STGB6NC60HDT4 Overview
The STGB6NC60HDT4 is a high-performance IGBT module designed for industrial applications requiring efficient power switching and robust thermal management. Featuring a collector-emitter voltage rating of 600 V and a continuous collector current of 6 A, this device supports reliable operation in demanding environments. Its optimized switching characteristics minimize power losses, enhancing system efficiency. The module??s compact design and rugged construction make it well-suited for use in motor drives, power supplies, and renewable energy systems. Engineers and sourcing specialists can rely on this component for high durability and seamless integration into industrial power electronics solutions. For more detailed product information, visit IC Manufacturer.
STGB6NC60HDT4 Technical Specifications
| Parameter | Specification | 
|---|---|
| Collector-Emitter Voltage (Vce) | 600 V | 
| Collector Current Continuous (Ic) | 6 A | 
| Gate-Emitter Voltage (Vge) | ??20 V | 
| Collector-Emitter Saturation Voltage (Vce(sat)) | Typically 1.65 V at Ic=6A | 
| Turn-On Delay Time (td(on)) | Approx. 75 ns | 
| Turn-Off Delay Time (td(off)) | Approx. 120 ns | 
| Junction Temperature (Tj) Max | 150??C | 
| Package Type | TO-220 Full Pack | 
| Total Gate Charge (Qg) | 45 nC (typical) | 
STGB6NC60HDT4 Key Features
- High voltage blocking capability: Supports up to 600 V collector-emitter voltage, enabling use in medium-voltage industrial circuits.
 - Low saturation voltage: Minimizes conduction losses for improved efficiency and thermal performance in power switching.
 - Fast switching times: Turn-on and turn-off delays under 150 ns reduce switching losses and increase system responsiveness.
 - Robust thermal handling: Rated for junction temperatures up to 150??C, ensuring reliability under harsh operating conditions.
 - Standard TO-220 package: Facilitates easy mounting and compatibility with common heatsinking solutions.
 - Wide gate voltage range: ??20 V gate-emitter voltage rating allows for flexible driving conditions without damaging the device.
 
Typical Applications
- Industrial motor control drives requiring efficient and reliable switching for variable speed and torque management.
 - Switch-mode power supplies (SMPS) where low switching losses and high voltage capability enhance power density.
 - Renewable energy inverters converting DC to AC power with robust IGBT performance under varying load conditions.
 - Uninterruptible power supplies (UPS) demanding fast switching and thermal stability to maintain continuous power delivery.
 
STGB6NC60HDT4 Advantages vs Typical Alternatives
This device offers a balanced combination of high voltage tolerance and low saturation voltage, reducing conduction losses compared to typical IGBTs in the same class. Its fast switching characteristics contribute to lower switching losses, enhancing overall power efficiency. The thermal robustness up to 150??C improves reliability in industrial environments, while the standard TO-220 package ensures easy integration and effective heat dissipation. These advantages make it a preferred choice for engineers seeking a dependable and efficient power transistor solution.
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STGB6NC60HDT4 Brand Info
The STGB6NC60HDT4 is manufactured by STMicroelectronics, a global leader in semiconductor solutions. STMicroelectronics specializes in power semiconductor devices designed for industrial, automotive, and consumer electronics applications. This IGBT module benefits from ST??s extensive expertise in silicon technology, ensuring high efficiency and reliability. The product is part of ST??s portfolio targeting power switching applications, where durability and performance are critical. STMicroelectronics provides comprehensive datasheets, technical support, and application notes to facilitate smooth integration and optimized design.
FAQ
What is the maximum collector current rating of the STGB6NC60HDT4?
The device is rated for a continuous collector current of 6 amperes. This rating allows it to handle moderate power levels in industrial switching applications while maintaining reliable operation within specified temperature limits.
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