IMI Norgren T20M0500 Exhaust Regulator/Silencer - M5 Port
Part Number: T20M0500
Quick Summary
Exhaust Flow Regulator/Silencer delivers precise exhaust control for small pneumatic circuits in automation equipment. Engineers often contend with noisy exhaust and leakage that disrupt cycle times and increase maintenance costs. Certification notes: The data provided does not specify SIL, CE, or IP ratings; please verify with the official Norgren datasheet and CAD resources. In practice, this compact module minimizes footprint, simplifies installation, and supports reliable, space-constrained micro-automation projects while aligning with common industrial standards for lightweight pneumatic components.
Product Information
Extended Description
T20M0500 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
M5
Thread
M5
Flow
0.02 dm3/sec
Materials - Body
Plastic PA
Dimensions - Height
9.5 mm
Dimensions - Length
16 mm
Dimensions - Width
9.5 mm
Weight
0.001 kg
Country of Origin
Germany
Range
T20
Brand
IMI Norgren
Feature: Captive regulating needle that will not blow out when unscrewed. Business Impact: Reduces risk of regulator loss during service and maintains consistent flow control, lowering downtime. Application: Ideal for compact pneumatic manifolds in automated assembly cells. Feature: Very small footprint and PA body material. Business Impact: Enables easy integration into tight spaces and reduces overall system weight, improving energy efficiency. Application: Small robots and pick-and-place fixtures with limited enclosure space. Feature: M5 port and thread compatibility. Business Impact: Simplifies installation with standard micro-pneumatic hardware, lowering assembly time and potential leak points. Application: Direct mounting to sensors, actuators, and compact valves. Feature: Flow rate of 0.02 dm3/sec. Business Impact: Delivers controlled exhaust without over-venting, preserving actuating speed and cycle accuracy. Application: Microactuator exhaust control in compact automation lines. Feature: Broad operating range (-20 to 80 °C, 1–10 bar). Business Impact: Ensures reliable performance across typical factory environments, reducing maintenance calls. Application: General automation and packaging lines that require robust pneumatic exhaust management. Feature: Captive design and compact dimensions (9.5 mm x 16 mm x 9.5 mm). Business Impact: Streamlines panel layout and reduces assembly time, enhancing overall line throughput. Application: Integration into tight control panels and module stacks for streamlined maintenance.
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FAQs
The T20M0500 uses an M5 port and thread, enabling direct integration with common micro-pneumatic components. To install, align the unit with the host port and thread, tighten securely, and verify seal integrity. The captive regulating needle helps prevent loss if the unit is unscrewed during maintenance, reducing downtime.
Key specs include medium: compressed air; operating temperature -20 to 80 °C; operating pressure 1–10 bar (15–145 psi); port size and thread: M5; flow: 0.02 dm3/sec; body material: PA plastic; dimensions: 9.5 mm x 16 mm x 9.5 mm; weight: 0.001 kg; country of origin: Germany.
Yes. Its compact size, M5 connection, and integrated regulator/silencer are ideal for tight spaces in robotic grippers and small automation fixtures. The lightweight PA body minimizes added inertia, while the low flow helps maintain precise actuation speeds without over-venting.
The provided data does not list SIL, CE, or IP ratings. For regulatory compliance, consult the official datasheet and CAD resources linked in the product downloads to confirm any certifications and applicable standards before deployment.
The captive needle design reduces the risk of part loss during service, lowering maintenance time. Its integrated flow control and silencing minimize leakage and noise, potentially reducing energy waste and improving line uptime in micro-automation contexts.