Type | LOB-GW-SUN-WMBUS |
Name | Solar Wireless M-Bus Gateway |
Order number | #8000179 |
The maintenance-free Lobaro Solar Wireless M-Bus Gateway collects consumption data from up to 500 commercially available water meters, heat meters, heat cost allocators, etc. with 868 MHz wireless M-Bus radio interface or Sensus RF Bubble Up and forwards them regularly encrypted via NB-IoT or LTE-M1 mobile radio or LoRaWAN to the Internet for daily or frequent evaluation.
Thanks to the 100% battery-free design and the permanent power supply by the integrated high-performance solar cell, meter data can be transmitted several times a day in many applications when mounted with daylight incidence. The achievable readout intervals can, with a suitable installation location, be many times higher than with our battery-powered variant and there are no costs for battery changes. In addition to the application for billing purposes, this innovative design also enables novel areas of application in the field of predictive maintenance.
This device differs from the battery powered variant in the following ways:
A wireless M-BUS readout and upload can be initiated at any time using the magnetic contact reset method (see below) if the stored energy is sufficient.
The Solar Wireless M-Bus Gateway has an internal magnetic switch that can be activated by holding a magnet at the side of the housing marked with a dot. This can be used to query the current energy level of the internal capacitor and to initiate a reset with subsequent wireless-MBus readout and data upload phase.
Device Energy Level Indication
The Solar Gateway has an internal supercapacitor for energy storage. This capacitor can be charged by the PV panel from 3V up to 3.8V.
Stored Energy | Supercapacitor Voltage Level | Audio Indication | System Mode |
---|---|---|---|
Fully Charged | Level > 3.65 V | 3x Beep | Charge & Normal |
Good | 3.5V > Level < 3.65 V | 2x Beep | Charge & Normal |
Useable | Level > RequiredVoltage (Parameter) | 1x Beep | Charge & Normal |
Level not sufficient* | Level < RequiredVoltage (Parameter) | Descending tone | Charge & Sleep |
Absence of Energy | Level < aprox. 3.0 V | None / Silence | Charge & Off |
If the RequiredVoltage parameter is set to a higher voltage than "Good" or "Fully Charged" the Descending tone will be played nevertheless.
The device will remain in sleep mode until the configured voltage has been reached.
In case the device is in the "Standby" mode, after the signalization of the energy level, the device emits an additional fast decaying tone. In case the internal voltage level is below the RequiredVoltage parameter this leads to a slow and fast descending tone right after each other.
Normally, the default values of the following solar variant specific parameters should only require an adjustment for special applications with particularly low light incidence or very many consumption meters to be read out.
Name | Description | Default Value | Value Description & Examples |
---|---|---|---|
Standby | Devices in standby mode remain in a low-power mode until the user performs an initial reset via the magnetic contact. The parameter changes from true to false after this reset. It can be reactivated via a remote configuration downlink. | true |
The device is delivered with activated standby mode so that sufficient energy is available during initial use. |
RequiredVoltage | Required voltage level for normal operating mode. If the voltage in the device is lower, CRON based readouts are skipped until enough energy can be stored from the solar cell. | 3250 | Voltage level in mV. Range: 3000mV to 4000mV. Must be higher than RestVoltage parameter. |
RestVoltage | Voltage level under which a continuous wireless MBUS readout and LTE/LoRaWAN upload cycle is aborted to prevent a power failure reset. | 3100 | Voltage level in mV. Range: 3000mV to 4000mV. Must be lower than RestVoltage parameter. |
The device is delivered as standard with a permanently installed SIM card with 500 MB data volume for NB-IoT and LTE-M from 1nce with network coverage in many countries. Additional data volume can be obtained from Lobaro if required, or the SIM card can be transferred to your 1nce account.
For larger orders with dedicated production runs other SIM cards can be used customer specific. Please contact us directly for this option.
Width | 133.5mm |
Length | 133.5mm |
Height | 25.1mm |
Mounting | 4x M4 Threads with 100mm x 100m spacing, like "VESA-Mount" |
Material | ABS+PC (Fireproof) |
Rating | IP54 (Suitable for outdoor use) |
Weight | 185g |
Drawing
To mount the unit to a wall, the optional plexiglass back plate is available from Lobaro.
Use externally available GSM-2C clips and cable ties.
The 2-4 clips can be mounted by M4x8 Countersunk head screw to the Lobaro Solar Gateways M4 inserts on the backside.
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When selecting an indoor installation location, make sure that at least some daylight reaches the gateway. Even a low level of lighting is sufficient for this.
For outdoor installation, almost any location is normally suitable for transmitting data at least several times a day.
Housing attached using Hook & Loop Tape. Location good enough for some readings per day.
Housing attached using GSM-2C clips and cable ties. Covered outdoor location good enough for hourly readings.
The gateway was bolted to a wooden board, which was then attached to the pole. Outdoor location good enough for hourly readings 24h / day.
In this test, the internal antenna was compared with an external one, as well as a larger internal supercapacitor with the standard size.
Therefore, four gateways were mounted on one pole at the same time.