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ADBMS1818ASWZ-R7 数据表(PDF) 23 Page - Analog Devices |
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ADBMS1818ASWZ-R7 数据表(HTML) 23 Page - Analog Devices |
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23 / 89 page ![]() Data Sheet ADBMS1818 THEORY OF OPERATION analog.com Rev. 0 | 23 of 89 ADC OPERATION There are three ADCs inside the ADBMS1818. The three ADCs operate simultaneously when measuring 18 cells. Only one ADC is used to measure the general-purpose inputs. This section uses the term ADC to refer to one or all ADCs, depending on the operation being performed. This section refers to ADC1, ADC2, and ADC3 when it is necessary to distinguish between the three circuits, such as in the timing diagrams. ADC Modes The ADCOPT bit (CFGAR0, Bit 0) in Configuration Register Group A and the mode selection bits, MD, Bits[1:0], in the conversion command together provide eight modes of operation for the ADC which correspond to different oversampling ratios (OSRs). The accuracy and timing of these modes are summarized in Table 17. In each mode, the ADC first measures the inputs and then performs a calibration of each channel. The names of the modes are based on the –3 dB bandwidth of the ADC measurement. Mode 7 kHz (normal): In this mode, the ADC has high resolution and low TME. This mode is considered the normal operating mode because of the optimum combination of speed and accuracy. Mode 27 kHz (fast): In this mode, the ADC has maximum through- put but has some increase in TME. Therefore, this mode is also referred to as the fast mode. The increase in speed comes from a reduction in the OSR. This increase results in an increase in noise and average measurement error. Mode 26 Hz (filtered): In this mode, the ADC digital filter –3 dB frequency is lowered to 26 Hz by increasing the OSR. This mode is also referred to as the filtered mode due to its low –3 dB frequency. The accuracy is similar to the 7 kHz (normal) mode with lower noise. Modes 14 kHz, 3 kHz, 2 kHz, 1 kHz, and 422 Hz: Modes 14 kHz, 3 kHz, 2 kHz, 1 kHz, and 422 Hz provide additional options to set the ADC digital filter –3 dB at 13.5 kHz, 3.4 kHz, 1.7 kHz, 845 Hz, and 422 Hz, respectively. The accuracy of the 14 kHz mode is similar to the 27 kHz (fast) mode. The accuracy of the 3 kHz, 2 kHz, 1 kHz, and 422 Hz modes is similar to the 7 kHz (normal) mode. The filter bandwidths and the conversion times for these modes are provided in Table 17. If the core is in the standby state, an additional tREFUP time is required to power up the reference before beginning the ADC conversions. The reference can remain powered up between ADC conversions if the REFON bit in Configu- ration Register Group A is set to 1 so that the core is in REFUP state after delay tREFUP. The subsequent ADC commands do not have the tREFUP delay before beginning ADC conversions. Table 17. ADC Filter Bandwidth and Accuracy Mode –3 dB Filter BW –40 dB Filter BW TME Specification at 3.3 V, 25°C TME Specification at 3.3V, – 40°C, +85°C 27 kHz (Fast Mode) 27 kHz 84 kHz ±8.5 mV ±8.5 mV 14 kHz 13.5 kHz 42 kHz ±8.5 mV ±8.5 mV 7 kHz (Normal Mode) 6.8 kHz 21 kHz ±3 mV ±4 mV 3 kHz 3.4 kHz 10.5 kHz ±3 mV ±4 mV 2 kHz 1.7 kHz 5.3 kHz ±3 mV ±4 mV 1 kHz 845 Hz 2.6 kHz ±3 mV ±4 mV 422 Hz 422 Hz 1.3 kHz ±3 mV ±4 mV 26 Hz (Filtered Mode) 26 Hz 82 Hz ±2.2 mV ±3.0 mV |
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