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ADMC326YN Datasheet(PDF) 16 Page - Analog Devices |
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ADMC326YN Datasheet(HTML) 16 Page - Analog Devices |
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16 / 31 page ![]() ADMC326 –16– REV. A Table VI. ADC Auxiliary Channel Selection MODECTRL (1) MODECTRL (0) Select ADCMUX1 ADCMUX0 VAUX0 0 0 VAUX1 0 1 VAUX2 1 0 Calibration (VREF)1 1 The single slope technique has been adapted on the ADMC326 for four channels that are simultaneously converted. Refer to Figure 11 for the functional schematic of the ADC. Three of the main inputs (V1, V2, and V3) are directly connected as high impedance voltage inputs. The fourth channel has been con- figured with a serially-connected 4-to-1 multiplexer. Table VI shows the multiplexer input selection codes. One of these auxiliary multiplexed channels is used to calibrate the ramp against the internal voltage reference (VREF). VAUX0 V2L VAUXL PWMSYNC (CONVST) ADC REGISTERS V1L V3L V2 (CAP RESET) CLK MODECTRL<7> 12-BIT ADC TIMER BLOCK VREF COMP ADC REGISTERS ADC1 ADC2 ADC3 ADCAUX MODECTRL<0..1> EXTERNAL CHARGING CAP VC ICONST ICONST_TRIM<2:0> VAUX1 VAUX2 COMP COMP COMP V1 C GND 4 -1 MUX V3 Figure 11. ADC Overview Comparing each ADC input to a reference ramp voltage, and tim- ing the comparison of the two signals, performs the conversion process. The actual conversion point is the time point intersec- tion of the input voltage and the ramp voltage (VC) as shown in Figure 12. This time is converted to counts by the 12-bit ADC Timer Block and is stored in the ADC registers. The ramp volt- age used to perform the conversion is generated by driving a Table V. Fundamental Characteristics of PWM Generation Unit of ADMC326 16-BIT PWM TIMER Parameter Min Typ Max Unit Counter Resolution 16 Bits Edge Resolution (Single Update Mode) 100 ns Edge Resolution (Double Update Mode) 50 ns Programmable Dead Time Range 0 100 µs Programmable Dead Time Increments 100 ns Programmable Pulse Deletion Range 0 100 µs Programmable Pulse Deletion Increments 100 ns PWM Frequency Range 150 Hz PWMSYNC Pulsewidth (TCRST) 0.05 12.5 µs Gate Drive Chop Frequency Range 0.02 5 MHz fixed current into an off-chip capacitor, where the capacitor voltage is VC = (I/C) × t Following reset, VC = 0 at t = 0. This reset and the start of the conversion process are initiated by the PWMSYNC pulse, as shown in Figure 12. The width of the PWMSYNC pulse is controlled by the PWMSYNCWT register and should be programmed according to Figure 13 to ensure complete resetting. In order to compensate for IC process manufacturing tolerances (and to adjust for capacitor tolerances), the current source of the ADMC326 is software programmable. The software setting of the magnitude of the ICONST current generator is accomplished by selecting one of eight steps over an approximately 20% cur- rent range. V1 PWMSYNC VVIL COMPARATOR OUTPUT t TCRST TPWM –TCRST tVIL VC VCMAX Figure 12. Analog Input Block Operation The ADC system consists of four comparators and a single timer, which may be clocked at either the DSP rate or half the DSP rate depending on the setting of the ADCCNT bit (Bit 7) of the MODECTRL register. When this bit is cleared, the timers count at a slower rate of CLKIN. When this bit is set, they count at CLKOUT or twice the rate of CLKIN. ADC1, ADC2, ADC3, and ADCAUX are the registers that capture the conversion times, which are effectively the timer value when the associated com- parator trips. |
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