DEIF DEIF AGC 150 Genset Modbus RTU template

DEIF AGC 150 Genset

Aggregatesteuerung, die Generator und Motor eines Aggregats oder Gasmotor-BHKW misst, schützt und regelt.

Die DEIF AGC 150 ist eine Aggregatesteuerung, die den Motor startet, den Generator synchronisiert, die Leistung regelt und Motor und Generator schützt, auch bei Gasmotor-BHKW. Diese Modbus-RTU-Vorlage liest elektrische Werte, Energiezähler, Betriebsstunden, Motordaten, Schalter- und Betriebszustände sowie Alarme und sendet Befehle und Leistungssollwerte aus ModbusCloud.

Protokoll
Modbus RTU
Anschluss
RS485, 9600 baud
Register
1000, nur lesen
Marke
DEIF
Wichtige Messwerte
Generatorleistung · Generatorspannung und Strom · Frequenz · Abgegebene Energie · Betriebsstunden · Drehzahl und Motortemperaturen · Schalter- und Betriebsart · Alarme
Verfügbare Befehle
Fernstart und Fernstopp · Schalterbefehle · Betriebsart · Leistungssollwert · Cos-Phi-Sollwert · Uhr der Steuerung
Kompatible Modelle
AGC 150 Generator (genset controller)
Zuletzt aktualisiert

Register (1000)

1000 lesen, 0 schreiben

NameEinheitZugriffAdresse (Verborgen bis zur Eingabe Ihrer E-Mail-Adresse)Funktion (verborgen)Typ (verborgen)
Generator Voltage L1-L2VLesen
Generator Voltage L2-L3VLesen
Generator Voltage L3-L1VLesen
Generator Voltage L1-NVLesen
Generator Voltage L2-NVLesen
Generator Voltage L3-NVLesen
Generator Frequency L1HzLesen
Generator Frequency L2HzLesen
Generator Frequency L3HzLesen
Generator Voltage Phase Angle L1-L2°Lesen
Generator Voltage Phase Angle L2-L3°Lesen
Generator Voltage Phase Angle L3-L1°Lesen
Generator Current L1ALesen
Generator Current L2ALesen
Generator Current L3ALesen
Generator Power L1kWLesen
Generator Power L2kWLesen
Generator Power L3kWLesen
Generator PowerkWLesen
Generator Reactive Power L1kvarLesen
Generator Reactive Power L2kvarLesen
Generator Reactive Power L3kvarLesen
Generator Reactive PowerkvarLesen
Generator Apparent Power L1kVALesen
Generator Apparent Power L2kVALesen
Generator Apparent Power L3kVALesen
Generator Apparent PowerkVALesen
Generator PFLesen
Bus B Voltage L1-L2VLesen
Bus B Voltage L2-L3VLesen
Bus B Voltage L3-L1VLesen
Bus B Voltage L1-NVLesen
Bus B Voltage L2-NVLesen
Bus B Voltage L3-NVLesen
Bus B Frequency L1HzLesen
Bus B Frequency L2HzLesen
Bus B Frequency L3HzLesen
Bus B Voltage Phase Angle L1-L2°Lesen
Bus B Voltage Phase Angle L2-L3°Lesen
Bus B Voltage Phase Angle L3-L1°Lesen
U BB L1 - U GEN L1 Phase Angle°Lesen
U BB L2 - U GEN L2 Phase Angle°Lesen
U BB L3 - U GEN L3 Phase Angle°Lesen
Cos-phiLesen
Cos Phi Inductive or CapacitiveLesen
Mains Power (Multi-input 20, 4th CT or PMS Total)kWLesen
Power Derate Value%Lesen
Actual Nominal Power Including DerateLesen
Generator Power (%)%Lesen
Generator Reactive Power (%)%Lesen
4th Current Input: I Neutral (True RMS)ALesen
4th Current Input: I Ground (3rd Harmonic Filter)ALesen
4th Current Input: Apparent PowerkVALesen
4th Current Input: Active PowerkWLesen
4th Current Input: Reactive PowerkvarLesen
4th Current Input: Cos-phiLesen
4th Current Input: Cos Phi Inductive or CapacitiveLesen
4th Current Input: Power FactorLesen
Mains Reactive Power (Multi-input 20, 4th CT or PMS)Lesen
4th Current Input: I Busbar (True RMS)ALesen
Active Power LoadkWLesen
Reactive Power LoadkWLesen
Demand of Peak Current 1Lesen
Demand of Peak Current 2Lesen
Demand of Peak Current 3Lesen
Demand of Avg. Peak Current 1Lesen
Demand of Avg. Peak Current 2Lesen
Demand of Avg. Peak Current 3Lesen
AVR Ref CurrentLesen
CosPhi Ref Current SignLesen
CosPhi Ref Current Abs ValueLesen
P Ref ActualLesen
AVR Ref Current RampedLesen
Mlogic Event Counter 1Lesen
Mlogic Event Counter 2Lesen
Mlogic Event Counter 3Lesen
Mlogic Event Counter 4Lesen
Mlogic Event Counter 5Lesen
Mlogic Event Counter 6Lesen
Mlogic Event Counter 7Lesen
Mlogic Event Counter 8Lesen
DC Supply Term. 1-2VLesen
RPM (Revolutions per Minute)rpmLesen
Multi-input 20Lesen
Multi-input 21Lesen
Multi-input 22Lesen
Multi-input 23Lesen
CIO 308 No. 1. Input 8 [Config]Lesen
CIO 308 No. 1. Input 11 [Config]Lesen
CIO 308 No. 1. Input 14 [Config]Lesen
CIO 308 No. 1. Input 17 [Config]Lesen
CIO 308 No. 1. Input 20 [Config]Lesen
CIO 308 No. 1. Input 23 [Config]Lesen
CIO 308 No. 1. Input 26 [Config]Lesen
CIO 308 No. 1. Input 29 [Config]Lesen
CIO 308 No. 2. Input 8 [Config]Lesen
CIO 308 No. 2. Input 11 [Config]Lesen
CIO 308 No. 2. Input 14 [Config]Lesen
CIO 308 No. 2. Input 17 [Config]Lesen
CIO 308 No. 2. Input 20 [Config]Lesen
CIO 308 No. 2. Input 23 [Config]Lesen
CIO 308 No. 2. Input 26 [Config]Lesen
CIO 308 No. 2. Input 29 [Config]Lesen
CIO 308 No. 3. Input 8 [Config]Lesen
CIO 308 No. 3. Input 11 [Config]Lesen
CIO 308 No. 3. Input 14 [Config]Lesen
CIO 308 No. 3. Input 17 [Config]Lesen
CIO 308 No. 3. Input 20 [Config]Lesen
CIO 308 No. 3. Input 23 [Config]Lesen
CIO 308 No. 3. Input 26 [Config]Lesen
CIO 308 No. 3. Input 29 [Config]Lesen
General Purpose PID 1 Prioritized InputLesen
General Purpose PID 2 Prioritized InputLesen
General Purpose PID 3 Prioritized InputLesen
General Purpose PID 4 Prioritized InputLesen
Engine SpeedrpmLesen
Engine Coolant Temperature°CLesen
Engine Oil PressurebarLesen
Number of Actual FaultsLesen
Engine Oil Temperature°CLesen
Fuel Temperature°CLesen
Intake Manifold #1 PressurebarLesen
Air Inlet Temperature°CLesen
Coolant Level%Lesen
Fuel Ratel/hLesen
Charge Air PressurebarLesen
Intake Manifold #1 Temperature°CLesen
Drivers Demand Engine - Percent Torque%Lesen
Actual Engine - Percent Torque%Lesen
Accelerator Pedal Position%Lesen
Percent Load at Current Speed%Lesen
Air Inlet PressurebarLesen
Exhaust Gas Temperature°CLesen
Engine HourshLesen
Engine Oil Filter Differential PressurebarLesen
Keyswitch Battery PotentialVLesen
Fuel Delivery PressurebarLesen
Engine Oil Level%Lesen
Crankcase PressurebarLesen
Coolant PressurebarLesen
Water in Fuel 1Lesen
Blowby FlowLesen
Fuel Rail PressurebarLesen
Timing Rail PressurebarLesen
Aftercooler Water Inlet Temperature°CLesen
Turbo Oil Temperature°CLesen
Particulate Trap Inlet PressurebarLesen
Air Filter Differential PressurebarLesen
Coolant Filter Differential PressurebarLesen
Atmospheric PressurebarLesen
Ambient Air Temperature°CLesen
Exhaust Temperature - Right°CLesen
Exhaust Temperature - Left°CLesen
Winding 1 Temperature°CLesen
Winding 2 Temperature°CLesen
Winding 3 Temperature°CLesen
Auxiliary Analog Info 1Lesen
Auxiliary Analog Info 2Lesen
Engine Turbocharger 1 Compressor Outlet Temperature°CLesen
Engine Intercooler Temperature°CLesen
Engine Trip FuellLesen
Engine Total Fuel Usedm³Lesen
Trip Fuel, GaseouskgLesen
Total Fuel Used, GaseoustLesen
Lowest Cylinder Exhaust TemperatureLesen
Highest Cylinder Exhaust TemperatureLesen
Average Cylinder Exhaust TemperatureLesen
Cylinder Exhaust Temp. Most Deviated from AverageLesen
GOV OutputLesen
AVR OutputLesen
Battery Potential / Power Input 1Lesen
Engine Turbocharger 2 Boost PressureLesen
Engine Intake Manifold 3 Temperature°CLesen
Engine Intake Manifold 4 Temperature°CLesen
Engine Fuel 1 Injector Metering Rail 1 PressurebarLesen
Engine Pre-filter Oil PressurebarLesen
Water in Fuel 2Lesen
Aftertreatment 2 Diesel Exhaust Fluid Dosing Requested Quantityg/hLesen
Aftertreatment 2 SCR Catalyst Intake Gas Temperature°CLesen
Aftertreatment 2 SCR Catalyst Outlet Gas Temperature°CLesen
Engine Oil-Filter Outlet PressurebarLesen
Engine Operating StateLesen
Source Address of Controlling DeviceLesen
Engine Rated SpeedrpmLesen
Engine Speed At Idle, Point 1rpmLesen
MTU Only: Fuel Consumption g/KWhLesen
MTU Only: Engine Status of Start ProcedureLesen
UREA Level (Scania and Isuzu)%Lesen
Severity Status of the Operator Inducement SystemLesen
DPF Outlet Exhaust Temperature Bank 1°CLesen
Time to Next DPF RegenerationhLesen
Charge Air Cooler 1 Outlet Temperature°CLesen
Aftertreatment 1 Diesel Particulate Filter 1 Soot Load PercentLesen
Battery Charger 1 Output VoltageVLesen
Battery Charger 1 Output CurrentALesen
Aftertreatment 1 Diesel Exhaust Fluid Average ConsumptionLesen
Volvo Penta Time Left to Torque ReductionLesen
Volvo Penta Time Left to Severe Torque ReductionLesen
Volvo Penta SCR Inducement SeverityLesen
Volvo Penta SCR Inducement ReasonLesen
Engine Operating Derate RequestLesen
Engine Demand - Percent Torque%Lesen
Engine Throttle Actuator 1 Control CommandLesen
Long-term Fuel TrimLesen
Short-term Fuel TrimLesen
Engine Exhaust Gas Oxygen Sensor Closed Loop OperationLesen
Engine Desired Ignition Timing #1Lesen
Engine Actual Ignition TimingLesen
Aftertreatment 1 Intake Percent Oxygen 1%Lesen
Aftertreatment 1 Intake Percent Oxygen 2%Lesen
Engine Starter ModeLesen
Actual Maximum Available Engine-Percent Torque%Lesen
Engine Coolant Preheated StateLesen
Engine Safety and Protection Override StatusLesen
Engine Cylinder Cut-offLesen
MTU Engine Running StateLesen
External Stop StateLesen
MTU Requested Absolute TorqueLesen
Source of Current Speed DemandLesen
Engine Demanded Operating Speed (Speed Demand Effective)Lesen
Feedback of Speed Demand CANLesen
Feedback of Speed Demand Analogue InputLesen
Speed Demand Fail ModeLesen
Inducement TimerLesen
Mean Trip Fuel ConsumptionLesen
Nominal PowerkWLesen
Engine Trip Fuel (not Scaled)lLesen
Engine Total Fuel Used (not Scaled)lLesen
Mean Trip Fuel Consumption (not Scaled)lLesen
Engine PowerkWLesen
Engine Hours (not Scaled)hLesen
Engine Intake Manifold #1 Absolute PressurebarLesen
Air Filter Differential Pressure 2barLesen
Fuel Supply Pump Inlet PressurebarLesen
Fuel Filter (Suction Side) Differential PressurebarLesen
Engine Fuel Filter Differential PressurebarLesen
Speed Demand SwitchLesen
Pressure: Lube Oil Limit LObarLesen
Pressure: Lube Oil Limit LOLObarLesen
Pressure: FuelbarLesen
Temperature: Coolant Limit HI°CLesen
Temperature: Coolant Limit HIHI°CLesen
Temperature: Coolant Intercooler°CLesen
ECU Temperature°CLesen
Actual DroopLesen
Injection Quantity Act.DBR%Lesen
Engine Speed CamshaftLesen
Temperature: Lube Oil Limit HI°CLesen
Temperature: Lube Oil Limit HIHI°CLesen
Feedback Speed Demand AnalogLesen
Stop Signal ActivatedLesen
Exhaust Port Temperature 01 EPT1°CLesen
Exhaust Port Temperature 02 EPT1°CLesen
Exhaust Port Temperature 03 EPT1°CLesen
Exhaust Port Temperature 04 EPT1°CLesen
Exhaust Port Temperature 05 EPT1°CLesen
Exhaust Port Temperature 06 EPT1°CLesen
Exhaust Port Temperature 07 EPT1°CLesen
Exhaust Port Temperature 08 EPT1°CLesen
Exhaust Port Temperature 09 EPT1°CLesen
Exhaust Port Temperature 10 EPT1°CLesen
Exhaust Port Temperature 11 EPT1°CLesen
Exhaust Port Temperature 12 EPT1°CLesen
Exhaust Port Temperature 13 EPT1°CLesen
Exhaust Port Temperature 14 EPT1°CLesen
Exhaust Port Temperature 15 EPT1°CLesen
Exhaust Port Temperature 16 EPT1°CLesen
Exhaust Port Temperature 17 EPT1°CLesen
Exhaust Port Temperature 18 EPT1°CLesen
Exhaust Port Temperature 19 EPT1°CLesen
Exhaust Port Temperature 20 EPT1°CLesen
Engine Filtered Fuel Delivery PressurebarLesen
Engine Coolant Temperature 2°CLesen
Engine Coolant Temperature 3°CLesen
Engine Coolant Pump Outlet Temperature°CLesen
Engine Auxiliary Coolant Temperature°CLesen
Engine Turbocharger 1 Turbine Intake Temperature°CLesen
Engine Turbocharger 2 Turbine Intake Temperature°CLesen
Engine Auxiliary Coolant PressurebarLesen
Ambient Conditions 2 Specific Humidityg/kgLesen
Engine Turbocharger 2 SpeedrpmLesen
Engine Turbocharger 3 SpeedrpmLesen
Trip Engine Running TimehLesen
Trip Idle TimehLesen
Estimated Percent Fan Speed%Lesen
Engine Turbocharger 1 SpeedrpmLesen
Nominal Friction - Percent Torque%Lesen
Engine's Desired Operating SpeedrpmLesen
Intake Manifold Pre-combustion Air Temperature°CLesen
Aftertreatment 1 Diesel Exhaust Fluid Tank Level%Lesen
Aftertreatment 1 Diesel Exhaust Fluid Tank Temperature°CLesen
Aftertreatment 1 Intake NOxppmLesen
Aftertreatment 1 Outlet NOxppmLesen
Aftertreatment 1 Diesel Exhaust Fluid Actual Dosing Quantityg/hLesen
Aftertreatment 1 Diesel Exhaust Fluid Doser Absolute PressurebarLesen
Aftertreatment 1 SCR Dosing Air Assist ValveLesen
Aftertreatment 1 Diesel Exhaust Fluid Dosing Requested Quantityg/hLesen
Aftertreatment 1 SCR Catalyst Intake Gas Temperature°CLesen
Aftertreatment 1 SCR Catalyst Outlet Gas Temperature°CLesen
Aftertreatment 2 Intake NOxppmLesen
Aftertreatment 2 Outlet NOxppmLesen
Aftertreatment 2 Diesel Exhaust Fluid Actual Dosing QuantityLesen
Aftertreatment 2 Diesel Exhaust Fluid Dosing Absolute PressurebarLesen
Aftertreatment 2 SCR Dosing Air Assist ValveLesen
Humidity Derate PercentageLesen
Volvo Penta: Number of EIO ActivationsLesen
Volvo Penta: Accumulated EIO TimeLesen
Volvo Penta: Time Left of EIO OperationLesen
HATZ: Remaining Service HoursLesen
DRH Value 1Lesen
DRH Value 2Lesen
DRH Value 3Lesen
DRH Value 4Lesen
DRH Value 5Lesen
Aftertreatment 1 Diesel Oxidation Catalyst Intake TemperatureLesen
DRH Value 6Lesen
DRH Value 7Lesen
DRH Value 8Lesen
DRH Value 9Lesen
DRH Value 10Lesen
DRH Value 11Lesen
DRH Value 12Lesen
DRH Value 13Lesen
DRH Value 14Lesen
DRH Value 15Lesen
Isuzu: Escape Mode Enable FlagLesen
Isuzu: Inducement LevelLesen
Isuzu: UREA Tank LevelLesen
Isuzu: UREA Tank Level IndicatorLesen
Isuzu: Level Indicator (Amber) ActionLesen
Isuzu: DPF Amber Lamp ModeLesen
Isuzu: Exhaust System LampLesen
Isuzu: DPF Green Lamp ModeLesen
Isuzu: NO POWER LampLesen
Isuzu: Output LimitationLesen
FPT Stage V FlagsLesen
FPT Stage V: DEF Technical FailureLesen
FPT Stage V: DEF QualityLesen
FPT Stage V: DEF LevelLesen
FPT Stage V: Fuel Filter Heater StatusLesen
FPT Stage V: Low Idle Increase DesiredLesen
Scania: DPF Regeneration Countdown TimerLesen
Scania: Urea Level Inducement StateLesen
Scania: Emission-OBD Inducement StateLesen
Scania: Emission-OBD Inducement Failure ReasonLesen
John Deere STAGE V: Engine DPF Regeneration StateLesen
Aftertreatment 1 Diesel Particulate Filter Ash Load PercentLesen
Aftertreatment Diesel Particulate Filter StatusLesen
Aftertreatment 1 Diesel Exhaust Fluid ConcentrationLesen
Engine Requested Fuel Valve 1 PositionLesen
Engine Oil Priming StateLesen
Fuel Pump Primer StatusLesen
Sensor Supply Voltage 1Lesen
Sensor Supply Voltage 2Lesen
Accelerator Pedal Position 2Lesen
DPF Active Regen Inhibited Due to Temporary System LockoutLesen
DPF Active Regen Inhibited Due to Permanent System LockoutLesen
Aftertreatment Ambient Air TemperatureLesen
Aftertreatment Thermal Management StatusLesen
Aftertreatment Engine Speed Increase RequestLesen
Aftertreatment Engine Load RequestLesen
Feedback Engine Fueling StateLesen
Engine Fueling Inhibit AllowedLesen
Engine Controlled Shutdown RequestLesen
Engine Oil Pre-Heated StateLesen
Engine Ventilation StateLesen
Rail Pressure (Jichai)Lesen
DAVR Generator Voltage L1L2VLesen
DAVR Generator Frequency L1HzLesen
DAVR Generator Current L1ALesen
DAVR Generator Excitation Field CurrentLesen
DAVR Generator Total Reactive PowerkvarLesen
DAVR Generator Overall Power FactorLesen
DAVR Generator Overall Power Factor LaggingLesen
DAVR Generator Total Active PowerkWLesen
DAVR Generator Total Apparent PowerkVALesen
DAVR Pt100 #1°CLesen
DAVR Pt100 #2°CLesen
DAVR Pt100 #3°CLesen
DAVR Trip AlarmLesen
DVC 550 Pt100 #1Lesen
DVC 550 Pt100 #2Lesen
DVC 550 Pt100 #3Lesen
DVC 550 Pt100 #4Lesen
DVC 550 Pt100 #5Lesen
Total Active Power (GEN + MAINS + SOLAR + BATTERY)Lesen
Available GENSET PowerLesen
Total Nominal GENSET PowerLesen
Total GENSET PowerLesen
Total Reactive Power (GEN + MAINS + SOLAR + BATTERY)Lesen
Number of Gensets in ApplicationLesen
Plant TypeLesen
Load-dependent Stop, Active Set-PointLesen
Load-dependent Start, Active Set-PointLesen
Nominal Power ID 1Lesen
Nominal Power ID 2Lesen
Nominal Power ID 3Lesen
Nominal Power ID 4Lesen
Nominal Power ID 5Lesen
Nominal Power ID 6Lesen
Nominal Power ID 7Lesen
Nominal Power ID 8Lesen
Nominal Power ID 9Lesen
Nominal Power ID 10Lesen
Nominal Power ID 11Lesen
Nominal Power ID 12Lesen
Nominal Power ID 13Lesen
Nominal Power ID 14Lesen
Nominal Power ID 15Lesen
Nominal Power ID 16Lesen
Active Power ID 1Lesen
Active Power ID 2Lesen
Active Power ID 3Lesen
Active Power ID 4Lesen
Active Power ID 5Lesen
Active Power ID 6Lesen
Active Power ID 7Lesen
Active Power ID 8Lesen
Active Power ID 9Lesen
Active Power ID 10Lesen
Active Power ID 11Lesen
Active Power ID 12Lesen
Active Power ID 13Lesen
Active Power ID 14Lesen
Active Power ID 15Lesen
Active Power ID 16Lesen
Reactive Power ID 1Lesen
Reactive Power ID 2Lesen
Reactive Power ID 3Lesen
Reactive Power ID 4Lesen
Reactive Power ID 5Lesen
Reactive Power ID 6Lesen
Reactive Power ID 7Lesen
Reactive Power ID 8Lesen
Reactive Power ID 9Lesen
Reactive Power ID 10Lesen
Reactive Power ID 11Lesen
Reactive Power ID 12Lesen
Reactive Power ID 13Lesen
Reactive Power ID 14Lesen
Reactive Power ID 15Lesen
Reactive Power ID 16Lesen
Priority of GensetLesen
Active Power ID 17Lesen
Active Power ID 18Lesen
Active Power ID 19Lesen
Active Power ID 20Lesen
Reactive Power ID 17Lesen
Reactive Power ID 18Lesen
Reactive Power ID 19Lesen
Reactive Power ID 20Lesen
Active Power ID 17 (2nd Listing)Lesen
Active Power ID 18 (2nd Listing)Lesen
Active Power ID 19 (2nd Listing)Lesen
Active Power ID 20 (2nd Listing)Lesen
Active Power ID 21Lesen
Active Power ID 22Lesen
Active Power ID 23Lesen
Active Power ID 24Lesen
Active Power ID 25Lesen
Active Power ID 26Lesen
Active Power ID 27Lesen
Active Power ID 28Lesen
Active Power ID 29Lesen
Active Power ID 30Lesen
Active Power ID 31Lesen
Active Power ID 32Lesen
Reactive Power ID 17 (2nd Listing)Lesen
Reactive Power ID 18 (2nd Listing)Lesen
Reactive Power ID 19 (2nd Listing)Lesen
Reactive Power ID 20 (2nd Listing)Lesen
Reactive Power ID 21Lesen
Reactive Power ID 22Lesen
Reactive Power ID 23Lesen
Reactive Power ID 24Lesen
Reactive Power ID 25Lesen
Reactive Power ID 26Lesen
Reactive Power ID 27Lesen
Reactive Power ID 28Lesen
Reactive Power ID 29Lesen
Reactive Power ID 30Lesen
Reactive Power ID 31Lesen
Reactive Power ID 32Lesen
Active Power ID 33Lesen
Active Power ID 34Lesen
Active Power ID 35Lesen
Active Power ID 36Lesen
Active Power ID 37Lesen
Active Power ID 38Lesen
Active Power ID 39Lesen
Active Power ID 40Lesen
Reactive Power ID 33Lesen
Reactive Power ID 34Lesen
Reactive Power ID 35Lesen
Reactive Power ID 36Lesen
Reactive Power ID 37Lesen
Reactive Power ID 38Lesen
Reactive Power ID 39Lesen
Reactive Power ID 40Lesen
Plant Mode Mains 17Lesen
Plant Mode Mains 18Lesen
Plant Mode Mains 19Lesen
Plant Mode Mains 20Lesen
Plant Mode Mains 21Lesen
Plant Mode Mains 22Lesen
Plant Mode Mains 23Lesen
Plant Mode Mains 24Lesen
Plant Mode Mains 25Lesen
Plant Mode Mains 26Lesen
Plant Mode Mains 27Lesen
Plant Mode Mains 28Lesen
Plant Mode Mains 29Lesen
Plant Mode Mains 30Lesen
Plant Mode Mains 31Lesen
Plant Mode Mains 32Lesen
Bus Power Mains 17Lesen
Bus Power Mains 18Lesen
Bus Power Mains 19Lesen
Bus Power Mains 20Lesen
Bus Power Mains 21Lesen
Bus Power Mains 22Lesen
Bus Power Mains 23Lesen
Bus Power Mains 24Lesen
Bus Power Mains 25Lesen
Bus Power Mains 26Lesen
Bus Power Mains 27Lesen
Bus Power Mains 28Lesen
Bus Power Mains 29Lesen
Bus Power Mains 30Lesen
Bus Power Mains 31Lesen
Bus Power Mains 32Lesen
Nominal Power ID 17Lesen
Nominal Power ID 18Lesen
Nominal Power ID 19Lesen
Nominal Power ID 20Lesen
Nominal Power ID 21Lesen
Nominal Power ID 22Lesen
Nominal Power ID 23Lesen
Nominal Power ID 24Lesen
Nominal Power ID 25Lesen
Nominal Power ID 26Lesen
Nominal Power ID 27Lesen
Nominal Power ID 28Lesen
Nominal Power ID 29Lesen
Nominal Power ID 30Lesen
Nominal Power ID 31Lesen
Nominal Power ID 32Lesen
LD Start Calc: Next GEN to StartLesen
LD Stop Calc: Next GEN to StopLesen
GEN: LDStart Power Available Before Start NextLesen
GEN: LDStop Available Active PowerLesen
GENSET Available Active PowerLesen
GENSET Available Apparent PowerLesen
Total PV Active PowerLesen
Total PV Reactive PowerLesen
Total Battery Active PowerLesen
Total Battery Reactive PowerLesen
Cos Phi from PMS ID 1Lesen
Cos Phi from PMS ID 2Lesen
Cos Phi from PMS ID 3Lesen
Cos Phi from PMS ID 4Lesen
Cos Phi from PMS ID 5Lesen
Cos Phi from PMS ID 6Lesen
Cos Phi from PMS ID 7Lesen
Cos Phi from PMS ID 8Lesen
Cos Phi from PMS ID 9Lesen
Cos Phi from PMS ID 10Lesen
Cos Phi from PMS ID 11Lesen
Cos Phi from PMS ID 12Lesen
Cos Phi from PMS ID 13Lesen
Cos Phi from PMS ID 14Lesen
Cos Phi from PMS ID 15Lesen
Cos Phi from PMS ID 16Lesen
Cos Phi from PMS ID 17Lesen
Cos Phi from PMS ID 18Lesen
Cos Phi from PMS ID 19Lesen
Cos Phi from PMS ID 20Lesen
Cos Phi from PMS ID 21Lesen
Cos Phi from PMS ID 22Lesen
Cos Phi from PMS ID 23Lesen
Cos Phi from PMS ID 24Lesen
Cos Phi from PMS ID 25Lesen
Cos Phi from PMS ID 26Lesen
Cos Phi from PMS ID 27Lesen
Cos Phi from PMS ID 28Lesen
Cos Phi from PMS ID 29Lesen
Cos Phi from PMS ID 30Lesen
Cos Phi from PMS ID 31Lesen
Cos Phi from PMS ID 32Lesen
Apparent Power ID 1Lesen
Apparent Power ID 2Lesen
Apparent Power ID 3Lesen
Apparent Power ID 4Lesen
Apparent Power ID 5Lesen
Apparent Power ID 6Lesen
Apparent Power ID 7Lesen
Apparent Power ID 8Lesen
Apparent Power ID 9Lesen
Apparent Power ID 10Lesen
Apparent Power ID 11Lesen
Apparent Power ID 12Lesen
Apparent Power ID 13Lesen
Apparent Power ID 14Lesen
Apparent Power ID 15Lesen
Apparent Power ID 16Lesen
Apparent Power ID 17Lesen
Apparent Power ID 18Lesen
Apparent Power ID 19Lesen
Apparent Power ID 20Lesen
Apparent Power ID 21Lesen
Apparent Power ID 22Lesen
Apparent Power ID 23Lesen
Apparent Power ID 24Lesen
Apparent Power ID 25Lesen
Apparent Power ID 26Lesen
Apparent Power ID 27Lesen
Apparent Power ID 28Lesen
Apparent Power ID 29Lesen
Apparent Power ID 30Lesen
Apparent Power ID 31Lesen
Apparent Power ID 32Lesen
GB Position ONLesen
MB Position ONLesen
RunningLesen
Generator voltage/frequency OKLesen
Mains Failure (Single DG)Lesen
BLOCK ModeLesen
No Regulation ModeLesen
MANUAL ModeLesen
AUTO ModeLesen
TEST ModeLesen
GB Position OFFLesen
MB Position OFFLesen
IslandLesen
Automatic Mains Failure (AMF)Lesen
Peak ShavingLesen
Fixed PowerLesen
Mains Power Export (MPE)Lesen
Load Takeover (LTO)Lesen
Power ManagementLesen
Any Alarm on PMS ID1Lesen
Any Alarm on PMS ID2Lesen
Any Alarm on PMS ID3Lesen
Any Alarm on PMS ID4Lesen
Any Alarm on PMS ID5Lesen
Any Alarm on PMS ID6Lesen
Any Alarm on PMS ID7Lesen
Any Alarm on PMS ID8Lesen
Any Alarm Mains (Mains Command Unit)Lesen
Battery TestLesen
Ready AUTO-start GEN1Lesen
Ready AUTO-start GEN2Lesen
Ready AUTO-start GEN3Lesen
Ready AUTO-start GEN4Lesen
Ready AUTO-start GEN5Lesen
Ready AUTO-start GEN6Lesen
Ready AUTO-start GEN7Lesen
Ready AUTO-start GEN8Lesen
Mains Sync. InhibitLesen
Any Mains Sync. InhibitLesen
3rd Party Loadshare StatusLesen
3rd Party Digital Loadshare ProtocolLesen
3rd Party Loadshare Active Power SetpointLesen
3rd Party Loadshare Reactive Power SetpointLesen
3rd Party Loadshare Number of UnitsLesen
3rd Party Loadshare Number of Active UnitsLesen
Digital Input 39Lesen
Digital Input 40Lesen
Digital Input 41Lesen
Digital Input 42Lesen
Digital Input 43Lesen
Digital Input 44Lesen
Digital Input 45Lesen
Digital Input 46Lesen
Dplus Input 7Lesen
Emergency Stop Input 4Lesen
Binary in 23Lesen
Binary in 22Lesen
Binary in 21Lesen
Binary in 20Lesen
CIO 116 No. 1. Input 10Lesen
CIO 116 No. 1. Input 11Lesen
CIO 116 No. 1. Input 12Lesen
CIO 116 No. 1. Input 13Lesen
CIO 116 No. 1. Input 14Lesen
CIO 116 No. 1. Input 15Lesen
CIO 116 No. 1. Input 16Lesen
CIO 116 No. 1. Input 17Lesen
CIO 116 No. 1. Input 19Lesen
CIO 116 No. 1. Input 20Lesen
CIO 116 No. 1. Input 21Lesen
CIO 116 No. 1. Input 22Lesen
CIO 116 No. 1. Input 23Lesen
CIO 116 No. 1. Input 24Lesen
CIO 116 No. 1. Input 25Lesen
CIO 116 No. 1. Input 26Lesen
CIO 116 No. 2. Input 10Lesen
CIO 116 No. 2. Input 11Lesen
CIO 116 No. 2. Input 12Lesen
CIO 116 No. 2. Input 13Lesen
CIO 116 No. 2. Input 14Lesen
CIO 116 No. 2. Input 15Lesen
CIO 116 No. 2. Input 16Lesen
CIO 116 No. 2. Input 17Lesen
CIO 116 No. 2. Input 19Lesen
CIO 116 No. 2. Input 20Lesen
CIO 116 No. 2. Input 21Lesen
CIO 116 No. 2. Input 22Lesen
CIO 116 No. 2. Input 23Lesen
CIO 116 No. 2. Input 24Lesen
CIO 116 No. 2. Input 25Lesen
CIO 116 No. 2. Input 26Lesen
CIO 116 No. 3. Input 10Lesen
CIO 116 No. 3. Input 11Lesen
CIO 116 No. 3. Input 12Lesen
CIO 116 No. 3. Input 13Lesen
CIO 116 No. 3. Input 14Lesen
CIO 116 No. 3. Input 15Lesen
CIO 116 No. 3. Input 16Lesen
CIO 116 No. 3. Input 17Lesen
CIO 116 No. 3. Input 19Lesen
CIO 116 No. 3. Input 20Lesen
CIO 116 No. 3. Input 21Lesen
CIO 116 No. 3. Input 22Lesen
CIO 116 No. 3. Input 23Lesen
CIO 116 No. 3. Input 24Lesen
CIO 116 No. 3. Input 25Lesen
CIO 116 No. 3. Input 26Lesen
CIO 308 No. 1. Input 8Lesen
CIO 308 No. 1. Input 11Lesen
CIO 308 No. 1. Input 14Lesen
CIO 308 No. 1. Input 17Lesen
CIO 308 No. 1. Input 20Lesen
CIO 308 No. 1. Input 23Lesen
CIO 308 No. 1. Input 26Lesen
CIO 308 No. 1. Input 29Lesen
CIO 308 No. 2. Input 8Lesen
CIO 308 No. 2. Input 11Lesen
CIO 308 No. 2. Input 14Lesen
CIO 308 No. 2. Input 17Lesen
CIO 308 No. 2. Input 20Lesen
CIO 308 No. 2. Input 23Lesen
CIO 308 No. 2. Input 26Lesen
CIO 308 No. 2. Input 29Lesen
CIO 308 No. 3. Input 8Lesen
CIO 308 No. 3. Input 11Lesen
CIO 308 No. 3. Input 14Lesen
CIO 308 No. 3. Input 17Lesen
CIO 308 No. 3. Input 20Lesen
CIO 308 No. 3. Input 23Lesen
CIO 308 No. 3. Input 26Lesen
CIO 308 No. 3. Input 29Lesen
Relay 5Lesen
Relay 6Lesen
Relay 9Lesen
Relay 10Lesen
Relay 11Lesen
Relay 12Lesen
Relay 13Lesen
Relay 14Lesen
Relay 15Lesen
Relay 16Lesen
Relay 17Lesen
Relay 18Lesen
CIO 208 No. 1. Output 9Lesen
CIO 208 No. 1. Output 11Lesen
CIO 208 No. 1. Output 13Lesen
CIO 208 No. 1. Output 15Lesen
CIO 208 No. 1. Output 18Lesen
CIO 208 No. 1. Output 21Lesen
CIO 208 No. 1. Output 24Lesen
CIO 208 No. 1. Output 27Lesen
CIO 208 No. 2. Output 9Lesen
CIO 208 No. 2. Output 11Lesen
CIO 208 No. 2. Output 13Lesen
CIO 208 No. 2. Output 15Lesen
CIO 208 No. 2. Output 18Lesen
CIO 208 No. 2. Output 21Lesen
CIO 208 No. 2. Output 24Lesen
CIO 208 No. 2. Output 27Lesen
CIO 208 No. 3. Output 9Lesen
CIO 208 No. 3. Output 11Lesen
CIO 208 No. 3. Output 13Lesen
CIO 208 No. 3. Output 15Lesen
CIO 208 No. 3. Output 18Lesen
CIO 208 No. 3. Output 21Lesen
CIO 208 No. 3. Output 24Lesen
CIO 208 No. 3. Output 27Lesen
CIO 116 No. 1 Conf. Status OutLesen
CIO 116 No. 2 Conf. Status OutLesen
CIO 116 No. 3 Conf. Status OutLesen
CIO 208 No. 1 Conf. Status OutLesen
CIO 208 No. 2 Conf. Status OutLesen
CIO 208 No. 3 Conf. Status OutLesen
CIO 308 No. 1 Conf. Status OutLesen
CIO 308 No. 2 Conf. Status OutLesen
CIO 308 No. 3 Conf. Status OutLesen
Power Derate Function ActiveLesen
Mains Power Transducer Used or Mains Power 4th CT UsedLesen
Mains Q Transducer Used or Mains Q 4th CT UsedLesen
Plant States: Mains Failure (Single DG) to Dry ModeLesen
Plant States: Ready to Autostart (+5)Lesen
Modes: BLOCK Mode to AMF ActiveLesen
EIC States: DPF Lamp OFF to After Run StatusLesen
EIC States: MTU Limit Lamp OFF (+15)Lesen
EIC States: MTU Limit Lamp ON Blink 2Hz to Force PurgeLesen
EIC States: M-Logic Command: Reset Trip Fuel (+10)Lesen
JCB: Dosing Module StatusLesen
JCB: Actual Reducing Agent QuantityLesen
JCB: Aftertreatment LampLesen
JCB: Refresh Status ByteLesen
JCB: SCR MonitorLesen
JCB: Successful Running RefreshesLesen
JCB: Successful Stationary RefreshesLesen
JCB: Engine RatingLesen
Emergency Shutdown IndicationLesen
EIC States: HATZ: Engine Running (+13)Lesen
Relay States: Relay 5-18Lesen
Relay States: Run. Coil Relay to Stop Coil RelayLesen
Digital Inputs: CIO 116 No. 1. Input 10-26Lesen
Digital Inputs: CIO 116 No. 2. Input 10-26Lesen
Digital Inputs: CIO 116 No. 3. Input 10-26Lesen
Digital Inputs: Digital Input 39 to Digital Input 50Lesen
Digital Inputs: CIO 308 No. 1. Input 8 (+15)Lesen
Digital Inputs: CIO 308 No. 3. Input 8-29Lesen
Digital Outputs: External Digital Output 1/CIO 208-1 (+15)Lesen
Digital Outputs: CIO 208-3 Digital Output 9-27Lesen
Digital Outputs: CIO 116 No. 1 Conf. Status Out (+8)Lesen
Virtual Events 1-16Lesen
Virtual Events 17-32Lesen
Virtual Events 33-48Lesen
Virtual Events 49-64Lesen
Virtual Events 65-80Lesen
Virtual Events 81-96Lesen
Flipflop Output 1-16Lesen
Virtual Toggle Status 1-16Lesen
Virtual Toggle Status 17-32Lesen
M-Logic States: M-Logic Output Evaluation Line 1-16Lesen
M-Logic States: M-Logic Output Evaluation Line 17-32Lesen
M-Logic States: M-Logic Output Evaluation Line 33-48Lesen
M-Logic States: M-Logic Output Evaluation Line 49-64Lesen
M-Logic States: M-Logic Output Evaluation Line 65-80Lesen
M-Logic States: M-Logic Output Evaluation AOP2 1 LED 1 Line (+7)Lesen
M-Logic States: M-Logic Output Evaluation AOP2 1 LED 3 (+15)Lesen
M-Logic States: M-Logic Output Evaluation AOP2 1 LED 9 (+15)Lesen
M-Logic States: M-Logic Output Evaluation AOP2 1 LED 14 (+15)Lesen
M-Logic States: M-Logic Output Evaluation AOP2 2 LED 3 (+15)Lesen
M-Logic States: M-Logic Output Evaluation AOP2 2 LED 9 (+15)Lesen
M-Logic States: M-Logic Output Evaluation AOP2 2 LED 14 (+7)Lesen
M-Logic States: M-Logic Output Evaluation AOP2 1 Button 1 (+15)Lesen
M-Logic States: M-Logic Output Evaluation AOP2 1 Buzzer 1 (+5)Lesen
M-Logic States: M-Logic Output Evaluation AOP2 1 Relay 1 (+5)Lesen
Oneshot Output 1-16Lesen
Control Command Address 0Lesen
Control Command Address 1Lesen
Control Command Address 2Lesen
Control Command Address 3Lesen
Control Command Address 4Lesen
Control Command Address 5Lesen
Control Command Address 6Lesen
Control Command Address 7Lesen
Control Command Address 8Lesen
Control Command Address 9Lesen
Control Command Address 10Lesen
Control Command Address 11Lesen
Control Command Address 12Lesen
Control Command Address 13Lesen
M-Logic Extended Timer Alarm 1 ValueLesen
M-Logic Extended Timer Alarm 2 ValueLesen
M-Logic Extended Timer Alarm 3 ValueLesen
M-Logic Extended Timer Alarm 4 ValueLesen
Alarms: Synchronising Window to Phase Seq. Failure BLesen
Alarms: GOVERNOR Regulation Fail to AVR Regulation FailLesen
Alarms: Digital Alarm Input 39-50Lesen
Alarms: Digital Alarm Input 4 (Emergency Stop)Lesen
Alarms: M-Logic Alarm 1 to M-Logic Extended Alarm 4Lesen
Alarms: Multi Input Terminal 20.1 to Start FailureLesen
Alarms: Stop Failure to W. Fail. 23Lesen
Alarms: Service Timer 1 to Fuel Pump LogicLesen
Alarms: Ext. Analogue in. 1.1/CIO 308-1 Analogue Input 8.1 (+10)Lesen
Alarms: Ext. Analogue in. 6.2/CIO 308-1 Analogue Input 23.2 (+4)Lesen
Alarms: External Digital Input 1/CIO 116-1 Digital Input (+15)Lesen
Alarms: Fan A Failure to Delta Analogue 6 - Fail 2Lesen
Alarms: Fail Class: Block Start + Breaker on (+8)Lesen
Alarms: Avg L-L AC RMS Voltage High 1 (+13)Lesen
Alarms: Delta Analogue 7 - Fail 1 to Delta Analogue 9 - Fail 2Lesen
Alarms: CIO 308-2 Analogue Input 8.1 (+15)Lesen
Alarms: CIO 308-3 Analogue Input 8.1 (+15)Lesen
Alarms: CIO 116-2 Digital Input 10-26Lesen
Alarms: CIO 116-3 Digital Input 10-26Lesen
Alarms: M-Logic Alarm 10-14Lesen
AC Alarms: G -P> 1 to G U< 3Lesen
AC Alarms: G f> 1 to BB f> 3Lesen
AC Alarms: BB f< 1 to G Q>Lesen
AC Alarms: Gen. Neg. Seq. I to BB Unbalance ULesen
AC Alarms: U and Q< 1 to G P Dep. Q>Lesen
AC Alarms: In> Inverse to BB U< 5Lesen
EIC Alarms: Communication Error to Cylinder Exhaust Difference 2Lesen
EIC Alarms: ECU Alarm Bit 49 to Yellow LampLesen
EIC Alarms: ECU Alarm Bit 33-48Lesen
EIC Alarms: ECU Alarm Bit 17-32Lesen
EIC Alarms: ECU Alarm Bit 1-16Lesen
EIC Alarms: Scania EMS 2 KWP2000 - Overreving (+15)Lesen
EIC Alarms: Scania EMS 2 KWP2000 - CAN-circuit Defect (+15)Lesen
EIC Alarms: Scania EMS 2 KWP2000 - Seal (+3)Lesen
Active Diagnostic Codes (DM1/SPN): LOW-WORD #1Lesen
Active Diagnostic Codes (DM1/SPN): LOW-WORD #2Lesen
Active Diagnostic Codes (DM1/SPN): LOW-WORD #3Lesen
Active Diagnostic Codes (DM1/SPN): LOW-WORD #4Lesen
Active Diagnostic Codes (DM1/SPN): LOW-WORD #5Lesen
Active Diagnostic Codes (DM1/SPN): LOW-WORD #6Lesen
Active Diagnostic Codes (DM1/SPN): LOW-WORD #7Lesen
Active Diagnostic Codes (DM1/SPN): LOW-WORD #8Lesen
Active Diagnostic Codes (DM1/SPN): LOW-WORD #9Lesen
Active Diagnostic Codes (DM1/SPN): LOW-WORD #10Lesen
Active Diagnostic Codes (DM1/SPN): HIGH-WORD #1Lesen
Active Diagnostic Codes (DM1/SPN): HIGH-WORD #2Lesen
Active Diagnostic Codes (DM1/SPN): HIGH-WORD #3Lesen
Active Diagnostic Codes (DM1/SPN): HIGH-WORD #4Lesen
Active Diagnostic Codes (DM1/SPN): HIGH-WORD #5Lesen
Active Diagnostic Codes (DM1/SPN): HIGH-WORD #6Lesen
Active Diagnostic Codes (DM1/SPN): HIGH-WORD #7Lesen
Active Diagnostic Codes (DM1/SPN): HIGH-WORD #8Lesen
Active Diagnostic Codes (DM1/SPN): HIGH-WORD #9Lesen
Active Diagnostic Codes (DM1/SPN): HIGH-WORD #10Lesen
Active Fail Mode Identifier (DM1/FMI): #1Lesen
Active Fail Mode Identifier (DM1/FMI): #2Lesen
Active Fail Mode Identifier (DM1/FMI): #3Lesen
Active Fail Mode Identifier (DM1/FMI): #4Lesen
Active Fail Mode Identifier (DM1/FMI): #5Lesen
Active Fail Mode Identifier (DM1/FMI): #6Lesen
Active Fail Mode Identifier (DM1/FMI): #7Lesen
Active Fail Mode Identifier (DM1/FMI): #8Lesen
Active Fail Mode Identifier (DM1/FMI): #9Lesen
Active Fail Mode Identifier (DM1/FMI): #10Lesen
Active Occurrence Counter (DM1/OC): #1Lesen
Active Occurrence Counter (DM1/OC): #2Lesen
Active Occurrence Counter (DM1/OC): #3Lesen
Active Occurrence Counter (DM1/OC): #4Lesen
Active Occurrence Counter (DM1/OC): #5Lesen
Active Occurrence Counter (DM1/OC): #6Lesen
Active Occurrence Counter (DM1/OC): #7Lesen
Active Occurrence Counter (DM1/OC): #8Lesen
Active Occurrence Counter (DM1/OC): #9Lesen
Active Occurrence Counter (DM1/OC): #10Lesen
Active Diagnostic Codes (DM2/SPN): LOW-WORD #1Lesen
Active Diagnostic Codes (DM2/SPN): LOW-WORD #2Lesen
Active Diagnostic Codes (DM2/SPN): LOW-WORD #3Lesen
Active Diagnostic Codes (DM2/SPN): LOW-WORD #4Lesen
Active Diagnostic Codes (DM2/SPN): LOW-WORD #5Lesen
Active Diagnostic Codes (DM2/SPN): LOW-WORD #6Lesen
Active Diagnostic Codes (DM2/SPN): LOW-WORD #7Lesen
Active Diagnostic Codes (DM2/SPN): LOW-WORD #8Lesen
Active Diagnostic Codes (DM2/SPN): LOW-WORD #9Lesen
Active Diagnostic Codes (DM2/SPN): LOW-WORD #10Lesen
Active Diagnostic Codes (DM2/SPN): HIGH-WORD #1Lesen
Active Diagnostic Codes (DM2/SPN): HIGH-WORD #2Lesen
Active Diagnostic Codes (DM2/SPN): HIGH-WORD #3Lesen
Active Diagnostic Codes (DM2/SPN): HIGH-WORD #4Lesen
Active Diagnostic Codes (DM2/SPN): HIGH-WORD #5Lesen
Active Diagnostic Codes (DM2/SPN): HIGH-WORD #6Lesen
Active Diagnostic Codes (DM2/SPN): HIGH-WORD #7Lesen
Active Diagnostic Codes (DM2/SPN): HIGH-WORD #8Lesen
Active Diagnostic Codes (DM2/SPN): HIGH-WORD #9Lesen
Active Diagnostic Codes (DM2/SPN): HIGH-WORD #10Lesen
Active Fail Mode Identifier (DM2/FMI): #1Lesen
Active Fail Mode Identifier (DM2/FMI): #2Lesen
Active Fail Mode Identifier (DM2/FMI): #3Lesen
Active Fail Mode Identifier (DM2/FMI): #4Lesen
Active Fail Mode Identifier (DM2/FMI): #5Lesen
Active Fail Mode Identifier (DM2/FMI): #6Lesen
Active Fail Mode Identifier (DM2/FMI): #7Lesen
Active Fail Mode Identifier (DM2/FMI): #8Lesen
Active Fail Mode Identifier (DM2/FMI): #9Lesen
Active Fail Mode Identifier (DM2/FMI): #10Lesen
Active Occurrence Counter (DM2/OC): #1Lesen
Active Occurrence Counter (DM2/OC): #2Lesen
Active Occurrence Counter (DM2/OC): #3Lesen
Active Occurrence Counter (DM2/OC): #4Lesen
Active Occurrence Counter (DM2/OC): #5Lesen
Active Occurrence Counter (DM2/OC): #6Lesen
Active Occurrence Counter (DM2/OC): #7Lesen
Active Occurrence Counter (DM2/OC): #8Lesen
Active Occurrence Counter (DM2/OC): #9Lesen
Active Occurrence Counter (DM2/OC): #10Lesen
PM Alarms: CAN 1 Missing ID 1-15Lesen
PM Alarms: CAN 1 Missing ID 16 to CAN 2 Missing ID 14Lesen
PM Alarms: CAN 2 Missing ID 16 to Communication Error ExtLesen
PM Alarms: Ext. Modbus Comm. Error, CAN ID 1-15Lesen
PM Alarms: Ext. Modbus Comm. Error, CAN ID 16Lesen
PM Alarms: CAN 1 Missing ID 1-16Lesen
PM Alarms: CAN 1 Missing ID 17-32Lesen
PM Alarms: CAN 1 Missing ID 33-40Lesen
PM Alarms: CAN 2 Missing ID 1-16Lesen
PM Alarms: CAN 2 Missing ID 17-32Lesen
PM Alarms: CAN 2 Missing ID 33-40Lesen
PM Alarms: Ext. Modbus Comm. Error, CAN ID 17-32Lesen
PM Alarms: Ext. Modbus Comm. Error, CAN ID 33-40Lesen
DAVR Alarms: Digital AVR Communication Error to Digital AVR TripLesen
Active Alarm List Entry 1Lesen

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Anzahl Anlagen (optional)

Anwendungsfälle

  • Generatorleistung, Spannung, Strom und Frequenz des BHKW auf einem Dashboard neben Wärme- und Klimadaten des Gewächshauses zeigen.
  • Zähler der abgegebenen kWh und Betriebsstunden 365 Tage speichern, für Produktionsberichte und Wartungsplanung.
  • Eine E-Mail erhalten, wenn eine Alarmgruppe nicht 0 ist, etwa bei Generatorschutz, Motorstörung oder Schalterfehler.
  • Kühlwassertemperatur, Öldruck und Drehzahl überwachen und alarmieren, wenn sie ihren normalen Bereich verlassen.
  • Leistungssollwert oder Betriebsart im Portal ändern, wenn das BHKW dem Wärmebedarf oder den Energiepreisen folgen soll.

Installation

  1. Verbinden Sie RS-485-Port 1 der Steuerung (Klemme 33 = A, 35 = B, 34 = GND) mit dem RS485-Anschluss des ModbusCloud Gateways und setzen Sie an beiden Busenden 120 Ohm.

  2. Prüfen Sie Parameter 7511 und 7512: Standard sind ID 3 und 9600 Baud. Port 2 (Klemmen 36 bis 38) nutzt 7521 und 7522.

  3. Legen Sie in ModbusCloud ein Modbus-Gerät (RTU) mit gleicher ID und Geschwindigkeit, 8 Datenbits, keiner Parität und 1 Stoppbit an und importieren Sie diese Vorlage.

  4. Prüfen Sie, ob Generatorspannung und Frequenz ankommen, und vergleichen Sie die Betriebsstunden mit der Anzeige der Steuerung.

  5. Setzen Sie vor dem Schreiben von Sollwerten die passenden Parameter 7501 bis 7505 auf ON, sonst ignoriert die Steuerung sie.

Zu beachten

Die Steuerung antwortet nicht. Was sollte ich prüfen?

Prüfen Sie ID und Geschwindigkeit in Parameter 7511 und 7512 (Standard ID 3, 9600 Baud) und nutzen Sie dieselben Werte in ModbusCloud mit 8 Datenbits, keiner Parität und 1 Stoppbit. Viele Tools beginnen bei ID 1, die AGC 150 steht auf 3. Kommt nichts zurück, A und B tauschen und die 120-Ohm-Widerstände an beiden Busenden prüfen.

Warum stimmen Temperaturen oder Drücke nicht?

Motorwerte folgen der Einheiteneinstellung der Steuerung. Die Vorlage zeigt sie in °C und bar. Steht die Steuerung auf Fahrenheit und psi, kommen die Werte in diesen Einheiten an. Stellen Sie die Einstellung zurück oder lesen Sie die Werte in diesen Einheiten.

Mein Leistungssollwert wirkt nicht. Woran liegt das?

Ein Sollwert wird nur genutzt, wenn sein Parameter auf ON steht: 7501 für Leistung, 7502 Frequenz, 7503 Spannung, 7504 Cos Phi und 7505 Blindleistung. Die Coils für externe Regelung schalten diese Parameter ebenfalls. Leistung ist ein Prozentwert der Nennleistung, Cos Phi läuft von 0,60 bis 1,00.

Wie schreibe ich einen Start- oder Stoppbefehl?

Schreiben Sie 1 auf die Coil Command: Remote Start oder Command: Remote Stop. In einem Befehlswort muss zusätzlich Bit 0 gesetzt sein, 3 bedeutet also Fernstart. Zurücklesen ergibt immer 0. Das Schreiben von Registern ist in ModbusCloud je Gateway aus, bis Sie es beantragen, und jeder Schreibbefehl wirkt sofort auf einen laufenden Motor.

Was bedeutet der Wert einer Alarmgruppe?

Jede Alarmgruppe enthält bis zu 16 Alarme, einen pro Bit. 0 heißt: kein Alarm in dieser Gruppe. Bei einem aktiven Alarm sehen Sie seinen Namen, bei mehreren addieren sich die Bitwerte. Eine Alarmregel "ungleich 0" je Gruppe ergibt eine E-Mail pro Gruppe.

Selbst sehen, wie es funktioniert?

Elektriker bei der Arbeit an einem offenen Verteilerschrank