AXI X
High-Speed Inline AXI Platform
✔ The X Series delivers an inline automated X-ray system platform, supporting a broad range of Automated X-ray Inspection (AXI) applications in the Surface Mount Technology (SMT) market
✔ The X-platform series is a high-speed inline automated X-ray inspection (AXI) system designed for PCB assembly boards, supporting both single/multipanels and tray-based samples. Delivering market-leading inspection speed, it is perfectly suited for low-mix, high-volume production environments. The X Series platform comes with up to 4 advanced image acquisition modes, ensuring the optimal setup for diverse inspection requirements.
| Installation | AXI X Series |
|---|---|
| System Dimensions (H, W, D) | 1630 × 1800 × 1575 mm |
| Conveyor Height (SMEMA) | 950 mm ± 30 mm |
| System Mass | 2800 kg |
| Safe Operating Temperature Range | 15-32°C, optimal 20-25°C |
| Max. Power Consumption | 2 kVA |
| Air Supply | 5-7 Bar, <2 l/min, filtered (30 µ), dry, oil free |
| Line Voltage | 400 VAC, 50/60 Hz 3 Phase, 16 A208 VAC, 50/60 Hz 3 Phase, 25 A |
| Feature | SMT |
|---|---|
| Microfocus X-ray Source (sealed tube) | 130 kV, 39 W |
| Detector | Aspire CMOS FPD |
| Detector Pixel Pitch | 50 µm |
| Detector Active Area | 120 × 140 mm, 2400 × 2782 pix |
| Detector Max. Frame Rate | 25 fps |
| Detector Bit Depth | 14-bit / 16-bit |
| Feature | SMT |
|---|---|
| Transmission (2D) | 6 views/sec |
| Off-Axis (2.5D) | 5 views/sec |
| Dynamic Planar CT (3D) | 3 sec/FoV |
| Feature | SMT |
|---|---|
| Max. Sample Size (L × W) | 460 × 360 mm |
| Max. Inspection Area (L × W) | 460 × 360 mm |
| Min. Sample Size (L × W) | 80 × 80 mm |
| Max. Sample Mass | 5 kg |
| Max. Inspection Angle | 42° |
| Max. Resolution | 5 µm/pix |
| Feature | SMT |
|---|---|
| Top (incl. sample thickness) | 35/50 mm |
| Bottom (excl. sample thickness) | 35/10 mm |
| Min. Edge Clearance for Clamping | 3 mm |
| Max. Assembly Thickness | 10 mm |
This product video introduces AXI X by summarizing its general working principle and typical application scenarios.