𐄀 Focus on providing PCBA separator manufacturing process solution
EXE

EXE 910 Offline Dual-spindle PCB Depaneling Machine Details

The EXE 910 Offline Dual-spindle PCB Depaneling Machine is engineered for high-efficiency and precise PCB separation. This detailed video demonstrates its powerful dual-spindle system and stable routing performance.

Featuring dual spindle milling machine technology, the machine achieves fast, accurate cuts with minimal mechanical stress on components. It offers excellent dust control, user-friendly operation, and consistent results for various PCB panels. Ideal for offline production lines, the 910 model significantly improves productivity and cutting quality. Watch the full demonstration to see how this advanced dual-spindle solution meets the demands of modern electronics manufacturing.


Blog & News
For Automotive Electronics Manufacturers: Low Depaneling Yield? This High-Precision Inline Depaneling Machine Solves All Process Pain Points
Process engineers and plant managers specializing in vehicle-mounted PCBs and new energy control boards, take note! Are you constantly plagued by the following production headaches? ยท Scratches on hi...
Read More
2026 Industry Insights: How Online PCB Subboard Machines Are Redefining the Value Chain of Electronic Manufacturing
By 2026, online PCB board separation machines have evolved from optional auxiliary equipment in production lines to a critical necessity that determines the competitiveness of modern electronics manuf...
Read More
How Does the EXE 880 Offline PCB Depaneling Machine Meet Automotive Zero-Tolerance Standards?
Automotive electronics demand flawless reliability for decades. A single defect in ADAS, ECU, or EV power modules can lead to serious safety risks.The EXE 880 delivers high-precision, low-stress depan...
Read More
We use cookies to offer you a better browsing experience, analyze site traffic and personalize content. Part of the tracking is necessary to ensure SEO effectiveness,
By using this site, you agree to our use of cookies. Visit our cookie policy to learn more.
Reject Accept