840 FLOAT RD % THD, U L3N, based on U0 L3
842 FLOAT RD % THD, U L1L2, based on U0 L1L2
844 FLOAT RD % THD, U L2L3, based on U0 L2L3
846 FLOAT RD % THD, U L1L3, based on U0 L1L3
848 FLOAT RD V Voltage, real part U1 L1N
850 FLOAT RD V Voltage, real part U2 L2N
852 FLOAT RD V Voltage, real part U3 L3N
854 FLOAT RD V Voltage, imaginary part U L1N
856 FLOAT RD V Voltage, imaginary part U L2N
858 FLOAT RD V Voltage, imaginary part U L3N
860 FLOAT RD A Current I1 L1
862 FLOAT RD A Current I2 L2
864 FLOAT RD A Current I3 L3
866 FLOAT RD A Vector sum; IN=I1+I2+I3
868 FLOAT RD W Real power P1 L1N
870 FLOAT RD W Real power P2 L2N
872 FLOAT RD W Real power P3 L3N
874 FLOAT RD W Sum; Psum3=P1+P2+P3
876 FLOAT RD var Fund. reactive power Q1 L1N
878 FLOAT RD var Fund. reactive power Q2 L2N
880 FLOAT RD var Fund. reactive power Q3 L3N
882 FLOAT RD var Sum; Qsum3=Q1+Q2+Q3
884 FLOAT RD VA Apparent power S1 L1N
886 FLOAT RD VA Apparent power S2 L2N
888 FLOAT RD VA Apparent power S3 L3N
890 FLOAT RD VA Sum; Ssum3=S1+S2+S3
892 FLOAT RD W Fund. real power P01 L1N
894 FLOAT RD W Fund. real power P02 L2N
896 FLOAT RD W Fund. real power P03 L3N
898 FLOAT RD W Sum; P0sum3=P01+P02+P03
900 FLOAT RD var Harmonic distortion power D1 L1N
902 FLOAT RD var Harmonic distortion power D2 L2N
Addresse Format RD/WR Unit Note