Manufacturer Part Number
STH12N120K5-2
Manufacturer
STMicroelectronics
Introduction
The STH12N120K5-2 is a high-performance N-Channel MOSFET from STMicroelectronics' MDmesh K5 series, designed for high-voltage, high-power applications.
Product Features and Performance
1200V Drain-to-Source Voltage
12A Continuous Drain Current @ 25°C
Low On-Resistance of 690mΩ @ 6A, 10V
Fast Switching Capabilities
High Power Density of 250W
Product Advantages
Excellent Efficiency and Thermal Performance
Robust and Reliable Design
High Voltage Handling Capability
Optimized for High Frequency Switching
Key Technical Parameters
Vdss: 1200V
Vgs(Max): ±30V
Rds(on) (Max): 690mΩ @ 6A, 10V
Ciss (Max): 1370pF @ 100V
Qg (Max): 44.2nC @ 10V
Quality and Safety Features
RoHS3 Compliant
TO-263-3 (DPak) Package with Exposed Pad for Improved Thermal Performance
Robust Design for High Reliability
Compatibility
This MOSFET is compatible with a wide range of high-voltage, high-power applications, including:
Switch-mode Power Supplies
Motor Drives
Inverters
Converters
Welding Equipment
Industrial Electronics
Application Areas
High-Voltage, High-Power Switching
Industrial and Commercial Power Electronics
Renewable Energy Systems
Automotive Electronics
Product Lifecycle
The STH12N120K5-2 is an active product in the STMicroelectronics portfolio. There are no current plans for discontinuation, and replacement or upgrade options are available as needed.
Key Reasons to Choose This Product
Excellent Efficiency and Thermal Performance: The low on-resistance and high power density of the STH12N120K5-2 enable efficient and compact power electronics designs.
Robust and Reliable Design: The device's rugged construction and RoHS3 compliance ensure long-term reliability in demanding applications.
High Voltage Handling Capability: The 1200V Drain-to-Source Voltage rating makes this MOSFET suitable for a wide range of high-voltage applications.
Optimized for High Frequency Switching: The fast switching capabilities and low gate charge of the STH12N120K5-2 make it ideal for high-frequency power conversion circuits.