2017 - 2023 BELL L1706C PLUS II WHEEL LOADER

Equipment Overview
Share Link- OEM
- BELL
- Model
- L1706C PLUS II
- Year of Manufacture
- 2017-2023
- Category
- WHEEL LOADERS
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A+Technical Description
The Bell L1706C Plus II is a robust wheel loader engineered for demanding construction and material handling tasks. This model features a powerful John Deere 6068TF250 engine, delivering a net power output of 161 hp (120 kW) for reliable performance in heavy-duty applications. With an operating weight of 29,101.1 lbs (13,200 kg) and a static tipping weight of 22,954.6 lbs (10,412 kg), the L1706C Plus II offers excellent stability and lifting capability. The loader is equipped with a ZF 4WG160 counter-shaft transmission, ensuring smooth gear shifts and efficient power delivery. Its 20.5x25 tire size provides optimal traction and durability on various terrains. The machine boasts a bucket capacity of 3.2 cu yds (2 m³) and a breakout force of 36,868.7 lbs (16,723 kg), enabling efficient loading and material handling. Key dimensions include a length with bucket on ground of 24.3 ft (7 m), a wheelbase of 9.9 ft (3 m), a height to the top of the cab of 11.2 ft (3 m), and a ground clearance of 1.4 ft (0 m). The dump clearance at maximum raise is 9.9 ft (3 m), while the reach at max lift and dump is 2.9 ft (1 m). The fuel capacity is 58.2 gal (220 l), supporting extended operation times. Designed for operator comfort and productivity, the L1706C Plus II combines advanced engineering with practical features for versatile performance in challenging environments.
Technical Attributes
- Static Tipping Weight
- 22,954.60
- Engine Power
- 161 HP
- Tire Size
- 20.5x25
- Max Dump Height
- 9.90 ft
- Max Breakout Force
- 36869 lb-ft
- Max Bucket Capacity
- 3.20 yd³
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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