Maximum Output Torque: 7.84 Nm
Shaft Diameter: 10mm
Gear Ratio: 120:1
Gearbox Type: Spur
Maximum Speed: 11.25rpm
Overall Length: 80mm
Overall Depth: 30mm
Power Rating: 25 W
Overall Width: 80mm
The Panasonic MX8G120B represents a pinnacle of precision engineering in the domain of motion control and power transmission. This spur gearbox is designed to seamlessly integrate with a variety of motor types, offering an impressive 120:1 gear ratio. Its primary function is to multiply the torque while reducing the speed output from a motor, achieving a fine balance between force and control in various applications.
Standout Features and Benefits: Enhancing Performance Across Applications
- Ideal for applications requiring strong force at a slow, controlled pace.
- Its small footprint makes it suitable for space-constrained environments.
- Built with high-quality materials, it promises longevity and reliability.
- Compatible with various motors, facilitating seamless integration into existing systems.
- The spur gear design minimises operational noise, contributing to a quieter working environment.
Maximising Efficiency and Control
- Gear Ratio: The 120:1 gear ratio is a standout feature, allowing for significant torque amplification while precisely controlling the output speed.
- Maximum Torque: Capable of delivering up to 7.84 Nm of torque, the MX8G120B ensures that sufficient power is available for demanding tasks.
- Maximum Speed: With an upper limit of 11.25rpm, it maintains a controlled, steady pace, ideal for applications requiring precision more than speed.
The Panasonic MX8G120B, Spur Gearbox, 120:1 Gear Ratio, 7.84 Nm Maximum Torque, 11.25rpm Maximum Speed: Wide Application Range
The Panasonic MX8G120B is a robust, versatile gearbox well-suited for a wide array of industrial and research applications, combining power, precision, and reliability. Some of its primary applications include:
- Robotics: Perfect for robotic arms requiring precise movement and vital force.
- Automated Machinery: Essential in conveyor systems and automated production lines for controlled motion.
- Medical Equipment: Used in devices where precision and reliability are paramount.
- Research and Development: Aids in experimental setups demanding high torque at low speeds.
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