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0~50V 0~5000A 250KW High Power Rectifier for Electrolytic Hydrogen

Product Description:

Specifications:

Input parameters: Three phase, AC480V±10% ,50HZ

Output parameters: DC 0~50V 0~5000A

Output mode: Common DC output

Cooling method: water cooling

Power supply type: IGBT-based

Application Industry: Gas Electrolysis, such as hydrogen, sulfur hexafluoride, carbon tetrafluoride, sulfur hexafluoride, ultra pure ammonia etc.

Product size: 87*82.5*196cm

Net weight: 470kg

feature

  • Input Parameters

    Input Parameters

    AC Input 480v±10% 3 Phase
  • Output Parameters

    Output Parameters

    DC 0~50V 0~5000A continuously adjustable
  • Output Power

    Output Power

    250KW
  • Cooling Method

    Cooling Method

    forced air cooling / water cooling
  • PLC Analog

    PLC Analog

    0-10V/ 4-20mA/ 0-5V
  • Interface

    Interface

    RS485/ RS232
  • Control Mode

    Control Mode

    remote control design
  • Screen Display

    Screen Display

    digital display
  • Multiple Protections

    Multiple Protections

    lack phase over-heating over-voltage over-current short circuit
  • Control Way

    Control Way

    PLC/ Microcontroller

Model & Data

Model number

Output ripple

Current display precision

Volt display precision

CC/CV Precision

Ramp-up and ramp-down

Over-shoot

GKD50-5000CVC VPP≤0.5% ≤10mA ≤10mV ≤10mA/10mV 0~99S No

Product Applications

The electrolytic gas rectifier is mainly used in the electrolytic synthesis of hydrogen, sulfur hexafluoride, carbon tetrafluoride, sulfur hexafluoride, ultra pure ammonia and other special gases.

During electrolysis, cations in the electrolyte migrate to the cathode and electrons are reduced at the anode. The anion runs to the anode and loses electrons to be oxidized. Two electrodes were connected in copper sulfate solution and direct current was applied. At this point, copper and hydrogen will be found to precipitate from the plate connected to the cathode of the power supply. If it is a copper anode, copper dissolution and oxygen precipitation occur simultaneously.

Hydrogen production by electrolysis of water is the separation of water molecules into hydrogen and oxygen through an electrochemical process under the action of direct current. According to the different diaphragm, it can be divided into alkaline water electrolysis, proton exchange membrane electrolysis and solid oxide electrolysis.

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