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QTECH NANOSYSTEMS PTE LTD
Quantum Leaps in Nano World and Beyond
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NANOPOSITIONERS
Mechanisms of Nanopositioners
Four Bar Mechanism
Roto Balanced Mechanism
Monolithic Construction
Art of positioning an object with nanometer resolution is known as Nanopositioning. Precision application requires the ability to position devices and tools accurately within nanometer range. The technology used to achieve this is called Nanopositioning Technology and the instruments used to accomplish the task are called Nanopositioners.

SINGLE AXIS STAGE (Data Sheet)

Single Axis Stage is a translation stage that moves in one directions (X or Y or Z) linearly and angularly. The range of displacement varies from 2 micron to 250 micrometer with 1 nanometer resolution. This type is suitable for microscopy applications where eye / object pieces to be moved horizontally. Also this can be useful for general purposes such as Photonics, Optics, Fibre Positioning / Stretching, Biotechnology, Interferometry, Micro & Nano Manipulation, Metrology, microscopy etc.

The stage is designed using the materials such as aluminium, phosphor bronze, stainless steel or Invar. The material selection depends on the requirements and applications.

TWO / THREE AXES STAGE (Data Sheet)
 
Two – Axes Stage is a translation stage that moves in two direction (X n Y or X n Z). The range of displacement varies from 1 micron to 250 micrometer with 1 nanometer resolution. This type is suitable for microscopy applications where eye / object pieces to be moved horizontally. Also this can be useful for general purposes such as Photonics, Optics, Fibre Positioning / Stretching, Biotechnology, Interferometry, Micro & Nano Manipulation, Metrology, microscopy etc. The materials used are aluminium, phosphor bronze, stainless steel or Invar. The material selection depends on the requirements and applications.
 
ROTORY STAGE (Data Sheet)
 
Rotory Stage is a stage that rotates in about any one or more axis (θx or θy or θz). The range of displacement varies from 10⁰ micron to 30⁰ with 1 rad resolution. This type is suitable for metrology, fiber optics, precision machines applications The materials used are aluminium, phosphor bronze, stainless steel or Invar. The material selection depends on the requirements and applications.