GE 6KDV3035Q2B10

Product Introduction
The GE 6KDV3035Q2B10 is a variable frequency drive (VFD) from the AF-600 GP series. It is designed to control the speed and torque of AC induction motors, providing energy savings and precise process control in industrial applications.

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Description

GE 6KDV3035Q2B10

Technical Specifications

  • Product Type: AC Variable Frequency Drive.
  • Series: GE AF-600 GP.
  • Power Rating: Corresponds to the specific horsepower/kW rating in the part number.
  • Input/Output Voltage: Typically 3-phase 380-480V AC.

Functional Features

  • Sensorless Vector Control: Provides high torque at low speeds without encoder feedback.
  • Built-in EMC Filter: Reduces electromagnetic interference for cleaner operation.
  • Flexible Communication: Supports multiple fieldbus protocols via optional cards.
  • User-Friendly Interface: Intuitive keypad for parameter setup and monitoring.

Application Scenarios

  • Pumps and Fans: Variable flow control for energy efficiency.
  • Conveyors: Precise speed synchronization in material handling.
  • Mixers and Extruders: Torque control in process industries.

Performance Parameters

  • Overload Capacity: Typically 150% for 60 seconds, 180% for 3 seconds.
  • Speed Range: Wide speed range with stable torque output.

Material Composition

  • Enclosure: Robust metal housing with IP20/IP54 options.
  • Power Electronics: IGBT modules and aluminum electrolytic capacitors.

Structural Characteristics

  • Design: Compact, bookshelf or wall-mount design.
  • Cooling: Forced-air cooling with protected fan compartment.

Working Principle
The drive rectifies incoming AC power to DC, then uses an inverter section with IGBTs to synthesize a variable frequency and voltage AC waveform to precisely control motor speed and torque.

Installation Requirements

  • Provide adequate clearance for airflow and heat dissipation.
  • Use shielded motor cables and proper grounding to minimize EMI.

Usage Precautions

  • Never disconnect the motor while the drive is running.
  • Allow sufficient discharge time before servicing internal components.