CP9541/42/61 Series - Impact Wrenches
CP9541 product photo
CP9541 product photo
CP9541 product photo
CP9541 product photo
CP9541 product photo
CP9541 product photo
CP9541 product photo
CP9541 product photo
The CP9541/42/61 series of 3/4", 1" impact wrenches - features the fast and reliable Dyna-Pact pin clutch mechanism, an aluminium body, and steel clutch housing. The design offers high performance in term of torque, vibration, and durability for MRO applications. The range consists of 3 models: CP9541 with ring socket retainer, CP9542 with pin socket retainer for a maximum reverse torque of up to 610 Nm /450 ft.lb. and the 3/4" CP9561 with hole socket retainer, which delivers a maximum reverse torque of up to 1,250 Nm /885 ft.lb. Country of origin is JP. Customs tariff is 84671190

Technical Specifications

Torque
Max working torque fwd
434 Nm
Max torque reverse
610 Nm
Min working torque fwd
34 Nm
Torque limited
No
Air information
Air inlet thread size (in)
1/4
Max dynamic air working pressure
6.3 bar
Min hose diam (5 m hose length)
10 mm
Noise & vibrations
Sound Power
100 dB(A)
Sound Pressure
89 dB(A)
Uncertainty vibration-K
2.5 m/s²
Vibration (m/s²)
5.5
Vibration
5.5 m/s²
Speed
Free Speed
8900 rpm
Size & Weight
Length (L)
168 mm
Power weight ratio
240 Nm/kg
Side to Center
30 mm
Weight
2.5 kg
Design & Functions
Blow per minute
1100
Body
Aluminium
Clutch housing
Steel
Clutch lubrication type
Grease
Handle type
Pistol
Impact mecanism
Pin clutch
Main Material type
Aluminium
Output drive size (in)
1/2
Output drive type
Sq
Output retainer type
Friction ring
Starting system
Trigger
CP9541 product photo
CP9541 product photo
CP9541 product photo
CP9541 product photo
CP9541 product photo
CP9541 product photo
CP9541 product photo
CP9541 product photo

CP9541

6151909541

1/2" PISTOL PNEUMATIC IMPACT WRENCH
dimention
Dimensions 23 x 20 x 8 cm
weight
Weight 2.81 kg

Benefits

DYNA-PACT - Pin clutch with oil bath for high reliability
Durable aluminium body and robust steel clutch housing for extreme durability.
Power control through a multi-position regulator at handle level

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