Inground 2-Post Lift, 10,000 lb. Capacity, Electric/Hydraulic, Quick Cycle (Challenger Lift: model EV1020-QC)

$14,107.40

SKU: EV1020-QC Category: Brand:

Description

Challenger’s electric hydraulic cassette-style 10,000 lb. capacity inground lift meets the demands of professional service facilities. With a smaller footprint, your shop can maximize service bays. The EV1020 has 3-stage front and rear arms or a fixed drive-on pad. We added Quick Cycle™ models that can rise in just 27 seconds and lower in only 17 seconds. Expand your service potential with our most versatile, easy-to-operate inground lift.

ALI/ETL certified.

  • 10,000 lb. lift capacity
  • 3-stage front and 3-stage rear arms provide access to the lift points of a wide range of cars and trucks, maximizing revenue potential
  • Also available with a drive-on style pad (XP9) to aid in quick vehicle spotting for express bays
  • 8 1/2” diameter chrome pistons provide greater stability under load
  • Chrome non-breathing ram style cylinder provides for longer lift life
  • Enhanced raised wiper at top and bottom of bearing provides better grease retention and minimizes contaminates from entering into bearings
  • Long bearing contact provides increased stability
  • Mechanical lock engages every 3″ allowing ergonomic working height for technicians to increase productivity and minimize fatigue
  • Stainless steel air lock release cylinder promotes longer working life with its corrosion resistant design
  • Fully-contained and sealed recycled polymer cassette tub eliminates risk of hydraulic fluid seeping into the ground
  • Premium double telescoping screw pads adjust to multiple heights minimizing the need for adapters
  • 87″ drive-thru accommodates wider vehicles, minimizes tire damage and provides for easy drive-on
  • Quick Cycle™ models reduce vehicle travel time by 30 percent
  • Wide range of upgrades to further customize your fleet
  • Premium powder coat finish on bolsters and arms provides long-lasting durability

With Quick Cycle Increasing Rise/Descent Speed”