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SP-B-532-Water
The SP-B-532-Water is an all-solid-state acousto-optic Q-switched laser designed for high-performance operation at 532 nm. Delivering high peak power, high repetition rates, and short pulse durations (~12 ns), it provides excellent precision and efficiency for a wide range of industrial and scientific applications.
Its TEM00 beam quality (M² <1.2) and superior beam circularity (>90%) ensure excellent focusing and process control. With a water-cooled design for stable thermal management, this laser is ideal for marking, micromachining, and processing highly reflective or hard materials.
Features
- All-solid-state Q-switched laser with excellent reliability
- High peak power and short pulse duration (~12 ns)
- Stable operation across 20–200 kHz repetition rates
- TEM00 mode with M² <1.2 for superior beam quality
- Excellent beam circularity (>90%) and low divergence (<2 mrad)
- Water-cooled system for continuous high-power operation
- Compact, industrial-grade design with fast warm-up time (<10 min)
- Compatible QDI-AOM (3U) power supply
Applications
- Laser marking of reflective metals (gold, silver, aluminum, copper)
- Semiconductor material processing (Si, GaAs, Ge)
- Micromachining and scribing of hard materials
- Marking and engraving of rubbers and silicone
- Precision laser research and photonics applications
Specifications
| Parameter | Specification |
|---|---|
| Wavelength (nm) | 532 ± 1 |
| Operating Mode | Acousto-Optic Q-switched |
| Average Power (W) | 8 W @ 30 kHz / 10 W @ 30 kHz |
| Single Pulse Energy (µJ) | >300 µJ @ 30 kHz |
| Repetition Rate (kHz) | 20 – 200 |
| Pulse Width (ns) | ~12 @ 30 kHz |
| Transverse Mode | TEM00 |
| Beam Circularity (%) | >90 |
| Beam Divergence (full angle, mrad) | <2 |
| Beam Diameter at Aperture (1/e², mm) | 0.8 ± 0.1 |
| Beam Quality (M²) | <1.2 |
| Beam Height from Base Plate (mm) | 39.5 |
| Cooling Method | Water Cooled |
| Warm-up Time (minutes) | <10 |
| Operating Temperature (°C) | 10 – 35 |
| Power Supply (VAC) | QDI-AOM (3U), 110/220 VAC |
| Average Power Formula | Average Power (W) = Pulse Energy (mJ) × Rep. Rate (kHz) |
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