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2D planar surface gantries

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Learn more about 2D planar surface gantries

Selection Guide

YXCF

With their high mechanical rigidity and sturdy design, the YXCF planar surface gantries can be used in a wide variety of applications.
Light to heavy workpieces or payloads as well as long strokes are no problem for the YXCF planar surface gantries. Any position in a horizontal, rectangular 2D workspace can be approached.
The complete systems consist of three linear axes with precise guides in serial design. With coordinated stepper and servo motors, motor controllers and an integrated energy supply concept, a reliable, ready-to-install solution is provided.
The planar surface gantry can be delivered partially or completely assembled as required. All cables are laid and connected.

EXCM

Wherever every millimeter counts, the small-sized EXCM planar surface gantry shows its advantages.
High functionality meets extremely compact, flat design and maximum workspace coverage.
Thanks to a parallel kinematic drive concept with circulating toothed belt and two fixed stepper motors, the gantry offers very low moving masses and maximum functionality in the smallest installation space.
The superimposition of both motors allows the slide to move in the X and Y directions, allowing any position in a rectangular workspace to be approached. The motor connection of the EXCM systems can be configured at the top as well as at the bottom.
Thanks to precise recirculating ball bearing guides, even larger payloads can be positioned exactly.
With different sizes and freely scalable X and Y axes, the gantry series is also extremely flexible.
A Clean Look covering of the Y cross-brace optimally protects the gantry from foreign particles.
Coordinated, pre-parameterized actuator and controller packages are available for the EXCM planar surface gantries. These include stepper motors with optical encoders and the CMXH dual motor controller for position-controlled ServoLite operation (closed loop).

EXCH

The planar surface gantries of the EXCH series are high-speed systems with a very large rectangular working area.
A parallel kinematic drive concept offers extraordinarily high dynamics and at the same time a flat design.
The system is driven by two fixed, powerful servo motors coupled to an H-shaped recirculating toothed belt.
The superimposition of both motors allows the slide to move in the X and Y directions, allowing any position in a workspace to be approached.
Through the use of optional, coordinated mounting elements, further processes can be carried out by independent, electrical or pneumatic Z-axes.
An integrated energy supply concept ensures simple installation and secure cable management even with high dynamics.
With different sizes and freely scalable X and Y axes, the gantry series is also extremely flexible. Coordinated motor controllers and optional control systems with robot functionality round off the system.