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Durable 380V 480V Three Phase Inverter For Elevator Escalator

Shenzhen K-Easy Electrical Automation Company Limited
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    Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
     
    Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers
    • Buy cheap Durable 380V 480V Three Phase Inverter For Elevator Escalator from wholesalers

    Durable 380V 480V Three Phase Inverter For Elevator Escalator

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    Brand Name : K-EASY
    Model Number : KD600E
    Certification : CE And ISO Certificated
    Payment Terms : L/C, D/A, D/P, T/T, Western Union, MoneyGram
    Supply Ability : 30000 Sets Per Month
    Delivery Time : 1~7days
    • Product Details
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    Durable 380V 480V Three Phase Inverter For Elevator Escalator

    KD600E Series Elevator/Lift Purpose Series

    For elevator, escalator and hoist, 3 Years Warranty Frequency Converter, Frequency Inverter 50HZ/60HZ 220V 380V 480V


    Brand: K-Drive
    Certificate: CE, RoHS

    ModelPower RatingInput VoltageOutput FREQType
    KD600E Series0.4kW-900kW380-480V ±10%0.00-3200.00HzDC/AC to AC inverters

    frequency inverter

    Advantages

    Thanks to sophisticated engineers, scientific producing workmanship, rigorous quality control systems and management team, K-Drive frequency inverters are equipped with advanced features, some of which are listed as below:


    01. Starting torque: 180% at 0.5Hz (V/f pattern, SVC pattern);

    02. Speed adjustable range: 1: 100 (V/f pattern, SVC pattern);

    03. Speed accuracy: +/-0.5% (V/f pattern), +/-0.2% (SVC pattern);

    04. Over load capability: 150% 1minute, 180% 10seconds;

    05. Abundant frequency command sources;

    06. Diverse input and output terminals;

    07. Ambient temperature: -10°C~50°C;

    08. High precise torque constraint, process PID control, multi-speed control, contracting brake control, field weakening control, all sides protection, etc;

    09. Online and offline auto-tuning of motor parameters can both performed;

    10. Extremely short-time acceleration can be performed without any trip, such as 0.1s or 0s from 0Hz to 50Hz;


    Mains Supply (L1/L,L2,L3/N)
    Supply voltage380-480V ±10%
    Power source frequency50/60Hz ± 5%
    Displacement power factor (cos φ)(>0.98)
    Output Data (U, V, W)
    Output voltage / frequency0-100% of supply voltage / 0.00-600.00Hz or customized
    Ramp time0.01-60000s

    Note: 150% current can be provided for 1 minute, 180% for 10 seconds. Higher overload rating is achieved by oversizing the drive.


    Digital Input
    Programmable digital inputs5
    LogicNPN or PNP
    Voltage level22 - 26V
    Analog Input
    Analog inputs2
    ModesVoltage or current
    Level0 to +10V, 0/4 to 20 mA (scalable)
    Automatic correctionYES
    Relay Output
    Programmable relay outputs1
    RA - RB / TA - TBNormally close
    RA - RC / TA - TCNormally open
    Contact capacitance250 V AC / 3A, 30 V DC / 3 A
    Terminal 485 Interface
    485+ / 485-Rate: 4800/9600/19200/38400/57600/115200 bps Max. distance: 500 m
    GNDIsolated from COM
    Ambient
    VibrationLess than 5.9 m/s² (0.6g)
    HumidityRelative humidity 5% - 95 %. No condensation
    Corrosive environment3C3
    Ambient temperature-10 ºC - 50 ºC
    Altitude0 - 2,000 m
    Rated output current derated 1% every 100 m above 1,000 m
    Storage temperature-40 - +70 ºC
    EfficiencyEfficiency At rated amps: ≥93%
    IP gradeIP20
    Cooling methodForced air cooling
    Fieldbus Communication
    Modbus RTU, Modbus ASCIIBuilt-in




    Single multi-speed terminal elevator controller


    For the elevator controller with only one multi-segment speed changing terminal, the high-speed segment and the layer speed segment are controlled by the on-off of the high-speed terminal. The wiring diagram of such elevator controller and frequency converter is as follows:



    Single multi-speed terminal elevator controller


    For the elevator controller with only one multi-segment speed changing terminal, the high-speed segment and the layer speed segment are controlled by the on-off of the high-speed terminal. The wiring diagram of such elevator controller and frequency converter is as follows:



    Double multi-speed terminal elevator controller


    When the elevator is in use, if the system's power supply suddenly fails, it may result in passengers being locked in the car.

    KD600E series elevator inverter can support the emergency UPS power supply operation for emergency power outage operati-on, and the emergency signal can be received by the inverter terminal DI6. The wiring diagram is as follows:



    Closed loop elevator control


    KD600E series elevator inverter can support closed-loop control, and provides a variety of PG cards for use with different encoders. Please refer to Chapter 5 of KD600 series User manual for PG card information. The wiring diagram of elevat-or controller and frequency converter for closed-loop elevator control is shown in the following figure:



    Applications

    The KD600E driver is a special frequency converter for K-Drive elevators. They provide V/f control, including voltage and frequency separation control.



    Why choose K-Drive variable frequency drive?

    In the trend of advocating smart and simple industrial automation, environmentally friendly products, value-added solutions, K-Drive, as one of the world's leading drive manufacturers aggressively investing in R&D, production, and continuous quality improvement, is well positioned to provide its customers with technology-driven, performance-outstanding products such as VFDs, wind power converters, servo drives, HEV/EV drives, helping its customers save energy and increase industrial productivity with sustainability on the one hand, and enhancing their entire value-chain quality, delivery, and services on the other hand.


    Production

    In production, rigorous quality control is implemented on components, circuit boards, and the finished goods, assuring products without defects.



    K-Drive VS Other brands


    PerformanceCommon brandsK-Drive
    Applicable motorsAsynchronous motorsAsynchronous /synchronous motors
    Starting torque2.0Hz, 150% (sensor-less vector control) 0Hz, 180% (closed-loop vector control)0.5Hz, 180% (sensor-less vector control) 0Hz, 200% (closed-loop vector control)
    Speed adjustable range1:100 (SVC), 1:1000 (VC)1:200 (SVC), 1:1000 (VC)
    Ambient temperature (no derating required)-10-40ºC-10-50ºC (for most of the models)
    Rated input voltage208VAC-400VAC208VAC-480VAC
    CommunicationModbus RTU//ASCIIModbus RTU//ASCII Profibus-DP, CANopen, etc.
    Position control (fixed length, or angular positioning)×
    Field weakening control×
    Autotune onlineOnlineOnline & Offline
    Short-time ramp-upTripNo trip
    Customized features (software and/or hardware)Unprocurable or no experienceProcurable with rich experience

    K-Drive AC motor drives are able to replace AC drives and inverters of the following brands: , LS, Toshiba, Siemens, Lenze, Yaskawa, Mitsubishi, Delta, Hitachi, WEG and etc;

    Please leave us an inquiry for more details of our frequency inverters, like information of the model numbers, technical data, applicable application, pricing, distributor policy, lead time and/or customized functionality.



    Application of frequency inverter in pump field

    Frequency converters are widely used in water pump applications to control the speed of the motor driving the pump. By varying the frequency of the electrical power supplied to the motor, the speed of the motor can be adjusted to meet the desired flow and pressure requirements of the water system. This allows for more efficient operation of the pump and can result in significant energy savings.

    Some specific applications of frequency converters in water pumps include:

    1. Variable Speed Control: In many water pumping systems, the flow and pressure requirements vary depending on the time of day, season, or other factors. By using a frequency converter, the speed of the motor can be adjusted to meet these changing demands, resulting in more efficient operation and energy savings.

    2. Soft Start: Starting a large water pump motor can put a significant strain on the electrical system, and may cause voltage fluctuations and other issues. Frequency converters can be used to provide a soft start, gradually ramping up the speed of the motor to reduce these stresses and improve reliability.

    3. Energy Savings: By controlling the speed of the motor, frequency converters can help reduce energy consumption in water pumping applications. This can be especially significant in systems with varying flow and pressure requirements, where a fixed-speed motor may be operating inefficiently.

    4. Fault Detection: Some frequency converters can also be used to monitor the performance of the motor and pump, and detect faults such as low water levels, motor overload, or pump blockages. This can help prevent damage to the system and improve overall reliability.

    Overall, the use of frequency converters in water pump applications can result in more efficient operation, energy savings, and improved reliability.


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