Product Description
The MAD100D-0250-SA-M2-KH0-05-N1 is an advanced synchronous servo motor designed for precision domains requiring both power and accuracy. It is manufactured by Indramat which has established itself as a leading force in the world of industrial automation and motion control systems.
This servo motor MAD100D-0250-SA-M2-KH0-05-N1 features winding type 0250 which is optimized for efficiency and reliability. The motor employs an axial cooling system to maintain operational stability by dissipating heat effectively, even in different environments. This MAD100D servo motor's model is equipped with a multi-turn absolute encoder by providing 2048 increments for precise positioning and control. With no holding brake integrated the motor is suitable for applications where braking functionality is externally controlled. The motor is designed exclusively for flange mounting, ensuring secure and stable installation. Electrical connections are made via a terminal box located on the B-side, which simplifies wiring and integration into existing systems. The motor's shaft is plain, without sealing rings, which makes it suitable for environments where additional sealing isn't necessary. The standard bearings offer robustness and longevity by allowing for reliable operation under varying loads. It delivers 13.1 kW of power and generates a torque of 50 Nm by making it suitable for applications requiring optimal working.
The MAD100D-0250-SA-M2-KH0-05-N1 servo motor operates at a nominal speed of 2500 rpm but is capable of reaching a maximum speed of 9000 rpm with the standard bearings in place. It draws a current of 32.4 A under standard conditions and weighs 72 kg, which reflects its structure. The motor features three pole pairs by enhancing its torque production. Its operating temperature range is between 0 to 40 degrees C by ensuring compatibility with a range of industries. This motor is built for durability and precision by making it an ideal choice for high-demand applications requiring reliable, continuous operation.