
( Brand: Yamaha ), ( Manufacturer Part Number: B14R ), ( Model: B14R-950 ), ( Part Type: Servo Actuator Robot Linear Belt )
The Yamaha B14R B14R-950 Robot Servo Linear Actuator is a high-performance, precision motion control device designed for applications requiring precise positioning and smooth movement over a significant distance. This actuator features a travel length of 950mm, making it an ideal choice for applications that require extended linear motion.
The B14R is equipped with a powerful servo motor, delivering high torque and speed to meet the demands of various industrial automation tasks. The motor is coupled with a robust belt drive system, ensuring smooth and quiet operation even under heavy loads. The actuator also comes with an encoder for precise position control, providing feedback to the controller for accurate positioning and repeatability.
The Yamaha B14R is designed with durability in mind, featuring a robust, corrosion-resistant aluminum alloy housing and high-quality bearings. It can operate in a wide temperature range, from -20 C to 70 C, ensuring reliable performance in various environmental conditions. The actuator is also compatible with a range of control systems, making it easy to integrate into existing or new automation systems.
In summary, the Yamaha B14R B14R-950 Robot Servo Linear Actuator is a high-quality, reliable, and versatile motion control solution for industrial automation tasks requiring precise linear motion over a 950mm travel length. Its powerful servo motor, robust belt drive system, and high-precision encoder ensure smooth, quiet, and accurate operation, while its durable construction and wide temperature range ensure reliable performance in various environmental conditions.
Pros of buying Yamaha B14R B14R-950 Robot Servo Linear Actuator 950mm Travel Encoder Belt:1. High Accuracy: The actuator comes with an encoder belt, ensuring high precision and repeatability in movement.
2. Long Travel: With a travel distance of 950mm, it is ideal for applications requiring extensive linear motion.
3. Durable Construction: Yamaha's B14R series is known for its robust design and long-lasting performance.
4. Versatile: The actuator can be used in various industries, including automation, robotics, and machine tool applications.
5. Energy Efficient: The servo motor used in the actuator is energy-efficient, reducing operational costs.
Cons of buying Yamaha B14R B14R-950 Robot Servo Linear Actuator 950mm Travel Encoder Belt:1. Higher Price: Compared to other linear actuators, the Yamaha B14R can be more expensive due to its high-quality components and advanced features.
2. Complex Setup: The actuator may require a more complex setup and configuration, potentially requiring technical expertise or support.
Conclusion:The Yamaha B14R B14R-950 Robot Servo Linear Actuator 950mm Travel Encoder Belt is an excellent choice for applications requiring high precision, long travel distances, and durable performance. Despite its higher price and potentially complex setup, the actuator's energy efficiency, versatility, and reliability make it a worthwhile investment for many industries. Ultimately, the decision to purchase the actuator should be based on the specific requirements of the application and the user's budget and technical capabilities.
Recommendation:If you are in the market for a high-quality linear actuator with advanced features and a long travel distance, the Yamaha B14R B14R-950 Robot Servo Linear Actuator is a great option to consider. However, it is essential to weigh the pros and cons, and ensure that the actuator is the best fit for your specific application and budget. You may also consider consulting with a technical expert or Yamaha's support team to ensure a successful installation and integration of the actuator into your system.
Model B14R-950. Complete part out. And the cost of return shipping. Ask our experts.
950mm travel. Items in Lot1. Part NumberB14R. Country of Manufacture Japan.
Removed From a Working Environment. Condition Used. This was pulled from a working robot unit.