Used EO TECHNICS SFL 263 #9362825 for sale

EO TECHNICS SFL 263
Manufacturer
EO TECHNICS
Model
SFL 263
ID: 9362825
Vintage: 2012
Laser marking systems 2012 vintage.
EO TECHNICS SFL 263 is a specialized laser designed to meet the needs of high-precision measurement systems. It is a diode-pumped solid state laser featuring a narrow longitudinal mode (spectral width of less than 0.004 cm-1) and single transverse mode. It features a low divergence angle of less than 1.3 mrad, making it ideal for laser precision measurement. The laser is equipped with a micro diode stabilized intracavity frequency-locking system, which enables the laser output to remain stable over a wide range of environmental conditions and output powers. This feature makes SFL 263 an excellent choice for applications requiring a high degree of accuracy and precision. EO TECHNICS SFL 263 is capable of producing a maximum output power up to 200mW, with the pulse frequency up to 25 kHz. It offers excellent beam quality with a peak power spectrum of 2.5 W/cm-2, and a wavelength of 5.988nm in the yellow-green spectral range. Additionally, this model is equipped with external modulation capabilities for optical signal processing, and its compact size makes it ideal for integration with other laser systems. SFL 263 is an efficient and reliable laser, designed to provide a high optical output for a wide range of measurement and sensing applications. Its stabilized frequency-locking system ensures that the wavelength of the laser is maintained even when subjected to external perturbations. The laser can also be externally modulated for dynamic imaging applications. Furthermore, its high-quality beam and low divergence angle make it particularly suitable for target spotting and focusing systems, and its compact size allows it to be conveniently incorporated into optical systems or laser traces. In conclusion, EO TECHNICS SFL 263 is an ideal laser for precision measurement, imaging, and other similar applications that require a stable and reliable laser source. Its frequency-locking system and high output power make it an excellent choice for applications in which accurate results, and high-quality imaging are paramount.
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