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Remote Control 180hp 132KW Off Grid Solar Pump Inverter Built In MPPT

Shenzhen Veikong Electric Co., Ltd.
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    Buy cheap Remote Control 180hp 132KW Off Grid Solar Pump Inverter Built In MPPT from wholesalers
     
    Buy cheap Remote Control 180hp 132KW Off Grid Solar Pump Inverter Built In MPPT from wholesalers
    • Buy cheap Remote Control 180hp 132KW Off Grid Solar Pump Inverter Built In MPPT from wholesalers
    • Buy cheap Remote Control 180hp 132KW Off Grid Solar Pump Inverter Built In MPPT from wholesalers

    Remote Control 180hp 132KW Off Grid Solar Pump Inverter Built In MPPT

    Ask Lasest Price
    Brand Name : VEIKONG
    Model Number : VFD500-PV
    Certification : CE
    Price : Negotiable
    Payment Terms : L/C, T/T, Western Union
    Supply Ability : 15000pcs per Month
    Delivery Time : depend on the order quantity
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    Remote Control 180hp 132KW Off Grid Solar Pump Inverter Built In MPPT

    132KW solar off grid hybrid inverter work with water pump in built MPPT​


    VEIKONG VFD500-PV series Solar Pumping Inverters


    1. VEIKONG solar water pump system is essentially an electrical pump system in which the electricity is provided by one or several PhotoVoltaic (PV) panels. A typical solar powered pumping system consists of a solar panel array that powers an electric motor, which in turn powers a bore or surface pump.


    2. What is solar pump inverter?

    A solar inverter or PV inverter,solar pump inverter,solar pump controller,solar water pump inverter,solar pump drive,solar water pump controller,solar mppt vfd,solar mppt frequency inverter,solar frequency inverter,solar pump vsd,solar frequency inverter,solar vfd are all key words

    IT is a type of electrical converter which converts the variable direct current (DC) output of a photovoltaic (PV) solar panel into a utility frequency alternating current (AC) that can be fed into a commercial electrical grid or used by a local, off-grid electrical network.


    It is able to convert DC voltage coming from solar panels into AC voltage for powering any pump driven by a three-phase motor.

    Pump speed is constantly adapted to available solar irradiation thus maximising the amount of pumped water and making possible operation even in conditions of low sunlight.

    It also offers complete pump protection against surges, overloads and dry running.


    Details and features


    Power range: 0.75kw-75kw 220VAC
    0.75kw-630kw 380VAC


    1. Advanced MPPT Technology: Maximum MPPT Efficiency: 99%;
    2. Auto-track All Daytime;
    3. Auto dormancy/wake-up, Under-voltage restart;
    4. Support both AC and DC power input (optional);
    5. Water Level Monitoring: dry run protection, overflow protection Record: generated power, pumped water, running time;
    6. The whole water pumping systems running not rely on grid power or battery;
    7. Protection Functions: support low frequency, dormancy, dry-run, over-current, minimum power and other protection functions;
    8. Default Auto-running: auto-running by keypad, auto-running by IoT, auto-running by Terminals;
    9. Excellent Control Performance: make sure the system auto-running with unattended, maximum output frequency is 600hz under VF control;
    10. Intelligent IoT: support GPRS module, for remote control.



    Electrical Specifications and Power degree
    220V380V
    Max input DC voltage450V810V
    DC voltage range150~450VDC300~810VDC
    Normal working DC voltage260V-400V400V-650V
    Recommended input mppt voltage330V550V
    MPPT efficiency>99%
    Rated output voltage1/3-phase 220VAC3-phase 380-480VAC



    Accessories:

    1. GPRS (support 2g/3g/4g internet)



    2. LCD keypad





    3. Output Reactor




    VFD500-PV solar pump inverter picture:
    Remote Control 180hp 132KW Off Grid Solar Pump Inverter Built In MPPT


    Mode Range


    Drive model

    Max DC input current (A)

    Rated output current (A)

    Applicable water pump (kW)

    VFD500M-40T00150-PV

    6.1

    3.7

    1.5

    VFD500M-40T00220-PV

    7.1

    5

    2.2

    VFD500M-40T00400-PV

    16.5

    9.4

    4

    VFD500M-40T00550-PV

    23.9

    13

    5.5

    VFD500M-40T00750-PV

    30.6

    17

    7.5

    VFD500-40T00150-PV

    6.1

    3.7

    1.5

    VFD500-40T00220-PV

    7.1

    5

    2.2

    VFD500-40T00400-PV

    16.5

    9.4

    4

    VFD500-40T00550-PV

    23.9

    13

    5.5

    VFD500-40T00750-PV

    30.6

    17

    7.5

    VFD50040T01100-PV

    39.2

    25

    11

    VFD500-40T01500-PV

    49.0

    32

    15

    VFD500-40T01850-PV

    57

    37

    18.5

    VFD500-40T02200-PV

    69

    45

    22

    VFD500-40T03000-PV

    91

    60

    30

    VFD500-40T03700-PV

    114

    75

    37

    VFD500-40T04500-PV

    146

    90

    45

    VFD500-40T05500-PV

    190

    112

    55

    VFD500-40T07500-PV

    237

    152

    75

    VFD500-40T09000-PV

    273

    176

    90

    VFD500-40T11000-PV

    319

    210

    110

    VFD500-40T13200-PV

    389

    253

    132

    220V single phase or three phase level

    VFD500-20T00075-PV

    6.7

    4.5

    0.75

    VFD500-20T00150-PV

    9.9

    7

    1.5

    VFD500-20T00220-PV

    14.1

    10.6

    2.2

    VFD500-20T00400-PV

    22.6

    17

    4

    VFD500M-20T00150-PV

    9.9

    7

    1.5

    VFD500M-20T00220-PV

    14.1

    10.6

    2.2


    Connect wire diagram


    FAQ

    1. How to achieve Automatic start after stop?
    If it is controlled by keyboard no need to set any parameter. If you want to control by external switch
    As the default control mode is keypad control, First set P00.06=1 and use a wire or switch to connect com
    and DI1,When the switch is closed, the drive run, when the switch is open, the drive stop
    2. How to use a float in the water tank to stop the pump if the tank is full?
    If your float signal is digital signal Use float switch to short DI 3 and com ,see diagram 1.3
    3.Use level probe in the well for protection against dry running
    First solution: See self learning of dry run
    Second solution: do it manually Set P24.13=30%-60%(as per real empty load current percentage based on
    rated current) and P24.14 P24.16 and P23.21
    Third solution: If your sensor is digital switch ,just short D4 and com
    Fourth solution: If your float signal is Analog signal, Connect Ai2 and 10V and GND and set P41.00=23 and
    P41.03-P41.06
    4.How to set minimum frequency ( for example) 30hz and maximum 50HZ
    Set P47.05=30HZ and 47.06 to some time and 47.07 to some time. Please refer to details of P47.05-47.07
    5.If pump is 60HZ frequency, how to set max frequency?
    Notice: If your motor rated frequency is 60HZ First solution for you, P01.06=P01.08=P11.05=60HZ.
    Quick setting and easier way: you should set P00.11=02 If your motor is three phase; if your motor is single
    phase with capacitor ,set P00.11=22;If your motor is single phase without capacitor ,set P00.11=32

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