TOYOTA 8FBCU20-COMP SIT-DOWN FORKLIFT

Equipment Overview
Share Link- OEM
- TOYOTA
- Model
- 8FBCU20-COMP
- Year of Manufacture
- -
- Category
- SIT-DOWN FORKLIFTS
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A+Technical Description
The Toyota 8FBCU20-COMP is a four-wheel electric forklift designed for efficient indoor material handling with a load capacity of 4,000 lbs. Powered by a 48 V electric motor delivering 48 hp (36 kW) and equipped with a transistor inverter system for both drive and power steering controls, it offers smooth, responsive operation. The forklift features a compact design with overall dimensions including a width of 3.5 ft and length to fork face of 6.7 ft, allowing operation in tight spaces with a turning radius of 5.8 ft. Its lifting capabilities include a maximum fork height of 11 ft and a free lift of 6.2 inches, with lift and lower speeds of 89 ft/min and 98 ft/min respectively. The mast provides a gradeability of 25%, supported by a hydraulic system relief valve pressure of 2,580 psi. The machine’s operational weight is 6,390 lbs, riding on cushion tires sized 21 x 7 x 15 in the front and 16 x 5 x 10.5 in on the rear wheels, which contribute to stability and maneuverability indoors. It features a battery capacity of 765 Ah supporting efficient electric power delivery, enabling maximum travel speeds up to 11.5 mph. Additional design elements include a height to the top of the overhead guard of 7.4 ft and a wheelbase length of 4.3 ft. This model offers a balance of compact agility, solid lifting power, and electric efficiency suited for warehouse environments that demand reliability and precise handling.
Technical Attributes
- Turning Radius
- 5.80 ft
- Fuel Type
- Electric
- Load Capacity
- 4000 lb
- Max Fork Height
- 132.00 ''
- DC Voltage
- 48.00 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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