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High-speed cameras

The high-speed cameras offered by RODER SRL are fundamental instruments for quality control and process control. These solutions make it possible to acquire detailed images in applications where phenomena develop very rapidly. The use of systems integrated with machine vision and artificial intelligence ensures precise, repeatable analysis. The cameras can be combined with LASER systems and RFID traceability technologies, improving the efficiency and traceability of production lines. Thanks to their reliability, the cameras support companies wishing to increase productivity and reduce errors in complex industrial processes.

  • Analysis of fractures caused by drop events

    Analysis of fractures caused by drop events

    Analysing fractures caused by drop events using slow-motion techniques and high-speed cameras allows detailed study of fracture mechanisms. This methodology provides critical data on the stresses and dynamics of materials at the moment of impact, improving understanding of structural performance.

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  • Analysis of physical phenomena in liquids using slow-motion techniques

    Analysis of physical phenomena in liquids using slow-motion techniques

    Analysing the physical phenomena of liquids with slow-motion techniques, using high-speed cameras, makes it possible to study complex dynamics and fluid-dynamic interactions with great precision. This innovative approach offers new opportunities to deepen understanding of fluid behaviour, contributing to the development of advanced engineering applications and improving the design of hydraulic systems and chemical reactors.

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  • Analysis of transparent fluid behaviour using the Schlieren method

    Analysis of transparent fluid behaviour using the Schlieren method

    Analysis of transparent fluid behaviour using the Schlieren method and high-speed cameras for slow-motion footage. The technique makes it possible to visualise density variations in fluids with high precision, providing useful data for the study of complex dynamic phenomena and advanced engineering applications.

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  • Analysis of high-speed transparent fluid behaviour

    Analysis of high-speed transparent fluid behaviour

    Analysis of the behaviour of high-speed transparent fluids using high-speed cameras for slow-motion footage. The study makes it possible to observe and understand complex phenomena, supporting the development of innovative solutions in advanced engineering fields.

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  • Analysis of combustion phenomena

    Analysis of combustion phenomena

    In-depth analysis of combustion phenomena using high-speed cameras for slow-motion footage. The technology makes it possible to observe flame dynamics in detail, improving understanding of thermochemical processes and supporting the optimisation of advanced energy systems.

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  • Analysis of crash phenomena during crash tests

    Analysis of crash phenomena during crash tests

    Detailed analysis of crash phenomena in crash tests using high-speed cameras for slow-motion footage. Advanced technology makes it possible to study impacts precisely, improving understanding of the structural behaviour of vehicles and contributing to the development of more effective safety systems.

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  • Analysis of car crash phenomena

    Analysis of car crash phenomena

    Study of car crashes with high-speed cameras for slow-motion analysis. The research provides detail on impact phenomena, enabling an in-depth understanding of the structural behaviour of vehicles during collisions. Advanced technologies and ultra-high-definition footage support the development of innovative road safety solutions.

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  • Analysis of vehicle collisions with guardrails

    Analysis of vehicle collisions with guardrails

    Analysing vehicle collisions with guardrails is fundamental to improving road safety. Using high-speed cameras, impact dynamics can be studied in detail, from vehicle deformation to force distribution. These data make it possible to optimise guardrail design, improving its effectiveness in absorbing impacts and protecting occupants. The application of innovative technologies makes it possible to design…

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  • PIV analysis – measuring the flow field of a fluid

    PIV analysis – measuring the flow field of a fluid

    Particle Image Velocimetry (PIV for short) is an optical method for measuring the flow field of a fluid. In a given section of the flow, it provides the projection of the instantaneous velocity vector field onto that section.

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