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CMOS Logic Dual Analog Switch/Multiplexer Operating Voltage Range : 2V ~ 5.5V High Speed Operation Low ON Resistance MSOP-8A Package : tpd = 1.5ns TYP : Ron=22 TYP Low Power Consumption : 2A (max) Applications Palmtops Digital Equipment Description ML74WL4066SRG is Dual Analog Switch manufactured using silicon gate CMOS processes. The small quiescent current, which is one of the features of the CMOS logic, gives way to high speed operations which enables LS-TTL. With wave forming buffers connected internally, stabilized output can be achieved as the series offers high noise immunity. As the series is integrated into a mini molded, MSOP-8A package, high density mounting is possible. Features High Speed Operation : tpd = 1.5ns TYP (Vcc=5V) Operating Voltage Range: 2V ~ 5.5V Low Power Consumption: 2A (max) Low ON Resistance : 22 TYP Small Package : MSOP-8A Pin Configuration Function Control L H H=High level L=Low level State OFF ON Logic Diagram Rev. A, Oct 2005 Absolute Maximum Ratings Ta=-40C~85C PARAMETER SYMBOL RATINGS -0.5 ~ +6.0 -0.5 ~ +6.0 -0.5 ~ Vcc +0.5 20 20 25 50 300 -65 ~ +150 UNITS V V V mA mA mA mA mW C Power Supply Voltage Vcc Input voltage VCONT Output Voltage Vi/O Input Diode Current IIK Output Diode current IOK Switch Output Current Ii/O Vcc, GND Current ICC, IGND Power Dissipation (Ta=25C) Pd Storage Temperature Tstg Note: Voltage is all Ground standardized. Recommended Operating Conditions PARAMETER Supply Voltage Input Voltage Output Voltage Operating Temperature Input Rise / Fall Time SYMBOL Vcc VIN Vi/O Topr tr, tf CONDITIONS 2 ~ 5.5 0 ~ 5.5 0 ~ Vcc -40 ~ +85 0 ~ 200 (Vcc=3.3V) 0 ~ 100 (Vcc=5V) UNITS V V V C ns DC Electrical Characteristics PARAMETER "High" Level Control Input Voltage "Low" Level Control Input Voltage SYMBOL Vcc(V) 2.0 3.0 5.5 2.0 3.0 5.5 2.0 3.0 4.5 2.0 3.0 4.5 2.0 3.0 4.5 5.5 5.5 0~5.5 5.5 CONDITIONS MIN 1.5 2.1 3.85 Ta=25C Ta=-40~85C TYP MAX MIN MAX 1.5 2.1 3.85 0.5 0.5 0.9 0.9 1.65 1.65 130 350 550 22 50 65 12 25 35 23 50 65 14 30 40 10 20 25 13 35 55 3 6 8 2 4 6 0.1 0.1 0.1 2.0 1.0 1.0 1.0 20.0 UNIT S V VIH VIL V Peak ON Resistance RONmax ON Resistance RON(1) Switch ON Resistance Differential Power Off Leakage Current Power Off Leakage Current Control Input Current Quiscent Supply Current RON IS(OFF) IS(ON) ICONT Icc VCONT=VIH VIN=0~Vcc IIN/OUT=1mA VCONT= VIH VIN= GND or Vcc IIN/OUT=1mA VCONT= VIH VIN=0~Vcc IIN/OUT=1mA VCONT= VIL, VIN= Vcc or GND VCONT= VIH, VIN= Vcc or GND VIN=Vcc or GND VIN=Vcc or GND A A A A Rev. A, Oct 2005 Switching Electrical Characteristics Tr=tf=3ns PARAMETER SYMBOL CL Vcc(V) 2.0 3.3 5.0 2.0 3.3 5.0 2.0 3.3 5.0 2.0 3.3 5.0 2.0 3.3 5.0 2.0 3.3 5.0 3.0 CONDITIONS MIN Ta=25C Ta=-40~85C TYP MAX MIN MAX 2.5 12 15 2 4 5.5 1.5 3 4 4 20 23 3 6 8 2 5 6 8.5 45 60 4.5 9 11 3.5 7.5 9 9 50 65 5 10 12 4 8.5 10 9 45 55 7 17 20 6 14 18 12 60 75 10 23 27 8 20 25 0.05 UNITS 15pF Propagation Delay Time tPHL tPHL 50pF ns ns 15pF Output Enable Time tZL tZH 50pF RL=1k ns RL=1k ns 15pF Output Disable Time tLZ tHZ 50pF Sine Wave Distortion Rate -3dB Band Width Feed Through (Switch-off) Cross Talk (Control Switch) Cross Talk (between Switches) Control Input Capacitance Switch Input/Output Capacitance Feed Through Capacitance Power Dissipation Capacitance CCONT CIN/OUT CIN-OUT Cpd RL=1k ns RL=1k RL=10k fIN=1kHz RL=600k 20log10 VOUT=-3dB VIN ns 50pF % 50pF 3.0 - 200 - - - MHz 50pF 3.0 2.0 3.0 4.5 2.0 3.0 4.5 - RL=600k RL=600k fCONT=1MHz RL=600k fIN=1MHz - -60 60 100 150 -60 -60 -60 5 6 0.5 13 10 - - 10 - dB 50pF mV 50pF dB - pF pF pF pF Rev. A, Oct 2005 ON Resistance Typical Application Circuit Voltage Dependancies of ON Resistance Rev. A, Oct 2005 Power Off Leakage Current Power On Leakage Current Rev. A, Oct 2005 Propagation Delay Time Typical Application Circuit Waveforms Rev. A, Oct 2005 Output Enable Time, Output Disable Time Typical Application Circuit Waveforms Rev. A, Oct 2005 Sine Wave Distortion Rate -3dB Band Width Rev. A, Oct 2005 Feed Through Test Circuit Cross Talk (Control Input Typical Application Circuit Switch Output) Waveforms Rev. A, Oct 2005 Cross Talk (Between Switches) Typical Application Circuit Waveforms DISCLAIMER: The information presented in this document does not form part of any quotation or contract, is believed to be accurate and reliable and may be changed without notice. No liability will be accepted by the publisher for any consequence of its use. Rev. A, Oct 2005 |
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