Free UPS Ground on All Orders!
+1 (919) 205-4392
Mitsubishi MELSERVO HC HC-KFS053BG115

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

HC-KFS053BG115

|

The HC-KFS053BG115 is a low-inertia servo motor from Mitsubishi's MELSERVO HC series. Designed for applications requiring precision and compact size, it ensures high-resolution performance with an output power of 0.05 kW.

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 HC-KFS053BG115

ManufacturerMitsubishi
Product TypeServo Motor
Product LineMELSERVO HC
Part NumberHC-KFS053BG115
Weight10.00 lbs (4.54 kg)
InertiaLow Inertia
CapacitySmall Capacity
ResolutionHigh-Resolution
Output Power0.05 kW
Rated Speed3000 RPM
Maximum Speed4500 RPM
Rated Current0.83 Amps
Maximum Current2.5 Amps
BrakeElectromagnetic Brake
Reduction GearIncluded
Reduction Ratio1/5

Mitsubishi's HC-KFS053BG115 is a precise servo motor within the MELSERVO HC line. It is specifically designed to offer low inertia and small capacity. This model features impressive resolution, making it suitable for applications that require fine control.

The motor delivers an output power of 0.05 kilowatts, which allows smooth operation in compact spaces. It operates at a rated speed of 3000 revolutions per minute (RPM) and can achieve a peak speed of 4500 RPM, providing flexibility in various applications.

With a rated current of 0.83 amperes and a maximum current of 2.5 amperes, the HC-KFS053BG115 is equipped to handle dynamic loads effectively. Including an electromagnetic brake adds to its utility, providing reliable stopping power when necessary. Additionally, the integrated reduction gear with a ratio of 1/5 enhances the motor's versatility, enabling it to efficiently cater to different operational requirements.