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Laser Radar serves as an award-winning metrology component in the production of right-first-time composite parts. As it is offline-programmable, the system is ready for completely automated and unattended operation. The new Laser Radar system yields impressive productivity gains in applications across numerous markets. Manufacturers can complete their large-scale metrology workload multiple times faster, while acquiring higher-quality data. Through manual and automated non-contact measurement, Laser Radar is a productivity multiplier, supporting metrology-assisted production in aerospace, alternative energy, antennae, satellites, oversized castings and other large-scale applications. The new Laser Radar doubles measurement speed and performance, offers better data quality through improved signal-to-noise ratio, and features enhanced hole and edge measurement to cover more applications. Automated surface and feature inspection Recapturing one billionth of the reflected laser beam is enough for the Laser Radar to accurately measure a point within a 50m range. Laser Radar can be seamlessly integrated into the production process where its measurement data are used to consistently increase the precision and speed of manufacturing.

Mv330


This means that major savings can be realized, both on the purchase of these often expensive measuring tools, and the labor costs involved to apply or manipulate the targets. Through manual and automated non-contact measurement, Laser Radar is a productivity multiplier, supporting metrology-assisted production in aerospace, alternative energy, antennae, satellites, oversized castings and other large-scale applications. In the energy sector, Laser Radar systems are used to check the geometric integrity of giant wind turbine blades and concentrated solar mirrors. Automated surface and feature inspection Recapturing one billionth of the reflected laser beam is enough for the Laser Radar to accurately measure a point within a 50m range. Manufacturers can complete their large-scale metrology workload multiple times faster, while acquiring higher-quality data. Laser Radar serves as an award-winning metrology component in the production of right-first-time composite parts. Other applications include the inspection of space telescope hardware, large ship hulls and propellers, parabolic communication antennae as well as delicate and hot surfaces. One system suitable for many inspection jobs This revolutionary instrument often replaces large-scale metrology systems that struggle with parts that are too complex, too hard to reach, too delicate or too labor-intensive. Laser Radar can be seamlessly integrated into the production process where its measurement data are used to consistently increase the precision and speed of manufacturing. The Laser Radar is able to automatically perform hundreds of hole and sharp edge trim measurements in a fraction of the time required by traditional techniques. The new Laser Radar doubles measurement speed and performance, offers better data quality through improved signal-to-noise ratio, and features enhanced hole and edge measurement to cover more applications. Its proprietary laser reflection technology obsoletes tedious positioning of targets at difficult-to-access locations, as is required with laser tracker or photogrammetry systems. As it is offline-programmable, the system is ready for completely automated and unattended operation. Correctly manufactured geometric features are critical for high-quality assembly and part mating. Laser Radar supports the philosophy of metrology-assisted production to realize right-first-time manufacturing, which is critical for large-scale applications. The new Laser Radar system yields impressive productivity gains in applications across numerous markets. Higher productivity and improved performance The Laser Radar is a versatile metrology system that offers non-contact and true single-operator inspection.

Mv330

Video about mv330:

Slashing inspection time with Laser Radar MV330 350





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4 thoughts on “Mv330”

Vugami

09.09.2018 at 10:12 pm
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Its proprietary laser reflection technology obsoletes tedious positioning of targets at difficult-to-access locations, as is required with laser tracker or photogrammetry systems. As it is offline-programmable, the system is ready for completely automated and unattended operation.

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