Nexperia Application-Specific Power MOSFETs

Nexperia Application-Specific Power MOSFETs optimize parameters to match requirements. Nexperia combines proven MOSFET expertise with broad application understanding to create an expanding range of application-specific MOSFETs.

ASFETs for Hotswap and Soft Start are designed to support always-on applications and equipment. The CCPAK ASFETs for Hotswap and Soft Start offer a reliable linear mode, enhanced SOA, and low RDS(on). The CCPAK ASFETs are designed for carefully controlled in-rush current to protect components on replacement boards inserted into a live system.

ASFETs for PoE, eFuse, and relay replacement have been notably developed to complement modern high-power PSE controllers. The devices utilize the same silicon technology as the more significant "ASFETs for hot swap." These smaller ASFETs supply enhanced SOA for low-power linear-mode applications in a range of compact DFN2020 (2mm x 2mm) and LFPAK33 (3.3mm x 3.3mm) packages.

ASFETs for Battery Systems and eFuse are built for multi-cell battery-powered equipment. Li-ion batteries have the advantage of high energy density. However, this can become problematic in a fault condition, with the potential for a massive uncontrolled energy discharge, resulting in overheating of loads and potential circuit fires. An extremely robust and thermally efficient MOSFET is required to handle any significant discharge in a controlled manner until the battery is safely isolated and the system is switched off. This is an ideal application for Nexperia's most demanding LFPAK-housed devices.

ASFETs for DC motor control, including 50V/55V ASFETs, are designed to fulfill the requirements of 36V motors, from cordless power tools to outdoor power equipment and even e-bikes and scooters. MOSFETs that have been optimized for high current, strong SOA, and rugged avalanche rating are required to drive these challenging applications safely and efficiently.

Features

  • ASFET for Hotswap and Soft Start
    • MOSFETs with a strong linear mode performance and enhanced Safe Operating Area (SOA) are required to manage in-rush current effectively and reliably when capacitive loads are introduced to the backplane
    • Once a replacement board is safely powered up, the MOSFET is turned fully ON
  • ASFETs for Battery Systems and eFuse
    • Under a fault situation, the Battery Isolation MOSFET normally goes into linear mode due to voltages being developed across circuit inductance at high current when the fault causes a deep discharge
    • Strong SOA MOSFETs continue to operate safely and controllably until switched off, and the battery is fully isolated from the load circuit
    • A low RDS(on) is required for low conduction losses in normal operation, but parameters need to be optimized for safe battery isolation
    • Robust Battery Isolation MOSFETs can be used as the primary protection for equipment approval
    • A low Vt may be required as battery protection IC may only have a 2V to 3V gate drive
  • ASFETs for Power over Ethernet
    • MOSFET’s primary role is to safely manage inrush current when capacitive loads are added to the network
    • Extended enhanced Safe Operating Area (SOA) to withstand power dissipation due to short-circuit fault conditions until the PSE controller detects the fault and switches off
    • Enhanced protection that offers more than 2x the protection of competitive devices. During a cable short fault, the ASFETs for PoE can safely dissipate up to 30W under +60°C ambient for up to 20ms
    • Able to squeeze more high-power PoE ports into a compact router/switch requires superior power density offered by the thermal efficiency and compact footprint of the LFPAK33 package
  • ASFETs for DC Motor Control
    • 50V/55V for 36V DC motors, optimized SOA, high ID rating, and excellent avalanche capability
    • High ID for motor overload, conditions highest current capability up to 500A
    • Half-bridge for space-constrained motor applications, 60% lower parasitic inductance, and improved thermal performance
    • Repetitive avalanche for space-constrained DC motors guaranteed repetitive avalanche performance

Applications

  • Power over Ethernet (PoE)
  • Battery systems and eFuse
  • DC motor control
  • Hotswap and soft start

Videos

Publicado: 2024-12-26 | Actualizado: 2025-01-21