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ICS8745B 데이터시트(PDF) 9 Page - Integrated Circuit Systems |
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ICS8745B 데이터시트(HTML) 9 Page - Integrated Circuit Systems |
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9 / 15 page ![]() 8745BY www.icst.com/products/hiperclocks.html REV. B DECEMBER 2, 2004 9 Integrated Circuit Systems, Inc. ICS8745B 1:5 DIFFERENTIAL-TO-LVDS ZERO DELAY CLOCK GENERATOR FIGURE 4C. HIPERCLOCKS CLK/NCLK INPUT DRIVEN BY 3.3V LVPECL DRIVER FIGURE 4B. HIPERCLOCKS CLK/NCLK INPUT DRIVEN BY 3.3V LVPECL DRIVER FIGURE 4D. HIPERCLOCKS CLK/NCLK INPUT DRIVEN BY 3.3V LVDS DRIVER 3.3V R1 50 R3 50 Zo = 50 Ohm LVPECL Zo = 50 Ohm HiPerClockS CLK nCLK 3.3V Input R2 50 Zo = 50 Ohm Input HiPerClockS CLK nCLK 3.3V R3 125 R2 84 Zo = 50 Ohm 3.3V R4 125 LVPECL R1 84 3.3V DIFFERENTIAL CLOCK INPUT INTERFACE The CLK /nCLK accepts LVDS, LVPECL, LVHSTL, SSTL, HCSL and other differential signals. Both V SWING and VOH must meet the V PP and VCMR input requirements. Figures 4A to 4D show inter- face examples for the HiPerClockS CLK/nCLK input driven by the most common driver types. The input interfaces suggested FIGURE 4A. HIPERCLOCKS CLK/NCLK INPUT DRIVEN BY ICS HIPERCLOCKS LVHSTL DRIVER here are examples only. Please consult with the vendor of the driver component to confirm the driver termination requirements. For example in Figure 4A, the input termination applies for ICS HiPerClockS LVHSTL drivers. If you are using an LVHSTL driver from another vendor, use their termination recommendation. 1.8V R2 50 Input LVHSTL Driver ICS HiPerClockS R1 50 LVHSTL 3.3V Zo = 50 Ohm Zo = 50 Ohm HiPerClockS CLK nCLK Zo = 50 Ohm R1 100 3.3V LVDS_Driv er Zo = 50 Ohm Receiv er CLK nCLK 3.3V As in any high speed analog circuitry, the power supply pins are vulnerable to random noise. The ICS8745B provides sepa- rate power supplies to isolate any high switching noise from the outputs to the internal PLL. V DD, VDDA, and VDDO should be individually connected to the power supply plane through vias, and bypass capacitors should be used for each pin. To achieve optimum jitter performance, power supply isolation is required. Figure 3 illustrates how a 10 Ω resistor along with a 10μF and a .01μF bypass capacitor should be connected to each V DDA pin. POWER SUPPLY FILTERING TECHNIQUES FIGURE 3. POWER SUPPLY FILTERING 10 Ω V DDA 10 μF .01 μF 3.3V .01 μF V DD |
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