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74VCX163245

Fairchild Semiconductor
Part Number 74VCX163245
Manufacturer Fairchild Semiconductor
Description Low Voltage 16-Bit Dual Supply Translating Transceiver with 3-STATE Outputs
Published Mar 22, 2005
Detailed Description 74VCX162839 Low Voltage 20-Bit Selectable Register/Buffer with 3.6V Tolerant Inputs and Outputs and 26Ω Series Resistors...
Datasheet PDF File 74VCX163245 PDF File

74VCX163245
74VCX163245


Overview
74VCX162839 Low Voltage 20-Bit Selectable Register/Buffer with 3.
6V Tolerant Inputs and Outputs and 26Ω Series Resistors in the Outputs March 1998 Revised July 1999 74VCX162839 Low Voltage 20-Bit Selectable Register/Buffer with 3.
6V Tolerant Inputs and Outputs and 26Ω Series Resistors in the Outputs General Description The VCX162839 contains twenty non-inverting selectable buffered or registered paths.
The device can be configured to operate in a registered, or flow through buffer mode by utilizing the register enable (REGE) and Clock (CP) signals.
The device operates in a 20-bit word wide mode.
All outputs can be placed into 3-STATE through use of the OE pin.
These devices are ideally suited for buffered or registered 168 pin and 200 pin SDRAM DIMM memory modules.
The 74VCX162839 is designed for low voltage (1.
65V to 3.
6V) VCC applications with I/O compatibility up to 3.
6V.
The 74VCX162839 is also designed with 26Ω series resistors in the outputs.
This design reduces line noise in applications such as memory address drivers, clock drivers, and bus transceivers/transmitters.
The 74VCX162839 is fabricated with an advanced CMOS technology to achieve high speed operation while maintaining low CMOS power dissipation.
Features s Compatible with PC100 and PC133 DIMM module specifications s 1.
65V–3.
6V VCC supply operation s 3.
6V tolerant inputs and outputs s 26Ω series resistors in the outputs s tPD (CP to On) 4.
1 ns max for 3.
0V to 3.
6V VCC 5.
8 ns max for 2.
3V to 2.
7V VCC 9.
8 ns max for 1.
65V to 1.
95V VCC s Power-off high impedance inputs and outputs s Supports live insertion and withdrawal (Note 1) s Static Drive (IOH/IOL) ±12 mA @ 3.
0V VCC ±8 mA @ 2.
3V VCC ±3 mA @ 1.
65V VCC s Uses patented noise/EMI reduction circuitry s Latch-up performance exceeds 300 mA s ESD performance: Human body model > 2000V Machine model > 200V Note 1: To ensure the high-impedance state during power up or power down, OE should be tied to VCC through a pull-up resistor; the minimum value of t...



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