
3-Person Pine Wood Infrared Sauna Cabin with IR-A Radiation & Ionization System
A three-person infrared sauna cabin constructed from pine wood, designed as an alternative to traditional steam saunas. Unlike conventional saunas that heat the surrounding air, this cabin uses infrared radiation to warm the body directly, allowing operation at significantly lower cabin temperatures (45°C–60°C) compared to traditional saunas (60°C–110°C). The lower ambient temperature and humidity reduce respiratory discomfort during sessions.
Dimensions
1500 × 1100 × 1900 mm / 59.07″ × 43.32″ × 75″
Material
Pine wood construction
Technology
Infrared Radiation (IR-A)
The cabin emits IR-A waves in the 780–1400 nm wavelength range, which penetrate the skin up to approximately 2 inches (5 cm) deep. Because infrared radiation heats the body directly rather than the surrounding air, the body begins to perspire at lower ambient temperatures than in a traditional sauna. This results in a higher perspiration volume — studies indicate up to 250% more fluid loss compared to conventional sauna sessions. IR-A radiation also accelerates local microcirculation and reduces skeletal muscle tension.
Ionization System
The built-in ionizer emits negative ions that alter the electrical charge of airborne particles — including dust, pollen, and bacteria — causing them to precipitate out of the cabin air. This reduces airborne particulate concentration within the cabin environment.
Key Features
- 3-person capacity
- Pine wood construction
- IR-A wavelength range: 780–1400 nm
- Skin penetration depth: up to ~2 inches (5 cm)
- Operating temperature: 45°C–60°C (vs. 60°C–110°C for traditional saunas)
- Up to 250% greater perspiration volume vs. traditional sauna
- Estimated energy expenditure: up to 900 kcal per 30-minute session
- Built-in ionizer for airborne particle reduction
- Low-humidity cabin environment
Session Effects
- Deep skin warming via IR-A penetration
- Elevated perspiration and fluid loss during session
- Skeletal muscle tension reduction
- Local microcirculation acceleration in treated tissue
- Airborne particulate reduction via ionization system
- Skin surface warming and post-session relaxation



















