Laser | FLEX M-2000 | FLEX M-2000 X (coming soon) |
---|---|---|
Wavelength [nm] | 1900-2200 (adjustable by design) | 1900-2200 (adjustable by design) |
Spectral width [nm] | < 40 | < 40 |
Manufacturer | Monocrom | Monocrom |
Dimensions [cm] | 42 x 38 x 15 | NA |
Weight [kg] | 25 | NA |
Cooling system | External water | External water |
Peak power [W] | 190 | 500 |
Average power [W] | 105 | 280 |
Pulse rate [Hz] | 1 – 1000 | 1 – 1000 |
Pulse energy [J] | Adjustable | Adjustable |
Pulse width [ms] | Adjustable | Adjustable |
Operation mode | CW/modulated | CW/modulated |
Fiber core [µm] | ≥ 200 | ≥ 200 |
Products, Fiber-coupled Lasers
FLEX M-2000 Series
Introducing FLEX M-2000 Series, Fiber coupled solution in the 2 µm wavelength range (2000 nm laser) for Soft Tissue Surgery, Laser Lithotripsy and Endourology procedures.
In the new M-2000 the wavelength can be customized to successfully match the absorption peak of the targeted tissue. In this way, high ablation rate is assured, leading to better treatment results and shorter procedures.
This is suitable for Medical applications. This solution comes to the market to solve the wavelength limitations and as a cost-efficient alternative of others, commonly used lasers, such as solid-state Holmium:YAG and Thulium fiber lasers. While the wavelength emission of these lasers do not exactly match the water peak absorption around 2 µm, FLEX M-2000 offers the possibility to adjust the wavelength by design to perfectly match the water peak absorption, which results in a more efficient ablation.
Electronically pulsed to a frequency that can exceed 1000 Hz, a value that is several times higher than the standard pulse rate in the market of 20-80 Hz, FLEX M-2000 Series opens the possibility for more diverse treatment strategies. The achieved maximum wall-plug efficiency is of about 5%, which is 4 times more compared to a Ho:YAG laser (1-2%). This laser source can be effectively operated in continuous wave (CW) and pulsed mode.
Broad variety of optical fiber core diameters are offered to best match application needs.
Integrated Rectified Polarization Beam Combining technique. Technology that is wavelength agnostic and allows to follow the moving gain of semiconductor laser diodes, which can be caused by injection current and p-n-junction temperature in- or decrease.
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