UGM G1.6
Size configuration · confirm the ordering code with our team
- Meter size
- G1.6
- Qnom
- 1.6 m³/h
- Qmax
- 2.5 m³/h
- Qmin
- 0.016 m³/h
- Maximum working pressure
- 50 kPa
Gas metering, connected to your working day.
Follow gas consumption remotely with ultrasonic measurement and LoRaWAN. Yobiiq’s UGM range is designed for connected gas metering; the supplied product photographs show the U-GR5 G2.5 model.
YOBIIQ / UGM / U-GR5Compare the configurations and explore the specifications of each model.
Size configuration · confirm the ordering code with our team
See where gas is used, put unusual patterns in context and give the people responsible a consistent view. These are example applications to plan around your site.

A monthly total does not show when consumption happens or how the building behaves outside working hours.
Include gas measurement in the building overview. Compare the same periods and annotate opening hours, occupancy and maintenance before interpreting changes.
Give the team a baseline to compare before and after operational changes.

Manual meter rounds take time, especially when the person reviewing the data works at another site.
Connect measurement points through the chosen network and name them by building and circuit. The application brings readings and history together for the team.
Review sites through one repeatable workflow, with fewer routine trips to collect readings.

A change in consumption can go unnoticed when readings are reviewed only occasionally.
Configure comparisons and notifications in the receiving application. Use the measured trend to decide what needs checking on site; a consumption change alone is not a diagnosis.
Turn a reading into a specific follow-up for the responsible person.
Explore how this device fits into a connected environment.
Follow gas consumption remotely with ultrasonic measurement and LoRaWAN. Yobiiq’s UGM range is designed for connected gas metering; the supplied product photographs show the U-GR5 G2.5 model.
Your device communicates over LoRaWAN. A gateway forwards its messages to a network server, ready for your application to use.
Bring device information into a monitoring platform. Follow readings and events together, with a clearer picture of the environment you manage.

Measurement happens at the device. The chosen connection carries the information to the application, where your team reviews it and defines follow-up.

Install the UGM / U-GR5 at the selected measurement point and commission it against the supplied installation documentation. Check the local reading before relying on the remote view.
Record a known reading as the starting point for commissioning.

Register the device on a suitable LoRaWAN network and configure the matching payload handling. Check timestamps and units in the receiving application.
Confirm that the dashboard reading agrees with the commissioned measurement point.
Build histories, comparisons and notifications in the application. Define who receives an exception and what happens next, rather than leaving the reading in an isolated dashboard.
Assign an unusual consumption pattern to the facilities team for investigation.
Connect the device to a LoRaWAN network, then bring its data into the application your team uses. Each layer has a different job.
Connect devices and route their LoRaWAN messages.
Turn decoded data into dashboards, history and actions.
Network and application integration must use the payload for the supplied hardware and firmware. Tell us your network server and platform so we can confirm the integration details.
Plan your integrationA practical overview to help you specify the right device and the system around it.
Product documentation| Pictured model | U-GR5 G2.5 |
|---|---|
| Connectivity | LoRaWAN |
| Accuracy marking | Class 1.5 |
| Qmin | 0.025 m³/h |
| Qmax | 4 m³/h |
| Qt | 0.4 m³/h |
| Pmax | 0.5 bar |
| Enclosure marking | IP65 |
| Gas groups on label | H, L, E |
| Meter sizes | G1.6 / G2.5 / G4.0 / G6.0 |
|---|---|
| Medium | Natural gas |
| Maximum working pressure | 50 kPa |
| Pressure loss at Qmax | ≤ 200 Pa |
| Body material | Die-cast aluminium |
Compare the G1.6, G2.5, G4.0 and G6.0 flow configurations above. The product photographs and labelled specifications refer to U-GR5 G2.5. Confirm the exact enclosure, communication option and any valve functions for the ordered version with our team.
Four things to settle before the first device goes into service.
Identify the location, expected range and the question the measurement must answer.
Specifications shown here are transcribed from the U-GR5 G2.5 label. The legacy UGM page describes a wider commercial range. Match gas type, flow and pressure to the exact ordered version, including any valve functions, with a qualified installer.
Verify network coverage or bus wiring, device identity and payload or register mapping.
Compare a local reading with the receiving platform, confirm units and timestamps, and document the operating procedure.
Practical answers about UGM — Ultrasonic gas meters.
Ask us something elseSpecifications shown here are transcribed from the U-GR5 G2.5 label. The legacy UGM page describes a wider commercial range. Match gas type, flow and pressure to the exact ordered version, including any valve functions, with a qualified installer.
No. The numerical specifications identify the model shown in the supplied photographs. Other sizes or versions need their own confirmed specifications.
For LoRaWAN reporting, provide network coverage, device registration and a decoder matching the hardware and firmware. The application then handles storage, visualisation and any configured notifications.
It gives you evidence for decisions and a way to check their effect. Results depend on the changes made to the installation or operating routine.

Direct-connected three-phase metering, up to 100 A.


Tell us what you want to connect, monitor or control. We’ll help you find a starting point.
Talk to the team