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Mitsubishi HG Series HG-JR103BW0C

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HG-JR103BW0C

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The HG-JR103BW0C rotary servo motor from Mitsubishi's HG series provides reliable performance with a power output of 1 kW. Operating efficiently at a rotational speed of 3000 RPM, it is engineered for applications requiring low inertia and medium to large capacity.

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Technical specifications for HG-JR103BW0C

ManufacturerMitsubishi
Product LineHG Series
Part NumberHG-JR103BW0C
Weight5.00 lbs (2.27 kg)
Type of ProductRotary Servo Motor
Inertia TypeLow Inertia
Rated Current5.6A
Supply Voltage Class200VAC Class
Output Power1kW
Rotational Speed3000rpm
Torque3.2Nm Nominal
Maximum Torque9.6Nm
Connection Type2 MS-Type Connectors
Mounting Mode90 x 90mm Flange Mounting
CapacityMedium/Large Power Capacity
Brake TypeElectromagnetic Brake
Safety Unit CompatibilitySupported
Shaft TypeStraight Shaft

The Mitsubishi HG-JR103BW0C is a rotary servo motor tailored for performance in demanding industrial applications. Its low inertia design enhances dynamic response, making it suitable for systems requiring quick adjustments. This motor delivers reliable energy conversion with an output power of 1 kW. It operates efficiently at a substantial rotational speed of 3000 RPM.

This unit's rated current is 5.6 A, and it is compatible with a supply voltage class of 200 VAC, providing versatility across various setups. This motor's nominal torque reaches 3.2 Nm, peaking at a maximum torque of 9.6 Nm, supporting diverse load conditions.

For connection, the device uses 2 MS-type connectors, simplifying integration. It also supports medium to large power capacities, ensuring it meets various operational demands. The 90 x 90 mm flange mounting method provides solid installation options in different orientations. The integrated electromagnetic brake improves control over the motor's operation by providing dependable stopping capabilities. Additionally, the straight shaft configuration facilitates easy attachment to other machinery. This rotary servo motor is also compatible with safety units, supporting enhanced system integrity during operation.