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SN65LVCP408PAPT Datasheet(PDF) 6 Page - Texas Instruments |
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SN65LVCP408PAPT Datasheet(HTML) 6 Page - Texas Instruments |
6 / 25 page ELECTRICAL CHARACTERISTICS V ODB(PP) V ODPE(PP) SN65LVCP408 SLLS842 – JUNE 2009....................................................................................................................................................................................................... www.ti.com over operating free-air temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP(1) MAX UNIT DIFFERENTIAL INPUTS Positive going differential VIT+ 50 mV input high threshold Negative going differential VIT– –50 mV input low threshold A(EQ) Equalizer gain at 1.875 GHz (EQ=1) 9 dB Termination resistance, RT(D) 80 100 120 Ω differential Open-circuit Input voltage VBB AC-coupled inputs 1.6 V (input self-bias voltage) Biasing network dc R(BBDC) 30 k Ω impedance 375 MHz 42 Biasing network ac R(BBAC) Ω impedance 2.125 GHz 8.4 DIFFERENTIAL OUTPUTS VODH High-level output voltage 650 mVPP VODL Low-level output voltage –650 mVPP RL = 100 Ω ±1%, Pre-Emph=0 dB Output differential voltage VODB 1000 1300 1500 mVPP without preemphasis(2) VOCM Output common mode voltage 1.8 V Change in steady-state See Figure 2 ΔVOC(SS) common-mode output voltage 1 mV between logic states Output preemphasis voltage 0 ratio, 3 RL = 100 Ω±1%; x = L or S; V(PE) dB 6 See Figure 3 10 Output preemphasis is set to 10 dB during test Preemphasis duration t(PRE) Measured with a 100-MHz clock signal; 175 ps measurement RL = 100 Ω ±1%, See Figure 4 Differential on-chip termination between OUT+ and ro Output resistance 100 Ω OUT– CONTROL INPUTS IIH High-level Input current VIN = VCC 5 µA IIL Low-level Input current VIN = GND -125 -90 µA R(PU) Pullup resistance 35 k Ω POWER CONSUMPTION PD Device power dissipation All outputs terminated 100 Ω 1.52 W PRBS 27-1 Device power dissipation in PZ All outputs in 3-state pattern at 4.25 864 mW 3-State Gbps ICC Device current consumption All outputs terminated 100 Ω 440 mA (1) All typical values are at TA = 25°C and VCC = 3.3 V supply unless otherwise noted. They are for reference purposes and are not production tested. (2) Differential output voltage V(ODB) is defined as | OUT+ – OUT– |. 6 Submit Documentation Feedback Copyright © 2009, Texas Instruments Incorporated Product Folder Link(s): SN65LVCP408 |
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