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50/60Hz 2 Hp Variable Frequency Drive 1.5 Kw VFD 3 Phase For Rubber Cutting Machine

CHIFON ELECTRIC CO.,LIMITED
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    Buy cheap 50/60Hz 2 Hp Variable Frequency Drive 1.5 Kw VFD 3 Phase For Rubber Cutting Machine from wholesalers
     
    Buy cheap 50/60Hz 2 Hp Variable Frequency Drive 1.5 Kw VFD 3 Phase For Rubber Cutting Machine from wholesalers
    • Buy cheap 50/60Hz 2 Hp Variable Frequency Drive 1.5 Kw VFD 3 Phase For Rubber Cutting Machine from wholesalers
    • Buy cheap 50/60Hz 2 Hp Variable Frequency Drive 1.5 Kw VFD 3 Phase For Rubber Cutting Machine from wholesalers
    • Buy cheap 50/60Hz 2 Hp Variable Frequency Drive 1.5 Kw VFD 3 Phase For Rubber Cutting Machine from wholesalers

    50/60Hz 2 Hp Variable Frequency Drive 1.5 Kw VFD 3 Phase For Rubber Cutting Machine

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    Brand Name : CHIFON
    Model Number : FPR500M-1.5G-T4
    Certification : CE, ISO9001, 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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    50/60Hz 2 Hp Variable Frequency Drive 1.5 Kw VFD 3 Phase For Rubber Cutting Machine


    Made In China 3 phases Mini-Series 2hp 1.5kw VFD For Rubber Cutting Machine





    Product introduction

    FPR500 series relies on TI company's DSP dual-core professional control motor chip, which supplies the international leading vector control algorithm to realize the real high-precision flux vector torque control. It has built-in pg vector control (VC), pg-free vector control (SVC), and V/F control modes, which are widely applied to high-speed control accuracy, rapid torque response, and high performance at low frequency. The integration of torque control, speed control, and position control can meet the high-performance requirements of customer applications. And, FPR 500 has the ability to exceed the anti-trip performance of similar products and adapt to the severe power grid, ambient temperature, humidity, and dust, greatly improving the reliability of products.



    Technical characteristics

    Drive motor type:Ac asynchronous motor, Ac permanent magnet synchronous motor
    Four control modes:PG vector control(FVC), PG-free vector control(SVC),
    V / F control, Torque control
    Speed control range:PG vector control(FVC)1:1000
    PG- free vector control(SVC)1:200
    V / F control 1:50
    Speed control accuracy:PG vector control (FVC)±0.2%
    PG- free vector control (SVC)±0.5%
    Starting torque:PG vector control(FVC):180 % rated torque/0.01Hz
    PG- free vector control (SVC)150% rated torque/0.25Hz
    Torque control accuracy:PG vector control (FVC)±5%
    PG- free vector control (SVC)±8%
    Multi-motor switching: Two groups of motor parameters can realize the switching control of the two motors.
    Motor overheating protection:Optional IO expansion card, analog A / 3 can accept input from the motor temperature sensor
    Supports multiple encoders:Supports differential, open collector, uvw, rotary transformer, sine and cosine encoder
    Torque limitation and control: the "excavator" feature, automatically limits the torque during operation to prevent frequent overcurrent trips. Closed-loop mode can realize torque control.


    FPR500M series advantage



    FAQ:

    What is a variable frequency drive?

    A VFD is used to control the speed of an AC induction motor. it can do this by varying the motors supplied voltage and changing the frequency of the power. Three major designs are used in VFD they are pulse width modulation, current source inverter, and voltage source inverter

    It has become the most common drive controller it is because a VFD works very well with motor ranging, it is highly reliable, affordable, and it only reflects the least amount of harmonics back to the power source.

    Fault conditions in VFD (motor fault analysis)

    • Rolling element bearing faults
    • Sleeve bearing faults
    • Imbalance
    • Misalignment
    • Soft foot conditions
    • Mechanical resonances
    • Rotor winding failure
    • Stator winding failure
    • VFD carrier frequencies
    • Air gap issues

    Troubleshooting VFDs

    If you have an unidentified wide frequency band vibration fault it is possible that it is a VFD problem. It can be corrected by additional tuning of torque profiles, carrier frequencies, or smoothing parameters may correct the issue





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