KAWASAKI 95Z7 WHEEL LOADER

KAWASAKI 95Z7 KAWASAKI 95Z7 WHEEL LOADER equipment image

Equipment Overview

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OEM
KAWASAKI
Model
95Z7
Year of Manufacture
-
Category
WHEEL LOADERS

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Technical Description

The Kawasaki 95Z7 is a high-performance wheel loader engineered for demanding construction and material handling applications. Powered by a 16-liter Isuzu 6WG1 diesel engine, it delivers 388 net horsepower, making it one of the most powerful machines in its class. The engine meets EPA Tier 4i emission standards through advanced technologies such as cooled exhaust gas recirculation and a diesel particulate filter. The 95Z7 features a robust dual Z-bar linkage design and a variable-displacement hydraulic system, providing responsive control and efficient power delivery. Its open-center, load-sensing hydraulic system offers superior operator feedback and precise handling, while the IntelliTech control system automatically adjusts performance to match operating conditions. The loader is equipped with a general-purpose bucket with a rated capacity of 6.2 to 8.1 cubic yards, and at maximum raise, the dump clearance reaches 15.2 feet. The machine’s automotive-style, pulse-width modulation transmission ensures smooth shifting and improved fuel economy, complemented by a lock-up torque converter and traction control. With an operational weight of 75,790 pounds, the 95Z7 delivers strong breakout force and stability. Enhanced serviceability features include easy access to engine, cooling, and filter components, while the redesigned hood improves rear visibility. The 95Z7 is built for durability, productivity, and operator comfort, making it a top choice for heavy-duty jobsites.

Technical Attributes

Engine Power
388 HP
Max Bucket Capacity
8.1 yd³
Max Dump Height
15.20 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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