Intermediate face area
The square outlet suits medium work cells where the smallest unit leaves part of the working zone outside the supply footprint.
The 500 mm version provides an intermediate filter face between the compact 400 mm unit and the higher-output 610 mm module. Its stainless casing houses one electronically controlled brushless fan above the final filter. The larger face distributes approximately 5 m³/min through an enclosure-sized supply opening without requiring a long rectangular roof panel.
The square outlet suits medium work cells where the smallest unit leaves part of the working zone outside the supply footprint.
The overall height remains the same as the 400 mm version, simplifying comparison where overhead space is fixed.
A bright annealed body offers smooth exposed surfaces for routine wiping around the enclosure roof.
| Nominal Module Dimensions | 500 × 500 mm mounting footprint; 185 mm overall height including intake guard, excluding cable and service clearance |
|---|---|
| Nominal Airflow | Approximately 5 m³/min |
| Average Outlet Velocity | Approximately 0.39 m/s |
| Final Filter | HEPA; filtration configuration rated at least 99.99% at 0.3 µm |
| Housing Material | SUS430 stainless steel, bright annealed finish |
| Fan and Control | Single brushless DC fan; adjustable speed |
| Power Supply | AC 100 V, single phase, 50/60 Hz |
| Nominal Power Consumption | Approximately 28 W |
| Approximate Weight | 10 kg |
| Customisierung | Verfügbar je nach beabsichtigter Anwendung und Betriebsumgebung. |
An option for component assembly covers, inspection cells and enclosed handling benches requiring a moderate filtered supply. Airflow coverage depends on the position of process equipment and the return openings, not on module dimensions alone.
Discuss the mounting interface, final-filter requirement and electrical supply for the assembly cell. Supply voltage must be specified when the unit is ordered; the reference configuration is not universal-input.
Senden Sie uns Ihre Abmessungen, Installationsbedingungen, Leistungsziele und gewünschte Oberflächenveredelung.