BL-MC300E-20T Okuma
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The BL-MC300E-20T is a servo motor with dimensions of 80 x 398 x 200 mm and a weight of 6 kg. Manufactured by Okuma as part of their BL Servo Motors series, it operates at a frequency of 50/60 Hz and features a rated leakage current of 35 mA. The motor functions within a maximum temperature of 45°C.
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Product Description:
The BL-MC300E-20T is a three-phase Okuma motor designed to ensure modulated speed and torque in motion control systems. This motor is engineered to offer controlled speeds and force to drive machinery for optimal productivity. Its design ensures smooth rotations with minimal lag, allowing it to operate with minimal vibrations. It also offers seamless transitions over speed and load conditions, adapting quickly to system demands thanks to innovative engineering. The motor is built to operate in typical industrial environments and can resist mechanical stressors as well as environmental factors. This results in a low-maintenance solution that delivers consistent performance in various automation setups.
This motor operates at a frequency of 50/60 Hz, allowing it to function seamlessly in regions with either frequency standard. It supports a maximum current of 80 A, allowing it to deliver high power output as needed across various automation environments. The enhanced current capacity ensures that the motor can handle heavy loads and operate at peak performance without risk of overloading. Whether used in high-speed applications or tasks requiring substantial torque, the motor holds the necessary power to support efficient operation without generating excess heat or excessive wear on system components.
The BL-MC300E-20T dissipates up to 25 W during normal operation, ensuring that it operates efficiently with minimal energy waste. The reduced power loss makes it a sustainable option in setups where power consumption is a consideration. The motor is versatile enough to withstand operating temperatures of up to 45°C. This makes it compatible with most industrial environments, ensuring that performance remains consistent even when temperatures fluctuate. However, for optimal performance, maintaining proper ventilation and cooling is recommended in environments that exceed this temperature limit.