SDS-Max demolition hammer 10kg class D25899K-QS
Suggested products
TECHNICAL DATA
Sales unit dimensions and weight: 1 pcs
SDS-Max demolition hammer 10kg class D25899K-QS
SDS-Max Demolition Hammer – Power and Efficiency in Every Blow
This DeWalt SDS-Max demolition hammer is a tool designed for demanding tasks. With a 1500 W motor, it delivers excellent performance and durability, essential for chipping concrete, demolishing walls, or finishing work. The design of this model combines power and ergonomics, translating into comfortable work even during prolonged use.
Design and features affecting work comfort
The impact mechanism housing made of magnesium alloy guarantees high strength while maintaining a low weight. The slim design allows access to tight spaces, and the ability to set the chisel in 12 positions increases precision and work efficiency. The ergonomic shape and elongated profile provide a secure grip and minimize operator fatigue. The modular design facilitates servicing – quick access to key components allows for efficient repairs and reduced downtime.
Technical parameters for professionals
The DeWalt D25899K-QS hammer offers an impact energy of 17.9 J at a frequency of 2040 impacts per minute. The useful power is 750 W, which, combined with a solid impact mechanism, guarantees effective chipping even of the hardest materials. The weight of the device is 9.9 kg, which is a compromise between power and ease of use. The set includes a multi-position side handle and a sturdy carrying case for easy storage and transport.
- 1500 W motor: provides efficient operation even with the most demanding tasks.
- Impact energy 17.9 J: effectively handles concrete, stone and other hard materials.
- SDS-Max holder: allows for quick and safe tool changes.
- Magnesium alloy housing: guarantees high strength and low weight of the device.
- 12 chisel positions: increases precision and efficiency in various situations.
- Modular design: facilitates servicing and repairs.
- Carrying case included: ensures safe storage and easy transport of the tool.

