Embedded Firmware Engineering
Optimize microcontrollers (ESP32, STM32, Nordic nRF52) with low-power C/C++ firmware built for years of battery-powered field operation.
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Real-Time Hardware & Cloud Telemetry
End-to-end IoT firmware, MQTT protocol brokers, BLE mesh networking, industrial gateways, and low-latency edge AI analytics.
Real-Time Sensor Telemetry
Hardware Reliability
Hardware SLA & Sensor Uptime
IoT Tech Stack
IoT Security & FOTA Audit
Connecting hardware devices to the cloud requires precision firmware, zero packet loss, and robust edge computing. We build scalable IoT ecosystems engineered for long-term field stability.
Scalable device fleet management across industrial, municipal, and commercial deployments.
High-availability MQTT data streams and continuous cloud ingestion pipelines.
Lightweight on-device AI inference providing instantaneous local action and offline protection.
Remote device diagnostics, OTA firmware releases, and automated anomaly alerts.
We bridge the gap between embedded hardware engineering, low-latency firmware, and enterprise cloud software.
Optimize microcontrollers (ESP32, STM32, Nordic nRF52) with low-power C/C++ firmware built for years of battery-powered field operation.
Process millions of telemetry data points daily with scalable AWS IoT Core, Azure IoT Hub, and custom MQTT brokers.
Deploy AI computer vision models directly to edge devices and securely push Over-The-Air (FOTA) firmware updates worldwide.
From prototype PCB designs and embedded firmware to enterprise cloud dashboards and predictive analytics.
High-performance firmware development for ARM Cortex, ESP32, STM32, and Raspberry Pi platforms with strict real-time constraints.
Integration with AWS IoT Core, Azure IoT Hub, Google Cloud IoT, and custom MQTT brokers for massive device fleet scaling.
Implementation of Bluetooth Low Energy (BLE 5.2), LoRaWAN, Zigbee, Cellular (NB-IoT / LTE-M), and Wi-Fi communication.
Connecting industrial machinery via Modbus, CAN bus, OPC UA, and RS-485 for predictive maintenance and operational efficiency.
Running lightweight machine learning models (TensorFlow Lite, OpenVINO) directly on edge camera hardware for immediate alerts.
Building secure, remote firmware update pipelines with cryptographically signed binaries and fail-safe rollback mechanisms.
A rigorous hardware-software engineering lifecycle from initial breadboard prototype to mass field deployment.
We evaluate your operational needs, sensor precision, power budgets, and connectivity environments to select optimal chips and sensors.
We write modular low-level C/C++ drivers, low-power sleep loops, and state machine algorithms using FreeRTOS or Zephyr RTOS.
We design compact binary data payloads (CBOR, Protobuf) transmitted efficiently over MQTT, CoAP, or LoRaWAN networks.
We configure cloud IoT infrastructure to parse real-time telemetry stream data and render responsive web/mobile control panels.
We test device connectivity across hostile radio environments, conduct power profiling, and perform security penetration audits.
We roll out FOTA deployment channels and continuous fleet monitoring dashboards to support tens of thousands of deployed units.
Turn-key engineering deliverables providing clean documentation, version-controlled codebases, and cloud architectures.
Well-documented C/C++ codebases formatted for ESP32, STM32, or nRF microcontrollers, complete with unit test suites.
IaC templates (Terraform) to deploy AWS IoT Core, database pipelines, and real-time WebSockets API endpoints.
Responsive interface for monitoring device health status, remote configuration, real-time charts, and alert notifications.
Automated cloud release channel for building, signing, and broadcasting encrypted firmware binaries over the air.
Different sectors create different expectations, constraints and device environments. We tailor IoT hardware and software to operational realities.
Environmental quality monitoring, intelligent energy management, HVAC controls, and occupancy tracking sensors.
ISO 13485 compliant medical IoT hardware, wearable vital sign sensors, and secure patient data transmission pipelines.
LoRaWAN soil moisture sensors, automated irrigation controllers, and livestock tracking devices for Irish farms.
GPS & Cellular asset tracking tags, cold-chain temperature loggers, and real-time vehicle telemetry systems.
Predictive maintenance vibration sensors, automated quality control vision systems, and CAN bus machinery monitoring.
Smart water meters, grid power monitors, solar yield tracking, and leak detection telemetry systems.
Connecting hardware to the cloud creates automated workflows, predictive maintenance alerts, and significant cost savings.
Deployed 5,000+ solar-powered LoRaWAN soil moisture sensors across Irish farmland, reducing irrigation water usage by 35%.
Eliminated temperature compliance spoilage for a pharmaceutical carrier using cellular temperature tracking and real-time SMS alerts.
Prevented factory line breakdown costs using vibration sensors and Edge AI models that predict bearing failure 48 hours in advance.
Explore practical articles on hardware security, wireless LoRaWAN protocols, and Edge AI deployment guidelines.
How to implement secure boot, X.509 certificate authentication, and secure element chips (ATECC608A) on ESP32 microcontrollers.
An in-depth technical comparison of network coverage, power consumption, data payload limits, and operating costs in Ireland.
Step-by-step guide to quantizing neural networks and running real-time object detection on low-cost ARM Cortex-M hardware.
Schedule a technical consultation with our senior IoT systems engineers in Ireland to plan your hardware architecture, firmware, and cloud platform.
IoT projects can begin with an early hardware idea, PCB redesign, firmware optimization, or fleet cloud ingestion scaling. The right starting point depends on your product roadmap.
You have a product idea or sensor specification. We help select microcontrollers, wireless modules, and build initial breadboard prototypes.
You have validated hardware schematics and need custom C/C++ firmware, MQTT brokers, and real-time telemetry control panels.
Your IoT hardware is in pilot testing. We audit low-power battery performance, signal stability, and cryptographic hardware security.
Scaling your device fleet to thousands of connected units with automated Over-The-Air firmware updates and 24/7 cloud monitoring.