Cells in series
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Number of cell(groups) in series in the batterypack. </p>
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The BMS needs a minimum of 4 cell(groups) in series to operate, this is a minimal voltage requirement by the LTC and power supply.</p></body></html>
NO_OF_CELLS_SERIES
1
0
180
3
0
1
12
1
Cells in parallel
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Number of cells in parallel (used for future SoC algorithm).</p></body></html>
NO_OF_CELLS_PARALLEL
1
0
200
1
0
1
10
1
Parallel modules count
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Number of parallel module strings in the battery pack.</p></body></html>
NO_OF_PARALLEL_MODULE
1
0
10
1
0
1
1
1
Battery capacity total
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Battery pack total capacity in Ah. This value is used for the state of charge indication / calculation.</p></body></html>
BATTERY_CAPACITY
2
1
0
1000
0
0
1
29
100000
Ah
9
Slave IC type
4
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Cell monitor IC type.</p></body></html>
CELL_MONITOR_IC_TYPE
1
None
LTC6811-1
LTC6812-1
LTC6813-1
Slave IC count
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Number of slave IC's.</p></body></html>
CELL_MONITOR_IC_COUNT
1
0
10
1
0
1
1
1
Cell technology
4
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Battery cell technology, used for state of charge indication.</p></body></html>
CELL_TECHNOLOGY
0
Li-Ion
Li-Polymer
Li-Phosphate
Cell hard undervoltage
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Worst case lowest cell voltage, when the cell voltage goes below this threshold the BMS turns off completely. This value is a hard limit that is configured in the LTC, crossing this value for more than the 'maxUnderAndOverVoltageErrorCount' amount will make the BMS to turn off immediately.</p></body></html>
CELL_HARD_UNDER_VOLTAGE
3
1
0
5
0
0
0.05
2.3
100000
V
9
Cell hard overvoltage
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Worst case highest cell voltage, when the cell voltage goes above this threshold the BMS turns off completely. This value is a hard limit that is configured in the LTC, crossing this value for more than the 'maxUnderAndOverVoltageErrorCount' amount will make the BMS to turn off immediately.</p></body></html>
CELL_HARD_OVER_VOLTAGE
3
1
0
5
0
0
0.05
4.2
100000
V
9
Cell soft undervoltage
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Normal use BMS current path lowest cell voltage, when the cell voltage goes below this threshold the BMS turns off its current path output.</p></body></html>
CELL_LC_SOFT_UNDER_VOLTAGE
3
1
0
5
0
0
0.05
2.9
100000
V
9
Cell soft overvoltage
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Normal use highest cell voltage, when the cell voltage goes above this threshold the BMS turns off its charger input.</p></body></html>
CELL_SOFT_OVER_VOLTAGE
3
1
0
5
0
0
0.05
4.15
100000
V
9
Cell balance difference threshold
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Start balancing above this cell voltage difference voltage, stop if below.</p></body></html>
CELL_BALANCE_DIFF_THRESH
3
1
0
1
0
0
0.005
0.005
100000
V
9
Cell balance start voltage
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Balance when the cell voltage is above this threshold.</p></body></html>
CELL_BALANCE_START
3
1
0
5
0
0
0.1
4.1
100000
V
9
Cell throttle upper start
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Charge throttle start. This parameter configures the charge throttle functionallity. When for example the cellSoftOverVoltage is set to 4.25V, the cellThrottleUpperStart to 0.2V and cellThrottleUpperMargin to 0.05V a cell voltage below (4.25-0.2-0.05=) 4V will result in 100% throttle, as the cell voltage is rising it will linearly throttle back from 100% to 5% when the cell voltage is at (4.25-0.05=) 4.2V, above that the throttle stays at 5% until the cellSoftOverVoltage of 4.25 it reached, then the input is turned off and the throttle is at 0%. </p>
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">This is only a signal that is transmitted on the CAN bus and will only work with chargers that implement it.</p></body></html>
CELL_THROTTLE_UPPER_START
3
1
0
2
0
0
0.05
0.02
100000
V
9
Cell throttle lower start
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Discharge throttle start. This parameter configures the discharge throttle functionallity. When for example the cellSoftUnderVoltage is set to 3V, the cellThrottleLowerStart to 0.2V and cellThrottleLowerMargin to 0.05V a cell voltage above (3+0.2+0.05=) 3.25V will result in 100% throttle, as the cell voltage is lowering it will linearly throttle back from 100% to 5% when the cell voltage is at (3+0.05=) 3.05V, below that the throttle stays at 5% until the cellSoftUnderVoltage of 3V it reached, then the output is turned off and the throttle is at 0%. </p>
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">This is only a signal that is transmitted on the CAN bus and will only work with loads that implement it.</p></body></html>
CELL_THROTTLE_LOWER_START
3
1
0
2
0
0
0.05
0.2
100000
V
9
Cell throttle upper margin
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Charge throttle margin. This parameter configures the charge throttle functionallity. When for example the cellSoftOverVoltage is set to 4.25V, the cellThrottleUpperStart to 0.2V and cellThrottleUpperMargin to 0.05V a cell voltage below (4.25-0.2-0.05=) 4V will result in 100% throttle, as the cell voltage is rising it will linearly throttle back from 100% to 5% when the cell voltage is at (4.25-0.05=) 4.2V, above that the throttle stays at 5% until the cellSoftOverVoltage of 4.25 it reached, then the input is turned off and the throttle is at 0%. </p>
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">This is only a signal that is transmitted on the CAN bus and will only work with chargers that implement it.</p></body></html>
CELL_THROTTLE_UPPER_MARGIN
3
1
0
2
0
0
0.05
0.01
100000
V
9
Cell throttle lower margin
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Discharge throttle margin. This parameter configures the discharge throttle functionallity. When for example the cellSoftUnderVoltage is set to 3V, the cellThrottleLowerStart to 0.2V and cellThrottleLowerMargin to 0.05V a cell voltage above (3+0.2+0.05=) 3.25V will result in 100% throttle, as the cell voltage is lowering it will linearly throttle back from 100% to 5% when the cell voltage is at (3+0.05=) 3.05V, below that the throttle stays at 5% until the cellSoftUnderVoltage of 3V it reached, then the output is turned off and the throttle is at 0%. </p>
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">This is only a signal that is transmitted on the CAN bus and will only work with loads that implement it.</p></body></html>
CELL_THROTTLE_LOWER_MARGIN
3
1
0
2
0
0
0.05
0.2
100000
V
9
Voltage data source
4
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The pack voltage data source can be selected here. For ADC's the callibration/scaling/offset values will be taken into account, for CAN based sensors the measured voltage will be used directly from the CAN sensor.</p></body></html>
PACK_VOLTAGE_DATA_SOURCE
1
NoSource
ISL28022 (I2C2 - 0x40) LV BatteryInput
SumOfIndividualCellVoltages
Current data source
4
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The pack current data source can be selected here. For ADC's the callibration/scaling/offset values will be taken into account, for CAN based sensors the measured voltage will be used directly from the CAN sensor.</p></body></html>
CELL_MONITOR_IC_TYPE
1
NoSource
ENNOID-BMS current path
CAN->DieBieShunt
CAN->Isabellenhutte
Signal source
4
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Select the desired signal source / reason for the buzzer to start buzzing.</p></body></html>
BUZZER_SIGNAL_SOURCE
0
Always off
Always on
All sources below
Undervoltage LC
Safe operating area
Signal type
4
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Select the desired signal source type.</p></body></html>
BUZZER_SIGNAL_TYPE
1
Off
On
Toggle
Toggle fast
Pulse short
Pulse long
Pulse 200 20
Pulse 1000 4
Persistent
5
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Define whether the buzzer should stay on or should reset when signal condition resets.</p></body></html>
BUZZER_PERSISTENT
1
Shunt factor
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Scaling factor for ISL based shut measurements. Only applies to ISL based current sensor source.</p></body></html>
SHUNT_LC_FACTOR
6
1
0
1
-1
0
0.05
-0.0052
100000
9
Shunt Offset
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Offset for ISL based shut measurements. Only applies to ISL based current sensor source.</p></body></html>
SHUNT_LC_OFFSET
1
0
1024
-1024
0
1
0
LSB
4
Shunt factor
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Scaling factor for ISL based shut measurements. Only applies to ISL based current sensor source.</p></body></html>
SHUNT_HC_FACTOR
6
1
0
1
-1
0
0.05
-0.0269
100000
9
Shunt Offset
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Offset for ISL based shut measurements. Only applies to ISL based current sensor source.</p></body></html>
SHUNT_HC_OFFSET
1
0
1024
-1024
0
1
-2
LSB
4
Pack Voltage Factor
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Scaling factor for ISL based voltage measurements. Only applies to ISL based voltage sensor source.</p></body></html>
VOLTAGE_LC_FACTOR
6
1
0
200
-200
0
0.05
124
100000
9
Pack Voltage Offset
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Offset for ISL based voltage measurements. Only applies to ISL based voltage sensor source. </p></body></html>
VOLTAGE_LC_OFFSET
1
0
1024
-1024
0
1
0
LSB
4
Load Voltage Factor
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Scaling factor for load MCU ADC voltage measurements.</p></body></html>
LOAD_VOLTAGE_FACTOR
6
1
0
500
-500
0
0.05
135
100000
9
Load Voltage Offset
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Offset for load voltage measurements. </p></body></html>
LOAD_VOLTAGE_OFFSET
6
1
0
500
-500
0
0.05
0
100000
9
Charger Voltage Factor
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Scaling factor for charger MCU ADC voltage measurements.</p></body></html>
CHARGER_VOLTAGE_FACTOR
6
1
0
500
-500
0
0.05
135
100000
9
Charger Voltage Offset
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Offset for charger voltage measurements. </p></body></html>
CHARGER_VOLTAGE_OFFSET
6
1
0
500
-500
0
0.05
0
100000
9
Throttle charge increase rate
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Percentage charge throttle increase rate per 100ms (cell voltage loop time).</p></body></html>
THROTTLE_CHARGE_INCREASE_RATE
1
0
100
0
0
1
2
% / 1000ms
1
Throttle discharge increase rate
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Percentage discharge throttle increase rate per 100ms (cell voltage loop time)</p></body></html>
THROTTLE_DISCHARGE_INCREASE_RATE
1
0
100
0
0
1
10
% / 1000ms
1
Cell balance interval
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Keep calculated resistors enabled for this amount of time in miliseconds. When this time has elapsed a new cell measurement will be made to start a new round of balancing, this all loops automatically and only during charging.</p></body></html>
CELL_BALANCE_UPDATE_INTERVAL
1
0
30000
1000
0
1000
4000
ms
5
Max active bleed resistors per IC
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">This value states the maximum amount of simultaneously active bleeding resistors per monitor IC (monitor group). This value thus limits the worst case max power dissipated on the BMS (or its slave modules) trough the bleeding reisistors. When the balancing portion of the BMS becomes to hot this value can be lowered to limit the temperature.</p></body></html>
CELL_BALANCE_MAX_SIMULTANEOUS_DISCHARGE
1
0
18
0
0
1
5
1
Timeout discharge retry
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">When for some reason the discharge output is disabled (most likely because of a low cell voltage), wait this amount of time before doing a new attempt to re-enable the discharge output.</p></body></html>
TIMEOUT_DISCHARGE_RETRY
1
0
30000
4000
0
1000
10000
ms
5
Discharge hysteresis
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The hysteris value of the load enable condition. Configuring this value correctly will greatly reduce the risk of load output on/off oscillations. </p></body></html>
HYST_DISCHARGE
3
1
0
1
0
0
0.005
0.02
100000
V
9
Timeout charge retry
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">When for some reason the charge input is disabled (most likely because of a high cell voltage), wait this amount of time before doing a new attempt to re-enable the charge input.</p></body></html>
TIMEOUT_DISCHARGE_RETRY
1
0
1000000
4000
0
1000
100000
ms
5
Charge hysteresis
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The hysteris value of the charger enable condition. Configuring this value correctly will greatly reduce the risk of charger input on/off oscillations. </p></body></html>
HYST_DISCHARGE
3
1
0
1
0
0
0.005
0.01
100000
V
9
Timeout charge completed
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">When balancing this amount of time is waited before declaring the battery 'charged'. The balancing will continue passed this event until no more balancing is needed. This is only to tell the user that it is charged enough to be used again.</p></body></html>
TIMEOUT_CHARGE_COMPLETED
1
0
3600000
0
0
1000
1800000
ms
5
Timeout charge completed min mismach
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">If cell mismatch is under threshold and (charging is not allowed) wait this delay time to set "charged" state.</p></body></html>
TIMEOUT_CHARGING_COMPLETED_MINIMAL_MISMATCH
1
0
3600000
0
0
100
6000
ms
5
Mismatch threshold
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">If mismatch is under this threshold for timeoutChargingCompletedMinimalMismatch determin fully charged.</p></body></html>
MAX_MISMATCH_THRESHOLD
3
1
0
1
0
0
0.005
0.02
100000
9
Charger enable threshold
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">If charge current is above this threshold current stay in charging mode and don't power off.</p></body></html>
CHARGER_ENABLED_THRESHOLD
2
1
0
10
0.05
0
0.05
0.5
100000
A
9
Timeout charger disconnected
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Wait for this amount of time before responding to the event that the charger is disconnected.</p></body></html>
TIMEOUT_CHARGER_DISCONNECTED
1
0
3600000
1000
0
1000
2000
ms
5
Minimal precharge factor
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Output voltage should be at a minimal of this factor of pack voltage to enable the main output switch, this is to prevent large inrush currents.</p>
<p style="-qt-paragraph-type:empty; margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><br /></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Putting this value too low will result in a large inrush current because the battery and load voltage differ too much. Putting this threshold value too high could lead to the load never being enabled because the value cant be reached due to leakage current in combination with the pre charge resistor value.</p></body></html>
MINIMAL_PRECHARGE_PERCENTAGE
2
1
0
1
0.01
0
0.1
0.8
100000
9
Timeout precharge
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Precharge timeout, allow this amount of time for the Pre-charging process. This time also defines the limit of power dissipation in the pre charge resistor. If your load capacitance is higher than 'normal' it might be worth increasing this value to let the pre-charge procedure succeed, but please monitor the temperature of the pre-charge resistor!</p></body></html>
TIMEOUT_LC_PRECHARGE
1
0
10000
0
0
100
1500
ms
5
Max allowed current
1
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Define the maximum allowed current trough the BMS.</p></body></html>
MAX_ALLOWED_CURRENT
2
1
0
2500
1
0
10
120
100000
A
9
Battery temperature discharging max
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Define the maximum temperature of the battery during discharging.</p></body></html>
MAX_ALLOWED_TEMP_BATT
1
1
0
120
-20
0
5
60
100000
°C
9
Battery temperature discharging min
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Define the minimum temperature of the battery during discharging.</p></body></html>
MIN_ALLOWED_TEMP_BATT
1
1
0
120
-20
0
5
-10
100000
°C
9
Battery temperature charging max
1
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Define the maximum temperature of the battery during charging.</p></body></html>
MAX_ALLOWED_TEMP_BATT
1
1
0
120
-20
0
5
55
100000
°C
9
Battery temperature charging min
1
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Define the minimum temperature of the battery during charging.</p></body></html>
MIN_ALLOWED_TEMP_BATT
1
1
0
120
-20
0
5
10
100000
°C
9
Battery temperature cooling max
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Define the maximum temperature at which the cooling/heating output is enabled.</p></body></html>
MAX_ALLOWED_COOL_BATT
1
1
0
120
-20
0
5
5
100000
°C
9
Battery temperature cooling min
1
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Define the minimum temperature at which the cooling/heating output is enabled.</p></body></html>
MIN_ALLOWED_COOL_BATT
1
1
0
120
-20
0
5
50
100000
°C
9
BMS Temperature max
1
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Define the maximum temperature of the BMS.</p></body></html>
MAX_ALLOWED_TEMP_BMS
1
1
0
100
-20
0
5
90
100000
°C
9
BMS Temperature min
1
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Define the minimum temperature of the BMS.</p></body></html>
MIN_ALLOWED_TEMP_BMS
1
1
0
100
-20
0
5
-20
100000
°C
9
Display time battery dead
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Show battery dead symbol this amount of time before going to powerdown in cell voltage error state.</p></body></html>
DISP_TIMEOUT_DEAD
1
0
30000
100
0
1000
5000
ms
5
Display time battery error
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Show error symbol for this amount of time before going to powerdown in general error state.</p></body></html>
DISP_TIMEOUT_ERROR
1
0
30000
100
0
1000
2000
ms
5
Display time precharge error
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Show pre charge error for this amount of time.</p></body></html>
DISP_TIMEOUT_ERROR_PRECHARGE
1
0
30000
100
0
1000
10000
ms
5
Display time precharge splash
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Show splash screen for this amount of time.</p></body></html>
DISP_TIMEOUT_SPLASH_SCREEN
1
0
30000
100
0
1000
1000
ms
5
Max OVP & UVP errors
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Max count of hard cell voltage errors before actually shutting the BMS down. This value allowes you to ignore the occationally crossing of the hard cell voltage limits. This is to for example filter out the voltage spikes from extreme EMC situation (ie. static discharge).</p></body></html>
MAX_UNDER_OVERVOLTAGE_ERR_COUNT
1
0
30
1
0
1
5
2
Not used current threshold
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">If the absolute battery current is below this threshold start keeping track of time and wait for the not used timeout to trigger. The not used timer will be reset if the absolute battery current passes this threshold.</p></body></html>
NOT_USED_CURRENT_THRESHOLD
2
1
0
10
1
0
0.1
0.5
100000
A
9
Not used timeout
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">If the absolute battery current is below the not used battery current threshold start keeping track of time and wait for the not used timeout to trigger (happens when the amount of time defined here is crossed). The not used timer will be reset if the absolute battery current is higher than the "Not used current threshold". To disable the not used powerdown system this value can be set to 0ms, else if used, it should be a minimal of 5000ms.</p></body></html>
NOT_USED_TIMEOUT
1
0
86400000
0
0
1000
3600000
ms
5
Power down delay
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The amount of time between disabeling the output and actually powerdown of the BMS. When implementing push to BMS enable the connected ESC might re-enable the BMS once it is powered down due to some residual energy in the ESC, this oscillation will prevent the whole system to actually completely power down. By setting this time to a longer time you have a higher chance of actually powering everything down, a lower time will turn it down quicker with the risk of oscillation.</p></body></html>
POWER_DOWN_DELAY
1
0
30000
0
0
1000
1000
ms
5
State of charge store interval
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Interval in ms to store state of charge information. to reserve flash write cycles please dont make this value too low. Normally the state of charge value is also stored when the BMS is powered down. </p></body></html>
SOC_STORE_INTERVAL
1
0
86400000
10000
0
10000
60000
ms
5
State of charge method
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The state of charge estimation method the BMS should use.</p></body></html>
CELL_SOC_METHOD
1
None
Coulomb counting
Coulomb counting + CellVoltage lookup
CAN ID
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The CAN ID this BMS listens to and leaves behind when talking on the CAN bus.</p></body></html>
CAN_ID
1
0
254
1
0
1
10
2
CAN ID Style
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The CAN ID style / ID byte order. This is configureable to stay compatible with the VESC style and the style used in an e-foil project.</p></body></html>
CAN_ID_STYLE
0
ENNOID / DiebieMS / VESC
EFoiler
CAN throughput
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">CAN bus communication speed.</p></body></html>
CAN_SPEED
0
125kbit/s
250kbit/s
500kbit/s
Emit status over CAN
5
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Send status information like current, voltage, temperatures and out/input enabled states over CAN.</p></body></html>
CAN_STATUS_EMIT_ENABLE
1
Emit status protocol
4
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Send status protocol/format; how the status information is packaged in can messages.</p></body></html>
CAN_STATUS_PROTOCOL
1
None
ENNOID / DiebieMS
MG Electronics
Water sensor enable mask
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Tell what sensor input to use for the water detection system. The bitwise representation of this decimal value will show what sensor is enabled.</p></body></html>
WATER_DETECT_SENSOR_ENABLE
1
0
32768
0
0
1
0
4
Water detect threshold
1
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">If an active water detection input rises above this value then water sensed is being stated and emitted.</p></body></html>
WATER_DETECT_THRESHOLD
1
1
0
100
-60
0
5
10
1
9
Temp sensor enable mask BMS
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Tell what temperature sensor to use for the BMS temperature stats. The bitwise representation of this decimal value will show what sensor is enabled. The sensor order is as follows:</p>
<p style="-qt-paragraph-type:empty; margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><br /></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_ENABLE</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_EXT_LTC_NTC1</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_INT_LTC_CHIP</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_INT_STM_NTC</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_EXT_ADC_NTC0</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_EXT_ADC_NTC1</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_EXT_ADC_NTC2</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_EXT_ADC_NTC3</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_EXT_ADC_NTC4</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_EXT_ADC_NTC5</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_INT_ADC_NTC6</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_INT_ADC_NTC7</p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">TEMP_INT_SHT</p>
<p style="-qt-paragraph-type:empty; margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><br /></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">For example, making this value 4 ( 0b0000000000100 ) will enable only the internal LTC temperature sensor. Making this value 8 ( 0b0000000001000 ) will only enable the ntc that is connected to the STM. When it is 12 (4+8) or ( 0b0000000001100 ) both the internal LTC temperature sensor and the NTC connected to the STM will be enabled.</p></body></html>
TEMPERATURE_ENABLE_MASK_BMS
1
0
100000000
0
0
1
8
5
Temp sensor enable mask Battery
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Slave Module temperature 0 = Disable, 1 = Enable.</p></body></html>
TEMPERATURE_ENABLE_MASK_BATTERY
1
0
1
0
0
1
1
5
Temp sensor per module
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Number of Temperature sensor per slave module.</p></body></html>
NO_OF_TEMP_SENSOR_PER_MODULE
1
0
9
0
0
1
5
1
Discharge output
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Use master BMS discharge output.</p></body></html>
LC_USE_DISCHARGE
1
Disabled
Enabled
Precharge output
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Use master BMS precharge for discharge output.</p></body></html>
LC_USE_PRECHARGE
1
Disabled
Enabled
Forced
Allow charging during discharge
5
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Allow the battery to be charged whilst the output is turned on. This would allow you to use the battery during charging.</p></body></html>
ALLOW_CHARGE_DURING_DISCHARGE
1
Allow forced on mode
5
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">When the power button is configured as a pulse switch and allowForceOn you can force the BMS to stay on ignoring the cell voltage inputs. This function can be used to get home in a skateboard application when you know the battery is OK for example a wire came lose from a cell tab of the battery. This is risky! Because you can deeply discharge the battery this way. You can't charge the battery in this mode.</p>
<p style="-qt-paragraph-type:empty; margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><br /></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The forced-on method is activated when you long press (about 10 seconds) the power button when the bms is off. </p></body></html>
ALLOW_FORCE_ON
0
External enable opstate
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Defines the state to be entered when enabled by an external enable reason like CAN_5V_ENABLE present or USB 5V voltage present.</p></body></html>
EXT_ENA_OP_STATE
1
External operation
Normal operation
Charger enable opstate
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Defines the state to be entered when the BMS is enabled by charge voltage present.</p></body></html>
CHARGE_ENA_OP_STATE
0
Charge operation
Normal operation
Pulse or toggle power button
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Configure the power button to be either a pulse or a toggle button. The method of reading the power button input will depend on this setting. When configured as a pulse input and with a pulse switch a short press will enable the BMS and a long pres when the BMS is on will power it down. </p>
<p style="-qt-paragraph-type:empty; margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><br /></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">When using a toggle switch the BMS is turned on when the switch closes and turnes off when the switch is opened up. Please be aware the the BMS also turnes of when it is not used. When it turned off by itself the BMS needs at least 10 seconds of the switch to be opened before it can be enabled again.</p></body></html>
BUTTON_PULSE_TOGGLE
1
Latching / Toggle
Momentary / Pulse
Use safety input status from CAN
5
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Extra safety input method to disable the output when the message states a non safe condition. Ex: Voltage isolation monitoring. </p>
<p style="-qt-paragraph-type:empty; margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><br /></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The messages generated by an external device are received and used by the BMS to prefent unsafe power usage. Set to false to disable this feature.</p></body></html>
USE_CAN_SAFETY
0
Use delayed power down from CAN
5
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">This feature puts a CAN device in control of the power state of the BMS. A device can postpone the power down moment of the battery. This can be used to do a gracefull power down of a device. When not used set this value to false.</p></body></html>
USE_CAN_DELAYED_POWERDOWN
0
Use relay output
5
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Use slave BMS relay output.</p></body></html>
HC_USE_RELAY
1
Use relay precharge output
5
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Use slave BMS relay precharge output.</p></body></html>
HC_USE_PRECHARGE
1
Use relay load detect
5
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Use the voltage drop acros the HC load output precharge resistor to detect a minimal load before enabling the path completely.</p></body></html>
HC_USE_LOAD_DETECT
0
Load detect threshold
2
1
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The high current output load detect precharge time threshold. If precharging takes longer than this time then load present is assumed and emitted.</p></body></html>
HC_LOAD_DETECT_THRESHOLD
1
0
30000
200
0
1
300
ms
5
Voltage data source
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The HC load voltage data source can be selected here. For ADC's the callibration/scaling/offset values will be taken into account, for CAN based sensors the measured voltage will be used directly from the CAN sensor.</p></body></html>
HC_LOAD_VOLTAGE_DATA_SOURCE
0
NoSource
ISL28022 (I2C2 - 0x40) LV BatteryInput
ISL28022 (I2C1 - 0x44) LV LoadOutput
ISL28022 (I2C1 - 0x45) DCDC
ADS1015 (AN01) HV BatteryInput
ADS1015 (AN23) HV LoadOutput
SumOfIndividualCellVoltages
CAN->DieBieShunt
CAN->Isabellenhutte
Current data source
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">The HC load voltage data source can be selected here. For ADC's the callibration/scaling/offset values will be taken into account, for CAN based sensors the measured voltage will be used directly from the CAN sensor.</p></body></html>
HC_LOAD_VOLTAGE_DATA_SOURCE
0
NoSource
ISL28022 (I2C2 - 0x40) LV LC shunt
ISL28022 (I2C1 - 0x44) LV HC shunt
ISL28022 (I2C1 - 0x45) DCDC shunt
CAN->DieBieShunt
CAN->Isabellenhutte
Timeout precharge
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Slave precharge error timeout, allow xxxms pre-charge time before declaring load error.</p></body></html>
TIMEOUT_HC_PRECHARGE
1
0
30000
0
0
100
1500
ms
5
Precharge retry interval
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">When pre charge failes wait this long in ms before trying again. Set to 0 to disable retry.</p></body></html>
TIMEOUT_HC_PRECHARGE_RETRY_INTERVAL
1
0
3600000
0
0
1000
20000
ms
5
Precharge relay overlap
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">When precharge succeeds enable both relay and precharge combined for this time, then go to relay only. This will cover the time that the relay needs to close, because relays are slow :).</p></body></html>
TIMEOUT_HC_RELAY_OVERLAP
1
0
3600000
100
0
100
1000
ms
5
NTC LTC top resistor
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC Pullup resistor value</p></body></html>
NTC_TOP_RESISTOR_LTC
1
0
1000000
10000
0
10000
100000
Ohm
5
NTC LTC 25 deg
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC 25 degree resistor value</p></body></html>
NTC_25_DEG_LTC
1
0
1000000
10000
0
10000
100000
Ohm
5
NTC LTC Beta
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC beta factor.</p></body></html>
NTC_BETA_LTC
1
0
50000
1000
0
50
4100
B
3
NTC PCB top resistor
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC Pullup resistor value</p></body></html>
NTC_TOP_RESISTOR_PCB
1
0
1000000
10000
0
10000
100000
Ohm
5
NTC PCB 25 deg
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC 25 degree resistor value</p></body></html>
NTC_25_DEG_PCB
1
0
1000000
10000
0
10000
100000
Ohm
5
NTC PCB Beta
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC beta factor.</p></body></html>
NTC_BETA_PCB
1
0
50000
1000
0
50
4100
B
3
NTC HiAmp Ext. top resistor
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC Pullup resistor value</p></body></html>
NTC_TOP_RESISTOR_HIAMP_EXT
1
0
1000000
10000
0
10000
100000
Ohm
5
NTC HiAmp Ext. 25 deg
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC 25 degree resistor value</p></body></html>
NTC_25_DEG_HIAMP_EXT
1
0
1000000
10000
0
10000
100000
Ohm
5
NTC HiAmp Ext. Beta
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC beta factor.</p></body></html>
NTC_BETA_HIAMP_EXT
1
0
50000
1000
0
50
4390
B
3
NTC HiAmp PCB top resistor
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC Pullup resistor value</p></body></html>
NTC_TOP_RESISTOR_HIAMP_PCB
1
0
1000000
10000
0
10000
100000
Ohm
5
NTC HiAmp PCB 25 deg
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC 25 degree resistor value</p></body></html>
NTC_25_DEG_HIAMP_PCB
1
0
1000000
10000
0
10000
100000
Ohm
5
NTC HiAmp PCB Beta
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC beta factor.</p></body></html>
NTC_BETA_HIAMP_PCB
1
0
50000
1000
0
50
4100
B
3
NTC HiAmp AUX top resistor
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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</style></head><body style=" font-family:'DejaVu Sans'; ; font-weight:400; font-style:normal;">
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC Pullup resistor value</p></body></html>
NTC_TOP_RESISTOR_HIAMP_AUX
1
0
1000000
10000
0
10000
100000
Ohm
5
NTC HiAmp AUX 25 deg
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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</style></head><body style=" font-family:'DejaVu Sans'; ; font-weight:400; font-style:normal;">
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC 25 degree resistor value</p></body></html>
NTC_25_DEG_HIAMP_AUX
1
0
1000000
10000
0
10000
100000
Ohm
5
NTC HiAmp AUX Beta
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
p, li { white-space: pre-wrap; }
</style></head><body style=" font-family:'DejaVu Sans'; ; font-weight:400; font-style:normal;">
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">NTC beta factor.</p></body></html>
NTC_BETA_HIAMP_AUX
1
0
50000
1000
0
50
4390
B
3
Mode
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Signal source for the output enable state.</p></body></html>
AUX0_SIGN_SOURCE
0
Off
On
ChargeAllowed
LCDisChargeAllowed
LCDischargeEnabled
Signal01
Signal02
Signal03
Signal04
Condition01
Condition02
Condition03
Condition04
Turn on delay
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
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<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Delay before turning on the output, this could prevent accidental turn on.</p></body></html>
AUX0_TURNON_DELAY
1
0
86400000
0
0
100
250
ms
5
Turn off delay
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
p, li { white-space: pre-wrap; }
</style></head><body style=" font-family:'DejaVu Sans'; ; font-weight:400; font-style:normal;">
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Delay before turning off the output, this could prevent accidental turn off.</p></body></html>
AUX0_TURNOFF_DELAY
1
0
86400000
0
0
100
5000
ms
5
Mode
4
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
p, li { white-space: pre-wrap; }
</style></head><body style=" font-family:'DejaVu Sans'; ; font-weight:400; font-style:normal;">
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Signal source for the output enable state.</p></body></html>
AUX1_SIGN_SOURCE
0
Off
On
ChargeAllowed
LCDisChargeAllowed
LCDischargeEnabled
Signal01
Signal02
Signal03
Signal04
Condition01
Condition02
Condition03
Condition04
Turn on delay
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
p, li { white-space: pre-wrap; }
</style></head><body style=" font-family:'DejaVu Sans'; ; font-weight:400; font-style:normal;">
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Delay before turning on the output, this could prevent accidental turn on.</p></body></html>
AUX1_TURNON_DELAY
1
0
86400000
0
0
100
250
ms
5
Turn off delay
2
1
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
p, li { white-space: pre-wrap; }
</style></head><body style=" font-family:'DejaVu Sans'; ; font-weight:400; font-style:normal;">
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;">Delay before turning off the output, this could prevent accidental turn off.</p></body></html>
AUX1_TURNOFF_DELAY
1
0
86400000
0
0
100
5000
ms
5
noOfCellsSeries
noOfCellsParallel
noOfParallelModules
batteryCapacity
cellHardUnderVoltage
cellHardOverVoltage
cellLCSoftUnderVoltage
cellSoftOverVoltage
cellBalanceDifferenceThreshold
cellBalanceStart
cellThrottleUpperStart
cellThrottleLowerStart
cellThrottleUpperMargin
cellThrottleLowerMargin
packVoltageDataSource
packCurrentDataSource
buzzerSignalSource
buzzerSignalType
buzzerPersistent
shuntLCFactor
shuntLCOffset
voltageLCFactor
voltageLCOffset
loadVoltageFactor
loadVoltageOffset
chargerVoltageFactor
chargerVoltageOffset
throttleChargeIncreaseRate
throttleDisChargeIncreaseRate
cellBalanceUpdateInterval
maxSimultaneousDischargingCells
timeoutDischargeRetry
hysteresisDischarge
timeoutChargeRetry
hysteresisCharge
timeoutChargeCompleted
timeoutChargingCompletedMinimalMismatch
maxMismatchThreshold
chargerEnabledThreshold
timeoutChargerDisconnected
minimalPrechargePercentage
timeoutLCPreCharge
maxAllowedCurrent
allowedTempBattDischargingMax
allowedTempBattDischargingMin
allowedTempBattChargingMax
allowedTempBattChargingMin
allowedTempBattCoolingMax
allowedTempBattCoolingMin
allowedTempBMSMax
allowedTempBMSMin
displayTimeoutBatteryDead
displayTimeoutBatteryError
displayTimeoutBatteryErrorPreCharge
displayTimeoutSplashScreen
maxUnderAndOverVoltageErrorCount
notUsedCurrentThreshold
notUsedTimeout
stateOfChargeStoreInterval
stateOfChargeMethod
CANID
CANIDStyle
CANBaudRate
emitStatusOverCAN
emitStatusProtocolType
tempEnableMaskBMS
tempEnableMaskBattery
noOfTempSensorPerModule
LCUseDischarge
LCUsePrecharge
allowChargingDuringDischarge
allowForceOn
pulseToggleButton
useCANSafetyInput
useCANDelayedPowerDown
NTCLTCTopResistor
NTCLTC25Deg
NTCLTCBeta
NTCPCBTopResistor
NTCPCB25Deg
NTCPCBBeta
cellMonitorICType
cellMonitorICCount
extEnableState
chargeEnableState
powerDownDelay