Product Description
In the context of industrial automation applications, the MAD130B-0150-SA-S2-LH0-35-V3 motor is intended to give superior performance. Based on its maximum speed of 1500 revolutions every minute and its rated torque of 80 Newton-meters, it offers dependable operation and precise control over the speed. The rated power of this piece of equipment is 1.6 kilowatts, and the rated current is 32.3 amperes. 88 Nm of continuous torque can be generated at standstill by the motor, and 34.5 Amperes of continuous current can be generated at standstill by the motor. The fact that it has three pole pairs enables it to give exceptional dynamic performance, which guarantees the best possible speed control for a variety of industrial automation tasks.
An axial blower has been integrated into the MAD130B-0150-SA-S2-LH0-35-V3 motor in order to improve its performance in terms of cooling efficiency when the motor is in operation. It is the blower's responsibility to guarantee effective heat dissipation, which in turn helps maintain the motor's effectiveness and reliability. In order to ensure that there is enough airflow, it is necessary to keep a certain distance between the blower screen & the machine. In addition to this, the motor is fitted with a brake control system that guarantees accurate braking performance even when the motor is working under ordinary conditions. Through the use of an undervoltage detection system, the brake control mechanism is tracked. This system is able to quickly recognize any operational difficulties that may occur when the motor is in operation, so providing both dependable efficiency and security.
In addition to providing dependable operation, strong performance, and accurate control, the MAD130B-0150-SA-S2-LH0-35-V3 motor is an adaptable option that can be used for a broad variety of applications in the field of industrial automation. Due to the fact that it has been fitted with integrated features and has an innovative layout, it is an excellent option for demanding industrial situations where functionality and effectiveness are critical.