Super Air Amplifier™
A Super Air Amplifier™ pulls in large volumes of surrounding air using a small amount of compressed air to produce
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A Super Air Amplifier™ pulls in large volumes of surrounding air using a small amount of compressed air to produce high volume, high velocity outlet flows through a fixed air gap. Utilizing the Coanda effect, a basic principle of fluid dynamics, Air Amplifiers become a simple, low cost way to circulate air, move smoke, fumes and light materials. They are also effective as a blower to cool, clean and dry parts or processes and in workstation dust collection applications. Quiet, efficient Super Air Amplifiers will create output flows up to 25 times their consumption rate. Both the vacuum and discharge ends of the Air Amplifier can be ducted, making them ideal for drawing fresh air from another location, or moving smoke and fumes away.
Applications
- Vent welding smoke
- Cool hot parts
- Dry wet parts
- Clean machined parts
- Distribute heat in ovens/molds
- Ventilate confined areas
- Dust collection
- Exhaust tank fumes
Advantages
Compared to Fans:
- Rated for environments up to 700°F (374°C)
- Compact, lightweight, portable
- No electricity
- No moving parts - no maintenance
- Ends are easily ducted
- Instant on/off
- Variable force and flow
- No RF interference
Compared to Venturies and Ejectors:
- More air with lower compressed air consumption
- Higher flow amplification
- No internal obstructions
- Meets OSHA pressure and noise requirements
- Quiet
Super Air Amplifier Systems |
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Super Air Amplifiers are available in four different model types:
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Model | Outlet Diameter | ||||
3/4" (19mm) | 1-1/4" (32mm) | 2" (51mm) | 4" (102mm) | 8" (203mm) | |
Super Air Amplifier Only | 120020 | 120021 | 120022 | 120024 | 120028 |
Super Air Amplifier Kit | 120220 | 120221 | 120222 | 120224 | 120228 |
Deluxe Super Air Amplifier Kit | 120220DX | 120221DX | 120222DX | 120224DX | 120228DX |
High Temperature Air Amplifier Only | N/A | 121021 | N/A | N/A | N/A |
High Temperature Air Amplifier Kit | N/A | 121221 | N/A | N/A | N/A |
Deluxe High Temperature Air Amplifier Kit | N/A | 121221DX | N/A | N/A | N/A |
Super Air Amplifier Shim Set | 120320 | 120321 | 120322 | 120324 | 120328 |
Super Air Amplifier Performance | ||||||||
80 PSIG (5.5 BAR) | Air Consumption | Amplification | Air Volume at Outlet | Air Volume at 6" (152mm) | Sound Level | |||
Model # | SCFM | SLPM | RATIO | SCFM | SLPM | SCFM | SLPM | dBA |
120020 | 6.1 | 173 | 12 | 73 | 2,066 | 219 | 6,198 | 69 |
120021 | 8.1 | 229 | 18 | 146 | 4,132 | 436 | 12,339 | 72 |
120022 | 15.5 | 439 | 22 | 341 | 9,650 | 1,023 | 28,951 | 72 |
120024 | 29.2 | 826 | 25 | 730 | 20,659 | 2,190 | 61,977 | 73 |
120028 | 120 | 3,396 | 25 | 3,000 | 84,900 | 9,000 | 254,700 | 88 |
Model 120028 tested with .009" (0.23mm) shim. All other models tested with .003" (0.08mm) shim. |
Super Air Amplifier Dimensions |
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Models |
Model Numbers |
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Super Air Amplifier | 120020 | 120021 | 120022 | 120024 | 120028 | |
A | in | 0.45 | 0.84 | 1.64 | 3.02 | 6.20 |
mm | 11 | 21 | 42 | 77 | 157 | |
B | in | 0.75 | 0.94 | 1.69 | 2.81 | 4.50 |
mm | 19 | 24 | 43 | 71 | 114 | |
C | in | 0.98 | 1.50 | 2.95 | 4.91 | 9 |
mm | 25 | 38 | 75 | 125 | 229 | |
D | in | 1.77 | 2.40 | 3.58 | 6.89 | - |
mm | 45 | 61 | 91 | 175 | - | |
E | in | 2.28 | 3.03 | 4.14 | 8.42 | 11.25 |
mm | 58 | 77 | 105 | 214 | 286 | |
F | in | 0.20 | 0.27 | 0.27 | 0.55 | - |
mm | 5 | 7 | 7 | 14 | - | |
G | in | 0.18 | 0.21 | 0.25 | 0.55 | - |
mm | 5 | 5 | 6 | 14 | - | |
H | in | 0.53 | 0.75 | 0.75 | 1.75 | 2.44 |
mm | 13 | 19 | 19 | 44 | 62 | |
J | in | 0.73 | 1.22 | 2 | 3.97 | 8 |
mm | 19 | 31 | 51 | 101 | 203 | |
K | in | 2.50 | 2.88 | 3 | 4.75 | 8.94 |
mm | 64 | 73 | 76 | 121 | 227 | |
L | in | 0.59 | 0.59 | 0.62 | 0.94 | 2.38 |
mm | 15 | 15 | 16 | 24 | 60 | |
M | NPT | 1/8 | 1/4 | 3/8 | 1/2 | 3/4 |
Super Air Amplifier Airflow Pattern |
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Models |
Model Numbers |
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Super Air Amplifier | 120020 | 120022 | 120022 | 120024 | |
A | in | 1.25 | 2 | 2.75 | 4.5 |
mm | 32 | 51 | 70 | 114 | |
B | in | 2.2 | 2.9 | 3.55 | 5.3 |
mm | 56 | 74 | 90 | 135 | |
C | in | 4.1 | 4.7 | 5.15 | 6.9 |
mm | 104 | 119 | 131 | 175 | |
D | in | 6 | 6.5 | 6.75 | 8.5 |
mm | 152 | 165 | 171 | 216 |
How Air Amplifiers Work |
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Compressed air flows through the air inlet (1) into an annular chamber (2). It is then throttled through a small ring nozzle (3) at high velocity. This primary airstream adheres to the Coanda profile (4), which directs it toward the outlet. A low pressure area is created at the center (5), inducing a high volume flow of surrounding air into the primary airstream. The combined flow of primary and surrounding air exhausts from the Air Amplifier in a high volume, high velocity flow. |