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74HC_HCT4053 Datasheet(PDF) 16 Page - NXP Semiconductors |
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74HC_HCT4053 Datasheet(HTML) 16 Page - NXP Semiconductors |
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16 / 32 page ![]() 74HC_HCT4053 All information provided in this document is subject to legal disclaimers. © NXP B.V. 2012. All rights reserved. Product data sheet Rev. 8 — 19 July 2012 16 of 32 NXP Semiconductors 74HC4053; 74HCT4053 Triple 2-channel analog multiplexer/demultiplexer [1] tpd is the same as tPHL and tPLH. [2] ton is the same as tPZH and tPZL. [3] toff is the same as tPHZ and tPLZ. [4] CPD is used to determine the dynamic power dissipation (PD in W). PD = CPD VCC2 fi N + {(CL +Csw) VCC2 fo} where: fi = input frequency in MHz; fo = output frequency in MHz; N = number of inputs switching; {(C L +Csw) VCC 2 f o} = sum of outputs; CL = output load capacitance in pF; Csw = switch capacitance in pF; VCC = supply voltage in V. toff turn-off time E to Vos; RL =1 k; see Figure 14 [3] VCC = 2.0 V; VEE =0 V - - 315 ns VCC = 4.5 V; VEE =0 V - - 63 ns VCC = 6.0 V; VEE =0 V - - 54 ns VCC = 4.5 V; VEE = 4.5 V - - 44 ns Sn to Vos; RL =1 k; see Figure 14 [3] VCC = 2.0 V; VEE =0 V - - 315 ns VCC = 4.5 V; VEE =0 V - - 63 ns VCC = 6.0 V; VEE =0 V - - 54 ns VCC = 4.5 V; VEE = 4.5 V - - 44 ns Table 9. Dynamic characteristics for 74HC4053 …continued GND = 0 V; tr =tf =6ns; CL = 50 pF; for test circuit see Figure 15. Vis is the input voltage at a nYn or nZ terminal, whichever is assigned as an input. Vos is the output voltage at a nYn or nZ terminal, whichever is assigned as an output. Symbol Parameter Conditions Min Typ Max Unit Table 10. Dynamic characteristics for 74HCT4053 GND = 0 V; tr =tf =6ns; CL = 50 pF; for test circuit see Figure 15. Vis is the input voltage at a nYn or nZ terminal, whichever is assigned as an input. Vos is the output voltage at a nYn or nZ terminal, whichever is assigned as an output. Symbol Parameter Conditions Min Typ Max Unit Tamb =25 C tpd propagation delay Vis to Vos; RL = ; see Figure 13 [1] VCC = 4.5 V; VEE =0 V - 5 12 ns VCC = 4.5 V; VEE = 4.5 V - 4 8 ns ton turn-on time E to Vos; RL =1 k; see Figure 14 [2] VCC = 4.5 V; VEE = 0 V - 27 48 ns VCC = 5.0 V; VEE =0 V; CL = 15 pF - 23 - ns VCC = 4.5 V; VEE = 4.5 V - 16 34 ns Sn to Vos; RL =1 k; see Figure 14 [2] VCC = 4.5 V; VEE = 0 V - 25 48 ns VCC = 5.0 V; VEE =0 V; CL = 15 pF - 21 - ns VCC = 4.5 V; VEE = 4.5 V - 16 34 ns |
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