Highlights of technological breakthroughs
Dual-tower intelligent switching technology
By real-time monitoring of the adsorption tower pressure curve, seamless switching of oxygen supply can be achieved in 0.3 seconds, and the oxygen concentration fluctuation is ≤±1.5%.
Energy consumption ratio optimization system
Innovative integrated air compressor waste heat recovery device (energy saving rate ≥25%), combined with variable frequency drive technology, reduces energy consumption by 40% compared with traditional oxygen production equipment.
Intelligent IoT module
Built-in 5G remote monitoring system, supports real-time monitoring and abnormal warning of 18 core parameters such as oxygen concentration, flow, pressure, etc., and is compatible with hospital HIS system data docking.


Medical scenario value matrix
| Application scenarios | Core value embodiment | Example picture |
|---|---|---|
| ICU/operating room | Supports 0.4MPa high-pressure oxygen output to meet the needs of high-precision equipment such as ventilators (error ≤±0.02MPa) | ![]() |
| Emergency medical reserve | Equipped with dual power supply + oxygen tank redundancy system, continuous oxygen supply ≥8 hours after power failure | |
| Primary medical institutions | Modular expansion design, a single device can cover the oxygen supply needs of 50 beds (operating noise ≤55dB) | ![]() |
| Mobile medical unit | Containerized integrated solution, 2-hour rapid deployment, suitable for special scenarios such as field rescue and cabin hospitals | ![]() |
Safety-enhanced design
Through dual-circuit oxygen supply, redundant backup, automatic switching and other mechanisms, it ensures continuous and stable oxygen supply in extreme cases and reduces the risk of medical accidents.
Multi-scenario adaptability
Supports special environments such as operating rooms, hyperbaric oxygen chambers, and infectious disease isolation wards to improve the comprehensive service capabilities of hospitals.
Full life cycle cost optimization
Compared with traditional bottled oxygen, the average annual cost savings of centralized oxygen supply systems can reach more than 40%.
Data value-added service potential
The oxygen consumption data collected by the oxygen supply system can assist hospitals in optimizing resource allocation and conducting clinical research (such as oxygen therapy effect analysis).
| No. | Models | Capacity (Nm3/hr) | Purity | Power consumption of 1Nm3 oxygen produced (kw/h) | Number of bottles filled in 12 hours (pcs) | Operator needed |
| 1 | NTK95-5P | 5 | 95%+-1% | 3.54 | 10 | 2 |
| 2 | NTK95-10P | 10 | 95%+-1% | 2.52 | 20 | 2 |
| 3 | NTK95-15P | 15 | 95%+-1% | 2.31 | 30 | 2 |
| 4 | NTK95-20P | 20 | 95%+-1% | 2.13 | 40 | 2 |
| 5 | NTK95-25P | 25 | 95%+-1% | 2.01 | 50 | 2 |
| 6 | NTK95-30P | 30 | 95%+-1% | 2.09 | 60 | 2 |
| 7 | NTK95-40P | 40 | 95%+-1% | 1.81 | 80 | 2 |
| 8 | NTK95-50P | 50 | 95%+-1% | 1.94 | 100 | 2 |
| 9 | NTK95-60P | 60 | 95%+-1% | 1.62 | 120 | 2 |
| 10 | NTK95-80P | 80 | 95%+-1% | 1.92 | 160 | 2 |
| 11 | NTK95-100P | 100 | 95%+-1% | 1.83 | 200 | 2 |
FAQ
Q: What technical innovations does the NEWTEK system have in terms of oxygen supply stability?
A: The core lies in the molecular sieve dynamic balance technology of the PSA oxygen generator, combined with the real-time sensor feedback adjustment of oxygen purity to ensure that the output oxygen concentration fluctuation is ≤±1%. The terminal pressure of 0.4-0.7MPa is accurately controlled through the intelligent pressure reducing valve group to avoid the unstable oxygen supply caused by pipeline pressure drop in the traditional system.
Q: How to solve the sudden peak demand for oxygen in hospitals?
A: NEWTEK predicts the peak oxygen demand (such as ICU centralized rescue scene) through AI algorithm, starts oxygen replenishment in advance, and shortens the response time to within 15 minutes.
Q: How does the system reduce operation and maintenance costs through intelligence?
A: Equipped with IoT platform to achieve: ① Remote monitoring of 200+ key parameters; ② Predictive maintenance (such as molecular sieve life warning); ③ Intelligent optimization of energy consumption (automatic switching to low power consumption mode at night), and the comprehensive operation and maintenance cost is reduced by about 25%.
Q: What customized solutions does NEWTEK have for grassroots hospitals?
A: We launched the "micro-center oxygen supply system", which integrates oxygen production/supply/monitoring in a single cabinet, and supports rapid deployment in units with less than 20 beds. Case studies show that the renovation cycle of a hospital was shortened from 45 days to 7 days, and the investment payback period was only 2.3 years.
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