MICHIGAN / CLARK CST15 SIT-DOWN FORKLIFT

MICHIGAN / CLARK CST15 MICHIGAN / CLARK CST15 SIT-DOWN FORKLIFT equipment image

Equipment Overview

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OEM
MICHIGAN / CLARK
Model
CST15
Year of Manufacture
-
Category
SIT-DOWN FORKLIFTS

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Technical Description

The Michigan / Clark CST15 is an electric forklift engineered for efficient material handling with a 24V electric power system. It features a compact design with an overall width of 3.2 ft, a length to fork face of 5.5 ft, and a height to the top of the overhead guard at 3.1 ft, facilitating maneuverability in tight spaces. The forklift has a ground clearance of 2 inches and a wheelbase of 3.9 ft, contributing to a tight turning radius of 4.9 ft, ideal for warehouse environments. The mast has two sections with a maximum fork height of 12.5 ft, providing a right-angle stack of 5.5 ft. The lift speed is 38 ft/min while the lower speed is 16 ft/min, with mast tip angles of 2 degrees forward and 8 degrees rearward to enhance load stability. Rated for a load capacity of 3,000 lbs with a 24-inch load center, it handles moderate lifting tasks reliably. The forklift’s operating weight is 5,400 lbs, supported by poly tires for durability and traction on smooth surfaces. It operates at a maximum speed of 1.7 mph, with a three-wheel configuration—two front wheels and one rear wheel—boosting maneuverability. Overall height with the mast lowered is 7 ft, facilitating operation under low clearances. This model is well-suited for indoor warehouse operations requiring precise maneuvering and moderate load lifts, combining reliable electric power with a compact, durable build.

Technical Attributes

Max Fork Height
150.00 ''
Fuel Type
Electric
Load Capacity
3000 lb
Turning Radius
4.90 ft
DC Voltage
36.00 V DC

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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