3D µCMM - Bruker Alicona

3D µCMM - High accuracy optical coordinate measuring machine

 

3D uCMM Alicona

 

The 3D µCMM is the most accurate purely optical micro-coordinate measuring system in its class. Users combine advantages from tactile coordinate measuring technology and optical surface measuring technology and measure the dimension, position, shape and roughness of components with only one sensor.

 

 

 

The 3D µCMM offers high geometric accuracy of several optical 3D measurements in relation to each other, enabling the measurement of small surface details on large components and precisely determining the position of these individual measurements in relation to each other. The spectrum of measurable surfaces includes all common industrial materials and composites such as plastics, PCD, CFRP, ceramics, chrome, silicon....

The 3D uCMM can measure materials ranging from matte to polished surfaces, reflective components can be measured. Simple operation is implemented by single-button solutions, automation and ergonomic control elements such as a specially designed controller. Air-bearing axes with linear drive enable wear-free use and highly accurate, fast measurements. This makes µCMM ideal for permanent use in production, too.

 


 

 

 

 

 


 

 

Automated Measurement Solution with a Robot Arm: Pick & Place

The optical 3D µCMM can be integrated with a robot arm to form an automated system for loading and unloading the measuring sample from the stage—this is also known as the Pick & Place Solution. Users can set up automated loading, measurement, and OK/NOT OK classification directly on the automated production line. The measurement data can be connected to a data storage server on the ERP system.

 

 

Real3D Technology integrated into the optical 3D µCMM – Measurement of complex sample surface geometries

Real3D Full form measurement

With Real3D Technology, users can fully measure the surface geometry of samples in structurally and positionally complex areas. Moreover, this technology allows for the analysis of complex profiles, the measurement of flatness and form, as well as comparison with the sample's 3D design file.

MetMaX Software - The automatic capability for measurement that eliminates the user's need to ask: 'How do I measure?

MetMaX software

This is the core objective of the MetMaX  a fully automated software solution, integrated into the 3D µCMM measuring machine.  The operator is not required to have special in-depth measurement knowledge to run the 3D µCMM measuring machine. All the necessary knowledge is already contained within the MetMaX software, which knows how to measure and how to analyze the 3D data.

 


 

GENERAL SPECIFICATIONS:

Number of measurement points: single measurement X: 1720, Y: 1720,  X x Y: 2.95 million. Multi measurement: up to 500 million
Positioning volume (XxYxZ): 310 mm x 310 mm x 310 mm = 29 791 000 mm³
Travel speed of axes: up to 100 mm/s
Coaxial illumination: LED coaxial illumination (color), high-power, electronically controllable
System monitoring: 9 temperature sensors (accuracy ± 0.1 K), 3 vibration sensors, internal current and voltage monitoring, incl. long-term logging, retrievable
3D Accuracy 10360-8: EUni:Tr:ODS,MPE = (0.8 + L/600) μm (L in mm). EUniZ:St:ODS,MPE = (0.15 + L/50) μm (L in mm).

OBJECTIVE SPECIFIC FEATURES

Objective   3000 WD8 1900 WD 30 1500 WD23 1500 WD70 800 WD17 800 WD37 400 WD19 150 WD11  
Working distance mm 8.8 30 23.5 69,4 17.5 37 19 11  
Lateral measurement range (X,Y) mm 5.26 3.29 2.63 2.63 1.32 1.32 0.66 0.26  
(X x Y) mm² 27.64 10.8 6.91 6.91 1.71 1.71 0.43 0.06