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SN65LVDS16DRFR Datasheet(PDF) 4 Page - Texas Instruments |
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SN65LVDS16DRFR Datasheet(HTML) 4 Page - Texas Instruments |
4 / 15 page www.ti.com SWITCHING CHARACTERISTICS SN65LVDS16, SN65LVP16 SN65LVDS17, SN65LVP17 SLLS625B – SEPTEMBER 2004 – REVISED NOVEMBER 2005 ELECTRICAL CHARACTERISTICS (continued) over recommended operating conditions (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP(1) MAX UNIT SN65LVP16/17 Y AND Z OUTPUT CHARACTERISTICS VOYH or High-level output voltage VCC– 1.05 VCC– 0.82 VOZH 3.3 V; 50 Ω from Y and Z to VCC– 2 V VOYL or Low-level output voltage VCC– 1.83 VCC– 1.57 VOZL V VOYL or 2.5 V; 50 Ω from Y and Z Low-level output voltage VCC– 1.88 VCC– 1.57 VOZL to VCC– 2 V Differential output voltage magnitude, |VOD| 0.6 0.8 1 |VOH– VOL| IOYZ or IOZZ High-impedance output current EN at VCC, VO = 0 V or VCC –1 1 µA Q OUTPUT CHARACTERISTICS (see Figure 1) VOH High-level output voltage No load VCC– 0.94 V GC Tied to GND, No load VCC– 1.22 VOL Low-level output voltage GC Open, No load VCC– 1.52 V GC Tied to VCC, No load VCC– 1.82 GC Tied to GND 300 VO(pp) Peak-to-peak output voltage GC Open 575 mV GC Tied to VCC 860 over recommended operating conditions (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP(1) MAX UNIT A to Q 340 460 tPD Propagation delay time, tPLH or tPHL D to Y or Z See Figure 4 460 630 ps tSK(P) Pulse skew, |tPLH– tPHL| 20 VCC = 3.3 V 80 tSK(PP) Part-to-part skew(2) ps VCC = 2.5 V 130 tr 20%-to-80% differential signal rise time 85 140 ps See Figure 4 tf 20%-to-80% differential signal fall time 85 140 ps tjit(per) RMS period jitter(3) 2 3 2-GHz 50%-duty-cycle square-wave input, ps See Figure 5 tjit(cc) Peak cycle-to-cycle jitter(4) 15 23 tjit(ph) Intrinsic phase jitter 2 GHz 0.11 ps Propagation delay time, tPHZ 30 high-level-to-high-impedance output Propagation delay time, tPLZ 30 low-level-to-high-impedance output See Figure 6 ns Propagation delay time, tPZH 30 high-impedance-to-high-level output Propagation delay time, tPZL 30 high-impedance-to-low-level output (1) Typical values are at room temperature and with a VCC of 3.3 V. (2) Part-to-part skew is the magnitude of the difference in propagation delay times between any specified terminals of two devices when both devices operate with the same supply voltages, at the same temperature, and have identical packages and test circuits. (3) Period jitter is the deviation in cycle time of a signal with respect to the ideal period over a random sample of 100,000 cycles. (4) Cycle-to-cycle jitter is the variation in cycle time of a signal between adjacent cycles, over a random sample of 1,000 adjacent cycle pairs. 4 |
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