Certified IoT products
Experienced engineers
Years IoT expertise
The IIoT Capabilities That Smart Industrial Operations Need
Once the right sensing, connectivity, and monitoring infrastructure is in place, your operations gain capabilities that manual inspection and reactive maintenance simply cannot match.

Condition Monitoring
Vibration, temperature, and pressure sensors on critical equipment give you early warning of developing faults. You detect the problem while it is still a preventable intervention.

Predictive Maintenance
Connect sensor data to your maintenance platform to move from time-based servicing to condition-based intervention. Reduce unnecessary maintenance cycles and prevent unplanned production stops before they happen.

Energy Monitoring and Sub-Metering
Monitor consumption at the machine, circuit, or process level. Identify high-draw equipment, detect usage anomalies early, and build the verified data set required for ISO 50001 compliance.

Remote Asset Monitoring
Track the status, location, and operating conditions of assets across multiple sites from a single platform. LoRaWAN and industrial gateway infrastructure makes monitoring viable even in challenging RF environments like basements, plant rooms, and thick-walled structures included.

Industrial Connectivity
Bridge legacy OT equipment and modern IoT platforms using Modbus, RS485, and cellular connectivity. Existing machines join your monitoring stack without a rip-and-replace of the underlying hardware.

Environmental and Process Monitoring
Monitor temperature, humidity, air quality, gas levels, and pressure across plant floors, storage facilities, and outdoor environments. Configurable thresholds trigger automated alerts and generate compliance records without manual intervention.
IoT Products for IIoT Deployments
IIoT Solutions Tailored for Critical Industries
Different industrial environments face different challenges. Our hardware portfolio covers the sensing, connectivity, and monitoring requirements across each of them.
Manufacturing
Monitor machine health, track production line performance, and detect anomalies in real time. Shift from reactive repairs to condition-based maintenance across the facility.
Energy
Deploy sub-metering and condition monitoring across generation, distribution, and consumption infrastructure. Feed live data into energy management systems to reduce waste and satisfy regulatory requirements.
Oil & Gas
Monitor pressure, temperature, flow, and gas levels across pipelines, vessels, and processing equipment. Continuous sensor data enables early fault detection in environments where a late response is measured in millions.
Water
Track pump performance, monitor flow and pressure across distribution networks, and detect leaks before they become losses. LoRaWAN supports wide-area deployments with minimal new infrastructure.
Cold Chain
Monitor storage and transit conditions for temperature-sensitive goods. Automated, tamper-resistant records satisfy compliance and quality assurance requirements without manual logging.
Mining
Deploy rugged sensors and connectivity in demanding environments. Monitor equipment condition, track asset location, and maintain visibility across remote or underground operations.
The Price of Running Operations Without Real-Time Data
Most industrial operations don’t fail all at once. They lose money slowly, through faults that go undetected, energy that goes unaccounted, and decisions made on data that’s already out of date.
Upgrading to IIoT monitoring gives operations teams the real-time picture needed to move from reactive management to active control.
Unplanned downtime costs far more than the repair itself.
When a critical machine fails without warning, production halts, emergency callouts follow, and delays cascade across the line. The repair bill is rarely the largest number.
Manual inspections capture what has already happened.
By the time an engineer reviews the data, the problem has escalated into a more expensive repair or a production loss. Condition monitoring makes that time gap irrelevant.
Visibility gaps across sites mean decisions made on an incomplete picture.
Without a unified monitoring layer across locations, operational data is fragmented. The site that goes unmonitored is the one that surprises you.
Retrofitting complexity stalls IIoT projects before they start.
Most operations teams recognise the need for IIoT but stop when faced with solutions that require a full infrastructure replacement. Modern hardware avoids that choice.
Energy spend without sub-metering is a single, unactionable line item.
Identifying waste and reducing consumption requires granular data at the machine or process level. Without it, you can see the problem in the bill but not where it comes from.
IIoT monitoring closes every one of these gaps.
How an IIoT Deployment Comes Together
Four connected stages take your operations from disconnected equipment to live, actionable data.
Sense
Sensors, vibration monitors, and smart meters installed on or near equipment continuously measure temperature, pressure, vibration, energy, and flow.
Many devices attach to existing hardware via pulse output, Modbus, or RS485 connections. No rip-and-replace of the underlying equipment is required.
Connect
IoT gateways and industrial routers collect sensor data and transmit it securely over LoRaWAN, NB-IoT, or cellular. Industrial-grade hardware is rated for harsh conditions: high temperatures, high vibration, and electrically noisy environments.
These protocols are designed to penetrate thick concrete and operate reliably in basements and plant rooms.
Monitor
Data lands in your existing SCADA system, CMMS, energy management platform, or cloud dashboard. Operations teams get real-time visibility across all connected assets.
Configurable alerts for threshold breaches and maintenance triggers mean your team responds to what the data tells them.
Act
Use live data to intervene before failures occur, optimise energy use, and schedule maintenance based on actual asset condition.
Compliance reports, audit trails, and performance records generate automatically from the data your sensors collect.
Take Control of Your Utility Consumption With Our Smart Metering Solutions
Frequently Asked Questions
How do I monitor equipment that isn't connected to any network?
Most of our IIoT deployments start from exactly this position. LoRaWAN pulse counters, Modbus bridges, and RS485 data collectors attach directly to unnetworked equipment and feed readings into a nearby LoRaWAN or cellular gateway. The equipment doesn’t need a network connection – the IoT hardware provides one.
Can I use IIoT sensors in ATEX or hazardous area classified zones?
Yes, but hardware selection matters significantly. We stock and specify sensors certified for ATEX Zone 1 and Zone 2 environments. If you are operating in a hazardous area classification, tell us at the outset. Sensor selection for Ex zones is not interchangeable with standard industrial hardware, and getting it wrong has serious safety and compliance consequences.
How do I justify the ROI of an IIoT deployment to senior management?
The strongest business cases focus on three numbers: the cost of a single unplanned production stop, the current energy spend with no sub-metering baseline, and the existing inspection labour cost per quarter. IIoT’s financial case is measurable and fast – most hardware deployments recover their costs within 6 to 18 months when those three figures are captured accurately.
Can IIoT solutions run on a private network without cloud dependency?
Yes. LoRaWAN infrastructure supports on-premise network server deployment, and your gateway can push data directly to an on-site SCADA system or historian without any cloud routing. If your organisation has strict data sovereignty requirements, we design for private network architectures from the start of the project.
What level of IT and OT coordination is needed for deployment?
Less than most teams expect. For wireless sensor deployments over LoRaWAN, the primary requirement is gateway placement and backhaul connectivity. OT team involvement is typically limited to sensor placement and data point mapping. For Modbus or RS485 integrations, OT coordination is heavier. We cover the specifics in detail during the scoping conversation before any hardware is ordered.
How does IIoT condition monitoring compare to manual inspection routines?
Manual inspection checks equipment state at a point in time, typically once per shift or once per day. IIoT condition monitoring runs continuously, measuring vibration, temperature, and pressure at intervals as short as seconds. A bearing that degrades over four hours between manual checks generates a clear sensor signature well before it fails. The manual inspection would miss it. The IIoT system triggers an alert.