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ISO Motion Control Servo Motors And Drives , Plastic Machinery Servo Drive Unit

Categories Servo Drive Motor
Brand Name: K-EASY
Model Number: P100S/P100E
Certification: CE And ISO Certificated
Place of Origin: China
MOQ: 1pcs
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability: 30000 Sets Per Month
Delivery Time: 1~7days
Packaging Details: Carton Box /Woody Box
Monitor: Position Speed deviation
Dynamic Braking: Build-in / Build-out
Power Section: P200 series without it
Display: 5 digital tubes and 4 operation keys
Output Power: 0.75Kw-1Kw
Product Name: P300E
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ISO Motion Control Servo Motors And Drives , Plastic Machinery Servo Drive Unit

Whole Set Albert Servo Motors and Drives for Plastic Machinery Motion Control


Brand: K-Drive
Certificate: CE, RoHS



Pulse Type AC Servo System



Product features

Strong internal motion control functions which can realize position, speed,torque,homing controlling modes. It also supports I/O control and standard Modbus RTU protocol. It can replace PLC partly, which helps to save cost.



System Wiring Example


Drives Of P100S Series As Example:



Drives Of P300 Series As Example:



Dimension



Pecification



Products images



EtherCAT Bus Field AC Servos

Feature Introduction



System Wiring Example



Dimension



Drive Specification



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.


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

Production

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




How to connect ac servo and variable frequency inverter ?


Connecting an AC servo motor to an inverter involves a few steps, and the exact process may vary depending on the specific equipment you are using. Here are some general steps that may be helpful:

  1. First, make sure that you have the correct wiring and cabling for your system. Refer to the manuals for your AC servo motor and inverter to determine the specific requirements.

  2. Identify the three-phase power source, which is typically provided by your electrical supply. Ensure that the voltage and frequency of the power source match the requirements of your servo motor and inverter.

  3. Connect the power supply to the inverter, following the manufacturer's instructions. This typically involves connecting the three-phase power supply to the inverter's main power terminals.

  4. Connect the servo motor to the inverter, following the manufacturer's instructions. This typically involves connecting the motor's three power wires to the inverter's output terminals, and connecting the motor's feedback wires to the inverter's feedback terminals.

  5. Configure the inverter's settings to match the specifications of your servo motor. This typically involves setting the motor type, maximum speed, torque limits, and other parameters.

  6. Test the system to ensure that the servo motor is operating correctly. You may need to adjust the settings of the inverter to fine-tune the performance of the motor.

It's important to note that AC servo motors and inverters can be dangerous if not handled correctly, and should only be installed and serviced by qualified professionals with the necessary training and experience. If you are not familiar with these systems, it's best to seek the assistance of an expert.


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