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ADE7758ARWRL 数据表(PDF) 52 Page - Analog Devices |
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ADE7758ARWRL 数据表(HTML) 52 Page - Analog Devices |
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52 / 68 page ![]() ADE7758 Rev. A | Page 52 of 68 Calibration of IRMS and VRMS Offset Step 11: Calculate the value written to the xVAROS registers according to the following equations. IRMSOS and VRMSOS are used to cancel noise and offset contributions from the inputs. The calibration method is the same whether calibrating using the pulse outputs or line accumulation. Reading the registers is required for this calibration since there is no rms pulse output. The rms offset calibration should be performed before VAGAIN calibration. The rms offset calibration also removes offset from the VA calculation. For this reason, no VA offset register exists in the ADE7758. TEST MIN MIN TEST I I I xVARHR I xVARHR Offset – – × × = (54) 29 2 4 ] 0 : 11 [ × × × + CLKIN AccumTime Offset xVAROS (55) Example—Power Offset Calibration Using Line Accumulation The low-pass filter used to obtain the rms measurements is not ideal, therefore it is recommended to synchronize the readings with the zero crossings of the voltage waveform and to average a few measurements when reading the rms registers. This example only shows Phase A of the phase active power offset calibration. Both active and reactive power offset for all phases can be calibrated simultaneously using the method explained in the Power Offset Calibration Using Line Accumulation section. The ADE7758 IRMS measurement is linear over a 500:1 range, and the VRMS measurement is linear over a 20:1 range. To measure the voltage VRMS offset (xVRMSOS), measure rms values at two different nonzero current levels, for example, VNOM and VNOM/20. To measure the current rms offset (IRMSOS), measure rms values at two different nonzero current levels, for example, ITEST and IMAX/500). This translates to three test conditions: ITEST and VNOM, IMAX/500 and VNOM, ITEST and VNOM/20. Figure 84 shows a flow chart for calibrating the rms measurements. For this example, ITEST = 10 A, IMIN = 100 mA, VNOM = 220 V, Power Factor = unity, Frequency = 50 Hz, and LINECYC = 0xFFF. At ITEST, the example ADE7758 meter shows 192489d in the AWATTHR (0x01) register after gain calibration at 0xFFF line cycles. At IMIN, the meter shows 1919d in the AWATTHR register. By using Equation 52, this is equivalent to the 6 LSBs of offset, therefore, using Equation 53, the value written to AWATTOS is 94d. 95 . 5 10 – 1 . 0 1 . 0 489 , 192 – 10 1919 = × × = Offset 39 . 94 2 MHz 10 65 . 13 4 6 29 = × × × = AWATTOS |
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