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The 1336-QOUT-SP20A is a transistor output assembly designed for Allen Bradley applications. This component handles an input voltage of 460 VAC and supports heavy-duty variable frequency drive (VFD) outputs efficiently.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Transistor Output Assembly |
| Product Line | 1336 Transistor Assembly |
| Part Number | 1336-QOUT-SP20A |
| Weight | 32.00 lbs (14.51 kg) |
| GTIN | 00 662453194738 |
| Collector-Emitter | IGBT |
| Input Voltage | 460 VAC |
| Switching Type | High-Speed PWM |
| Terminal Count | 3 (Gate, Collector, Emitter) |
| Compatible Drive Voltage | 460 VAC |
| Application | Heavy-Duty VFD Output |
| Mounting | Open Style |
| Compatible Drive HP | 300–350 HP |
| Component Type | Encapsulated IGBT Module |
| Output Power Support | 300–350 HP |
| Cooling | Heatsink Required |
The component identified as 1336-QOUT-SP20A from Allen Bradley serves as a transistor output assembly, integral in a wide variety of performance-driven applications. It is capable of operating with an input voltage of 460 VAC, making it suitable for robust industrial setups. The output assembly employs an insulated gate bipolar transistor (IGBT) technology, ensuring reliable operation and efficient control in heavy-duty situations.
This module is purposefully designed to facilitate high-speed pulse-width modulation (PWM) switching. Such functionality is essential for achieving precise output control within systems. The assembly incorporates three terminals designated for gate, collector, and emitter connections, integrating seamlessly with a compatible drive system. The compatible drive voltage of 460 VAC aligns with industrial standards, supporting power ratings within the range of 300 to 350 horsepower. This capability confirms its suitability for high-demand applications.
The 1336-QOUT-SP20A is classified as an encapsulated IGBT module, offering improved protection in challenging environments. It necessitates proper installation with open style mounting, ensuring straightforward adaptability within control panels. Effective heat management is critical for high-performance output modules; thus, the assembly requires a heatsink to maintain optimal operational temperatures and enhance longevity during extended use. Overall, this transistor output assembly stands out as an essential component for systems requiring enhanced power output and effective thermal management.