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Mitsubishi HG Series HG-MR13J

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HG-MR13J

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The Mitsubishi HG-MR13J is a compact brushless servo motor designed to excel in small-capacity applications. With a rated output of 0.1 kW, it operates efficiently within the 200 VAC class.

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Technical specifications for HG-MR13J

ManufacturerMitsubishi
Product LineHG Series
Part NumberHG-MR13J
Weight3.00 lbs (1.36 kg)
Type of ProductBrushless Servo Motor
Rated Current0.9 A
Maximum Current2.5 A
InertiaUltra-Low Inertia
CapacitySmall Capacity
Rated Output0.1 kW
Rated Speed3000 r/min
Electromagnetic BrakeNot Included
Oil SealIncluded
Maximum Speed6000 r/min
Shaft ShapeStraight Shaft
Rated Torque0.32 Nm
Maximum Torque0.95 Nm
Voltage Class200 VAC Class

The Mitsubishi HG-MR13J is classified as a brushless servo motor intended for applications requiring precision and compact power. Operating at a rated output of 0.1 kW, this motor is well-suited for systems that demand efficiency in a small capacity format. Its design caters to an extensive voltage class of 200 VAC, allowing versatility in various settings.

With a rated speed of 3000 r/min, the motor can achieve a top speed of 6000 r/min, providing ample performance for different operational necessities. The ultra-low inertia contributes to quick acceleration and reduced lag during movement, making it ideal for fast-paced environments. The rated torque of 0.32 Nm, combined with a maximum torque of 0.95 Nm, ensures it can handle varying loads effectively. Its operational characteristics support a rated current of 0.9 A while accommodating a maximum current draw of 2.5 A for enhanced performance under load.

An oil seal is integrated into the motor design, which helps in maintaining internal component integrity by protecting against dust and contaminants. However, it is important to note that this model does not come with an electromagnetic brake, which may be a consideration for applications requiring additional stopping power. The straight shaft design allows easy integration into existing setups, ensuring seamless installation and operation.