
Orange Femtosecond Ytterbium Lasers
Menlo Systems’ femtosecond Yb fiber-based laser sources now offer more than 10 W in average power with a pulse duration of <150 fs. Based on our unique figure 9® design, the lasers offer reproducible and long-term stable operation. Both oscillator and amplifier use polarization maintaining (PM) fiber components only, ensuring excellent stability and low-noise operation. The second harmonic generation is a highly efficient module for maximum performance. The laser is maintenance free, user installed and ready to use at the press of a single button. Customize your laser with the available options to match the requirements of your application.
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orange | orange HIGH POWER | orange HIGH POWER 10 | |
Central Wavelength | 1040 nm ± 10 nm | 1040 nm ± 10 nm | 1040 nm ± 10nm |
Average Power | >100 mW (@ 100 MHz) | >1 W (@ 100 MHz) | >10 W (@ 100 MHz) |
Pulse Energy | >1 nJ | >10 nJ | >100 nJ |
Pulse Width* | chirped, 1-4 ps, supporting <150 fs | <150 fs (<75 fs**) | <200 fs (<150 fs**) |
Repetition Rate** | 50 MHz or 100 MHz | 100 MHz | 50 MHz or 100 MHz |
Repetition Rate Instability | <1 ppm over 90 hours at constant temperature | <1 ppm over 90 hours at constant temperature | <1 ppm over 90 hours at constant temperature |
Output Port | fiber-coupled | free space | free space |
Additional Fiber-Coupled Seed Port | 1 (up to 4 with MULTIBRANCH) | 1 (up to 4 with MULTIBRANCH) | 1 (up to 4 with MULTIBRANCH) |
Polarization | linear, PM Fiber | linear, p-polarized | linear, p-polarized |
Beam Height | 120 mm | 120 mm | |
SECOND HARMONIC MODULE | SHG 520 | ||
Average Power | >400 mW | ||
Pulse Width | <150 fs | ||
Polarization | linear, p-polarized |
Amplitude noise < 0.5% rms (over 24h)
Reproducibility. Identical and consistent laser performance
- >1 W with <75 fs or >10 W with <150 fs
- SHG 520 nm Option
- High Stability
- Low Amplitude and Phase Noise
- Repetition Rate 50-250 MHz
- Single Mode-Lock State
- figure 9® Technology, Laser Output in Less than 60 Seconds
- Amplifier seeding
- 2-Photon polymerization and 3D printing
- Ultrafast Spectroscopy
- Multi-Photon Excitation
- OPO / OPA seeding