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IGBT Fully Controlled Hydrogen Production Power Supply from China Suppliers and Factory for Efficient Energy Solutions
Product Feature
Feature 01
Energy-saving and electricity-saving: Advanced phase-shifting full-bridge soft-switching control technology of power components is adopted to make the switch tube work in soft-switching state and reduce the loss of the switch tube. The switch tube of the inverter circuit of the transformer is a switch tube with low conduction voltage and low switching loss, and phase-shifting resonance control is adopted to realize soft switching.
Feature 02
The high-performance MOSFET tube has the advantages of high efficiency, simple structure, small on-state loss, strong current turn-off ability, fast switching speed, small loss and no secondary breakdown. There is almost no loss in the process of frequent turn-on and turn-off. The power saving is 10%. With the decrease of voltage and current, the proportion of energy saving will gradually increase.
Feature 03
Using high-frequency transformer, the volume is small, and the loss is generally less than 1%. The transformer loss is low. The loss of copper and iron in transformer is small. The circuit system features a reduced number of loss connection points, and the copper material is used. The power factor of high frequency power supply is high, and it is kept at 0.95.
Feature 04
Full-wave rectification technology is adopted to improve the efficiency of rectifier.
Feature 05
Strong isolation, strong anti-interference ability, and the harmonic is less than 5%.
Feature 06
Distributed high-frequency power supply system works in parallel with power modules, and adopts system current sharing, N+M redundancy and hot plug technology, so that each converter can handle less power to reduce electrical stress, which breaks the bottleneck that the output power of a single converter is not large enough, and improves the output power to tens or even hundreds of kilowatts, greatly improving the reliability of the system.
Multi-Module Parallel Structure: High-power high-frequency power supply adopts multi-module parallel structure, with RS485 control system and current sharing system, and the current sharing coefficient is within 1%.
Soft Parallel System Mode: Under normal circumstances, when one module fails, the system will automatically shut down the failed unit, and the other modules can still operate normally. The failed module can be hot-swapped and maintained, ensuring that power supply will never stop.
Electrical Parameter
| Output response time | ≤0.1s |
| Output ripple coefficient | ≤ 3% |
| Harmonic requirement | ≤3%~5% |
| Power factor | ≥0.94~0.99 |
| Conversion efficiency | ≥95%~97.5% |
| Power input range | 380V~690V±10% |
| Max output power | 6MW~9MW |
| Output voltage | 0~820 |
| Output current | 0~20000 |
| Output waveform | DC |
| Overload capacity | 110% |
Function
Operation
Touch screen / Ethernet / Analog / Profibus DP
Control
Constant power / constant voltage / constant current
Output
Direct current (DC)
Frequently Asked Questions
What technologies are used to achieve energy savings in this power supply?
It adopts advanced phase-shifting full-bridge soft-switching control technology and high-performance MOSFET tubes. The transformer's inverter circuit features low conduction voltage and low switching loss switch tubes, combined with phase-shifting resonance control to minimize losses during frequent switching, resulting in a power saving of 10%.
What happens if one of the modules fails during operation?
The system operates in a soft parallel mode. Under normal circumstances, when one module fails, the system automatically shuts down the failed unit. The remaining modules continue to operate normally. The failed module can be hot-swapped and maintained without stopping the power supply.
What are the primary control and operation modes available?
The control modes include constant power, constant voltage, and constant current. For operations, the system supports Touch screen, Ethernet, Analog, and Profibus DP interfaces.
What is the electrical efficiency and power factor of this system?
The conversion efficiency ranges between ≥95% and 97.5%. The power factor is highly efficient, maintained at 0.95 (with an electrical parameter range of ≥0.94 to 0.99).
What are the maximum output power and overload capacity limits?
The system is capable of delivering a maximum output power of 6MW to 9MW, with an overload capacity rating of 110%.


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