5V 10V 1000A 1000 Amp10kW Programmable DC Power Supply

  • Rated output 10V 1000A 10kW each device
  • Multiple devices can be connected in parallel to have higher current, like 10V 2000A, 10V 3000A
  • Other output ratings can be customized
  • 3U rack mount cabinet design
  • 4 digits LED display for voltage and current
  • Low ripple, high stability
  • List mode function, Auto Run function, Remote sensing function
  • No overshoot during startup
  • Adjustable voltage rise time
  • Remote ON/OFF control
  • Preset function, setting of voltage and current with output open circuit
  • Multiple protections: OVP, OTP, ACF and current limit protections
  • RS232 & RS485 interface, support ModBus-RTU commands
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    TWINTEX PCL10-1000 is 10V 1000A 1000amp 10kW programmable DC power density with high power density in 3U. This 10V 1000A 1000amp power supply features low ripple 50mVrms and good stability, which can be used at 1000 amp max power continuously.

    PCL10-1000 is equipped with RS232 and RS485 at default, with option of LAN interface and analog interface, providing multiple communication choices for both digital control and analog control, easy for integration into test systems.

    Several PCL10-1000 units can be connected in parallel internally, to multiply the output current up to 2000A, 3000A, 4000A, 5000A, 6000A……10,000A max. Having this configuration, we can provide variable solutions of high current DC power supplies, for example:
    10V 2000A DC power supply PCL10-2000, using 2 modules
    10V 3000A DC power supply PCL10-3000, using 3 modules
    10V 4000A DC power supply PCL10-4000, using 4 modules
    10V 5000A DC power supply PCL10-5000, using 5 modules
    10V 6000A DC power supply PCL10-6000, using 6 modules
    ……
    10V 10,000A DC power supply PCL10-10000, using 10 modules

    With multiple communications and flexibility in high current output, PCL10-1000 is a good choice for semiconductor test system and power relay test system.

    Product Parameters


    Model
    Rated Output ModelRated Output
    VAWVAW
    PCL10-10000~10V0~1000A10kW
    PCL12-8000~12V0~300A9.6kW
    PCL13-6000~13V0~600A7.8kW 
    PCL20-5000~20V0~500A10kWPCL20-6000~20V0~600A12kW
    PCL30-3330~30V0~333.3A10kWPCL30-5000~30V0~500A15kW
    PCL40-2500~40V0~250A10kWPCL40-3750~40V0~375A15kW
    PCL50-2000~50V0~200A10kWPCL50-3000~50V0~300A15kW
    PCL60-1670~60V0~166.6A10kWPCL60-2500~60V0~250A15kW
    PCL80-1250~80V0~125A10kWPCL80-1870~80V0~187A15kW
    PCL100-1000~100V0~100A10kWPCL100-1500~100V0~150A15kW
    PCL150-660~150V0~66.67A10kWPCL150-1000~150V0~100A15kW
    PCL200-500~200V0~50A10kWPCL200-750~200V0~75A15kW
    PCL300-330~300V0~33.33A10kWPCL300-500~300V0~50A15kW
    PCL400-250~400V0~25A10kWPCL400-370~400V0~37.5A15kW
    PCL500-200~500V0~20A10kWPCL500-300~500V0~30A15kW
    PCL600-160~600V0~16.67A10kWPCL600-250~600V0~25A15kW
    PCL800-120~800V0~12.5A10kWPCL800-180~800V0~18.75A15kW
    PCL1000-100~1000V0~10A10kWPCL1000-150~1000V0~15A15kW
    PCL1500-60~1500V0~6.67A10kWPCL1500-100~1500V0~10A15kW
    PCL2000-50~2000V0~5A10kWPCL2000-70~2000V0~7.5A15kW
    WeightApprox 30kg
    Dimensions600Wx734.6Hx732D mm (including wheels)
    AC Input3φ4W (L1, L2, L3, PE), 380V±10% 47~63Hz

    For the purpose of product improvement, specifications are subject to change without prior notice.

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    • Experience excellence with our dedicated support and customer-focused approach.

    Frequently Asked Questions

    A DC power supply is to supply voltage and current in constant voltage (CV) or constant current (CC) mode within the rated output range. Such working characteristics is called a constant voltage/constant current automatic cross-over type. This permits continuous transition from constant current to constant voltage modes in response to the load change. The intersection of constant voltage and constant current modes is called the crossover point. Below figure shows the relationship between this crossover point and the load.

    In CV mode, a regulated output voltage is provided. The output voltage remains constant as the load increases while the output current changes in response to the load changes, up till the present current limit point is reached. At that point, the output current becomes constant and the output voltage drops in proportion to the further increases in load.

    Similarly, in CC mode, crossover from the CC to CV mode automatically occurs from a decrease in the load. A regulated output current is provided. The output current remains constant as the load decreases while the output voltage changes in response to the load changes.

    A power supply with CV and CC operation mode can be operated in only one mode according to load situation. The power supply is in CV mode when the actual load is over the preset load capacity; and the power supply is in CC mode when the actual load is below the preset load capacity.

    When the power supply is connected to a big capacitive load, it always causes increase to the output voltage in a power supply. The output voltage may make fast increase to the Over Voltage Protection point. It may also cause slow decrease when the output voltage is turned down.

    To solve this problem, connect a power resistor in parallel to the output terminals of the power supply; at the same time, connect a diode in serial between output terminals and the load.

    When an inductive load is connected to the power supply, it will cause a reverse polarity induction electric motive force when the power supply is turned on or off, or when preset the output voltage. The pulse noise caused by an inductive load will also affect the power supply, especially when the pulse noise has the same polarity with the output of power supply.

    To avoid effect or damage to the power supply, connect a diode in serial between the output terminals of power supply and the load; at the same time, connect a power resistor and a capacitor in parallel to the load to make a R-C snubbed circuit, which will significantly restraint generation of the noise.

    When use the power supply to charge a battery, such as accumulator and ni-mh battery, the recommended protection measures is to connect a diode between the power supply and the battery. When the output electrolytic capacitor of the power supply is charged, connecting a load (battery) may cause sparks. This is normal. After the two of them get to equal voltage, the sparks will disappear.

    Even if the peak current of a pulse load, such as motor, bulb, DC-DC or DC-AC converter module, does not exceed the rated current of the power supply, it will also cause voltage drop or instability to the output.

    A basic solution is to connect a inductor in serial between the power supply and the load. Or, choose a power supply with higher rated current.

    If the pulse circuit has a small pulse width or low peak current, another solution is to connect a capacitor with large capacity. A reference to choose capacity of a capacity is: 1000uF capacity to a 1A current.

    When the power supply is connected to a load that will cause reverse polarity current to the power supply output, the output voltage will increase, because the power supply cannot absorb the reverse polarity current from the load.

    A solution is to connect a diode in serial between the output terminal and the load; at the same time, connect a discharge resistor in parallel to the load to absorb the reverse polarity current. When the reverse polarity current is a peak surge, connect the large electrolytic capacitor in parallel to the two ends of the load.

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