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FASV+-TMA Two-Stage PM VSD Screw Air Compressors

ESSENCE Two-Stage Screw Air Compressors Model FASV--TMA
FASV+-TMA models: FASV+22A*TMA, FASV+37A*TMA, FASV+45A*TMA, FASV+55A/W*TMA, FASV+75A/W*TMA, FASV+90A/W*TMA, FASV+110A/W*TMA, FASV+132A/W*TMA. Air delivery at 0.7 MPa (m³/min): 1.80~4.50, 2.96~7.40, 4.16~10.40, 5.12~12.80, 7.00~17.50, 8.32~20.80, 9.80~24.50, 12.00~30.00. At 0.8 MPa (m³/min): 1.72~4.30, 2.88~7.20, 3.92~9.80, 4.80~12.00, 6.60~16.50, 7.88~19.70, 9.00~22.50, 11.20~28.00. At 1.0 MPa (m³/min): 1.36~3.40, 2.40~6.00, 3.50~8.75, 4.28~10.70, 5.84~14.60, 6.76~16.90, 7.84~19.60, 9.36~23.40. At 1.25 MPa (m³/min): 1.16~2.90, 2.24~5.60, 3.08~7.70, 3.76~9.40, 5.16~12.90, 5.84~14.60, 7.12~17.80, 8.60~21.50. Power (kW): 22, 37, 45, 55, 75, 90, 110, 132. Starting method: PM VSD start. Voltage/frequency (V/Hz): 220/380/415/440 V, 50/60 Hz. Aftercooler outlet temperature (°C): ≤ ambient temperature +15 °C. Drive method: coupling drive. Air outlet (in.): G1 1/4, G2, G2, G2, G2, square flange DN80, square flange DN80, flange DN80 (JB/T81-1994).
Starting Method
Type: PM VSD start
Voltage / Frequency
V/Hz 220/380/415/440V、50/60Hz
Aftercooler Outlet Temperature
°C ≤ ambient temperature +15 °C
Drive Method
Coupling drive
Screw air compressorPM VSD air compressorTwo-stage air compressor

ESSENCE FASV+-TMA Two-Stage PM VSD Screw Air Compressor: 22–132kW

Within the same power range, how finely the models are stepped often decides whether a machine is a "just right" fit. If the only choices are 55kW and 75kW, a plant whose air demand falls between them has to size up; the denser the steps, the easier it is to find the unit that matches the need.

The ESSENCE FASV+-TMA two-stage high-efficiency PM VSD screw air compressor offers exactly this kind of fine stepping. It comprises eight models — FASV+22A*TMA, FASV+37A*TMA, FASV+45A*TMA, FASV+55A/W*TMA, FASV+75A/W*TMA, FASV+90A/W*TMA, FASV+110A/W*TMA and FASV+132A/W*TMA — covering 22–132kW with a working pressure of 0.7–1.25MPa. ESSENCE is a wholly owned subsidiary of Fusheng Group, and its products are backed by Fusheng's technology and service system. Voltage/frequency coverage spans 220/380/415/440V and 50/60Hz, so the units adapt to different regional power grids — a particular advantage for companies with export business.

Denser Steps, a Closer Fit

Eight power steps run from 22kW up to 132kW, with small gaps between adjacent steps. The direct benefit to the user is that a model matching actual air demand is easier to find, cutting the long-term energy waste of oversizing and the overload risk of undersizing. For plants that bring production lines on stream in phases and ramp up air demand step by step, the fine steps mean every expansion stage has a corresponding model. Note that the eight models are not simply spread evenly by power; they are divided around common air-demand levels so that each step maps to a real demand range.

The Energy Efficiency Logic of Two-Stage Compression

Air heats up as it is compressed, and the hotter it gets, the more power it takes to keep compressing. Two-stage compression splits the process into two stages, cooling the air in between before it enters the second stage, so the air reaches the later stage at a lower temperature and smaller volume, reducing overall compression work. This structure shows its advantage most clearly at higher pressures, and it is the technical basis for the FASV+-TMA series' "high-efficiency" positioning. In other words, two-stage compression is not about making the machine more complicated; it uses more sensible heat management to recover the efficiency that high temperatures would otherwise consume.

Four Pressure Points, Air Delivery at a Glance

The easiest mistake in selection is looking only at the "maximum air delivery". These models list air delivery at each pressure so it can be checked directly:

Model0.7MPa0.8MPa1.0MPa1.25MPa
FASV+221.80~4.501.72~4.301.36~3.401.16~2.90
FASV+372.96~7.402.88~7.202.40~6.002.24~5.60
FASV+454.16~10.403.92~9.803.50~8.753.08~7.70
FASV+555.12~12.804.80~12.004.28~10.703.76~9.40
FASV+757.00~17.506.60~16.505.84~14.605.16~12.90
FASV+908.32~20.807.88~19.706.76~16.905.84~14.60
FASV+1109.80~24.509.00~22.507.84~19.607.12~17.80
FASV+13212.00~30.0011.20~28.009.36~23.408.60~21.50

(Air delivery in m³/min)

The pattern is clear: the higher the pressure, the lower the air delivery for the same model. So the right approach is to fix the usual working pressure first, then match air delivery in that column rather than taking the maximum across the row.

Specifications at a Glance

ItemSpecification
Number of models8 (22 / 37 / 45 / 55 / 75 / 90 / 110 / 132 kW)
Power range22 ~ 132 kW
Working pressure0.7 ~ 1.25 MPa
Air delivery1.16 ~ 30.00 m³/min
Starting methodPM VSD
Voltage/frequency220/380/415/440V, 50/60Hz
DriveCoupling drive
Aftercooler outlet temperature≤ ambient + 15°C
Air outletG1 1/4 / G2 / square flange DN80 / flange DN80

The units use PM VSD starting, with speed adjusted continuously to air demand to cut no-load waste. The coupling drive keeps the structure simple and routine maintenance items few. Aftercooler outlet temperature is held within ambient + 15°C, easing the load on downstream drying and filtration equipment. Air outlets are fitted by model with G1 1/4, G2, square flange DN80 or flange DN80, with port sizes scaling up along with the power step to suit plant piping networks of different scales.

Who It Suits

  • Plants whose air demand falls between standard steps: the fine steps make a close match easier to find;
  • Factories brought on stream in phases with gradually rising demand: each expansion stage can find a matching model in the same series;
  • Workshops whose pressure needs shift with product changeovers: air delivery is stated clearly for all four pressure points;
  • Users focused on long-term running economy: two-stage compression and PM VSD together lower energy consumption.

In addition, all eight models use PM VSD starting and coupling drive, keeping the control method and maintenance practice consistent, so a company can standardise its O&M even when different power steps are installed in different workshops.

Selection Advice

  1. Fix the pressure first, then pick the air delivery: check the table at the usual working pressure rather than misusing the maximum;
  2. Prefer fine steps over coarse ones: fine steps reduce the long-term waste of oversizing;
  3. Leave room to expand: adding a unit within the same series at expansion time keeps control logic and spare parts easier to standardise;
  4. Plan compressed air treatment alongside: configure drying and filtration to process requirements and cost them together with the main unit.

Conclusion

The ideal in selection is a machine that fits the working conditions "just right". With eight power steps and complete data at four pressure points, FASV+-TMA makes that judgement easier. For a plant that cannot estimate its air demand precisely, a model range with fine steps and complete data is itself a form of risk control. For procurement, rather than agonising over a few widely spaced steps, it is better to choose a series with finer steps and fuller data, and let selection come back to the data itself.

Technical Specifications

Starting MethodType: PM VSD start
Voltage / FrequencyV/Hz 220/380/415/440V、50/60Hz
Aftercooler Outlet Temperature°C ≤ ambient temperature +15 °C
Drive MethodCoupling drive
Air Outletin. Flange DN80, JB/T81-1994; Flange DN100, JB/T81-1994; Flange DN100, JB/T81-1994
Working Pressure0.7~1.25 MPa; air delivery 1.16~73.00 m³/min; power range 22~355 kW
Working Pressure0.7~1.25 MPa
Air Delivery1.16~73.00 m³/min
Power Range22~355 kW
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