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ADA4932-2YCPZ-R2 数据表(PDF) 25 Page - Analog Devices |
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ADA4932-2YCPZ-R2 数据表(HTML) 25 Page - Analog Devices |
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25 / 27 page ![]() Data Sheet ADA4932-1/ADA4932-2 Rev. E | Page 25 of 27 HIGH PERFORMANCE ADC DRIVING The ADA4932-1/ADA4932-2 are ideally suited for broadband dc-coupled applications. The circuit in Figure 65 shows a front- end connection for an ADA4932-1 driving an AD9245, a 14-bit, 20 MSPS/40 MSPS/65 MSPS/80 MSPS ADC, with dc coupling on the ADA4932-1 input and output. (The AD9245 achieves its optimum performance when driven differentially.) The ADA4932-1 eliminates the need for a transformer to drive the ADC and performs a single-ended-to-differential conversion and buffering of the driving signal. The ADA4932-1 is configured with a single 3.3 V supply and a gain of 1 for a single-ended input to differential output. The 53.6 Ω termination resistor, in parallel with the single-ended input impedance of approximately 665 Ω, provides a 50 Ω termination for the source. The additional 25.5 Ω (524.5 Ω total) at the inverting input balances the parallel impedance of the 50 Ω source and the termination resistor driving the noninverting input. In this example, the signal generator has a 1 V p-p symmetric, ground-referenced bipolar output when terminated in 50 Ω. The VOCM input is bypassed for noise reduction, and set externally with 1% resistors to maximize output dynamic range on the tight 3.3 V supply. Because the inputs are dc-coupled, dc common-mode current flows in the feedback loops, and a nominal dc level of 0.84 V is present at the amplifier input terminals. A fraction of the output signal is also present at the input terminals as a common-mode signal; its level is equal to the ac output swing at the noninverting output, divided down by the feedback factor of the lower loop. In this example, this ripple is 0.5 V p-p × [524.5/(524.5 + 511)] = 0.25 V p-p. This ac signal is riding on the 0.84 V dc level, produc- ing a voltage swing between 0.72 V and 0.97 V at the input terminals. This is well within the specified limits of 0.2 V to 1.5 V. With an output common-mode voltage of 1.65 V, each ADA4932-1 output swings between 1.4 V and 1.9 V, opposite in phase, providing a gain of 1 and a 1 V p-p differential signal to the ADC input. The differential RC section between the ADA4932-1 output and the ADC provides single-pole low-pass filtering and extra buffering for the current spikes that are output from the ADC input when its SHA capacitors are discharged. The AD9245 is configured for a 1 V p-p full-scale input by connecting its SENSE pin to VREF, as shown in Figure 65. ADA4932-1 3.3V 50Ω 499Ω 499Ω 25.5Ω 10kΩ 1% 511Ω 511Ω 33Ω 33Ω VOCM 2V p-p SIGNAL GENERATOR 1V p-p CENTERED AT GROUND 53.6Ω 0.1µF 0.1µF 10µF + 0.1µF 0.1µF 10kΩ 1% 20pF VIN– AVDD VIN+ VREF SENSE AGND AD9245 VOUT, dm = 1V p-p VOUT, cm = 1.65V Figure 65. ADA4932-1 Driving an AD9245 ADC with DC-Coupled Input and Output |
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