Sale – ITS Stardust Med Hair Removal
Stardust Med PRODUCT SPECIFICATIONS :
Light Source: Diode (Pulsed & Continuous Wave)
Wavelength: 755, 808, 1064 nm
Energy Density: 1-60 J/cm2
Pulse Frequency: 1-10 Hz
Pulse Duration: 10 – 300 ms
Power Consumption: 1400 watts
Class (IEC 60601-1): II BF
Laser Class: 4
Weight: 18 Kg
Dimensions: 500 mm x 480 mm x 330 mm
Display: 10.4″ LCD Touch Screen
808nm Handpiece
Laser Type: Diode
Wavelength: 808 nm
Spot Size: 10mm x 10mm
Power: 800 W
DNRO: 3,09m
Beam Divergence: 53 degrees
Cooling Mode: Sapphire Contact Cooling
Multi-Wavelength Handpiece
Laser Type: Diode
Wavelength: 755 nm, 808nm, 1064 nm
Spot Size: 10 mm x 10 mm
Power: 800 W
DNRO: 3,09m
Beam Divergence: 53 degrees
Cooling Mode: Sapphire Contact Cooling
Sale – ITS Stardust Med Hair Removal
Extraordinary technology at device’s core
With the new Stardust Med we use the principle of Selective Accumulative Photothermolysis, thanks to which the energy of the laser beam only selectively hits the targeted part of tissue due to the different absorption of light at different wavelengths, respecting the Thermal Relaxation Time (TRT) of skin.
Once selectively hit the target, only the latest technology can propagate the right amount of energy for an adequate time. In this way, the laser beam is solely absorbed by the hair bulb, which is damaged through continuous heat accumulation, compromising the enzymatic exchange with the germination papilla and therefore the life cycle of hair.
The core of Stardust Med’s exclusive technology is a PC embedded with a latest-generation processor that constantly monitors all the operating parameters and the emission of the laser beam from the diode with extreme precision, adapting them in real time based on specific requirements.
While the device is in action, it analyses – a billion times per second – parameters such as temperature, power, pulse duration and edits them immediately while the treatment is being performed, in full autonomy, to obtain the best result on each specific patient.
Once selectively hit the target, only the latest technology can propagate the right amount of energy for an adequate time. In this way, the laser beam is solely absorbed by the hair bulb, which is damaged through continuous heat accumulation, compromising the enzymatic exchange with the germination papilla and therefore the life cycle of hair.














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