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CS5461 Datasheet(PDF) 18 Page - Cirrus Logic |
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CS5461 Datasheet(HTML) 18 Page - Cirrus Logic |
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18 / 46 page ![]() CS5461 18 DS546PP2 the voltage channel and the current channel, the AC offset calibration sequence performs an entirely different function than the DC offset calibration se- quence. The AC gain and DC gain calibration se- quences perform the same function, but accomplish the function using different techniques. Since both the voltage and current channels have separate offset and gain registers associated with them, system offset or system gain can be per- formed on either channel without the calibration results from one channel affecting the other. 4.4.2 Calibration Sequence 1. Before Calibration the CS5461 must be operat- ing in its active state, and ready to accept valid commands. The ‘DRDY’ bit in the Status Register should also be cleared. 2. Apply appropriate calibration signals to the in- puts of the voltage/current channels (discussed next in Sections 4.4.3 and 4.4.4.) 3. Send the 8-bit calibration command to the CS5461 serial interface. Various bits within this command specify the exact type of calibration. 4. After the CS5461 finishes the desired internal calibration sequence, the DRDY bit is set in the Status Register to indicate that the calibration se- quence is complete. The results of the calibration are now available in the appropriate gain/offset registers. 4.4.3 Calibration Signal Input Level For AC/DC gain calibrations, there is an absolute limit on the RMS/DC voltage levels that are select- ed for the gain calibration input signals. The maxi- mum value that the gain register can attain is 4. Therefore, for either channel, if the voltage level of a gain calibration input signal is low enough that it causes the CS5461 to attempt to set either gain reg- ister higher than 4, the gain calibration result will be invalid and all CS5461 results obtained while running A/D conversions will be invalid. 4.4.4 Calibration Signal Frequency Optimally, the frequency of the calibration signal is the same frequency as the fundamental power line frequency of the metered power system. 4.4.5 Input Configurations for Calibrations Figure 4 shows the basic setup for gain calibration. When performing a DC gain calibration a positive DC voltage level must be applied at the inputs of the voltage/current channels. This voltage should be set to the level that represents the absolute max- imum instantaneous voltage level that needs to be measured across the inputs (including the maxi- mum over-range level that must be accurately mea- sured). When performing AC gain calibration, an AC reference signal should be applied that repre- sents the desired maximum RMS level. A typical sinusoidal calibration value which allows for rea- sonable over-range margin would be 0.6 or 60% of the voltage/current channel’s maximum input volt- age level. For both AC and DC offset calibrations, the “+” and “-’ pins of the voltage/current channels should + - XGAIN + - External Connections + - AIN+ AIN- CM +- Full Scale (DC or AC) Figure 4. System Calibration of Gain. + - XGAIN + - External Connections 0V + - AIN+ AIN- CM + - Figure 5. System Calibration of Offset. |
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