Free UPS Ground on All Orders!
+1 (919) 205-4392
Mitsubishi HF Series HF-MP43BG715

Product image is representative; revision or series may vary. Contact us to request a specific version.

HF-MP43BG715

|

The HF-MP43BG715 from Mitsubishi is a compact AC geared servo motor featuring a precision application reduction gear. With an output power of 0.4 kW, it operates efficiently at a rated speed of 3000 rpm and can achieve a peak speed of 6000 rpm.

Call for an immediate quote
2 Year DO Supply Warranty
Available
Ships from Raleigh, NC
Not an Authorized Distributor: DO Supply is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All of our products come with DO Supply's 2-year warranty.
Learn more

Technical specifications for HF-MP43BG715

ManufacturerMitsubishi
Product LineHF Series
Part NumberHF-MP43BG715
Weight15.00 lbs (6.80 kg)
Output Power0.4 kW
Rated Speed3000 rpm
MountingFlange Mounting
Shaft TypeStraight Shaft
Gear Ratio1/5
Reduction GearPrecision Application Reduction Gear
Maximum Speed6000 rpm
Brake TypeElectromagnetic Brake
CapacitySmall Capacity
Motor TypeAC Geared Servo Motor

The Mitsubishi HF-MP43BG715 is recognized as an AC geared servo motor, crafted for applications requiring compact power. This unit delivers 0.4 kW of output power and is optimized to run at a rated speed of 3000 rpm.

At peak performance, the motor can reach speeds up to 6000 rpm, showcasing versatility in various settings. Its design incorporates a precision application reduction gear with a gear ratio of 1/5, which enhances control over the motor’s output behavior. The straight shaft configuration allows for easy flange mounting, streamlining the integration process within machinery.

For additional safety measures, this servo motor includes an electromagnetic brake. This feature aids in precise stopping capabilities and contributes to overall operational security. Overall, the HF-MP43BG715 is built for reliable performance in applications where small capacity and efficiency are crucial.