HYSTER A30XNT SIT-DOWN FORKLIFT

HYSTER A30XNT HYSTER A30XNT SIT-DOWN FORKLIFT equipment image

Equipment Overview

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OEM
HYSTER
Model
A30XNT
Year of Manufacture
-
Category
SIT-DOWN FORKLIFTS

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Technical Description

The Hyster A30XNT is a compact, three-wheel electric forklift designed for high maneuverability and efficient operation in tight warehouse and container environments. With a load capacity of 3,000.5 lbs at a 24.1 in load center, this forklift delivers reliable performance for demanding material handling tasks. Its robust chassis and 4830.4 lbs operating weight ensure stability, while the 4.1 ft wheelbase and 4.8 ft turning radius enable agile movement in confined spaces. The A30XNT features a 24-volt rear-wheel drive system powered by maintenance-free AC motors, providing smooth acceleration, excellent torque, and extended shift life. The forklift’s VISTA™ mast offers generous visibility, with a lift speed of 101 ft/min and a lower speed of 91 ft/min, supporting rapid and precise load handling. The mast can tip forward and rearward by 5 degrees each, and the maximum fork spread is 112.6 in. The truck is equipped with pneumatic-shaped solid tires (18 x 7-8) for durability and traction, and its gradeability reaches 22.4%. Additional operational specifications include a 7.8 mph top speed, a drawbar pull of 1403 lbs, and axle loads of 2783 lbs (front) and 3663 lbs (rear). The overall dimensions—5.9 ft length to fork face, 6.5 ft overall height (mast lowered), 6.8 ft height to top of overhead guard, and 3.3 ft overall width—make it ideal for narrow aisles and high-density storage. The A30XNT also features an auto deceleration system, reducing brake wear and maintenance requirements.

Technical Attributes

Fuel Type
Electric
DC Voltage
36.00 V DC
Turning Radius
4.80 ft
Load Capacity
3001 lb

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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