MDUC-30-554-M Okuma
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The Okuma MDUC-30-554-M, part of the MDU Servo Drives series, is a compact cylinder with a bore size of 30 mm and a stroke of 554 mm. It operates with air at a pressure range of 0.1 to 1.0 MPa. The cylinder features a built-in magnet for sensors and is made from durable aluminum alloy.
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Product Description:
The MDUC-30-544-M servo drive by Okuma runs and controls the movement of computerized machine parts with exact precision. Okuma truly builds hardware that showcases reliability and mastery.
The MDUC-30-544-M servo drive is a multi-axis unit primarily applied in industrial automation CNC systems. It is structured to support coordinated control over multiple machine axes and spindle operations within automated equipment. Based on its model sequence, the "30" commonly indicates a power capacity of around 30 kW which is suitable for moderate to heavy-duty control. It works as a central drive unit in a motion control loop. It contains a set of power terminals and control circuits interfacing with the connected motors. The front panel clearly defines supported allocations with an Axis S (labeled SA) corresponding to the spindle and is linked to a control unit marked as UI. This interface provides direct handling of speed and torque behavior. A is marked for X movement, Axis B is for Z and C corresponds to T which is linked to turret or rotational control. Its type D is left blank which aids in showing room for configuration.
The MDUC-30-544-M servo drive has a rack-mount structure with bottom terminals labeled E1A, E2A, E1B, E2B which is intended for main motor and feedback connectivity. It uses forced air ventilation visible through the unit’s rear vents. Onboard diagnostic LEDs and DIP switches are provided at the top for manual setup and system code readouts. A visible onboard PCB interface suggests internal support for bus communication. Possible connectivity includes serial and CAN by signaling for closed-loop control and real-time data sharing with system controllers. It can bear high humidity up to a maximum of 90% without degrading its overall efficiency.