HELI CPQ10 SIT-DOWN FORKLIFT

HELI CPQ10 HELI CPQ10 SIT-DOWN FORKLIFT equipment image

Equipment Overview

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OEM
HELI
Model
CPQ10
Year of Manufacture
-
Category
SIT-DOWN FORKLIFTS

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Technical Description

The Heli CPQ10 forklift is a compact and robust internal combustion forklift designed for reliable material handling with a load capacity of 2,204.7 lbs (1,000 kg) at a 19.7-inch load center. It is powered by a gasoline engine model H15KA delivering 34.5 hp (25 kW) at 2400 rpm and a torque of 83.2 lbs-ft at 1600 rpm, ensuring efficient performance for various industrial tasks. The forklift features a sit-on operator model with an overall length to fork face of 7.2 ft, an overall width of 3.6 ft, and a height to the top of the overhead guard of 6.8 ft, providing good maneuverability in confined spaces with a turning radius of 6.2 ft and a wheelbase of 4.6 ft. Its mast system offers a maximum fork height of 9.9 ft, a lift speed of 128 feet per minute, and can tilt forward by 6 degrees and backward by 12 degrees for load stability and flexibility. The maximum fork spread is 37.5 inches, allowing handling of various pallet sizes. The forklift's ground clearance is 4.4 inches, and the overall height with the mast lowered is 6.6 ft. The CPQ10 runs at a maximum speed of 9.1 mph (14 kph) and weighs 4,740 lbs, with front and rear tire configurations of 6.50-10-10PR and 5.00-8-8PR respectively. It is equipped with a hydraulic power steering system, providing easy handling and control, making it ideal for moderate lifting and transport in warehouses or industrial settings requiring a versatile, mid-sized gasoline forklift.

Technical Attributes

Turning Radius
6.20 ft
Load Capacity
2205 lb
DC Voltage
48.00 V DC
Max Fork Height
118.80 ''
Fuel Type
Gasoline

Data Accuracy and Verification

Specifications and technical details are compiled from manufacturer documentation, historical records, and third-party industry sources. While care is taken to ensure accuracy, this information is provided for reference purposes only and may contain errors or omissions. Users should independently verify all details before relying on them.

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