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ADA4522-4ARUZ-R7 Datasheet(PDF) 26 Page - Analog Devices |
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ADA4522-4ARUZ-R7 Datasheet(HTML) 26 Page - Analog Devices |
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26 / 33 page ![]() Data Sheet ADA4522-1/ADA4522-2/ADA4522-4 THEORY OF OPERATION analog.com Rev. G | 26 of 33 Figure 78. Current Noise Density at Gain = 1 EMI REJECTION RATIO Circuit performance is often adversely affected by high frequency EMI. When the signal strength is low and transmission lines are long, an op amp must accurately amplify the input signals. Howev- er, all op amp pins—the noninverting input, inverting input, positive supply, negative supply, and output pins—are susceptible to EMI signals. These high frequency signals are coupled into an op amp by various means, such as conduction, near field radiation, or far field radiation. For example, wires and printed circuit board (PCB) traces can act as antennas and pick up high frequency EMI signals. Amplifiers do not amplify EMI or RF signals due to their relatively low bandwidth. However, due to the nonlinearities of the input devices, op amps can rectify these out of band signals. When these high frequency signals are rectified, they appear as a dc offset at the output. The ADA4522-1/ADA4522-2/ADA4522-4 have integrated EMI filters at their input stage. To describe the ability of the ADA4522-1/ ADA4522-2/ADA4522-4 to perform as intended in the presence of electromagnetic energy, the electromagnetic interference rejection ratio (EMIRR) of the noninverting pin is specified in Table 2, Table 3, and Table 4 of the Specifications section. A mathematical method of measuring EMIRR is defined as follows: EMIRR = 20log(VIN_PEAK/ΔVOS) Figure 79. EMIRR vs. Frequency CAPACITIVE LOAD STABILITY The ADA4522-1/ADA4522-2/ADA4522-4 can safely drive capacitive loads of up to 250 pF in any configuration. As with most amplifiers, driving larger capacitive loads than specified may cause excessive overshoot and ringing, or even oscillation. A heavy capacitive load reduces the phase margin and causes the amplifier frequency response to peak. Peaking corresponds to overshooting or ringing in the time domain. Therefore, it is recommended that external compensation be used if the ADA4522-1/ADA4522-2/ADA4522-4 must drive a load exceeding 250 pF. This compensation is particu- larly important in the unity-gain configuration, which is the worst case for stability. A quick and easy way to stabilize the op amp for capacitive load drive is by adding a series resistor, RISO, between the amplifier output terminal and the load capacitance, as shown in Figure 80. RISO isolates the amplifier output and feedback network from the capacitive load. However, with this compensation scheme, the output impedance as seen by the load increases, and this reduces gain accuracy. Figure 80. Stability Compensation with Isolating Resistor, RISO Figure 81 shows the effect on overshoot with different values of RISO. |
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