Product Details:
High speed, high precision, high stability and high cost performance
Linear motor displacement stage, providing ideal solutions for scientific research and industrial customers, perfectly replaces the traditional servo motor + lead screw structure displacement stage.
Main features:
High-speed response, enhanced efficiency: Linear motor technology offers faster acceleration and higher speed, significantly reducing positioning time and improving experimental efficiency.
High-precision positioning ensures accuracy: Equipped with a high-precision grating ruler, it achieves micron-level repeat positioning accuracy, meeting the requirements of high-precision applications.
High stability operation ensures reliability: The frictionless transmission design eliminates the mechanical wear and clearance of traditional lead screw structures, ensuring long-term stable operation and extending service life.
High cost performance, optimized cost control: While offering outstanding performance, the price is highly competitive, helping customers optimize cost control and achieve high cost performance.
Ultra-quiet operation, creating a comfortable environment: The ultra-quiet displacement stage is suitable for noise-sensitive laboratory environments and high-performance industrial sites.
Choose our control system as an option: Powerful software support and easy operation: Free standard SDK, supporting multiple development languages (C/C++, C#, Matlab, LabVIEW, etc.) in Windows and Linux environments, facilitating users' secondary development and system integration.
High-performance controller, achieving complex motion: The controller supports circular interpolation, linear interpolation, position memory and arbitrary graphic import, which can meet various complex motion control requirements.
Flexible communication and seamless connection: Optional EtherCAT bus control is available to achieve high-speed and stable data transmission.
Product application:
Life Science, Precision Measurement, semiconductor Semiconduct, Aviation, Laser, Automatic Control industry
Performance measurement:

Product parameters:
Model |
PT-ZX50 |
PT-ZX100 |
PT-ZX150 |
PT-ZX200 |
Travel(mm) |
50 |
100 |
150 |
200 |
Load Capacity(kg) |
20 |
10 |
20 |
10 |
Resolution(um) |
0.1 |
0.1 |
0.1 |
0.1 |
Min.Incremental Motion(um) |
0.3 |
0.3 |
0.3 |
0.3 |
Undirection Repeatability[3]/Guaranteed(um) |
±0.5 or 1 |
±0.5 or 1 |
±0.5 or 1 |
±0.5 or 1 |
Undirection Repeatability/Typical(um) |
±0.2 or 0.4 |
±0.2 or 0.4 |
±0.2 or 0.4 |
±0.2 or 0.4 |
Bi-Directional Repeatability/Guaranteed(um) |
±1 or 2 |
±1 or 2 |
±1 or 2 |
±1 or 2 |
Bi-Directional Repeatability/Typical(um) |
±0.5 or 1 |
±0.5 or 1 |
±0.5 or 1 |
±0.5 or 1 |
Accuracy[3]/Guaranteed(um) |
±2 or 4 |
±2 or 4 |
±2 or 4 |
±2 or 4 |
Accuracy/Typical((um) |
±0.5 or 1 |
±0.5 or 1 |
±0.5 or 1 |
±0.5 or 1 |
Max.Speed(mm/s)(mm/s) |
200 |
200 |
200 |
200 |
Straightness(um) |
5 |
5 |
5 |
5 |
Flatness(um) |
5 |
5 |
5 |
5 |
Yaw(arcsec) |
10 |
15 |
15 |
20 |
Pitch(arcsec) |
10 |
15 |
15 |
20 |
Continuous Force(N) |
35.2 |
17.6 |
35.2 |
17.6 |
Peak Force(N) |
176 |
88 |
176 |
88 |
Note
Vertical load at the center when placed horizontally.
2: The minimum motion increment is not equivalent to resolution. The minimum motion increment refers to the smallest amount that a motion system can move under continuous and stable conditions. Generally speaking, the system resolution is much smaller than the minimum motion increment. Considering the influence of the transmission structure and the encoder on the system error, compared with the stepping motor displacement stage, the minimum motion increment of the linear motor displacement stage is closer to the resolution.
The precision measurement data is obtained by using a laser interferometer when the platform is placed horizontally.
4: The maximum speed is a typical value and may vary depending on the load and controller.
Product size: