2016 InMode Tower with Diolaze diode laser and Fractora handpieces

2016 INMODE Diode and Fractora Laser - Sale !!

$7,650.00

2016 InMode Tower with Diolaze and Fractora Handpieces

This 2016 InMode Tower pairs two complementary handpieces — Diolaze diode laser and Fractora fractional RF microneedling — on a single platform, giving clinics both a hair removal solution and a non-surgical skin resurfacing tool without investing in separate systems.

The Diolaze handpiece is an 810 nm diode laser built for fast, large-area hair reduction. Its extended spot size and high peak power allow it to clear larger treatment zones per pulse than smaller diode systems, while built-in contact cooling keeps sessions comfortable across a broad range of skin types, including coarser, more stubborn hair.

The Fractora handpiece delivers fractional radiofrequency energy through interchangeable pin tips, reaching full-thickness dermal or subdermal depths. Treatment depth, density, and energy can be adjusted per session, making it suitable for photodamage, textural irregularities, acne scarring, and general skin tightening — all with minimal downtime compared to ablative laser resurfacing.

As a 2016-generation unit, this InMode Tower is a cost-effective entry point for clinics that want proven Diolaze and Fractora technology without the price of a current-generation Optimas configuration.

This is frequently paired with Apilux SmartPur IPL II and Apilus Cleo Blend Electrolysis Machines | Medical Zenith for a more complete setup.

Platform
InMode Tower (2016 generation)
Included Handpieces
Diolaze (diode laser)
Fractora
Diolaze – Laser Type
Diode
Diolaze – Wavelength
810 nm
Diolaze – Spot Size
10 x 28 mm (large-area coverage)
Diolaze – Cooling
Built-in contact cooling
Diolaze – Indication
Permanent hair reduction
all skin types
Fractora – Pin Configuration
24-pin (6x4)
interchangeable tips
Fractora – Pin Length
3000 microns
Fractora – Ablation Depth
Up to 3 mm+
Fractora – Heating Depth
3–5 mm
Fractora – Output Frequency
1 MHz
Fractora – Clinical Use
Photodamage
texture
acne scarring
skin tightening
Year
2016