MAD130C-0100-SA-S2-AP0-35-N1
MPN: R911321501
No Tariffs On US Orders- Straightforward Pricing: No Rush Fees, No Credit Card Fees
MAD130C-0100-SA-S2-AP0-35-N1 Spindle Motor manufactured by Bosch Rexroth Indramat. This motor has a cooling mode with an Axail Fan, Blowing and a Singleturn Absolute, 2048 increments encoder. It also has a mounting style of Flange and a Standard bearing.
To contact sales for pricing and lead time:
Payment Methods
Shipping Methods
Our Credentials
Product Description:
The MAD130C-0100-SA-S2-AP0-35-N1 is an exciting piece of industrial equipment that supports both a high-speed rating and a low inertia output. The nominal rated speed of this servo motor is 1000 rotations per minute and a low inertia rating of 0.115 kgm² causes this motor to quickly adjust its speed and the position of the shaft by accelerating and decelerating quickly. At nominal operating mode, this motor has a torque rating of 125 Nm, while in locked rotor configuration, where the shaft is locked in a particular position, this servo motor can output a torque rating of 140 Nm.
At the maximum speed of 6000 rpm, thanks to the use of lifetime lubricated ball bearings in this servo, this AC servo motor can produce a maximum torque of 308 Nm. To prevent this motor from vibrating excessively, the MAD series of motors features reinforced housing construction that dampens vibration. The shaft of the servo motor is a well-balanced shaft with a shaft seal ring to protect the servo motor from the front.
This AC servo motor has a very efficient design as it comes with a torque constant ratio of 4.33 Nm/A for every ampere of current that it draws from the power supply module. This servo motor features a 3-pole design, with each pole connected to the 3 phases of the power supply unit, allowing each pole to generate the electromagnetic field strength needed to rotate the motor shaft at regulated or very high speeds. To keep the motor coil cool, this servo motor comes with an axial blower fan that helps maintain the coil temperature under nominal operating conditions.