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EVAL-ADE7858EBZ Datasheet(PDF) 43 Page - Analog Devices |
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EVAL-ADE7858EBZ Datasheet(HTML) 43 Page - Analog Devices |
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43 / 76 page ![]() Preliminary Technical Data ADE7858 Rev. PrA | Page 43 of 76 Bit 4 (VAEHF) in STATUS0[31:0] register is set when bit 30 of one of xVAHR, x=A, B, C registers changes, signifying one of these registers is half full. As the apparent power is always positive and xVAHR, x=A, B, C registers are signed, the VA-hr registers become half full when they increment from 0x3FFFFFFF to 0x4000 0000. Interrupts attached to bit VAEHF in STATUS0[31:0] register may be enabled by setting bit 4 in MASK0[31:0] register. If enabled, the 0 IRQ pin is set low and the status bit is set to 1 whenever one of the energy registers xVAHR, x=A, B, C becomes half full. The status bit is cleared and 0 IRQ pin is set back high by writing STATUS0 register with the corresponding bit set to 1. Setting bit 6 (RSTREAD) of LCYMODE[7:0] register enables a read-with-reset for all va-hr accumulation registers, that is, the registers are reset to 0 after a read operation. Integration Time Under Steady Load The discrete time sample period (T) for the accumulation register is 125μs (1/8 KHz). With full-scale pure sinusoidal signals on the analog inputs, the average word value representing the apparent power is PMAX. If the VATHR threshold is set at PMAX level, this means the DSP generates a pulse that is added at VA-hr registers every 125 μs. The maximum value that can be stored in the va-hr accumulation register before it overflows is 231 − 1 or 0x7FFFFFFF. The integration time is calculated as s 55 min 33 h 74 s 125 FFFF , FFF 7 x 0 Time (42) Energy Accumulation Mode The apparent power accumulated in each VA-hr accumulation register (AVAHR[31:0], BVAHR[31:0] or CVAHR[31:0]) depends on the configuration of bits 5,4 (CONSEL) in the ACCMODE[7:0] register. The different configurations are described in Table 16. Table 16. Inputs to VA-Hr Accumulation Registers CONSEL[1,0] AVAHR BVAHR CVAHR 00 AVRMS × AIRMS BVRMS × BIRMS CVRMS × CIRMS 01 AVRMS × AIRMS 0 CVRMS × CIRMS 10 AVRMS × AIRMS BVRMS × BIRMS VB=-VA-VC CVRMS × CIRMS 11 AVRMS × AIRMS BVRMS × BIRMS VB=-VA CVRMS × CIRMS Line Cycle Apparent Energy Accumulation Mode As mentioned in Line Cycle Active Energy Accumulation Mode section, in line cycle energy accumulation mode, the energy accumulation can be synchronized to the voltage channel zero crossings so that apparent energy can be accumulated over an integral number of half line cycles. In this mode, the ADE7858 transfers the apparent energy accumulated in the 32-bit internal accumulation registers into xVAHR[31:0], x=A,B,C registers after an integral number of line cycles, as shown in Figure 48. The number of half line cycles is specified in the LINECYC[15:0] register. The line cycle apparent energy accumulation mode is activated by setting bit 2 (LVA) in the LCYCMODE[7:0] register. The apparent energy accumulated over an integer number of zero crossings is written to the VA-hr accumulation registers after the LINECYC number of zero crossings is detected. When using the line cycle accumulation mode, bit 6 (RSTREAD) of the LCYCMODE[7:0] register should be set to Logic 0 because the read with reset of VA-hr registers is not available in this mode. ACCUMULATOR VAHR[47:0] 32 bit register AVAHR[31:0] ZERO CROSSING DETECTION (PHASE B) ZERO CROSSING DETECTION (PHASE C) ZERO CROSSING DETECTION (PHASE A) ZXSEL[1] in LCYCMODE[7:0] ZXSEL[0] in LCYCMODE[7:0] ZXSEL[2] in LCYCMODE[7:0] CALIBRATION CONTROL LINECYC[15:0] AIRMS AVAGAIN AVRMS Figure 48. ADE7858 Line Cycle Apparent Energy Accumulation Mode Phase A, Phase B, and Phase C zero crossings are, respectively, included when counting the number of half-line cycles by setting bits 5,4,3 (ZXSEL) in the LCYCMODE[7:0] register. Any combination of the zero crossings from all three phases can be used for counting the zero crossing. Only one phase should be selected at a time for inclusion in the zero crossings count during calibration. For details on setting LINECYC[15:0] register and the interrupt LENERGY associated with the line cycle accumulation mode, see Line Cycle Active Energy Accumulation Mode section. WAVEFORM SAMPLING MODE The waveform samples of the current and voltage waveform, the active, reactive, and apparent power multiplier outputs are stored every 125μsec (8KHz rate) into 24-bit signed registers that may be accessed through various serial ports of the ADE7858. Table 17 presents the list of the registers and their description. Table 17. Waveform registers list Register Description Register Description IAWV Phase A current CVA Phase C apparent power VAWV Phase A voltage AWATT Phase A active |
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