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ADA4805-2ACPZ-R2 数据表(PDF) 20 Page - Analog Devices |
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ADA4805-2ACPZ-R2 数据表(HTML) 20 Page - Analog Devices |
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20 / 25 page ![]() ADA4805-1/ADA4805-2 Data Sheet Rev. B | Page 20 of 25 APPLICATIONS INFORMATION SLEW ENHANCEMENT The ADA4805-1/ADA4805-2 have an internal slew enhancement circuit that increases the slew rate as the feedback error voltage increases. This circuit allows the amplifier to settle a large step response faster, as shown in Figure 56. This is useful in ADC applications where multiple input signals are multiplexed. The impact of the slew enhancement can also be seen in the large signal frequency response, where larger input signals cause a slight increase in peaking, as shown in Figure 57. TIME (ns) 50 40 30 20 10 0100 90 80 70 60 VOUT =500mV p-p –0.5 –1.0 –1.5 0.5 0 1.0 1.5 VOUT = 2V p-p VOUT = 1V p-p VS = ±2.5V G = +1 RL = 2kΩ Figure 56. Step Response with Selected Output Steps –6 –5 –4 –3 –2 –1 0 1 2 FREQUENCY (Hz) VS = ±2.5V G = +1 RL = 2kΩ VIN = 400mV p-p VIN = 100mV p-p VIN = 200mV p-p 100k 1M 10M 100M VIN = 632mV p-p VIN = 2V p-p Figure 57. Peaking in Frequency Responses as Signal Level Changes, G = +1 EFFECT OF FEEDBACK RESISTOR ON FREQUENCY RESPONSE The amplifiers input capacitance and feedback resistor form a pole that, for larger value feedback resistors, can reduce phase margin and contribute to peaking in the frequency response. Figure 58 shows the peaking for selected feedback resistors (RF) when the amplifier is configured in a gain of +2. Figure 58 also shows how peaking can be mitigated with the addition of a small value capacitor placed across the feedback resistor of the amplifier. –6 –5 –4 –3 –2 –1 0 1 2 3 4 5 FREQUENCY (Hz) 100k 1M 10M 100M RF = 1kΩ RF = 2.6kΩ RF = 2.6kΩ, CF = 1pF RF = 4.99kΩ RF = 4.99kΩ, CF = 1pF VS = ±2.5V G = +2 RL = 2 kΩ VIN = 200mV p-p Figure 58. Peaking in Frequency Response at Selected RF Values COMPENSATING PEAKING IN LARGE SIGNAL FREQUENCY RESPONSE At high frequency, the slew enhancement circuit can contribute to peaking in the large signal frequency response. Figure 58 shows the effect of a feedback capacitor on the small signal response, whereas Figure 59 shows that the same technique is effective for reducing peaking in the large signal response. –15 –12 –9 –6 –3 0 3 6 FREQUENCY (Hz) VS = ±2.5V G = +2 RL = 2 kΩ VIN = 632mV p-p RF = 2.6kΩ, CF = 0pF RF = 1kΩ, CF = 0pF RF = 2.6kΩ, CF = 2.7pF RF = 1 kΩ, CF = 2 pF 100k 1M 10M 100M Figure 59. Peaking Mitigation in Large Signal Frequency Response DRIVING LOW POWER, HIGH RESOLUTION SUCCESSIVE APPROXIMATION REGISTER (SAR) ADCs The ADA4805-1/ADA4805-2 are ideal for driving low power, high resolution SAR ADCs. The 5.9 nV/√Hz input voltage noise and rail-to-rail output stage of the ADA4805-1/ADA4805-2 help to minimize distortion at large output levels. With its low power of 500 μA, the amplifier consumes power that is compatible with low power SAR ADCs, which are usually in the microwatt (μW) to low milliwatt (mW) range. Furthermore, the ADA4805-1/ADA4805-2 support a single-supply configuration; their input common-mode range extends to 0.1 V below the negative supply, and 1 V below the positive supply. |
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