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MCIMX6D5DYM08AC Datasheet(PDF) 43 Page - Freescale Semiconductor, Inc |
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MCIMX6D5DYM08AC Datasheet(HTML) 43 Page - Freescale Semiconductor, Inc |
43 / 165 page Electrical Characteristics i.MX 6Dual/6Quad Automotive and Infotainment Applications Processors, Rev. 2.3 Freescale Semiconductor 43 4.7.3 LVDS I/O AC Parameters The differential output transition time waveform is shown in Figure 6. Figure 6. Differential LVDS Driver Transition Time Waveform Table 32 shows the AC parameters for LVDS I/O. 4.7.4 MLB 6-Pin I/O AC Parameters The differential output transition time waveform is shown in Figure 7. Single output slew rate, measured between Vol(ac) and Voh(ac) tsr Driver impedance = 34 2.5 — 5 V/ns Skew between pad rise/fall asymmetry + skew caused by SSN tSKD clk = 533 MHz —— 0.1 ns 1 Note that the JEDEC JESD79_3C specification supersedes any specification in this document. 2 Vid(ac) specifies the input differential voltage |Vtr-Vcp| required for switching, where Vtr is the “true” input signal and Vcp is the “complementary” input signal. The Minimum value is equal to Vih(ac) – Vil(ac). 3 The typical value of Vix(ac) is expected to be about 0.5 OVDD. and Vix(ac) is expected to track variation of OVDD. Vix(ac) indicates the voltage at which differential input signal must cross. Table 32. I/O AC Parameters of LVDS Pad Parameter Symbol Test Condition Min Typ Max Unit Differential pulse skew1 1 t SKD = | tPHLD –tPLHD |, is the magnitude difference in differential propagation delay time between the positive going edge and the negative going edge of the same channel. tSKD Rload = 100 , Cload = 2 pF — — 0.25 ns Transition Low to High Time2 2 Measurement levels are 20–80% from output voltage. tTLH —— 0.5 Transition High to Low Time2 tTHL —— 0.5 Operating Frequency f — — 600 800 MHz Offset voltage imbalance Vos — — — 150 mV Table 31. DDR I/O DDR3/DDR3L Mode AC Parameters1 (continued) Parameter Symbol Test Condition Min Typ Max Unit padp padn VDIFF 0V (Differential) VDIFF = {padp} - {padn} tTLH 20% 80% 20% 80% tTHL VOH VOL 0V 0V 0V |
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