Customization: | Available |
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Type: | Laser Beauty Equipment |
Theory: | Laser |
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Theory:
A 10600nm CO2 fractional laser functions by emitting a laser beam at a wavelength of 10600 nanometers using carbon
dioxide (CO2) as the medium. This type of laser is designed for various medical and cosmetic procedures, primarily
targeting skin resurfacing and vaginal treatments. Here's how the process generally works:
Laser Generation: The laser machine contains a gas mixture primarily composed of carbon dioxide. When an electrical
current passes through this gas mixture, it excites the CO2 molecules, causing them to release energy in the form of light
at a specific wavelength, in this case, 10600nm.
Fractional Technology: The "fractional" aspect of the laser refers to its ability to divide the laser beam into thousands of
smaller, closely spaced beams. This fractionated pattern allows the laser to target only a fraction of the skin's surface or
vaginal tissue during each treatment, leaving surrounding areas untouched. This technique promotes faster healing and
reduced downtime compared to fully ablative laser treatments that remove the entire surface layer.
Targeting Tissue: When the laser beam reaches the targeted tissue, it interacts with the water molecules present in the
tissue. The energy is absorbed by the water, causing it to heat up rapidly.
Thermal Effects: The rapid heating of the tissue leads to controlled thermal damage to the microscopic areas treated by
the laser. This stimulates the body's natural healing response, triggering the production of new collagen and promoting
tissue remodeling.
Collagen Production: Collagen is a protein responsible for the skin's firmness and elasticity. The controlled thermal
damage prompts fibroblast cells in the skin to produce more collagen, which gradually improves skin texture, tone, and tightness.
Technical Specification
Working mode |
Single pulse, continuous pulse, repeated pulse |
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Output power |
60w (adjustable) |
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Input power |
450VA |
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Laser type |
Sealed-off CO2 laser tube/ RF laser tube |
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Laser wavelength |
10.6μm |
|
Scan Pattern |
triangle/square/rectangle/diamond /line/round |
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Beam divergence angle |
4mrad |
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Focused spot diameter |
≤0.4mm |
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Pulse width |
0.02-0.99s |
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Aiming beam |
infrared ray (650nm, 2mw) |
|
Beam Delivery |
7 joint-articulated arms |
|
Cooling system |
Inside-circle coolant |
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Display screen |
True color touch LCD screen |
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Operation system |
Microcomputer control |
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Humidity |
<80% |
|
Air pressure |
86KPA-106 KPA |
|
Input voltage |
AC220V±10%, 50Hz |
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Preheating-time |
>5min |
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Electromagnet |
No electromagnet interrupt |
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Other working environment |
No obvious shaking or airflow |