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2 Liter Tri-Shaft Planetary Vacuum Mixer with Vacuum Pump & Water Chiller - MSK-SFM-2L-A

2 Liter Tri-Shaft Planetary Vacuum Mixer with Vacuum Pump & Water Chiller - MSK-SFM-2L-A

SKU: msk-sfm-2l-a

Price: RFQ

Specifications

MSK-SFM-2L is a Tri-Shaft Planetary Vacuum Mixer with a 2-liter container and PLC Touch Panel Control. Such a vacuum mixer incorporates the unique tri-shaft stirring design to ensure a gas-bubble-free blending of complex materials under vacuum with extreme uniformity. Furthermore, an observation window on the mixing tank provides a better way to monitor the entire mixing process. MSK-SFM-2L is an excellent tool for preparing LiCoO3, LiFePO4, Phosphorus, and ceramic slurries and provides much better results in dispersion and uniformity. Note: Revised vacuum pump and water chiller cost since April 25, 2016. SPECIFICATIONS Standard Version MSK-SFM-2L For Viscosity <= 9000 High Dispersing Speed Version MSK-SFM-2L-A For Viscosity <= 5000 Mixing Blades Speed & Power Stirring : 0 ~ 112 RPM , 750W Dispersing : 0 ~ 3354 RPM, 750W For Viscosity: 100 - 9000 mPa·s (cps) Stirring: 10~ 150 RPM , 200W Dispersing: 200~5000 RPM, 200W For Viscosity: 100 - 5000 mPa·s (cps) Dimensions 970mm × 840mm × 1050mm (W × D × H) Mixing Tank: 180mm Dia. × 135mm Height 460mm × 760mm × 980mm (W × D × H) Mixing Tank: 180mm Dia. × 135mm Height Power Consumption 2kW (Recommend 20A Outlet for pump cold start) 1kW (Recommend 20A Outlet for pump cold start) Working Voltage 208 - 240V AC, 50/60HZ, Single phase (Power cord included) 220V AC Power plug is not included. Please click here to order the plug Mixing Tank Diameter 40mm Mixing Tank Vertical Distance 130mm, manual Mixing Tank Dimension 180 mm I.D. x 118 mm H 3.0 Liter (total volume) Effective capacity for mixing: 2.0 Liter Mixing Blades 3 axis planetary mixing 2 stirring blade 1 dispersing blade 1 spatula Vacuum Pump One double-step rotary vane vacuum pump is included Liquid Cooling One water chiller with 9L tank - EQ-KJ3000 is included PLC Control Panel Digital touchscreen for efficient adjustments Compliance CE Certified NRTL or CSA certification is available upon request at an extra cost Warning The recommended operating time is (this restriction applies to model # MSK-SFM-2L-A only) : < 1 hr @ 8000RPM dispersing. < 2 hr @ 7000RPM dispersing. < 3 hr @ 6000RPM dispersing. < 4 hr @ 5000RPM dispersing. Continous @ 4000RPM dispersing. Please adopt feed-batch mode when adding solid powder into dispersion liquid. One-time feeding will cause high resistance towards shaft/blade, as well as local overheating.


Standard Version MSK-SFM-2L
For Viscosity <= 9000 
  High Dispersing Speed Version MSK-SFM-2L-A
  For Viscosity <= 5000 
Mixing Blades Speed & Power Stirring : 0 ~ 112 RPM , 750W
Dispersing : 0 ~ 3354 RPM, 750W
For Viscosity: 100 - 9000 mPa·s (cps)
Stirring: 10~ 150 RPM , 200W
Dispersing: 200~5000 RPM, 200W
For Viscosity: 100 - 5000 mPa·s (cps)


Dimensions
  • 970mm × 840mm × 1050mm (W × D × H)
  • Mixing Tank: 180mm Dia. × 135mm Height
   
  • 460mm × 760mm × 980mm (W × D × H)
  • Mixing Tank: 180mm Dia. × 135mm Height
 
Power Consumption
  • 2kW (Recommend 20A Outlet for pump cold start)
  • 1kW (Recommend 20A Outlet for pump cold start)
Working Voltage
Mixing Tank Diameter
  • 40mm
Mixing Tank Vertical Distance
  • 130mm, manual
Mixing Tank Dimension
  • 180 mm I.D. x 118 mm H
  • 3.0 Liter (total volume) 
  • Effective capacity for mixing: 2.0 Liter
Mixing Blades 
  • 3 axis planetary mixing
  • 2 stirring blade
  • 1 dispersing blade
  • 1 spatula 

Vacuum Pump

Liquid Cooling 

                                     

PLC Control Panel

Digital touchscreen for efficient adjustments
    
Compliance
Warning
  • The recommended operating time is (this restriction applies to model # MSK-SFM-2L-A only):
  • < 1 hr @ 8000RPM dispersing.
  • < 2 hr @ 7000RPM dispersing.
  • < 3 hr @ 6000RPM dispersing.
  • < 4 hr @ 5000RPM dispersing.
  • Continous @ 4000RPM dispersing.
  • Please adopt feed-batch mode when adding solid powder into dispersion liquid. One-time feeding will cause high resistance towards shaft/blade, as well as local overheating.

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