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MAX3291CSD Datasheet(PDF) 13 Page - Maxim Integrated Products |
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MAX3291CSD Datasheet(HTML) 13 Page - Maxim Integrated Products |
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13 / 16 page ![]() RS-485/RS-422 Transceivers with Preemphasis for High-Speed, Long-Distance Communication ______________________________________________________________________________________ 13 DI RO RE Z Z Z Y B A YB A RE RE RO RO DI DI DE DE DE D D R R Y B A R = ZO R = ZO D R MAX3291 MAX3292 Figure 19. Typical Half-Duplex RS-485 Network 3) Don’t overload the cable with too many receivers. Even though the MAX3291/MAX3292 receives pre- sent only 1/4-unit load, placing 128 receivers on the cable will attenuate the signal if spaced out along the cable and, in addition, cause reflections if clumped in one spot. The MAX3291/MAX3292 suc- cessfully drive the cables to correct RS-485/RS-422 levels with 128 receivers, but the preemphasis effect is significantly diminished. The MAX3291/ MAX3292 are centered for a load imped- ance of 54 Ω, which corresponds to the parallel combina- tion of the cable impedance and termination resistors. If your cable impedance deviates somewhat from this value, you still get the preemphasis effect (although the ideal preemphasis time, tPRE, may need adjustment). However, if your cable impedance is significantly differ- ent, the preemphasis ratio DPER changes, resulting in significantly less preemphasis. Determine the preempha- sis ratio versus load by referring to the Driver Differential Output Voltage vs. RDIFF graph in the Typical Operating Characteristics. Read the strong and normal levels from the graph (remember that the horizontal units are half your cable impedance) and divide the two numbers to get DPER (DPER = VSTRONG / VNORMAL = VODP / VOD). Figures 19 and 20 show typical network application cir- cuits with proper termination. Preemphasis at Low Data Rates (MAX3292) At low data rates (<1Msps), preemphasis operation is not guaranteed because it is highly dependent on the system power-supply noise. Minimize this noise by increasing bypass capacitance and using a power supply with a fast transient response. R = ZO R = ZO R D RO RE DE DI A B Y R = ZO R = ZO DI DI DI RO RO RO DE DE DE RE RE RE Z Z Z Z Y Y Y AA A BB B D D D R R R MAX3291 MAX3292 NOTE: RE AND DE ON. Figure 20. Typical Full-Duplex RS-485 Network |
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