Can high speed and consistency go hand-in-hand?
Recognizing a gap in the market for Rotary Tables that strike the correct balance between speed and consistency, we proudly introduce our newest innovation: the URQ HS Series 4th axis Rotary Tables!
This series comprises of two High Speed CNC Rotary Tables: the URQ 200 HS, with a maximum speed of 55.55 RPM, and the URQ 250 HS, achieving a maximum speed of 44.44 RPM.
Specifically engineered for mass production applications, these CNC High Speed Rotary Tables boast state-of-the-art features like:
- High Speed Indexing and Quick Acceleration: Significantly reducing cycle time and amplifying productivity.
- Lightweight Design: With a 30% reduction in weight and a more compact build, these Rotary Tables optimize machine acceleration, precision, and efficiency, resulting in faster production cycles.
- IP65 Protection: Built-in resistance to dust and water ingress ensures suitability for various industrial environments.
We are confident that this series will deliver a seamless and accelerated machining experience to our valued customers.
Ready to revolutionize your machining process? Contact us now at sales@ucamind.com to discover how the URQ HS Series can elevate your productivity to new heights!
FAQs
What is the maximum speed of the UCAM URQ HS Series?
The UCAM URQ HS Series features two high-speed 4th axis Rotary Tables. The URQ 200 HS achieves a maximum speed of 55.55 RPM, while the URQ 250 HS reaches 44.44 RPM, making it highly efficient for mass production.
How does a lightweight Rotary Table improve CNC machining?
A lightweight Rotary Table, like the URQ HS Series with its 30% weight reduction, optimizes machine acceleration and precision. This compact build ensures faster indexing and shorter cycle times without sacrificing durability.
Are UCAM high-speed Rotary Tables protected against coolant and dust?
Yes, UCAM’s URQ HS Series Rotary Tables feature a strict IP65 protection rating. This built-in resistance to dust and water ingress ensures reliable, continuous operation across various demanding industrial environments.