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ADuC7023BCBZ62I-R7 датащи(PDF) 33 Page - Analog Devices |
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ADuC7023BCBZ62I-R7 датащи(HTML) 33 Page - Analog Devices |
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33 / 96 page ![]() Data Sheet ADuC7023 | Page 33 of 96 ADCGN Register Name: ADCGN Address: 0xFFFF0530 Default value: Factory configured Access: Read/write Function: ADCGN is a 10-bit gain calibration register. ADCOF Register Name: ADCOF Address: 0xFFFF0534 Default value: Factory configured Access: Read/write Function: ADCOF is a 10-bit offset calibration register. CONVERTER OPERATION The ADC incorporates a successive approximation (SAR) architecture involving a charge-sampled input stage. This architecture can operate in two different modes: differential and single-ended. Differential Mode The ADuC7023 contains a successive approximation ADC based on two capacitive DACs. Figure 24 and Figure 25 show simplified schematics of the ADC in acquisition and conversion phase, respectively. The ADC is comprised of control logic, a SAR, and two capacitive DACs. In Figure 24 (the acquisition phase), SW3 is closed and SW1 and SW2 are in Position A. The comparator is held in a balanced condition, and the sampling capacitor arrays acquire the differential signal on the input. CAPACITIVE DAC CAPACITIVE DAC CONTROL LOGIC COMPARATOR SW3 SW1 A A B B SW2 CS CS VREF ADC0 ADC11 MUX CHANNEL+ CHANNEL– Figure 24. ADC Acquisition Phase CAPACITIVE DAC CAPACITIVE DAC CONTROL LOGIC COMPARATOR SW3 SW1 A A B B SW2 CS CS VREF ADC0 ADC11 MUX CHANNEL+ CHANNEL– Figure 25. ADC Conversion Phase When the ADC starts a conversion, as shown in Figure 25, SW3 opens, and then SW1 and SW2 move to Position B. This causes the comparator to become unbalanced. Both inputs are disconnected once the conversion begins. The control logic and the charge redistribution DACs are used to add and subtract fixed amounts of charge from the sampling capacitor arrays to bring the comparator back into a balanced condition. When the comparator is rebalanced, the conversion is complete. The control logic generates the ADC output code. The output impedances of the sources driving the VIN+ and VIN– pins must be matched; otherwise, the two inputs have different settling times, resulting in errors. Single-Ended Mode In single-ended mode, SW2 is always connected internally to ground. The VIN− pin can be floating. The input signal range on VIN+ is 0 V to VREF. CAPACITIVE DAC CAPACITIVE DAC CONTROL LOGIC COMPARATOR SW3 SW1 A B CS CS ADC0 ADC11 MUX CHANNEL+ CHANNEL– Figure 26. ADC in Single-Ended Mode Analog Input Structure Figure 27 shows the equivalent circuit of the analog input structure of the ADC. The four diodes provide ESD protection for the analog inputs. Care must be taken to ensure that the analog input signals never exceed the supply rails by more than 300 mV; this causes these diodes to become forward-biased and start conducting into the substrate. These diodes can conduct up to 10 mA without causing irreversible damage to the part. Rev. E |
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