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ADA4860-1YRJZ-R21 数据表(PDF) 17 Page - Analog Devices |
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ADA4860-1YRJZ-R21 数据表(HTML) 17 Page - Analog Devices |
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17 / 21 page ![]() ADA4860-1 Rev. 0 | Page 16 of 20 OPTIMIZING FLATNESS AND BANDWIDTH When using the ADA4860-1, a variety of circuit conditions and parasitics can affect peaking, gain flatness, and −3 dB bandwidth. This section discusses how the ADA4860-1 small signal responses can be dramatically altered with basic circuit changes and added stray capacitances, see the Layout and Circuit Board Parasitics section for more information. Particularly with low closed-loop gains, the feedback resistor (Rf) effects peaking and gain flatness. However, with gain = +1, −3 dB bandwidth varies slightly, while gain = +2 has a much larger variation. For gain = +1, Figure 56 shows the effect that various feedback resistors have on frequency response. In Figure 56, peaking is wide ranging yet −3 dB bandwidths vary by only 6%. In this case, the user must pick what is desired: more peaking or flatter bandwidth. Figure 57 shows gain = +2 bandwidth and peaking variations vs. RF and RL. Bandwidth delta vs. RL increase was approximately 17%. As RF is reduced from 560 Ω to 301 Ω, the −3 dB bandwidth changes 49%, with excessive compromises in peaking, see Figure 57. For more gain = +2 bandwidth variations vs. RF, see Figure 10 and Figure 13. 2 –6 –5 –4 –3 –2 –1 0 1 1 100 10 10000 1000 FREQUENCY (MHz) VS = ±5V G = +1 VOUT = 0.1V p-p RL = 100Ω RF = 560Ω RF = 680Ω RF = 910Ω RF = 1.5kΩ Figure 56. Small Signal Frequency Response vs. RF 2 –6 –5 –4 –3 –2 –1 0 1 1 100 10 1000 FREQUENCY (MHz) VS = ±5V G = +2 VOUT = 0.1V p-p RG = RF RF = 301Ω, RL = 100Ω RF = 560Ω, RL = 100Ω RF = 560Ω, RL = 1kΩ Figure 57. Small Signal Frequency Response vs. RF vs. RL The impact of resistor case sizes was observed using the circuit drawn in Figure 58. The types and sizes chosen were 0402 case sized thin film and 1206 thick film. All other measurement conditions were kept constant except for the case size and resistor composition. ADDED CLOAD EXAMPLE RG 49.9Ω 49.9Ω + – 50Ω RF ADDED CJ EXAMPLE DASH LINE IS PLANE CLEAR OUT AREA (EXCEPT SUPPLY PINS) DURING PC LAYOUT. Figure 58. Noninverting Gain Setup for Illustration of Parasitic Effects, 50 Ω System, RL = 100 Ω In Figure 59, a slight −3 dB bandwidth delta of approximately +10% can be seen going from a small-to-large case size. The increase in bandwidth with the larger 1206 case size is caused by an increase in parasitic capacitance across the chip resistor. 1 –6 –5 –4 –3 –2 –1 0 1 100 10 1000 FREQUENCY (MHz) VS = ±5V G = +2 VOUT = 0.1V p-p RG = RF = 560Ω RL = 100Ω 1206 RESISTOR SIZE 0402 RESISTOR SIZE Figure 59. Small Signal Frequency Response vs. Resistor Size |
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