High Energy 780nm Femtosecond Fiber Laser
SCI-780-FS-HP
SCI-780-FS-HP is a newly launched "wavelength-flexible" femtosecond fiber laser. This product adopts an innovative resonant cavity design, so that the central wavelength can be flexibly configured according to customer needs within a wide wavelength range. SCI-780-FS-HP can provide less than 150fs pulse width and 0.2W average power in the 780nm band, which is an ideal choice for applications such as fluorescence imaging and two-photon polymerization.
Laser parameters |
|
Operating wavelength |
780±10 nm |
Pulse width |
<150 fs |
Repetition frequency |
80 MHz |
Average power |
>0.2 W< /p> |
Power stability |
<0.5 % RMS(24h@25℃) |
Polarization extinction ratio |
>20 dB |
Single pulse energy p> |
>2.5 nJ |
Output method |
Spatial collimation output |
Electrical, environmental and mechanical parameters |
|
Power supply voltage |
100-240 VAC |
Operating temperature |
15-35 ℃ |
Operating humidity |
20~80%(Non-condensing) |
Machine weight |
20 kg |
Appearance Size |
446×300×134 mm, 445×383×97 mm |
Cooling method |
< p align="center">Air cooling
|
The high-energy 780nm femtosecond fiber laser SCI-780-FS-HP is a newly launched "wavelength-flexible" femtosecond fiber laser. The product adopts an innovative resonant cavity design, which allows the central wavelength to be flexibly configured according to customer needs within a wide wavelength range. At the same time, the product integrates the "Smart-Lock" manufacturing process and diagnostic technology to ensure the long-term stability and reliability of the product.
The high-energy 780nm femtosecond fiber laser SCI-780-FS-HP can provide a pulse width of less than 150fs and an average power of 0.2W in the 780nm band, which is an ideal choice for applications such as fluorescence imaging and two-photon polymerization.
Technical advantages: ·High stability ·High pulse energy ·Reliable mode locking method ·Fully polarization-maintaining structural design |
Application areas: ·Harmonic imaging ·Two-photon polymerization ·Two-photon fluorescence imaging ·High-precision laser ranging |
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