TCM FCG25-3H SIT-DOWN FORKLIFT

TCM FCG25-3H TCM FCG25-3H SIT-DOWN FORKLIFT equipment image

Equipment Overview

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OEM
TCM
Model
FCG25-3H
Year of Manufacture
-
Category
SIT-DOWN FORKLIFTS

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Technical Description

The TCM FCG25-3H forklift is a robust industrial vehicle designed for efficient material handling with a maximum load capacity of 5,000 lbs supported at a 24-inch load center. It features a Nissan K25 engine with a displacement of 151.8 cubic inches (2.5 liters), delivering 60.1 horsepower (45 kW). This engine runs on both gasoline and liquefied petroleum (LP) fuel, offering operational flexibility. The K25 is a 4-cylinder, inline engine known for its durability and is widely used in forklifts for its reliable performance. The forklift achieves a maximum travel speed of 10 mph (16 kph) and a lift speed of 120 feet per minute, enabling swift and precise handling of loads. Dimensionally, the forklift measures 3.5 feet in width, with an overall height of 7 feet when the mast is lowered, and it can lift forks up to a maximum height of 10.9 feet. Its turning radius is a compact 6.8 feet, enhancing maneuverability in tight spaces. The machine weighs 8,290 lbs, with a 2-wheel front and rear axle configuration equipped with durable cushion tires suitable for indoor and smooth surface operation. The mast's design supports efficient stacking and load stability. This model balances power, size, and functionality, making it suitable for various warehouse and industrial applications demanding mid-range lifting capacity combined with responsive performance. The TCM FCG25-3H provides a reliable solution with proven engine technology and practical operational features tailored for productivity and control.

Technical Attributes

Load Capacity
5000 lb
Turning Radius
6.80 ft
Tire Type
Pneumatic
Fuel Type
Gasoline
Max Fork Height
130.80 ''

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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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