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Single Phase 220v Vector Variable VFD Frequency Inverter 1hp 2hp 3hp CE

CHIFON ELECTRIC CO.,LIMITED
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    Buy cheap Single Phase 220v Vector Variable VFD Frequency Inverter 1hp 2hp 3hp CE from wholesalers
     
    Buy cheap Single Phase 220v Vector Variable VFD Frequency Inverter 1hp 2hp 3hp CE from wholesalers
    • Buy cheap Single Phase 220v Vector Variable VFD Frequency Inverter 1hp 2hp 3hp CE from wholesalers
    • Buy cheap Single Phase 220v Vector Variable VFD Frequency Inverter 1hp 2hp 3hp CE from wholesalers
    • Buy cheap Single Phase 220v Vector Variable VFD Frequency Inverter 1hp 2hp 3hp CE from wholesalers

    Single Phase 220v Vector Variable VFD Frequency Inverter 1hp 2hp 3hp CE

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    Brand Name : CHIFON
    Model Number : FPR500A-0.75G-S2
    Certification : CE,ISO,SGS,EAC
    Payment Terms : L/C, T/T, Paypal
    Supply Ability : 10000pcs per month
    Delivery Time : sample order 2 working days, bulk order 7-10 working days
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    Single Phase 220v Vector Variable VFD Frequency Inverter 1hp 2hp 3hp CE

    CE certificated Single Phase 220v Vector Variable Frequency Inverter 1hp 2hp 3hp




    Products Specifications:


    Basic FunctionSpecification
    Maximum output frequency0~500Hz
    Carrier frequency0.5kHz~16.0kHz;According to the load characteristics, carrier
    frequency can be adjusted automatically
    Input frequencyRange :47~63Hz
    Control modeV/F Open/closed loop vector control(SVC/FVC)
    Speed range1:50(Vector mode 0 ) 1Hz/150% rated torque
    Overload capability

    G type:150% rated current for 60s;

    180% rated current for 3s
    P type:120% rated current for 60s;

    150% rated current for 3s

    Torque boostAuto Torque boost Manual Torque boost; 0.1%~30.0%.
    V/F curve V/FFour modes : Line , Multi-point , Square V/F curve, V/F separation
    Jog controlJog frequency range:0.00Hz to F0-10(Max frequency)
    Accelerate/Decelerate curveLine or S-curve Acc/Dec mode, four kinds of Acc/Dec time Range
    of Acc/Dec Time0.0~65000.00s.
    DC brakeDC brake frequency: 0.00Hz to Maximum frequency
    brake time: 0.0 to 36.0s
    brake current value: 0.0 to 100%
    Simple PLC, Multi-speed16-speed operating through built-in PLC or control terminal
    Built-in PIDClose loop control system can be formed easily by using PID
    Automatic voltage
    regulating (AVR)
    Output voltage is regulated when voltage of the power network changes
    Overvoltage and over current
    stall control
    During operation automatically limits the inverter output current
    and bus voltage, to prevent fan over current and overvoltage trip.
    Rapid current limiting
    function
    Minimizing flow failures, protect the normal operation of the inverter
    Instantaneous stop non-stopLoad feedback energy compensation voltage is reduced and continues to maintain a short time when change is momentarily interrupted.
    Speed tracking startFor high-speed rotation of the motor speed identification, impact-
    free smooth start
    Rapid current limitRapid software and hardware limiting technology to avoid
    frequent converter over current fault.
    Virtual IOFive sets of virtual DO, five sets of virtual DI, enables easy logic control.
    Timing ControlTiming control: set the time range 0.0Min~6500.0Hour
    Multi-motor
    switch
    Two independent motor parameters, enabling two motors switching control
    Bus SupportTwo independent Modbus communication, CAN-Link
    Command sourceGiven the control panel, control terminal, serial communication port given. It
    can be switched by a variety of ways.
    Torque boostAuto Torque boost Manual Torque boost ; 0.1%~30.0%.
    Frequency sourceNine kinds of frequency sources: digital setting, analog voltage setting, analog current setting, pulse setting, or serial port and so on. It can be switched by a variety of ways.
    Auxiliary
    frequency source
    Nine kinds of auxiliary frequency source. Flexible implementation of auxiliary
    frequency tuning, frequency synthesis.
    Input terminalSix digital input terminals, one only supports 50khz high pulse input
    Two analog input terminals, one support 0V~10V voltage input
    One support 0 ~ 10V voltage input or 0 ~ 20mA current input
    Output
    terminal
    One high-speed pulse output terminal (optional open collector type), support of
    square wave 0 ~ 50kHz signal output
    One digital output terminal
    One relay output terminals
    Two analog output terminals, support 0 ~ 20mA current output or 0 ~ 10V
    voltage output


    Benefits of VFD

    Energy Savings with Variable Speed Drives

    If you have an AC motor-driven application that does not need to be run at full speed, then you can cut down energy costs by controlling the motor with a Variable Speed Drive (VSD). Variable Speed Drives (Also known as Variable Frequency Drives) allow you to match the speed of the motor-driven equipment to the process requirement.

    Variable Torque Versus Constant Torque

    Variable speed drives, and the loads they are applied to, can generally be divided into two groups: constant torque and variable torque. The energy savings potential of variable torque applications is much greater than that of constant torque applications. Variable torque loads include centrifugal pumps and fans, which make up the majority of HVAC applications. Constant torque loads include vibrating conveyors, punch presses, rock crushers, machine tools, and other applications where the drive follows a constant V/Hz ratio.

    Why Variable Torque Loads Offer Great Energy Savings

    In variable torque applications, the torque required varies roughly with the square of the speed, and the horsepower required varies approximately with the cube of the speed, resulting in a large reduction of horsepower for even a small reduction in speed. A motor in a variable torque application will consume only 25% as much energy at 50% speed as it will at 100% speed. This is referred to as the Affinity Laws, which define the relationships between speed, flow, torque, and horsepower.

    Energy Consumption

    Variable Speed Drives (VSDs) allow you to consume less energy than other speed control techniques when load requirements are less than full speed, as is usually the case in HVAC applications.

    Product technical information


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