NEWTEK Medical on-site oxygen generation
Free first year warranty
Free on-site installation training
Free data commissioning
Free one-stop service
Advantages of Medical on-site oxygen generation
Compared with traditional medical oxygen acquisition methods
Low noise
The noise level is controlled below 35-45 decibels, which will not interfere with people's emotions, hearing or work status.
Safe oxygen production
PSA oxygen production technology is used to separate oxygen from the air by physical means. The whole process does not involve chemical reactions or dangerous operations such as high temperature and high pressure.


Complicated and inefficient
The assembly of oxygen pressure reducing valves and humidification bottles takes a long time and the installation is noisy.
High risk
High-pressure containers are prone to leakage or explosion.
Why choose NEWTEK Medical on-site oxygen generation?
Choose the plan that suits you best.
40
+
Years of experience
100
%
Cooperation praise
500
+
Public welfare activities
2000
+
completed projects
Models |
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Models |
Capacity (Nm3/hr) |
Purity |
Power consumption of 1Nm3 oxygen produced (kw/h) |
Number of bottles filled in 12 hours (pcs) |
Operator needed |
| NTK-5P | 5 | 93%+-3% | 3.54 | 10 | 2 |
| NTK-10P | 10 | 93%+-3% | 2.52 | 20 | 2 |
| NTK-15P | 15 | 93%+-3% | 2.31 | 30 | 2 |
| NTK-20P | 20 | 93%+-3% | 2.13 | 40 | 2 |
| NTK-25P | 25 | 93%+-3% | 2.01 | 50 | 2 |
| NTK-30P | 30 | 93%+-3% | 2.09 | 60 | 2 |
| NTK-40P | 40 | 93%+-3% | 1.81 | 80 | 2 |
| NTK-50P | 50 | 93%+-3% | 1.94 | 100 | 2 |
| NTK-60P | 60 | 93%+-3% | 1.62 | 120 | 2 |
| NTK-80P | 80 | 93%+-3% | 1.92 | 160 | 2 |
| NTK-100P | 100 | 93%+-3% | 1.83 | 200 | 2 |
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Design basis: Altitude:≤500m;RH:≤80%;Temperature:0℃-38℃;Filling pressure: 150Bar 40L Type Standard Cylinder |
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FAQ
Q: How flexible is it in terms of modular expansion to meet the growing oxygen demand in the future?
A: It is highly flexible in modular expansion. The modular design of the medical on-site oxygen generation system allows for the easy addition of more oxygen generation modules as the demand increases. For example, if a hospital expands its facilities or experiences a rise in patient numbers, new modules can be quickly integrated into the existing system without major overhauls.
Q: Considering its modular nature, how easy is it to replace or upgrade individual components?
A: Each module in the system is designed as a self-contained unit, which can be accessed and removed independently. When a component such as a compressor or a purification module needs to be replaced due to wear or technological advancements, it can be swapped out quickly. This not only reduces the downtime of the oxygen generation process but also allows for cost-effective upgrades, as only the specific module in need of improvement can be replaced instead of the entire system.
Q: How does the modular design of it contribute to its overall reliability and maintainability?
A: The modular design of it significantly contributes to its overall reliability and maintainability. By dividing the system into separate modules, if one part malfunctions, it is easier to isolate the problem to a specific module. This simplifies the troubleshooting process, allowing technicians to quickly identify and fix the issue.
Q: In terms of installation, how does the modular structure of it simplify the process compared to non-modular systems?
A: The individual modules are pre-fabricated and can be transported and installed separately. This makes it easier to handle and position the components in the desired location, especially in complex hospital environments with limited space. This reduces the complexity and time required for installation, enabling the medical on-site oxygen generation system to be up and running more quickly.
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