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AD9696 Datasheet(PDF) 7 Page - Analog Devices |
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AD9696 Datasheet(HTML) 7 Page - Analog Devices |
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7 / 8 page ![]() AD9696/AD9698 –7– REV. B 2 AD9696 –IN +IN +VS 1– 40MHz LATCH ENABLE + – OSCILLATOR OUTPUT GROUND QOUT 2k Ω +VS 0.1µF (220pF for Freq. > 10MHz) 0.1µF FOR USE WITH OVERTONE CRYSTAL (VALUE DEPENDS ON FREQ.) 3 1 5 7 8 4 6 2k Ω 2k Ω QOUT –VS Figure 2. AD9696 Oscillator Circuit (Based on DIP Pinouts) When generating frequencies using a nonfundamental mode crystal, a choke and dc blocking capacitor are added. As an ex- ample, a 36 MHz oscillator can be achieved by using a 12 MHz crystal operating on its third overtone. To suppress oscillation at the 12 MHz fundamental, the value of the choke is chosen to provide a low reactive impedance at the fundamental frequency while maintaining a high reactive impedance at the desired out- put frequency (for 36 MHz operation, L = 1.8 µH). The shunt capacitor at the inverting input has a value of 220 pF for a stable 36 MHz frequency. LAYOUT CONSIDERATIONS When working with high speed circuits, proper layout is critical. Analog signal paths should be kept as short as possible and be properly terminated to avoid reflections. In addition, digital sig- nal paths should be kept short, and run lengths should be mat- ched to avoid propagation delay mismatch. All analog signals should be kept as far away from digital signal paths as possible; this reduces the amount of digital switching noise that might be capacitively coupled into the analog section of the circuit. In high speed circuits, layout of the ground circuit is the most important factor. A single, low impedance ground plane, on the component side of the board, will reduce noise in the circuit ground. It is especially important to maintain continuity of the ground plane under and around the AD9696 or AD9698. Sockets limit the dynamic performance of the device and should be used only for prototypes or evaluation. 8 7 6 5 4 3 2 1 AD9696 (8-PIN DIP) 0.1µF 0.1µF AD1 AD2 GND RESISTORS ARE 1k Ω ±5% – VS +VS 5µs –0.9V AD1 AD2 –0.9 V –1.7V –1.7V Burn-In Circuit |
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