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        HOME >PRODUCT DISPLAY >PRODUCT DETAIL
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        Diffusion Bonded Crystal
            Diffusion Bonded Crystals consist of one laser crystal and one or two undoped material. They are combined by optical contact method and further bonded under high temperature. Diffusion Bonded Crystals can decrease thermal lensing effect considerably, therefore is very suitable for high power laser applications.
        • DETAIL
        • STANDARD PRODUCT
        • BASIC PROPERTIES
        • Applications:

               ● Industrial Laser

               ● Medical Laser

               ● Mainly for High pwer laser systems

           

          CRYSTIK‘s bonding crystal is featured by:

               To improve and enhance the thermal performance.

               ● Lower end face of the thermal lens effect.

               ● Increase the output power of the laser crystal.

        • Material

           Doping

          concentration 

          Aperture

          (mm2)

          Length of laser crystal

          (mm)


          YVO4+Nd:YVO4+YVO4  

          0.1-3%

          2×2-10×10

          1-20


          YVO4+Nd:YVO4+YVO4

          0.1-3%

          Φ2-10

          3-20


          YAG+Nd:YAG+YAG

          0.5-1.1%

          2×2-10×10

          1-30


          YAG+Nd:YAG+YAG

          0.5-1.1%

          Φ2-10

          3-30


          Type

          YVO4+Nd:YVO4,YVO4+Nd:YVO4+YVO4

          YAG+Nd:YAG, YAG+Nd:YAG+YAG

          Nd:YAG+Cr:YAG

          Size&tolerance

          W(+/-0.1)*H(+/-0.1)*L(+0.5/-0.1)mm

          Parallelism

          ≤10″

          Tolerance of orientation

          +/-0.25°

          TWD

          [email protected]

          Surface quality

          20/10

          Bevel

          ≤0.2mmx45

          Perpendicular

          ≤10’

          Chips

          ≤0.1mm

          Flatness

          [email protected]

          CA

          ≥90%

          Coating

          C1--- [email protected](R<0.2%)&808(R<0.5%)

          Damage threshold

          500MW/cm2 10ns 10Hz at 1064nm

        • NO TIME
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