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BodyLight RF Turbo | Non-Aspirating RFAL Body Contouring Handpiece | STERN Laser

InMode · Non-Aspirating RFAL Body Contouring Handpiece

RFAL

BodyLight RF Turbo

InMode's non-aspirating RFAL handpiece for body contouring. BodyLight RF Turbo delivers controlled deep, sustained RF heating for immediate skin contraction across larger body volumes — without liposuction aspiration — making it suitable for patients seeking significant tissue tightening with a less invasive approach and minimal downtime.

Non-Aspirating RFALDeep RF tissue heating without liposuction — less invasive than aspirating BodyTite
Large Volume TreatmentDesigned for larger body zones requiring sustained deep heating
Immediate Skin ContractionVisible tissue tightening from a single treatment session
Minimal DowntimeFaster recovery than aspirating RFAL procedures
Clinically proven
SA distributor support
Training included

Areas Treated

Abdomen
Deep sustained RF heating for skin contraction and tissue remodelling across the full abdominal zone without fat aspiration.
Flanks & Back
Circumferential body contouring of the flank and back regions for skin tightening and subdermal remodelling.
Arms
Upper arm skin laxity treatment for patients seeking significant improvement without excisional surgery.
Thighs
Inner and outer thigh tissue contraction for patients with skin laxity who are not candidates for thighplasty.
Knees & Lower Legs
Targeted subdermal heating of the knee area and lower leg for skin tightening in smaller volumes.

Treatment Parameters

BodyLight RF Turbo parameters are guided by tissue volume and skin endpoint. As a non-aspirating device, energy delivery is titrated by temperature monitoring and visible contraction endpoint rather than aspiration volume.

Body AreaModeEnergyPassesNotes
AbdomenRFAL Non-aspiratingMedium–High1Temperature endpoint; monitor for uniform contraction
FlanksRFAL Non-aspiratingMedium–High1Continuous motion; avoid repeated passes on same site
ArmsRFAL Non-aspiratingMedium1Reduce near bony areas; monitor closely
ThighsRFAL Non-aspiratingMedium–High1Deeper tissue; sustained heating for contraction endpoint

Contact your STERN Laser clinical trainer for full treatment protocols, patient-specific energy titration, and combination scheduling with other IgniteRF handpieces.

Technical Specifications

Core technical parameters for the BodyLight RF Turbo handpiece. Contact your STERN Laser representative for full clinical and safety documentation.

Handpiece TypeNon-aspirating RFAL — large body areas
IndicationSoft tissue contraction, skin tightening — body
Treatment ZonesAbdomen, flanks, arms, thighs, back, knees
Safety SystemsReal-time temperature and impedance monitoring, automatic cut-off
DowntimeTypically less than aspirating RFAL — 3–7 days
Intended UsersPlastic surgeons, cosmetic physicians
Compatible WorkstationsIgniteRF

FAQs

Common questions about BodyLight RF Turbo. Contact STERN Laser for clinical guidance specific to your practice.

BodyTite IgniteRF is an aspirating RFAL device — it combines RF energy with liposuction to remove fat while simultaneously tightening skin. BodyLight RF Turbo is non-aspirating, meaning it delivers RF heating for tissue contraction without fat removal. BodyLight RF Turbo is appropriate for patients whose primary concern is skin laxity rather than fat volume, and who prefer a less invasive approach with faster recovery.
Recovery from BodyLight RF Turbo is typically faster than aspirating RFAL procedures. Patients can expect bruising and swelling for 5–10 days, with most returning to normal activities within a week. Compression garments may be recommended post-procedure.
Yes. STERN Laser provides clinical training on BodyLight RF Turbo as part of the IgniteRF platform, covering technique, patient selection, energy protocols, and combination treatment planning with other IgniteRF handpieces.

Compatible Workstation

BodyLight RF Turbo is compatible with the IgniteRF workstation — InMode's most advanced minimally invasive RF platform, supporting nine interchangeable handpiece technologies across RFAL, Fractional RF, and QuantumRF modalities.