1999 CINCINNATI ARROW1250C VERTICAL MACHINING CENTER

CINCINNATI ARROW1250C 1999 CINCINNATI ARROW1250C VERTICAL MACHINING CENTER equipment image

Equipment Overview

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OEM
CINCINNATI
Model
ARROW1250C
Year of Manufacture
1999
Category
VERTICAL MACHINING CENTERS

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Technical Description

The 1999 Cincinnati Arrow 1250C is a 3-axis CNC vertical machining center manufactured by Cincinnati Milacron of Cincinnati, Ohio, representing the largest model in the Arrow series with a 49.2-inch X-axis travel. The CAT-40 spindle delivers 15 HP and reaches a maximum speed of 8,000 RPM, providing robust cutting performance for production machining of large components in steel, cast iron, and aluminum. The work table measures 53.1 x 23.6 inches (1,350 x 600 mm) with a substantial table load capacity, and axis travels extend 49.2 inches (1,250 mm) in X, 19.7 inches (500 mm) in Y, and 22.0 inches (560 mm) in Z. A 22-tool ATC supports complex multi-operation machining programs. Control is provided by the Cincinnati Acramatic 2100 CNC system. Overall machine dimensions are approximately 145 x 112 x 142 inches and the machine weighs approximately 19,360 lbs, reflecting the substantial column and base structure required for the large work envelope. The Arrow 1250C is well-suited for large mold bases, aerospace structural components, long fixture plates, and production of large prismatic parts requiring extended X-axis travel. Cincinnati Arrow machines from this era are known for excellent rigidity and long service life, with broad parts and service availability.

Technical Attributes

X-Axis Travel
49.2 ''
Max Spindle Speed
8000 RPM
Control System
Acramatic 2100
Table Size (LxW)
53.1 x 23.6
Y-Axis Travel
19.7 ''
Spindle Power
15 HP
Z-Axis Travel
22 ''
# of Axes
3

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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