Artículos técnicos

 Closing the gap in the information flow - Live monitoring of material flow with wireless network

Closing the gap in the information flow - Live monitoring of material flow with wireless network

Farewell to the conveyor belt: under this motto, multiple forward-thinking companies have reorganised their material flow. Stationary conveyors have been replaced by mobile and thus flexible units, such as AGV, tugger trains or mobile eKanban racks. The prerequisite for such advances is a new approach to information flow – and the logical way to solve this is wireless technology.

Source: robotik UND PRODUKTION (02/2023)

pdf | 416 KB
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 The wireless backbone supporting communication

The wireless backbone supporting communication

When automating intralogistics, the guiding principle has to be: information flow before material flow – the latter always being mobile. With a wireless network, processes are represented comprehensively and precisely at all times.

Source: konstruktionspraxis (04/2023)

pdf | 464 KB
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 Transparency down to the last metre

Transparency down to the last metre

MATERIAL FLOW – At Volkswagen in Dresden, "transparent manufacturing" is completely real, as more and more production companies now realise the principle of complete transparency, at least at the level of material flow. A wireless automated material requisition system closes the (information) gap down to the last metre.

Source: GO>>ing (03/2023)

 

pdf | 461 KB
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 Sensors and antennas are best when integrated

Sensors and antennas are best when integrated

In a project by the cluster of excellence it´s OWL, steute is currently testing the integration of sensors and antennas in the enclosures of control systems and user interfaces for industrial, as well as medical applications. A combination of laser-direct structuring and additive manufacturing is being used. The results are extremely promising.

Source: etz (11/2022)

 

pdf | 450 KB
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 Stock monitoring: remote materials requisition for efficient intralogistics

Stock monitoring: remote materials requisition for efficient intralogistics

Uninterrupted monitoring of stock within the in-house material flow is a prerequisite if replenishments are to be needs-based. The usual enterprise resource planning (ERP) systems have some gaps which can be closed by opting for a remote automated materials requisition system.

Source: FUTURE MANUFACTURING (10/2022)

pdf | 656 KB
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 Remotely controlled transparency - Towards the digital shop floor

Remotely controlled transparency - Towards the digital shop floor

When optimising in-house processes, a remotely controlled shop floor information system can be the solution to improving inventory management, e.g. of assembly components. It enables the complete inventory within eKanban systems and the "supermarkets" supplying the factory to be digitally visualised. The system is very versatile, not least due to its wide variety of available wireless sensors.

Source: MY FACTORY (09/2022)

pdf | 353 KB
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 Integration in information flow - Material supply: transparency from start to finish

Integration in information flow - Material supply: transparency from start to finish

Sensors have an important role to play in material requirements planning (MRP) for e.g. assembly lines. They detect the current stock status at the various assembly points and can then send a signal triggering needs-based material flow management. This works particularly well when the sensors transmit their signals within a wireless system developed especially for this purpose.

Source: Technische Logistik (05/2022)

pdf | 3 MB
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 Wireless-based eKanban for the shop floor and logistics

Wireless-based eKanban for the shop floor and logistics

The basis for uninterrupted integration of physical objects in state-of-the-art factories is a system which is perfectly adapted to the application in question. Facilitated by a wireless network, such systems enable data and information to be captured and made available to downstream intelligence. As real-life examples have already shown: investing in a wireless automated materials requisition system can prove cost-effective within just a few months.

Source: digital-factory-journal (2/2022)

pdf | 297 KB
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 Remote material requirements planning using the pull principle

Remote material requirements planning using the pull principle

The replenishment of assembly components not in the managed inventory is a good place to start when digitalising and optimising the shop floor. For this task, a wireless-based automated materials requisition system is available to users. The cost and effort of installation and initial operation are manageable, the tools exists, and the benefits are considerable.

Source: dhf (01/2022)

pdf | 334 KB
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 eKanban systems: remote replenishment

eKanban systems: remote replenishment

Flexible production and intralogistics requires an information flow which is also flexible. Cabled communication reaches its limits very quickly. Wireless networks are the ideal solution here, for example with eKanban systems such as those offered by companies like steute.

Source: etz (06/2021)

pdf | 320 KB
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 Remote control increases versatility - Wireless switches and sensors for industrial applications

Remote control increases versatility - Wireless switches and sensors for industrial applications

Eliminating cables can be beneficial for many different switchgear applications, with some fields even demanding that electromechanical switches and sensors be cable-free. Depending on the requirements in question, the solution can also be a wireless network.

Source: messtec drives Automation (05/2021)

pdf | 446 KB
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 More flexibility with wireless communication - Increasing mobility for intralogistics

More flexibility with wireless communication - Increasing mobility for intralogistics

When tasks within the material flow are assumed by automated guided vehicle systems and mobile eKanban racks, communication has to be wireless. And it is crucial that integration of the wireless signals in the IT infrastructure of the user is seamless.

Source: Beschaffung aktuell (04/2021)

pdf | 263 KB
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