PAH 1300 A1
■
2
│
GB
│
IE
DEMOLITION HAMMER
PAH 1300 A1
Introduction
Congratulations on the purchase of your new ap-
pliance. You have selected a high-quality product.
The operating instructions are part of this product.
They contain important information on safety, us-
age and disposal. Before using the product, please
familiarise yourself with all operating and safety
instructions. Use the product only as described and
for the specified areas of application. Please also
pass on these operating instructions to any future
owner.
Intended use
The demolition hammer PAH 1300 A1 is suitable
for chiselling into concrete, stone and plaster.
Any other usage of or modification to the appliance
is deemed to be improper and carries a significant
risk of accidents.
The manufacturer accepts no responsibility for
damage(s) attributable to misuse.
The appliance is not intended for commercial use.
Depicted components
Handle (rubberised grip)
Locking switch
ON/OFF switch
Additional handle
Knurled nut for additional handle
Chisel adjustment ring
Tool holder
Locking collar
Pointed chisel
Flat chisel
Package contents
1 demolition hammer PAH 1300 A1
1 additional handle (pre-assembled)
1 flat chisel
1 pointed chisel
1 carrying case
1 set of operating instructions
Technical data
Nominal power:
1300 W
Rated voltage:
230 V ~ 50 Hz
(alternating current)
Stroke rate:
3800 bpm
Impact energy:
15 Joules
Tool fitting:
SDS MAX
Protection class:
II / (double shielded)
Noise emission value:
Noise measurement value determined in accordance
with EN 60745. The A-rated noise level of the
power tool is typically as follows:
Chiselling:
Sound pressure level:
L
pA
= 87 dB (A)
Uncertainty K:
3 dB
Sound power level:
L
WA
= 98 dB (A)
Uncertainty K:
3 dB
Wear hearing protection!
Guaranteed sound power level
LWA in dB.
Total vibration value:
Total vibration values (vector total of three direc-
tions) determined in accordance with EN 60745:
Main handle:
Chiselling: a
h(CHeq)
= 21.2 m/s
2
, K = 1.5 m/s
2
Auxiliary handle:
Chiselling: a
h(CHeq)
= 22.7 m/s
2
, K = 1.5 m/s
2