2010 John Deere 350D LC Excavator Specifications and Key Features
The 2010 John Deere 350D LC Excavator is a robust machine designed for heavy-duty tasks in construction and mining. It delivers impressive power with its 6-cylinder, 9.0L engine that offers 248 horsepower at 1,800 RPM. This ensures that the machine can handle demanding workloads while maintaining fuel efficiency.
The hydraulic system features a dual-pump configuration, providing a flow rate of 370 L/min. This allows the 350D LC to perform tasks like digging, lifting, and material handling smoothly, making it an ideal choice for challenging job sites. The combination of powerful hydraulics and the long reach of its arm increases operational flexibility and productivity.
For operators, the comfortable cabin comes with ergonomic controls and a user-friendly interface. The layout enhances visibility and reduces operator fatigue during long working hours. Safety is also prioritized with the machine’s enhanced stability system, reducing risks in uneven terrain.
2010 John Deere 350D LC Excavator Specifications
The 2010 John Deere 350D LC Excavator offers impressive power and performance for a wide range of construction tasks. With an operating weight of around 35,000 kg, it strikes a balance between heavy lifting capability and fuel efficiency. Its engine is a 6-cylinder turbocharged unit, providing 215 horsepower for demanding operations. This ensures reliable performance in diverse environments, from urban construction sites to more rugged terrains.
Equipped with a hydraulic system delivering up to 395 l/min, the excavator ensures swift operation of attachments, enhancing productivity. The machine’s arm and boom lengths are optimized for a maximum digging depth of 7.3 meters, allowing efficient digging and trenching tasks. With a reach of up to 10.5 meters, it provides excellent versatility for various excavation needs.
For stability, the 350D LC comes with a wide track gauge and a heavy-duty undercarriage, allowing it to perform effectively even in soft or uneven ground conditions. The fuel tank capacity of 500 liters supports extended working hours, minimizing downtime. Its hydraulic bucket breakout force is rated at 15,700 kg, ensuring effective lifting and digging performance, making it ideal for heavy-duty tasks.
The cabin is designed for operator comfort and visibility, offering air conditioning, adjustable seating, and advanced controls. The intuitive interface and ergonomic layout allow operators to work for extended hours without unnecessary fatigue.
Engine Power and Performance Specifications
The 2010 John Deere 350D LC excavator is equipped with a robust 6-cylinder, turbocharged engine that delivers reliable power for demanding tasks. Its engine is capable of producing 270 horsepower (201 kW), ensuring consistent performance even under heavy load conditions.
With a displacement of 9.0 liters, the engine is designed to efficiently convert fuel into power while maintaining operational efficiency. The system’s fuel injection technology optimizes combustion, enhancing fuel efficiency and reducing emissions. Additionally, the engine complies with Tier 3 emission standards, offering a balance of power and environmental consideration.
For smooth operation, the excavator is equipped with a variable-speed hydraulic system that adjusts according to the power demand, allowing for greater precision and control. This engine-hydraulic synergy supports a range of functions such as lifting, digging, and material handling with optimal force and stability.
The maximum torque output of 1,100 Nm (811 lb-ft) ensures sufficient power for digging and moving heavy materials, even in tough soil conditions. The engine is designed for low maintenance intervals, which increases uptime and reduces operational costs.
Hydraulic System and Operational Capacity
The 2010 John Deere 350D LC excavator is equipped with a robust hydraulic system designed to handle demanding tasks. With a maximum flow rate of 528 L/min and a system pressure of 35,000 psi, the machine delivers powerful lifting and digging performance. The hydraulic system is specifically engineered for smooth and precise control, ensuring efficient operation in various environments.
For optimal operational capacity, the excavator features a dig depth of 7.4 meters, allowing for deep excavations with accuracy. The bucket breakout force is 179 kN, ensuring it can handle tough materials. With a lifting capacity of 10,100 kg at a 3-meter radius, the machine can move heavy loads with ease.
When operating the machine, the hydraulic system provides consistent power to both the boom and the arm, allowing the operator to perform complex tasks without delays or fluctuations in power. This reliability is critical for tasks that require high precision and fast cycle times.
The system also includes a load-sensing pump that adjusts flow to match the demand, optimizing fuel consumption while maintaining performance. This reduces unnecessary energy loss, ensuring efficient use of resources during extended working hours.
In combination with the large undercarriage and stable design, the hydraulic capabilities of the John Deere 350D LC make it ideal for tough construction and mining jobs that require both power and precision.
Dimensions and Weight for Transport and Use
The 2010 John Deere 350D LC excavator’s transport dimensions are key for proper handling and movement. When transporting the machine, ensure the following specifications are met:
- Overall Length: 11,720 mm
- Overall Width: 3,180 mm
- Overall Height: 3,430 mm
- Track Length: 4,780 mm
- Track Width: 600 mm
- Ground Clearance: 440 mm
For safe and efficient transport, the machine’s total weight should be closely monitored. The 350D LC weighs approximately 35,600 kg, which may vary slightly depending on the configuration. Consider the following weight breakdown:
- Operating weight (with standard configuration): 35,600 kg
- Counterweight: 6,400 kg
Before transporting, check the load-bearing capacity of transport equipment to ensure it supports the weight of the excavator. For optimal use, assess available space on site and adjust the machine’s position to avoid overloading surfaces.