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Inovance MD380T2.2GB - User Manual

Inovance MD380T2.2GB
304 pages
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MD380 User Manual Preface
- 1 -
Preface
Thank you for purchasing the MD380 series AC drive developed by Inovance.
The MD380 series AC drive is a general-purpose high-performance current vector control AC
drive and is mainly used to control and regulate the speed of three-phase AC asynchronous
motor. It adopts advanced vector control technology and has low-speed high-torque output,
good dynamc feature and strong overload capacity. It increases the user programmable
function, background monitoring software and communication bus function, and supports
multi-kind PG cards. It is used to drive various automation production equipment involving
textile, paper-making, wiredrawing, machine tool, packing, food, fan and pump.
This manual describes the correct use of the MD380 series AC drive, including selection,
parameter setting, commissioning, maintenance & inspection. Before using the AC drive,
read this manual carefully to have a thorough understanding of the product. Keep the
manual well and forward it with the product to end users.
Notes
The drawings in the manual are sometimes shown without covers or protective guards.
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operations in accordance with the instructions.
The drawings in the manual are shown for description only and may not match the product
you purchased.
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Contact our agents or customer service center if you have any problem during the use.
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Table of Contents

Questions and Answers

  • W
    William NealSep 13, 2025
    What does user-defined fault 2 mean for Inovance MD380T2.2GB?
    • A
      Alyssa DavisSep 14, 2025
      If your Inovance DC Drive reports a 'User-defined fault 2', it means the user-defined fault 2 signal is being input via DI or virtual I/O. To resolve this, reset the operation.
  • M
    Melanie ThorntonAug 25, 2025
    Why does Inovance MD380T2.2GB DC Drives have overcurrent during acceleration?
    • M
      Michael ShepardAug 25, 2025
      When an Inovance DC drive experiences overcurrent during acceleration, it may be due to a grounded or short-circuited output circuit, failure to perform motor auto-tuning, an excessively short acceleration time, an inappropriate manual torque boost or V/F curve, low voltage, starting a rotating motor, a sudden load during acceleration, or an undersized AC drive. To address this, eliminate external faults, perform motor auto-tuning, increase the acceleration time, adjust the manual torque boost or V/F curve, correct the voltage, use rotational speed tracking restart or wait for the motor to stop before starting, remove the added load, or select an AC drive with a higher power class.
  • M
    Morgan NicholsAug 25, 2025
    What to do if Inovance MD380T2.2GB DC Drives show overcurrent at constant speed?
    • M
      Megan FuentesAug 26, 2025
      If you observe overcurrent at constant speed in Inovance DC Drives, it could be caused by a grounded or short-circuited output circuit, failure to perform motor auto-tuning, low voltage, a sudden load during operation, or an AC drive model with insufficient power. To fix this, eliminate any external faults, perform motor auto-tuning, ensure the voltage is within the normal range, remove any added loads, or choose an AC drive with a higher power class.
  • J
    jeffreyjonesAug 26, 2025
    Why does Inovance MD380T2.2GB have overvoltage during deceleration?
    • G
      Gabrielle RobinsonAug 26, 2025
      If overvoltage occurs during deceleration in Inovance DC Drives, it could be due to high input voltage, an external force driving the motor, a deceleration time that is too short, or the absence of a braking unit and resistor. To solve this, adjust the voltage to the normal range, eliminate the external force or install a braking resistor, increase the deceleration time, or install the braking unit and braking resistor.
  • J
    John GentrySep 14, 2025
    What does accumulative power-on time reached mean for Inovance DC Drives?
    • H
      Heather RamirezSep 15, 2025
      If your Inovance DC Drive indicates that the 'Accumulative power-on time reached', it signifies that the preset power-on time has been reached. Clear the record by using the parameter initialization function.
  • W
    william98Sep 23, 2025
    What causes initial position fault in Inovance DC Drives?
    • C
      Cathy ColonSep 23, 2025
      If your Inovance DC Drive shows an initial position fault, it means the motor parameters are not set based on the actual situation. Check that the motor parameters are set correctly and verify that the setting of rated current is not too small.
  • J
    Joseph HicksSep 7, 2025
    What does AC drive hardware fault mean in Inovance MD380T2.2GB DC Drives?
    • J
      Julia BlanchardSep 7, 2025
      If your Inovance DC Drive displays an 'AC drive hardware fault', it indicates either an overvoltage or overcurrent condition. Address the issue based on the specific overvoltage or overcurrent troubleshooting steps.
  • K
    Kevin GainesSep 7, 2025
    What causes pulse-by-pulse current limit fault in Inovance MD380T2.2GB DC Drives?
    • K
      Keith ParkerSep 8, 2025
      If your Inovance DC Drive is experiencing a pulse-by-pulse current limit fault, it could be due to an excessively heavy load, a locked rotor on the motor, or an AC drive model with insufficient power. To fix this, reduce the load and check the motor and mechanical condition, or select an AC drive of higher power class.
  • S
    Stephanie MejiaSep 23, 2025
    What causes EEPROM read- write fault in Inovance MD380T2.2GB?
    • A
      Andrew DavisSep 23, 2025
      If your Inovance DC Drive displays an EEPROM read-write fault, it indicates that the EEPROM chip is damaged. Replace the main control board to resolve this.
  • N
    nweaverAug 31, 2025
    What causes power input phase loss in Inovance MD380T2.2GB DC Drives?
    • M
      Mark BrooksAug 31, 2025
      If your Inovance DC Drives show power input phase loss, it could be due to an abnormal three-phase power input, a faulty drive board, a faulty lightening board, or a faulty main control board. To address this, eliminate external faults or contact Inovance or their agent.

Summary

MD380 AC Drive Introduction

Installation Environment Requirements

Specifies ambient temperature, heat dissipation, and mounting location requirements.

Safety Information and Precautions

Provides critical safety guidelines for installation, wiring, and operation.

MD380 Mechanical and Electrical Installation

Main Circuit Wiring Examples

Provides wiring diagrams for various AC drive configurations.

Wiring Precautions and Control Circuit Terminals

Lists wiring precautions and describes control circuit terminal functions.

MD380 Operation, Display, and Application Examples

Operation Panel Overview and Key Functions

Describes the operation panel layout, indicators, and key functions.

Viewing and Modifying Function Codes

Explains how to navigate and change function codes using the three-level menu.

Starting, Stopping, and Startup Modes

Covers selecting command sources, starting, stopping, and different startup modes.

Setting Frequency References and Control Modes

Explains setting main/auxiliary frequency, AI, pulse, PID, and communication references.

Motor Parameter Setting and Auto-tuning

Guides on setting motor parameters and performing auto-tuning for optimal performance.

MD380 Function Code Table

Fault and Protection Parameters (Group F9)

Comprehensive list of parameters for fault detection and protection.

Process Control PID Function Parameters (Group FA)

Parameters for PID control functions like reference and feedback sources.

MD380 EMC Information

Peripheral EMC Devices Selection and Installation

Guides selection and installation of EMC filters, reactors, and cables.

MD380 Selection and Dimensions

Physical Appearance and Mounting Dimensions

Shows physical dimensions and mounting hole details for different MD380 models.

MD380 Maintenance and Troubleshooting

Routine and Periodic Maintenance

Details routine checks, cleaning, and periodic inspection procedures.

MD380 Faults and Solutions

Lists common faults, possible causes, and recommended solutions for the MD380.

Troubleshooting Common Symptoms

Provides diagnostic steps for common operational symptoms and errors.

Inovance MD380T2.2GB Specifications

General IconGeneral
ModelMD380T2.2GB
TypeDC Drive
Input Voltage3-phase 380V AC
Output Power2.2 kW
Output Current5.5 A
Control MethodVector control
Protection ClassIP20
Frequency Range0-400 Hz
Operating Temperature-10°C to +40°C
Storage Temperature-20°C to +60°C
Control ModeV/F Control
Protection FeaturesOvercurrent, overvoltage, undervoltage, overheat, short circuit
Humidity5% to 95% (non-condensing)
AltitudeUp to 1000m

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