OverviewBased on the Z+F IMAGER® laser scanner series, the Z+F IMAGER® 5006EX is an explosion-proof 3D laser scanner certified for use in hazardous atmospheres. It is ATEX approved for Class I and Class II environments and is designed for surveying tasks in underground mining and industrial sites where explosive atmospheres may occur.
Key features- Nominal range: 79 m — suitable for many hazardous-area scanning tasks
- Extended viewing area: 310° vertical × 360° horizontal — wide coverage with fewer scan positions
- 100% Stand‑Alone concept — no external equipment required in the field, reducing potential ignition sources
- ATEX certified for Class I and II (directive 94/9/EG)
Applications- Industrial facilities
- Underground mining
- Oil & gas sites
Technical specificationsLaser system- Laser safety class: 3R (ISO EN 60825-1)
- Beam divergence: 0.22 mrad
- Beam diameter: 3 mm circular @ 1 m
- Ambiguity interval: 79 m
- Minimum range: 0.4 m
- Range resolution: 0.1 mm
- Data acquisition rate: ≤ 508,000 pixel / s
- Linearity error up to 50 m: ≤ 1 mm
- Range noise: 0.7 mm rms
Deflection unit- Vertical system: rotating mirror
- Horizontal system: rotating device
- Field of view vertical: 310°
- Field of view horizontal: 360°
- Vertical resolution: 0.0018°
- Horizontal resolution: 0.0018°
- Vertical accuracy: 0.007° rms
- Horizontal accuracy: 0.007° rms
- Scanning speed: ≤ 50 r/s (3,000 r/min) max.
General- Tilt measurement resolution: 0.001°
- Accuracy (zero point): 0.002°
- Data storage: 60 GB internal HDD
- Integrated operation panel: keypad with 6 buttons, 4-line display
- Data & communication interfaces: Ethernet / W-LAN
Power supply- Input voltage: 18 V DC (scanner)
- Power consumption: 65 W max.
- Battery life: approx. 1 h (replaceable battery pack)
Ambient conditions- Operating (calibrated) temperature: 0 °C to +40 °C
- Storage temperature: -20 °C to +50 °C
- Illumination: all conditions
- Humidity: non-condensing
- Protection class: IP53
- Explosion protection: ATEX 94/9/EG, Class I and II
- Target reflectivity: operation without retro-reflectors