No body diode
  • Low gate charge, low output charge
  • Qualified for standard applications
  • RoHS, Pb-free, REACH-compliant
  • High efficiency and high power density
  • Wafer Level Chip-Scale Package (WLCSP) 2.5mm x 1.5mm (GANE7R0-100CBA)
  • Wafer Level Chip-Scale Package (WLCSP) 4.45mm x 2.30mm (GANE2R7-100CBA)
  • Very-Thin-Profile Quad Flat No-Lead package (VQFN) 4.0mm x 6.0mm (GANE1R8-100QBA)

Applications

  • High power density and high efficiency power conversion
  • AC-to-DC converters (secondary stage)
  • High frequency DC-to-DC converters in 48V systems
  • 400V to 48V LLC converters, secondary (rectification) side (GANE7R0-100CBA and GANE2R7-100CBA)
  • Class D audio amplifiers
  • Fast battery charging, mobile phone, laptop, tablet, and USB Type-C® chargers
  • Datacom and telecom (AC-to-DC and DC-to-DC) converters
  • Motor drives
  • LiDAR (non-automotive)

GANE7R0-100CBA Pinning

Location Circuit - Nexperia GANE7R0/GANE2R7/GANE1R8 100V GaN FETs

GANE2R7-100CBA Pinning

Location Circuit - Nexperia GANE7R0/GANE2R7/GANE1R8 100V GaN FETs

GANE1R8-100QBA Pinning

Location Circuit - Nexperia GANE7R0/GANE2R7/GANE1R8 100V GaN FETs
Publicerad: 2025-06-25 | Uppdaterad: 2025-07-03