Technical Specifications
| Feature | Specification |
|---|---|
| Model Number | HPE-POWER HUTA-400-12-1200 |
| Input Voltage | 380V – 480V AC (3-Phase) |
| Output Power | 12 kW (12000W) |
| Max Output Current | 12A |
| Origin | China / International |
| Control Interface | RS485 / Modbus / 0-10V Analog |
| Ignition Type | High-Frequency Inverter Start |
| Cooling Method | Forced Air Cooling |
| Weight | Approx. 9.5 kg |
| Dimensions | 360 mm (L) x 185 mm (W) x 165 mm (H) |
The HPE-POWER HUTA-400-12-1200 is an advanced Smart UV Inverter Ballast integrated with a high-performance power supply unit. Designed specifically for high-intensity ultraviolet (UV) curing systems, this inverter utilizes high-frequency switching technology to provide a stable, flicker-free output, significantly extending the lifespan of UV lamps. Its intelligent control system allows for precise power adjustment from 10% to 100%, enabling energy-efficient operation and seamless integration into automated production lines for printing, coating, and water sterilization industries.
Q&A: Product Details & Troubleshooting
Q: What are the advantages of using an inverter ballast over a traditional magnetic transformer? A: Inverter ballasts like the HUTA-400 are significantly lighter and more efficient. They provide a constant power output regardless of input voltage fluctuations and allow for instantaneous power adjustment, which prevents overheating of the UV lamp and reduces energy consumption by up to 30%.
Q: Can this unit power both Mercury (Hg) and Metal Halide (Ga) UV lamps? A: Yes, the “Smart” logic in the HUTA series is designed to be compatible with most standard medium-pressure UV lamps. However, it is essential to configure the output parameters (current and voltage) to match the specific ignition requirements of the lamp being used.
Q: The unit displays an “E004” error code. What does this mean? A: Error codes vary by firmware, but in the HPE-POWER series, E004 typically indicates an “Over-Temperature” fault. Check that the cooling fans are spinning freely and that the air intake filters are not clogged. Ensure there is at least 10cm of clearance around the unit for proper heat dissipation.
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