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Connect physical devices to digital intelligence: sensors, gateways, and platforms that turn raw data into real-time action.

Every device. One pulse.

The Internet of Things isn't about gadgets. It's about turning every physical process in your business into a data stream you can monitor, analyse, and automate. A temperature sensor in your cold storage becomes an early warning system. A vibration monitor on your machinery becomes a predictive maintenance engine.

We design end-to-end IoT architectures: from selecting the right sensors and communication protocols to building the cloud platform that ingests and processes every reading in real time. Whether you're instrumenting a single facility or rolling out across an entire supply chain, we make the invisible visible.

Sensor → Cloud End-to-End Stack
Real-Time Sub-Second Telemetry
Any Protocol MQTT, BLE, LoRa, Zigbee
TEMP CAM HVAC MOTION RFID POWER AIR 4°C 12kW 42 AQI HUB

A Universe of Connected Devices

Data flows across every layer, sensor to dashboard. Hover any node to trace its connections.

Sensors Temperature, humidity, pressure, vibration, proximity, light, gas, water level
Gateways Protocol translation, data aggregation, local filtering, secure uplink to cloud
Edge Compute Local AI inference, real-time processing, latency-critical decisions at the source
Cloud Platform AWS IoT Core, Azure IoT Hub: device management, data lake, rule engine
Dashboards Real-time monitoring, historical trends, custom widgets, multi-site views
Analytics & AI Predictive maintenance, anomaly detection, pattern recognition, ML models
Wearables Worker safety trackers, location beacons, biometric monitors, smart badges
Actuators Motors, valves, switches, relays: automated physical responses from digital triggers
Security Device certificates, encrypted channels, firmware OTA updates, intrusion detection
Alerts Threshold triggers, SMS/email/app push, escalation chains, incident logging

We Speak Every Signal

From short-range Bluetooth to long-range LoRaWAN, we select the right protocol for your range, power, and throughput requirements.

MQTT Lightweight pub/sub
Low latency Low bandwidth Bi-directional
HTTP/REST Request-response
High compatibility TLS encrypted Stateless
CoAP Constrained devices
Ultra-low power UDP-based Observe pattern
BLE 5.0 Short-range wireless
10-100m range Mesh capable Low power
LoRaWAN Long-range LPWAN
15km+ range Years on battery Low data rate
Zigbee Mesh network
Self-healing mesh 250kbps 65K nodes

From silicon to cloud.

We work with the open hardware, protocols, and platforms that the IoT world has standardised on — no vendor lock-in.

Raspberry Pi Arduino Espressif ESP32 Bluetooth MQTT Node-RED AWS IoT Core Azure IoT Hub Google Cloud Grafana InfluxDB

Real-Time Telemetry

Every deployment includes a custom monitoring dashboard: live data from every device, every second.

PROFEX IoT PLATFORM ILLUSTRATIVE
DEVICES: 847 | ONLINE: 843 | --:--:--
Network Throughput 1,240 msg/s
Temperature
23.4°C
0°C50°C
Normal
Humidity
52%
0%100%
Normal
Air Quality
AQI 78
0200
Moderate
Power Draw
4.2 kW
0 kW10 kW
Efficient
Device Health
Sensors
412 / 420
Gateways
24 / 24
Cameras
38 / 40
Actuators
155 / 176
Recent Events
--:--:-- Sensor GW-07-T12 reading normalised
--:--:-- AQI threshold approaching on Floor 3
--:--:-- OTA firmware v2.4.1 deployed to 24 gateways
--:--:-- Actuator ACT-B2-07 offline; auto-restart triggered

Deployed & Running

Case 01 — Smart Building

The Challenge

Utility meters were read by hand, unit by unit, every month, and tenant access ran on physical keys and lockboxes. There was no live view of consumption or gateway health, and changing access on move-out meant swapping locks.

What We Built

Edge gateways now read every unit's meter automatically and stream the readings hourly into the platform, with validation and live online/offline monitoring. Smart locks issue tenancy-bound passcodes that expire on the lease end date, with synced access logs and low-battery alerts, all from one property platform.

Case 02 — EV Charging Network

The Challenge

EV chargers are distributed physical devices from different vendors, each speaking the OCPP protocol a little differently. The operator needed live visibility and remote control of every charger (connector status, power draw, faults), plus the ability to push firmware and balance load across sites without sending a technician to each unit.

What We Built

An OCPP 1.6 / 2.0.1 server holds a live connection to every charger, streaming connector status and telemetry into a serverless backend. Operators start and stop sessions, reboot units, push firmware over-the-air and apply load-balancing profiles from one web console, with the same live data flowing through to the driver app.

Ready to Connect Your World?

Let's design an IoT architecture that turns your physical operations into a connected, intelligent system.

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