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ADA4841-2YCPZ-R7 数据表(PDF) 18 Page - Analog Devices |
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ADA4841-2YCPZ-R7 数据表(HTML) 18 Page - Analog Devices |
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18 / 20 page ![]() ADA4841-1/ADA4841-2 Data Sheet Rev. G | Page 18 of 20 Table 6. Recommended Values and Typical Performance Gain RF (Ω) RG (Ω) −3 dB BW (MHz) Slew Rate (V/µs) Peaking (dB) Output Noise ADA4841-1/ ADA4841-2 Only (nV/√Hz) Total Output Noise Including Resistors (nV/√Hz) +1 0 N/A 77 12.5 0.9 2 2 +2 499 499 34 12.5 0.3 4 5.73 −1 499 499 38 12.5 0.4 4 5.73 +5 499 124 11 12 0 10 11.9 +10 499 54.9 5 12 0 20 21.1 +20 499 26.1 2.3 11.2 0 40 42.2 Capacitor selection is critical for optimal filter performance. Capacitors with low temperature coefficients, such as NPO ceramic capacitors, are good choices for filter elements. Figure 51 shows the filter response. 0.03 10 FREQUENCY (MHz) 1 0.1 –40 –35 –30 –25 –20 –15 –10 –5 0 5 Figure 51. Filter Frequency Response LAYOUT CONSIDERATIONS To ensure optimal performance, careful and deliberate attention must be paid to the board layout, signal routing, power supply bypassing, and grounding. GROUND PLANE It is important to avoid ground in the areas under and around the input and output of the ADA4841-1/ADA4841-2 . Stray capacitance created between the ground plane and the input and output pads of a device are detrimental to high speed amplifier performance. Stray capacitance at the inverting input, along with the amplifier input capacitance, lowers the phase margin and can cause instability. Stray capacitance at the output creates a pole in the feedback loop. This can reduce phase margin and can cause the circuit to become unstable. POWER SUPPLY BYPASSING Power supply bypassing is a critical aspect in the performance of the ADA4841-1/ADA4841-2. A parallel connection of capacitors from each of the power supply pins to ground works best. A typical connection is shown in Figure 49. Smaller value capacitors offer better high frequency response where larger value electrolytics offer better low frequency performance. Paralleling different values and sizes of capacitors helps to ensure that the power supply pins are provided a low ac impedance across a wide band of frequencies. This is important for minimizing the coupling of noise into the amplifier. This can be especially important when the amplifier PSR is starting to roll off—the bypass capacitors can help lessen the degradation in PSR performance. Starting directly at the ADA4841-1/ADA4841-2 power supply pins, the smallest value capacitor should be placed on the same side of the board as the amplifier, and as close as possible to the amplifier power supply pin. The ground end of the capacitor should be connected directly to the ground plane. Keeping the capacitors’ distance short but equal from the load is important and can improve distortion performance. This process should be repeated for the next largest value capacitor. It is recommended that a 0.1 µF ceramic 0508 case be used. The 0508 case size offers low series inductance and excellent high frequency performance. A 10 µF electrolytic capacitor should be placed in parallel with the 0.1 µF capacitor. Depending on the circuit parameters, some enhancement to performance can be realized by adding additional capacitors. Each circuit is different and should be individually analyzed for optimal performance. |
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