
1. NeoMed Technology offers a full range of premium quality air blow-molding breathing bags manufactured in ISO 13485 accredited facility of a clean room environment.
2. NeoMed Technology is the 1st manufacturer in China to develop and produce Air Blow Molding breathing bags. Our air blow molding process provides superior burst strength, consistent wall thickness and eliminates leak points.
3. NeoMed Technology’s breathing bags are made from TPE, complete latex-free,which offer excellent flexibility and elasticity, predictable compliance properties, consistent repeatable performance in various clinical applications.
4. NeoMed Technology offers a complete range of latex-free bags in sizes ranging from 0,5L, 1,0L, 2,0L and 3,0L with conical connectors in compliance with ISO regulations.
5. Available standard type and Loop tail with different colors, or with one-piece conical connector.
Comparison: TPE Air Blow Molding vs Dip Molding
| Feature | TPE Air Blow Molding | Dip Molding |
|---|---|---|
| Standard | ISO 18562-1: 2024 Biocompatibility evaluation of breathing gas pathways in healthcare applications- Part 1: Evaluation and testing within a risk management process |
NA |
| Emissions of particulate matter | Compliant with ISO 18562-2:2024 | NA |
| Emissions of volatile organic substances | Compliant with ISO 18562-3:2024 | NA |
| Leachables in condensate | Compliant with ISO 18562-4:2024 | NA |
| Manufacturing Process | Material properties are more stable. | Susceptible to contamination |
| Bioburden | Produced in a cleanroom environment with controlled initial microbial contamination | Open workshop production with uncontrollable initial contamination levels |
| Heat Resistance | - Generally good heat resistance, able to withstand sterilization methods like autoclaving (up to about 120°C). - Maintains structural integrity under heat. |
- Good heat resistance, but natural latex can degrade at higher temperatures (around 100°C). - May not withstand repeated sterilizations as effectively as TPE. |
| Strength and Durability | - High tensile strength and puncture resistance; less likely to tear or degrade over time. - Suitable for repeated use in harsh conditions. |
- Good elasticity, but can be prone to tears and punctures over time. - Durability is lower than TPE in high-stress situations. |
| Environmental Impact | - More eco-friendly options available; - Manufacturing processes are typically less harmful to the environment. |
- Natural latex has a higher ecological footprint due to farming and processing practices. - Less biodegradable than synthetic alternatives. |
| Cleaning | No water rinsing required, high cleanliness | Washing with ordinary tap water cannot guarantee cleanliness. |