CATERPILLAR IT62H WHEEL LOADER

Equipment Overview
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- CATERPILLAR
- Model
- IT62H
- Year of Manufacture
- -
- Category
- WHEEL LOADERS
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A+Technical Description
The Caterpillar IT62H is a heavy-duty wheel loader equipped with a Cat C7 ACERT engine delivering 211 hp (157 kW) net power and 669 lb-ft peak torque at 1400 rpm, designed for robust performance and fuel efficiency. Its powershift transmission features 4 forward and 4 reverse gears, achieving speeds up to 23.6 mph forward and 24.9 mph reverse. The loader supports a maximum bucket breakout force of 35,775 lbs (16,227 kg) and accommodates bucket capacities from 3.5 to 5.5 cubic yards (approx. 2.7 to 4.2 m³) to suit various material handling tasks. The IT62H features a fixed front axle and a rear axle with ±13° oscillation, enhancing stability and traction on uneven terrain. Hydraulic systems utilize a 71 gal/min piston pump for efficient cycle times, including a 6-second lift raise and 2.1 seconds dump time. Dimensions include an 11 ft (3.3 m) wheelbase, 28 ft (8.5 m) length with bucket on the ground, and 9.2 ft (2.8 m) width over tires; max lift height is 12.5 ft (4 m) with dump clearance of 9.2 ft (3 m). The machine weighs approximately 42,770 lbs (19,400 kg) and has a fuel capacity of 83 gallons (314 liters). The integrated braking system meets standard safety requirements, aiding durability and control during operation. Overall, the IT62H is engineered for durability, strength, and productivity, suitable for demanding construction and material handling applications.
Technical Attributes
- Engine Power
- 211 HP
- Max Speed
- 23.60 mph
- Static Tipping Weight
- 25,860.20
- Max Breakout Force
- 35775 lb-ft
- Tire Size
- 23.5R25
- Max Dump Height
- 9.20 ft
- Max Bucket Capacity
- 4.30 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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