HYSTER H900HD SIT-DOWN FORKLIFT

HYSTER H900HD HYSTER H900HD SIT-DOWN FORKLIFT equipment image

Equipment Overview

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OEM
HYSTER
Model
H900HD
Year of Manufacture
-
Category
SIT-DOWN FORKLIFTS

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Technical Description

The Hyster H900HD is a heavy-duty rough terrain forklift engineered for demanding industrial and construction environments. Powered by a Cummins QSL 9 Tier 4F diesel engine, this model delivers 350 hp (261 kW) at 2100 rpm and 1200 lb-ft of torque, ensuring robust performance under load. The engine features a 543.2 cu in displacement, six cylinders, and is paired with a SOH TE-32 powershift transmission, providing four forward and four reverse speeds for smooth, responsive operation. The forklift is equipped with a 120-amp alternator and an oil-immersed (wet) disc service brake system, while the parking brake is spring-apply, dry disc for reliable safety. With a rated load capacity of 90,000 lbs at a 48-inch load center, the H900HD excels in heavy lifting tasks. The mast system offers a maximum fork height of 14.5 ft, a lift speed of 51 ft/min, and a lower speed of 98 ft/min, with 6° forward and 10° rear mast tilt for enhanced maneuverability. The forklift’s operational weight is 122,312 lbs, with a front axle load of 199,958 lbs and a rear axle load of 12,354 lbs. It features a 219-gallon fuel tank, 174-gallon hydraulic system fluid capacity, and a 15-gallon DEF tank. The H900HD has a ground clearance of 18.6 in, a turning radius of 23.3 ft, and a wheelbase of 17.7 ft, making it highly maneuverable on rough terrain. The pneumatic tires (18.00 x 25-40PR) provide excellent traction and durability.

Technical Attributes

Load Capacity
9000 lb
Turning Radius
23.30 ft
Tire Type
Pneumatic
Fuel Type
Diesel
Max Fork Height
174.00 ''

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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