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RF::SCOUT® is a process analysis system that supports planners, process managers, programmers, commissioning engineers, machine operators, optimizers and suppliers. It connects to PLC and robotic systems as well as IoT data sources to transform raw data into real-time production and cycle time charts. This tool makes it easy to navigate complex workloads, uncover bottlenecks, check cycle times, and develop energy optimizations. It identifies critical areas and provides comprehensive collision data.
The process analysis function optimizes production speed, validates planning changes and provides detailed insights into capacity utilization, optimization potential and material flow in plant environments.
The Interlock Check analyzes programmed interlocks in the robot programs and checks all possible interactions between robots to detect potential collisions and avoid production downtime.
In combination with SHIFT the virtual plant is aligned based on the deviations found to match reality to provide the most realistic result for the Interlock analysis
The Signalyser acts as an oscilloscope to view the raw signals shown in their data type in detail and derive process descriptions from them
The Signalyser acts as an oscilloscope to view the raw signals shown in their data type in detail and derive process descriptions from them.
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Sequencer
The process analysis offers a detailed overview of the process data that can be recorded live, imported from planning values or PLC programs, loaded from a template or created manually.A Gantt chart lists the individual processes in detail, which can be adjusted and optimized at any time. Different modes allow deeper insights into the analyzed data, such as calculating average cycle time, workload and histograms. These tools can be used to optimize processes in terms of cycle time, output and process stability.
The Interlock Check analyzes programmed interlocks in the robot programs and checks all possible interactions between robots to detect potential collisions and avoid production downtime. The defined locks are checked for consistency in an interlock matrix and can be pre-filtered by selecting specific programs. A compact overview of potential collisions is provided and can be checked in deep detail within the 3D visualization. The endresult is exported as a comprehensive report.
To compensate for discrepancies between virtual plant models and real-world plants, SHIFT employs a sophisticated alignment method using only robot programs. This approach enables precise identification of differences, ensuring accurate positioning to provide the most realistic result for the Interlock analysis
Unlock unparalleled signal analysis with the Signalyser—your advanced oscilloscope for detailed signal visualization. Explore signals in their original form or break them down to the bit level, view signal flow in various formats like waves or lines, and gain comprehensive insights with a full-depth view of recorded data—empowering precise process understanding and optimization.
Gain detailed clarity in extensive signal recordings with the Sequencer—a powerful tool for isolating, rearranging, and analyzing signal recordings. Identify key moments using custom process descriptions, cut lengthy recordings into manageable snippets, and reorganize them for targeted analysis. With an intuitive interface and efficient workflow, the Sequencer delivers fast, precise results for your most specific process needs.
The process analysis offers a detailed overview of the process data that can be recorded live, imported from planning values or PLC programs, loaded from a template or created manually.A Gantt chart lists the individual processes in detail, which can be adjusted and optimized at any time. Different modes allow deeper insights into the analyzed data, such as calculating average cycle time, workload and histograms. These tools can be used to optimize processes in terms of cycle time, output and process stability.
The Interlock Check analyzes programmed interlocks in the robot programs and checks all possible interactions between robots to detect potential collisions and avoid production downtime. The defined locks are checked for consistency in an interlock matrix and can be pre-filtered by selecting specific programs. A compact overview of potential collisions is provided and can be checked in deep detail within the 3D visualization. The endresult is exported as a comprehensive report.
To compensate for discrepancies between virtual plant models and real-world plants, SHIFT employs a sophisticated alignment method using only robot programs. This approach enables precise identification of differences, ensuring accurate positioning to provide the most realistic result for the Interlock analysis
Unlock unparalleled signal analysis with the Signalyser—your advanced oscilloscope for detailed signal visualization. Explore signals in their original form or break them down to the bit level, view signal flow in various formats like waves or lines, and gain comprehensive insights with a full-depth view of recorded data—empowering precise process understanding and optimization.
Gain detailed clarity in extensive signal recordings with the Sequencer—a powerful tool for isolating, rearranging, and analyzing signal recordings. Identify key moments using custom process descriptions, cut lengthy recordings into manageable snippets, and reorganize them for targeted analysis. With an intuitive interface and efficient workflow, the Sequencer delivers fast, precise results for your most specific process needs.
The process analysis offers a detailed overview of the process data that can be recorded live, imported from planning values or PLC programs, loaded from a template or created manually.A Gantt chart lists the individual processes in detail, which can be adjusted and optimized at any time. Different modes allow deeper insights into the analyzed data, such as calculating average cycle time, workload and histograms. These tools can be used to optimize processes in terms of cycle time, output and process stability.
The Interlock Check analyzes programmed interlocks in the robot programs and checks all possible interactions between robots to detect potential collisions and avoid production downtime. The defined locks are checked for consistency in an interlock matrix and can be pre-filtered by selecting specific programs. A compact overview of potential collisions is provided and can be checked in deep detail within the 3D visualization. The endresult is exported as a comprehensive report.
To compensate for discrepancies between virtual plant models and real-world plants, SHIFT employs a sophisticated alignment method using only robot programs. This approach enables precise identification of differences, ensuring accurate positioning to provide the most realistic result for the Interlock analysis
Unlock unparalleled signal analysis with the Signalyser—your advanced oscilloscope for detailed signal visualization. Explore signals in their original form or break them down to the bit level, view signal flow in various formats like waves or lines, and gain comprehensive insights with a full-depth view of recorded data—empowering precise process understanding and optimization.
Gain detailed clarity in extensive signal recordings with the Sequencer—a powerful tool for isolating, rearranging, and analyzing signal recordings. Identify key moments using custom process descriptions, cut lengthy recordings into manageable snippets, and reorganize them for targeted analysis. With an intuitive interface and efficient workflow, the Sequencer delivers fast, precise results for your most specific process needs.
RF::REC
01Optimize production by analyzing recordings from virtual or real plants to enhance performance and identify inefficiencies.
The RF::Scout Analysis is based on recorded data (e.g recorded via RecV2) and symbollists to identify the signals. That is the basic data needed for the Process Analysis and the SIgnalyser. For the Interlock Check we also need 3D data (RF::YAMS file) and the robot data (e.g. robot back-ups).
With RF::Scout you aren’t only able to record your data from your virtual commissioning cell but also use the live data from the real cell to perform your analysis. You can also use both to compare these.
Currently the Interlock Check supports various robots like ABB, KUKA, FANUC, etc. and a great amount of standards from OEMs like Mercedes-Benz, VW, BMW, VDL, FFT, General Motors, etc. And there is also the possibility to add any kind of standard to it.
Not in a sense that RF::scout can directly read and work with it. But it can use the data while using RF::Yams as an in-between step to convert the data, so it can be loaded in RF::Scout.
Our suite of products boasts a diverse array of tools, from PLC and robot connectors to advanced automation and educational resources. Yet, at its heart, we have a core set of tools that seamlessly integrate everything, creating a powerful and cohesive system.
Simulates production systems in a 3D virtual environment, offering deep insights into system performance, potential optimizations, and operational efficiency.
Models, simulates, and tests peripheral elements in virtual commissioning using reusable program blocks for enhanced flexibility and efficiency.
Provides advanced robot simulation capabilities for testing and optimizing robot programs, ensuring error-free commissioning and efficient workflows.
Analyzes production data from virtual and real systems to identify bottlenecks, optimize performance, and enhance production efficiency.
Our suite of products boasts a diverse array of tools, from PLC and robot connectors to advanced automation and educational resources. Yet, at its heart, we have a core set of tools that seamlessly integrate everything, creating a powerful and cohesive system.
Simulates production systems in a 3D virtual environment, offering deep insights into system performance, potential optimizations, and operational efficiency.
Models, simulates, and tests peripheral elements in virtual commissioning using reusable program blocks for enhanced flexibility and efficiency.
Provides advanced robot simulation capabilities for testing and optimizing robot programs, ensuring error-free commissioning and efficient workflows.
Analyzes production data from virtual and real systems to identify bottlenecks, optimize performance, and enhance production efficiency.
Automates 3D fixture design with editable models, ensuring maximum flexibility for designers and improved production workflows.
Simulates Profinet devices for virtual commissioning, allowing seamless testing of multiple PLC controllers within a single environment.
Analyzes production data from virtual and real systems to identify bottlenecks, optimize performance, and enhance production efficiency.
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Germany,
Weingarten
Bosnia,
Tuzla
India,
Bangalore
Montenegro,
Podgorica
China, Shanghai
Germany, Weingarten
Bosnia, Tuzla
India, Bangalore
Montenegro, Podgorica
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