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AN2797 Datasheet(PDF) 19 Page - STMicroelectronics |
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AN2797 Datasheet(HTML) 19 Page - STMicroelectronics |
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19 / 23 page ![]() AN2797 Using an external clock Doc ID 14841 Rev 1 19/23 Figure 7. External clock connection to SPEAr600 C1 is optional and may be needed for clock sources with extremely fast edges and is in the range of 10 pF to 33 pF. Some configurations may find that only R1 and R3 are needed (R2 = 0 Ohm). The clock source IC and the resistor network should be placed as close to SPEAr600 as practical to improve signal quality. The resistor values depend on Ro (the output impedance of the clock source), the rise/fall time of the clock source, and the characteristic impedance and length of the transmission lines. Because every application has different variables, a single set of resistor values cannot apply to every situation. The resistor values are sensitive to Ro, which may not be known accurately from data sheets. Some experimentation may be necessary to arrive at suitable values and Spice simulations are recommended. Table 6 lists values that can be used to start evaluation. These are examples of resistor network values with different output impedances of the clock source. Simulation and measurement of the actual circuit is strongly recommended. 5.0.3 TDR test traces Test traces should be add to all PCB designs on all signal layers. A single trace of nominal impedance between 8 to 15 cm long on each signal layer (it does not have to be straight) is simple to add to all designs and can always be placed where it does not impact the functional design, usually along the board perimeter. Include a test point pattern that matches your TDR probe. The test traces are invaluable to validate PCB impedance parameters. 5.0.4 Layer order check A visual feature consisting of stair step numbered windows to verify layer order should be included in all PCB layouts. This is most commonly located along one edge of the board. Table 6. Examples of resistor network values Ro R1 R2 R3 Units 50 56 0 330 Ohms 50 56 56 330 Ohms 25 47 47 220 Ohms 15 56 56 220 Ohms |
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