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ADCLK846/PCBZ 数据表(PDF) 14 Page - Analog Devices |
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ADCLK846/PCBZ 数据表(HTML) 14 Page - Analog Devices |
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14 / 16 page ![]() ADCLK846 Rev. A | Page 14 of 16 Termination at the far end of the PCB trace is a second option. The CMOS outputs of the ADCLK846 do not supply enough current to provide a full voltage swing with a low impedance resistive, far-end termination, as shown in Figure 27. Match the far-end termination network to 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. CMOS CMOS 10Ω 50Ω 100Ω 100Ω VS Figure 27. CMOS Output with Far-End Termination Because of the limitations of single-ended CMOS clocking, consider using differential outputs when driving high speed signals over long traces. The ADCLK846 offers LVDS outputs that are better suited for driving long traces where the inherent noise immunity of differential signaling provides superior performance for clocking converters. INPUT TERMINATION OPTIONS For single-ended operation, always bypass unused input to GND as shown in Figure 31. Figure 32 illustrates the use of the VREF to provide low imped- ance termination into VS/2. In addition, Figure 32 shows a way to negate the 30 mV input offset with external resistor values. For example, use 1.8 V CMOS with long traces to provide far- end termination. 100Ω CLK CLK 100Ω CLK CLK Figure 28. Typical AC-Coupled or DC-Coupled LVDS or HSTL Configurations (see Table 8) CLK CLK CLK CLK VCC VCC Figure 29. Typical AC-Coupled or DC-Coupled CML Configurations (see Table 8 for CML Coupling Limitations) CLK CLK 50Ω 50Ω VCC – 2V CLK CLK 50Ω 50Ω VCC – 2V Figure 30. Typical AC-Coupled or DC-Coupled LVPECL Configurations (see Table 8 for LVPECL DC Coupling Limitations) CLK CLK CLK CLK CLK CLK Figure 31. Typical 1.8 V CMOS Configurations for Short Trace Lengths (see Table 8 for CMOS compatibility) CLK CLK VREF Figure 32. Use of the VREF to Provide Low Impedance Termination into VS/2 |
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