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AD9215BRUZRL7-65 Datasheet(PDF) 9 Page - Analog Devices |
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AD9215BRUZRL7-65 Datasheet(HTML) 9 Page - Analog Devices |
9 / 37 page AD9215 Data Sheet Rev. B | Page 8 of 36 EQUIVALENT CIRCUITS AVDD MODE Figure 5. Equivalent Analog Input Circuit AVDD MODE 20k Ω Figure 6. Equivalent MODE Input Circuit D9–D0, OR DRVDD Figure 7. Equivalent Digital Output Circuit 2.6k Ω 2.6k Ω AVDD CLK Figure 8. Equivalent Digital Input Circuit DEFINITIONS OF SPECIFICATIONS Aperture Delay Aperture delay is a measure of the sample-and-hold amplifier (SHA) performance and is measured from the rising edge of the clock input to when the input signal is held for conversion. Aperture Jitter Aperture jitter is the variation in aperture delay for successive samples and can be manifested as frequency-dependent noise on the input to the ADC. Clock Pulse Width and Duty Cycle Pulse width high is the minimum amount of time that the clock pulse should be left in the Logic 1 state to achieve rated perfor- mance. Pulse width low is the minimum time the clock pulse should be left in the low state. At a given clock rate, these speci- fications define an acceptable clock duty cycle. Differential Nonlinearity (DNL, No Missing Codes) An ideal ADC exhibits code transitions that are exactly 1 LSB apart. DNL is the deviation from this ideal value. Guaranteed no missing codes to 10-bit resolution indicate that all 1024 codes, respectively, must be present over all operating ranges. Effective Number of Bits (ENOB) For a sine wave, SINAD can be expressed in terms of the num- ber of bits. Using the following formula, it is possible to obtain a measure of performance expressed as N, the effective number of bits N = (SINAD – 1.76)/6.02 Thus, the effective number of bits for a device for sine wave inputs at a given input frequency can be calculated directly from its measured SINAD. Gain Error The first code transition should occur at an analog value 1/2 LSB above negative full scale. The last transition should occur at an analog value 1 1/2 LSB below the positive full scale. Gain error is the deviation of the actual difference between the first and last code transitions and the ideal difference between the first and last code transitions. Integral Nonlinearity (INL) INL refers to the deviation of each individual code from a line drawn from “negative full scale” through “positive full scale.” The point used as negative full scale occurs 1/2 LSB before the first code transition. Positive full scale is defined as a level 1 1/2 LSB beyond the last code transition. The deviation is measured from the middle of each particular code to the true straight line. Maximum Conversion Rate The clock rate at which parametric testing is performed. Minimum Conversion Rate The clock rate at which the SNR of the lowest analog signal frequency drops by no more than 3 dB below the guaranteed limit. Offset Error The major carry transition should occur for an analog value 1/2 LSB below VIN+ = VIN−. Zero error is defined as the deviation of the actual transition from that point. Out-of-Range Recovery Time Out-of-range recovery time is the time it takes for the ADC to reacquire the analog input after a transient from 10% above positive full scale to 10% above negative full scale, or from 10% below negative full scale to 10% below positive full scale. Output Propagation Delay The delay between the clock logic threshold and the time when all bits are within valid logic levels. Power Supply Rejection The specification shows the maximum change in full scale from the value with the supply at the minimum limit to the value |
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