JCB JS240L CRAWLER EXCAVATOR

Equipment Overview
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- JCB
- Model
- JS240L
- Year of Manufacture
- -
- Category
- CRAWLER EXCAVATORS
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A+Technical Description
The JCB JS240L is a robust and versatile tracked hydraulic excavator engineered for demanding construction and excavation tasks. Designed with productivity and operator comfort in mind, this model features a powerful 161 hp (120 kW) engine that delivers reliable performance across a range of applications. The hydraulic system is equipped with a pump flow capacity of 113.1 gallons per minute and a relief valve pressure of 5308.4 psi, ensuring efficient and responsive operation. The excavator boasts a maximum digging depth of 20.5 feet, a maximum loading height of 23 feet, and a maximum reach along the ground of 31.3 feet, making it well-suited for both deep trenching and high-reach loading operations. The shipping length of the unit is 33.1 feet, with a ground clearance of 1.6 feet and a track length on the ground of 9.9 feet, providing stability and maneuverability on various terrains. The tail swing radius is 12.6 feet, and the width to the outside of the tracks is 10.8 feet, allowing for effective operation in confined spaces. The operating weight of the machine is 54,277.9 pounds, and it is equipped with a 27.6-inch shoe size for optimal undercarriage performance. The JS240L also features a comfortable cab, intuitive controls, and advanced hydraulic circuitry for precise and efficient digging, lifting, and grading. This excavator is a reliable choice for contractors seeking a high-performance machine with excellent durability and versatility.
Technical Attributes
- Max Digging Depth
- 20.4 ft
- Track Width
- 23.60 ''
- Max Reach
- 31.24 ft
- Engine Power
- 161.0 HP
- Boom Length
- 29.0 ft
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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