Engineering

Applied engineering

Design, integration and commissioning of technological solutions with field criteria.

Qartia converts real operational needs into deployable engineering solutions. We design technical, sensor, electronic, firmware, communications, visualization and analytical architecture so that the system is born ready to operate in the plant, in the territory or in remote scenarios.

Our work does not stop at the concept. We integrate hardware, software, private connectivity, edge, cloud and artificial intelligence within the same solution, with industrial vision, technical traceability and the capacity for growth in phases.

This way of working allows us to address everything from pilots and functional prototypes to complete deployments in industry, environment, agriculture, health, portable diagnostics, civil infrastructures or private networks 5G.

Qartia engineering unites design, integration and operation so that the technology has real continuity and does not remain an isolated test.

What's included

From the technical architecture to the functioning system.

Product, sensory and electronic engineering

Qartia designs and integrates acquisition systems, specific sensors, measurement electronics and embedded firmware for industrial environments where the solution must coexist with existing equipment, plant conditions and real operating requirements.

  • Industrial, environmental, electrochemical sensors and field-specific devices.
  • Hardware design and adaptation of acquisition and control electronics.
  • Firmware configurable according to variable, capture frequency and operating logic.
  • Pilot-oriented design, validation and evolution to a pre-industrial product.

Integration and communications engineering

The solution is completed with a private network, gateways, backhaul, data platform and integration with the client's operations to deploy robust systems in the plant, from the field cabinet to the control panel.

  • LoRa, DECT NR+, 5G, Ethernet, MQTT, Modbus and integration protocols.
  • Integration with electrical panels, cabinets, PLCs, SCADA and existing platforms.
  • Design of topology, coverage, power and cybersecurity of the solution.
  • Commissioning, data validation and scaling support.
View of industrial plant for engineering and integration projects of Qartia
Engineering applied to a real plant: integration of sensors, communications, electronics, data and operation on existing industrial infrastructure.
Key capabilities

Cross-disciplinary engineering for projects that combine product, network and data.

Sensory and acquisition

Selection, adaptation and integration of sensors, signal capture and field acquisition.

Electronics and hardware

Design of boards, modules, cabinets and devices ready for laboratory, pilot or deployment.

Embedded Firmware

Control, acquisition, communications and energy management logic adapted to each solution.

Private networks and backhaul

LoRa, DECT NR+, 5G, Ethernet and hybrid architectures according to coverage, latency and operation.

Edge, cloud and data

Data channeling from field to platform with storage, visualization and integration.

AI and automation

Predictive models, business rules, RAG and alerts to extract operational value from the system.

Visualization and digital twin

Dashboards, maps, 2D/3D models and tools to contextualize events and decisions.

Commissioning and scaling

Technical validation, support in deployment and growth in phases without redoing the base.

How we work

A form of engineering designed to reach a real system.

01

Diagnosis and specification

We translate the operational need into architecture, variables, constraints, coverage, hardware and deliverables.

02

Design and integration

We develop the technical subsystem: sensors, electronics, firmware, communications and platform.

03

Functional pilot

We test the solution under real conditions and fine-tune performance, data, integration and operation.

04

Deployment and evolution

We scale the system, document the solution and prepare its technical and operational growth.

Where you add value

The same engineering base applied to different sectors.

Industry

Predictive maintenance, integration of sensors, field panels, private networks and operational analytics.

Environment

Stable data capture, field nodes, predictive AI, edge and dashboards for environmental operation.

Agriculture and agrivoltaics

IoT, connectivity, resource control, data platforms and production optimization solutions.

Civil infrastructures

Structural monitoring, electronic acquisition, backhaul and alert systems on critical assets.

Portable Health and Diagnostics

Electrochemical electronics, connectivity, portable sensing and platforms for biosensing and remote analysis.

Private networks and IP services

Design of solutions based on DECT NR+, integration with 5G, satellite and transport of advanced services.

Real examples

Engineering that connects product, infrastructure and deployment.

Territorial view of a city where Qartia deploys engineering and monitoring solutions
Territorial vision for projects where engineering must unite infrastructure, coverage and operation.
Urban screen with integrated air quality display by Qartia
Complete integration between environmental data collection, public visualization and operational monitoring.
Communications mast deployed on deck by Qartia
Communications infrastructure prepared for backhaul, private coverage and modular growth.
Agrivoltaic installation instrumented through Qartia engineering
Integration engineering between sensorization, energy and operation in agrivoltaic environments.
Sensors deployed in greenhouses for agricultural projects
Deployment of sensors in the greenhouse for experimental control, data acquisition and agronomic validation.
Agro node with solar energy and communications integrated by Qartia
Autonomous agro node with solar energy, communications and integrated field electronics.

Do you have a technical challenge and want to turn it into a real engineering solution?

Qartia can help you define architecture, integrate technologies, build a pilot and take the solution to the field with industrial criteria and capacity for evolution.