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SN74LVC2G66DCUT 数据表(PDF) 4 Page - Texas Instruments |
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SN74LVC2G66DCUT 数据表(HTML) 4 Page - Texas Instruments |
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4 / 19 page ![]() www.ti.com Electrical Characteristics Switching Characteristics SN74LVC2G66 DUAL BILATERAL ANALOG SWITCH SCES325H – JULY 2001 – REVISED JULY 2005 over recommended operating free-air temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS VCC MIN TYP(1) MAX UNIT IS = 4 mA 1.65 V 12.5 30 VI = VCC or GND, IS = 8 mA 2.3 V 9 20 ron On-state switch resistance VC = VIH Ω IS = 24 mA 3 V 7.5 15 (see Figure 1 and Figure 2) IS = 32 mA 4.5 V 6 10 IS = 4 mA 1.65 V 85 120(1) VI = VCC to GND, IS = 8 mA 2.3 V 22 30(1) ron(p) Peak on-state resistance VC = VIH Ω IS = 24 mA 3 V 12 20 (see Figure 1 and Figure 2) IS = 32 mA 4.5 V 7.5 15 IS = 4 mA 1.65 V 7 VI = VCC to GND, IS = 8 mA 2.3 V 5 Difference of on-state resistance ∆r on VC = VIH Ω between switches IS = 24 mA 3 V 3 (see Figure 1 and Figure 2) IS = 32 mA 4.5 V 2 VI = VCC and VO = GND or ±1 IS(off) Off-state switch leakage current VI = GND and VO = VCC, 5.5 V µA ±0.1(1) VC = VIL (see Figure 3) ±1 VI = VCC or GND, VC = VIH, VO = Open IS(on) On-state switch leakage current 5.5 V µA (see Figure 4) ±0.1(1) ±1 II Control input current VC = VCC or GND 5.5 V µA ±0.1(1) 10 ICC Supply current VC = VCC or GND 5.5 V µA 1(1) ∆I CC Supply-current change VC = VCC – 0.6 V 5.5 V 500 µA Cic Control input capacitance 5 V 3.5 pF Cio(off) Switch input/output capacitance 5 V 6 pF Cio(on) Switch input/output capacitance 5 V 14 pF (1) TA = 25°C over recommended operating free-air temperature range (unless otherwise noted) (see Figure 5) VCC = 1.8 V VCC = 2.5 V VCC = 3.3 V VCC = 5 V FROM TO ± 0.15 V ± 0.2 V ± 0.3 V ± 0.5 V PARAMETER UNIT (INPUT) (OUTPUT) MIN MAX MIN MAX MIN MAX MIN MAX tpd(1) A or B B or A 2 1.2 0.8 0.6 ns ten(2) C A or B 2.3 10 1.6 5.6 1.5 4.4 1.3 3.9 ns tdis(3) C A or B 2.5 10.5 1.2 6.9 2 7.2 1.1 6.3 ns (1) tPLH and tPHL are the same as tpd. The propagation delay is the calculated RC time constant of the typical on-state resistance of the switch and the specified load capacitance, when driven by an ideal voltage source (zero output impedance). (2) tPZL and tPZH are the same as ten. (3) tPLZ and tPHZ are the same as tdis. 4 |
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