Fronius Symo GEN24 Plus 6–10 kW
Three-phase hybrid inverter with a local Modbus TCP and RTU interface. Read inverter production and a connected Smart Meter through the documented SunSpec models.
- Inverters and charge controllers
Meters, sensors and controllers, and how each connects to Edge.
191 device pages · 50 manufacturers with device pages
78 devices
Three-phase hybrid inverter with a local Modbus TCP and RTU interface. Read inverter production and a connected Smart Meter through the documented SunSpec models.
Tauro Eco 100-3-D is a 100 kW commercial PV inverter with direct string inputs and one MPP controller.
Compare the exact 10 kW ESA G20 inverter’s PV, battery and backup limits and qualify its dedicated EMS interface.
The 10 kW ET G2 combines three PV trackers, a high-voltage battery connection and three-phase backup output. It differs from both the original ET and the low-voltage ET-L family. Its separate meter, battery and EMS connections have different jobs: an RS-485 connector used by the battery or meter is not a spare monitoring port.
A 100 kW three-phase hybrid inverter with eight MPPTs and two high-voltage battery inputs. This guide covers its documented EMS RS-485 monitoring path.
Read TriStar MPPT 60 battery and array measurements over Ethernet, using the controller’s own voltage and current scaling registers.
Sunny Boy Storage 5.0 adds high-voltage battery storage on the AC side of an existing PV installation. It supplies 5 kW on a single phase and has three separately managed battery inputs. It is a battery inverter, not a PV string inverter: keep the existing solar inverter and distinguish the manual emergency outlet from an automatic battery-backup installation.
Monitor Sunny Island battery state, voltage, current and inverter power through its local SMA Modbus TCP interface.
Read local inverter and battery measurements through the SMA Modbus interface, with explicit firmware scope and separate site-meter measurements.
CORE2 STP 110-60 is a 110 kW three-phase PV inverter with 12 MPP trackers.
A 25 kW three-phase PV inverter with three MPPTs and an integrated system manager. Read its own device values separately from whole-system measurements.
The original SG110CX has nine MPPTs and two strings per MPPT.
Identify the original SH10RT and read its PV, battery and meter measurements through the documented local Modbus path.
Select the 20 kW SH20T and qualify its documented WiNet-S2 Modbus TCP path without borrowing another Sungrow register map.
Solar inverter. Reports voltage, current, power, cumulative energy and temperature with device status.
Energy meter. Reports power and cumulative energy, in grid, solar and battery storage roles. Connects over Modbus RTU (RS-485).
Energy meter. Reports power and cumulative energy, in a solar role. Connects over Modbus RTU (RS-485) and Modbus TCP.
Energy meter. Reports power and cumulative energy, in grid, solar and battery storage roles. Connects over Modbus TCP.
Energy meter. Reports power and cumulative energy, in a solar role. Connects over Modbus RTU (RS-485) and Modbus TCP.
Energy meter. Reports power and cumulative energy, in grid, solar and battery storage roles. Connects over Modbus RTU (RS-485).
Energy meter. Reports power and cumulative energy, in grid, solar and battery storage roles. Connects over Modbus RTU (RS-485) and Modbus TCP.
Energy meter. Reports power and cumulative energy, in a solar role. Connects over Modbus RTU (RS-485) and Modbus TCP.
Energy meter. Reports power and cumulative energy, in grid, solar and battery storage roles. Connects over Modbus RTU (RS-485) and Modbus TCP.
Energy meter. Reports power and cumulative energy, in a solar role. Connects over Modbus RTU (RS-485) and Modbus TCP.
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Built from public Zigbee, LoRaWAN and Modbus device definitions and manufacturer documents, including BACnet/IP guides. Exact manufacturer and model identities are joined; similar names are never assumed to be the same device.
Each device page explains the documented connection to Edge, what the device reports and how to check its setup. An Edge template is offered only where an exact reviewed import is available.
Every page cites its sources. Zigbee device photographs come from the Zigbee2MQTT project and are credited under each photograph. We never run code from these sources, and register maps are for reading: never write to a meter from a map on this site.
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