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ADE7858 Datasheet(PDF) 46 Page - Analog Devices |
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ADE7858 Datasheet(HTML) 46 Page - Analog Devices |
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46 / 76 page ![]() ADE7858 Preliminary Technical Data Rev. PrA| Page 46 of 76 CF1 pulse based on phase A and phase B apparent powers CFCYC=2 AVAHR, BVAHR, CVAHR latched Energy registers reset AVAHR, BVAHR, CVAHR latched Energy registers reset Figure 51.Synchronizing AVAHR and BVAHR with CF1 Bits 14, 13, 12 (CF3LATCH, CF2LATCH and CF1LATCH) of CFMODE[15:0] register enable this process when set to 1. When cleared to 0, the default state, no latch occurs. The process is available even if the CFx output is not enabled by CFxDIS bits in CFMODE[15:0]. CF outputs for various accumulation modes The bits 1, 0 (WATTACC[1:0]) in ACCMODE[7:0] register determine the accumulation modes of the total active powers when signals proportional to the active powers are chosen at CFx pins (bits CFxSEL[2:0], x=1,2,3 in CFMODE[15:0] register are equal to 000). When WATTACC[1:0]=00, the default value, the active powers are sign accumulated before entering the energy to frequency converter. Figure 52 presents the way signed active power accumulation works. Note that in this mode, the CF pulses are perfectly synchronized with the active energy accumulated in watt-hr registers because the powers are sign accumulated in both data paths. REVAPx bit in STATUS0 POS ACTIVE POWER NO-LOAD THRESHOLD NO-LOAD THRESHOLD ACTIVE ENERGY xWSIGN bit in PHSIGN APNOLOAD SIGN=POSITIVE NEG POS NEG Figure 52. Active power signed accumulation mode When WATTACC[1:0]=11, the active powers are accumulated in absolute mode. When the powers are negative, they change sign and are accumulated together with the positive power. Figure 53 presents the way absolute active power accumulation works. Note that in this mode, the watt-hr registers continue to accumulate active powers in signed mode, even if the CF pulses are generated based on the absolute accumulation mode. The bits 3, 2 (VARACC[1:0]) in ACCMODE[7:0] register determine the accumulation modes of the total and fundamental reactive powers when signals proportional to the reactive powers are chosen at CFx pins (bits CFxSEL[2:0], x=1, 2, 3 in CFMODE[15:0] register are equal to 001 or to 100). When VARACC[1:0]=00, the default value, the reactive powers are sign accumulated before entering the energy to frequency converter. Figure 54 presents the way signed reactive power accumulation works. Note that in this mode, the CF pulses are perfectly synchronized with the reactive energy accumulated in var-hr registers because the powers are sign accumulated in both data paths. APNOLOAD SIGN=POSITIVE REVAPx bit in STATUS0 xWSIGN bit in PHSIGN ACTIVE POWER NO-LOAD THRESHOLD NO-LOAD THRESHOLD ACTIVE ENERGY POS NEG POS NEG Figure 53. Active power absolute accumulation mode REVRPx bit in STATUS0 xVARSIGN bit in PHSIGN REACTIVE POWER NO-LOAD THRESHOLD NO-LOAD THRESHOLD REACTIVE ENERGY POS VARNOLOAD SIGN=POSITIVE NEG POS NEG Figure 54. Reactive power signed accumulation mode |
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