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The 1336-QOUT-SP14A IGBT Transistor Output Assembly by Allen Bradley is designed for robust performance in industrial applications. Capable of handling 60 horsepower and a nominal operating voltage of 230 V AC, it effectively manages three-phase output while integrating advanced protective features.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | IGBT Transistor Output Assembly |
| Product Line | 1336 Transistor Assembly |
| Part Number | 1336-QOUT-SP14A |
| UPC | 662453162133 |
| Weight | 2.56 lbs (1.16 kg) |
| Nominal Operating Voltage | 230 V AC |
| Rated Output Power | 60 HP |
| Switching Device Type | Insulated-Gate Bipolar Transistor (IGBT) |
| Number of Terminals | 3 (Gate, Collector, Emitter) |
| Terminal Connection Type | Screw terminals |
| Phase Compatibility | 3-phase output assembly |
| Nominal Frequency Range | 50/60 Hz (drive family standard) |
| Rated Current Capacity | 125–150 A (depending on drive rating) |
| Cooling Method | Forced air cooling (via drive system) |
| Isolation Type | Electrically isolated gate control |
| Protective Features | Overcurrent and thermal protection integrated in drive |
The 1336-QOUT-SP14A is a component from Allen Bradley's 1336 Transistor Assembly series, classified as an IGBT Transistor Output Assembly. This unit operates effectively with an input voltage of 230 V AC, and it delivers a robust output power of 60 horsepower. Engineered to support a 3-phase output, it leverages Insulated-Gate Bipolar Transistor (IGBT) technology for improved switching efficiency.
This assembly includes three essential terminals: Gate, Collector, and Emitter, all featuring screw terminal connections for secure installation. Users can expect reliable performance within a nominal frequency range of 50/60 Hz, adhering to standard specifications of the drive family. Current capacity is rated between 125 and 150 amps, which varies by the specific rating of the drive used.
Cooling is managed via forced air from the drive system, ensuring optimal operation under load. Additionally, the gate control is electrically isolated, enhancing safety and functionality. Integrating protective features like overcurrent and thermal safeguards ensures that the assembly operates without compromising safety or performance, making it a critical part for industrial applications.