The Itron electricity meter is a German consumer meter manufactured by EnBW. It will be installed. You can read the values using an IR sensor. The following script will show you the meter number, consumption, and the Feed-in of a photovoltaic generator.
Logarex LK13BD
>D res=0 scnt=0 >B =>sensor53 r >F scnt+=1 switch scnt case 6 res=sml(1 0 300) res=sml(1 1 "2F3F210D0A") case 18 res=sml(1 1 "063035300D0A") case 20 res=sml(1 0 9600) case 200 scnt=0 ends >M 1 +1,3,o,0,9600,LK13BD,1 1,1.8.0(@1,meter reading,KWh,Total_in,3 #
Logarex LK13BE803xxx
>D >B =>sensor53 r >M 1 +1,3,o,16,9600,LK13BE,1 1.1-0:1.8.0*255(@1,total consumption,kWh,total,3 1.1-0:1.8.0*96(@1,consumption 1 day,kWh,total_1d,3 1.1-0:1.8.0*97(@1,consumption 7 days,kWh,total_7d,3 1.1-0:1.8.0*98(@1,consumption 30 days,kWh,total_30d,3 1,1-0:1.8.0*99(@1,Consumption 365 days,kWh,total_365d,3 1,1-0:16.7.0*255(@1,current consumption,W,current,0 1.1-0:2.8.0*255(@1,total feed-in,kWh,total_out,3 1,1-0:32.7.0*255(@1,Voltage L1,V,voltage_l1,1 1.1-0:52.7.0*255(@1,Voltage L2,V,voltage_l2,1 1,1-0:72.7.0*255(@1,Voltage L3,V,voltage_l3,1 1.1-0:31.7.0*255(@1,current L1,A, amperage_l1,1 1.1-0:51.7.0*255(@1,current L2,A, amperage_l2,1 1.1-0:71.7.0*255(@1,current L3,A, amperage_l3,1 1,1-0:81.7.1*255(@1,UL2 to UL1,deg,angle_ul2_ul1,0 1,1-0:81.7.2*255(@1,UL3 to UL1,deg,angle_ul3_ul1,0 1,1-0:81.7.4*255(@1,IL1 to UL1,deg,angle_il1_ul1,0 1,1-0:81.7.15*255(@1,IL2 to UL2,deg,angle_il2_ul2,0 1,1-0:81.7.26*255(@1,IL3 to UL3,deg,angle_il2_ul3,0 1.1-0:14.7.0*255(@1,Frequency,Hz,frequency,1 #
Logarex LK13BE
>D >B ->sensor53 r >M 1 +1,3,s,16,9600,LK13BE,1 1.77070100010800ff@1000,consumption,kWh,E_in,3 1,77070100020800ff@1000,Feed-in,kWh,E_out,3 1.77070100100700ff@1,actual power,W,Power,0 1,=h-- 1.77070100240700ff@1,Power L1,W,Power_L1_curr,0 1.77070100380700ff@1,Power L2,W,Power_L2_curr,0 1.770701004C0700ff@1,Power L3,W,Power_L3_curr,0 1.77070100200700ff@1,Voltage L1,V,Volt_L1_curr,1 1.77070100340700ff@1,Voltage L2,V,Volt_L2_curr,1 1.77070100480700ff@1,Voltage L3,V,Volt_L3_curr,1 1.770701001f0700ff@1,Amperage L1,A,Amperage_L1_curr,2 1.77070100330700ff@1,Amperage L2,A,Amperage_L2_curr,2 1.77070100470700ff@1,Amperage L3,A,Amperage_L3_curr,2 1.770701000e0700ff@1,Frequency,Hz,HZ,2 1.77070100510704ff@1,Phaseangle I-L1/U-L1,deg,phase_angle_p1,1 1.7707010051070fff@1,Phaseangle I-L2/I-L2,deg,phase_angle_p2,1 1.7707010051071aff@1,Phaseangle I-L3/I-L3,deg,phase_angle_p3,1 1.77070100510701ff@1,Phase angle U-L2/U-L1,deg,phase_angle_l2_l1,1 1.77070100510702ff@1,Phase angle U-L3/U-L1,deg,phase_angle_l3_l1,1 #
Logarex LK13BE (SML) (LK13BE904639)
>D >B =>sensor53 r =>sensor53 l25 >M 1 +1,3,s,0,9600,LK13BE,1,10,2F3F210D0A,063035310D0A 1.77070100010800ff@1000,Total energy,kWh,energy_sum,3 1.77070100010801ff@1000,energy tariff 1,kWh,energy_tarif1,3 1.77070100010802ff@1000, energy tariff 2, kWh, energy_tarif2.3 1,77070100020800ff@1000,Feed-in,kWh,energy_supply,3 1,=h -------------- 1.77070100100700ff@1,Power,W,power,16 1,=h -------------- 1.77070100600100ff@#,Server ID,,meter_number,0 #
Logarex LK13BO
>D res=0 scnt=0 >B =>sensor53 r >F scnt+=1 switch scnt case 6 res=sml(1 0 300) res=sml(1 1 "2F3F210D0A") case 18 res=sml(1 1 "063035300D0A") case 20 res=sml(1 0 9600) case 200 scnt=0 ends >M 1 +1,3,o,0,9600,LK13BO,1 1,1.8.0(@1,consumption,KWh,Total_in,3 1,1.8.1(@1,Consumption HT,KWh,Total_inHT,3 1,1.8.2(@1,Consumption NT,KWh,Total_inNT,3 #


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