| Product Name | Hyperbaric Oxygen Chamber |
| Pressure | 2.0ATA (Customizable) |
| Material | Carbon Fiber Reinforced Plastics |
| Size | 2200*1630*2000mm |
| Weight | 930KG |
| Host Equipment | Equipment Cabinet (Metal) |
| Cabinet Size | 560*1010*1280mm |
| Cabinet Weight | 150KG |
| Oxygen Flow | 0-10 Liter/min (Adjustable) |
| Air Flow | 20-100 Liter/min (Adjustable) |
| Oxygen Concentration | 95±3% |
| Power Consumption | 4000W |
| Supply Voltage | 220V/50Hz (Customizable) |
| Noise Level | Within 60db |
Individuals experiencing chronic stress, prolonged overwork, accumulated fatigue, or suboptimal health due to physical/mental exhaustion.
Individuals with post-alcohol discomfort (e.g., headache, nausea).
Those focused on skincare, anti-aging, and fitness to maintain a refined lifestyle.
Individuals with anxiety, poor sleep, or memory decline.
Individuals with declining cardiopulmonary function or symptoms like dizziness and chest tightness.
Those experiencing hypoxia or muscle soreness from inadequate post-exercise recovery.



The 2019 Nobel Prize in Physical or Medicine revealed that cells are sensitive to the oxygen content of their environment. Under hypoxic conditions, the increase of hypoxia-inducible factors (HIFs) leads to changes in over 300 genes, prompting metabolic shifts. Long-term hypoxia accelerates aging and increases disease risk.
Bound oxygen: Hemoglobin in red blood cells combined with oxygen. Arterial oxygen saturation is typically 95~98%.
Dissolved oxygen: Oxygen dissolved directly in plasma. This amount is proportional to environmental pressure. Narrow capillaries often rely on dissolved oxygen when red blood cells cannot pass.
Summary: Oxygen supply can be improved by increasing atmospheric pressure and oxygen concentration, effectively enhancing delivery to tissues and organs.
Standard oxygen generators do not significantly change dissolved oxygen in the blood. The Hyperbaric Oxygen Chamber adjusts pressure to safely increase dissolved oxygen, improving delivery to narrow capillaries where bound oxygen cannot reach.




