VRS High Speed Series
Dealer In India | Zentech Automation
VRS High Speed Series
We?ve taken our industry-changing VRS series and have optimized components, processes and specifications to create a product variant that is ideally suited for demanding continuous duty applications with high nominal speeds and longer service life requirements.
The VRS High Speed can reach nominal input speeds of 4,500 rpm, making it a perfect match for continuous duty servo motors. Our design minimizes heat build-up, no-load running torque and maximizes efficiency. When combined with our specially developed lubrication, we off er the printing, packaging and converting industries with a zero maintenance solution that assures high throughput while reducing energy and cost of ownership.
Available Frame Sizes: 075 | 100 | 140
Additional Information:
Product Features
- Carburized Helical Gears: Features a proprietary secondary finishing process for higher accuracy and ensures smooth, quiet operation.
- One-Piece Output Shaft & Planet Carrier: Equipped with two robust tapered bearings, providing higher radial/axial load capacity, stiffness, torque density, and safety factor, with guaranteed gear alignment.
- Uncaged Needle Roller Bearings: Designed to reduce heat and offer excellent torque density and torsional rigidity for improved performance and durability.
- Unique Labyrinth Input Design: Paired with specially developed lubrication, this design greatly reduces heat and enhances system efficiency. IP65 protection is available for wash-down applications.
- Optimized Mounting System: Features active centering on the motor pilot diameter to guarantee precise motor alignment. The motor can be installed in any orientation.
- True Concentric Motor Shaft Clamping: Optimized for your specific motor, this connection reduces inertia for dynamic performance and ensures balanced high-speed operation.
- Machined Ring Gear: The ring gear is machined directly into the housing, not welded or pressed, providing greater concentricity and eliminating speed fluctuation.
