Intelligent Gas Distribution System


Intelligent Gas Distribution System

The BTE Series Intelligent Gas Distribution System is a high-precision, fully automated solution designed for advanced gas control in laboratory and industrial tube furnaces. Engineered to deliver reliable, programmable gas flow management, this system supports both single-gas supply and multi-gas mixing applications under low-pressure conditions—ideal for processes requiring precise atmosphere control such as sintering, annealing, CVD, thermal decomposition, and materials research.

Featuring integrated mass flow controllers (MFCs), digital monitoring, and intelligent control logic, the BTE series enables users to achieve consistent, repeatable gas compositions with minimal manual intervention. Whether used in R&D labs or small-scale production environments, this system ensures optimal process stability, enhanced safety, and reduced operational costs through intelligent automation.


Caratteristiche principali

  • Multi-Channel Gas Control: Available in 2-, 3-, and 4-channel configurations, allowing flexible setup for dual or mixed-gas operations.
  • Mass Flow Meter Integration: Equipped with high-sensitivity mass flow meters (0.01 Pa – 100 kPa range) for accurate real-time measurement of gas pressure and flow rate.
  • Cumulative Flow & Time Tracking: Supports cumulative flow and elapsed time recording—critical for batch traceability, consumption analysis, and process optimization.
  • Automatic Constant Pressure Regulation: Maintains stable outlet pressure regardless of fluctuations in inlet supply, ensuring uniform gas delivery throughout the process cycle.
  • Overpressure Protection: Built-in safety mechanisms prevent damage from excessive pressure buildup, enhancing equipment longevity and operator safety.
  • Programmable Operation Modes: Supports both simultaneous and individual channel startup, enabling customized gas sequencing for complex thermal treatments.
  • Online Concentration Mixing: Enables dynamic, real-time adjustment of gas ratios for creating precise atmospheres (e.g., forming gas, hydrogen-nitrogen mixtures).
  • User-Friendly Interface: Digital display panel provides clear visualization of all gas parameters on a single interface—improving operability and reducing errors.
  • Standardized Connections: All output ports use internationally recognized 1/4″ double ferrule fittings (Swagelok® compatible), ensuring seamless integration with existing vacuum and gas delivery systems.

Specifiche tecniche

ModelloGas ChannelsMeasurement RangeTotal Power (W)
BTE-2T2 Mass Flow Meters0.01 Pa – 100 kPa100
BTE-3T3 Mass Flow Meters0.01 Pa – 100 kPa100
BTE-4T4 Mass Flow Meters0.01 Pa – 100 kPa100

Note: All models support inert gases (N₂, Ar), reducing gases (H₂, forming gas), and oxidizing gases (O₂, air)—with optional purge and vent functions.


Applicazioni

  • Controlled atmosphere heat treatment
  • High-purity material synthesis and sintering
  • Semiconductor and thin-film deposition processes
  • Catalytic reaction testing
  • Thermal oxidation and carburizing
  • Laboratory-scale chemical vapor deposition (CVD)
  • Vacuum furnace gas purging and backfilling

Why Choose the BTE Intelligent Gas Distribution System?

Unlike basic manual regulators, the BTE series combines intelligent control, precise metering, and automated safety protocols into a compact, modular design. It eliminates human error in gas switching, reduces contamination risk, and improves reproducibility across experiments or production runs. With its plug-and-play architecture and compatibility with modern tube furnace systems, it is an ideal upgrade path from simple gas setups to smart, data-driven thermal processing workflows.

Perfect for researchers, engineers, and manufacturers who demand accuracy, reliability, and scalability in gas handling—without compromising on performance or safety.


Manufactured by a leading tube furnace specialist with over 10 years of experience in advanced thermal processing solutions. Designed for precision, durability, and seamless integration into industrial and academic environments.


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