Multifunctional laser therapeutic machine
A laser treatment and multi-functional technology, applied in the direction of treatment, lasers, laser parts, etc., can solve the problem of single output mode
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example 1
[0022] Example 1. Using Nd:GdVO 4 Laser crystal, side pumped by 808nm LD, the first reflector is coated with 1.342 micron total reflection and 1.064 micron anti-reflection coating, the first output coupling mirror is coated with 1.342 micron partial transmission and 1.064 micron anti-reflection coating, The first acousto-optic Q switch is coated with an anti-reflection film for both 1.342 and 1.064 microns; the second mirror is coated with a fully-reflective film for 1.064 microns, and the second output coupling mirror is coated with a partial transmission for 1.064 microns and an anti-reflection film for 1.342 microns film; the second acousto-optic Q switch is coated with a 1.064 micron anti-reflection film. According to the control method shown in Figure 2, six types of laser output, 1.064 micron and 1.342 micron single-wavelength continuous, Q-switched, dual-wavelength quasi-continuous and Q-switched, can be output through the optical fiber for treatment.
example 2
[0023] Example 2. Using Nd:YAG laser crystal, side pumped by 808nm LD, the first reflector is coated with 1.319 micron total reflection and 1.064 micron anti-reflection film, and the first output coupling mirror is coated with 1.319 micron partial transmission and opposite 1.064 micron anti-reflection film, the first acousto-optic Q switch is coated with anti-reflection film for both 1.319 and 1.064 micron; the second mirror is coated with 1.064 micron full reflection film, and the second output coupling mirror is coated with 1.064 micron partial transmission , 1.319 micron anti-reflection film; the second acousto-optic Q switch is coated with 1.064 micron anti-reflection film. According to the control method shown in Figure 2, six types of laser output, 1.064 micron and 1.319 micron single-wavelength continuous, Q-switched, dual-wavelength quasi-continuous and Q-switched, can be output through the optical fiber for treatment.
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