STGP10H60DF STMicroelectronics IGBT Transistor 600V 10A TO-247 Package

  • STGP10H60DF is a high-voltage IGBT designed for efficient switching and improved energy conversion.
  • Its voltage rating supports high power applications, enabling stable operation under demanding electrical conditions.
  • The package offers a compact footprint, facilitating board-space savings in dense electronic assemblies.
  • Ideal for motor drives, it enhances performance by delivering reliable switching in industrial control systems.
  • Built to meet stringent quality standards, it ensures consistent reliability in long-term operation.
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STGP10H60DF Overview

The STGP10H60DF is a high-performance IGBT module designed for efficient power switching in industrial applications. With a voltage rating of 600V and a current rating of 10A, this device offers robust operation under demanding conditions. Its low on-state voltage drop and fast switching capabilities contribute to reduced power losses and enhanced system efficiency. The module??s compact design and reliable construction make it suitable for motor drives, power inverters, and renewable energy systems. Engineers and sourcing specialists can expect consistent performance and ease of integration when using this device from IC Manufacturer.

STGP10H60DF Technical Specifications

ParameterSpecification
Collector-Emitter Voltage (VCES)600 V
Collector Current (IC)10 A
Gate-Emitter Voltage (VGE)??20 V
Collector-Emitter Saturation Voltage (VCE(sat))1.85 V (typical)
Turn-On Delay Time (td(on))65 ns (typical)
Turn-Off Delay Time (td(off))220 ns (typical)
Junction Temperature (Tj)-40??C to 150??C
Package TypeDFN (Discrete Flat No-lead)
Input Capacitance (Cies)1500 pF (typical)
Output Capacitance (Coes)85 pF (typical)

STGP10H60DF Key Features

  • High Voltage Blocking Capability: Supports up to 600 V, enabling use in medium-voltage power conversion applications.
  • Low Saturation Voltage: Minimizes conduction losses, improving overall system efficiency and reducing thermal stress.
  • Fast Switching Performance: Enables high-frequency operation, reducing switching losses and enabling compact converter designs.
  • Robust Thermal Performance: Wide junction temperature range ensures reliable operation in harsh industrial environments.

Typical Applications

  • Industrial motor drives requiring efficient and reliable power switching for variable speed control and torque management.
  • Power inverters for renewable energy systems, including solar and wind, benefiting from high efficiency and fast switching.
  • Uninterruptible power supplies (UPS) where low conduction losses and quick switching improve system responsiveness and reliability.
  • General-purpose power electronics circuits in industrial automation that demand durable and precise switching components.

STGP10H60DF Advantages vs Typical Alternatives

This device offers superior switching speed and low on-state voltage compared to many standard IGBT modules, resulting in reduced power dissipation and improved efficiency. Its robust voltage and current ratings combined with a compact DFN package facilitate easier integration and better thermal management. These advantages make it a preferred choice for engineers seeking reliability and performance in high-frequency industrial applications.

STGP10H60DF Brand Info

The STGP10H60DF is part of STMicroelectronics?? portfolio of power semiconductor devices. STMicroelectronics is a global leader in the design and manufacturing of advanced semiconductor solutions, including IGBTs, MOSFETs, and power modules. Their products are widely recognized for quality and innovation, supporting a broad range of industrial and automotive applications. This particular IGBT module exemplifies ST??s commitment to high efficiency, reliability, and compact design in power electronics.

FAQ

What is the maximum voltage rating of this IGBT module?

The maximum collector-emitter voltage rating is 600 V, which allows the device to be used safely in medium-voltage power conversion systems without risk of breakdown under normal operating conditions.

How does the low saturation voltage affect system performance?

A low collector-emitter saturation voltage reduces conduction losses during operation, which improves the overall efficiency of the power electronics system and decreases the amount of heat generated, enhancing reliability and reducing cooling requirements.

Can this device operate at high switching frequencies?

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