MITSUBISHI FA20P WIRE EDM MACHINE

MITSUBISHI FA20P MITSUBISHI FA20P WIRE EDM MACHINE equipment image

Equipment Overview

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OEM
MITSUBISHI
Model
FA20P
Year of Manufacture
-
Category
WIRE EDM MACHINES

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Technical Description

The Mitsubishi FA20P Wire EDM Machine is a high-precision CNC-controlled electrical discharge machining system designed for intricate cutting of conductive materials. Featuring a robust Mitsubishi 64-bit control system, this machine delivers exceptional accuracy and reliability for demanding production environments. The FA20P offers a maximum workpiece size of 41.3" x 31.5" x 11.6" and can accommodate workpieces weighing up to 3,306 pounds, making it suitable for a wide range of industrial applications. Axis travel is 19.7" on the X-axis, 13.8" on the Y-axis, and 11.8" on the Z-axis, with U/V travel of +/- 3" for enhanced versatility in complex geometries. The machine is equipped with automatic wire threading, streamlining operation and reducing downtime, and supports submerged machining for improved surface finish and accuracy. The FA20P utilizes a standard wire diameter of 0.010" and is compatible with a range of wire sizes, allowing for flexibility in cutting requirements. Its advanced control system ensures precise positioning and repeatability, while the submerged cutting capability enhances performance on thick or intricate workpieces. With a maximum machining speed and taper capacity of +/- 30 degrees, the FA20P is engineered for high productivity and superior surface quality. The machine’s sturdy construction and comprehensive feature set make it an ideal solution for precision wire EDM applications in tool and die, mold making, and general manufacturing industries.

Technical Attributes

U/V-Axis Travel
3.00 ''
X-Axis Travel
19.7 ''
Table Size (LxW)
41.3 x 31.5
Y-Axis Travel
13.8 ''
Control System
MITSUBISHI 64 BIT
Z-Axis Travel
11.80 ''

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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