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AD8132ARZ-R7 Folha de dados(PDF) 26 Page - Analog Devices |
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AD8132ARZ-R7 Folha de dados(HTML) 26 Page - Analog Devices |
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26 / 33 page ![]() AD8132 Rev. I | Page 25 of 32 LAYOUT, GROUNDING, AND BYPASSING As a high speed part, the AD8132 is sensitive to the printed circuit board (PCB) environment in which it operates. Realizing its superior specifications requires attention to various details of good high speed PCB design. The first requirement is a good solid ground plane that covers as much of the board area around the AD8132 as possible. The only exception to this is that the two input pins (Pin 1 and Pin 8) are kept a few millimeters from the ground plane and that ground be removed from inner layers and the opposite side of the board under the input pins. This minimizes the stray capacitance on these nodes and helps preserve the gain flatness vs. the frequency. Bypass the power supply pins as close as possible to the device to the nearby ground plane and use good high frequency ceramic chip capacitors. Do this bypassing with a capacitance value of 0.01 μF to 0.1 μF for each supply. Farther away, provide low frequency bypassing with 10 μF tantalum capacitors from each supply to ground. Keep the signal routing short and direct to avoid parasitic effects. Wherever there are complementary signals, a symmetrical layout with matched lengths must be provided to the extent possible to maximize the balance performance. When running differential signals over a long distance, place the traces on the PCB close together or twist together any differential wiring to minimize the area of the loop that is formed. This reduces the radiated energy and makes the circuit less susceptible to interference. CIRCUITS RF1 + RF2 RG1 RG2 Figure 67. Typical Four-Resistor Feedback Circuit + RF2 RG2 VIN Figure 68. Typical Circuit with β1 = 0 RF1 + RG1 Figure 69. Typical Circuit with β2 = 1 + VIN Figure 70. G = +2 Circuit with β1 = 0, Without Resistors RF1 + RG1 VIN Figure 71. Typical Circuit with β2 = 0 |
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