In the Proof of Concept phase, we delve into the specifics of business needs and desired goals for the implementation of IoT products. We conduct in-depth research on similar solutions already available on the market, explore competitor's strategies, and analyze the industry's unique challenges. This phase includes defining product objectives, identifying potential improvements through advanced data management, and creating a guiding document for subsequent phases. Learn More >
The design phase focuses on envisioning how the IoT sensor should be created. Beyond aesthetic aspects, we define the sensor's access to the desired information. This phase impacts the PCB design and determines the choice of components. We also consider how the sensors will interact with the environment, such as in the case of specific fluids and flows to be monitored. Learn More >
Our design process goes beyond simply selecting existing sensors: we integrate our scientific expertise to develop and prototype new sensors, testing them in specific situations and adapting them based on results. At the same time, we evaluate market options, analyzing pricing, durability, and compatibility. Every stage, from hardware technical design to data management, is focused on delivering effective and optimized solutions for industrial production. Learn More >
Prototyping applies the design to the PCB and the selected components. We test functionalities, address any issues, and iterate through various prototype versions. Our background as Chemists and Industrial Chemists enables us to approach data analysis scientifically, correlating detected information with known and reproducible data. In this phase, we also begin reorganizing raw data to enable continuous interpretation. Learn More >
Once the final prototype meets our requirements, we initiate a pre-production sampling phase to test the device under real operating conditions. During testing, we ensure that data is reliably sent to the server and properly integrated, monitoring the hardware over time and evaluating any drift. We test energy consumption, connectivity, and usage in various geographical areas, ensuring the device performs well in realistic scenarios Learn More >
After testing, we initiate large-scale production, selecting certified channels and continuously monitoring the process. We focus production in India, renowned for its quality. We use the same channels from prototyping to ensure consistency and produce on-demand, customizing devices either locally or abroad. Each device undergoes rigorous quality control and is equipped with the final firmware, ready for use. This approach allows us to manage orders of varying sizes flexibly while maintaining competitive pricing standards. Learn More >
Chemistry: Advanced sensing, chemical monitoring systems, electronic devices for the management of production processes and safety. Learn More >
Medical: Electronic devices for patient monitoring, medical sensing, IoT diagnostic equipment, electronic management of medical equipment. Learn More >
Cosmetic: Electronic devices for cosmetic production, quality sensors, temperature and pressure control systems in cosmetic processes. Learn More >
Food Processing: IoT sensors for food quality monitoring, traceability devices, production process control and optimization systems.
Energy: Power grid monitoring sensors, devices for renewable energy management, control systems, and optimization of distribution networks.
Industry: Sensors for monitoring industrial environments, control units for machinery, systems for optimizing production processes. Learn More >
Logistics: IoT devices for tracking goods, sensors for monitoring transport conditions, inventory management systems.
Marine: Control units for vessels, sensors for monitoring marine conditions, advanced navigation and communication systems.
Transportation: Airport control units for air traffic management, sensors for monitoring the conditions of transportation infrastructure.
Automation: Sensors for monitoring industrial activities, control units for automated processes, systems for optimizing production lines.
Residential: Control units for home automation, sensors for energy management, security and monitoring devices.
Agriculture: Sensors for monitoring agricultural conditions, IoT irrigation devices, crop management systems.
Irrigation: IoT sensors for monitoring and managing irrigation, devices for optimizing water usage.
Piscine: Sensors for monitoring water conditions, control devices for filtration and cleaning systems.
Livestock: Sensors for monitoring animal welfare, devices for managing and controlling farms, traceability systems.