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Mitsubishi HG Series HG-KN23J-S100

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HG-KN23J-S100

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The Mitsubishi HG-KN23J-S100 is a compact rotary servo motor designed for precision applications. With a rated output of 0.2 kW, it supports an efficient torque performance of 0.64 Nm and can reach a peak torque of 1.9 Nm at its maximum operational speed of 5000 rpm.

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Technical specifications for HG-KN23J-S100

ManufacturerMitsubishi
Product LineHG Series
Part NumberHG-KN23J-S100
Rated Torque0.64 Nm
Maximum Torque1.9 Nm
Rated Speed3000 rpm
Maximum Speed5000 rpm
Oil SealIncluded
Rated Output0.2 kW
StructureTENC (Totally Enclosed Natural Cooling) Structure
ShaftStraight Shaft
Rated Current1.3 Amps
Maximum Current3.9 Amps
Maximum Radial Load245 N
Maximum Axial Load98 N
Inertia TypeLow Inertia
CapacitySmall Power Capacity
Type of MotorRotary Servo Motor

The Mitsubishi HG-KN23J-S100 is engineered as a rotary servo motor suitable for precision control tasks. Operating efficiently with a rated output of 0.2 kW, this unit achieves a rated torque of 0.64 Nm and can provide maximum torque up to 1.9 Nm. The device runs at a rated speed of 3000 rpm and can reach a top speed of 5000 rpm, making it ideal for applications requiring quick adjustments and precise movements.

This motor is built with a straight shaft and can easily integrate into various systems. It has a current rating of 1.3 Amps during normal operation and a maximum rating of 3.9 Amps under heavy loads. Designed for durability, the HG-KN23J-S100 features an oil seal that enhances its longevity and performance in diverse operational environments. This motor supports a maximum radial load of 245 N and can handle an axial load of 98 N, allowing it to accommodate various application demands.

Characterized by a low inertia design, the motor ensures rapid response times, making it efficient for dynamic applications. The TENC (Totally Enclosed Natural Cooling) structure contributes to maintaining optimal operating temperatures. This component is an excellent choice for environments requiring compact power capacity and operational reliability.