HYSTER S60FT (FORTIS ADVANCE+) SIT-DOWN FORKLIFT

HYSTER S60FT (FORTIS ADVANCE) HYSTER S60FT (FORTIS ADVANCE+) SIT-DOWN FORKLIFT equipment image

Equipment Overview

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OEM
HYSTER
Model
S60FT (FORTIS ADVANCE)
Year of Manufacture
-
Category
SIT-DOWN FORKLIFTS

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Technical Description

The Hyster S60FT (Fortis Advance+) is a robust, high-capacity forklift engineered for demanding material handling applications in industrial and commercial environments. With a ground clearance of 3.6 inches, a length to fork face of 7.8 feet, and an overall width of 3.7 feet, this forklift offers excellent maneuverability in tight spaces. The mast, when lowered, stands at 7.2 feet, and the maximum fork height reaches 10.6 feet, providing versatile lifting capabilities. The right angle stack is 8.1 feet, and the turning radius is 6.8 feet, ensuring efficient operation in confined areas, while the 4.7-foot wheelbase enhances stability. Powered by a 2.4L, 4-cylinder LP/gas engine with a displacement of 146.5 cubic inches, the S60FT delivers 62 horsepower at 2600 rpm and 123 lb-ft of torque at 1800 rpm, ensuring strong performance and reliability. The mast system features a lift speed of 104 feet per minute and a lower speed of 88 feet per minute, with a load capacity of 6000 lbs at a 24-inch load center. The mast can tip forward 5 degrees and rearward 8 degrees, optimizing load handling. The forklift has a maximum speed of 10.7 mph (16 kph), operates on cushion tires, and has two front and two rear wheels. With an operating weight of 9837.1 lbs, the S60FT (Fortis Advance+) is built for durability, safety, and productivity in a wide range of material handling tasks.

Technical Attributes

Turning Radius
6.80 ft
Fuel Type
LPG
Load Capacity
6000 lb
Tire Type
Pneumatic

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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