CATERPILLAR 352F CRAWLER EXCAVATOR

CATERPILLAR 352F CATERPILLAR 352F CRAWLER EXCAVATOR equipment image

Equipment Overview

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OEM
CATERPILLAR
Model
352F
Year of Manufacture
-
Category
CRAWLER EXCAVATORS

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Technical Description

The Caterpillar 352F is a large hydraulic excavator engineered for demanding excavation tasks, offering robust performance and advanced features. Powered by a Cat C13 ACERT diesel engine, the 352F delivers a net power output of 417 hp (311 kW), ensuring reliable operation in a variety of conditions. The engine meets Tier 4 Final emission standards and is biodiesel capable up to B20, supporting both environmental compliance and fuel flexibility. With an operating weight of 115,700 lbs, the machine provides excellent stability and lifting capacity for heavy-duty applications. The 352F features a reach boom and stick configuration, enabling a maximum digging depth of 28.8 ft and a maximum reach along the ground of 42.4 ft, making it ideal for deep and extended digging operations. The hydraulic system is designed for high efficiency, with a maximum implement flow of 779 L/min (206 gal/min) and a maximum pressure of 5,076 psi, ensuring powerful and responsive control. The excavator is equipped with a variable gauge undercarriage, allowing for optimal ground pressure distribution and improved maneuverability. Additional features include a high-efficiency hydraulic fan with a reverse function for easy cleaning, three selectable power modes (Power, Smart, and Eco) for optimized fuel consumption, and a 115-amp alternator for reliable electrical performance. The 352F also includes premium surround working lights and a high-ambient cooling system, enhancing operator visibility and comfort in challenging environments.

Technical Attributes

Max Reach
38.40 ft
Max Digging Depth
24.6 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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