User manual KONICA CR-321

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[. . . ] 2. 2 bundled) software. Measurement Flow of VIVID 9i (Polygon Editing Tool) High speed and high accuracy Start the measurement by framing the scan area on the LCD Viewfinder of the VIVID 9i unit or on the host computer's display . Each scan requires only 2. 5 seconds to aquire accurate 3D data. Standards-Traceable performance Konica Minolta supports compliance with ISO 9000. Manufacturers using VIVID 9i for QC applications can receive test report of the accuracy of each 9i, traceable to national standard. [. . . ] This test report is created by evaluating the measurement accuracy for all 3 lenses of each 9i using our Reference 3D Chart, an artifact traceable to national standards, and thus can be used as documentation for conformance with ISO requirements. Measurement with VIVID 9i 2 Merging and editing of 3D data Aluminum Wheel Quick, easy editing Missed a spot?You'll see it immediately and be able to scan any voids. You can check the measured 3D data in real time on the preview screen. This allows for sequential framing, measurement, and alignment of the data. Thanks to the improved processing speed and the new graphical user interface specifically developed for the VIVID 9i, even large amounts of measurement data can be merged, edited and converted into general 3D data format with greater speed and ease. Merging of data can be accomplished by just clicking on a single pair of points. There is no need to attach markers, etc. before measurements. Measurement and data position alignment What's more, our new field calibration system maintains the high reliability of the factory settings by canceling the degraded accuracy caused by lens exchange or a change in environment. Merging of 3D data (polygons) Photogrammetry System PSC-1 optional VIVID 9i captures large parts (> 1 meter) easily. When PSC-1 is used with the 9i, the combination enables the user to capture both high-detail and large parts. Design of heavy equipment Other manufacturers Inspection or reverse engineering of interior/exterior wall materials and modular bath units Inspection of train rail wear, tanks at hydroelectric power plants, and turbine blades For other applications, visit our website below http: //se. konicaminolta. us/3d and CAD datadata Alignment with CAD data Color map calculation Inspection evaluation report Comparison between CAD data and measured data Color map display providing at-a-glance indication of sections within/outside the tolerance range (contour display) measured dataat specific points Digital Process Re-engineering The non-contact 3D digitizer VIVID 9i offers improved accuracy and ease of use. High speed, high precision, and Measurement accuracy of ±50µm The VIVID 9i requires only 2. 5 seconds per scan to acquire accurate 3D data. Consequently, the VIVID 9i is ideal for accuracy verification and shape inspection of cast, forged, and pressed automotive parts and plastic-molded automotive parts. Give us your part, and we'll prove it to you. The new Field Calibration system, negates inaccuracies caused by lens exchange or environmental changes. A simple calibration procedure before use assures the optimal performance from the 9i. Target Set of filters (R, G, B, BP, rotatable) Light-receiving lens system (Interchangeable) CCD Laser beam Light-emitting lens system High-accuracy measurement of even large parts The VIVID 9i can be combined with PSC-1 , Konica Minolta's optional photogrammetry system. The combination of the VIVID 9i and PSC-1provides for fast and accurate measurement and data assembly even for relatively large targets - such as car body portions, doors, bumpers, and instrument panels. It is also effective to correctly align surfaces having no characteristic shape, such as projections and depressions. (Typical subject size ranges from 0. 5 to 2. 0 m and larger) Galvanometer - driven mirror <Measurement principle> The VIVID 9i is based on the principal of laser triangulation. A target is scanned with laser stripes . [. . . ] A target is scanned with laser stripes . The CCD camera receives the light reflected from the surface of the subject. Surface shape measurements of the subject are obtained through triangulation, and converted into a 3D polygon mesh. [. . . ]

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