2025-04-23
As demand for MLCCs continues to grow in everything from smartphones to electric vehicles, manufacturers need faster, more accurate, and more reliable production systems. The YISENRONG Automatic MLCC Stacking Machine delivers just that—combining mechanical stability with intelligent design for next-level stacking automation.
Smart Integration of Critical Functions
This machine isn’t just a stacker—it’s a multi-functional system that handles each step of the MLCC layer preparation and stacking process. Key features include:
· Dual electrode side roll transfer mechanisms
· Peeling worktables for both electrode and cover sides
· A film handling manipulator with alignment mechanism
· Precision-controlled pressure mechanism
· Automated material receiving system
This full-process automation minimizes human error, maximizes stacking uniformity, and supports high-speed production without compromising accuracy.
Built for Stability, Designed for Visibility
Mechanical accuracy starts with a stable structure. The rack is reinforced with welded steel sections to minimize vibration and ensure long-term precision. Meanwhile, transparent PVC paneling not only keeps operators safe but also provides clear visibility for real-time monitoring, which is essential during critical adjustments or troubleshooting.
Compact Yet Powerful
Despite its comprehensive capabilities, the machine maintains a manageable size of 4350mm (L) x 1600mm (W) x 2500mm (H). It fits seamlessly into modern production environments and is engineered for both scalability and integration with upstream or downstream systems.
Why Choose YISENRONG’s MLCC Stacking Machine?
· Integrated automation for faster, consistent stacking
· Operator-friendly design with visible interiors and easy access
· Rigid frame construction for mechanical reliability
· Suitable for mid- to high-volume production lines
From performance to practicality, the YISENRONG Automatic MLCC Stacking Machine is a forward-thinking investment for manufacturers aiming to elevate the quality and efficiency of their capacitor assembly lines.