CP3650 Series - Angle Grinders
CP3650-100AB6VK product photo
CP3650-100AB6VK product photo
CP3650-100AB6VK product photo
CP3650-100AB6VK product photo
CP3650-100AB6VK product photo
CP3650-100AB6VK product photo
CP3650-100AB6VK product photo
CP3650-100AB6VK product photo
The CP3650 angle grinder Series is a super industrial tool for grinding and cutting applications. It delivers a powerful governed motor of 2.4 hp (1800 W) and a free speed up to 12,000 rpm. The CP3650 angle grinder series features an excellent power to weight ratio. Additional features such as spindle lock button and bevel gear design enhance the tool to the level expected by industrial customers. The range consists of 9 models with grinding wheel capacities from 4' to 6' and Spindle thread size choice: M14, 3/8-24, 5/8-11 and Hex. The auto balancer is included in VK version only.

Technical Specifications

Design & Functions
Min hose diam (16 ft hose length)
0.5 in
Length (L)
238 mm
Wheel/Disc diameter (mm)
150
Weight
1.9 kg
Wheel/Disc diameter (in)
6
Guard positions
7
Main Material type
Aluminum, Composite over-sleeve
Output Spindle Thread
5/8-11 UNC
Starting system
Safety lever
Rotative guard type
Screws
Max dynamic air working pressure
6.3 bar
Free Speed
10000 rpm
Air inlet thread type
BSP
Uncertainty vibration-K
1.5 m/s²
Autobalancer
Yes
Spindle lock
Yes
Max power
1800 W
Air inlet thread size (in)
3/8
Swiveling guard
Key
Sound Pressure
79 dB(A)
Min hose diam (5 m hose length)
13 mm

CP3650-100AB6VK

6151 6073 00
6"(150 mm) PNEUMATIC ANGLE GRINDER

Benefits

Highly durable spiral bevel gear reduces vibration and torque transmission stress, resulting in a 2,000 h maintenance interval
Streamlined safety lever and 2.4 hp (1,800 W) governed motor for operator safety
Steel housing with insulating composite over-housing and vibration damping side handle for comfort and superior ergonomics.
Spindle lock button for fast abrasive replacement and 2 position adjustable safety trigger for better ergonomics
Unique keyless adjustable guard for fast application adaptation