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AM26C31CN Datasheet(PDF) 5 Page - Texas Instruments |
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AM26C31CN Datasheet(HTML) 5 Page - Texas Instruments |
5 / 18 page AM26C31 QUADRUPLE DIFFERENTIAL LINE DRIVER SLLS103J − DECEMBER 1990 − REVISED NOVEMBER 2003 5 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 electrical characteristics over recommended ranges of supply voltage and operating free-air temperature (unless otherwise noted) PARAMETER TEST CONDITIONS AM26C31C AM26C31I UNIT PARAMETER TEST CONDITIONS MIN TYP† MAX UNIT VOH High-level output voltage IO = −20 mA 2.4 3.4 V VOL Low-level output voltage IO = 20 mA 0.2 0.4 V |VOD| Differential output voltage magnitude RL = 100 Ω, See Figure 1 2 3.1 V ∆|VOD| Change in magnitude of differential output voltage‡ RL = 100 Ω, See Figure 1 ±0.4 V VOC Common-mode output voltage RL = 100 Ω, See Figure 1 3 V ∆|VOC| Change in magnitude of common-mode output voltage‡ RL = 100 Ω, See Figure 1 ±0.4 V II Input current VI = VCC or GND ±1 µA IO(off) Driver output current with power off VCC = 0 VO = 6 V 100 A IO(off) Driver output current with power off VCC = 0 VO = −0.25 V −100 µA IOS Driver output short-circuit current VO = 0 −30 −150 mA IOZ High-impedance off-state output current VO = 2.5 V 20 A IOZ High-impedance off-state output current VO = 0.5 V −20 µA VI = 0 V or 5 V 100 µA ICC Quiescent supply current IO = 0 VI = 2.4 V or 0.5 V, 1.5 3 mA ICC Quiescent supply current IO = 0 I or 0.5 V, See Note 4 1.5 3 mA Ci Input capacitance 6 pF † All typical values are at VCC = 5 V and TA = 25°C. ‡ ∆|VOD| and ∆|VOC| are the changes in magnitude of VOD and VOC, respectively, that occur when the input is changed from a high level to a low level. NOTE 4: This parameter is measured per input. All other inputs are at 0 or 5 V. switching characteristics over recommended ranges of supply voltage and operating free-air temperature (unless otherwise noted) PARAMETER TEST CONDITIONS AM26C31C AM26C31I UNIT PARAMETER TEST CONDITIONS MIN TYP† MAX UNIT tPLH Propagation delay time, low- to high-level output S1 is open, See Figure 2 3 7 12 ns tPHL Propagation delay time, high- to low-level output S1 is open, See Figure 2 3 7 12 ns tsk(p) Pulse skew time (|tPLH − tPHL|) S1 is open, See Figure 2 0.5 4 ns tr(OD), tf(OD) Differential output rise and fall times S1 is open, See Figure 3 5 10 ns tPZH Output enable time to high level S1 is closed, See Figure 4 10 19 ns tPZL Output enable time to low level S1 is closed, See Figure 4 10 19 ns tPHZ Output disable time from high level S1 is closed, See Figure 4 7 16 ns tPLZ Output disable time from low level S1 is closed, See Figure 4 7 16 ns Cpd Power dissipation capacitance (each driver) (see Note 5) S1 is open, See Figure 2 170 pF † All typical values are at VCC = 5 V and TA = 25°C. NOTE 5: Cpd is used to estimate the switching losses according to PD = Cpd × VCC2 × f, where f is the switching frequency. |
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