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AD7859LAS 数据表(PDF) 17 Page - Analog Devices |
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AD7859LAS 数据表(HTML) 17 Page - Analog Devices |
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17 / 28 page ![]() AD7859/AD7859L REV. A –17– REFERENCE SECTION For specified performance, it is recommended that when using an external reference, this reference should be between 2.3 V and the analog supply AVDD. The connections for the reference pins are shown below. If the internal reference is being used, the REFIN/REFOUT pin should be decoupled with a 100 nF capacitor to AGND very close to the REFIN/REFOUT pin. These connections are shown in Figure 16. If the internal reference is required for use external to the ADC, it should be buffered at the REFIN/REFOUT pin and a 100 nF capacitor should be connected from this pin to AGND. The typical noise performance for the internal reference, with 5 V supplies is 150 nV/ √Hz @ 1 kHz and dc noise is 100 µV p-p. AD7859/AD7859L CREF1 CREF2 REFIN/REFOUT 0.1µF 0.01µF 0.1µF AVDD DVDD 0.1µF 0.1µF 10µF ANALOG SUPPLY +3V TO +5V Figure 16. Relevant Connections Using Internal Reference The REFIN/REFOUT pin may be overdriven by connecting it to an external reference. This is possible due to the series resis- tance from the REFIN/REFOUT pin to the internal reference. This external reference can be in the range 2.3 V to AVDD. When using AVDD as the reference source, the 10 nF capacitor from the REFIN/REFOUT pin to AGND should be as close as possible to the REFIN/REFOUT pin, and also the CREF1 pin should be connected to AVDD to keep this pin at the same volt- age as the reference. The connections for this arrangement are shown in Figure 17. When using AVDD it may be necessary to add a resistor in series with the AVDD supply. This has the effect of filtering the noise associated with the AVDD supply. Note that when using an external reference, the voltage present at the REFIN/REFOUT pin is determined by the external refer- ence source resistance and the series resistance of 150 k Ω from the REFIN/REFOUT pin to the internal 2.5 V reference. Thus, a low source impedance external reference is recommended. AD7859/AD7859L CREF1 CREF2 REFIN/REFOUT 0.1µF 0.01µF 0.01µF AVDD DVDD 0.1µF 0.1µF 10µF ANALOG SUPPLY +3V TO +5V Figure 17. Relevant Connections, AVDD as the Reference AD7859/AD7859L PERFORMANCE CURVES Figure 18 shows a typical FFT plot for the AD7859 at 200 kHz sample rate and 10 kHz input frequency. FREQUENCY – kHz 0 –20 –100 0 100 20 40 60 80 –40 –60 –80 AVDD = DVDD = 3.3V FSAMPLE = 200kHz FIN = 10kHz SNR = 72.04dB THD = –88.43dB –120 Figure 18. FFT Plot Figure 19 shows the SNR versus Frequency for different sup- plies and different external references. INPUT FREQUENCY – kHz 74 73 69 0 100 20 40 60 80 72 71 70 AVDD = DVDD WITH 2.5V REFERENCE UNLESS STATED OTHERWISE 5.0V SUPPLIES, WITH 5V REFERENCE 5.0V SUPPLIES 5.0V SUPPLIES, L VERSION 3.3V SUPPLIES Figure 19. SNR vs. Frequency Figure 20 shows the Power Supply Rejection Ratio versus Fre- quency for the part. The Power Supply Rejection Ratio is de- fined as the ratio of the power in ADC output at frequency f to the power of a full-scale sine wave. PSRR (dB) = 10 log (Pf/Pfs) Pf = Power at frequency f in ADC output, Pfs = power of a full- scale sine wave. Here a 100 mV peak-to-peak sine wave is coupled onto the AVDD supply while the digital supply is left unaltered. Both the 3.3 V and 5.0 V supply performances are shown. |
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