STIB1060DM2T-LZ Overview
The STIB1060DM2T-LZ is a high-performance insulated gate bipolar transistor (IGBT) designed for industrial power switching applications. Optimized for efficient switching and low conduction losses, this device supports robust operation in demanding environments, making it ideal for motor drives, renewable energy systems, and power inverters. Its advanced packaging ensures thermal efficiency and reliability, contributing to longer system lifetimes and reduced maintenance. Engineered with precision, it meets stringent industry standards for power electronics components. For detailed specifications and availability, visit IC Manufacturer.
STIB1060DM2T-LZ Technical Specifications
| Parameter | Value |
|---|---|
| Collector-Emitter Voltage (V_CES) | 600 V |
| Collector Current (I_C) | 60 A (continuous) |
| Gate-Emitter Voltage (V_GE) | ??20 V |
| Power Dissipation (P_tot) | 300 W |
| Package Type | TO-247 |
| Junction Temperature (T_j) | -55 to 150 ??C |
| Turn-On Time (t_on) | 45 ns (typical) |
| Turn-Off Time (t_off) | 120 ns (typical) |
| Thermal Resistance Junction-to-Case (R_thJC) | 0.55 ??C/W |
STIB1060DM2T-LZ Key Features
- High voltage rating up to 600 V: Enables operation in a wide range of industrial power systems requiring robust voltage handling.
- Continuous collector current of 60 A: Supports high load conditions with reliable current conduction performance.
- Fast switching times: Typical turn-on/off times improve efficiency and reduce switching losses in power conversion applications.
- Thermally efficient TO-247 package: Enhances heat dissipation for improved reliability and longer device lifespan under heavy load.
- Wide operating temperature range: Allows deployment in harsh industrial environments without performance degradation.
Typical Applications
- Industrial motor drives requiring efficient power switching and high current capability to ensure smooth operation and energy savings.
- Renewable energy inverters, where robust voltage handling and fast switching improve conversion efficiency and system reliability.
- Switch mode power supplies (SMPS) used in industrial equipment, benefiting from low conduction losses and high switching speed.
- Uninterruptible power supplies (UPS), delivering reliable power backup functionality with stable and efficient transistor operation.
STIB1060DM2T-LZ Advantages vs Typical Alternatives
This IGBT offers superior thermal performance and faster switching compared to typical alternatives, reducing power losses and improving system efficiency. Its 600 V rating and 60 A current capacity allow integration into demanding industrial power circuits with enhanced reliability. The low thermal resistance package supports better heat management, extending device and system lifespan. All these factors result in a more robust and efficient solution for power electronics engineers seeking dependable semiconductor components.
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STIB1060DM2T-LZ Brand Info
The STIB1060DM2T-LZ is manufactured by STMicroelectronics, a global leader in semiconductor technology and innovation. Known for its extensive portfolio of IGBTs and power devices, STMicroelectronics focuses on delivering high-quality components for industrial, automotive, and consumer applications. This specific product reflects the brand??s commitment to efficiency, reliability, and advanced packaging technology, supporting engineers with components that meet rigorous performance and safety standards worldwide.
FAQ
What is the maximum operating temperature for this IGBT?
The device can operate reliably within a junction temperature range of -55 ??C to 150 ??C, allowing it to withstand high thermal stress common in industrial power applications.
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What type of package does the transistor use, and why is it important?
The transistor is housed in a TO-247 package, which offers excellent thermal dissipation properties. This helps maintain device temperature within safe limits during high power operation, enhancing reliability.
How fast can this IGBT switch on and off?
Typical turn-on and turn-off times are approximately 45 ns and 120 ns, respectively. These fast switching speeds minimize losses, improving overall






