Features: SpecificationsDescription The TC7S66F/TC7S66FU is a high Speed C2MOS BILATERAL SWITCH fabricated with silicon gate C2MOS technology.It consists of a high speed switch capable of controlling either digital or analog signals while maintaining the C2MOS Iow power dissipation. Control input ...
TC7S66F: Features: SpecificationsDescription The TC7S66F/TC7S66FU is a high Speed C2MOS BILATERAL SWITCH fabricated with silicon gate C2MOS technology.It consists of a high speed switch capable of controllin...
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Gates (AND / NAND / OR / NOR) 2-Input NAND Gate 5Pin High Speed
The TC7S66F/TC7S66FU is a high Speed C2MOS BILATERAL SWITCH fabricated with silicon gate C2MOS technology.It consists of a high speed switch capable of controlling either digital or analog signals while maintaining the C2MOS Iow power dissipation. Control input (C) is provided to control the switch, The switch turns ON while the C linput is high, and the switch turns OFF while Iow. Input is equipped with protection circuits against static discharge or transient excess voltage.
The features of TC7S66F/TC7S66FU are High Speed( tpd= 7ns (Typ.) at Vcc=5V), Low Power Dissipation(ICC=1A (Max.) at Ta = 25), High Noise Immunity(VNIH =VNIL=28% VCC (Min.)), Low ON Resistance(RON = 100(Typ.)at VCC = 9V), Low T.H.D(THD = 0.05% (Typ.) at VCC = 5V)(Pin and Function Compatible with TC4S66F).
The maximum ratings of TC7S66F/TC7S66FU are DC supply voltage(VCC)=-0.5~13V, Control Input Voltage(VIN)=- 0.5~Vcc + 0.5 V, Swith I/O Voltage(VI/O)=- 0.5~Vcc + 0.5V, Control Diode Current(ICK)=±20mA, Output Diode Current(IIOK)=±20mA, Through I/O Current(IT)=±12.5 mA, DC Vcc/Ground Current (ICC)=±25 mA, Power Dissipation(PD)=200 mW, Storage Temperature (Tstg)=-65~150, Lead Temperature (10s)(TL)=260.
And the operating conditions of TC7S66F are Supply Voltage (VCC)=2~12 V, Control Input Voltage(VIN )=0~VccV, Switch I / 0 Voltage(VI/O)=0~VccV, Operating Temperature(Topr)=-40~85, Input Rise and Fall Time(tr, tf)=(0-1000 (Vcc = 2.0V; 0- 500 (Vcc =4.5V); 0- 400 (Vcc = 6.0V); 0-250 (Vcc = 10.0V))ns.