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FMSXY90C-40
Compact structure, integrated XY two-dimensional translation stage
Product details
Selection Guide for Electric Displacement Platform Naming convention for Feinixs series products Basic concepts of displacement control
FMSXY90C-40
(1) Compact structure, integrated XY two-dimensional translation stage
(2) Latest upgraded version 7.0 control software, easy to control, plug and play
(3) Fast and sensitive, suitable for fields such as laser processing, life sciences, measurement and positioning

Detailed specification parameters
Product model FMSXY90C-40
Travel distance (mm) 50
Load (Kg) 0.5
Resolution (um) 0.1
Minimum incremental motion (um)【1】 0.3
Unidirectional repeated positioning accuracy/guaranteed value * (um) ±0.3
Unidirectional repeat positioning accuracy/typical value * (um)
Bidirectional repeat positioning accuracy/guaranteed value * (um) ±0.6
Bidirectional repeat positioning accuracy/typical value * (um)
Accuracy/Guarantee Value * (um) ±1
Accuracy【2】/Typical value * (um)
Maximum speed (mm/s) 100
Straightness (um) 5
Flatness (um) 5
Yaw deflection (")【3】 10
Pitch pitch (") 10
Continuous thrust (N) 3
Peak thrust (N) 11.9
Dimensions (mm) 90x90x65
Table size (mm) 90x90
[1] The minimum motion increment is not equivalent to resolution. It refers to the minimum amount that a motion system can move continuously and stably. Generally speaking, the system resolution is much smaller than the minimum motion increment. Considering the influence of transmission structure and encoder on system error, the minimum motion increment of linear motor displacement platform is closer to the resolution compared to stepper motor displacement platform.
[2] Accuracy and repeatability are easily confused concepts. Generally, using shooting description can easily distinguish between these two concepts.
[3] Only when the parameters such as straightness, parallelism, pitch, and yaw meet the high level requirements, can the accuracy and repeatability of the motion system reach a high level of precision. That is to say, customers generally only need to consider whether the accuracy and repeatability of positioning meet the application requirements in order to choose a satisfactory displacement platform. When customers have higher requirements for platform movement, non axial parameters need to be considered.
*The difference between typical values and guaranteed values can be found in the technical guidelines


Physical picture


Product Features:
With the increasing demand for high-speed and high-precision positioning in scientific research and industry, linear motor technology is becoming more and more mature, gradually replacing stepper servo motors and entering various industries such as electronics, machine tools, scientific research, automation, detection, scanning, etc; The emergence of linear motors directly eliminates the need for screws to convert the motor's rotational motion into linear motion, thus avoiding complex mechanical mechanisms and greatly reducing the number of components that affect the accuracy of the displacement table. However, the driving control method of linear motors determines the use of linear motors as high-precision displacement tables for guiding mechanisms:
G1 grade guide rail from the world's top German brand
High precision grating ruler as closed-loop control encoder
standard interface
Build a motion control system like building blocks


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