Features: ` 1.65V to 3.6V VCC supply operation` 3.6V tolerant inputs and outputs` 26 series resistors in outputs` tPD 3.8 ns max for 3.0V to 3.6V VCC 4.3 ns max for 2.3V to 2.7V VCC 7.6 ns max for 1.65V to 1.95V VCC` Power-off high impedance inputs and outputs` Supports live insertion and withdraw...
74ALVC162240: Features: ` 1.65V to 3.6V VCC supply operation` 3.6V tolerant inputs and outputs` 26 series resistors in outputs` tPD 3.8 ns max for 3.0V to 3.6V VCC 4.3 ns max for 2.3V to 2.7V VCC 7.6 ns max for 1...
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Buffers & Line Drivers 16-Bit Buffer/Driver With 3-State Outputs
Supply Voltage (VCC) -0.5V to +4.6V
DC Input Voltage (VI) -0.5V to 4.6V
Output Voltage (VO) (Note 2) -0.5V to VCC +0.5V
DC Input Diode Current (IIK)
VI < 0V -50 mA
DC Output Diode Current (IOK)
VO < 0V -50 mA
DC Output Source/Sink Current
(IOH/IOL) ±50 mA
DC VCC or GND Current per
Supply Pin (ICC or GND) ±100 mA
Storage Temperature Range (TSTG) -65°C to +150°C
Note 1: The Absolute Maximum Ratings are those values beyond which the safety of the device cannot be guaranteed. The device should not be operated at these limits. The parametric values defined in the Electrical Characteristics tables are not guaranteed at the Absolute Maximum Ratings. The "Recommended Operating Conditions" table will define the conditions for actual device operation.
Note 2: IO Absolute Maximum Rating must be observed.
The 74ALVC162240 contains sixteen inverting buffers with 3-STATE outputs to be employed as a memory and address driver, clock driver, or bus oriented transmitter/ receiver. The device is nibble (4-bit) controlled. Each nibble has separate 3-STATE control inputs which can be shorted together for full 16-bit operation.
The 74ALVC162240 is designed for low voltage (1.65V to 3.6V) VCC applications with I/O capability up to 3.6V. The 74ALVC162240 is also designed with 26 series resistors in the outputs. This design reduces line noise in applications such as memory address drivers, clock drivers, and bus transceivers/transmitters.
The 74ALVC162240 is fabricated with an advanced CMOS technology to achieve high speed operation while maintaining low CMOS power dissipation.