18V XR 1Sp Metal Connector Nailer BARE

DCN694N

18V XR 1Sp Metal Connector Nailer BARE

18V XR Li-Ion Metal Connector Nailer featuring BRUSHLESS motor technology

Accurate hole allignment pin finds the hole quickly and positions the tool securely to ensure you hit the hole every time

The sequential operating mode allows for precision placement, whilst the high-frequency sequential operating mode provides the user with production speed and sequential safety

Overview

  • 18V XR Li-Ion Metal Connector Nailer featuring BRUSHLESS motor technology
  • Accurate hole allignment pin finds the hole quickly and positions the tool securely to ensure you hit the hole every time
  • The sequential operating mode allows for precision placement, whilst the high-frequency sequential operating mode provides the user with production speed and sequential safety
  • Mechanical rather than gas operation offers consistant performance at temperature between +50 and -20 degrees celcius and minimal cleaning/service requirements
  • Class leading vibration and sound figures, offer fantastic user protection
  • Reversable belt/rafter hook povides increased portability and versatility on the job-site
  • Ergonomic tool design allows the nailer to fit easily between a 400mm centre stud
  • Gas free operation offers a significant saving in running costs
  • Tool free stall/jam clearance minimises user down time
  • Cordless design allows you to work without the inconvenience and safety risk of trailing leads

Specifications

Battery chemistry Li-Ion
Voltage 18 V
Battery Capacity NA Ah
Nail Diameter 3.4 mm
Magazine angle 33 °
Magazine loading Bottom Loading
Nail Length 35 - 40 mm
Magazine capacity 27 Nails
Trigger Type Seq and Hi-Fr Seq
Length 345 mm
Width 125 mm
Height 338 mm
Weight 3.61 kg
Nailer Operating Mode Single Speed
Integrated Belt Hook Yes
Jam Clearing Yes
Temperature Range TBC
Fault indicator +50 - -20
Noise LPa 1sd / Uncertainty 87 dB
Noise LWa 1sd / Uncertainty 98 dB
Noise LPa 1s, 1m / Uncertainty
Vibration / Uncertainty <2.5 m/s²