Brief: This short presentation tells the story behind the design and its intended use cases. Watch as we demonstrate the YLP-FA-600 High Speed Full Automatic Card Punching Machine in action, showing how it efficiently processes PVC, ABS, PET, PETG, and paper cards with precision and reliability. You'll see the PLC-controlled operation, servo-driven feeding system, and learn how this economic solution enhances production workflows for international B2B clients.
Related Product Features:
Compact structure with reliable performance and economic pricing for full automatic operation.
PLC program control with bilingual Chinese/English touch screen for user-friendly interface.
Servo motor-driven feeding and conveying system with adjustable material positioning.
High-precision ball screw module for punching feed with adjustable position parameters.
High-power servo motor punching power ensures low noise, fast speed, and stable operation.
Punching speed is adjustable to optimize performance for cards of different thicknesses.
Real-time monitoring with automatic shutdown and alarm functions for abnormal situations.
Automatic sheet picking and feeding system reduces operator work intensity significantly.
FAQs:
What materials can the YLP-FA-600 Full Automatic Card Punching Machine process?
The machine is designed to process PVC, ABS, PET, PETG, paper card, and mixed materials like PVC and ABS combinations.
What is the production speed of this automatic card puncher?
The YLP-FA-600 operates at high speeds ranging from 6000 to 16000 cards per hour, depending on material and setup.
How is the positioning and precision achieved during the punching process?
Precision is maintained through servo motor-driven high-precision ball screw modules for feeding, with adjustable position parameters and ±0.10mm punching precision, compliant with ISO CR-80-ISO7810 standards.
What control systems are used in this machine?
It uses PLC program control combined with a servo system, featuring a bilingual Chinese/English touch screen for easy operation and real-time monitoring.