HELI CPCD40W SIT-DOWN FORKLIFT

Equipment Overview
Share Link- OEM
- HELI
- Model
- CPCD40W
- Year of Manufacture
- -
- Category
- SIT-DOWN FORKLIFTS
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A+Technical Description
The Heli CPCD40W is a robust diesel-powered forklift engineered for heavy-duty industrial applications, with a maximum load capacity of 8,818.5 lbs supported at a 19.7-inch load center. It is powered by an A-6BG1QC-05 diesel engine delivering 91.2 hp at 2000 rpm and a peak torque of 250.8 lbs-ft at 1600 rpm, ensuring effective power and torque for demanding material handling tasks. The forklift’s mast features a maximum fork height of 9.9 ft and a lift speed of 88.6 ft/min, coupled with a mast tilt range of 6° forward and 12° backward for precise load positioning. Structurally, the forklift has an overall length to fork face of 10.2 ft, a width of 4.9 ft, and a height to the top of the overhead guard of 7.6 ft, facilitating maneuverability in confined spaces. The ground clearance is 6.3 inches, and it supports a turning radius of 9 ft, optimizing its operational agility. The wheelbase measures 6.6 ft, balancing stability and maneuverability, while the tire setup includes front tires sized 300-15-18PR and rear tires 7.00-12-12PR, suited for various terrain conditions. The forklift operates at a maximum speed of 11.9 mph (18 kph), with an operating weight of 13,558.5 lbs. Designed with a right-angle stack capability of 11 ft and a maximum fork spread of 52.8 inches, the Heli CPCD40W is ideal for warehouse, shipping, and industrial environments requiring efficient heavy lifting, excellent stability, and operational precision.
Technical Attributes
- Tire Type
- Pneumatic
- Fuel Type
- Diesel
- Load Capacity
- 8819 lb
- Max Fork Height
- 118.80 ''
- Turning Radius
- 9.00 ft
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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