Open embedded Linux platform with PoE, Ethernet, WiFi, or LTE, 868/915 MHz
Precise, multi-point temperature monitoring for industrial facilities. Embedded Linux, 1-Wire sensors, and the reliability your customers demand.
Where other monitoring systems fall short
Consumer-Grade Hardware
Consumer gateways overheat, lose connectivity, and fail within months of 24/7 operation.
Months of Firmware Work
Custom gateway firmware from scratch requires dedicated Linux engineers and months of development.
Limited Connectivity
Most gateways force you to compromise - limited protocols, limited interfaces.
Software Restrictions
Vendor-locked platforms restrict what you can run. Your gateway, their rules.
Three steps to your first deployment
Connect Sensors
Plug in up to 8 wired 1-Wire probes and pair wireless STICKER sensors via 868 MHz radio. Cover your entire facility.
Configure Locally
Set up through the built-in web interface or LCD display. Define thresholds, alerts, and data destinations in minutes.
Stream and Act
Data flows to your systems over MQTT - or any protocol you run on the open Linux platform. Monitor in real time, set alarms, and export compliance reports.
Connect Sensors
Plug in up to 8 wired 1-Wire probes and pair wireless STICKER sensors via 868 MHz radio. Cover your entire facility.
Configure Locally
Set up through the built-in web interface or LCD display. Define thresholds, alerts, and data destinations in minutes.
Stream and Act
Data flows to your systems over MQTT - or any protocol you run on the open Linux platform. Monitor in real time, set alarms, and export compliance reports.
Product Overview
Inside FIBER
Ethernet, WiFi, LTE or LoRaWAN, and ISM Radio
FIBER connects to your network through Ethernet (with PoE) or WiFi, plus an optional LTE modem or LoRaWAN card - one or the other; the LoRaWAN card connects FIBER to LoRaWAN networks. The integrated 868 MHz ISM radio with GFSK and LoRa modulation talks directly to STICKER wireless sensors over a proprietary LoRa P2P protocol - hardware support on both ends - and supports peer-to-peer and star network topologies.
LCD Display and LED Indicators
A clear backlit LCD display shows current sensor values at a glance. Individual LED indicators for each 1-Wire channel provide an immediate overview of active and inactive inputs. Physical buttons allow on-device navigation.
Powered by Raspberry Pi CM4
Built on the Raspberry Pi Compute Module 4 with a quad-core Cortex-A72 processor. Run standard Raspberry Pi OS or custom Linux images. Use FIBER as a versatile development platform for your IoT solutions.
Total System Control over MQTT
FIBER ships with a Rust-based ecosystem that exposes the whole device over MQTT with TLS encryption - read 1-Wire temperatures, drive the LCD, detect button presses, and control LEDs from your own software. Data streams to your own systems, and the open Linux system can run essentially any protocol your project needs.



Ethernet, WiFi, LTE or LoRaWAN, and ISM Radio
FIBER connects to your network through Ethernet (with PoE) or WiFi, plus an optional LTE modem or LoRaWAN card - one or the other; the LoRaWAN card connects FIBER to LoRaWAN networks. The integrated 868 MHz ISM radio with GFSK and LoRa modulation talks directly to STICKER wireless sensors over a proprietary LoRa P2P protocol - hardware support on both ends - and supports peer-to-peer and star network topologies.
LCD Display and LED Indicators
A clear backlit LCD display shows current sensor values at a glance. Individual LED indicators for each 1-Wire channel provide an immediate overview of active and inactive inputs. Physical buttons allow on-device navigation.
Powered by Raspberry Pi CM4
Built on the Raspberry Pi Compute Module 4 with a quad-core Cortex-A72 processor. Run standard Raspberry Pi OS or custom Linux images. Use FIBER as a versatile development platform for your IoT solutions.
Total System Control over MQTT
FIBER ships with a Rust-based ecosystem that exposes the whole device over MQTT with TLS encryption - read 1-Wire temperatures, drive the LCD, detect button presses, and control LEDs from your own software. Data streams to your own systems, and the open Linux system can run essentially any protocol your project needs.
Where It Works
Hospital Environmental Monitoring
Continuous temperature monitoring across wards, pharmacies, and storage areas. Automated temperature records for your healthcare compliance reporting.
Pharmaceutical Cold Chain
Precise temperature records for drug storage and distribution. An audit trail that feeds your GDP process, with instant excursion alerts.
Retail Refrigeration Monitoring
Monitor cold cabinets and freezers across retail locations. Prevent spoilage and keep continuous records for your food-safety process.
Laboratory Monitoring
Track temperature-critical environments in research laboratories. Wired 1-Wire probes deliver the accuracy that sensitive experiments demand.
Energy Substation Monitoring
Temperature monitoring of transformers and switchgear in substations. Early warning of thermal anomalies prevents costly equipment failures.
Industrial Production Lines
Multi-point temperature monitoring along manufacturing processes. Eight independent 1-Wire inputs cover complex production environments.





Hospital Environmental Monitoring
Continuous temperature monitoring across wards, pharmacies, and storage areas. Automated temperature records for your healthcare compliance reporting.
Pharmaceutical Cold Chain
Precise temperature records for drug storage and distribution. An audit trail that feeds your GDP process, with instant excursion alerts.
Retail Refrigeration Monitoring
Monitor cold cabinets and freezers across retail locations. Prevent spoilage and keep continuous records for your food-safety process.
Laboratory Monitoring
Track temperature-critical environments in research laboratories. Wired 1-Wire probes deliver the accuracy that sensitive experiments demand.
Energy Substation Monitoring
Temperature monitoring of transformers and switchgear in substations. Early warning of thermal anomalies prevents costly equipment failures.
Industrial Production Lines
Multi-point temperature monitoring along manufacturing processes. Eight independent 1-Wire inputs cover complex production environments.
Technical Specifications
- Power Supply
- PoE with Li-Ion backup battery
- PoE Power Input
- 36 V to 57 V (IEEE802.3af)
- Backup Battery
- 3.6 V Li-Ion
- Inputs
- 8× 1-Wire
- Connectivity
- Ethernet, WiFi, BLE; optional LTE or LoRaWAN module
- ISM Radio
- 868 MHz (GFSK / LoRa)
- Dimensions
- 175 × 120 × 35 mm (W × H × D)
- Operating Temperature
- -20 °C to +60 °C
- Certification
- CE, RoHS compliant
Frequently asked questions
How many sensors can FIBER monitor?
FIBER provides eight independent 1-Wire inputs for wired probes and an integrated 868 MHz radio for wireless STICKER sensors, covering temperature, humidity, and motion across an entire facility.
How is FIBER powered?
It is powered over PoE (IEEE802.3af, 36-57 V) with a 3.6 V Li-Ion backup battery, so monitoring continues through power interruptions.
What connectivity does FIBER offer?
FIBER connects via Ethernet (with PoE) or WiFi, plus an optional LTE modem or LoRaWAN card - one or the other; with the LoRaWAN card, FIBER joins LoRaWAN networks. BLE and an 868 MHz ISM radio with GFSK/LoRa modulation are on board - the radio talks directly to STICKER sensors over a proprietary LoRa P2P protocol and supports peer-to-peer or star networks.
What platform is FIBER built on, and can I run my own software?
FIBER is built on the Raspberry Pi Compute Module 4 with a quad-core Cortex-A72. You get full Linux root access, Docker support, and the option to run Raspberry Pi OS or custom images.
How does FIBER deliver data securely?
Data streams over MQTT with TLS encryption to your own systems - and since FIBER runs an open Linux system, you can use essentially any protocol. A Rust-based ecosystem provides total system control over MQTT: 1-Wire readings, LCD, buttons, and LEDs.
What unmonitored temperatures cost
A single missed excursion can wipe out an entire batch - and your audit trail.
Hospital environmental monitoring deployed across multiple facilities with FIBER gateways and STICKER sensors
Real-time structural monitoring for bridges and buildings with predictive safety insights

What must your next field deployment prove?
Bring the environment, signals, connectivity, data destination and expected scale. We will help you find the shortest credible path to live data.
Send us a message Or call directly: +420 775 159 734