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Mitsubishi's HG-KR43G11-12 is a robust servo motor designed for industrial applications. With a rated output of 0.4 kW, it demonstrates reliable performance in various environments, boasting capabilities up to a maximum speed of 6000 rpm.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | Servo Motor |
| Product Line | HG Series |
| Part Number | HG-KR43G11-12 |
| Weight | 10.00 lbs (4.54 kg) |
| Shaft Load Capacity (Thrust) | 98 N |
| Shaft Load Capacity (Radial) | 245 N |
| Motor Enclosure | Totally-enclosed, natural-cooling (IP65) |
| Insulation Rating | 130 (B) |
| Rated Output | 0.4 kW |
| Speed Range | 3000 rpm (Rated) / 6000 rpm (Maximum) |
| Electromagnetic Brake | Not installed |
| Gear Reducer | For general industrial machine (flange-mounting) |
| Shaft Type | Standard (straight shaft) |
| Continuous Running Duty Rated Torque | 1.3 N·m |
| Peak Torque | 4.5 N·m |
| Current Ratings | 2.6 A (Rated) / 9.1 A (Peak) |
| Moment of Inertia | 0.371 x 10⁻⁴ kg·m² |
The HG-KR43G11-12 servo motor from Mitsubishi is engineered for dependable performance in various industrial settings. Weighing in at 1.4 kg, this unit provides a sturdy design suitable for a range of applications. The motor operates with a rated output of 0.4 kW and has an impressive maximum speed capability of 6000 rpm, making it efficient for quick operations.
Its thrust load capacity stands at 98 N, while its radial load capacity is rated up to 245 N, allowing for substantial operational performance. The IP65 rating signifies its totally-enclosed construction, which applies natural cooling to maintain temperature control while providing protection from dust and water ingress.
The motor features a standard straight shaft, facilitating easy installation and compatibility with existing systems. Additionally, the continuous running duty rated torque is 1.3 N·m, peaking at 4.5 N·m for enhanced performance under varying loads. The current ratings include 2.6 A for standard operations and a peak current of 9.1 A.
With an insulation rating of 130 (B), this component ensures optimum thermal performance, supporting its reliability in various operational environments. The moment of inertia is calculated at 0.371 x 10⁻⁴ kg·m², indicating its suitability for precise motion control applications while maintaining speed and torque efficiency.