Recently, a 40LPM oxygen concentrator, the JAY-40-4.0, designed specifically for high-altitude areas and activity centers, has drawn significant attention. This oxygen concentrator is part of the dispersion-type oxygen generator series.
It adopts the advanced PSA (Pressure Swing Adsorption) technology. This technology enables the concentrator to efficiently separate oxygen from nitrogen and other gases in the air. By using PSA, the JAY{{0}}.0 can work with high efficiency, ensuring a stable supply of oxygen.
The JAY{{0}}.0 oxygen concentrator is manufactured with high-standard materials. These include oil-free compressors, which operate smoothly without the risk of oil contamination. Medical molecular sieves are used to precisely filter and separate oxygen molecules. Medical-grade silicone tubes are applied to ensure safe and stable oxygen delivery.
Under normal temperature conditions, once the power is connected, the JAY{{0}}.0 can continuously separate oxygen that meets medical standards from the air. Its oxygen generation process uses a pure physical method. This means there are no chemical reactions involved, resulting in stable oxygen output. This pure physical method ensures safety and reliability. Additionally, the JAY-40-4.0 features a low cost, making it an affordable option for various applications. It also has an adjustable flow rate, allowing users to customize the oxygen supply according to their specific needs.
The key components of this oxygen concentrator are designed with anti-fatigue and anti-aging features. These design elements greatly enhance the durability of the equipment. With such a design, the JAY-40-4.0 can withstand long-term use and maintain its performance over time.
This oxygen concentrator uses air as its raw material. By leveraging the molecular sieve pressure swing adsorption technology, it can produce high-purity oxygen. The oxygen concentration ranges from 90% to 96% (V/V), with the standard being 93% oxygen. This high-purity oxygen can fully meet the special oxygen needs of people in high-altitude areas, where the oxygen content in the air is relatively low.