Description

SKU: XDT13Z-1

Bare Tool, battery and Charger not included BL?äó Brushless Motor delivers 1,500 in.lbs. of Max Torque Variable speed (0-3,400 RPM & 0-3,600 IPM) for a wide range of fastening applications The BL?äó Brushless Motor eliminates carbon brushes, enabling the BL?äó Motor to run cooler and more efficiently for longer life Efficient BL?äó Brushless Motor is electronically controlled to optimize battery energy use for up to 50% longer run time per charge The electronically-controlled BL?äó Brushless Motor efficiently uses energy to match torque and RPM to the changing demands of the application Compact and ergonomic design at only 5" long Weighs only 3.3 lbs. with battery (battery not included) for reduced operator fatigue Convenient 1/4" hex chuck for quick bit changes Built-in dual L.E.D. lights illuminate the work area Rubberized soft grip provides increased comfort on the job Convenient one-touch 1/4" hex chuck for quick bit changes All aluminum gear housing for increased job site durability Extreme Protection Technology (XPT?äó) is engineered for improved dust and water resistance for operation in harsh conditions Makita's proprietary hammer and anvil impact mechanism is manufactured using the best raw materials with the highest quality steel and unique heat hardening process for maximum fastening and driving power Equipped with Star Protection Computer Controls?äó to protect against overloading, over-discharging and over-heating
    Features and Specifications
    • BL? Brushless Motor delivers 1,500 in.lbs. of Max Torque
    • Variable speed (0-3,400 RPM & 0-3,600 IPM) for a wide range of fastening applications
    • The BL? Brushless Motor eliminates carbon brushes, enabling the BL? Motor to run cooler and more efficiently for longer life
    • Efficient BL? Brushless Motor is electronically controlled to optimize battery energy use for up to 50% longer run time per charge
    • The electronically-controlled BL? Brushless Motor efficiently uses energy to match torque and RPM to the changing demands of the application