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Critical

Urgent

Non Urgent

Observation

"Circuit breaker alarm"

"CLD active indicator"

"Charge stop indicator",

"Anti-theft alarm"

"Balanced cells indicator"

"Short-circuit alarm"

"Non-quiescent state indicator"

"Over-current discharge alarm"

"Charge stop ready indicator"

"Over-temperature alarm"

"Under-voltage alarm"

"Over-voltage alarm"

"Discharge blocked alarm"

"Under-temperature alarm"

"Over-current charge alarm"

"Charge blocked alarm"

Supported Parameters

Power Center Parameters

System Parameters

Remarks

Battery SOC Percentage

Smart_Battery_X.SOC

Battery SOH

Smart_Battery_X.SOH

Voltage

Smart_Battery_X.Voltage [V]

Current

Smart_Battery_X.Current [A]

Cell Voltage Min

Smart_Battery_X.Cell_Voltage_Min [V]

Cell Voltage Max

Smart_Battery_X.Cell_Voltage_Max [V]

Temperature 1-3

Smart_Battery_X.Temperature_1-3 [Celsius]

Temperature 1 - cell temperature

Temperature 2 - cell temperature

Since lithium batteries are prone to catching fire and exploding at high temperatures, there are two temperature meters for the same purpose.

Temperature 3 - FET temperature

Battery Cycles

Smart_Battery_X.Cycles

Polarium (SNMP)

By utilizing the rectifier (currently supported by Delta and CFX) the information from the Polarium smart batteries can be read via SNMP.

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Communication Method

SNMP (Ethernet). Currently, the data is read through a Delta and SFX rectifier, rather than a direct connection to the batteries.

Wiring Diagram

Same as RS485 (Modbus) - Polarium (Modbus)

Network Configuration

The batteries are configured in the Power Center via SNMP ETH Devices, since the readings come from the rectifier.

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Same as RS485 (Modbus) - Polarium (Modbus)

Device IP

192.168.70.2

Device ID

Same as RS485 (Modbus) - Polarium (Modbus)

Configuration Process

Version Update

Same as RS485 (Modbus) - Polarium (Modbus)

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