IGB50N65S5ATMA1 Overview
The IGB50N65S5ATMA1 is a high-performance Insulated Gate Bipolar Transistor (IGBT), engineered for robust switching and power conversion applications. It delivers reliable operation and efficient energy handling for demanding industrial environments. With its optimized structure, this device achieves a strong balance of low conduction losses and fast switching speeds, making it suitable for use in motor drives, inverters, and other power electronics. The IGB50N65S5ATMA1 is ideal for engineers who require consistent performance and durability in high-voltage scenarios. For sourcing and specification details, visit IC Manufacturer.
IGB50N65S5ATMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Device Type | IGBT (Insulated Gate Bipolar Transistor) |
| Collector-Emitter Voltage (VCES) | 650 V |
| Collector Current (IC) | 50 A |
| Configuration | Single Transistor |
| Mounting Type | Through Hole |
| Package / Case | TO-247-3 |
| Technology | Field Stop Trench |
| Input Type | Standard |
IGB50N65S5ATMA1 Key Features
- High voltage tolerance up to 650 V enables safe operation in demanding industrial and power grid environments.
- Rated for 50 A collector current, allowing for substantial power handling required in motor control and inverter circuits.
- Field Stop Trench technology reduces switching and conduction losses, improving overall system efficiency and thermal performance.
- Standard input type and through-hole TO-247-3 package ensure straightforward integration into existing designs and robust mechanical stability.
IGB50N65S5ATMA1 Advantages vs Typical Alternatives
This IGBT offers a compelling mix of high current capability and advanced Field Stop Trench technology, delivering lower conduction losses and faster switching versus many standard alternatives. Its robust voltage rating and reliable single-transistor configuration ensure dependable operation in power-intensive applications, making it a preferred choice for engineers seeking efficiency and reliability in their designs.
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Typical Applications
- Industrial motor drives: With its high current and voltage ratings, this IGBT is well-suited for controlling large motors in automation, pumps, and conveyor systems, enhancing energy efficiency and reliability.
- Power inverters: Offers efficient DC to AC conversion in renewable energy systems and industrial power supplies, maximizing output and operational stability.
- Uninterruptible Power Supplies (UPS): Ensures reliable switching for emergency backup systems, supporting critical loads during mains outages with minimal loss and fast response.
- Welding equipment: Provides robust switching and power handling in industrial welding machinery, supporting precise control and long-term durability in demanding environments.
IGB50N65S5ATMA1 Brand Info
The IGB50N65S5ATMA1 is part of a trusted portfolio of high-efficiency power semiconductors designed for industrial and commercial applications. Its robust construction and advanced technology reflect the brand’s commitment to reliable performance and innovation in power electronics. By focusing on proven topologies like Field Stop Trench, the manufacturer delivers components that help engineers achieve higher system efficiency, longer service life, and greater design flexibility.
FAQ
What is the primary advantage of using this IGBT in industrial applications?
Its high voltage and current ratings, combined with Field Stop Trench technology, enable efficient and reliable switching in demanding environments such as motor drives, inverters, and industrial power supplies. This ensures consistent performance and reduces overall energy loss.
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What package is this device supplied in, and why does it matter?
The device comes in a TO-247-3 through-hole package. This package is valued for its excellent heat dissipation and robust mechanical stability, making it ideal for high-power and industrial applications requiring reliable mounting and thermal management.
Can this IGBT be used in renewable energy applications?
Yes, its high voltage rating and efficient switching performance make it suitable for use in power inverters for solar and wind energy systems where reliable DC to AC conversion is critical for maximizing energy output and system longevity.
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How does the Field Stop Trench technology benefit users?
Field Stop Trench technology reduces both conduction and switching losses, resulting in improved energy efficiency and lower heat generation. This allows for more compact designs and helps extend the operational life of related equipment.
Is the IGB50N65S5ATMA1 suitable for high-frequency switching?
The device??s advanced structure is optimized for fast switching, making it well-suited for high-frequency power conversion and control tasks. This is particularly useful in applications where speed and efficiency are paramount, such as UPS and welding equipment.





