T-Connector Manifold with External Thread and 3 Reduced Outlets
Efficiently distribute compressed air, vacuum, or neutral gases with our T-Connector Manifold . Featuring an external thread for secure installation and three reduced IQS outlets (ØD=6 to ØD=10), this manifold simplifies line connections and ensures optimal flow control in your pneumatic systems.
T-Shaped Design for 3-Way Distribution
External Thread for Secure Mounting
3 Reduced IQS Outlets (ØD=6 to ØD=10)
Suitable for Compressed Air, Vacuum, & Gases
Versatile & Reliable T-Connector Manifold
Our T-Connector Manifold is a versatile solution for expanding and customizing your pneumatic systems. Its unique design efficiently distributes airflow or gas flow to three separate lines, while the reduced outlets allow for precise control over individual flow rates.
Key Features:
Efficient 3-Way Distribution
The T-shaped design of this manifold allows for even and efficient distribution of compressed air, vacuum, or neutral gases to three separate outlets.
Precise Flow Control
The reduced IQS outlets (ØD=6 to ØD=10) enable you to fine-tune the flow rate for each individual line, optimizing the performance of your connected equipment.
Secure & Leak-Free Connections
The external thread ensures secure mounting, while the IQS plug connection standard and embedded O-ring seals guarantee leak-proof performance for maximum efficiency.
Applications:
Our T-Connector Manifold is perfect for use in:
- Industrial Automation: Control multiple pneumatic actuators or tools.
- Laboratory Equipment: Precisely regulate gas flow for experiments or processes.
- HVAC Systems: Distribute air or vacuum to different zones.
- Custom Applications: Build or modify your own pneumatic systems.
Tehnical Specifications:
Material:
Plastic, Brass (nickel-plated), Zinc Alloy
Thread Type:
Cylindrical with embedded O-ring
Outlet Types:
3 x IQS Reduced Outlets (ØD=6 to ØD=10)
Operating Pressure:
Up to 20 bar
Temperature Range:
-20°C to +80°C
Recommended Hose:
PU or PA (nylon)
For further insights into our T-Connector Manifold and its various applications, explore our detailed blog post.
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