Ultra high precision
PSH10AW

The PSH10AW 2D scanning head is engineered for laser processing applications demanding high scanning accuracy. It features broad compatibility, high precision, fast response, low temperature drift and outstanding long-term operational reliability.

 

Reliable Structure: Compact footprint, dustproof, anti-interference and easy to install

Superior Heat Dissipation: Optimized thermal design for high-power laser operation

Wide Compatibility: Supports various processing technologies

Excellent Performance: Minimal temperature drift and high operational stability

Application Fields

 

The PSH10AW 2D scanning head is widely used in diverse laser processing scenarios, including material processing, multi-head splicing machining, microstructure fabrication, drilling, high-speed laser cleaning, on-the-fly processing and scribing for the semiconductor and solar industries.

 

Mechanical Drawing(Unit of dimension: mm)


PSH10AW箱体图

Legend:

1.Electrical Interface

(XY2-100 / Power Input)

2.Laser Outlet

3.Laser Inlet

PSH10AW
PSH10AW-左PSH10AW-右
Input Plate & Mounting Plate
Output Plate


Specifications


PSH10AW

Specifications

Maximum allowed average laser power(1)

300 W

Optional adaptable wavelengths(8)

355nm;532nm;1030-1090nm

Aperture

10 mm

Effective scan angle(2)

± 10°

Tracking error

≤0.11ms

Step response

≤0.26 ms

Speed


Positioning / Jump(3)

<30m/s

Line scan(3)

<30 m/s

Vector scan(4)

<3.5 m/s

Good writing quality(3)(5)

1000 cps



Precision


Linearity

99.9 %

Repeatability

2 μrad



Temperature drift


Offset

15 μrad/℃

Gain

15 μrad/℃



Long time drift(after 30 mins warm up)


Over 8 hours long-term offset drift

25μrad

Over 8 hours long-term gain drift

40μrad

Operating temperature range

25 ℃ ± 10 ℃

Signal interface

Analog:± 10 V or ± 5 V

Digital:XY2-100 or PRS422

Input power requirement(DC)

± 15 V @ 5 A Max RMS

Volume

115mm×151.5mm×110mm

Note: 

(1) For laser wavelength 1030-1090 nm. 

(2) All angles are in mechanical degrees.  

(3) With F-Theta objective f = 160 mm. Speed value varies correspondingly with different focal lengths. 

(4) Reapeatibility and temperature drift are measured within this speed. 

(5) Single-stroke font with 1 mm height.

(6) The long-term thermal drift test shall be carried out under a constant ambient temperature of approximately 25 °C, with the laser power kept below 500 W. High laser power shall not be adopted for thermal drift testing. Under high laser power, thermal distortion will occur in both the optical system and mechanical system. Consequently, it cannot be determined whether the measured drift originates from the inherent drift of the galvo scanner or from thermal deformation of the optical and mechanical systems.

(7) Appropriate delay parameters must be configured for normal operation of the galvo scanner. Failure to do so may result in abnormal operation of the galvo motor and even irreversible damage to the motor! Please contact PSI engineers regarding relevant parameter configuration issues.

(8) Wavelength customization available. Please consult PSI engineers!