The Itron electricity meter is a German end-consumer meter installed by EnBW. You can read the values with an IR sensor. The following script shows you the meter number, as well as the 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,Current 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,Phase angle I-L1/U-L1,deg,phase_angle_p1,1 1,7707010051070fff@1,Phase angle I-L2/I-L2,deg,phase_angle_p2,1 1,7707010051071aff@1,Phase angle 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,Energy Total,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 LT,KWh,Total_inNT,3 #


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