logo
SUZHOU KACO VACUUM EQUIPMENT CO.,LTD. scorpiosyy@foxmail.com
280m3/h,BSJ70L Roots Booster Vacuum Pump 0.75kW ,AL alloy

280m3/h,BSJ70L Roots Booster Vacuum Pump 0.75kW ,AL alloy

  • Highlight

    BSJ70L Roots Booster Vacuum Pump

    ,

    Roots Booster Vacuum Pump 280m3/H

    ,

    0.72kW roots blower pump

  • Features
    Heat Sink, Corrosion Resistance, Efficient Energy Saving
  • Surface
    Painting
  • Color
    White
  • Pumping Rate
    280 M3/h (165cfm)
  • Material
    Aluminium Alloy
  • G.W.
    63kgs
  • N.W.
    52kgs
  • Meas.
    85*40*42cm
  • Place of Origin
    China
  • Brand Name
    KACO
  • Certification
    CE
  • Model Number
    BSJ70L
  • Minimum Order Quantity
    1 set
  • Price
    USD 1600 per set
  • Packaging Details
    wooden box
  • Delivery Time
    5-10 days after get the payment
  • Payment Terms
    100% T/T
  • Supply Ability
    1000 sets per month

280m3/h,BSJ70L Roots Booster Vacuum Pump 0.75kW ,AL alloy

BSJ70L 165cfm (280m³/h) 50Hz 0.75kW 2Poles Mechanical Booster Pump,Roots Pump
 
 
Description
 
The roots vacuum pump, also known as a roots blower, is a positive-displacement pump that operates by using two synchronized lobed rotors (shaped like "roots") to transfer gases and create vacuum conditions. Its core function is to efficiently increase the pumping speed in the medium to high vacuum range, often used in conjunction with a backing pump (such as a rotary vane pump) to form a compound vacuum system. Below are its specific functions and application characteristics:
 
 
Characteristics:

  • The use of an oil-free intermediate seal,and multiple-sealed ways ensures a high clean vacuum environment in the rotor chamber.
  • Advanced processing ensures a good geometrical symmetry of the rotors, as well as low noise and long service life.
  • A special shaft seal is used to achieve long, stable running without oil leakage.
  • The BSJ-L series is made of all-aluminum alloy, a heat sink, corrosion-resistant, and efficient, energy-saving.
  • The BSJ-LC series is made of cast iron. The unique liquid coupling method enables the pump to start directly under the atmosphere, which greatly reduces the time of pumping.
  • Compact structure, light weight, and small volume.

 
​Technical Parameter :
 

ModelUnitsBSJ70L
Pumping Rate50 Hzm³h-1 / Lmin-1280/4670
60 Hz330/5500
Max Inlet Pressure50HzPa1.2x103
60HzPa9.3x102

 

Ultimate Vacuum

 

Pa

 

4×10-1

 

Motor PowerkW(hp)0.75 (1)
Inlet--VG80
Outlet--VF80
Cooling MethodWater cooled
Oil NeedL0.8
Ambient Temp.5~40
Vacuum Pump Oil--BSO-46

 
Note: The value of 'Ultimate Pressure' in this sheet is measured by a Pirani gauge when the Baosi special pump oil is used,and the value should be 4x10-3 if the McLeod gauge is used.

The cooling water temperature of inlet port must be 5~30℃.,When the temperature is too low, keep it in an environment that is not easy to condensation.

 
 
Performance Curve:
 
280m3/h,BSJ70L Roots Booster Vacuum Pump 0.75kW ,AL alloy 0
 
 
Dimensions:
 
280m3/h,BSJ70L Roots Booster Vacuum Pump 0.75kW ,AL alloy 1
 
 
 
 
Applications

  • Semiconductor Fabrication
  • LED & Display Manufacturing
  • Vacuum Heat Treatment
  • Physical Vapor Deposition (PVD)
  • Vacuum Distillation & Drying
  • Food Preservation & Processing
  • Vacuum Packaging
  • Scientific Research

 
 

Key Roles in Compound Vacuum Systems

  • As a Booster Pump
    When paired with a backing pump (e.g., a rotary vane pump or a screw pump), the roots pump acts as a "booster" to bridge the gap between the backing pump's capacity and the system's required vacuum performance. For example:
    • The backing pump handles the low vacuum range (high pressure), while the roots pump takes over in the medium to high vacuum range, reducing overall evacuation time.
    • This combination enables systems to reach higher vacuum degrees (e.g., 10⁻³ Pa) more efficiently than single pumps.
  • Energy Savings & Efficiency Enhancement
    By sharing the pumping load, roots pumps reduce the workload on backing pumps, extending their lifespan and lowering energy consumption. For instance, in large vacuum chambers, a roots pump can quickly remove most gases, while the backing pump focuses on achieving the ultimate vacuum.