
Field data capture and analysis
Improved performance and reduced operational errors
Increased productivity with wearable device training
Step-by-step instructions with models and animations
Field data capture and analysis
Improved performance and reduced operational errors
Increased productivity with wearable device training














We develop industry-leading virtual and augmented reality applications for wearable devices (Smart Glasses and Smart Helmets) and mobile devices (Smart Phones and Tablets) that connect operators in the field with the information needed to complete their work, ensuring greater efficiency and reducing errors.
Our software supports operators with step-by-step instructions using text, icons, images, 3D models and animations to provide instructions to complete specific tasks.
Workflows are integrated into backend systems such as ERP, MES, WHS or CRM, and are associated with the running job. These trainingVRand AR for work, allow workers to access, capture and send digital information about the activity in real time.



Today, wearable technology has the strongest impact on logistics and distribution.
Smart glasses can facilitate the process of picking, packing, storing and shipping goods and are much more powerful than the scanner gun.
The use of virtual and augmented reality in the industry in the provision of healthcare services will in the future provide a guarantee to improve diagnostic results and reduce costs.
With the use of VR smart glasses and industrial AR applications you can leverage a wide range of data sources to solve complex tasks, improve training/compliance and provide access to specialists remotely, all by optimizing time and taking advantage of limited resources of a hitherto very expensive workgroup.
Leading Oil & Gas companies were early adopters of Smart Glasses, with a wide range of applications for field service, training, virtual and augmented reality simulation and training, system operations, as well as scientific and laboratory uses.
The app keeps users informed of what is happening, what effects the user’s action has had or is having.
The app must speak the user’s language with familiar words, phrases and concepts, following real-world conventions and displaying information in a natural, hierarchical and logical order.
To make sure that users do not feel locked out, they need “emergency exits”. Ex: “Cancel” button always present and clearly visible.
The same words, the same commands, the same actions should appear in the same location, in the same order and produce the same effects in equivalent situations. The app should follow the most established standards (for a complete list of UX design principles see iOS Human Interface Guidelines). Ex: the search command on iPhone is conventionally placed horizontal/top.
Use mandatory functions that prevent the execution of incorrect actions.
Minimize the memory load on the user and reduce as much as possible the information to be kept in mind; instructions for using the app shall be visible or readily available, where appropriate.
Help the remote operator to recognize, diagnose and resolve errors through recognizable infographics and icons.
Allow the assistant operator to reconsider his actions, make visible the history of the actions he has performed, provide error messages expressed in simple language that precisely indicates the problem and possible solutions.
Augmented reality (AR) and virtual reality (VR) improve operational efficiency, reduce errors, speed up training, and optimize resources by providing real‑time data and visual assistance.
They enable guided maintenance, inspections, remote support, immersive training, optimized logistics, and problem resolution, all with hands‑free use and interactive visual assistance.
They can integrate with ERP, MES, WMS, and CRM systems, connecting field data with central platforms for smooth and automated digital management.
They are compatible with smart glasses, connected helmets, tablets, and smartphones, adapting to different industrial environments and specific operational needs.
They reduce risks by providing clear instructions and remote supervision, enabling tasks to be executed more precisely, avoiding errors, and improving regulatory compliance.
Sectors such as energy, logistics, and automotive are already using them, achieving increased productivity, reduced errors, and better worker training.






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