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VC-830 Datasheet(PDF) 8 Page - Microchip Technology |
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VC-830 Datasheet(HTML) 8 Page - Microchip Technology |
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8 / 18 page ![]() VC-830 DS20006510B-page 8 2021 Microchip Technology Inc. 3.2 LVDS Application Diagrams One of the most important considerations is terminating the Output and Complementary Outputs equally. An unused output should not be left unterminated because if one of the two outputs is left open, it will result in excessive jitter on both. PCB layout must take this and 50Ω impedance matching into account. Load matching and power supply noise are the main contributors to jitter related problems. FIGURE 3-3: LVDS-to-LVDS Connection, Internal 100Ω Resistor. Some LVDS structures have an internal 100Ω resistor on the input and do not need additional components. AC blocking capacitors can be used if the DC levels are incompatible. FIGURE 3-4: LVDS-to-LVDS Connection. Some input structures may not have an internal 100Ω resistor on the input and will need an external 100Ω resistor located at the receiver for impedance matching. Figure 3-4 is optimized to reduce common mode noise. Additionally, the input may have an internal DC bias that may not be compatible with LVDS levels. AC blocking capacitors, such as 0.1 µF, should be used in this case. |
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