KATO HD1023IILC CRAWLER EXCAVATOR

KATO HD1023IILC KATO HD1023IILC CRAWLER EXCAVATOR equipment image

Equipment Overview

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OEM
KATO
Model
HD1023IILC
Year of Manufacture
-
Category
CRAWLER EXCAVATORS

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Technical Description

The Kato HD1023IILC is a robust hydraulic excavator designed for heavy-duty construction and excavation tasks. It features three boom and stick options, offering maximum digging depths ranging from 21.4 ft to 26.3 ft, and maximum cutting heights up to 34.5 ft, enabling versatile operation for various job site requirements. Its bucket capacity ranges from 0.8 to 2 cubic yards, with a reference bucket size at 1.4 cubic yards, facilitating efficient material handling. The excavator operates on a turbocharged C 6D34-TL engine with a displacement of 357.6 cubic inches, delivering 167.7 hp at 2150 rpm and a maximum torque of 441.1 lb-ft at 1600 rpm, ensuring strong performance and fuel efficiency. With an operating weight of 52,029 lbs, the machine balances power with stability, supported by a ground clearance of 1.6 ft and tail swing radius of 9.7 ft, optimizing maneuverability in confined spaces. Its hydraulic system boasts a pump flow capacity of 130.6 gallons per minute and a relief valve pressure of 4772 psi, providing responsive control and durability. The undercarriage includes 51 track shoes per side, 9 track rollers, and 2 carrier rollers per side, operating at a ground pressure of 6.9 psi to minimize ground disturbance while maximizing traction. It has a maximum travel speed of 3.5 mph and a swing speed of 11 rpm for operational efficiency. The machine also features a 24-volt electrical system and generous fluid capacities, including 100.4 gallons for fuel and 76.7 gallons for hydraulic fluid, supporting extended use without frequent refueling or maintenance interruptions.

Technical Attributes

Max Digging Depth
21.4 ft
Engine Power
167.7 HP
Track Width
23.60 ''

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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