Download MN54ABT646-x Datasheet PDF
National Semiconductor
MN54ABT646-x
MN54ABT646-x is REV 0B0 manufactured by National Semiconductor.
Description The ABT646 consists of bus tranceiver circuits wit TRI-STATE, D-type flip-flops, and control circuitry arranged for multiplexed transmission of data directly from the input bus or from the internal registers. Data on the A or B bus will be clocked into the registers as the appropriate clock pin goes to a high logic level. Control OE and direction pins are provided to control the transceiver function. In the transceiver mode, data present at the high impedance port may be stored in either the A or the B register or in both. The select controls can mutiplex stored and real-time (transparent mode) data. The direction control determines which bus will receive data when the enable control OE is Active LOW. In the isolation mode (control OE HIGH), A data may be stored in the B register and/or B data may be stored in the A register. Industry Part Number 54ABT646 NS Part Numbers 54ABT646E-QML - 54ABT646J-QML - - 54ABT646W-QML - - - Prime Die NB646 Controlling Document See Features Page Processing MIL-STD-883, Method 5004 Subgrp Description 1 2 3 4 5 6 7 8A 8B 9 10 11 Static tests at Static tests at Static tests at Dynamic tests at Dynamic tests at Dynamic tests at Functional tests at Functional tests at Functional tests at Switching tests at Switching tests at Switching tests at Temp ( o C) +25 +125 -55 +25 +125 -55 +25 +125 -55 +25 +125 -55 Quality Conformance Inspection MIL-STD-883, Method 5005 MN54ABT646-X REV 0B0 MICROCIRCUIT DATA SHEET Features Independent registers for A and B buses. Multiplexed real-time and stored data. A and B output sink capability of 48 m A, source capability of 24 m A Guaranteed latchup protection High impedance glitch free bus loading during entire power up and power down cycle. Non-Destructive hot insertion capability. SMD : 5962-9457701Q3A- , QLA- - , QKA- - - MN54ABT646-X REV 0B0 MICROCIRCUIT DATA SHEET (Absolute Maximum Ratings) (Note 1) Vcc Pin Potential to Ground Potential -0.5V to +7.0V Input Voltage (Note 2) -0.5V...