STGB10NB37LZT4 Overview
The STGB10NB37LZT4 is a high-performance IGBT module designed for efficient power switching in industrial applications. Featuring a collector-emitter voltage rating of 1200 V and a continuous collector current of 10 A, this device ensures robust operation under demanding conditions. Its low switching losses and optimized gate charge enhance overall system efficiency, making it suitable for inverter circuits, motor drives, and power supplies. The compact package supports reliable thermal management and integration into compact assemblies. For detailed technical and sourcing information, visit IC Manufacturer.
STGB10NB37LZT4 Technical Specifications
| Parameter | Value | Unit | 
|---|---|---|
| Collector-Emitter Voltage (V_CES) | 1200 | V | 
| Continuous Collector Current (I_C) | 10 | A | 
| Gate-Emitter Voltage (V_GE) | ??20 | V | 
| Collector-Emitter Saturation Voltage (V_CE(sat)) | 1.8 | V | 
| Maximum Junction Temperature (T_j) | 150 | ??C | 
| Total Gate Charge (Q_g) | 48 | nC | 
| Turn-On Delay Time (t_d(on)) | 50 | ns | 
| Turn-Off Delay Time (t_d(off)) | 150 | ns | 
| Package Type | TO-247 | – | 
STGB10NB37LZT4 Key Features
- High voltage capability: Rated for 1200 V, it supports robust operation in high-voltage power conversion systems, improving reliability under stress.
 - Low saturation voltage: Minimizes conduction losses, enhancing energy efficiency and reducing heat dissipation in power electronics designs.
 - Fast switching characteristics: Enables high-frequency operation with reduced switching losses, benefiting inverter and motor drive applications.
 - Compact TO-247 package: Facilitates effective thermal management and simplifies integration into industrial power modules.
 
Typical Applications
- Inverter circuits for industrial motor control systems, where efficient switching and thermal resilience are critical for performance and longevity.
 - Switch mode power supplies (SMPS) requiring fast switching and high voltage handling to maintain power quality and system reliability.
 - Renewable energy systems such as solar inverters, where high voltage blocking capability and low losses improve overall energy conversion efficiency.
 - Uninterruptible power supplies (UPS) that demand reliable, rugged semiconductor devices to ensure continuous power delivery during outages.
 
STGB10NB37LZT4 Advantages vs Typical Alternatives
This device offers superior voltage blocking and low conduction losses compared to typical IGBTs in its class, enhancing power system efficiency and reducing thermal stress. Its fast switching times and optimized gate charge contribute to lower switching losses, improving system responsiveness. The reliable TO-247 package design supports better heat dissipation and ease of integration, making it a preferred choice for engineers seeking durable and efficient power modules.
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STGB10NB37LZT4 Brand Info
The STGB10NB37LZT4 is manufactured by STMicroelectronics, a leading global semiconductor company known for its innovative power management solutions. STMicroelectronics specializes in high-quality discrete and power semiconductor devices that support a wide range of industrial, automotive, and consumer applications. This IGBT module is part of their extensive portfolio designed to optimize power efficiency and system reliability in demanding environments.
FAQ
What is the maximum collector current rating for this IGBT?
The maximum continuous collector current is rated at 10 A, allowing the device to handle moderate power levels suitable for various industrial switching applications without compromising reliability.
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Which package type does this device use and why is it important?
This device comes in a TO-247 package, which is favored for its excellent thermal conductivity and mechanical robustness. This packaging facilitates efficient heat dissipation, crucial for maintaining safe operating temperatures during high power switching.
How does the low saturation voltage benefit my power design?
A low collector-emitter saturation voltage reduces conduction losses during operation,






