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NL7SZ18DFT2ONN/a24000avai1:2 Digital Demultiplexer Non-Inverting, 3 State


NL7SZ18DFT2 ,1:2 Digital Demultiplexer Non-Inverting, 3 StateELECTRICAL CHARACTERISTICST = −40C toA85CT = 25CAMin Typ Max Min MaxSymbol Parameter Condition V ..
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NL7SZ18DFT2
1:2 Digital Demultiplexer Non-Inverting, 3 State
ELECTRICAL CHARACTERISTICST = −40C toA85CT = 25CAMin Typ Max Min MaxSymbol Parameter Condition V Unit FigureCC1.8  0.15 2.0 6.3 10.1 2.0 10.5C = 15 pFL2.5  0.2 1.0 3.6 5.7 1.0 6.0 FiguresR = 1.0 M nSD3.3  0.3 0.8 2.7 4.0 0.8 4.3 1 & 3S = OPEN5.0  0.5 0.5 2.0 3.1 0.5 3.3tPropagation Delay o aga o e ayPLH PLHA to Y At Y or Y Yt 0 1PHLC = 50 pF 3.3  0.3 1.2 3.4 4.9 1.2 5.4LFigures5.0  0.5 0.8 2.5 3.9 0.8 4.2R = 500  nSD1 & 3S = OPENC = 50 pF 1.8  0.15 3.0 6.9 12 3.0 12.5L2.5  0.2 1.8 4.2 6.8 1.8 7.3R , R = 500 D Ut3.3  0.3 1.2 3.2 5.0 1.2 5.5 FiguresPZLS = GND for t nSPZH5.0  0.5 0.8 2.5 4.0 0.8 4.3 1 & 3tPZHS = V for tIN PZLV = 2 x VI CCOutput Enable T Output Enable Time imeC = 50 pF 1.8  0.15 2.5 6.0 10 2.5 10.5L2.5  0.2 1.5 4.0 6.8 1.5 7.1R , R = 500 D DtPLZ 3.3  0.3 0.8 2.9 4.9 0.8 5.3 FiguresS = GND for t nSPHZ5.0  0.5 0.3 1.8 3.5 0.3 3.7 1 & 3tPHZS = V for tIN PLZV = 2 x VI CCC Input Capacitance OPEN 2.5INpF3.3 4.0C Output CapacitanceOUTPower Dissipation 3.3 16C Note 5 pF Figure 2PDCapacitance 5.0 19.55. C is defined as the value of the internal equivalent capacitance which is derived from dynamic operating current consumption (I ) atPDCCDno output loading and operating at 50% duty cycle (see Figure 2). C is related to I dynamic operating current by the expression:PD CCDI = (C ) (V ) (f ) + (I static).CCD PD CC IN CCDVIOPENGND VCCARUOUTPUTAASINPUT OUTPUTRDCLFigure 1. AC Test Circuit Figure 2. I Test CircuitCCDC Includes Load and Stray Capacitance Input = AC Waveform; t = t = 1.8 nSL r fInput PRR = 1.0 MHz; t = 500 nS PRR = 10 MHz; Duty Cycle = 50%WS Input = GND or x
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