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Q-switched Nd:YAG Laser Machine for Professional Tattoo Sunspot Age spots Melasma Removal
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Project E Beauty

  • $2,125.99 USD


Item: Q-switched Nd:YAG Laser Machine for Professional Tattoo Sunspot Age spots Melasma Removal
Item ID: PE445
Colour: White
Voltage: 110 or 220V
Wavelength: 532nm, 1064nm
Energy: <100mj , <200mj
Pulse width: 10-20ns
Frequency: 1-5Hz
Spot diameter: 1-5mm
Power: 50-60Hz
Package: 50 X 50 X 44 cm
Weight: 13kg
Treatment Area: Facial, Body

Included:
1. Main Unit X 1
2. Handpiece X 1
3. Power Supply Cord X 1

Application:
Tattoos (black, red, brown, blue, etc.
Pigmented lesions: Sunspot, Ota's nevus, Melasma, Age spots, CALMS, Nevus, Nevus zygomaticusetc.
Laser facial: Skin rejuvenation and resurfacing, fine wrinkles and expression lines removal, pigmentations reduction such as sunspots and freckles, firms up skin tone.

Laser Physics
LASER is an acronym the represents Light Amplification by the Stimulated Emission of Radiation. Lasers emit monochromatic (single color/wavelength) light through a process called stimulated emission in a narrow beam or series of pulses.

For this process, a bright, quickly-flashing light source called a flashlamp is used to excite atoms in a crystal Nd:YAG laser rod. When the atoms of the crystal receive energy, they emit photons that travel at a specific wavelength. Optics and mechanisms, such as the reflective mirror and output coupler, focus the photons into a laser beam. The laser beam carries energy to the skin, and is selectively absorbed by tattoo ink particles.
The energy of Q-switched ND: YAG laser can be absorbed by the blue and black melanin. The melanin will be fragmented so small that they can be metabolized by the lymphatic system or egested out of body. Thus the tattoo or other pigmentations will be removed without damage to the normal tissue. The treatment is safe and convenient without downtime and side effects.

Wavelengths for Tattoo Removal
Tattoo removal lasers produce specific wavelengths of light that have been proven to be absorbed by certain colors of tattoo ink while avoiding damage to surrounding skin tissue and chromophores (such as melanin and hemoglobin). When the laser energy is applied for the right length of time, at the right level of energy, and in the proper wavelength, the tattoo ink is selectively targeted.

Each wavelength corresponds to a certain range of tattoo ink colors, which why different types of tattoo removal lasers are available. The most popular wavelengths used for tattoo removal are 1064nm and 532nm, which can both be achieved with a Q-switched Nd:YAG laser.


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