Introduction
Fiber comes with a powerful 100 W laser output and a wavelength of 1064 nm. It has a wide pulse repetition frequency range (1.5 kHz to 1000 kHz) for marking flexibility. The machine has a long operational lifespan and reliable performance in continuous use. Also, it offers high-precision laser marking with excellent beam quality (M² up to 1.3). Our marking machine is suitable for applications in automotive, electronics, medical devices, tools, and more.
This laser marking machine is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Our Fiber Laser Marking Machine is widely used for high-precision marking on metals and some non-metals. It is widely applied in industries like electronics, medical devices, IC cards, and tools for deep, accurate, and durable engravings.
Specifications
| Laser Output Power | 100 W |
| Beam Quality (M²) | Up to 1.3 |
| Marking Speed | Up to 7000 mm/s |
| Repetition Accuracy | ± 0.003 mm |
| Minimum Character Size | 0.1 mm |
| Marking Line Width | 10 μm |
| Marking Area | 100 × 100 mm |
| Wavelength | 1064 nm |
| Pulse Repetition Frequency | 1.5 kHz to 1000 kHz |
| Focus Lens | F160 |
| Focal Length | 197 mm |
| Cooling Mode | Air cooling |
| Permissible Temperature | 15°C to 35°C |
| Power Consumption | 500 W |
| Current | 2.5 A |
| Power Supply | AC 220 V, 50 Hz |
| Dimensions (L × W × H) | 760 × 610 × 1494 mm |
| Net Weight | 120 kg |
Features
Precision marking
Accurate focusing
Exceptional marking accuracy
Fast marking speed
Compact and durable
FAQs
1. Why does beam quality matter and what makes this machine good?
Beam quality (M² ? 1.3) determines how sharp, clean, and focused your marks are. A high-quality beam like this ensures precision even at high speeds, giving your logos, text, and barcodes a razor-sharp finish every time. This also reduces energy waste and minimizes distortion, which is essential for consistent results across long production runs.
2. How does air cooling compare to water cooling in laser machines?
Air cooling is simpler, cleaner, and more energy-efficient. Fiber Laser Marking Machine uses a smart air cooling system that keeps the laser stable without bulky water tanks or messy coolant systems, making it ideal for businesses that value low maintenance. It also improves portability and reduces the risk of component failure due to leakage or pump issues found in water-cooled systems.
3. What happens if I need to mark on curved or irregular surfaces?
Fiber Laser Marking Machine allows marking on curved and irregular surfaces. For slight curves, you can adjust the focus manually. For more complex shapes, external rotary attachments can be added. While this machine shines on flat surfaces, it’s flexible enough for creative marking applications, enabling precision on cylindrical items like rings, pipes, or bottle caps with minimal setup.
4. What is the purpose of the F160 focus lens and 197 mm focal length?
The F160 focus lens offers a focal length of 197 mm, which helps to maintain optimal beam focus over the 100 × 100 mm marking area. This ensures consistent energy delivery, high clarity, and sharp edges in each mark, which is especially important for intricate or dense markings. The fixed focal distance also simplifies setup, reduces operator error, and improves repeatability across different batches.
5. What is the advantage of the wide pulse repetition frequency range (1.5 kHz to 1000 kHz)?
This wide frequency range allows users to adjust the pulse rate to suit different materials and desired effects. Lower frequencies are ideal for deep engraving, while higher frequencies produce fine, cleaner marks with less thermal stress. This flexibility makes the machine adaptable for marking metals, plastics, or composites with varying hardness or sensitivity, enhancing overall usability.
Tips: For more details, quotes and customized solutions, please contact us anytime. We’re always ready to serve you professionally.

