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AD9575 Datenblatt(PDF) 13 Page - Analog Devices |
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AD9575 Datenblatt(HTML) 13 Page - Analog Devices |
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13 / 16 page ![]() AD9575 Rev. 0 | Page 13 of 16 3.3V LVPECL DIFFERENTIAL (COUPLED) 3.3V LVPECL 100Ω 0.1nF 0.1nF 200Ω 200Ω Figure 19. LVPECL with Parallel Transmission Line LVDS CLOCK DISTRIBUTION The AD9575 is also available with low voltage differential signaling (LVDS) outputs. LVDS uses a current mode output stage with a factory programmed current level. The normal value (default) for this current is 3.5 mA, which yields a 350 mV output swing across a 100 Ω resistor. The LVDS outputs meet or exceed all ANSI/TIA/EIA-644 specifications. A recommended termination circuit for the LVDS outputs is shown in Figure 20. 50Ω 50Ω LVDS LVDS 100Ω Figure 20. LVDS Output Termination See the AN-586 Application Note on the Analog Devices website at www.analog.com for more information about LVDS. LVCMOS CLOCK DISTRIBUTION The AD9575 provides a 33.33 or 62.5 MHz clock output, which is a dedicated LVCMOS level. Whenever single-ended LVCMOS clocking is used, some of the following general guidelines should be followed. Point-to-point nets should be designed such that a driver has one receiver only on the net, if possible. This allows for simple termination schemes and minimizes ringing due to possible mismatched impedances on the net. Series termination at the source is generally required to provide transmission line matching and/or to reduce current transients at the driver (see Figure 21). The value of the resistor is dependent on the board design and timing requirements (typically 10 Ω to 100 Ω is used). LVCMOS outputs are limited in terms of the capacitive load or trace length that they can drive. Typically, trace lengths less than 6 inches are recommended to preserve signal rise/fall times and preserve signal integrity. 10Ω MICROSTRIP GND 5pF 60.4Ω 1.0 INCH CMOS Figure 21. Series Termination of LVCMOS Output Termination at the far end of the PCB trace is a second option. The LVCMOS output of the AD9575 does not supply enough current to provide a full voltage swing with a low impedance resistive, far-end termination, as shown in Figure 22. The far-end termination network should match the PCB trace impedance and provide the desired switching point. The reduced signal swing may still meet receiver input requirements in some applications. This can be useful when driving long trace lengths on less critical nets. 50Ω 10Ω VPULLUP = 3.3V LVCMOS 3pF 100Ω 100Ω Figure 22. LVCMOS Output with Far-End Termination TYPICAL APPLICATIONS 1 2 3 4 5 6 7 8 VDDA VDDX XO1 GNDA GNDX XO2 GNDA VDDA 16 15 14 13 12 11 10 9 GND LVDS/LVPECL OUT LVDS/LVPECL OUT CMOS OUT/SEL1 GND CMOS VDD_CMOS VDD SEL0 AD9575 50Ω RT = 100Ω 50Ω 1nF 0.1µF 0.1µF 0.1µF VS VS VS 0.1µF 0.1µF Cx Cx VS VS Figure 23. Typical Application (in LVDS configuration) |
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