linear actuator / electric / timing belt / for heavy loads
Smart System

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linear actuator linear actuator - Smart System
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Characteristics

  • Movement:

    linear

  • Type:

    electric

  • Technology:

    timing belt

  • Other characteristics:

    for heavy loads, high-speed, food, extruded aluminum

  • Stroke :

    Min.: 0 mm (0 in)

    Max.: 6,000 mm (236.22 in)

  • Speed:

    Min.: 0 m/s (0 ft/s)

    Max.: 4 m/s (13.12335958 ft/s)

Description

Smart System
High performance, simple linear units with steel re-enforced driving belt
Product Description
The SMART SYSTEM linear actuators feature a self-sustaining anodized aluminum frame and steel re-enforced driving belt. This is a series of highly cost effective linear units, featuring high performance combined with a carefully planned simple construction.
•High load capacity
•High speeds and accelerations
•High admissible tipping moments
•Low friction
•Low noise
The SMART SYSTEM series consists of 3 distinct products with different features: E-SMART, R-SMART, S-SMART.
SMART SYSTEM – E-SMART
The E-SMART series linear units have an extruded and anodized aluminum self-sustaining structure with a profile available in four sizes from 30 to 100mm. Transmission with polyurethane steel re-enforced driving belt and features a single-rail with one or more recirculating ball bearing runner blocks.
SMART SYSTEM – R-SMART
The R-SMART series linear units are particularly suitable for heavy loads, pulling and pushing very heavy weights, demanding work cycles, possible cantilever or gantry mounting, and operation in industrial automated lines.
Extruded and anodized aluminum self-sustaining structure with a rectangular section, available in three sizes, from 120 to 220mm. Transmission with polyurethane steel re-enforced driving belt and features a single-rail with one or more recirculating ball bearing runner blocks. Also available with multiple sliders to further improve load capacity.
These units are best used in applications requiring very heavy loads in extremely confined spaces, and where machines cannot be stopped to carry out ordinary system maintenance.