Product Specification
Brand | Husky |
Condition | New |
Warranty | YES |
Product Descriptions
Molders producing precision components require reliable hot runners that can manufacture high quality parts with minimal variability. Our UltraSync-E technology offers shot-to-shot and part-to-part consistency through precise stem closing and is ideally suited for cleanroom applications.
The superior accuracy of UltraSync-E™ is achieved with 100% synchronization of the valve stems, moved by an electric servo motor. The system is configured to provide the right stem force to achieve excellent gate quality.
Ideal solution for medical, technical and high precision, small parts
Minimum nozzle spacing of 18 mm (0.71”)
UltraSync-E technology is compatible with Ultra 350, Ultra 500 and Ultra 750 valve gate hot runner nozzles
Unique plate actuation mechanism requires limited maintenance – all moving components run on roller bearings
husky-hot-runners-ultrasync husky-hot-runners-ultrasync-tight-pitchOur UltraSync-E hot runner provides the technology to directly impact gate quality and is an ideal solution for molding medical components in a cleanroom environment.
Servo control module integrated into Altanium temperature controller
Reduced amount of floor space required
Easy set-up from a single screen
Includes a safe start-up program that prohibits stem actuation if the hot runner is not up to set-point temperature
Eliminates potential damage to the system due to operator error
In addition to the electric actuated UltraSync-E hot runner, we also offer hydraulic and pneumatic options.
UltraSync-H
UltraSync-H™ is our hydraulic plate actuation solution that has been designed to run with a hydraulic power pack to actuate the plate and stems. This reduces shutheight with the potential for a smaller mold base than with UltraSync-E.
UltraSync-P
UltraSync-P™ provides pneumatic plate actuation technology that addresses cleanroom compatibility issues associated with hydraulic solutions. It also offers a minimized shutheight and a 40% increase in stem force compared to small individual pneumatic pistons.