• High-voltage DC pulse power supply

    Product Introduction: The high-voltage DC pulse power supply superimposes high-voltage pulses on a DC high-voltage output, making it suitable for industrial and medical applications that require pulsed electric fields or pulsed power. The pulse frequency and pulse width are adjustable, accommodating various process requirements. Applications: Electrostatic dust removal, irreversible electroporation for tumor ablation, excimer laser-based surface treatment of materials. Product features: Pulse frequency adjustable from 100Hz to 500 Hz; pulse width adjustable from 1 μs to 100 μs; DC and pulsed outputs can be superimposed; robust interference immunity, suitable for harsh electromagnetic environments; when used in the medical field, it can switch between radiofrequency ablation and irreversible electroporation.

  • Modular high-voltage DC power supply

    Product Introduction: The modular high-voltage DC power supply adopts a multi-module series-parallel architecture, achieving high-voltage, high-power output through input parallel connection and either output series or output parallel connection. Suitable for industrial and research applications that require high reliability and scalability. Application: High-power RF amplifiers, scientific research experimental setups, industrial lasers, particle accelerators. Product features: Modular design, supports N+1 redundancy and online capacity expansion; multi-pulse rectification input with low harmonic distortion; supports parallel operation for output power scaling up to the MW level; equipped with a remote control interface for precise adjustment and real-time monitoring; multiple protection functions including overvoltage and overcurrent protection.

  • High-Voltage DC Remote Power Supply System (DC Remote Power Supply)

    Product Overview: The high-voltage DC remote power supply system adopts a “near-end step-up, far-end step-down” architecture. It converts near-end AC power into high-voltage DC (typically 280V to 800V), transmits it over long distances via cable to the remote equipment, and then steps down the voltage to the level required by the load. The single-wire series connection scheme can significantly reduce cabling costs by approximately 80%. Applications: 5G base station remote power supply, highway monitoring equipment power supply, tunnel lighting and electromechanical equipment, and communication base stations in remote areas. Product features: Transmission loss is reduced by approximately 30% compared to AC power supply; it employs single-wire series technology, ensuring equal current to each remote load and high system stability.

  • High-Voltage Direct Current (HVDC) power supply system for telecommunications

    Product Introduction: The communication high-voltage DC power supply system converts AC power into high-voltage DC power, providing an uninterruptible power supply for telecommunications equipment and IT loads in data centers. The system adopts a modular architecture, comprising an AC distribution unit, rectifier modules, a battery pack, a DC distribution unit, and a monitoring module, with nominal output voltages of 240 V, 336 V, or 800 V. Applications: Communication base stations, data centers/IDC facilities, financial and government data centers, 5G base stations. Remote power supply product features: Approximately 30% energy savings compared to traditional UPS systems; modular design, supports N+X redundancy.

  • High Voltage Rectifier DC Power Supply

    Product Overview High-voltage rectified DC power supply is a special power supply equipment that converts alternating current into high-amplitude DC voltage output. The output voltage is usually in the thousands of volts to hundreds of kilovolts, and the output power ranges from hundreds of watts to tens of kilowatts. Its core function is to provide stable, low-ripple DC power for loads that require high-voltage DC bias or power. Different from conventional DC power supply, the core technical difficulties of high voltage rectifier DC power supply lie in the design of high voltage insulation, the control of electric field homogenization and the limitation of output energy storage. When the output voltage reaches tens of kilovolts, air insulation can no longer meet the requirements and oil insulation is required.

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