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AD9625 Datasheet(PDF) 19 Page - Analog Devices |
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AD9625 Datasheet(HTML) 19 Page - Analog Devices |
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19 / 56 page ![]() Data Sheet AD9625 THEORY OF OPERATION ADC ARCHITECTURE The AD9625 is a pipelined ADC. The pipelined architecture permits the first stage to operate on a new input sample and the remaining stages to operate on the preceding samples. Sampling occurs on the rising edge of the clock. Each stage of the pipeline, excluding the last, consists of a low resolution flash ADC connected to a switched capacitor digital- to-analog converter (DAC) and an interstage residue amplifier (MDAC). The residue amplifier magnifies the difference between the reconstructed DAC output and the flash input for the next stage in the pipeline. One bit of redundancy is used in each stage to facilitate digital correction of flash errors. The last stage simply consists of a flash ADC. The input stage contains a differential sampling circuit that can be ac- or dc-coupled in differential or single-ended modes. The output staging block aligns the data, corrects errors, and passes the data to the output buffers. The output buffers are powered from a separate supply, allowing adjustment of the output drive current. Synchronization capability is provided to allow synchronized timing between multiple devices. FAST DETECT The fast detect block within the AD9625 generates a fast detection bit (FD), which, when used with variable gain amplifier front-end blocks, reduces the gain and prevents the ADC input signal levels from exceeding the converter range. Figure 29 shows the rapidity by which the detection bit is programmable using an upper threshold, lower threshold, and dwell time. The FD bit is set when the absolute value of the input signal exceeds the programmable upper threshold level. The FD bit clears only when the absolute value of the input signal drops below the lower threshold level for greater than the programmable dwell time, thereby providing hysteresis and preventing the FD bit from excessive toggling. GAIN THRESHOLD OPERATION The threshold prohibits background calibration updates for small signal amplitudes. The threshold for gain calibration is enabled by default. Threshold Operation The absolute value of every sample is accumulated to produce an average voltage estimate. When the calibration has run for its predetermined number of samples, the voltage estimate is compared to the data set threshold. If the voltage estimate is greater than the threshold, the cali- bration coefficients update; otherwise, no update occurs. Threshold Format The threshold registers are all 16-bit registers loaded via the SPI one byte at a time. The threshold values range from 0 to 16,384, corresponding to a voltage range of 0.0 V to 1.1 V (full scale). The calibration threshold range is 0 to 16,384 (0x00 to 0x4000, hexadecimal) and represents the average magnitude of the input. For example, to set the threshold so that a −6 dBFS input sine wave sits precisely at the threshold requires a threshold setting of 16,384 × 20 6 10 − × π 2 ≥ 5228 Figure 29. Fast Detection Bit UPPER THRESHOLD LOWER THRESHOLD FD DWELL TIME TIMER RESET BY RISE ABOVE LT TIMER COMPLETES BEFORE SIGNAL RISES ABOVE LT DWELL TIME Rev. 0 | Page 19 of 56 |
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