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SN75LVCP600DRFR Datasheet(PDF) 8 Page - Texas Instruments |
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SN75LVCP600DRFR Datasheet(HTML) 8 Page - Texas Instruments |
8 / 24 page SN75LVCP600DRF SLLSE63 – DECEMBER 2010 www.ti.com ELECTRICAL CHARACTERISTICS (continued) over recommended operating conditions (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNITS f = 150 MHz–300 MHz 30 41 f = 300 MHz–600 MHz 30 41 f = 600 MHz–1.2 GHz 20 34 IBRX Impedance balance f = 1.2 GHz–2.4 GHz 10 24 dB f = 2.4 GHz–3.0 GHz 10 26 f = 3.0 GHz–5.0 GHz 4 18 f = 5.0 GHz–6.5 GHz 4 18 Rise times and fall times measured between 20% and T20-80RX Rise/fall time 80% of the signal. SATA 6 Gbps speed measured 1" from 62 75 ps device pin Difference between the single-ended mid-point of the RX+ TskewRX Differential skew signal rising/falling edge, and the single-ended mid-point 30 ps of the RX– signal falling/rising edge TRANSMITTER AC/DC ZdiffTX Pair differential impedance 85 100 122 Ω ZSETX Single-ended input impedance 40 Ω Transient voltages on the serial data bus during power VTXtrans Sequencing transient voltage –1.2 0.3 1.2 V sequencing (lab load) f = 150 MHz–300 MHz 13 22 f = 300 MHz–600 MHz 8 21 RLDiffTX Differential mode return loss f = 600 MHz–1.2 GHz 6 19 dB f = 1.2 GHz–2.4 GHz 6 14 f = 2.4 GHz–3.0 GHz 3 14 TXDiffRLSlope Differential mode RL slope f = 300 MHz – 3.0 GHz (see Figure 6) –13 dB/dec f = 150 MHz–300 MHz 5 20 f = 300 MHz–600 MHz 5 16 RLCMTX Common-mode return loss f = 600 MHz–1.2 GHz 2 13 dB f = 1.2 GHz–2.4 GHz 1 8 f = 2.4 GHz–3.0 GHz 1 8 f = 150 MHz–300 MHz 30 38 f = 300 MHz–600 MHz 30 38 f = 600 MHz–1.2 GHz 20 33 IBTX Impedance balance f = 1.2 GHz–2.4 GHz 10 25 dB f = 2.4 GHz–3.0 GHz 10 25 f = 3.0 GHz–5.0 GHz 4 21 f = 5.0 GHz–6.5 GHz 4 21 Differential output voltage DiffVppTX f = 3.0 GHz (under no interconnect loss) 400 650 900 mV/ppd swing At 1.5 GHz 15 50 mVppd VCMAC_TX TX AC CM voltage At 3.0 GHz 10 26 dBmv (rms) At 6.0 GHz 12 30 VCMTX Common-mode voltage 1.70 V Rise times and fall times measured between 20% and T20-80TX Rise/Fall time 80% of the signal. At 6Gbps under no load conditions 44 58 85 ps measured at the pin Difference between the single-ended mid-point of the TX+ TskewTX Differential skew signal rising/falling edge, and the single-ended mid-point 2 20 ps of the TX– signal falling/rising edge, D1, D0 = VCC TxR/Flmb TX rise/fall imbalance At 3 Gbps 6% 20% TxAmplmb TX amplitude imbalance 1% 10% 8 Submit Documentation Feedback Copyright © 2010, Texas Instruments Incorporated Product Folder Link(s): SN75LVCP600DRF |
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