
Electricity Meter Module
Plug into the optical port, read remotely. Makes the electronic meter smart without removing it or causing downtime.
OSOS develops an industrial IoT platform that connects electricity, water and natural gas meters into a single data network via LoRaWAN®, and into a single decision center via AI. Plug into the optical port, connect in seconds.
OSOS is not an "integrator"; it is a technology company that produces its own engineering end-to-end, from PCB design to embedded software, from network architecture to the AI engine.
No meter removal, no cabling, no power outage. Installation is completed in seconds.
PCB, embedded software, network architecture and cloud AI — all 100% our own intellectual property.
Compliant today with EPDK/MASS, IEC 62056‑21/SML and cybersecurity competency criteria.
The AI engine turns raw readings into leak, anomaly and peak alerts.
I‑METS 20 is a palm-sized module that plugs directly into the optical port of the electronic meter in the field. The meter is not replaced, seals are not broken, and the subscription record stays the same — only how the data is collected changes.
I‑METS 20, 70 and 90 read the meter in the field and carry it to LoRaWAN; I‑METS 80 both reads and takes action on the valve. All four share the same 868 MHz network and the same OSOS Platform — electricity, water and gas are managed from a single infrastructure.

Plug into the optical port, read remotely. Makes the electronic meter smart without removing it or causing downtime.

Mechanical measurement, wireless data. Measurement mechanism and communication module in a single housing.

Mounted on the meter, suitable for explosive environments. ATEX-certified retrofit module with a motion sensor.

The family's only "action" module: it reads water/gas/heat-meter dry-pulse outputs and remotely opens or closes the valve over the same network. The other three modules only read — I‑METS 80 applies the decision-support output directly in the field.
The meter is not removed, the seal is not broken, the subscription record does not change — the module plugs into the optical/pulse port.
Hardware, embedded software, network architecture and the AI engine are not outsourced — all of it is our own engineering.
I‑METS 20/70/90 read the data; I‑METS 80 also controls the valve over the same network.
EPDK/MASS and IEC 62056‑21/SML compliance, together with an AES‑128/OTAA/TLS encryption layer.
Tested since 2012 in 100,000+ households — under real grid conditions, not in a lab.
Existing meter — unchanged
I‑METS 20 / 70 / 80 / 90
LoRaWAN® 868 MHz / M‑Bus
Gateway → Network Server
OSOS Platform — MQTT
AI — leak & anomaly detection
Every packet traveling from the meter to the platform passes through an end-to-end encrypted, verifiable path. The diagram below shows this path — and what happens at each step along the way.
This is where LoRaWAN's power comes from: a single gateway, using low power, covers a wide area on its own, penetrating through buildings and urban noise.
Data transmission is bidirectional but occurs at set intervals. After each uplink, two short listening windows open, then the device goes back to sleep. Preferred for sites that want to maximize battery life.
The device stays in continuous listening mode even when it is not transmitting data. This gives the system on-demand reading and instant remote intervention capability — for example, requesting an index reading within seconds when a subscription ends.
The same infrastructure serves the different priorities of different sectors.
EPDK/MASS compliance, low capital burden, field-proven.
I‑METS 20ATEX safety, loss/leak detection, compliance without replacing the meter.
I‑METS 90Water loss tracking, MID-approved metering, remote valve control.
I‑METS 70 / 80GIS/SCADA integration, infrastructure scale, live monitoring.
OSOS PlatformSub-department consumption tracking, AI-powered peak/anomaly analysis.
I‑METS 80Data collected from the field is monitored in real time on the OSOS Platform; the AI engine turns this data into leak and anomaly alerts.
System health score, map-based (GIS) live device monitoring, event feed — all on one screen.
The transformer input is compared against the sum of connected subscriber meters; suspected loss is flagged automatically.
| Scenario | AI Decision | Recommended Action |
|---|---|---|
| Sudden consumption spike | Anomaly detected | Meter check required |
| Unexpected nighttime draw | High likelihood of leakage | Field team is dispatched |
| Zero consumption / signal loss | Possible fault or leak | Priority field intervention is planned |
From apartment building panels to transformer boxes in mountainous regions — a system proven in real-world deployments.
Since 2021, we've operated an R&D center based in the Trakya University Edirne Technology Development Zone.
Let's review your subscriber count, geography and existing meter infrastructure together, and map out the right retrofit plan and business model for you.
destek@osos.com.tr