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目前显示的是 三月, 2022的博文

Crylink's 1500 laser for Medical Applications

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  Theory Gain medium Er: Yb Glass It's used to make a 1500nm laser. The Er is a three-level structure with a low pump radiation absorption rate and low output energy. It is the safest for the human eye and penetrates well in smoke since it produces a laser with a wavelength of 1500nm. It has a wide range of uses in both military and civilian settings. Q-Switch Crystal - Co: Spinel It's used to make a 1500nm laser. The Er is a three-level structure with a low pump radiation absorption rate and low output energy. It is the safest for the human eye and penetrates well in smoke since it sends a laser with a wavelength of 1500nm. It has a lot of uses in both military and civilian settings. Feature Can be strongly absorbed by water High reliability and low cost Simple structure In the communication window In the human eye safety band Application Treating Acne Scars The Treatment Of Melasma The Treatment Of Inflammatory Facial Acne What are the advantages of 1500nm lasers for medical

Crylink's 1300nm laser for medical applications is described in detail.

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Because the water molecules in the 1300nm band are substantially absorbed, 1300nm lasers offer a wide variety of uses in clinical medical hemostasis, laser cosmetic, skin disease therapy, and dentistry treatment. The Nd:YAP laser crystal has a wavelength of 1300 nm. 1300nm Laser (Nd:YAP) Laser Crystal - Nd:YAP The transition cross section of the Nd:YAP crystal is enormous, and it has a high photomechanical coefficient, thermal conductivity, and polarization output. For high-power 1300nm lasers, the Nd:YAP crystal offers clear benefits. Long crystal rods constructed of long-term storage by rounding, cutting, polishing, and coating are utilized in the structure drawing. The holographic mirror M1 and the associated output mirror M2 make up the laser cavity. The frequency modulation range of the BBO crystal is 189-3500nm, and it is constantly changeable. In Nd:YAP lasers, BBO crystal is commonly employed. Feature Great optomechanical coefficient Large transition section High thermal condu