TCM L6-2 WHEEL LOADER

Equipment Overview
Share Link- OEM
- TCM
- Model
- L6-2
- Year of Manufacture
- -
- Category
- WHEEL LOADERS
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A+Technical Description
The TCM L6-2 is a compact wheel loader engineered for efficient material handling in confined spaces. It features a heaped bucket capacity of 0.8 cubic yards and a bucket width of 5.6 feet, providing reliable performance for light to medium-duty loading tasks. The machine offers a dump clearance of 8.3 feet at maximum raise, enabling effective dumping into trucks or containers. With a ground clearance of 1 foot and a top cab height of 8.2 feet, the L6-2 maintains maneuverability and visibility in various job site conditions. The overall length with the bucket on the ground is 15.5 feet, and the wheelbase measures 6.3 feet, contributing to stable operation. At maximum lift and dump, the reach extends to 3.1 feet, enhancing versatility. Powered by a D1503-DI-K2A engine, the L6-2 delivers 36.5 horsepower (27 kW), ensuring responsive performance. The operating weight is 7,859.5 pounds (3,565 kg), with a static tipping weight of 4,232.9 pounds (1,920 kg) for added safety. The loader is equipped with 15.5/20-10 PR L2 tires and a powershift transmission, allowing for smooth gear changes and a maximum forward and reverse speed of 9.4 mph (14 kph). The fuel tank holds 13.3 gallons (49 liters), supporting extended operation between refueling. Designed for durability and ease of maintenance, the TCM L6-2 is a practical solution for construction, landscaping, and agricultural applications.
Technical Attributes
- Static Tipping Weight
- 4,232.90
- Engine Power
- 37 HP
- Max Bucket Capacity
- 0.80 yd³
- Max Dump Height
- 8.30 ft
- Tire Size
- 15.5/20- 10 PR L2
- Max Speed
- 9.40 mph
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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