SENYAT QC400 WIRE EDM MACHINE

SENYAT QC400 SENYAT QC400 WIRE EDM MACHINE equipment image

Equipment Overview

Share Link
OEM
SENYAT
Model
QC400
Year of Manufacture
-
Category
WIRE EDM MACHINES

Market Value Calculator

A+

Technical Description

The SENYAT QC400 Wire EDM Machine features a robust CNC control system (HF, AUTOCUT) and offers precise machining with X, Y, and Z-axis travels of 15.75 in, 19.69 in, and 9.84 in respectively, enabling the processing of moderately sized workpieces. Designed for efficient automated operations, it includes auto threading to maintain continuous cutting without manual intervention. The machine is configured for non-submerged cutting, which simplifies maintenance and setup. Weighing 3,527.4 lbs, the QC400 balances stability with industrial capability. Typical use is in precision metal model and die production, supported by a high-rigidity frame and AC motor drive system that provides smooth and accurate axis movements. Its table area and travel range support workpieces up to approximately 250 mm thick and 600 kg in weight, making it suitable for a range of metalworking applications demanding reliability and precision. The machine prioritizes wire tension control with closed-loop sensors and automatic wire handling, enabling both rough and finish cuts with optimized cutting speed and surface finish. The QC400 excels in cutting complex shapes with minimal operator intervention, leveraging its CNC system for accurate contouring and taper cutting capabilities within approximately ±6 degrees. Overall, it combines a durable mechanical design with advanced electrical discharge machining technology to deliver high precision, high rigidity, and automated wire EDM operations ideal for medium-duty toolmaking and production environments.

Technical Attributes

Z-Axis Travel
9.84 ''
Control System
CNC (HF, AUTOCUT)
X-Axis Travel
15.8 ''
Y-Axis Travel
19.7 ''

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.

If you identify any inaccuracies, please help us improve our data by reporting them here.