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ADV7341 数据表(PDF) 74 Page - Analog Devices |
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ADV7341 数据表(HTML) 74 Page - Analog Devices |
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74 / 108 page ![]() ADV7340/ADV7341 Data Sheet Rev. C | Page 74 of 108 Figure 85. Example of Output Filter for HD, 4× Oversampling Figure 86. Output Filter Plot for SD, 16× Oversampling Figure 87. Output Filter Plot for ED, 8× Oversampling Figure 88. Output Filter Plot for HD, 4× Oversampling PRINTED CIRCUIT BOARD (PCB) LAYOUT The ADV7340/ADV7341 are highly integrated circuits containing both precision analog and high speed digital circuitry. They are designed to minimize interference effects on the integrity of the analog circuitry by the high speed digital circuitry. It is imperative that these same design and layout techniques be applied to the system-level design so that optimal performance is achieved. The layout should be optimized for lowest noise on the ADV7340/ADV7341 power and ground planes by shielding the digital inputs and providing good power supply decoupling. It is recommended to use a 4-layer printed circuit board with ground and power planes separating the signal trace layer and the solder side layer. Component Placement Component placement should be carefully considered to separate noisy circuits, such as clock signals and high speed digital circuitry, from analog circuitry. The external loop filter components and components connected to the COMP, VREF, and RSETx pins should be placed as close as possible to, and on the same side of the PCB as, the ADV7340/ ADV7341. Adding vias to the PCB to get the components closer to the ADV7340/ADV7341 is not recommended. It is recommended to place the ADV7340/ADV7341 as close as possible to the output connector, with the DAC output traces as short as possible. The termination resistors on the DAC output traces should be placed as close as possible to and on the same side of the PCB as the ADV7340/ADV7341. The termination resistors should overlay the PCB ground plane. DAC OUTPUT 390nH 33pF 33pF 75 Ω 500 Ω 300 Ω 75Ω BNC OUTPUT 500Ω 3 4 1 3 4 1 0 –80 –70 –60 –50 –40 –30 –20 –10 0 –30 –60 –90 –120 –150 –180 –210 –240 1M 10M 100M FREQUENCY (Hz) CIRCUIT FREQUENCY RESPONSE 1G GROUP DELAY (Seconds) PHASE (Degrees) MAGNITUDE (dB) 21n 18n 15n 12n 9n 6n 3n 0 24n 0 –10 –20 –30 –40 –50 –60 –70 –80 –90 1M 10M 100M 1G FREQUENCY (Hz) CIRCUIT FREQUENCY RESPONSE MAGNITUDE (dB) GROUP DELAY (Seconds) PHASE (Degrees) 320 240 160 80 0 –80 –160 –240 480 400 14n 12n 10n 8n 6n 4n 2n 0 18n 16n 0 –50 1 FREQUENCY (MHz) CIRCUIT FREQUENCY RESPONSE 10 100 –10 –20 –30 –40 200 –200 120 40 –40 –120 GROUP DELAY (Seconds) PHASE (Degrees) MAGNITUDE (dB) |
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