TCM FHG25T7 SIT-DOWN FORKLIFT

Equipment Overview
Share Link- OEM
- TCM
- Model
- FHG25T7
- Year of Manufacture
- -
- Category
- SIT-DOWN FORKLIFTS
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A+Technical Description
The TCM FHG25T7 is a robust, engine-powered forklift designed for demanding material handling applications. With a load capacity of 5,000 lbs and a standard 24-inch load center, it delivers reliable performance in industrial and warehouse environments. The forklift is powered by a Nissan K25 engine, displacing 151.8 cubic inches and producing 60.9 horsepower (45 kW), capable of running on both gasoline and liquefied petroleum (LP) fuel for operational flexibility. This engine ensures efficient power delivery and meets modern emissions standards, supporting consistent productivity. The FHG25T7 features a pneumatic tire configuration, with two front and two rear wheels, providing excellent traction and stability on various surfaces. Its mast system achieves a maximum fork height of 10.9 feet and offers a lift speed of 122.1 feet per minute, enabling rapid and precise load handling. When the mast is lowered, the overall height is 6.8 feet, allowing for easy maneuvering in confined spaces. The forklift has an overall width of 3.8 feet and a turning radius of 7.4 feet, enhancing its agility in tight work areas. With a maximum travel speed of 11.8 mph (18 km/h), the FHG25T7 balances speed and control for efficient operations. The operating weight is 7,920 lbs, contributing to stability during lifting and transport tasks. Designed for durability and operator comfort, the TCM FHG25T7 is a versatile solution for a wide range of material handling needs.
Technical Attributes
- Turning Radius
- 7.40 ft
- Fuel Type
- Gasoline
- Load Capacity
- 5000 lb
- Max Fork Height
- 130.80 ''
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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