Cryolipolysis has become a popular technology in professional body contouring because it uses controlled cooling to target localized areas of subcutaneous fat without surgery. However, the performance of a cryolipolysis system depends not only on its cooling temperature, but also on cooling coverage, temperature stability, applicator design, and treatment control. This 360° Cryolipolysis Machine combines surrounding cooling with dual-temperature technology, allowing cooling and heating to be incorporated into the same body contouring system. With multiple detachable probes, independent touchscreen controls, automatic cycling, and built-in temperature monitoring, it is designed to provide flexible treatment configurations for different facial and body areas.

1. 360° Surrounding Cooling Technology
1.1 More Uniform Cooling Coverage
Traditional applicators may primarily cool the tissue from selected contact surfaces. The 360° design takes a surrounding approach, covering the treatment area more completely to support more uniform temperature distribution.
The system provides cryolipolysis cooling from -10°C to 0°C, with the cooling level adjustable according to the treatment protocol and target area. Consistent temperature control is important when working across larger body regions because uneven cooling can affect treatment consistency.
1.2 Cooling for Localized Body Contouring
Controlled cooling is intended for localized areas where stubborn fat deposits are difficult to address through lifestyle management alone. Common treatment areas include the abdomen, waist, thighs, buttocks, arms, and back.
The purpose of the technology is localized body contouring rather than general weight management, making applicator selection and treatment-area positioning important parts of the treatment process.
2. Dual-Temperature Treatment: Cooling and Heating
One of the key differences of this system is its combination of cryolipolysis cooling and thermal wave heating.
2.1 Cryolipolysis Cooling
During the cooling stage, controlled low temperatures are applied to the targeted subcutaneous fat layer. Cryolipolysis is based on the different sensitivity of fat tissue and surrounding tissues to controlled cooling. The intended result is gradual reduction of targeted fat cells through the body's natural clearance processes.
The system can also provide a cooling sensation at the treatment area, while temperature monitoring helps maintain controlled operating conditions.
2.2 High-Frequency Thermal Wave Heating
The heating function operates at 2450MHz, with temperatures reaching up to approximately 45°C according to the selected settings.
Rather than relying only on cooling, the thermal function adds controlled heating to the treatment process. Heating can be incorporated into body care programs focused on tissue warmth, circulation, skin firmness, and overall body contour appearance.
The combination of hot and cold treatment modes gives professionals another way to configure treatment routines according to different aesthetic objectives.
3. Advanced Cooling System for Stable Operation
Cryolipolysis equipment needs to maintain stable operating temperatures during repeated treatments. This system combines air cooling, water cooling, and CET technology to support continuous heat management.
3.1 Three-Part Cooling Design
Using multiple cooling methods helps manage heat generated during operation and supports stable performance over extended working periods.
This is particularly useful for professional environments where several treatment sessions may be performed during the same working day.
3.2 No Applicator Swap During Operation
The system is designed to reduce the need for frequent applicator replacement during treatment. This simplifies the operating process and also reduces potential water-leakage concerns associated with repeatedly changing water-connected handpieces.

4. Six Probe Configurations for Different Body Areas
The machine uses detachable probes in different sizes and depths, allowing the applicator to be matched more closely to the treatment area.
4.1 Facial and Smaller Areas
The No.1 probe has a 3.0mm depth and an outer size of 8.0 × 3.5cm. It is designed for relatively smaller areas such as the cheeks, double chin, armpits, and forearms.
Its smaller contact area makes it more practical for areas where a large body applicator would be difficult to position accurately.
4.2 Abdomen, Waist, Back, Thighs and Buttocks
The No.2 and No.3 probes both provide a 7.5mm depth and are designed for larger areas including the back, waist, abdomen, thighs, and buttocks.
The No.5 probe, with a 5.5mm depth, provides another option for similar body areas.
4.3 Deeper Body Areas
The No.4 probe provides a 9.5mm depth and a larger 22 × 8.5cm external size. It is intended for areas such as the back, waist, abdomen, thighs, and buttocks where deeper body contouring applications may be required.
An optional No.6 probe also provides a 9.5mm depth with a larger square treatment area. It is designed for areas including the thighs, buttocks, and sides.
The range of probe sizes allows professionals to consider both tissue depth and treatment-area dimensions when selecting an applicator.
5. Intelligent Touchscreen Control
The system uses a 15.6-inch HD touchscreen on the main unit, while each handpiece has an independent 4.3-inch IPS capacitive touchscreen.
5.1 Real-Time Parameter Adjustment
The independent handpiece screen allows operators to adjust and monitor parameters directly from the applicator. This can make treatment operation more convenient because the professional does not need to return to the main console for every adjustment.
5.2 Automatic Cycling Mode
The automatic cycling function supports customizable multi-stage treatment programs. Parameters such as cycle steps, duration, temperature, and negative pressure can be configured according to the selected treatment protocol.
This is particularly useful for professionals who want more consistent treatment sequences across different sessions.
6. Safety and Ergonomic Design
Safety and handling are important considerations for any system using controlled heating and cooling.
The machine incorporates a real-time temperature sensor to monitor operating conditions and help reduce the risk of excessive heating or cooling. It also features both a key switch and emergency stop button, providing additional control during operation.
The handpiece uses a food-grade silicone exterior combined with a one-piece cast aluminum internal structure. The silicone provides a softer contact surface, while the aluminum structure is designed for durability.
An aviation-grade 810-standard locking plug-and-play connector provides a secure connection between the handpiece and main system.

7. Applications in Professional Body Contouring
The combination of cooling, heating, and multiple probe configurations allows the machine to support several aesthetic applications.
7.1 Localized Fat Reduction
Cryolipolysis cooling can be incorporated into localized body contouring programs for areas such as the abdomen, waist, thighs, arms, back, and buttocks.
7.2 Skin Firmness and Body Appearance
The heating function can complement cooling-based body care by providing controlled thermal stimulation. It can be incorporated into programs focused on improving the appearance of loose or less firm skin following body contouring.
7.3 Cellulite and Edema-Focused Care
Heating and controlled massage-related functions can also be incorporated into body care programs targeting the appearance of uneven skin texture and localized swelling. Treatment parameters should be selected according to the area, tissue condition, and professional operating protocol.
8. Why This 360° Cryolipolysis System Stands Out
The system brings several practical features together in one platform: 360° surrounding cooling, dual-temperature operation, multiple probe sizes, independent handpiece screens, automatic cycling, and real-time temperature monitoring.
Instead of relying on cooling alone, it provides both cooling and heating functions. Instead of using one universal applicator, it offers different probe configurations for smaller facial areas and larger body regions. This combination gives professionals greater flexibility when building treatment programs for different body contours.
Conclusion
The 360° Cryolipolysis Machine combines surrounding cryolipolysis cooling, high-frequency thermal wave heating, multi-probe coverage, and intelligent treatment control in a professional body contouring system. Its -10°C to 0°C cooling range, heating function up to approximately 45°C, multiple probe depths, and dual touchscreen design provide flexibility across facial and body applications. With automatic cycling, temperature monitoring, emergency protection, and a stable multi-stage cooling system, the machine is designed for professional environments that need a versatile approach to localized body contouring and skin care.