Use FAC Technology To Get 99% Energy Transfer Efficiency
4 Wavelengths Integration: 755nm + 808nm + 1064nm + 940NM, FHR/HR/SR all-in-one for comprehensive face and body treatment.
Medical-Grade Spot Sizes: Versatile application options including 6*6mm, 12*12mm, 12*24mm, and 12*36mm configurations.
Premium Laser Component: Equipped with a high-performance USA Coherent imported laser device.
High Output Power: Multi-power configurations available at 1200W, 2000W, or 3000W for optimized clinical efficacy.
SIFHR® Technology: Advanced 20Hz frequency delivering the least painful hair removal experience.
Advanced Multi-Cooling: Wind + Water + Compressor + Sapphire + Semiconductor + ICE + TEC cooling system to ensure 24h work time without downtime.
| Brand | AresLite® |
| Technology | Non-crystal Diode Laser Hair Removal Technology |
| Wavelength | 755nm + 808nm + 1064nm + 940NM |
| Laser Device | USA Coherent imported laser device |
| Laser Device Energy | 600W / 1200W / 2000W / 3000W (Optional) |
| Touch Screen | 4K 15.6 inch color touch screen |
| Cooling System | Wind + Water + Semiconductor Software |
| Advantage | IP65 safe level waterproof to protect laser bars |
Ideal for the widest range of hair types and colors. The wavelength offers more powerful energy absorption by the melanin chromophore, making it ideal for the widest range of hair types and color—especially light-colored and thin hair. With superficial penetration, the 755nm wavelength targets the Bulge of the hair follicle and is especially effective for superficially embedded hair in areas such as the eyebrows and upper lip.
Provides half the treatment time. The classic wavelength in laser hair removal, the 808nm wavelength, offers deep penetration of the hair follicle with high average power, a high repetition rate, and a large spot size for fast treatment. The 808nm laser has a moderate melanin absorption level, making it safe for darker skin types. Its deep penetration capabilities target the Bulge and Bulb of the hair follicle, while moderate tissue depth penetration makes it ideal for treating the arms, legs, cheeks, and beard.
Specialized for darker skin types. The Yag 1064 wavelength is characterized by lower melanin absorption, making it a focused solution for darker skin types. At the same time, the 1064nm offers the deepest penetration of the hair follicle, allowing it to target the Bulb and Papilla, as well as treat deeply embedded hair in areas such as the scalp, armpits, and pubic areas. With higher water absorption generating a higher temperature, the incorporation of the 1064nm wavelength increases the thermal profile of the overall laser treatment for the most effective hair removal.
In addition, the 940nm is used to remove red bloodshot lesions on the skin and enhance the overall skin rejuvenation effect.
A: By combining 755nm, 808nm, 940nm, and 1064nm, the machine targets different depths of the hair follicle. This makes the treatment highly effective and safe across all skin types (Fitzpatrick I-VI) and hair textures, ranging from fine light hair to thick, deeply embedded hair.
A: The system combines Wind, Water, Sapphire contact cooling, and TEC cooling technologies. This keeps the handpiece tip at a consistently sub-zero temperature, numbing the treatment area and dramatically reducing epidermal pain during high-energy output.
A: Fast Axis Collimator (FAC) technology concentrates the laser light output, achieving a 99% energy transmission efficiency. This ensures maximum density of energy reaches the targeted follicle structures without scattering, improving treatment speed and results.
A: Yes. The inclusion of the 1064nm wavelength features lower melanin absorption and deeper penetration. This ensures that energy is safely delivered directly to the hair papilla rather than being absorbed by dark epidermal pigment, preventing burns.
A: Absolutely. Thanks to the advanced integrated cooling system with compressor-level heat dissipation and software monitoring, the device can operate continuously for 24 hours without thermal shut-offs or performance degradation.