China Industrial Variable Frequency Drive VSD/VFD Inverter Dry Electric Direct Driven (no oil ) Oil-Free Silent Oxygen Screw Air Compressor for medical with high quality

Solution Description

Industrial Silent/Mute Health-related Dry Oil Cost-free Oilless Direct Travel Rotary Double Screw Type Air Compressor Positive aspects

1.Clean air 1, China
Our manufacturing unit is located in No. 366, YangzhuangBang Street, Pingxing Rd., Xindai City, HangZhou, ZHangZhoug Province, China

Q3: Guarantee terms of your machine? 
A3: Two several years warranty for the machine and technological help according to your requirements.

Q4: Will you give some spare components of the machines? 
A4: Yes, of program.

Q5: How lengthy will you consider to organize manufacturing? 
A5: 380V 50HZ we can shipping the items within ten times. Other electric power or other colour we will shipping inside 22 times

Q6: Can you settle for OEM orders? 
A6: Yes, with skilled design group, OEM orders are highly welcome

US $3,000-30,000
/ Piece
|
1 Piece

(Min. Order)

###

Shipping Cost:

Estimated freight per unit.



To be negotiated

###

Lubrication Style: Oil-free
Cooling System: Air Cooling and Water Cooling
Power Source: AC Power

###

Customization:

###

Model Maximum working pressure Capacity(FAD)* Installed motor power Cooling
Method
Noise Level** Dimensions (mm) Weight Air Outlet
Pipe Diameter
50 Hz 60 Hz
bar(g) psig m³/min cfm m³/min cfm kW hp dB(A) L W H kG
DWW-45 7 102 7.07 250 7.16 253 45 60 Air
Cooling
W-water
Cooling
80 2100 1500 1790 2630 R1-1/2"
8 116 7.03 248 6.48 229 45 60 80 2100 1500 1790 2630 R1-1/2"
10 145 5.51 194 5.37 189 45 60 80 2100 1500 1790 2630 R1-1/2"
DWW-55 7 102 9.37 331 8.87 313 45 75 80 2100 1500 1790 2650 R1-1/2"
8 116 9.34 330 8.25 291 55 75 80 2100 1500 1790 2650 R1-1/2"
10 145 8.11 286 7.1 251 55 75 80 2100 1500 1790 2650 R1-1/2"
DWW-75 7 102 12.72 449 12.6 445 75 100 82 2300 1600 1790 2850 DN50
8 116 12.69 448 11.69 413 75 100 82 2300 1600 1790 2850 DN50
10 145 11.58 409 10.43 368 75 100 82 2300 1600 1790 2850 DN50
DWW-75W 7 102 12.72 449 12.6 445 75 100 82 2300 1600 1790 2850 DN50
8 116 12.69 448 11.69 413 75 100 82 2300 1600 1790 2850 DN50
10 145 11.58 409 10.43 368 75 100 82 2300 1600 1790 2850 DN50
DWW-90 7 102 13.66 482 14.62 516 90 120 82 2300 1600 1790 2850 DN50
8 116 13.64 482 14.6 515 90 120 82 2300 1600 1790 2850 DN50
10 145 12.64 446 12.86 454 90 120 82 2300 1600 1790 2850 DN50
DWW-90W 7 102 13.66 482 14.62 516 90 120 82 2300 1600 1790 2850 DN50
8 116 13.64 482 14.6 515 90 120 82 2300 1600 1790 2850 DN50
10 145 12.64 446 12.86 451 90 120 82 2300 1600 1790 2850 DN50
DWW-110 7 102 19.16 676 17.5 618 110 150 85 2800 1800 1860 3050 DN65
8 116 19.13 675 17.47 617 110 150 85 2800 1800 1860 3050 DN65
10 145 16.72 590 15.41 544 110 150 85 2800 1800 1860 3050 DN65
DWW-110W 7 102 19.16 676 17.5 618 110 150 85 2800 1800 1860 3050 DN65
8 116 19.13 675 17.47 617 110 150 85 2800 1800 1860 3050 DN65
10 145 16.72 590 15.41 544 110 150 85 2800 1800 1860 3050 DN65
DWW-132 7 102 22.63 799 23.29 822 132 175 85 2800 1800 1860 3385 DN65
8 116 22.6 798 23.27 822 132 175 85 2800 1800 1860 3385 DN65
10 145 20.28 716 20.46 723 132 175 85 2800 1800 1860 3385 DN65
DWW-132W 7 102 22.63 799 23.29 822 132 175 85 2800 1800 1860 3385 DN65
8 116 22.6 798 23.27 822 132 175 85 2800 1800 1860 3385 DN65
10 145 20.28 716 20.46 723 132 175 85 2800 1800 1860 3385 DN65
DWW-160 7 102 27.4 967 27.28 963 160 215 85 2800 1800 1860 3385 DN65
8 116 27.38 967 27.26 962 160 215 85 2800 1800 1860 3385 DN65
10 145 23.98 847 26.38 931 160 215 85 2800 1800 1860 3385 DN65
DWW-160W 7 102 27.4 967 27.28 963 160 215 85 2800 1800 1860 3385 DN65
8 116 27.38 967 27.26 962 160 215 85 2800 1800 1860 3385 DN65
10 145 23.98 847 26.38 931 160 215 85 2800 1800 1860 3385 DN65
DWW-185 7 102 30.37 1072 31.2 1102 185 250 85 2800 1800 1860 3685 DN65
8 116 30.34 1071 31.04 1096 185 250 85 2800 1800 1860 3685 DN65
10 145 27.34 965 29.16 1030 185 250 85 2800 1800 1860 3685 DN65
DWW-185W 7 102 30.37 1072 31.2 1102 185 250 85 2800 1800 1860 3685 DN65
8 116 30.34 1071 31.04 1096 185 250 85 2800 1800 1860 3685 DN65
10 145 27.34 965 29.16 1030 185 250 85 2800 1800 1860 3685 DN65
DWW-200W 7 102 34.17 1206 34.82 1229 200 270 88 3100 2150 2200 4500 DN100
8 116 34.14 1205 34.78 1228 200 270 88 3100 2150 2200 4500 DN100
10 145 30.55 1079 28.42 1004 200 270 88 3100 2150 2200 4500 DN100
DWW-220W 7 102 36.71 1296 37.35 1319 220 300 88 3100 2150 2200 4750 DN100
8 116 36.66 1295 37.3 1317 220 300 88 3100 2150 2200 4750 DN100
10 145 34.03 1202 31.3 1105 220 300 88 3100 2150 2200 4750 DN100
DWW-250W 7 102 43.71 1543 44.27 1563 250 350 90 3100 2150 2200 4950 DN100
8 116 43.66 1542 44.24 1562 250 350 90 3100 2150 2200 4950 DN100
10 145 39.16 1383 37.2 1314 250 350 90 3100 2150 2200 4950 DN100
DWW-280W 7 102 47.65 1683 47.25 1668 280 375 92 3400 2400 2200 5100 DN100
8 116 47.61 1681 47.21 1667 280 375 92 3400 2400 2200 5100 DN100
10 145 43.58 1539 41.23 1456 280 375 92 3400 2400 2200 5100 DN100
DWW-315W 7 102 52.44 1852 52.3 1847 315 425 92 3400 2400 2200 5150 DN100
8 116 52.4 1850 52.27 1846 315 425 92 3400 2400 2200 5150 DN100
10 145 47.53 1678 46.6 1645 315 425 92 3400 2400 2200 5150 DN100
DWW-355W 7 102 70.38 2485 71.97 2541 355 475 92 3800 2350 2400 6800 DN125
8 116 69.56 2456 59.6 2104 355 475 92 3800 2350 2400 6800 DN125
10 145 58.66 2071 58.65 2070 355 475 92 3800 2350 2400 6800 DN125
DWW-400W 7 102 80.75 2851 77.36 2731 400 535 92 3800 2350 2400 7200 DN125
8 116 71.55 2526 71.75 2533 400 535 92 3800 2350 2400 7200 DN125
10 145 69.43 2451 62.87 2219 400 535 92 3800 2350 2400 7200 DN125
*) FAD in accordance with ISO 1217 : 2009, Annex C: Absolute intake pressure 1 bar (a), cooling and air intake temperature 20 °C
**) Noise level as per ISO 2151 and the basic standard ISO 9614-2, operation at maximum operating pressure and maximum speed; tolerance: ± 3 dB(A)
***) N/A-Not Available
****) W-Water cooling

###

Model Maximum working pressure Capacity(FAD)* Installed motor power Cooling
Method
Noise Level** Dimensions (mm) Weight Air Outlet Pipe Diameter
50 Hz 60 Hz
bar(g) psig m³/min cfm m³/min cfm kW hp dB(A) L W H kG
DWL-55-2 2.5 37 15.33 541 14.44 510 55 75 Air
Cooling
W-water Cooling
69 2400 1800 1700 2500 DN80
DWL-55-3 3.5 51 12.78 451 10.85 383 55 75 69 2400 1800 1700 2500 DN80
DWL-75-2 2.5 37 19.92 703 20.35 719 75 100 69 2400 1800 1700 2650 DN80
DWL-75-3 3.5 51 16.3 575 15.87 560 75 100 69 2400 1800 1700 2650 DN80
DWL-90-2 2.5 37 26.07 921 26.45 934 90 120 72 2400 1800 1700 2750 DN80
DWL-90-3 3.5 51 19.54 690 19.49 688 90 120 72 2400 1800 1700 2750 DN80
DWL-110(W)-2 2.5 37 33.16 1171 29.9 1056 110 150 72 3000 2000 2000 3500 DN125
DWL-110(W)-3 3.5 51 25.6 904 23.92 845 110 150 72 2400 1800 1700 3000 DN80
DWL-132(W)-2 2.5 37 40.24 1421 40.98 1447 132 175 72 3000 2000 2000 3600 DN125
DWL-132(W)-3 3.5 51 27.23 961 29.43 1039 132 175 72 2400 1800 1700 3100 DN80
DWL-160(W)-2 2.5 37 49.42 1745 49.21 1738 160 215 76 3000 2000 2000 3900 DN125
DWL-160(W)-3 3.5 51 35.75 1262 34.98 1235 160 215 76 3000 2000 2000 3800 DN125
DWL-185(W)-2 2.5 37 56.02 1989 57.17 2019 185 250 79 3000 2000 2000 4100 DN125
DWL-185(W)-3 3.5 51 42.21 1490 44.16 1559 185 250 79 3000 2000 2000 4000 DN125
*) FAD in accordance with ISO 1217:2009, Annex C: Ansolute intake pressure 1 bar (a), cooling and air intake temperature 20ºC
**) Nosie level as per ISO 2151 and the basic standard ISO 9614-2, operation at maximum operating pressure and maximum speed; tolerance:±3 dB(A)
Specifications are subject to change without prior notice
US $3,000-30,000
/ Piece
|
1 Piece

(Min. Order)

###

Shipping Cost:

Estimated freight per unit.



To be negotiated

###

Lubrication Style: Oil-free
Cooling System: Air Cooling and Water Cooling
Power Source: AC Power

###

Customization:

###

Model Maximum working pressure Capacity(FAD)* Installed motor power Cooling
Method
Noise Level** Dimensions (mm) Weight Air Outlet
Pipe Diameter
50 Hz 60 Hz
bar(g) psig m³/min cfm m³/min cfm kW hp dB(A) L W H kG
DWW-45 7 102 7.07 250 7.16 253 45 60 Air
Cooling
W-water
Cooling
80 2100 1500 1790 2630 R1-1/2"
8 116 7.03 248 6.48 229 45 60 80 2100 1500 1790 2630 R1-1/2"
10 145 5.51 194 5.37 189 45 60 80 2100 1500 1790 2630 R1-1/2"
DWW-55 7 102 9.37 331 8.87 313 45 75 80 2100 1500 1790 2650 R1-1/2"
8 116 9.34 330 8.25 291 55 75 80 2100 1500 1790 2650 R1-1/2"
10 145 8.11 286 7.1 251 55 75 80 2100 1500 1790 2650 R1-1/2"
DWW-75 7 102 12.72 449 12.6 445 75 100 82 2300 1600 1790 2850 DN50
8 116 12.69 448 11.69 413 75 100 82 2300 1600 1790 2850 DN50
10 145 11.58 409 10.43 368 75 100 82 2300 1600 1790 2850 DN50
DWW-75W 7 102 12.72 449 12.6 445 75 100 82 2300 1600 1790 2850 DN50
8 116 12.69 448 11.69 413 75 100 82 2300 1600 1790 2850 DN50
10 145 11.58 409 10.43 368 75 100 82 2300 1600 1790 2850 DN50
DWW-90 7 102 13.66 482 14.62 516 90 120 82 2300 1600 1790 2850 DN50
8 116 13.64 482 14.6 515 90 120 82 2300 1600 1790 2850 DN50
10 145 12.64 446 12.86 454 90 120 82 2300 1600 1790 2850 DN50
DWW-90W 7 102 13.66 482 14.62 516 90 120 82 2300 1600 1790 2850 DN50
8 116 13.64 482 14.6 515 90 120 82 2300 1600 1790 2850 DN50
10 145 12.64 446 12.86 451 90 120 82 2300 1600 1790 2850 DN50
DWW-110 7 102 19.16 676 17.5 618 110 150 85 2800 1800 1860 3050 DN65
8 116 19.13 675 17.47 617 110 150 85 2800 1800 1860 3050 DN65
10 145 16.72 590 15.41 544 110 150 85 2800 1800 1860 3050 DN65
DWW-110W 7 102 19.16 676 17.5 618 110 150 85 2800 1800 1860 3050 DN65
8 116 19.13 675 17.47 617 110 150 85 2800 1800 1860 3050 DN65
10 145 16.72 590 15.41 544 110 150 85 2800 1800 1860 3050 DN65
DWW-132 7 102 22.63 799 23.29 822 132 175 85 2800 1800 1860 3385 DN65
8 116 22.6 798 23.27 822 132 175 85 2800 1800 1860 3385 DN65
10 145 20.28 716 20.46 723 132 175 85 2800 1800 1860 3385 DN65
DWW-132W 7 102 22.63 799 23.29 822 132 175 85 2800 1800 1860 3385 DN65
8 116 22.6 798 23.27 822 132 175 85 2800 1800 1860 3385 DN65
10 145 20.28 716 20.46 723 132 175 85 2800 1800 1860 3385 DN65
DWW-160 7 102 27.4 967 27.28 963 160 215 85 2800 1800 1860 3385 DN65
8 116 27.38 967 27.26 962 160 215 85 2800 1800 1860 3385 DN65
10 145 23.98 847 26.38 931 160 215 85 2800 1800 1860 3385 DN65
DWW-160W 7 102 27.4 967 27.28 963 160 215 85 2800 1800 1860 3385 DN65
8 116 27.38 967 27.26 962 160 215 85 2800 1800 1860 3385 DN65
10 145 23.98 847 26.38 931 160 215 85 2800 1800 1860 3385 DN65
DWW-185 7 102 30.37 1072 31.2 1102 185 250 85 2800 1800 1860 3685 DN65
8 116 30.34 1071 31.04 1096 185 250 85 2800 1800 1860 3685 DN65
10 145 27.34 965 29.16 1030 185 250 85 2800 1800 1860 3685 DN65
DWW-185W 7 102 30.37 1072 31.2 1102 185 250 85 2800 1800 1860 3685 DN65
8 116 30.34 1071 31.04 1096 185 250 85 2800 1800 1860 3685 DN65
10 145 27.34 965 29.16 1030 185 250 85 2800 1800 1860 3685 DN65
DWW-200W 7 102 34.17 1206 34.82 1229 200 270 88 3100 2150 2200 4500 DN100
8 116 34.14 1205 34.78 1228 200 270 88 3100 2150 2200 4500 DN100
10 145 30.55 1079 28.42 1004 200 270 88 3100 2150 2200 4500 DN100
DWW-220W 7 102 36.71 1296 37.35 1319 220 300 88 3100 2150 2200 4750 DN100
8 116 36.66 1295 37.3 1317 220 300 88 3100 2150 2200 4750 DN100
10 145 34.03 1202 31.3 1105 220 300 88 3100 2150 2200 4750 DN100
DWW-250W 7 102 43.71 1543 44.27 1563 250 350 90 3100 2150 2200 4950 DN100
8 116 43.66 1542 44.24 1562 250 350 90 3100 2150 2200 4950 DN100
10 145 39.16 1383 37.2 1314 250 350 90 3100 2150 2200 4950 DN100
DWW-280W 7 102 47.65 1683 47.25 1668 280 375 92 3400 2400 2200 5100 DN100
8 116 47.61 1681 47.21 1667 280 375 92 3400 2400 2200 5100 DN100
10 145 43.58 1539 41.23 1456 280 375 92 3400 2400 2200 5100 DN100
DWW-315W 7 102 52.44 1852 52.3 1847 315 425 92 3400 2400 2200 5150 DN100
8 116 52.4 1850 52.27 1846 315 425 92 3400 2400 2200 5150 DN100
10 145 47.53 1678 46.6 1645 315 425 92 3400 2400 2200 5150 DN100
DWW-355W 7 102 70.38 2485 71.97 2541 355 475 92 3800 2350 2400 6800 DN125
8 116 69.56 2456 59.6 2104 355 475 92 3800 2350 2400 6800 DN125
10 145 58.66 2071 58.65 2070 355 475 92 3800 2350 2400 6800 DN125
DWW-400W 7 102 80.75 2851 77.36 2731 400 535 92 3800 2350 2400 7200 DN125
8 116 71.55 2526 71.75 2533 400 535 92 3800 2350 2400 7200 DN125
10 145 69.43 2451 62.87 2219 400 535 92 3800 2350 2400 7200 DN125
*) FAD in accordance with ISO 1217 : 2009, Annex C: Absolute intake pressure 1 bar (a), cooling and air intake temperature 20 °C
**) Noise level as per ISO 2151 and the basic standard ISO 9614-2, operation at maximum operating pressure and maximum speed; tolerance: ± 3 dB(A)
***) N/A-Not Available
****) W-Water cooling

###

Model Maximum working pressure Capacity(FAD)* Installed motor power Cooling
Method
Noise Level** Dimensions (mm) Weight Air Outlet Pipe Diameter
50 Hz 60 Hz
bar(g) psig m³/min cfm m³/min cfm kW hp dB(A) L W H kG
DWL-55-2 2.5 37 15.33 541 14.44 510 55 75 Air
Cooling
W-water Cooling
69 2400 1800 1700 2500 DN80
DWL-55-3 3.5 51 12.78 451 10.85 383 55 75 69 2400 1800 1700 2500 DN80
DWL-75-2 2.5 37 19.92 703 20.35 719 75 100 69 2400 1800 1700 2650 DN80
DWL-75-3 3.5 51 16.3 575 15.87 560 75 100 69 2400 1800 1700 2650 DN80
DWL-90-2 2.5 37 26.07 921 26.45 934 90 120 72 2400 1800 1700 2750 DN80
DWL-90-3 3.5 51 19.54 690 19.49 688 90 120 72 2400 1800 1700 2750 DN80
DWL-110(W)-2 2.5 37 33.16 1171 29.9 1056 110 150 72 3000 2000 2000 3500 DN125
DWL-110(W)-3 3.5 51 25.6 904 23.92 845 110 150 72 2400 1800 1700 3000 DN80
DWL-132(W)-2 2.5 37 40.24 1421 40.98 1447 132 175 72 3000 2000 2000 3600 DN125
DWL-132(W)-3 3.5 51 27.23 961 29.43 1039 132 175 72 2400 1800 1700 3100 DN80
DWL-160(W)-2 2.5 37 49.42 1745 49.21 1738 160 215 76 3000 2000 2000 3900 DN125
DWL-160(W)-3 3.5 51 35.75 1262 34.98 1235 160 215 76 3000 2000 2000 3800 DN125
DWL-185(W)-2 2.5 37 56.02 1989 57.17 2019 185 250 79 3000 2000 2000 4100 DN125
DWL-185(W)-3 3.5 51 42.21 1490 44.16 1559 185 250 79 3000 2000 2000 4000 DN125
*) FAD in accordance with ISO 1217:2009, Annex C: Ansolute intake pressure 1 bar (a), cooling and air intake temperature 20ºC
**) Nosie level as per ISO 2151 and the basic standard ISO 9614-2, operation at maximum operating pressure and maximum speed; tolerance:±3 dB(A)
Specifications are subject to change without prior notice

Choosing the Right Air Compressor For Your Home

You will find that air compressors are indispensable tools for a variety of situations, including garages, home workshops, and basements. These tools can power a variety of tools, and each model is sized to suit the job at hand. Because air compressors have only one motor, they are lightweight, compact, and easy to handle. Using one air compressor to power several tools will also reduce the wear and tear on individual components. This article will introduce some important characteristics to look for when choosing the right air compressor for your home.

Positive displacement

A positive displacement compressor applies pressure to a fluid, whereas a centrifugal one does the opposite. A positive displacement compressor creates the desired pressure by trapping air and increasing its volume. Its discharge valve releases the high-pressure gas. These compressors are used in industrial applications and nuclear power plants. The difference between a positive and negative displacement compressor is that a positive displacement compressor can compress and release air at a consistent rate.
A positive displacement air compressor uses a reciprocating piston to compress air. This reduces the volume of the air in the compression chamber, and a discharge valve opens when the pressure reaches the desired level. These compressors are used in bicycle pumps and other pneumatic tools. Positive displacement air compressors have multiple inlet ports and have several configurations. Positive displacement air compressors have a single-acting and double-acting piston, and can be oil-lubricated or oil-free.
A positive displacement air compressor is different from a dynamic compressor. It draws air into the compression chambers and then releases the pressure when the valve is opened. Positive displacement compressors are common in industrial applications and are available in single-acting, double-acting, and oil-lubricated models. Large piston compressors have ventilated intermediate pieces and crossheads on gudgeon pins. Smaller models have permanently sealed crankcases with bearings.
air-compressor

Oil-free

Oil-free air compressors have some advantages over their oil-lubricated counterparts. They do not require lubrication oil because they are coated with Teflon. The material has one of the lowest coefficients of friction and is layered, so it slides past other layers with little effort. Because of this, oil-free compressors tend to be cheaper and still deliver comparable performance. Oil-free compressors are a good choice for industrial applications.
The life of an oil-free air compressor is significantly longer than an oil-lubricated counterpart. These models can operate up to 2,000 hours, four times longer than the average oil-lubed compressor. Oil-free compressors also have a significantly lower operating noise than their oil-lubricated counterparts. And because they don’t need oil changes, they are quieter. Some even last up to 2,000 hours.
An oil-free air compressor is a good choice if your application requires high levels of purity. Several applications require ultra-pure air, and even a drop of oil can cause product spoilage or damage to production equipment. In addition to the health risks, an oil-free air compressor reduces the costs associated with oil contamination and minimizes leaks. It also eliminates the need for oil collection, disposal, and treatment.
A typical oil-free air compressor is very efficient, requiring only about 18% of the full load horsepower. However, oil-free compressors have a higher risk of premature failure and are not recommended for large-scale industrial applications. They may also use up to 18% of the compressor’s full capacity. They may sound appealing, but you must make sure you understand the benefits of an oil-free air compressor before choosing one for your industrial applications.

Single-stage

A single-stage air compressor is designed to provide the power for a single pneumatic tool or device. These machines are generally smaller than two-stage compressors and produce less heat and energy. These machines aren’t designed for heavy-duty industries, but they are still highly effective for a variety of applications, including auto shops, gas stations, and various manufacturing plants. They can also be used in borewells, as they are suitable for small spaces with low air flow requirements.
A single-stage air compressor has one cylinder and two valves – the inlet and the delivery valves. Both of these valves function mechanically, with the inlet valve controlling torque and the delivery one controlling air pressure. Generally, single-stage compressors are powered by a gas engine, but there are also electric models available. The single-stage air compressor is the most common type of air compressor. It has a single cylinder, one piston, and one air cylinder.
The single-stage air compressors are used for small projects or personal use. A two-stage air compressor is more effective for industrial projects. Its longer air end life makes it more efficient. It is also more efficient for use in the automotive industry, where the engine has many cylinders. In general, single-stage compressors require a higher power level. The single-stage model is ideal for small projects, while a two-stage one is suitable for larger-scale arsenals.
air-compressor

CFM

The cubic foot-per-minute (CFM) of an air compressor is the output of the machine. In order to calculate the CFM level, start by looking at the compressor’s specifications. You should know how many cubic feet the unit can hold and how many pounds per square inch it can compress. Once you have these information, you can calculate the CFM. Now you can use these numbers to select an appropriate air compressor for your needs.
The most common way to increase the CFM of an air compressor is to turn the regulator down. By turning the dial down, the air compressor will produce more than 10 CFM. You can also try connecting two output valves. Make sure that the settings are adjusted properly before you begin. This will ensure that your air compressor is functioning at its maximum efficiency and lifespan. To increase the CFM of your air compressor, first check that your regulator is calibrated for the desired pressure level.
To calculate the CFM of an air compressor, first determine the tank volume of the machine. Then, multiply this volume by the time it takes to fill the tank. Then, divide the result by 60 seconds to calculate the CFM. Once you know how much air your machine can hold, you can choose a suitable air compressor. If you’re working in a confined area, you should buy a tool with a large tank.

PSI

The PSI of an air compressor is the pressure that it can output. A typical air compressor has a gauge connected to the airline at the bottom, next to it, or between the two. The gauge tells the actual pressure of the air compressor, while the cut-out pressure is determined by the manufacturer. The manufacturer recommends that you set the cut-out pressure twenty to forty PSI higher than the factory recommended pressure. If you want to set the pressure for your nail gun, you can use the cut-in and cut-out pressures on your compressor, and the tank won’t exceed this range.
The PSI of an air compressor measures the force that it can deliver, which is often in pounds per square inch. For most air tools, you need at least forty to 90 psi. In general, reciprocating air compressors work on an on/off basis. This relationship is known as the duty cycle. All air compressors are rated for a particular duty cycle, such as fifty percent on and twenty-five percent off.
The Psig of an air compressor is not free, as many people believe. The PSI of an air compressor is not free, but it is essential to maintain it for safe operations. If you’re having trouble maintaining a consistent pressure, consider turning down the PSI of your compressor by 2 psig. This will determine the critical pressure for the machine. You’ll also increase the amount of energy in the system by one percent.
air-compressor

Power source

The power source for an air compressor is crucial in its operation. Without the correct voltage and amperage, air compressors will not function properly. The power source must be close to the compressor so that it can plug into an electrical outlet. If it is too far from the outlet, the compressor may not be able to build enough pressure. When this happens, the fuse inside the air compressor will turn off to protect the user. The power source should be a safe distance from the compressor.
Most manufacturers do not specify the power source for an air compressor. Depending on the horsepower, the compressor will require approximately four amps of power. A one-horsepower compressor would draw about twelve amps. If it were powered by a typical 120-volt household supply, its motor would exceed the 15-amp breaker capacity. A larger air compressor, however, will require a separate 15-amp power source, making it impossible to use it with this type of power source.
The power source for an air compressor is typically electrical alternating current (AC) that is equivalent to the voltage on a standard wall outlet. A three-phase air compressor, on the other hand, requires a special AC supply with three electrical offset pulses. Regardless of the type of air compressor, the power source must be compatible with the incoming power service. One of the most common problems when attempting to connect an air compressor to an AC power source is undersized wire. This results in low voltage and high amperes, tripping of over-load relays and blown fuses.

China Industrial Variable Frequency Drive VSD/VFD Inverter Dry Electric Direct Driven (no oil ) Oil-Free Silent Oxygen Screw Air Compressor for medical     with high qualityChina Industrial Variable Frequency Drive VSD/VFD Inverter Dry Electric Direct Driven (no oil ) Oil-Free Silent Oxygen Screw Air Compressor for medical     with high quality
editor by czh 2022-11-26