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ICS853S031I Datasheet(PDF) 12 Page - Renesas Technology Corp |
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ICS853S031I Datasheet(HTML) 12 Page - Renesas Technology Corp |
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12 / 23 page ![]() ICS853S031I Data Sheet LOW SKEW, 1-TO-9, DIFFERENTIAL-TO-2.5V, 3.3V LVPECL/ECL FANOUT BUFFER ICS853S031BYI REVISION A AUGUST 17, 2011 12 ©2011 Integrated Device Technology, Inc. Recommendations for Unused Output Pins Inputs: PCLK/nPCLK Inputs For applications not requiring the use of a differential input, both the PCLK and nPCLK pins can be left floating. Though not required, but for additional protection, a 1k Ω resistor can be tied from PCLK to ground. For applications CLK/nCLK Inputs For applications not requiring the use of the differential input, both CLK and nCLK can be left floating. Though not required, but for additional protection, a 1k Ω resistor can be tied from CLK to ground. LVCMOS Control Pins All control pins have internal pull-ups or pull-downs; additional resistance is not required but can be added for additional protection. A 1k Ω resistor can be used. Outputs: LVPECL Outputs All unused LVPECL outputs can be left floating. We recommend that there is no trace attached. Both sides of the differential output pair should either be left floating or terminated. Termination for 3.3V LVPECL Outputs The clock layout topology shown below is a typical termination for LVPECL outputs. The two different layouts mentioned are recommended only as guidelines. The differential outputs are low impedance follower outputs that generate ECL/LVPECL compatible outputs. Therefore, terminating resistors (DC current path to ground) or current sources must be used for functionality. These outputs are designed to drive 50 Ω transmission lines. Matched impedance techniques should be used to maximize operating frequency and minimize signal distortion. Figures 5A and 5B show two different layouts which are recommended only as guidelines. Other suitable clock layouts may exist and it would be recommended that the board designers simulate to guarantee compatibility across all printed circuit and clock component process variations. Figure 5A. 3.3V LVPECL Output Termination Figure 5B. 3.3V LVPECL Output Termination 3.3V V CC - 2V R1 50 Ω R2 50 Ω RTT Z o = 50Ω Z o = 50Ω + _ RTT = * Z o 1 ((V OH + VOL) / (VCC – 2)) – 2 3.3V LVPECL Input R1 84 Ω R2 84 Ω 3.3V R3 125 Ω R4 125 Ω Z o = 50Ω Z o = 50Ω LVPECL Input 3.3V 3.3V + _ |
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