
Description
Features:
- This small vacuum pump is ideal for a wide variety of pick and place, box opening, clamping, lifting, chucking, and surface mounting applications.
- The Adjustable E-Vac is maintenance free and has no moving parts to wear out.
- Engineered for high efficiency, this high vacuum pump minimizes compressed air use by allowing it to be tuned to the application
- With a simple turn of the venturi unit, the vacuum and flow levels can be changed to overcome porosity and increase or decrease the lifting power.
Applications:
- Pick and place of parts and equipment
- Bag / package opening
- Label placement
- Vacuum forming
- Mold evacuation
- Vacuum filling
- Leak testing
- Evacuate containers
- Clamping and chucking
- Paper alignment and feed in printing equipment
- Vacuum packaging
- Surface mounting
- Vacuum press for wood veneers and laminates
- Carton forming
- Robotic tooling
- Vacuum liquids for testing
Advantages:
- Easy to set the vacuum level required by the application
- Minimizes compressed air use
- Compact, portable
- No clog design passes dust, dirt, and contaminants straight through
- Single stage design eliminates fluctuations in vacuum
- Quiet
- Instantaneous vacuum
- Easy to mount at point of use
- Lightweight, rugged
- No moving parts - no maintenance
- Fast response - increases cycle time
- Durable 6061 aluminum construction
- Safe operation - no electricity

How it work:
- Compressed air flows through the inlet (1), then through a single directed nozzle (2).
- As the airstream exhausts, it expands and increases in velocity prior to passing through the venturi (3).
- A vacuum inlet tangential to the primary airflow (4) is located at the suction point between the orifice and the venturi.
- The airflow that is drawn through the vacuum inlet mixes with the primary airstream, then exhausts on the opposite end (5).
- The amount of vacuum flow can be adjusted. When facing the exhaust end, loosen the lock ring (turn counterclockwise), then turn the exhaust.
- To increase flow, turn the exhaust counterclockwise.
- To decrease flow, turn the exhaust clockwise.
- Be careful not to unthread the exhaust completely.
- There will be a point where no more vacuum flow can be achieved.
- The amount of vacuum created varies with the porosity of the load being picked up.
- Units come from the factory set to 15" Hg if used on a solid, non-porous surface.
- A maximum of 25" Hg can be achieved on a solid, non-porous surface, but will require increasing the air consumption and vacuum flow.

⚠️ Attention CA Residents: Prop 65 Warning
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Technical details
| Air Inlet A | 3/8 NPT |
| Vacuum Inlet B | 1/2 NPT |
| C | N/A |
| D | 2.50 in / 64 mm |
| E | 6.19 in / 157 mm |
| F | 1.44 in / 37 mm |
| G | 1.22 in / 31 mm |
| H | N/A |
| L | 0.75 in / 19 mm |
| M | 1.94 in / 49 mm |
| Exhaust PortJ | 3/4 NPT |
| Exhaust PortK | N/A |
| Air Consumption SCFM at 80 PSIG | 26.4 |
| Sound Level in dBA (No Muffler) | 99 |
| Vacuum Flow SCFM vs. Vacuum Level "Hg (Set to 15" Hg) | |
| Flow 0 | 36.70 |
| Flow 3 | 32.00 |
| Flow 6 | 25.63 |
| Flow 9 | 17.68 |
| Flow 12 | 7.69 |
| Flow 15 | 0.00 |
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