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890PG Hydraulic Pipe Cutting Power Cutter
If you’re looking for the highest level of performance and cutting capability, look no further. The 890PG Hydraulic pipe cutting power cutter offers cutting depths up to 25” (63 cm) in ductile iron, cast iron, PVC, HDPE, and Insituform lining. The deep cutting ability of the 890PG with PowerGrit® utility chain, allows the operator to make a single cut from one side meaning less excavation is required. The 890PG is also capable of operating the full-line of 890F4 FORCE4® concrete cutting chains, meaning you can use the saw on masonry, stone, and even reinforced concrete - perfect for pipe taps, utility vaults, bridge work, and other utility applications.

FEATURES AND BENEFITS

  • Designed for heavy use
  • Also operates FORCE4® chain
  • Increased safety
  • Better operator control
  • Reduced excavation
  • Better access
  • Versatility

TECHNICAL SPECIFICATIONS

8 GPM (30 LPM)

Weight 27.3 lbs (12.4 kg) with 15-inch (38 cm) bar and chain
Bar Length Up to 25 in (63 cm)
Motor Speed 6100 rpm
Powerhead Dimensions 23 in (58.5 cm) length; 10.5 in (26.5 cm) height; 9.5 in (24 cm) width
Torque 122 in-lbs (13.8 Nm)
Horsepower 6 hp (4,6 kW)
Hydraulic Supply 8 gpm (30 lpm), 2500 psi (172.5 bar)
Noise Level 98 dB @ 3 ft (1 m) (Sound pressure level); 107 dB @ 3 ft (1m) (Sound power level)
Vibration Level 2.0 m/second2 (front handle); 6.0 m/second2 (rear handle)
Water Supply Minimum 20 psi (1.5 bar)

12 GPM (45 LPM)

Weight 27.3 lbs (12.4 kg) with 15-inch (38 cm) bar and chain
Bar Length Up to 25 in (63 cm)
Motor Speed 6500 rpm
Powerhead Dimensions 23 in (58.5 cm) length; 10.5 in (26.5 cm) height; 9.5 in (24 cm) width
Torque 170 in-lbs (19.2 Nm)
Horsepower 8 hp (6 kW)
Hydraulic Supply 12 gpm (45 lpm), 2500 psi (172.5 bar)
Noise Level 98 dB @ 3 ft (1 m) (Sound pressure level); 107 dB @ 3 ft (1m) (Sound power level)
Vibration Level 2.0 m/second2 (front handle); 6.0 m/second2 (rear handle)
Water Supply Minimum 20 psi (1.5 bar)

* Product data shown is rated based on maximum input conditions and efficiency assumptions and may vary dependent on power supply.

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