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Omron R88D R88D-KN50H-ML2

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R88D-KN50H-ML2

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The R88D-KN50H-ML2 from Omron is a well-engineered servo driver tailored for Three-phase operations. It supports a maximum motor capacity of 5 kW and works efficiently with servomotors capable of reaching speeds up to 3,000 r/min.

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Ships from Raleigh, NC
2 Year DO Supply Warranty
Not an Authorized Distributor: DO Supply is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All of our products come with DO Supply's 2-year warranty.
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Technical specifications for R88D-KN50H-ML2

ManufacturerOmron
Product TypeServo Driver
Product LineR88D
Part NumberR88D-KN50H-ML2
Weight11.00 lbs (4.99 kg)
Input Power Supply - Control Circuit13 W
Maximum Applicable Motor Capacity5 kW
Applicable Servomotors (R88M-)3,000 r/min Servomotors
Input Power Supply200 VAC
Input TypeThree-phase
Operating Temperature0°C to 55°C
Storage Temperature-20°C to 65°C
Mounting TypeDIN Rail
Cooling MethodNatural Convection

The Omron R88D-KN50H-ML2 servo driver provides a reliable solution for controlling servomotors in various applications. With the capacity to handle motors up to 5 kW, this driver ensures robust performance. It supports 3,000 r/min servomotors, which allows it to suit numerous operational needs. To function correctly, the device requires a three-phase input power supply set at 200 VAC.

For control circuit operations, the R88D-KN50H-ML2 demands a power supply of 13 W. Weighing around 4.8 kg, this unit features a compact design ideally suited for installation in various conditions. It is engineered to operate effectively across a temperature spectrum from 0°C to 55°C, making it suitable for a range of industrial environments. The storage capabilities further extend from -20°C to 65°C, accommodating diverse operational scenarios.

Installation is straightforward, as the driver is designed for DIN rail mounting, which simplifies the integration into existing systems. The cooling method employed is natural convection, enhancing the efficiency and longevity of the device in its operating environment.