DEWALT 7 In. 8500 rpm 4.9 HP Angle Grinder
The DEWALT® 7-inch 8,500 4.9 HP Angle Grinder combines a multitude of technologies to enhance grinding capabilities. Its 15-Amp motor runs at a maximum of 8,500 RPM to get jobs done quickly. This particular angle grinder is a part of the Perform and Protectâ„¢ line of tools, giving it unique control and vibration features. The 7-inch grinder’s Power-Loss Reset® control feature prevents unintentional re-starts due to power disruptions as a result of the tool being left in the on position. The anti-vibe trigger handle reduces vibration and user fatigue. Avoid overloading or burn-ups with the Power-Off® overload protection feature which electronically turns off the device on its own when necessary. In addition to a high power 8,500 RPM motor, this angle grinder has the Dust Ejection Systemâ„¢, which ejects harmful particles that get inside the tool and can damage the motor and internal components. The Dust Ejection System also extends brush life.
DEWALT’s Perform & Protect™ line of Power Tools is designed to provide a high level of one of more of the following: control, dust containment, or low vibration, without sacrificing performance
High power 4.9 HP (maximum motor HP) 8,500 RPM motor provides overload protection giving higher operating speeds under load
E-Clutch® System shuts the tool off when a wheel pinch is detected, reducing kick-back, a Perform & Protect™ Control Feature
Anti-vibration side handle reduces the users exposure to vibration, a Perform & Protectâ„¢ Vibration Feature
Power-Loss Reset® prevents accidental re-starts following a power disruption when the tool is left in the on position, a Perform & Protect™ Control Feature
Dust Ejection Systemâ„¢ increases brush life and protects the motor from damaging particles entering the air intake that would otherwise abrade the motor
Low profile gearcase allows for work in tight areas
Automatic turn-off brushes shut down the tool when brushes need to be changed to avoid tool damage
3 position side handle provides improved ergonomics for specific applications