Norgren M/58102/60 Vacuum Pump - 480Nl/min, Compact

Part Number: M/58102/60
Manufacturer
Norgren
Part number
M/58102/60

Quick Summary

Norgren M/58102/60 vacuum pump delivers compact, multi-stage vacuum for automated handling and packaging lines. This unit targets the common pain of slow response and unstable vacuum in high-throughput cells, delivering faster cycle times and repeatable picks. CE compliance, IP protection, and SIL-aligned safety interlocks are supported on the broader Norgren vacuum family; verify the datasheet for exact certifications on this model. The aluminium body keeps weight down while withstanding industrial environments, and the simple installation reduces integration risk. In addition to robust mechanical design, the unit aligns with maintenance-friendly pneumatics and vacuum system strategies, offering predictable performance for factory automation, robotic grippers, and packaging equipment.

Product Information

Extended Description

M/58102/60 Norgren: Fast response | Compact, lightweight | Low sound level | Compressed air driven | Simple installation
Medium
Compressed air
Operating Temperature
-20 ... 60 °C, -4 ... 140 °F
Port Size
G3/4
Induced Air Vacuum
480 nl/min
Flow
8 dm3/sec, 17 scfm
Materials - Body
Aluminium
Materials - Elastomers
Polyurethane
Dimensions - Height
90 mm
Dimensions - Length
164 mm
Dimensions - Width
82 mm
Weight
0.875 kg
Country of Origin
Germany
Range
M/58102
Series
Norgren Vacuum
Brand
IMI Norgren
Feature: Induced air vacuum of 480 nl/min and a flow of 8 dm3/sec enable rapid evacuations, shaving cycle times and improving grip reliability on a range of parts. Benefit: Higher throughput and consistent hold during pick-and-place operations. Application: Electronics assembly, packaging lines, and automated handling. The multi-stage construction delivers stable vacuum across varying distances and loads, reducing regripping and rejects. Feature: Lightweight aluminium body (0.875 kg) with polyurethane elastomer seals. Benefit: Lower system weight, reduced energy demand, and minimized vibration for sensitive automation cells. Application: Mobile or compact vacuum setups in laboratory and production environments. Feature: G3/4 port, compressed air drive, and compact footprint (164 × 82 × 90 mm). Benefit: Easy integration with standard plant pneumatics, straightforward mounting, and flexible placement. Application: Retrofit into existing lines and new automation cells. Feature: Low sound level and robust materials suitable for busy facilities. Benefit: Quieter operation and longer service life with fewer maintenance cycles. Application: On-shift operations and collaborative spaces in manufacturing. Feature: Operating range -20 to 60 °C and German engineering origin. Benefit: Reliable performance in diverse ambient conditions with traceable quality. Application: Industrial automation, robotics, and packaging equipment.

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FAQs

The M/58102/60 uses standard G3/4 ports and a compressed air drive, so it integrates with common plant pneumatics and fittings. Consider securing a stable air supply, installing in a location with adequate clearance for maintenance, and using vibration-damping mounts to preserve performance in high-cycle environments.
Key specs include an induced air vacuum of 480 nl/min and a flow of 8 dm3/sec (17 scfm). These values support fast evacuation and reliable gripping in pick-and-place tasks, particularly on medium-sized components.
Yes. Its compact form, lightweight aluminium body, and fast response support high-throughput packaging and robotic grippers. The unit’s low noise and simple installation further reduce integration risk in busy production lines.
Check the datasheet linked in the product downloads for exact certification details. Commonly relevant standards for this class include CE compliance, IP protection levels, and SIL-related safety considerations; confirm which apply to your installation and industry requirements.
The air-driven, non-electrical design reduces maintenance complexity, while the aluminium body and polyurethane elastomer seals optimize durability and service intervals. The result is lower total cost of ownership through fewer part replacements and consistent performance in automated lines.