LEMON Manuals: Even more car manuals for everyone: 1960-2025
Home >> Volkswagen >> 2013 >> Jetta Hybrid >> Repair and Diagnosis (Single Page) >> Engine Performance >> Ignition System >> 1.4L 4-CYL. Hybrid Turbo Generic Scan Tool - Engine Code: CNLA (Sedan) >> St Generic Scan Tool >> Diagnosis And Testing >> Battery Regulation Control Module -J840- DTC TABLE
April 5, 2026: LEMON Manuals is launched! Read the announcement.

Battery Regulation Control Module -J840- DTC TABLE

DTC Error Message Malfunction Criteria and Threshold Value Secondary Parameters with Enable Conditions Monitoring Time Length Frequency of checks, MIL Illumination
P062F ECU EEPROM check
  • EEPROM failure
--- ---
  • 1 DCY
P0A1F Battery Energy Control Module
  • Monitor signal for contactor power circuit is High
  • Monitor signal for contactor power latch circuit is Low
  • Monitor signal for power sustain circuit in (input signal to CPU from H/W) is High (input signal to CPU from H/W)
  • Watch Dog counter > 50 count (increment 10 ms cycle during malfunction detection)
  • Battery state HV OFF or Precharge or HV_ON
1.0 Sec
  • 1 DCY
P0A80 Hybrid/EV Battery Pack Current Sensor "A" Circuit Range/Performance
  • Internal resistance > 4.45 to 1.29 Ω
  • battery state: HV_ON
  • temperature >= -5 and <= 40
  • battery load discharge >= 3.24 and <= 31.05 kW
  • battery load charge >= 3.24 and <= 11.61 kW
  • battery load dischanrge >= 31.05 and <= 62.19 kW (one value)
  • battery load charge >= 11.61 and <= 23.31 kW (one value)
  • maximum monitoring time 60 sec
  • Less Performance counter >= 5 times
300 Sec
  • 2 DCY
P0A95 High Voltage Fuse "A"
  • Status information from V Sensor indicates fuse malfunction
  • Battery state HV OFF or Precharge or HV_ON
0.10 Sec
  • 1 DCY
P0A9D Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0A9E Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0AA1 Hybrid/EV Battery Positive Contactor Circuit Stuck Closed
  • State 1: all contactors off inconsistency
  • State 2: control negative contactor to close inconsistency
  • State 3: control precharge contactor to close inconsistency
  • State 4: control positive contactor to close inconsistency
  • State 5: control precharge contactor to open in case of malfunction of state 1 to 5 to pin-point: inconsistency
  • State 6: control negative contactor to open inconsistency
  • Battery state Precharge
---
  • 1 DCY
  • (HVP - CVP) * 100 / HVP <= 20 %
OR
  • (HVN - CVN) * 100 / HVN <= 20 %
  • Battery state: HV_ON
P0AA2 Hybrid/EV Battery Positive Contactor Circuit Stuck Open
  • State 1: all contactors off inconsistency
  • State 2: control negative contactor to close inconsistency
  • State 3: control precharge contactor to close inconsistency
  • State 4: control positive contactor to close inconsistency
  • State 5: control precharge contactor to open in case of malfunction of state 1 to 5 to pin-point: inconsistency
  • State 6: control negative contactor to open inconsistency
  • Battery state Precharge
---
  • 1 DCY
  • BECM requests to closed
  • Battery current < 0, 2 A
  • (TV-High - CVP) * 100 / Pack voltage > 20 %
  • (TV-Low - CVN) * 100 / Pack voltage > 20 %
  • Battery state: HV_ON
1 s
P0AA4 Hybrid/EV Battery Negative Contactor Circuit Stuck Closed
  • State 1: all contactors off inconsistency
  • State 2: control negative contactor to close inconsistency
  • State 3: control precharge contactor to close inconsistency
  • State 4: control positive contactor to close inconsistency
  • State 5: control precharge contactor to open in case of malfunction of state 1 to 5 to pin-point: inconsistency
  • State 6: control negative contactor to open inconsistency
  • Battery state Precharge
---
  • 1 DCY
  • (HVP - CVP) * 100 / HVP <= 20 %
OR
  • (HVN - CVN) * 100 / HVN <= 20 %
  • Battery state: HV_ON
P0AA5 Hybrid/EV Battery Negative Contactor Circuit Stuck Open
  • State 1: all contactors off inconsistency
  • State 2: control negative contactor to close inconsistency
  • State 3: control precharge contactor to close inconsistency
  • State 4: control positive contactor to close inconsistency
  • State 5: control precharge contactor to open in case of malfunction of state 1 to 5 to pin-point: inconsistency
  • State 6: control negative contactor to open inconsistency
  • Battery state Precharge
---
  • 1 DCY
  • BECM requests to closed
  • Battery current < 0.2 A
  • (TV-High - CVP) * 100 / Pack voltage > 20 %
  • (TV-Low - CVN) * 100 / Pack voltage > 20 %
  • Battery state: HV_ON
1 s
P0AAD Hybrid/EV Battery Pack Air Temperature Sensor "A" Circuit Range/Performance
  • average of battery temperature - inlet/outlet thermistor temperature > 10° C
  • |inlet thermistor temperature - outlet thermistor temperature > 10° C
  • engine off time > 360 min
  • Battery state HV_ON
10 Sec
  • 2 DCY
P0AAE Hybrid/EV Battery Pack Air Temperature Sensor "A" Circuit Low
  • Thermistor temperature < -45.0° C
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
  • 2 DCY
P0AAF Hybrid/EV Battery Pack Air Temperature Sensor "A" Circuit High
  • Thermistor temperature > 95.0° C
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
  • 2 DCY
P0AB2 Hybrid/EV Battery Pack Air Temperature Sensor "B" Circuit Range/Performance
  • average of battery temperature - inlet/outlet thermistor temperature > 10° C
  • inlet thermistor temperature - outlet thermistor temperature > 10° C
  • engine off time > 360 min
  • Battery state HV_ON
10 Sec
  • 2 DCY
P0AB3 Hybrid/EV Battery Pack Air Temperature Sensor "B" Circuit Low
  • Thermistor temperature < -45.0° C
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
  • 2 DCY
P0AB4 Hybrid/EV Battery Pack Air Temperature Sensor "B" Circuit High
  • Thermister temperature > 95.0° C
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
  • 2 DCY
P0ABA Hybrid/EV Battery Pack Voltage Sense "A" Circuit
  • cell controller communication is missing at least one cell controller
  • Battery state HV OFF or Precharge or HV_ON
0.70 Sec
  • 1 DCY
P0ABB Hybrid/EV Battery Pack Voltage Sense "A" Circuit Range/Performance
  • Negative contactor voltage > 1.15 V negative total cell voltage
  • or
  • Negative contactor voltage < 0.85 V negative total cell voltage
  • or
  • Positive contactor voltage > 1.15 V positive total cell voltage
  • or
  • Positive contactor voltage < 0.85 V positive total cell voltage V
  • Battery state HV_ON.
0.10 Sec.
  • 2 DCY
P0ABC Hybrid/EV Battery Pack Voltage Sense "A" Circuit Low
  • Negative contactor voltage > 258 V
  • or
  • Negative contactor voltage < -258 V
  • or
  • Positive contactor voltage > 258 V
  • or
  • Positive contactor voltage < -258 V
  • Battery state HV_ON.
0.10 Sec.
  • 2 DCY
P0AC0 Hybrid/EV Battery Pack Current Sensor "A" Circuit Range/Performance
  • Battery current > 130 A
  • Battery current < -190 A
  • Battery state HV_ON.
0.50 Sec
  • 1 DCY
  • compare P-GND voltage polarization with Current polarization inconsistency
  • Battery state HV_ON.
  • voltage over fuse < -120 mV
  • voltage over fuse > 120 mV
1 Sec
  • current offset > 1 A
  • current offset < -2 A
  • battery state: during initialization
10 Sec
  • State 1: all contactors off inconsistency
  • State 2: control negative contactor to close inconsistency
  • State 3: control precharge contactor to close inconsistency
  • State 4: control positive contactor to close inconsistency
  • State 5: control precharge contactor to open in case of malfunction of state 1 to 5 to pin-point: inconsistency
  • State 6: control negative contactor to open inconsistency
  • battery state: Pre-charge
---
  • 2 DCY
P0AC1 Hybrid/EV Battery Pack Current Sensor "A" Circuit Low
  • Battery current < -240 A
  • Battery state HV_ON.
0.10 Sec
  • 2 DCY
P0AC2 Hybrid/EV Battery Pack Current Sensor "A" Circuit High
  • Battery current > 240 A
  • Battery state HV_ON.
0.10 Sec
  • 2 DCY
P0AC6 Hybrid/EV Battery Temperature Sensor "B" Circuit Range/Performance
  • difference of two temperature sensors < -20° C
OR
  • difference of two temperature sensors > 20° C
  • Number of checks with a single sensor exceeds threshold value >= 5
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
10 Sec
  • 2 DCY
P0AC7 Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0AC8 Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0ACB Hybrid/EV Battery Temperature Sensor "C" Circuit Range/Performance
  • difference of two temperature sensors < -20° C
OR
  • difference of two temperature sensors > 20° C
  • Number of checks with a single sensor exceeds threshold value >= 5
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
  • 2 DCY
P0ACC Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0ABD Hybrid/EV Battery Pack Voltage Sense "A" Circuit High
  • Negative contactor voltage > 258 V
  • or
  • Negative contactor voltage < -258 V
  • or
  • Positive contactor voltage > 258 V
  • or
  • Positive contactor voltage < -258 V
  • Battery state HV_ON.
0.10 Sec.
  • 2 DCY
P0ACD Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0A9C Hybrid/EV Battery Temperature Sensor "A" Circuit Range/Performance
  • difference of two temperature sensors < -20° C
OR
  • difference of two temperature sensors > 20° C
  • Number of checks with a single sensor exceeds threshold value >= 5
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
  • 2 DCY
P0AE2 Hybrid/EV Battery Precharge Contactor Circuit Stuck Closed
  • State 1: all contactors off inconsistency
  • State 2: control negative contactor to close inconsistency
  • State 3: control precharge contactor to close inconsistency
  • State 4: control positive contactor to close inconsistency
  • State 5: control precharge contactor to open in case of malfunction of state 1 to 5 to pin-point: inconsistency
  • State 6: control negative contactor to open inconsistency
  • Battery state Precharge
---
  • 1 DCY
P0AE3 Hybrid/EV Battery Precharge Contactor Circuit Stuck Open
  • State 1: all contactors off inconsistency
  • State 2: control negative contactor to close inconsistency
  • State 3: control precharge contactor to close inconsistency
  • State 4: control positive contactor to close inconsistency
  • State 5: control precharge contactor to open in case of malfunction of state 1 to 5 to pin-point: inconsistency
  • State 6: control negative contactor to open inconsistency
  • Battery state Precharge
---
  • 1 DCY
P0AE9 Hybrid/EV Battery Temperature Sensor "D" Circuit Range/Performance
  • difference of two temperature sensors < -20° C
OR
  • difference of two temperature sensors > 20° C
  • Number of checks with a single sensor exceeds threshold value >= 5
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
  • 2 DCY
P0AEA Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0AEB Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0AF8 Hybrid/EV Battery System Voltage
  • Battery current >= 20 A
OR
  • Positive Pack Voltage - Negative Pack Voltage < 48 V
  • Positive Backup Pack Voltage - Negative Backup Pack Voltage < 48 V
  • battery state: during precharge HV_ON (second check by voltage)
0.05 Sec
  • 1 DCY
P0B15 Hybrid Battery Pack Voltage Sense "B" Circuit Range/Performance
  • State 1: all contactors off inconsistency
  • State 2: control negative contactor to close inconsistency
  • State 3: control precharge contactor to close inconsistency
  • State 4: control positive contactor to close inconsistency
  • State 5: control precharge contactor to open in case of malfunction of state 1 to 5 to pin-point: inconsistency
  • State 6: control negative contactor to open inconsistency
  • Battery state Precharge
2 to 5 Sec
  • 1 DCY
P0B16 Hybrid/EV Battery Pack Voltage Sense "B" Circuit Low
  • (HVP - CVP) * 100 / HVP <= 20 %
OR
  • (HVN - CVN) * 100 / HVN <= 20 %
  • Battery state: HV_ON
0.10 Sec.
  • 2 DCY
P0B17 Hybrid/EV Battery Pack Voltage Sense "B" Circuit High
  • Negative contactor voltage > 258 V
  • or
  • Negative contactor voltage < -258 V
  • or
  • Positive contactor voltage > 258 V
  • or
  • Positive contactor voltage < -258 V
  • Battery state HV_ON.
0.10 Sec.
  • 2 DCY
P0B15 Hybrid/EV Battery Pack Voltage Sense "B" Circuit Range/Performance
  • Negative contactor voltage > 1.15 V negative total cell voltage
  • or
  • Negative contactor voltage < 0.85 V negative total cell voltage
  • or
  • Positive contactor voltage > 1.15 V positive total cell voltage
  • or
  • Positive contactor voltage < 0.85 V positive total cell voltage V
  • Battery state HV_ON.
1 Sec.
  • 2 DCY
P0B3C Hybrid Battery Voltage Sense "A" Circuit Range/Performance
  • TV-High > 240 V
  • TV-High < 24 V
  • TV-High - HVP > 48 V
  • TV-High - CVP > 48 V
  • HVP - CVP < 48 V
  • Battery state HV_ON.
1 to 5 Sec
  • 2 DCY
  • Average Block voltage - Minimum Block voltage (8 cell) > 1.2 V
OR
  • Minimum Block voltage (8 cell) - Minimum Block voltage (16 cell) > 0.6 V
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
P0B41 Hybrid/EV Battery Voltage Sense "B" Circuit Range/Performance
  • Block Voltage (TMV01) < 20.8 V
  • Block Voltage (TMV01) > 208 V
  • Battery state HV OFF or Precharge or HV_ON
2 Sec
  • 2 DCY
  • Average Block voltage - Minimum Block voltage (8 cell) > 1.2 V
OR
  • Minimum Block voltage (8 cell) - Minimum Block voltage (16 cell) > 0.6 V
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
P0B42 Hybrid/EV Battery Voltage Sense "B" Circuit Low
  • Block Voltage (TMV01) < -226 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B43 Hybrid/EV Battery Voltage Sense "B" Circuit High
  • Block Voltage (TMV01) > 226 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B46 Hybrid/EV Battery Voltage Sense "C" Circuit Range/Performance
  • Block Voltage (TMV02) < 17.6 V
  • Block Voltage (TMV02) > 176 V
  • Battery state HV OFF or Precharge or HV_ON
2 Sec
  • 2 DCY
  • Average Block voltage - Minimum Block voltage (8 cell) > 1.2 V
OR
  • Minimum Block voltage (8 cell) - Minimum Block voltage (16 cell) > 0.6 V
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
P0B47 Hybrid/EV Battery Voltage Sense "C" Circuit Low
  • Block Voltage (TMV02) < -189 ]
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B48 Hybrid/EV Battery Voltage Sense "C" Circuit High
  • Block Voltage (TMV02) > 189 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B4B Hybrid/EV Battery Voltage Sense "D" Circuit Range/Performance
  • Block Voltage (TMV03) < 14.4 V
  • Block Voltage (TMV03) > 144 [V
  • Battery state HV OFF or Precharge or HV_ON
2 Sec
  • 2 DCY
  • Average Block voltage - Minimum Block voltage (8 cell) > 1.2 V
OR
  • Minimum Block voltage (8 cell) - Minimum Block voltage (16 cell) > 0.6 V
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
P0B4C Hybrid/EV Battery Voltage Sense "D" Circuit Low
  • Block Voltage (TMV03) < -171 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B4D Hybrid/EV Battery Voltage Sense "D" Circuit High
  • Block Voltage (TMV03) > 171 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B50 Hybrid/EV Battery Voltage Sense "E" Circuit Range/Performance
  • Block Voltage (TMV04) < 11.2 V
  • Block Voltage (TMV04) > 112 V
  • Battery state HV OFF or Precharge or HV_ON
2 Sec
  • 2 DCY
  • Average Block voltage - Minimum Block voltage (8 cell) > 1.2 V
OR
  • Minimum Block voltage (8 cell) - Minimum Block voltage (16 cell) > 0.6 V
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
P0B51 Hybrid/EV Battery Voltage Sense "E" Circuit Low
  • Block Voltage (TMV04) < -171V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B52 Hybrid/EV Battery Voltage Sense "E" Circuit High
  • Block Voltage (TMV04) > 171 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B55 Hybrid/EV Battery Voltage Sense "F" Circuit Range/Performance
  • Block Voltage (TMV05) < 8 V
  • Block Voltage (TMV05) > 80 V
  • Battery state HV OFF or Precharge or HV_ON
2 Sec
  • 2 DCY
  • Average Block voltage - Minimum Block voltage (8 cell) > 1.2 V
OR
  • Minimum Block voltage (8 cell) - Minimum Block voltage (16 cell) > 0.6 V
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
P0B56 Hybrid/EV Battery Voltage Sense "F" Circuit Low
  • Block Voltage (TMV05) < -189 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B57 Hybrid/EV Battery Voltage Sense "F" Circuit High
  • Block Voltage (TMV05) > 189 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B5A Hybrid/EV Battery Voltage Sense "G" Circuit Range/Performance
  • Block Voltage (TMV06) < 4.8 V
  • Block Voltage (TMV06) > 48 V
  • Battery state HV OFF or Precharge or HV_ON
2 Sec
  • 2 DCY
  • Average Block voltage - Minimum Block voltage (8 cell) > 1.2 V
OR
  • Minimum Block voltage (8 cell) - Minimum Block voltage (16 cell) > 0.6 V
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
P0B5B Hybrid/EV Battery Voltage Sense "G" Circuit Low
  • Block Voltage (TMV06) < -192 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B5C Hybrid/EV Battery Voltage Sense "G" Circuit High
  • Block Voltage (TMV06) > 192 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B5F Hybrid/EV Battery Voltage Sense "H" Circuit Range/Performance
  • Block Voltage (TMV07) < 1.6 V
  • Block Voltage (TMV07) > 16 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
  • Average Block voltage - Minimum Block voltage (8 cell) > 1.2 V
OR
  • Minimum Block voltage (8 cell) - Minimum Block voltage (16 cell) > 0.6 V
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
P0B60 Hybrid/EV Battery Voltage Sense "H" Circuit Low
  • Block Voltage (TMV07) < -192 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0B61 Hybrid/EV Battery Voltage Sense "H" Circuit High
  • Block Voltage (TMV07) > 192 V
  • Battery state HV OFF or Precharge or HV_ON
1 Sec
  • 2 DCY
P0BC3 Hybrid/EV Battery Temperature Sensor "E" Circuit Range/Performance
  • difference of two temperature sensors < -20° C
OR
  • difference of two temperature sensors > 20° C
  • Number of checks with a single sensor exceeds threshold value >= 5
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
  • 2 DCY
P0BC4 Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0BC5 Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0BC8 Hybrid/EV Battery Pack Cooling Fan 1Sense Range/Performance
  • fan feedback voltage > 1.37 to 3.43 V (depending on fan duty)
  • Battery state HV OFF or Precharge or HV_ON
  • minimum fan speed > 30% fan duty
30 Sec
  • 2 DCY
P0BC9 Hybrid/EV Battery Pack Cooling Fan 1 Sense Circuit Low
  • Fan feedback voltage < 0.1 V
  • Battery state HV OFF or Precharge or HV_ON
  • minimum fan speed > 30% fan duty
10 Sec
  • 2 DCY
P0BCA Hybrid/EV Battery Pack Cooling Fan 1 Sense Circuit High
  • Fan feedback voltage > 3.45 V
  • Battery state HV OFF or Precharge or HV_ON
  • minimum fan speed > 30% fan duty
10 Sec
  • 2 DCY
P0C34 Hybrid/EV Battery Temperature Sensor "F" Circuit Range/Performance
  • difference of two temperature sensors < -20° C
OR
  • difference of two temperature sensors > 20° C
  • Number of checks with a single sensor exceeds threshold value >= 5
  • Battery state HV OFF or Precharge or HV_ON
10 Sec
  • 2 DCY
P0C35 Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0C36 Hybrid/EV Battery Temperature Sensor "A" Circuit Low
  • Temperature sensor x > 94° C
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
0.60 Sec
  • 2 DCY
P0DAC Hybrid/EV Battery Cell Balancing Circuit "A"
  • Cell voltage direction different count >= 9 counts
  • or
  • cell voltage > 4 mV
  • or
  • cell voltage < 4 mV
  • or
  • cell voltage - 1.85 V > 0.8 V
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
  • and
  • Drive motor revolution < 20 RPM
  • and
  • Electric drive motor current < 20 A
  • Battery state INIT
Immediate
  • 1 DCY
P0DB0 Hybrid/EV Battery Cell Balancing Circuit "B"
  • Cell voltage direction different count >= 9 counts
  • or
  • cell voltage > 4 mV
  • or
  • cell voltage < 4 mV
  • or
  • cell voltage - 1.85 V > 0.8 V
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
  • and
  • Drive motor revolution < 20 RPM
  • and
  • Electric drive motor current < 20 A
  • Battery state INIT
Immediate
  • 1 DCY
P0DB4 Hybrid/EV Battery Cell Balancing Circuit "C"
  • Cell voltage direction different count >= 9 counts
  • or
  • cell voltage > 4 mV
  • or
  • cell voltage < 4 mV
  • or
  • cell voltage - 1.85 V > 0.8 V
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
  • and
  • Drive motor revolution < 20 RPM
  • and
  • Electric drive motor current < 20 A
  • Battery state INIT
Immediate
  • 1 DCY
P0DB8 Hybrid/EV Battery Cell Balancing Circuit "D"
  • Cell voltage direction different count >= 9 counts
  • or
  • cell voltage > 4 mV
  • or
  • cell voltage < 4 mV
  • or
  • cell voltage - 1.85 V > 0.8 V
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
  • and
  • Drive motor revolution < 20 RPM
  • and
  • Electric drive motor current < 20 A
  • Battery state INIT
Immediate
  • 1 DCY
P0DBC Hybrid/EV Battery Cell Balancing Circuit "E"
  • Cell voltage direction different count >= 9 counts
  • or
  • cell voltage > 4 mV
  • or
  • cell voltage < 4 mV
  • or
  • cell voltage - 1.85 V > 0.8 V
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
  • and
  • Drive motor revolution < 20 RPM
  • and
  • Electric drive motor current < 20 A
  • Battery state INIT
Immediate
  • 1 DCY
P0DC0 Hybrid/EV Battery Cell Balancing Circuit "F"
  • Cell voltage direction different count >= 9 counts
  • or
  • cell voltage > 4 mV
  • or
  • cell voltage < 4 mV
  • or
  • cell voltage - 1.85 V > 0.8 V
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
  • and
  • Drive motor revolution < 20 RPM
  • and
  • Electric drive motor current < 20 A
  • Battery state INIT
Immediate
  • 1 DCY
P0DC4 Hybrid/EV Battery Cell Balancing Circuit "G"
  • Cell voltage direction different count >= 9 counts
  • or
  • cell voltage > 4 mV
  • or
  • cell voltage < 4 mV
  • or
  • cell voltage - 1.85 V > 0.8 V
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
  • and
  • Drive motor revolution < 20 RPM
  • and
  • Electric drive motor current < 20 A
  • Battery state INIT
Immediate
  • 1 DCY
P0DC8 Hybrid/EV Battery Cell Balancing Circuit "H"
  • Cell voltage direction different count >= 9 counts
  • or
  • cell voltage > 4 mV
  • or
  • cell voltage < 4 mV
  • or
  • cell voltage - 1.85 V > 0.8 V
  • Battery state HV OFF or Precharge or HV_ON or Emergency OFF
  • and
  • Drive motor revolution < 20 RPM
  • and
  • Electric drive motor current < 20 A
  • Battery state INIT
Immediate
  • 1 DCY