The Cole-Parmer Two-Stage Low-Pressure Specialty Regulator, CGA 350, is designed to provide precise and stable pressure regulation for gases that attack brass or copper-bearing alloys. Its two-stage design ensures smooth pressure control with minimal fluctuations, making it ideal for sensitive applications requiring consistent gas delivery.
Product Features
- Specifically designed for gases that attack brass or copper-bearing alloys
- No inlet gauge required when used with low-vapor-pressure liquefied gases
- Rubber-supported PTFE diaphragm for enhanced chemical resistance and durability
- KEL-F seat provides excellent sealing and resistance to aggressive gases
- Lightweight aluminum-alloy body and bonnet for corrosion resistance
- Stainless steel delivery gauge for precise pressure monitoring
- 10 mm sintered stainless steel filter protects internal components
- Two-stage design for stable, low-pressure output and minimal pressure fluctuations
Benefits
- Stable Pressure Control: Two-stage regulation delivers consistent pressure with minimal pulsation, ideal for sensitive processes.
- Corrosion Resistance: Constructed with materials that resist degradation from aggressive gases, extending product life.
- Durable Components: PTFE diaphragm and sintered stainless steel filter reduce maintenance and improve reliability.
- Lightweight and Easy to Install: Aluminum-alloy construction provides strength while minimizing weight.
- Enhanced Monitoring: Stainless steel delivery gauge offers accurate, reliable pressure readings.
Why Choose the Cole-Parmer Two-Stage Low-Pressure Specialty Regulator?
For applications demanding precise, low-pressure gas control with enhanced stability, the Cole-Parmer Two-Stage Specialty Regulator offers a robust solution. Engineered with corrosion-resistant materials and a two-stage design, it provides reliable, smooth pressure delivery in challenging environments. Whether used in laboratories or industrial processes, this regulator ensures safety, accuracy, and durability for your critical gas systems.
