Máy làm sạch stencil bằng khí nén SCM-700

  • High density isobaric double-sided rotating cleaning nozzle; Strong cleaning power without damaging the tension of the stencil
  • System integration of global high-quality components; Ensure excellent quality, stable performance, and long service life.
  • The replaceable modular controller and quick plug design make maintenance simple and convenient.
  • Three level and five layer filtration system, low exhaust pipe design, solvent recycling, low liquid consumption;

Sự miêu tả

Tính năng sản phẩm:

  • Used for cleaning solder paste, red glue stencils, vân vân
  • Adopting a high-precision filtration system
  • The liquid and pump pressure can be displayed on the panel pressure gauge
  • Cleaning counting function, which can automatically accumulate the number of cleaning stencils
  • The cleaning pressure can be independently adjusted, suitable for any material mesh board
  • Unique exhaust device design, lower liquid consumption
  • High speed centrifugal evaporation, No water mark residue on the workpiece surface
  • Cleaning process: chemical cleaning ( options ) – DI water rinsingtwo fluid cleaningcentrifugal drying.
  • Solvent filter circulation,low operation cost.
  • Stainless steel canbinet with good reliability and can resisit any hurt by acid and alkali cleaning chemistry.

Máy làm sạch stencil bằng khí nén SCM-700

Mục tham số
Cleaning Stencils Size 750mm(L) ×750mm(W) × 40mm(H), or customer specilized
Liquid Tank Capability 50L
Recommend Liquid Consumption 40L
Cleaning Method 360°rotary spray solvent and high-pressure air spray (cleaning → drying)
Clean time 2~5 minutes
Drying time 2~5 minutes
Áp suất không khí 0.45Mpa ~ 0.7Mpa
Air Consumption 400-600L/Min
Circular filtering method Adopting three-level filtering
  1st level filter box collection
  2nd level filter: 10 μ M (filter particles, paper scraps)
  Level 3 filter: 1 µ m (filtering: ink, glue, silver paste)
Kích thước cổng xả Φ124(W)×50mm(H)
Cân nặng 300Kg
Kích thước 1000mm(L) ×750mm(W) × 1750mm(H)