PLT320-DLM
Linear Stages
Heavy duty linear stage (linear motor), travel 300 - 1500 mm, rep ± 0.4 µm, load 25 kg, speed 2445 mm/s

Precision in heavy-duty operation
The PLT320-DLM is the model of choice for positioning heavy loads with speed and precision. The integrated linear motor, in combination with a linear measuring system, can accelerate heavy loads with extreme precision.
Basis for multi-axis systems
With a width of 320 mm, this linear stage is the largest model in the PLT series. It can be used as the base axis in multi-axis systems for very high loads, but is also suitable as a single axis. With travel distances ranging from 300 mm to 1000 mm, the PLT320 offers a number of options for addressing a range of applications.
Designed for industrial environments
In common with all the stages in the PLT series, the PLT320 is suitably protected for use in industrial environments. It is characterized by a robust casing and solid drive concept.
PLT320 | -300-DLM-L | -400-DLM-L | -500-DLM-L | -750-DLM-L | -1000-DLM-L | -1500-DLM-L | |
Travel | [mm] | 300 | 400 | 500 | 750 | 1000 | 1500 |
Repeatability unidirectional | [μm] | ± 0.4 | ± 0.4 | ± 0.4 | ± 0.4 | ± 0.4 | ± 0.4 |
Repeatability bidirectional | [μm] | ± 0.5 | ± 0.5 | ± 0.5 | ± 0.5 | ± 0.5 | ± 0.5 |
Accuracy | [μm] | ± 2.3 | ± 2.6 | ± 2.9 | ± 3.6 | ± 4.2 | ± 5.4 |
Flatness | [μm] | ± 9 | ± 12 | ± 15 | ± 25 | ± 30 | ± 50 |
Straightness | [μm] | ± 4.5 | ± 6 | ± 7.5 | ± 11 | ± 15 | ± 25 |
Positioning speed | [mm/s] | 620 | 700 | 790 | 1000 | 1210 | 1630 |
Max. Speed | [mm/s] | 930 | 1050 | 1185 | 1500 | 1815 | 2445 |
Max. acceleration | [m/s2] | 12 | 14 | 16 | 20 | 25 | 35 |
Max. load Fx | [N] | 250 | 250 | 250 | 250 | 250 | 250 |
Max. load Fy | [N] | 3100 | 3100 | 3100 | 3100 | 3100 | 3100 |
Max. load Fz | [N] | 3100 | 3100 | 3100 | 3100 | 3100 | 3100 |
Max. torque Mx | [Nm] | 110 | 110 | 110 | 110 | 110 | 110 |
Max. torque My | [Nm] | 150 | 150 | 150 | 150 | 150 | 150 |
Max. torque Mz | [Nm] | 150 | 150 | 150 | 150 | 150 | 150 |
Pitch | [µrad] | ± 35 | ± 40 | ± 45 | ± 55 | ± 65 | ± 75 |
Yaw | [µrad] | ± 17 | ± 20 | ± 20 | ± 25 | ± 30 | ± 40 |
Resolution | [µm] | 0.1 | 0.1 | 0.1 | 0.1 | 0.1 | 0.1 |
Weight | [kg] | 49 | 56 | 64 | |||
L1 | [mm] | 810 | 910 | 1010 | 1260 | 1510 |
Related Products
Almost all atmospheric standard stages are unanodized with UHV lubrication for residual pressures up to 10-6 mbar and min. cleanroom class ISO 6 - or even better - available. Further stages for more demanding environments up to cleanroom class ISO 2, vacuum up to 10E-11 mbar or hard radiation you will find here:
Overview Clean Room & Vacuum Stages Get in touch with our technical consultant
Ja, Lineartische können auch als Hubtische (Z-Richtung) sowie gestapelt (XY-Bewegungen verwendet werden).
Wichtig dafür ist, dass die maximale Kraft in Antriebsrichtung nicht überschritten wird. Die Kraft für die vertikale Positionierung wird in der Spezifikation bei Linear Stages unter Fx angegeben.
Steinmeyer Mechatronik GmbH mainly uses aluminum for the structure of the Linear Stages, because it efficiently dissipates local heat and quickly reaches a thermally stable state. This is a prerequisite for stable, precise systems. The lower stiffness of aluminum compared to steel is compensated by a slightly higher height of the stages or the use of hollow profiles. Note: An aluminum beam and a steel beam sag equally under their own weight!
In special cases, titanium is also used for magnet-free systems.
What surfaces are available?
Various surface options are available. Depending on the application, anodized and cleaned, alternative colors, aluminum cleaned and bare, bilatal or nickel are available for optimal process suitability (e.g. particularly high degrees of purity, resistance to cleaning with chemicals in the field of life science). Special surfaces are often necessary for UV, DUV or EUV (X-ray, gamma on request).
Depending on the requirements, various drive systems can be used. This can be recognized as an abbreviation in the name below:
- Ground ball screws or lead screws with SM (stepper motor), DC motor or AC servo.
- Electrodynamic linear motors (ironless or iron-core).
- Piezomotors such as Piezo-Legs® or Nanomotion®.
Incremental scales made of steel or Zerodur® or Zeromet® are used as a feedback system in most cases. While this is sufficient for accuracy in the single-digit micrometer range, it makes sense to use interferometric position feedback for accuracy requirements below one micrometer. In systems with “open loop”, i.e. without a measuring system, only precision in the double-digit micrometer range can be achieved; however, due to the simpler controller and the lack of a measuring system, this is the more cost-effective solution.
Are you looking for a technical solution for your application?
Get your first 3D Design in a few days:

Katja Weißbach
Consulting
T +49 351 88585-64
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Ronald Schulze
Consulting, Project Management & Engineering
T +49 351 88585-67
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Francisco Samuel
Consulting &
Project Management
T +49 351 88585-85
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Elger Matthes
Consulting, Concepts, Innovation & Engineering
T +49 351 88585-82
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