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Mitsubishi HG Series HG-JR503BW0C

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HG-JR503BW0C

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The HG-JR503BW0C from Mitsubishi’s HG Series is a durable brushless servo motor designed to handle medium to large-capacity requirements. It operates effectively at a rated power output of 5 kW and has a rotational speed of up to 3000 rpm.

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Technical specifications for HG-JR503BW0C

ManufacturerMitsubishi
Product LineHG Series
Part NumberHG-JR503BW0C
Weight15.00 lbs (6.80 kg)
Device TypeBrushless Servo Motor
Voltage Class200VAC Class
CapacityMedium/Large Capacity
Rated Current27A
Rated Output5 kW
Rotational Speed3000 rpm
Torque15.9 Nm Nominal
Maximum Torque47.7 Nm
Connection Type2 MS-Type Connectors
Mounting Mode130 x 130mm Flange Mounting
Inertia TypeLow Inertia
Electromagnetic BrakeIncluded
Safety Unit CompatibilitySupported
CoolingNatural Cooling

The Mitsubishi HG-JR503BW0C is classified as a brushless servo motor known for its reliable performance and efficiency. It operates on a voltage class of 200VAC, which allows it to cater to a range of applications requiring medium to large capacity. At a rated current of 27A, this motor delivers an output power of 5 kW, making it suitable for demanding tasks.

Its rotational speed peaks at 3000 rpm, showcasing its ability to perform in high-speed applications. The motor generates a nominal torque of 15.9 Nm, with a substantial maximum torque of 47.7 Nm available when needed, providing the versatility to tackle varied loads.

Due to its 130 x 130mm flange mounting configuration, installation is straightforward. It connects through two MS-type connectors, ensuring compatibility with existing equipment. The low inertia design enhances operational responsiveness, making it ideal for applications requiring quick adjustments.

Additionally, the HG-JR503BW0C includes an electromagnetic brake for secure stopping capability, which is vital for precise control. The motor is compatible with safety units, adding an extra layer of operational security. It employs natural cooling, further underscoring its efficiency in thermal management.