MAD100B-0100-SA-S2-KQ0-35-N1
MPN: R911325589
No Tariffs On US Orders- Straightforward Pricing: No Rush Fees, No Credit Card Fees
MAD100B-0100-SA-S2-KQ0-35-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 Rexroth Bosch's MAD100B-0100-SA-S2-KQ0-35-N1 is a powerful motor. This motor has the rated torque of 34 Nm and the rated power of 1.8 kW. The rated power indicates the motor's output capacity and efficiency, indicating its ability to handle demanding tasks. The rated torque of 34 Nm indicates the motor's rotational force, indicating its ability to move high loads without stopping. Both rated power and torque are crucial for motor effectiveness.
It uses standard bearings with the vibration severity grade of R=1. Standard bearings are used to support the motor's rotating shaft. It minimizes friction between the MAD motor's components as it operates. These bearings are normally produced by fine metals such as steel. These bearings withstand the mechanical loads and thermal conditions present during the operation of the motor. The vibration severity grade is the degree of the vibration that the motor produces in its normal functioning. The vibration severity grade of 1 means that vibration is very low. It is important to maintain this vibration to prevent motor wear and tear.
Standard bearings with low vibration severity grade is required in application where low level of vibration is required. They assist in reducing wear and tear of the inner components of the motor. It increases the motor's durability and facilitates optimum performance. Moreover, low vibration motors are used in precision industries such as manufacturing because they cause minimal shaking, where movement or positioning are critical, and potential damage is minimized. Asynchronous motors have wide applications in engineering due to their efficiency, robust design and constant speed characteristics. These MAD motors are used in industries where overall operation is dependent on the motor's efficiency.