KAWASAKI 90Z7 T4F WHEEL LOADER

KAWASAKI 90Z7 T4F KAWASAKI 90Z7 T4F WHEEL LOADER equipment image

Equipment Overview

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OEM
KAWASAKI
Model
90Z7 T4F
Year of Manufacture
-
Category
WHEEL LOADERS

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Technical Description

The Kawasaki 90Z7 T4F is a high-performance wheel loader engineered for demanding construction environments, featuring a robust Cummins QSL9 engine that delivers 275 hp (205 kW) and meets Tier 4 Final emissions standards. This model is equipped with an advanced open-center, load-sensing hydraulic system that minimizes energy loss and maximizes efficiency, resulting in improved fuel economy and responsive operation. The 90Z7 T4F offers a rated bucket capacity ranging from 4.9 to 6.10 cubic yards (3 to 5 cubic meters), making it suitable for a wide range of material handling tasks. With an operational weight of 53,310 lbs (24,181 kg), the loader provides excellent stability and breakout force for heavy-duty applications. The machine’s intelligent control system optimizes engine and transmission performance, ensuring the right balance of speed and power for varying job site conditions. The 90Z7 T4F also features a variable geometry turbocharger for consistent boost across the RPM range, a high-efficiency cooling system with an aerodynamic fan, and easy access for maintenance. The operator benefits from enhanced visibility, ergonomic design, and a spacious cab. The loader’s dump clearance at maximum raise is 14.5 feet (4 meters), allowing for efficient loading into trucks and other equipment. Built with heavy-duty components and a durable Z-linkage lift arm, the Kawasaki 90Z7 T4F is designed for reliability, productivity, and long service life in the most challenging construction environments.

Technical Attributes

Engine Power
275 HP
Max Bucket Capacity
6.1 yd³
Max Dump Height
14.50 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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