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ADE7169 数据表(PDF) 65 Page - Analog Devices |
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ADE7169 数据表(HTML) 65 Page - Analog Devices |
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65 / 144 page ![]() ADE7566/ADE7569/ADE7166/ADE7169 Rev. A | Page 65 of 144 As shown in When SAVARM in the ACCMODE register (0x0F) is set, the reactive power is accumulated depending on the sign of the active power. When active power is positive, the reactive power is added as it is to the reactive energy register. When active power is negative, the reactive power is subtracted from the reactive energy accumulator (see the Figure 71, the reactive power signal is accumulated in an internal 49-bit signed register. The reactive power signal can be read from the waveform register by setting the WAVMODE register (0x0D) and setting the WFSM bit in the Interrupt Enable 3 SFR (MIRQENH, 0xDB). Like the current and voltage channel waveform sampling modes, the waveform data is available at sample rates of 25.6 kSPS, 12.8 kSPS, 6.4 kSPS, or 3.2 kSPS. VAR Antitamper Accumulation Mode section). Figure 66 shows this energy accumulation for full-scale signals (sinusoidal) on the analog inputs. These curves also apply for the reactive energy accumulation. When ABSVARM in the ACCMODE register (0x0F) is set, the absolute reactive power is used for the reactive energy accumu- lation (see the VAR Absolute Accumulation Mode section). The output of the multiplier is divided by VARDIV. If the value in the VARDIV register is equal to 0, the internal reactive energy register is divided by 1. VARDIV is an 8-bit, unsigned register. After dividing by VARDIV, the reactive energy is accumulated in a 49-bit internal energy accumulation register. The upper 24 bits of this register are accessible through a read to the reactive energy register (VARHR[23:0]). A read to the RVARHR register returns the content of the VARHR register, and the upper 24 bits of the internal register are cleared. Note that the energy register contents roll over to full-scale negative (0x800000) and continue to increase in value when the power or energy flow is positive. Conversely, if the power is negative, the energy register underflows to full-scale positive (0x7FFFFF) and continues to decrease in value. By using the interrupt enable register, the ADE7569/ADE7169 can be configured to issue an ADE interrupt to the 8052 core when the reactive energy register is half-full (positive or negative) or when an overflow or underflow occurs. VARGAIN[11:0] VARDIV[7:0] LPF2 CURRENT CHANNEL VOLTAGE CHANNEL TIME (nT) 5 CLKIN T REACTIVE POWER SIGNAL + + VARHR[23:0] UPPER 24 BITS ARE ACCESSIBLE THROUGH VARHR[23:0] REGISTER 23 0 48 0 WAVEFORM REGISTER VALUES % VAROS[15:0] 26 sgn 25 2–6 2–7 2–8 + + FOR WAVEFORM SAMPLING HPF Π 2 PHCAL[7:0] 90° PHASE SHIFTING FILTER OUTPUTS FROM THE LPF2 ARE ACCUMULATED (INTEGRATED) IN THE INTERNAL REACTIVE ENERGY REGISTER TO DIGITAL-TO-FREQUENCY CONVERTER Figure 71. Reactive Energy Calculation |
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