Free Shipping on Most Orders Over $199

Toggle Nav
  • Menu
  • Settings
  • Close
Bosch

18V EC Brushless Connected-Ready Compact Tough 1/2 in. Hammer Drill/Driver with (1) CORE18V 4.0 Ah Compact Battery

$219.99
OUT OF STOCK
This item ships within 48 business hours from our warehouse. See FAQ for business hours.

SHIPS WITHIN 48 HOURS

INTERNATIONAL TOOL PART #
BOP-GSB18V535CB15

MFG PART #
GSB18V-535CB15

SKU
162GSB18V535CB15

This Bosch hammer drill is engineered for tough jobs, with next-gen convenience and CORE18V power. The GSB18 V-535CB15 18 V EC Brushless Connected-Ready Compact Tough 1/2 In. hammer drill features Bluetooth connectivity (which connects with an optional Connectivity Tool Module), linking the free Bosch Toolbox app on any connected device for enhanced tool control and feedback. The kit includes a next-gen CORE18 V Compact battery. It keeps the power and runtime, while losing the weight, with 21700 cell technology. The CORE18V matches the power of the original two-layer 4.0 Ah battery with half the number of cells. It features the CoolPack 2.0 heat-management system and 100% compatibility with Bosch 18V tools and 18V Lithium-ion battery chargers. This hammer drills powerful EC Brushless motor delivers 535 in-lb. of torque and 0-28,500 BPM. It has variable speed settings; one for high-speed (0-1,900 RPM) and one for high power (0-600 RPM). The cordless drill has KickBack Control to reduce the risk from sudden rotational torque reaction, a 20+1 precision clutch; an all-metal chuck that provides durability and a longer belt clip.

18V 1/2 in. Hammer Drill/Driver

  • Next-gen hammer drill performance provides pro torque for driving, along with optional connectivity, KickBack Control and more
  • Bluetooth connectivity connects to optional Connectivity Tool Module to customize tool settings on a connected device
  • Compact CORE18V Li-ion battery engineered to provide next-gen power and runtime, while losing the weight, for optimized capacity
  • KickBack Control reduces the risk from sudden rotational torque reaction in a bind-up scenario