Product Description
The MSK101C-0200-NN-M1-AG2-NNNN is an industrial synchronous motor designed by Rexroth Indramat to reliably generate kinetic energy in the industrial servo system. This industrial motor represents a new motor standard as it features a combination of past experiences and some of the most up-to-date motor technology. The motor is also characterized by high operational dynamics, compact construction and a high torque density. Under normal operating conditions, the MSK101C-0200-NN-M1-AG2-NNNN industrial motor maintains an operational efficiency as high as 95 per cent, this high operational efficiency allows the motor to meet the kinetic energy requirements of a wide range of industrial production and processing machines such as machine tools, printing and paper processing machines, metal forming machines and robotic machines. However, although this motor is compatible with a lot of industrial machines, it is important for operators to ensure that the intended application has been explicitly approved by Rexroth Indramat in the motor’s documentation, the application of the motor with a wrong industrial machine can lead to dangerous motor movement in the servo system.
The MSK101C-0200-NN-M1-AG2-NNNN industrial motor regulates its operational temperature through a combination of natural conduction and convection, it can also be fitted with an external air blower which will aid its temperature regulation process by surface cooling. The use of the additional air blower is recommended when the motor is to be operated with an industrial machine that requires a continuous start-stop operation or a high radial load.
The MSK101C-0200-NN-M1-AG2-NNNN industrial synchronous motor contains a multi-turn optical encoder which converts the operation of the motor into digital signals and supplies the drive controller with these digital signals through the motor feedback cable. The drive controller interprets the digital signals it receives from the motor and uses the information to control the operation of the motor according to pre-determined configuration parameters.