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Mitsubishi MELSERVO MR-J3 MR-J3-20A-ETHERCAT

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MR-J3-20A-ETHERCAT

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The MR-J3-20A-ETHERCAT model from Mitsubishi's MELSERVO MR-J3 series operates at a rated active power of 0.2 kilowatt. It supports both 1-phase and 3-phase input for enhanced versatility, accommodating a single axis driven by an EtherCAT command interface.

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Technical specifications for MR-J3-20A-ETHERCAT

ManufacturerMitsubishi
Product LineMELSERVO MR-J3
Part NumberMR-J3-20A-ETHERCAT
Weight10.00 lbs (4.54 kg)
Rated Active Power0.2 kilowatt
Input Phase Type1-phase or 3-phase input
Number of Axis1 axis
Command Interface TypeEtherCAT
Supply Voltage Rating200 to 230 Volts AC
Braking UnitBuilt-in dynamic brake
Vibration Resistance5.9 meter per second squared or less
Speed Frequency Response900 Hertz
Control MethodSine wave pulse width modulation (PWM) control and current control
Cooling MethodNatural cooling
Input Frequency50 to 60 Hertz
Communication ProtocolRS-422 protocol
Ambient Operating Temperature0 to 55 °C in a non-freezing environment
Permissible Frequency FluctuationBetween -5 to +5%
Motor TypeGeneral purpose (standard) AC servo

Functioning within the Mitsubishi MELSERVO MR-J3 line, the MR-J3-20A-ETHERCAT servo motor is engineered for both 1-phase and 3-phase power inputs. It provides a rated active power of 0.2 kilowatt. The unit is designed to operate on a supply voltage within the range of 200 to 230 volts AC. This makes it suitable for different electrical configurations. A dynamic brake is included, which enhances control during deceleration.

For reliable performance, the servo exhibits a vibration resistance rating of no more than 5.9 meters per second squared. It performs effectively with a speed frequency response of 900 Hertz, supported by sine wave pulse width modulation (PWM) and current control methods. Additionally, natural cooling techniques are used to maintain operational efficiency.

The MR-J3-20A-ETHERCAT communicates using the RS-422 protocol, making it compatible with various control systems. It operates with an input frequency between 50 and 60 Hertz, and it can handle permissible frequency fluctuations between -5% to +5%. The motor is suited for general-purpose applications, functioning optimally in ambient conditions ranging from 0 to 55 °C in non-freezing environments.