Features: 5V tolerant inputs and outputs2.3V3.6V VCC specifications providedA and B side outputs have equivalent 26: series resistors5.3 ns tPD max (VCC 3.3V), 20 PA ICC maxPower down high impedance inputs and outputsSupports live insertion/withdrawal (Note 1)Flow through pinoutImplements patented...
74LCXR162245: Features: 5V tolerant inputs and outputs2.3V3.6V VCC specifications providedA and B side outputs have equivalent 26: series resistors5.3 ns tPD max (VCC 3.3V), 20 PA ICC maxPower down high impedance...
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Gates (AND / NAND / OR / NOR) Quad 2-Input NAND Gate with 5V Tol Inp
Symbol | Parameter | Value | Conditions | Units |
VCC | Supply Voltage | −0.5 to +7.0 | V | |
VI | DC Input Voltage | −0.5 to +7.0 | V | |
VO | DC Output Voltage | −0.5 to +7.0 −0.5 to VCC + 0.5 |
Output in 3-STATE Output in HIGH or LOW State (Note 4) |
mA |
IIK | DC Input Diode Current | −50 | VI < GND | mA |
IOK | DC Output Diode Current | −50 +50 |
VO < GND VO > VCC |
mA |
IO | DC Output Source/Sink Current | ±50 | mA | |
ICC | DC Supply Current per Supply Pin | ±100 | mA | |
IGND | DC Ground Current per Ground Pin | ±100 | mA | |
TSTG | Storage Temperature | −65 to +150 | °C |
The 74LCXR162245 contains sixteen non-inverting bidirectional buffers with 3-STATE outputs and is intended for bus oriented applications. The device is designed for low voltage (2.5V or 3.3V) VCC applications with capability of interfacing to a 5V signal environment. The device is byte controlled. Each byte has separate control inputs which could be shorted together for full 16-bit operation. The T/R inputs of the 74LCXR162245 determine the direction of data flow through the device. The OE inputs disable both the A and B ports by
placing them in a high impedance state.
In addition, all A and B outputs include equivalent 26: (nominal) series resistors to reduce overshoot and undershoot and are designed to sink/source up to 12 mA at VCC 3.0V.
The 74LCXR162245 is fabricated with an advanced CMOS technology to achieve high speed operation while maintaining CMOS low power dissipation.