Views: 0 Author: Site Editor Publish Time: 2025-09-24 Origin: Site
Optimized Configuration for Tube Light Production Using HW-A8 Automatic Pick-and-Place Machine

1. Placement Efficiency
Maximum speed of 40,000 CPH, typical speed 15,000-30,000 CPH, suitable for mass production of tube lights.
8 synchronized placement heads that support parallel multi-task processing.
2. Precision and Stability
Placement accuracy of ±0.05mm, meeting the dense arrangement needs of LED tube lights.
Granite base with 200kg counterweight design reduces vibration during high-speed operations.
3. Vision System
8 sets of industrial-grade flying cameras achieve 360° component recognition.
Reference mark alignment (<0.05mm) ensures precise positioning of elongated PCBs.
4. Motion Control
Panasonic servo drive with TBI precision ball screw, suitable for long PCB cards (maximum support of 1200mm PCB).
Z-axis travel of 12mm, compatible with common component heights for tube lights.

| Functional Module | Tube Light Production Adaptation Description |
| Component Compatibility | Supports 3528/5050 LEDs, driver ICs, SMD resistors, and capacitors. |
| Conveyor System | Three-stage buffering automatic conveyor belt for continuous processing of elongated PCBs. |
| Feeder Configuration | Standard with 30 x 8mm feeders to meet tube light BOM requirements. |
| Programming Control | Visual automatic programming simplifies long PCB card program settings. |
Independent nozzle rotation function adapts to multi-angle placement of LED tube lights.
Automatic vacuum detection prevents small component drop-off.
Expanded PCB handling capability (600×400mm standard / 1200mm extended) to match different lengths of tube lights.
Power Supply: 220V/2.0kW
Air Source Pressure: 0.55MPa
Device Size: 1350×1300×1450mm
Weight: 1200kg
This configuration is specifically designed for tube light production, enabling reliable placement of 15,000-30,000 components per hour on LED tube light production lines through high-speed, high-precision placement, long PCB processing capabilities, and optimized stability.
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