TOYOTA 7FBCU30 SIT-DOWN FORKLIFT

TOYOTA 7FBCU30 TOYOTA 7FBCU30 SIT-DOWN FORKLIFT equipment image

Equipment Overview

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OEM
TOYOTA
Model
7FBCU30
Year of Manufacture
-
Category
SIT-DOWN FORKLIFTS

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Technical Description

The Toyota 7FBCU30 is a compact electric forklift designed for indoor material handling applications with a maximum load capacity of 6,000 pounds. This Class I electric-powered unit features a 48-volt battery system, making it environmentally friendly and suitable for warehouse and distribution center environments where emissions control is critical. The forklift is equipped with cushion tires on all four wheels, providing stability and maneuverability on solid flooring while minimizing noise during operation. The machine dimensions are optimized for confined spaces, with an overall width of 3.7 feet and a turning radius of 6.5 feet, allowing efficient navigation in tight aisles. The mast assembly offers a lift speed of 63 feet per minute at full load, with a load center of 24 inches, enabling operators to handle pallets and skids efficiently. With a height to the top of the overhead guard measuring 7.4 feet when the mast is lowered, the unit fits comfortably in most standard warehouse ceiling heights. The 7FBCU30's design emphasizes operator safety and comfort with a seated riding position and intuitive controls. The right angle stack dimension of approximately 8 feet demonstrates its capability to work in narrow aisles typical of modern warehouse operations. Its 4.6-foot wheelbase and dual front and rear wheels provide excellent stability when handling loads at maximum capacity. This reliable electric forklift represents a practical solution for facilities seeking dependable, cost-effective material handling equipment with minimal maintenance requirements compared to internal combustion alternatives.

Technical Attributes

Fuel Type
Electric
Turning Radius
6.50 ft
Load Capacity
6000 lb
Tire Type
Solid

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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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