YC Compressed Air Filter

Description

YC COMPRESSED AIR FILTER

YC Compressed Air Filter

Why We Use Air Filters?

  • The compressed air contains contaminations including moisture pipe scale and rust.
  • Without filters, instruments and tools will malfunction.
  • Maintenance of the compressed air system costs will increase and end products will be spoiled

How Filters Work? How To Select?

  • YC filters feature an inside and outside air flow, a long understood and proved method of combining filtration efficiency and energy efficiency.
  • The inner element surface acts as a pre-filter to remove most water, dust and contaminants.
  • The larger outside pores allows the air stream to pass smoothly to minimize the pressure drop.
Specification Pre-filter General Purpose Oil Removal Activated Carbon
Grade QF PF HF CF
Particle Removal (Micron) 3 1 0.01 0.01
Max. oil carry over at 21°C (mg/m³) 3 0.5 0.01 0.003
Max. working temperature (°C) 100 100 100 60
Initial pressure loss (mbar) 40 80 100 80
Pressure loss for element change (mbar) 700 700 700 700
Max. working pressure (bar) 16 16 16 16

Strong Points

Surface Protection

  • All sizes of housings are unique surface treatment of corrosion resistant both inside and outside.

 

High Efficiency & Life Span

  • Unique element interface for high efficiency filter performance.
  • Filter element performance guaranteed for 12 months
  • YC filter elements have 8-10um pores on the inner surface, and widening to 40-80um pores on the outer surface for optimize filtration efficiency versus pressure drop.

The filtration Stage of Requirement of ISO 9001

Quality Class Solid particles, max. amount of particles per m3 Pressure dew point Oil (incl. oil vapour) Air qualities in accordance with ISO 9001
0.1-0.5um 0.5-1.0um 1.0-5um ˚C at 7 bar Mg/m3 Depending on the filtration stage. The requirement of ISO 9001 are even exceeded.
1 ≤ 20,000 ≤ 400 ≤ 10 ≤ -70 ≤ 0.01
2 ≤ 400,000 ≤ 6,000 ≤ 100 ≤ -40 ≤ 0.1
3 ≤ 90,000 ≤ 1,000 ≤ -20 ≤ 1.0
4 ≤ 10,000 ≤ +3 ≤ 5
5 ≤ 100,000 ≤ +7 > 5
6 ≤ 5 mg/m3 ≤ +10

Technical Data

Model Flow Rate
[M3/min/cfm]
Conn.
[BSP]
Element Model Housing Dimensions (mm)
NT 2312 1.0 / 36 ¾” E 2312 240 164 100
NT 2320 1.8 / 64 ¾” E 2320 240 164 100
NT 2334 3.9 / 140 1” E 2334 300 205 130
NT 2371 8.6 / 307 1 ½” E 2371 390 295 130
NT 2412 13.1 / 466 2” E 2412 520 295 160
NT 2415 19.7 / 699 2 ½” E 2415 520 650 172
NT 2560 26.0 / 918 3” E 2560 590 420 210

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