MACF1401-14 mm aperture galvo scanner is designed for fiber laser marking applications that require stable beam control over a larger working field. With a 14 mm input beam diameter, it is suitable for systems using larger apertures and longer focal length optics, offering flexibility in optical configuration.
Product Features
- Stable and Accurate Beam Control
Designed for fiber laser marking applications that require consistent accuracy and reliable scanning performance. - Good Marking Precision for Fine Details
With repeatability accuracy below 20 μrad, it supports clear marking of fine text, patterns, and detailed graphics. - Reliable Long-Term Operation
Low 8-hour drift helps maintain stable performance during extended production runs with less frequent adjustment. - Compatible with Standard Fiber Laser Systems
Optimized for 1064 nm fiber lasers and integrates smoothly with common laser control systems and power configurations. - Flexible for Different Working Distances
Supports multiple focusing ranges, making it suitable for various marking field sizes and optical setups.
Product Parameters
| Parameter | Specification |
|---|---|
| Product Type | Galvo Scanner |
| Tracking Error | 200 μs |
| Marking Speed | Up to 1 m/s |
| Positioning Speed | 3 m/s |
| Repeatability Accuracy | < 20 μrad |
| 8-Hour Drift | < 0.4 mrad |
| Compatible Laser Type | Fiber Laser |
| Wavelength | 1064 nm |
| Optical Deflection Angle | ±0.35 rad |
| Power Supply | ±15 V |
| Rated Current | 3 A |
| Optimal Operating Temperature | 25 °C ±10 °C |
| Storage Temperature | −10 °C to 60 °C |
| Focusing Range A | 120–260 mm |
| Focusing Range B | 200–600 mm |
FAQs
Q1: What type of laser is this galvo scanner designed for?
A: This scanner is designed for fiber laser systems operating at 1064 nm.
Q2: What is the recommended input beam diameter?
A: The scanner is designed for a 14 mm input beam, making it suitable for larger aperture optics.
Q3: Is this scanner suitable for high-speed marking applications?
A: It is better suited for applications that prioritize accuracy and stability, with a marking speed of up to 1 m/s and a positioning speed of 3 m/s.
Q4: How stable is the scanner during long operating periods?
A: The scanner offers good long-term stability, with 8-hour drift controlled within 0.4 mrad.
Q5: What focusing ranges are supported?
A: Two focusing ranges are supported: A (120–260 mm) and B (200–600 mm), allowing flexibility for different marking field sizes.
Q6: What power and temperature conditions are required?
A: The scanner operates on a ±15 V power supply with a rated current of 3 A. The optimal operating temperature is 25 °C ±10 °C, and the storage temperature range is −10 °C to 60 °C.