Norgren T20C2800 Exhaust Flow Regulator - G1/4A

Part Number: T20C2800
Manufacturer
Norgren
Part number
T20C2800

Quick Summary

Exhaust Flow Regulator from Norgren T20C2800 provides compact regulation and silencing for pneumatic exhaust in automation lines. Maintenance downtime often results from loose needles; the captive regulating needle won’t blow out when unscrewed. Industry-standard safety and quality expectations often call for SIL, CE, and IP-rated components; verify the exact certifications for your application with the supplier. This compact unit supports efficient pneumatic flow control in tight spaces, with a G1/4A port and robust materials, delivering predictable response and reduced leak paths. By choosing this solution, engineers can improve uptime, simplify installation, and lower life-cycle costs through durable, easy-to-service flow control.

Product Information

Extended Description

T20C2800 Norgren: Compact, integral flow regulator and silencer units | Captive regulating needle will not blow out when unscrewed | Reduced dimensions
Medium
Compressed air
Operating Temperature
-20 ... 80 °C, -4 ... 176 °F
Operating Pressure
1 ... 10 bar, 15 ... 145 psi
Port Size
G1/4A
Thread
G1/4
Flow
0.18 dm3/sec
Materials - Body
Plastic PA
Dimensions - Height
18 mm
Dimensions - Length
29 mm
Dimensions - Width
18 mm
Weight
0.007 kg
Country of Origin
Germany
Range
T20
Brand
IMI Norgren
Feature: Compact, integral flow regulator and silencer reduces footprint and noise, delivering smoother exhaust control in automation lines. Business impact: Space savings and reduced energy losses lead to lower operating costs and higher machine throughput. Application: Suitable for close-quarters valve islands and retrofit projects that require reliable flow regulation in compressed air systems. Feature: Captive regulating needle prevents loss during maintenance; impact: safer servicing with less downtime; application: field service on G1/4 connection points. Feature: G1/4 thread and port size support standard manifolds; impact: faster installation and easier expansion; application: retrofit into existing pneumatic circuits. Feature: Operating pressure 1 to 10 bar, temperature -20 to 80 C; impact: broad compatibility with factory air systems; application: automation lines and robotics. Feature: PA plastic body and compact dimensions (18x29x18 mm) offer durability and space savings; impact: lightweight, rugged performance in harsh environments; application: compact regulator islands. Feature: Weight 0.007 kg and low-profile design enable dense mounting; impact: higher channel density and easier maintenance; application: control panels with limited space.

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FAQs

Install by threading the unit onto a compatible G1/4A port on a valve island or manifold. Ensure the mating surfaces are clean, apply appropriate torque per the manufacturer guidelines, and verify a proper seal with the O-ring. After mounting, perform a low-pressure leak test before returning the line to full operation.
The regulator operates from 1 to 10 bar (approximately 15 to 145 psi). This range covers most standard factory air systems, providing stable exhaust regulation across varying actuator loads. Always validate your actual system pressure and set the device accordingly for consistent performance.
The captive needle design prevents needle ejection during maintenance or unscrewing, reducing the risk of loss and eliminating the need to locate a replacement. This feature shortens service times, minimizes downtime, and improves operator safety during adjustments or replacements.
The T20C2800 uses PA plastic for the body, delivering a lightweight yet durable solution. With a temperature range of -20 to 80 °C, it is suitable for many industrial environments and standard factory air systems. If your application involves aggressive chemicals or extreme conditions, review compatibility or consider protective enclosures as needed.
Its compact footprint and integrated silencer save panel space and reduce acoustic emissions, while precise, predictable flow improves actuator response and reduces energy waste. The low maintenance design minimizes downtime and lifecycle costs, making it a practical choice for high-volume manufacturing and dense control architectures.