OWIS - Nano-Hybrid Positioners


Nano-Hybrid Linear Stages NHL 170

The NHL 170 nano-hybrid linear stages are characterized by particularly long travel ranges of 600 mm allowing precise positioning in nanometer range.
The established mechanism of spindle drive with step motor ensures very high load capacities and moments. The integration of a piezoelectric actuator and a high-resolution linear measuring system additionally enables the fine positioning for very high accuracy and fine resolution. This makes the linear stages of the new OWIS® positioning generation perfect for use in applications requiring the highest precision for very high loads and long travels, which a common nanopositioning system could not offer. The nano-hybrid linear stages provide both, properties of a micro positioning system as well as of a nanopositioning system.
Multi-axes combinations can also be realized.
The basic components of the hybrid linear stages are made of high strength aluminium. The top quality black anodized protective coating of the aluminium parts prevents reflections or stray light almost completely.

Nano Hybrid Linear Stages NHL 124

The new nano hybrid linear stages NHL 124 represent the new NHL OWIS® positioning generation at nano scale.
The NHL 124 provides a precise motion in the nanometer range for travels up to 290 mm, quickly and easily. Its special technology and its accuracy in the nanometer range make the new positioning stage perfect for use in applications requiring highest precision.
Due to the special drive technology, the integrated high-resolution linear measuring system enables in closed-loop operation a fine adjustment with a travel over a few micrometers - for highest positioning accuracy and repeatability in the nanometer range. A quick and rough positioning in the micrometer range is achieved via spindle.
The special design of the NHL 124 enables – for nanopositioners unusual - high loads up to 150 N.
The basic components of the hybrid linear stage are made of high strength aluminium. The top quality black anodized protective coating of the aluminium parts prevents reflections or stray light almost completely.
Multi-axes combinations can also be realized.


Nano Rotary Stage

The OWIS Nano Rotary Stage NDT 24-30 is equipped with a piezo inertial drive. The adjustment area is unlimited.

 

  • increments of 40 µrad and 90 µrad with manual control unit NHS 06
  • high speed in full step motion
  • main body and rotary stage made of wear resistant aluminium alloy, black anodized
  • high linearity of the step sizes at constant control voltage and frequency
  • optional measuring system with a resolution of about 8 µrad
  • versions for use in vacuum available

Nano-Goniometers

The OWIS Nano Goniometer NAGO T 24-8 is equipped with a piezo inertial drive. The adjustment range is 0.11 rad by speed about 20 mrad/s. The smallest step angle is about 2 µrad.

  • increments of 2 µrad and 6 µrad with manual control unit NHS 06
  • high speed in full step motion
  • main body and rotary stage made of wear resistant aluminium alloy, black anodized
  • high linearity of the step sizes at constant control voltage and frequency
  • optional measuring system with a resolution of about 3 µrad
  • versions for use in vacuum available

Manual Control Unit NHS 06

The handy and lightweight control pad is suitable for all OWIS Nanopositioning System. Up to 6 axes, which can be controlled in two groups of each 3 axes. There are 3 different frequencies and 2 different step widths selectable, therefore six different speeds. It is possible to control the units with the provided software. The communication between PC and control unit is done via USB 1.1. An external power supply is also part of the delivery.

Other models or configurations may be available. Please contact us with your application reqirements.

News & Announcements

  • IMPORTANT UPDATE! The workshop has been moved to November 30 to December 1

    SIRIM, in cooperation with Horiba Scientific are holding a workshop, "Photoluminescence of Sol-Gel Derived Materials and Optical Fibers for Photonic Applications." Read More...

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Tel :+603 - 4270 5386
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