Gantry Systems - T-G-LSM Series with Built-in Controllers

  • Manufactured by: Zaber Technologies

Quick Overview

 Zaber's Gantries are designed for multi-axis applications where load and travel requirements exceed the rated cantilever load specs of Zaber's simpler XY or XYZ systems. In addition, Zaber's Gantries are designed for use where access is required to the entire area under the system. A synchronized pair of lead scr..

Description

 Zaber's Gantries are designed for multi-axis applications where load and travel requirements exceed the rated cantilever load specs of Zaber's simpler XY or XYZ systems. In addition, Zaber's Gantries are designed for use where access is required to the entire area under the system. A synchronized pair of lead screws provide very low backlash and high stiffness. Gantry systems include a baseplate with a full M6 on 25 mm grid of mounting holes, integrated high flex cable and cable management system.

 

  • 100 or 200 mm travel per axis (custom lengths available)

  • Low profile – 70 mm overall height

  • Customizable – add another Zaber stage for a Z-axis

 

 Specification Value
 Integrated Controller Yes
 Encoder Type None
 Communication Interface RS-232   
 Communication Protocol Zaber Binary 
 Maximum Centered Load 100 N
 Maximum Cantilever Load 300 N-cm
 Guide Type Roller Bearing
 Vertical Runout < 8 µm   
 Horizontal Runout < 12 µm
 Maximum Current Draw 1000 mA
 Power Supply 12-16 VDC   
 Motor Steps Per Rev 200   
 Default Resolution 1/64 of a step 
 Mechanical Drive System Precision lead screw   
 Limit or Home Sensing Magnetic hall sensor
 Manual Control Yes
 Axes of Motion 2
 Mounting Interface M3 threaded holes (stage) & M6 (base plate)   
 Vacuum Compatible No
 Operating Temperature Range 0°C to 50°C
 Stage Parallelism < 25 µm
 RoHS Compliant  Yes
 CE Compliant  Yes

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Manufacturer Informations

Zaber Technologies

    Zaber was founded in 1997, when precision linear actuators all used DC motors with gearboxes and encoders requiring bulky controllers.
    Zaber resolved this by integrating the motor, controller, driver, and mechanics into a single device with a small form factor.


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