ECCO 95.025G: 3D SENSOR
TO MEASURE FLAT TRANSPARENT OR SPECULAR SURFACES
Delivering superior 3D data quality in a compact design, the ECCO 95.025G has been developed to scan flat glass and specular, highly reflective surfaces. Combining our reliable ECCO 95 sensor technology with an optimised lens and optics, it provides a high-accuracy, high-resolution, high-speed scanning solution.

Properties & Benefits
Typical field of view (near | mid | far ) 1 | 25 mm | 28,5 mm | 25 mm |
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Measurement range 1 | 15 mm |
Typical vertical resolution (Z) 1 | 1.4-1.9 μm |
Typical lateral resolution (Y) 1 | 13.0 – 14.5 µm |
Stand-off distance | 20.7 mm (optics add-on), 69.2 mm (housing) |
Mounting distance | 89 mm |
Laser wavelength | 450 nm (brilliant blue laser) |
Laser class (standard) | 3R |
Maximum points/ 3D profile | 1920 |
Mounting | Sensor mounted at 14.5° pitch angle (sensor is shipped with mounting adapter) |
Weight | Approx. 825 g (includes mounting adapter) |
Z-Repeatability4.5 | 0.4 μm |
Z-Linearity2.5 | 0.024% |
Part number | 3.004.193 (class 3R) |


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Typical scan rate 3 | Approx. from 1 kHz up to 10 kHz (with full FOV) |
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Typical 3D point rate 3 | Approx. from 0.7 up to 15 million points/sec |
Interface | Gigabit Ethernet ( 1 Gbit/ sec) |
Inputs | 2 x Inputs, 5 – 24 VDC Quadrature Encoder (AB-Channel, RS-422 Standard) |
Outputs | 2 x Outputs, 24 VDC (max. 20 mA) |
Trigger | START Trigger support on Input 1 – 2 DATA Trigger support on Quadrature Encoder Input (Max. DATA trigger rate: 100 MHz) DATA Trigger support on Input 2 |
Input voltage | Power | 24 VDC | 7.5 W |
Maximum ambient light | 10,000 lx |
EMC test | as per EN 61 000-6-2, EN 61 000-6-4 |
Vibration/ Shock test | as per EN 60 086-2-6, -27, -29, -64 |
Electrical safety | as per EN 61 010-1-3 |
Protection class | III, as per EN 61 040-3 |
Enclosure rating | IP65 |
Air humidity | Maximum 90%, non-condensing |
Temperature (operation | storage) | 0 – 40° C | -20 – 70° C |
Compatible accessories | Power-I/O-Encoder cable: 6.320.0XX Ethernet cable: 6.303.0XX |
(1) Typical values can vary up to 5% due to optical tolerances
(2) Z-Linearity calculated as a variation of “bias” (reference value vs. measured value) over the measurement range
(3) Scan rate & point rate are dependent on the configured field of view, measurement range and exposure time. A ‘scan’ by definition considers maximum points/3D profile i.e. full FOV. The typical scan/point rate range has
been estimated considering an exposure time of 1 µsec, min-max MR and full FOV. The typical scan rate can be further boosted by windowing the FOV
(4) Experimentally assessed by scanning a fixed measurement target 4100 times successively within short time interval. No post-processing filters applied
(5) Measurements performed on a SmartRay standard artifact which is an aluminium flat matt surface painted matte white