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New ELAU PacDrive MC-4 MC-4/11/01/400 VCA07AAAA0AA00 13130261 Drive Module 1.5A 400V for Control Electric Motor

Product Details

Place of Origin: France

Brand Name: ELAU

Certification: ICE

Model Number: MC-4/11/01/400

Payment & Shipping Terms

Minimum Order Quantity: 1

Price: USD 2000-4000 piece

Packaging Details: Carton packaging

Delivery Time: 3-7 working days

Payment Terms: T/T, Western Union

Supply Ability: 10PCS/ 4 weeks

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Specifications
Highlight:
Manufacturer:
Schneider Electric
Power Supply:
Single Phase/Three Phase
Power Range:
0.1-15kW
Operating Temperature:
0-55°C
Industry:
Automation
Communication Protocol:
CANopen
Warranty:
1 Year
Application:
Motion Control
Protection Class:
IP20/IP65
Country Of Origin:
Germany
Control Type:
Servo Drive
Certifications:
CE/UL/cUL
Feedback Type:
Resolver/Encoder
Voltage Range:
400V
Shipping Term:
DHL, FedEx, UPS, EMS
Color:
Green
Manufacturer:
Schneider Electric
Power Supply:
Single Phase/Three Phase
Power Range:
0.1-15kW
Operating Temperature:
0-55°C
Industry:
Automation
Communication Protocol:
CANopen
Warranty:
1 Year
Application:
Motion Control
Protection Class:
IP20/IP65
Country Of Origin:
Germany
Control Type:
Servo Drive
Certifications:
CE/UL/cUL
Feedback Type:
Resolver/Encoder
Voltage Range:
400V
Shipping Term:
DHL, FedEx, UPS, EMS
Color:
Green
Description
New ELAU PacDrive MC-4 MC-4/11/01/400 VCA07AAAA0AA00 13130261 Drive Module 1.5A 400V for Control Electric Motor

New ELAU PacDrive MC-4 MC-4/11/01/400 VCA07AAAA0AA00 13130261 Drive Module 1.5A 400V for Control Electric Motor 0

ELAU PacDrive Control System MC-4 Drive Module MC-4/11/01/400 VCA07AAAA0AA00 13130261

I. Main Functions, Features, and Application Scenarios

Main Functions:

  • Motor Drive and Control: The MC-4/11/01/400 drive module, as part of the ELAU PacDrive control system, is responsible for driving and controlling three-phase AC motors, enabling operations such as motor startup, shutdown, speed adjustment, and forward/reverse rotation.
  • Precise Motion Control: Through built-in advanced control algorithms, it achieves high-precision position, speed, and torque control, meeting the stringent motion accuracy requirements of automated equipment.
  • Communication and Integration: Supports multiple communication protocols (such as CANopen, EtherCAT, etc.), facilitating data exchange and system integration with other automated devices, PLCs, or host computers.
  • Fault Diagnosis and Protection: Equipped with built-in fault diagnosis capabilities, it monitors the operational status of motors and drive modules in real-time, providing protection mechanisms against overload, overvoltage, undervoltage, short circuits, etc., to ensure system safety and stability.

Product Features:

  • High Performance: Utilizes advanced power electronics technology and control algorithms to deliver efficient and stable motor drive performance.
  • Modular Design: The modular design simplifies installation, maintenance, and upgrades, allowing for flexible configuration based on actual needs.
  • Ease of Use: Provides an intuitive configuration interface and rich debugging tools, streamlining system integration and debugging processes.
  • High Reliability: Undergoes stringent quality control and testing to ensure stable operation under various working conditions.

Application Scenarios:

  • Packaging Machinery: In the packaging machinery industry for food, beverages, pharmaceuticals, etc., it enables precise conveyance, positioning, and sealing of packaging materials.
  • Material Handling: Controls motors for conveyors, stackers, AGVs, etc., in automated warehouses and logistics centers, achieving automated material handling and storage.
  • Textile Machinery: Controls parameters such as yarn tension and winding speed in textile equipment, enhancing the quality and production efficiency of textiles.
  • Printing Machinery: Ensures precise conveyance, positioning, and printing control of paper in printing equipment, guaranteeing the quality of printed materials.

II. Target Users, Usage Methods, and Precautions

Target Users:

  • Automation Engineers: Responsible for the design, development, and debugging of automated systems, requiring familiarity with motor drive and control technologies.
  • Equipment Maintenance Personnel: Responsible for the daily maintenance and troubleshooting of automated equipment, requiring basic electrical and mechanical knowledge.
  • System Integrators: Integrate multiple automated devices into a single system for overall control, requiring an understanding of the performance and applications of various drive modules.

Usage Methods:

  • Installation: Follow the product manual and installation guide for installation, ensuring correct connections between the drive module, motor, power supply, and other automated devices.
  • Configuration: Use configuration software or interfaces to set motor parameters (such as rated voltage, current, speed, etc.) and control modes (such as position control, speed control, etc.).
  • Debugging: After installation and configuration, conduct debugging and testing to ensure the drive module and motor function properly and meet system performance requirements.
  • Operation and Monitoring: During formal operation, regularly monitor the operational status of the drive module and motor, promptly identifying and addressing abnormalities.

Precautions:

  • Power Supply and Grounding: Ensure the power supply meets the product's voltage and frequency requirements, and properly ground it to prevent electric shock and electromagnetic interference.
  • Environmental Requirements: Pay attention to ambient temperature, humidity, and pollution levels during installation and use to avoid product damage due to environmental factors.
  • Safe Operation: Adhere to relevant safety regulations and operating procedures during operation and maintenance to ensure personnel and equipment safety.
  • Regular Maintenance: Regularly clean, inspect, and maintain the drive module to ensure its performance and reliability. Additionally, promptly update firmware and software to fix potential vulnerabilities and enhance performance.

Appearance and Interface Diagram of the MC-4 Drive Module

 

Serial No. Interface/Component Description
1 Power Interface Used to connect to a three-phase AC power supply, providing the drive module with the required electrical energy.
2 Motor Interface Used to connect to the driven motor, enabling the conversion and transmission of electrical energy.
3 Control Interface Used to connect to PLCs, host computers, or other controllers, achieving remote control and data exchange.
4 Status Indicators Display the operational status of the drive module (such as power on, fault alarm, etc.).
5 Cooling Fan/Heat Sink Used for heat dissipation to ensure the drive module maintains an appropriate operating temperature during prolonged operation.

 

 Performance Parameter Comparison Chart of the MC-4 Drive Module

 

Performance Parameter MC-4 Drive Module Competitor A Competitor B
Rated Voltage 400V 380V 415V
Rated Current 1.5A 1.2A 1.8A
Speed Range 0-6000rpm 0-5000rpm 0-5500rpm
Control Accuracy ±0.01% ±0.02% ±0.03%
Efficiency ≥95% ≥93% ≥94%

 

Note: The performance parameter comparison chart presented here is for illustrative purposes, with actual product performance potentially varying. In practical applications, comparison charts should be drawn based on the specific performance parameters of the product to enable users to more intuitively understand the advantages of the MC-4 drive module.

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