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SN65LVDS34 Datasheet(PDF) 5 Page - Texas Instruments |
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SN65LVDS34 Datasheet(HTML) 5 Page - Texas Instruments |
5 / 20 page SN65LVDS33, SN65LVDT33, SN65LVDS34, SN65LVDT34 HIGHSPEED DIFFERENTIAL RECEIVERS SLLS490B − MARCH 2001 − REVISED NOVEMBER 2004 5 WWW.TI.COM electrical characteristics over recommended operating conditions (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP† MAX UNIT VIT1 Positive-going differential input voltage threshold 50 VIT2 Negative-going differential input voltage threshold VIB = −4 V or 5 V, See Figures 1 and 2 −50 mV VIT3 Differential input failsafe voltage threshold See Table 1 and Figure 5 −32 −100 mV VID(HYS) Differential input voltage hysteresis, VIT1 − VIT2 50 mV VOH High-level output voltage IOH = −4 mA 2.4 V VOL Low-level output voltage IOL = 4 mA 0.4 V SN65LVDx33 G at VCC, No load, Steady-state 16 23 ICC Supply current SN65LVDx33 G at GND 1.1 5 mA ICC Supply current SN65LVDx34 No load, Steady-state 8 12 mA VI = 0 V, Other input open ±20 SN65LVDS VI = 2.4 V, Other input open ±20 A SN65LVDS VI = −4 V, Other input open ±75 µA II Input current (A or B inputs) VI = 5 V, Other input open ±40 II Input current (A or B inputs) VI = 0 V, Other input open ±40 SN65LVDT VI = 2.4 V, Other input open ±40 A SN65LVDT VI = −4 V, Other input open ±150 µA VI = 5 V, Other input open ±80 IID Differential input current SN65LVDS VID = 100 mV, VIC= −4 V or 5 V ±3 µA IID Differential input current (IIA − IIB) SN65LVDT VID = 200 mV, VIC= −4 V or 5 V 1.55 2.22 mA SN65LVDS VA or VB = 0 V or 2.4 V, VCC = 0 V ±20 II(OFF) Power-off input current SN65LVDS VA or VB = −4 or 5 V, VCC = 0 V ±50 A II(OFF) Power-off input current (A or B inputs) SN65LVDT VA or VB =0 V or 2.4 V, VCC = 0 V ±30 µA (A or B inputs) SN65LVDT VA or VB = −4 V or 5 V, VCC = 0 V ±100 IIH High-level input current (enables) VIH = 2 V 10 µA IIL Low-level input current (enables) VIL = 0.8 V 10 µA IOZ High-impedance output current −10 10 µA CI Input capacitance, A or B input to GND VI = 0.4 sin (4E6πt) + 0.5 V 5 pF † All typical values are at 25°C and with a 3.3 V supply. |
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