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ADE7758ARWRL Datasheet(PDF) 51 Page - Analog Devices |
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ADE7758ARWRL Datasheet(HTML) 51 Page - Analog Devices |
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51 / 68 page ![]() ADE7758 Rev. A | Page 51 of 68 STEP 1 SET LCYCMODE, LINECYC AND MASK REGISTERS STEP 2 SET UP SYSTEM FOR ITEST, VNOM @ PF = 1 STEP 3 RESET STATUS REGISTER STEP 4 READ ALL XWATTHR REGISTERS AFTER LENERGY INTERRUPT STEP 5 SET UP SYSTEM FOR IMIN, VNOM @ PF = 1 END FOR STEP 10 READ ALL XVARHR AFTER LENERGY INTERRUPT FOR STEP 10, CALCULATE XVAROS FOR ALL PHASES YES NO TESTED @ IMIN? STEP 7 CALCULATE XWATTOS FOR ALL PHASES FOR STEP 10, WRITE TO ALL XVAROS REGISTERS FOR STEP 10, PF = 0 STEP 8 WRITE TO ALL XWATTOS REGISTERS STEP 9 SET UP SYSTEM FOR ITEST, VNOM @ PF = 0 STEP 10 REPEAT STEP 3 TO STEP 8 FOR XVARHR, XVAROS CALIBRATION STEP 6 Figure 83. Power Offset Calibration Using Line Accumulation Step 1: If the values were changed after gain calibration, Step 1, Step 3, and Step 4 from the gain calibration should be repeated to configure the LCYCMODE, LINECYC, and MASK registers. Step 2: Set the test system for ITEST, VNOM, and unity power factor. Step 3: Reset the interrupt status register by reading RSTATUS (0x1A). Step 4: Read all xWATHR energy registers (0x01 to 0x03) after the LENERGY interrupt and store the values. Step 4a: Read the FREQ (0x10) register if the frequency is unknown. Step 5: Set the test system for IMIN, VNOM, and unity power factor. Step 6: Repeat Step 3 and Step 4. Step 7: Calculate the value to be written to the xWATTOS registers according to the following equations. TEST MIN MIN I TEST I I I I xWATTHR I xWATTHR Offset TEST MIN – – × × = (52) [] 29 2 4 0 : 11 × × × = CLKIN AccumTime Offset xWATTOS (53) where Accumulation Time is defined in Equation 43 and xWATTHRITEST is the value in the energy register at ITEST, and xWATTHRIMIN is the value in the energy register at IMIN. Step 8: Write to all xWATTOS registers (0x39 to 0x3B). Step 9: Set the test system for ITEST, VNOM, and zero power factor (calibrate VAR gain). Step 10: Repeat Steps 3, 4, and 5. |
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