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ConoScan 3000
3-D non-contact compact measuring system
The ConoScan 3000 is a compact, cost-effective, 3-D scanner. The scanner combines the inherent capabilities of Optimet's point sensors with precise x-y scanning stages. The scanner uses Viewer metrology software for precise measurement analysis. The Conoscan 3000 serves numerous industries, science and fine arts for their reverse engineering, quality control and research applications
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Applications
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Specifications
 
The Conoscan 3000 system offers:
  • a table-top scanner
  • 3-D scan of objects up to 120X120mm.
  • Use of conoscopic holography measurement technology.
  • Measurements of a variety of materials including metal, plastic, clay, wood, gypsum and more.
  • a versatile platform to secure objects for scanning.
  • Unique Viewer software displaying the object profile or 3D image immediately following the scan, enabling precise measurement analysis, focusing on specific points.
  • The ability to filter the measurement results.
  • The ability to export data to many CAD/CAM, Surface Analysis and Reverse Engineering applications such as Digital Surf, TrueGage, Geomagic, RapidForm, PolyWorks, CopyCAD, Graphitech Copymate, Metracs and ArtCAM software.
  • One USB cable connection for easy linking to a PC or lap-top.
Profile and 3-D measurements performed with the ConoScan 3000
Medallion with detail and section
 
 
Mechanical part with geometrical analysis data
 
 
Mechanical part with geometrical analysis data
 
 
The ConoScan 3000 scanner is capable of scanning various objects with complicated geometries for applications such as reverse engineering, part inspection and research. Replaceable objective lenses (from 16mm-150mm) are available as an option for a precise tuning of the system to your application.
The ConoScan 3000 can be mounted with the entire range of the Optimet sensors; Mark 3.0 ConoProbes, NanoConoProbes and Smart ConoProbes.
Reverse Engineering
The scanner is able to scan objects up to 120x120mm, providing results as a cloud of points or surface file (STL), allowing the user to accurately produce files which can be used as a reference to create CAD models enabling an easy process from part to model
Reverse Engineering refers to the ability to reproduce the shape of an existing object.

Metal ornamentation and ceramics
Reliable and fast reconstruction of art industrial designs is accomplished due to the ConoProbe's unique capabilities to measure holes, grooves and steep angles on diffusive and shiny metal surfaces.
Jewelry
Accuracy and fidelity requirements of artistic applications , such as coins, medals and jewels are met by precise replication of shapes, angles and small features provided by the Conoprobe .
Research
The versatile ConoScan 3000 can be readily configured utilizing interchangeable lenses to easily switch from project to project allowing R&D labs and universities to perform research in a more productive manner.
Inspection/Quality Control
The scanner can be utilized for inspection/quality control of the measured part. Measurement of the parts dimensions and angles is easily performed using the Viewer software. Utilizing third party software the scanner will produce files that could be used as a reference for CAD files
Quality Control involves examining the geometrical compliance or compatibility of a part with the original design.

Optical Lens Measurement
Production of complicated aspheric and diffractive optics is highly affected by the ability to measure the surface shape of the lens. The surface shape of the lens cannot be tested with simple metrology methods. Optimet's NanoConoprobe provides a unique new tool for on line inspection of lens parameters during the production process saving much time and money.
Burr Inspection
Plastic deformation during metal cutting, blanking or drilling, influence the accuracy of the part. In the case of micro burr formed in micro drilling or in fine blanking, other methods can not be used for measurement due to the very thin and sharp edge of the burr, with less than 30µm height. When the geometry of the burr is measured properly, as can be done with the Smart, the proper deburring method or processes can be implemented.
Optimet offers a variety of objective lenses, cables lengths and optical accessories enabling adaptation of its sensors to a wide range of applications.
 
 
OBJECTIVE LENSES
16mm lens for standard ConoProbe
Microscope lens. High numeric aperture .High precision lens.
P/N 3Z83016
25mm lens for standard ConoProbe
Popular for small feature scan in reverse engineering applications.
P/N 3Z83025
25mm Gold lens for standard ConoProbe
Distortion free aspheric lens.
P/N 3Z81030
40mm lens for standard ConoProbe
With standard sensor - for high precision and long standoff applications.
With HD sensor - for automotive QC engine applications.
P/N 3Z83040
50mm lens for standard ConoProbe
Very popular in precise reverse engineering applications
P/N 3Z81050
75mm lens for standard ConoProbe
Very popular in reverse engineering applications and in-process inspection inside holes
P/N 3Z81075
100mm lens for standard ConoProbe
Popular for wood industrial applications
P/N 3Z81100
150mm for standard ConoProbe
Large working range
P/N 3Z82006
200mm for standard ConoProbe
Very large working range for large objects reconstruction as in shoe lasts.
P/N 3Z82007
250mm for standard ConoProbe
Very large range coverage for free form objects
P/N 3Z82008
  Above 250mm lens for the ConoProbe
Special for laser distance related applications.
For more details please contact our service center.
  Custom lenses
For more details please contact our service center.
50mm Extended Lens for standard ConoProbe
Best for small turbine blades
P/N 3Z83050E
75mm Extended Lens for standard ConoProbe
High precision lens for long standoff measurement of turbine blades.
P/N 3Z83075E
125mm Extended Lens for standard ConoProbe
For deep objects measurement - for avoiding collisions
P/N 3Z83125E
 
ConoPrbe HD
16mm lens for ConoProbe HD
For small feature recognition
P/N 3Z84016
25mm lens for ConoProbe HD
For high precision measurement of sharp contours on shiny surfaces.
P/N 3Z81025
25mm Gold lens for ConoProbe HD
Distortion free aspheric lens.
P/N 3Z81030
40mm lens for ConoProbe HD
With standard sensor - for high precision and long standoff applications.
With HD sensor - for automotive QC engine applications.
P/N 3Z83040
50T lens for ConoProbe HD
High definition lens
P/N 3Z81050T
  Custom lenses
For more details please contact our service center.
50mm- Extended Lens for ConoProbe HD
Best for small turbine blades
 
NanoConoPrbe
16mm lens for NanoConoprobe
For flatness inspection of dry and wet surfaces
P/N 3Z79016
25mm Gold lens for NanoConoprobe
Widely use in PDP surface coatings inspection
P/N 3Z79030
40mm lens for NanoConoprobe
For glass in-process thickness inspection
P/N 3Z79040
50T lens for NanoConoprobe
For glass in-process thickness inspection
P/N 3Z79050
75mm lens for NanoConoprobe
For glass in-process thickness inspection
P/N 3Z79075
 
Microscopic lens X10 for NanoConoprobe
For use on LCD thin layers on-line inspection
P/N 3Z79010
Microscopic lens X20 (SO 10mm) for NanoConoprobe
For use on LCD thin layers on-line inspection
P/N 3Z79020
 
Smart ConoProbe
25mm Gold lens for Smart ConoProbe
Aspheric lens ,distortion free, very high precision for engine inspection applications
3Z94030
50mm lens for Smart ConoProbe
In use for engraving on shiny surfaces
3Z94050
75mm lens for Smart ConoProbe
Powerful lens for in-process inspection on metal surfaces
3Z94075
100mm lens for Smart ConoProbe
Provides high precision in reverse engineering of large objects where details reconstruction is essential.
3Z94100
150mm lens for Smart ConoProbe
Large working range
3Z94150
200mm lens for Smart ConoProbe
Very large working range
3Z94200
 
OPTICAL ACCESSORIES
Video Camera (CCTV)
A special video camera mounted on the sensor through which a video picture of the object and the sensor's laser spot are viewed. This accessory enables easy adjustment of the sensor's laser beam in accordance with the area being measured. The camera complies with NTSC or PAL standards and is inserted between the ConoProbe and the objective lens.

















 
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