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500KW-1000KW Low Voltage VFD for PMSM Motor with 220V-690V 3 Phase Power

500KW-1000KW Low Voltage VFD for PMSM Motor with 220V-690V 3 Phase Power

Brand Name: Inomax
Model Number: ACS880-B23-05A6-3B
MOQ: 1
Prix: $500
Detail Information
Lieu d'origine:
CHINE
Certification:
ce
Mode de contrôle:
Contrôle de compensation de glissement, contrôle v / f, contrôle du vecteur sans capteur, contrôle d
Tension nominale:
220 V, 380V, 690, 1140
Phase de puissance:
3
Puissance nominale:
1.5 kW à 5000 kW
Dimensions:
167,5 * 185,8 * 80 mm
Gamme de courant:
0,75 KW-5000KW
Plage de tension:
220V, 230V, 240V, 380V, 400V, 440V, 480V, 500V, 520V, 600V, 660V, 690V
Type de protocole:
Modbus, canopen, probibus, profinet, Ethercat, Ethernet
Réponse au couple:
Moins de 5 ms
Précision de vitesse:
Moins de 0,5%
Réponse dynamique:
0,7% s
Gamme de fréquences:
0 ~ 1000Hz
Résolution de fréquence:
0,01 Hz
Entrée thdi:
<5%
Couple de sortie:
2 fois le couple en vitesse zéro
Mettre en évidence:

500KW-1000KW VFD

,

220V-690V Variable Frequency Drive

,

3 Phase Frequency Inverter

Description de produit
500KW-1000KW AC VFD for Low Voltage PMSM Motor
High-performance DTC drive designed for complex industrial applications requiring precise speed, tension, and position control.
500KW-1000KW Low Voltage VFD for PMSM Motor with 220V-690V 3 Phase Power 0 500KW-1000KW Low Voltage VFD for PMSM Motor with 220V-690V 3 Phase Power 1
Model Reference ACS880 abb analog
Product Type High performance DTC drive
Applications Complex, Heavy duty, Speed control, Tension control, Position control, Lifting control, DTC, STO, Direction torque control, Safe Torque Off
Power Range 0.75KW-5000KW
Voltage 220v, 230v, 240v, 380v, 400v, 440v, 480v, 500v, 520v, 600v, 660v, 690v
Control Mode DTC control, Vector control
Protocols Modbus, CanOpen, Profibus, Profinet, Ethercat, Ethernet
Warranty 24 months
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ACS880 DTC Drive Advantages (2.2KW-5000KW)
500KW-1000KW Low Voltage VFD for PMSM Motor with 220V-690V 3 Phase Power 4
  • Direct torque control technology equivalent to ABB systems
  • Compatible with all sine wave AC motors including IM/PM/SynRM/Servo motors
  • Four-quadrant inverter with energy feedback for energy savings and reduced harmonics
  • Supports stack type or multi-drive module configurations
  • 380V-690V operation from 0.75KW-5000KW
  • Built-in EMC filters, DC reactors, and braking units
  • Supports multiple communication protocols: Budbus, Profibus, ProfiNET, EtherCAT, Ethernet
  • 2x torque at zero speed without sensor control
  • Torque response time <5ms for sensorless applications (1% torque repeatability)
  • Speed loop dynamic response accuracy: 0.7%
  • Sensorless speed accuracy <0.5% (eliminates sensors in 95% of applications)
  • Advanced weak magnetic control technology for energy savings and reduced motor noise
  • Intelligent temperature-controlled fan for energy efficiency and extended drive life
  • Built-in logic programming function reduces need for external PLCs
  • Pre-configured application parameter macros for faster commissioning
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Industrial Applications
ACS 880 with direct torque control and energy saving functions features four-quadrant energy regeneration and feedback, with built-in filters and reactors. Ideal for demanding applications in:
  • Steel production
  • Cement manufacturing
  • Chemical processing
  • Oil & Gas operations
  • Power generation
  • Polymer & Rubber production
  • Pulp & Paper mills
  • Sugar processing
  • Minerals & Mining operations
Metallurgy Project Experience
Converter steelmaking process at Henan Yaxin Iron and Steel Plant required precise control for quality molten steel production. The system features:
  • 4x 90KW variable frequency motors for 360° continuous rotation
  • Accurate positioning at any point with speed regulation
  • Safety interlocking with oxygen lance, ladle car and fume hood
  • Fault-tolerant operation to complete current steelmaking cycle during failures
  • Shock load and torsional vibration buffering
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Solution Implementation
Master/slave control configuration with internal communication between drives ensures absolute synchronization of all 4 motors. The host inverter adjusts speed and torque output while slave inverters follow torque response, eliminating "nodding" and "shaking" issues.
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Rolling Mill Application
20-roll reversible mill project featuring regenerative drive technology:
  • 1x 1900kW main winding motor
  • 2x 2000kW winding motors
  • 1x 250kW unwinding motor
  • 690VAC input voltage
  • Tension control accuracy <1%
  • Maximum rolling line speed: 600m/min
  • System design: 5x AFE + 16x SMM inverter
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Mine Hoist Experience
SIEMAG TECBERG group selected our drives for shaft hoisting systems requiring:
  • Low harmonics operation
  • High torque at low frequency
  • Precise slow-speed control for safety
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Motor Test Bench Project
System features two motors (MUT and DM) with controller-managed speed and torque, enabling:
  • Durability and mechanical property testing
  • Temperature rise and overload performance evaluation
  • Field weakening performance and efficiency analysis
  • Real-time display of voltage, current, torque, speed, power, and efficiency
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VFD Selection for Test Bench
Key components:
  • Active Front End (AFE) rectifier with LCL filter (THDi<5%)
  • 2x power units with 0-1000Hz output range (0.01Hz resolution)
  • Open loop torque response <20ms
  • Rectifier Control Unit (RCU) and Inverter Control Unit (ICU)
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4Q Regenerative Drive Advantages
  • Significant energy savings through grid feedback
  • Bidirectional loading characteristics
  • Wide speed adaptation range (rated torque from zero to 5-6x field weakening)
  • High torque response speed (ms level)
  • Anti-drag capability for multi-purpose use
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Marine Winch Control System
Xiangyanghong scientific research ship's 10,000m main cable winch requires:
  • Harmonics <3% to prevent electromagnetic interference
  • High-precision multi-machine torque coordination
  • Extremely low conduction and radiation harmonics
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Oil Field Applications
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Frequently Asked Questions
What is direct torque control?
Direct Torque Control (DTC) is an advanced motor control method that directly regulates torque and flux without requiring complex coordinate transformations. It provides fast torque response and high efficiency by minimizing switching losses.
What are the benefits of direct torque control?
  • Fast torque and flux response to reference changes
  • High efficiency with minimized switching losses
  • No overshoot in step response
  • No dynamic coordinate transforms required
  • No separate modulator needed
  • No PI current controllers or tuning required
  • Random switching process reduces audible noise
  • Automatic compensation for DC voltage variations
  • Fast synchronization to rotating machines
What type of motor is compatible with inverters?
Three phase AC induction motors are compatible, preferably inverter-grade motors with 800V insulation for 200V class inverters or 1600V insulation for 400V class inverters. Always match the inverter to the motor's specifications.
What are common reasons for motor failure?
Industry studies show: 41% bearing-related, 37% stator-related, 10% rotor-related, and 12% other causes.
How do you select a VFD?
Consider motor specifications, application requirements, environmental conditions, and required features like braking, communication protocols, and control precision.
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