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MC74LCX573

Motorola

LOW-VOLTAGE CMOS OCTAL TRANSPARENT LATCH

MOTOROLA SEMICONDUCTOR TECHNICAL DATA Low-Voltage CMOS Octal Transparent Latch Flow Through Pinout With 5V-Tolerant In...


Motorola

MC74LCX573

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Description
MOTOROLA SEMICONDUCTOR TECHNICAL DATA Low-Voltage CMOS Octal Transparent Latch Flow Through Pinout With 5V-Tolerant Inputs and Outputs (3-State, Non-Inverting) MC74LCX573 The MC74LCX573 is a high performance, non–inverting octal transparent latch operating from a 2.7 to 3.6V supply. High impedance TTL compatible inputs significantly reduce current loading to input drivers while TTL compatible outputs offer improved switching noise performance. A VI specification of 5.5V allows MC74LCX573 inputs to be safely driven from 5V devices. The MC74LCX573 contains 8 D–type latches with 3–state standard outputs. When the Latch Enable (LE) input is HIGH, data on the Dn inputs enters the latches. In this condition, the latches are transparent, i.e., a latch output will change state each time its D input changes. When LE is LOW, the latches store the information that was present on the D inputs a setup time preceding the HIGH–to–LOW transition of LE. The 3–state standard outputs are controlled by the Output Enable (OE) input. When OE is LOW, the standard outputs are enabled. When OE is HIGH, the standard outputs are in the high impedance state, but this does not interfere with new data entering into the latches. The LCX573 flow through design facilitates easy PC board layout. LOW–VOLTAGE CMOS OCTAL TRANSPARENT LATCH 20 1 DW SUFFIX PLASTIC SOIC CASE 751D–04 Designed for 2.7 to 3.6V VCC Operation 5V Tolerant — Interface Capability With 5V TTL Logic Supports Live Inse...




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