MICHIGAN / CLARK ECX30 SIT-DOWN FORKLIFT

Equipment Overview
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- MICHIGAN / CLARK
- Model
- ECX30
- Year of Manufacture
- -
- Category
- SIT-DOWN FORKLIFTS
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A+Technical Description
The Clark Michigan ECX30 is a robust electric forklift designed for heavy-duty material handling, powered by a 36V electric motor with a cushion electric compound tire setup for indoor applications. It features a maximum load capacity of approximately 6,614 lbs (3,000 kg) centered at 19.7 in, supported by a triplex mast with three sections, enabling a maximum fork height of 15.8 ft and a maximum fork spread of 39.1 in. The mast offers lift speeds of 49 ft/min and lower speeds up to 92 ft/min, with tilt capabilities of 6° forward and 5° backward, enhancing load control during lifting operations. Dimensions include a ground clearance of 2.8 in, overall width of 3.7 ft, length to fork face at 7.4 ft, and a wheelbase of 4.5 ft, contributing to a compact profile ideal for maneuvering in tight spaces with a turning radius of 6.2 ft. The forklift stands 7.4 ft tall to the top of the overhead guard and maintains the same height with the mast lowered, benefiting operator visibility and safety. Operating at a maximum speed of 8.3 mph, the forklift weighs approximately 11,155 lbs, ensuring stability during transport and lift operations. The ECX30 integrates advanced AC technology, providing quiet, efficient, and low-maintenance performance while featuring ergonomic operator controls and enhanced safety features like hydraulic cushioning and counter torque control for safe operation on inclines. Its durable construction and programmable parameters accommodate diverse warehouse and industrial environments, combining power, precision, and operator comfort in a compact electric forklift package.
Technical Attributes
- Load Capacity
- 6614 lb
- Turning Radius
- 6.20 ft
- Fuel Type
- Electric
- Max Fork Height
- 189.60 ''
- 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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