MGL-F-577 is a 577 nm CW laser. Used for applications such as fluorescence sensors, raman spectroscopy, laser printing, holography. Laser. Key specifications: output / average power 500~600 mW, operating mode CW, polarization ratio >100:1, Horizontal (Vertical optional). View specifications, datasheet and enquiry options from Precisometer.
DC-1kHz, 1kHz-10kHz, 10kHz-30kHz optional; TTL and Analog optional
Power supply (100-240VAC)
PSU-H-FDA/PSU-H-LED/PSU-SR
Expected lifetime (hours)
>10000
Wavelength (nm)
577±2
Pointing stability (μrad) (over 2 hours after warm-up and ±3°C)
<50
Beam height from base plate (mm)
45
Application context
Why this design is used
Applications named on this model’s datasheet, expanded with the model’s optical specifications.
Applications such as fluorescence sensors
MGL-F-577: 577 nm emission can be matched to the absorption or excitation band used in Applications such as fluorescence sensors. The stated stability or noise figure (<50) helps keep measured intensity changes attributable to the sample rather than source drift.
Raman spectroscopy
MGL-F-577: 577 nm emission sets the excitation and detector-band choice for Raman spectroscopy; linewidth and wavelength stability determine how cleanly weak spectral features can be separated from the laser line.
Laser printing
MGL-F-577: 577 nm emission determines compatible optics, coatings and detectors for Laser printing. Beam quality, divergence and pointing stability should be checked against the experiment geometry.
Holography
MGL-F-577: 577 nm emission determines compatible optics, coatings and detectors for Holography. Beam quality, divergence and pointing stability should be checked against the experiment geometry.
System integration
Integration and compatibility
Use these checks to connect MGL-F-577 to the surrounding optical, mechanical and control system. Every value shown is taken from this model's own specification record.
Thermal management
Operating temperature (°C): 10-35
Provide the stated cooling method and keep the laser-head base thermally coupled; temperature drift moves wavelength, output power and beam pointing.
Size the downstream optics from the stated beam diameter and divergence rather than from the aperture of the housing, and confirm the polarisation state before specifying isolators or polarising optics.
Technical FAQ
Integration questions for MGL-F-577
What cooling does the MGL-F-577 require?+
Operating temperature (°C): 10-35. Provide the stated cooling method and keep the laser-head base thermally coupled; temperature drift moves wavelength, output power and beam pointing.
What beam does the MGL-F-577 deliver?+
Polarization ratio: >100:1, Horizontal (Vertical optional). Size the downstream optics from the stated beam diameter and divergence rather than from the aperture of the housing, and confirm the polarisation state before specifying isolators or polarising optics.
Need this configured?
Share wavelength, operating mode, output power or pulse energy, linewidth or pulse width, delivery, control, and safety requirements and we will qualify the matching configuration and lead time.
Compare MGL-F-577 with the closest available models in the CW Lasers family. Confirm option-dependent values on the final configuration before ordering.