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ADA4511-2ARMZ-R7 Scheda tecnica(PDF) 26 Page - Analog Devices |
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ADA4511-2ARMZ-R7 Scheda tecnica(HTML) 26 Page - Analog Devices |
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26 / 28 page ![]() Data Sheet ADA4511-2 APPLICATIONS INFORMATION analog.com Rev. A | 26 of 28 Figure 88. Low-Pass Filter: Gain vs. Frequency FEEDBACK COMPONENTS When feedback resistors are used to set up gain, care must be taken to ensure that the pole formed by the resistors and the para- sitic capacitance at the inverting input does not degrade stability. If the pole formed is near the required crossover frequency of the amplifier, then it negatively impacts the stability. In general, if the parasitic pole lies within the closed-loop bandwidth of the amplifier, add a capacitor in parallel with the RF to introduce a zero that has a frequency close to the frequency of the pole to improve stability. For a more detailed discussion, refer to the Analog Dialogue article: The Truth About Voltage Feedback Resistors. PRECISION BUFFER The overall precision of high-resolution systems with ADCs and digital-to-analog converters (DACs) depends on the accuracy, sta- bility, and drive capability of the voltage reference of the system. Typically, the best performance requires a costly external reference, because on-chip references and buffers often have poor perform- ance or insufficient drive. With its low-noise specifications, the ADA4511-2 can be used to preserve the accuracy of the chosen reference for successive approximation register (SAR) ADC reference inputs. The Analog Dialogue article: Voltage Reference Design for Precision Succes- sive-Approximation ADCs details several considerations and how to compute for noise from the reference circuit to ensure that ADC performance is not affected. DAC outputs that drive real world sensors also depend on the accuracy of the reference voltage. The low VOS, ΔVOS/ΔT, IB, en p-p, and very high linearity, in combination with the fast settling time and slew rate, make the ADA4511-2 an ideal fit for an output DAC buffer. RECOMMENDED POWER SOLUTION Analog Devices, Inc., has a wide range of power management products that meet the requirements of most high performance signal chains. For a dual-supply application, the ADA4511-2 may need as high as ±20 V supply. Low dropout (LDO) linear regulators such as the LT3042 for the positive supply and the LT3093 for the negative supply help improve the PSRR at high frequency and generate a low-noise power rail. In addition, if a negative supply is not available, the ADP5070 can generate the negative supply from a positive supply. Table 8 shows the list of the recommended power management devices for the ADA4511-2. Table 8. Recommended Power Management Devices Product Description ADP5070 DC-to-DC switching regulator with independent positive and negative outputs LT3032 Dual 150 mA positive/negative low-noise LDO linear regulator LT3093 −20 V, 200 mA, ultra-low noise, ultra-high PSRR negative linear regulator LT3042 20 V, 200 mA, ultra-low noise, ultra-high PSRR RF linear regulator It is recommended to use a low ESR, 0.1 μF bypass capacitor close to each of the power supply pins of the ADA4511-2 and ground to reduce errors coupling in from the power supplies. For noisy power supplies, place an additional 10 μF capacitor in parallel with the 0.1 μF for better performance. LAYOUT GUIDELINES The ADA4511-2 has extremely high impedance inputs. Shunt impe- dances from leakage resistance and parasitic capacitance in the PCB layout can severely degrade the performance of the low bias input. Protect against parasitic leakage currents by using guarding techniques to reduce the voltage gradient seen by the input node. Physically, a guard is a low impedance conductor that surrounds a high impedance node and is driven to the voltage of that node. It serves to buffer leakage by diverting the leakage away from the sensitive node and into the low impedance guard. Remove the solder mask from the guard traces to guard against surface leakage due to contamination. Place any input resistors close to the ADA4511-2 inputs to avoid interaction with trace parasitics. If one of the channels is not in use, connect the input to a voltage that is within the linear range of the channel to avoid overdrive conditions that can interfere with other channels. Leave the output unconnected. Place decoupling capacitors, such as 0.1 µF, near the ADA4511-2. Larger capacitors, such as 10 µF, can be used farther away from the op amp. |
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